WO1991014566A1 - Process for manufacturing a padded element - Google Patents

Process for manufacturing a padded element Download PDF

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Publication number
WO1991014566A1
WO1991014566A1 PCT/CA1991/000095 CA9100095W WO9114566A1 WO 1991014566 A1 WO1991014566 A1 WO 1991014566A1 CA 9100095 W CA9100095 W CA 9100095W WO 9114566 A1 WO9114566 A1 WO 9114566A1
Authority
WO
WIPO (PCT)
Prior art keywords
process defined
trim cover
cushion member
polymeric composition
open recess
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CA1991/000095
Other languages
French (fr)
Inventor
Ian L. Hughes
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Woodbridge Foam Corp
Original Assignee
Woodbridge Foam Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US07/562,925 external-priority patent/US5096639A/en
Priority claimed from US07/562,924 external-priority patent/US5089191A/en
Application filed by Woodbridge Foam Corp filed Critical Woodbridge Foam Corp
Priority to DE69110127T priority Critical patent/DE69110127T2/en
Priority to EP91906298A priority patent/EP0521929B1/en
Publication of WO1991014566A1 publication Critical patent/WO1991014566A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/58Seat coverings
    • B60N2/5891Seat coverings characterised by the manufacturing process; manufacturing seat coverings not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C44/00Shaping by internal pressure generated in the material, e.g. swelling or foaming ; Producing porous or cellular expanded plastics articles
    • B29C44/02Shaping by internal pressure generated in the material, e.g. swelling or foaming ; Producing porous or cellular expanded plastics articles for articles of definite length, i.e. discrete articles
    • B29C44/12Incorporating or moulding on preformed parts, e.g. inserts or reinforcements
    • B29C44/1228Joining preformed parts by the expanding material
    • B29C44/1233Joining preformed parts by the expanding material the preformed parts being supported during expanding
    • B29C44/1238Joining preformed parts by the expanding material the preformed parts being supported during expanding and having flexible and solid areas
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/58Seat coverings
    • B60N2/5816Seat coverings attachments thereof
    • B60N2/5875Seat coverings attachments thereof by adhesion, e.g. gluing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C44/00Shaping by internal pressure generated in the material, e.g. swelling or foaming ; Producing porous or cellular expanded plastics articles
    • B29C44/02Shaping by internal pressure generated in the material, e.g. swelling or foaming ; Producing porous or cellular expanded plastics articles for articles of definite length, i.e. discrete articles
    • B29C44/12Incorporating or moulding on preformed parts, e.g. inserts or reinforcements
    • B29C44/14Incorporating or moulding on preformed parts, e.g. inserts or reinforcements the preformed part being a lining
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29LINDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
    • B29L2031/00Other particular articles
    • B29L2031/751Mattresses, cushions

Definitions

  • the present invention relates to a process for manufacturing a padded element. More particularly, the present invention relates to a process for manufacturing a unit-type padded element including a trim cover and a cushion member formed as a unit.
  • the seat cover is cut and sewn to shape, and thereafter joined to the padding material by means of metal "hog rings” or “C” clips which join molded in wires in the seat pad to sewn-in-wires in the trim cover.
  • the securing means could be "hook and loop” devices (commercially available under the trade name Velcro) wherein the "hook” is molded into the seat pad and the “loop” is either sewn in or laminated on to the seat cover material.
  • Velcro "hook and loop” devices
  • auxiliary wire pockets or loop sheeting must be sewn in or laminated on to the seat cover material. Still further, the cost of these mechanical auxiliary means is onerous when compared to the cost of the foam padding material and the seat cover material. This results in a seat which is produced in a relatively complicated manner and at a relatively high expense.
  • a molded foam seat pad with the desired style and surface contours is located in a die or fixture.
  • An adhesive in the form of a liquid, powder or film is applied to the surface of the pad.
  • the seat cover material is held in a separate fixture and formed to the finished shape using one or more of vacuum (pressure), heat set, and steam.
  • the seat cover material with the die fixture is then registered to the pad. Thereafter, application of heat, steam and pressure activates the adhesive and joins the seat pad to the seat cover material.
  • This assembly is deficient in that the method of manufacturing it requires the use of external heat, steam, vacuum and relatively high pressure. Further, this assembly sometimes requires the use of a relatively expensive and toxic adhesive to bond the seat pad to the seat cover material.
  • the seat cover material is located in a tool and held in place with mechanical devices and/or with application of a vacuum.
  • An impervious barrier is applied to the underside of the cover to permit the vacuum to serve its intended function.
  • liquid polyurethane foam is poured into the seat cover.
  • a sealed lid closes the mold and remains closed until the foam is set in the desired shape.
  • the assembly is deficient in that it requires the use of external pressure and vacuum.
  • the assembly also requires the use of an impervious backing to vacuum form the seat cover material. The backing also results in prevention "breathing" of the finished system; this is undesirable since it reduces the comfort value of the finished system.
  • French patent 2,510,471 relates to the fabrication of padded elements suitable for use as seat bases or seatbacks, especially for vehicles.
  • the manufacturing process described in the patent comprises placing the outer lining in the bottom of a mold, setting against the lining a pre ⁇ formed foam block having formed therein at least one cell or intermediate chamber, introducing a foamable mixture into the intermediate chamber to form a foam filling mass adhering to the facing portion of the lining, and removing the product from the mold.
  • the foamable material is introduced into the intermediate chamber through a hole 14 in the upper outer shell of the foam block.
  • the surface of the cover material which, in many cases, is intended to be the finished surface of the article, has a relatively hard surface which belies the objective of providing a resilient, finished article.
  • extreme care must be taken when working with vinyl and with relatively exotic seat cover materials such as leather.
  • application of heat and steam to leather during the manufacturing of the assembly can permanently denature the leather thereby altering its texture and/or appearance.
  • the application of heat and steam can alter the gloss level of vinyl and also tends to wash out the grain surface.
  • the present invention provides a process for manufacturing a padded element which comprises providing a cushion member having an open recess in one surface thereof, providing a trim cover having a finished outer surface and an inner surface, and placing a liquid foamable polymeric composition in the open recess in a manner whereby the polymeric composition to expands to meet and adhere to the inner surface of the trim cover.
  • the present invention provides a process for manufacturing a padded element using a mold including an upper mold having an interior surface corresponding substantially to the upper surface of the padded element and a lower mold having an interior surface corresponding substantially to the lower surface of the padded element, the process comprising the steps of:
  • the present invention provides a process for manufacturing a padded element in a mold having an upper mold and a lower mold, the process comprising the steps of:
  • open recess when used with reference to the cushion member, is intended to mean that the cushion member surface to be adhered to the trim cover is undersized when compared to the padded element to be formed.
  • the first portion of the cushion member which comprises the open recess, may form a portion of the surface to be adhered to the trim cover (as illustrated hereinafter) - in this embodiment, the cushion member would also include a second portion corresponding proportionally to the finished surface of the padded element to be formed.
  • the first portion of the cushion member may form the entire surface to be adhered to the trim cover (e.g. an entire surface of the cushion member).
  • the present process may be used to produce padded elements without the requirement of using heat, pressure and steam.
  • the process is not particularly restricted with regard to the point at which the liquid foamable polymeric composition is placed in the open recess of the cushion member.
  • the trim cover and cushion member are in contact with one another (e.g. trim cover envelops cushion member) prior to introduction of the liquid foamable polymeric composition in the open recess of the latter - this is particularly useful in the manufacture of elongate padded elements (e.g. backrest for vehicle seat systems) comprising a rigid frame member.
  • the liquid foamable polymeric composition is placed in the open recess of the cushion member prior to contact of the latter with the trim cover.
  • the inner surface of the trim cover comprises a layer of material capable of enhancing adhesion between the trim cover and the polymeric composition after expansion.
  • suitable such materials include a foam layer, a reticulated fabric layer and the like.
  • the material is a foam layer.
  • trim covers e.g. those made of cloth
  • Figure 1 is a perspective view of a padded element produced in accordance with an embodiment of the present process
  • Figure 2 is a section along the line 2-2 in Figure 1
  • Figure 3 is a perspective view of a mold suitable for conducting an embodiment of the present process
  • Figure 4 is a perspective view of the mold wherein the initial steps of an embodiment of the present process are conducted;
  • Figure 5 is a perspective view of the mold comprising the trim cover on the upper mold, the cushion member on the lower mold and the foamable polymeric composition in the open recess of the cushion member;
  • Figure 6 is a sectional view of the closed mold
  • Figure 7 is an enlargement of a portion of Figure 6;
  • Figure 8 is a perspective view of a padded element produced in accordance with another embodiment of the present process.
  • Figure 9 is a section along the line 9-9 in Figure 8.
  • Figure 10 is a perspective view of the trim cover and the cushion member used in the initial step of an embodiment of the present process
  • Figure 11 is a perspective view of the trim cover enveloping the cushion member
  • Figure 12 is a sectional view of the trim cover/cushion member illustrated in Figure 11 being placed in an open mold;
  • Figure 13 is a sectional view of the mold illustrated in Figure 12 in a closed position and illustrating introduction of the foamable composition into the open recess of the cushion member.
  • Vehicle seat 10 comprises an upper surface 20 and a lower surface 30.
  • Vehicle seat 10 further comprises a trim cover 40 and a cushion member 50.
  • Trim cover 40 includes a finished outer surface 60, an inner surface comprising foam layer 70 and side panels 80.
  • Adhering trim cover 40 to cushion member 50 is a foam member 90. The production of foam member 90 will be described in more detail hereinafter.
  • Moid 100 comprises an upper mold 110 having an interior surface 120 corresponding substantially to upper surface 20 of vehicle seat 10. Mold 100 further comprises a lower mold 130 having an interior surface 140 corresponding substantially to lower surface 30 of vehicle seat 10. Upper mold 110 further comprises steel bars 115 (only one is illustrated) oppositely disposed from one another.
  • cushion member 50 is placed on interior surface 140 of lower mold 130.
  • Cushion member 50 comprises a first portion 150 having an open recess 155 therein and a second portion 160 corresponding proportionally to upper surface 20 of vehicle seat 10.
  • first portion 150 By “proportionally” it is meant that, with the exception of first portion 150, the upper surface of cushion member 50 corresponds to upper surface 20 of vehicle seat 10 (i.e. the seat to be formed).
  • Trim cover 40 is placed on interior surface 120 of upper mold 110 such that finished upper surface 60 is in contact with interior surface 120. Trim cover 40 is held in place on upper mold 110 by any suitable means. In the embodiment illustrated in Figure 4, trim cover 40 may be held in place by magnetic bars 170 which attract steel bars 115 on upper mold 110 and serve to affix side panels 80 of the trim cover.
  • a liquid foamable polymeric composition 180 is dispensed from container 190 to open recess 155 in cushion member 50.
  • mold 100 is closed ( Figure 6) to abut second portion 160 and trim cover 40 thereby enclosing open recess 155 to define enclosure 200.
  • foamable composition 180 expands to fill substantially enclosure 200.
  • foam member 90 Figure 2 Depending on the type of foamable polymeric composition used, such expansion can occur within 30 seconds to three minutes after dispensing in the open recess of the cushion member.
  • foam member 90 adheres to first portion 150 of cushion member 50 and to a portion of foam layer 70 of trim cover 40.
  • the vehicle seat may be removed from the mold. Thereafter, side panels 80 of trim cover 40 may be pulled down over the sides of cushion member 50.
  • the resultant vehicle seat is illustrated in Figures 1 and 2.
  • padded elements wherein one surface thereof is unfinished and of frameless padded elements.
  • this process is particularly suitable for manufacturing the seat portion in vehicle seat systems.
  • Such seat portions have finished upper and side surfaces.
  • the undersurface of such seat portions are typically unfinished.
  • the trim cover of the seat portion is adhered to the upper portion of the cushion member.
  • the side portions are merely pulled over and secured beneath the seat to the frame of the seat.
  • padded elements which comprise virtually all surfaces as finished surfaces and which, optionally, further comprise a rigid frame member therein.
  • padded elements include the backrest portion of a vehicle seat system.
  • manufacture of the finished padded element may be facilitated by providing a trim cover having at least one aperture therein and enveloping the cushion member.
  • the liquid foamable polymeric composition is then placed in the open recess in the cushion member via the aperture in the trim cover.
  • Backrest 205 comprises an upper surface 210 and a lower surface 215.
  • Backrest 205 further comprises a trim cover 220 and a cushion member 225.
  • Trim cover 220 includes a finished outer surface 230, an inner surface comprising foam layer 235 and end panels 240 and 245.
  • Adhering trim cover 220 to cushion member 225 is a foam member 250.
  • Cushion member 225 encases a rigid frame member 255. The production of foam member 250 will be described in more detail hereinafter.
  • cushion member 225 comprises a first portion 260 having an open recess 265 therein and a second portion 270 corresponding proportionally to upper surface 210 of backrest 205.
  • portionally it is meant that, with the exception of first portion 260, the upper surface of cushion member 225 corresponds to upper surface 210 of backrest 205 (i.e. the backrest to be formed).
  • rigid frame member 255 follows the periphery of first portion 260 and is encased by cushion member 225.
  • Trim cover 220 comprises an aperture 275 through which cushion member 225 is inserted.
  • End panel 240 of trim cover 220 comprises a row of hooks 280 on the inner surface thereof.
  • End panel 245 comprises a row of loops 285 on the outer surface thereof.
  • trim cover 220 enveloping cushion member 225.
  • a portion 290 of aperture 275 in trim cover 220 is exposed permitting access to open recess 265 of cushion member 225.
  • Mold 295 suitable for use in the present process.
  • Mold 295 comprises an upper mold 300 having an inner surface 305 corresponding to upper surface 210 ( Figures 8 and 9) of the backrest to be formed.
  • Mold 295 further comprises a lower mold 310 having an inner surface 315 corresponding substantially to the lower surface 215 of backrest 205 ( Figures 8 and 9) to be formed.
  • a liquid foamable polymeric composition 320 is dispensed from a suitable dispensing means 325 via portion 290. After composition 320 has been dispensed in open recess 265, dispensing means 325 is withdrawn from open recess 265 and portion 290 is blocked by any suitable means (not shown). Thereafter, foamable composition 320 expands to fill substantially open recess 265 thereby forming foam member 250 illustrated in Figure 9. As illustrated in Figures 12 and 13, backrest 205 to be formed may be suitably inclined to assist in dispensing of foamable polymeric composition 320 in open recess 265.
  • upper mold 300 may be pivoted upward from lower mold 310.
  • Finished backrest 205 may then be removed from lower mold 310, and thereafter end panels 240 and 245 may be closed and fastened to one another by hooks 280 and loops 285 to provide backrest 205 illustrated in Figures 8 and 9.
  • the foamable polymeric composition comprises a polyurethane.
  • the polyurethane is a diphenylmethane diisocyanate (MD_Q-based system of low index and of a high molecular weight conventional polyol.
  • MD_Q-based system of low index and of a high molecular weight conventional polyol.
  • Such a system is typically completely “water blown” using highly-catalyzed odorless amines and a cell regulator. Typically, this system cures at room temperature in about three minutes or less.
  • the present process can be used to manufacture a variety of padded elements.
  • padded elements include: components of vehicle seats such as the seat cushion, the backrest and the headrest; components of other types of seat systems such as those used in boats, snowmobiles, and in office furniture; pillar covers; and padded interior door and quarter trim panels in vehicles.
  • the present process can be used with virtually all conventional trim cover materials.
  • Non-limiting examples of such materials include leather, vinyl and cloth.
  • the inner surface of the trim cover includes a foam layer made of polyurethane foam.
  • the present process can be used with virtually any cushion member which is made from a resilient material.
  • the preferred foam cushion member is made from a polymer foam, more preferably polyurethane foam.
  • the cushion member may be made from horsehair or coconut fibers which are resin-filled, or from cotton or jute.
  • each of the foam layer (when present) of the inner surface of the trim cover, the cushion member and the foamable polymeric composition comprises polyurethane.
  • the present process can be used to produce a padded element in a convenient and efficient manner. There is no requirement to use high temperature, pressure, vacuum or steam during the present process as there is with the prior art processes discussed hereinabove.

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  • Engineering & Computer Science (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Casting Or Compression Moulding Of Plastics Or The Like (AREA)
  • Reverberation, Karaoke And Other Acoustics (AREA)
  • Sewing Machines And Sewing (AREA)
  • Diaphragms For Electromechanical Transducers (AREA)
  • Glass Compositions (AREA)

Abstract

A process for manufacturing a padded element by adhering a trim cover (40) to a cushion member (160) is provided. Generally, the process comprises placing a liquid foamable polymeric composition (180) in an open recess (155) which is provided in the cushion member. During the process the foamable composition expands to fill substantially the open recess and to adhere the cushion member to a trim cover. Preferably, the inner surface of the trim cover comprises a material, such as a foam layer, for enhanced adhesion to the foamable polymeric composition after expansion. The process may be used to manufacture a variety of padded element such as components of vehicle seats (e.g. seat cushion, backrest, headrest), components for use in other types of seat systems (e.g. boats, snowmobiles, office furniture), pillar covers, trim panels in vehicles and the like.

Description

PROCESS FOR MANUFACTURING A PADDED ELEMENT
TECHNICAL FIELD
The present invention relates to a process for manufacturing a padded element. More particularly, the present invention relates to a process for manufacturing a unit-type padded element including a trim cover and a cushion member formed as a unit.
BACKGROUND ART Heretofore, the methods of assembling and joining a decorative cover to the underlying padding material typically fell within one of the following techniques: mechanically retained assembly, adhesive bonded assembly and foamed-in-place (also known as molded- in-place) assembly. Such assemblies have found use as, for example, vehicle seats.
In the mechanically retained assembly, the seat cover is cut and sewn to shape, and thereafter joined to the padding material by means of metal "hog rings" or "C" clips which join molded in wires in the seat pad to sewn-in-wires in the trim cover. Alternatively, the securing means could be "hook and loop" devices (commercially available under the trade name Velcro) wherein the "hook" is molded into the seat pad and the "loop" is either sewn in or laminated on to the seat cover material. Unfortunately, this mechanically retained assembly is deficient. For example, the method of manufacturing this assembly is relatively complicated in that auxiliary wires or "hooks" must be molded into the seat pad. Further, auxiliary wire pockets or loop sheeting must be sewn in or laminated on to the seat cover material. Still further, the cost of these mechanical auxiliary means is onerous when compared to the cost of the foam padding material and the seat cover material. This results in a seat which is produced in a relatively complicated manner and at a relatively high expense.
In the adhesive bonded assembly, a molded foam seat pad with the desired style and surface contours is located in a die or fixture. An adhesive in the form of a liquid, powder or film is applied to the surface of the pad. The seat cover material is held in a separate fixture and formed to the finished shape using one or more of vacuum (pressure), heat set, and steam. The seat cover material with the die fixture is then registered to the pad. Thereafter, application of heat, steam and pressure activates the adhesive and joins the seat pad to the seat cover material. This assembly is deficient in that the method of manufacturing it requires the use of external heat, steam, vacuum and relatively high pressure. Further, this assembly sometimes requires the use of a relatively expensive and toxic adhesive to bond the seat pad to the seat cover material.
In the foamed-in-place assembly, the seat cover material is located in a tool and held in place with mechanical devices and/or with application of a vacuum. An impervious barrier is applied to the underside of the cover to permit the vacuum to serve its intended function. Thereafter, liquid polyurethane foam is poured into the seat cover. A sealed lid closes the mold and remains closed until the foam is set in the desired shape. As the foam expands and fills the mold, it adheres directly to the impervious barrier. This assembly is deficient in that it requires the use of external pressure and vacuum. The assembly also requires the use of an impervious backing to vacuum form the seat cover material. The backing also results in prevention "breathing" of the finished system; this is undesirable since it reduces the comfort value of the finished system. There have been attempts to produce covered seats wherein the impervious backing is omitted from the production process. Indeed, French patent 2,510,471 relates to the fabrication of padded elements suitable for use as seat bases or seatbacks, especially for vehicles. The manufacturing process described in the patent comprises placing the outer lining in the bottom of a mold, setting against the lining a pre¬ formed foam block having formed therein at least one cell or intermediate chamber, introducing a foamable mixture into the intermediate chamber to form a foam filling mass adhering to the facing portion of the lining, and removing the product from the mold. According to a preferred embodiment illustrated in Figure 6 of the French patent, the foamable material is introduced into the intermediate chamber through a hole 14 in the upper outer shell of the foam block. The French patent purportedly does away with the need for the impervious backing utilized in the foamed-in-place assembly discussed above. However, the process disclosed in the French patent is deficient since the liquid foam is poured directly onto (i.e. no impervious backing), and thus expands in a direction substantially away from, the cover material, there is an increased likelihood that "foam densification" will occur. Foam densification is a phenomenon which occurs when young foam (i.e. foam which has just begun to expand from the liquid state) is forced to expand in an environment which is unable to accommodate the pressure build-up from gas given off from the expanding foam mass. This results in the expanding foam mass being "driven" into the cover material with a force which results in the occurrence of foam densification. When this occurs, the surface of the cover material which, in many cases, is intended to be the finished surface of the article, has a relatively hard surface which belies the objective of providing a resilient, finished article. In addition to the above-identified deficiencies of the prior art assemblies, extreme care must be taken when working with vinyl and with relatively exotic seat cover materials such as leather. For example, application of heat and steam to leather during the manufacturing of the assembly can permanently denature the leather thereby altering its texture and/or appearance. Further, the application of heat and steam can alter the gloss level of vinyl and also tends to wash out the grain surface.
It would be desirable to have a simple process for the manufacture of a padded element, which process could be used with virtually all conventional cover materials and which could be used to manufacture padded elements in a relatively efficient manner.
DISCLOSURE OF THE INVENTION
It is an object of the present invention to provide a novel process for the production of a padded element.
It is another object of the invention to provide a novel process for manufacturing a padded element using any of the conventional cover materials without damage thereof during the process.
It is yet another object of the invention to provide a novel process for manufacturing a padded element which does not require the use of external heat, steam, vacuum or relatively high pressure.
Accordingly, in one of its aspects, the present invention provides a process for manufacturing a padded element which comprises providing a cushion member having an open recess in one surface thereof, providing a trim cover having a finished outer surface and an inner surface, and placing a liquid foamable polymeric composition in the open recess in a manner whereby the polymeric composition to expands to meet and adhere to the inner surface of the trim cover.
In another of its aspects, the present invention provides a process for manufacturing a padded element using a mold including an upper mold having an interior surface corresponding substantially to the upper surface of the padded element and a lower mold having an interior surface corresponding substantially to the lower surface of the padded element, the process comprising the steps of:
(i) placing a cushion member on the lower mold, the upper surface of the cushion member comprising a first portion having an open recess therein;
(ii) placing a trim cover on the upper mold, the trim cover comprising a finished outer surface in contact with the interior surface of the upper mold and an inner surface;
(iii) placing a liquid foamable polymeric composition in the open recess;
(iv) closing the upper mold and the lower mold to cover the open recess and form an enclosure containing the liquid foamable polymeric composition; whereby, the polymeric composition expands to fill substantially the open recess, and adheres to the first portion of the cushion member and to the inner surface of the trim cover.
In yet another of its aspects, the present invention provides a process for manufacturing a padded element in a mold having an upper mold and a lower mold, the process comprising the steps of:
(i) providing in the lower mold a cushion member comprising a first portion having an open recess therein, the cushion member being enveloped by a trim cover comprising a finished outer surface and an inner surface, the trim cover having at least one aperture therein, the open recess and the trim cover defining a cavity;
(ϋ) closing the upper mold and the lower mold so that the upper mold is in contact with the upper outer surface of the trim cover;
(iii) placing a liquid foamable polymeric composition in the open recess via the aperture of the trim cover;
(iv) allowing the polymeric composition to expand to fill substantially the open recess such that the first portion corresponds proportionally to the finished surface of the padded element; whereby the expanded polymeric composition adheres to the first portion of the cushion member and to the inner surface of the trim cover.
As used throughout the present specification, the term
"open recess", when used with reference to the cushion member, is intended to mean that the cushion member surface to be adhered to the trim cover is undersized when compared to the padded element to be formed. For example, the first portion of the cushion member, which comprises the open recess, may form a portion of the surface to be adhered to the trim cover (as illustrated hereinafter) - in this embodiment, the cushion member would also include a second portion corresponding proportionally to the finished surface of the padded element to be formed. Alternatively, the first portion of the cushion member, may form the entire surface to be adhered to the trim cover (e.g. an entire surface of the cushion member).
Thus, the present process may be used to produce padded elements without the requirement of using heat, pressure and steam. Moreover, for the manufacture of many padded elements, the process is not particularly restricted with regard to the point at which the liquid foamable polymeric composition is placed in the open recess of the cushion member. Thus, in one embodiment of the process, the trim cover and cushion member are in contact with one another (e.g. trim cover envelops cushion member) prior to introduction of the liquid foamable polymeric composition in the open recess of the latter - this is particularly useful in the manufacture of elongate padded elements (e.g. backrest for vehicle seat systems) comprising a rigid frame member. In another embodiment, the liquid foamable polymeric composition is placed in the open recess of the cushion member prior to contact of the latter with the trim cover.
In a preferred aspect of the process, the inner surface of the trim cover comprises a layer of material capable of enhancing adhesion between the trim cover and the polymeric composition after expansion. Examples of suitable such materials include a foam layer, a reticulated fabric layer and the like. Preferably, the material is a foam layer. For certain trim covers (e.g. those made of cloth), it is not necessary to have a separate layer of material to achieve enhanced adhesion between the trim cover and the polymeric composition after expansion.
BRIEF DESCRIPTION OF THE DRAWINGS
Embodiments of the present invention will be described with reference to the accompanying drawings in which Figures 1-7 illustrate an embodiment of the present process and Figures 8-13 illustrate another embodiment of the present process, as follows:
Figure 1 is a perspective view of a padded element produced in accordance with an embodiment of the present process; Figure 2 is a section along the line 2-2 in Figure 1; Figure 3 is a perspective view of a mold suitable for conducting an embodiment of the present process;
Figure 4 is a perspective view of the mold wherein the initial steps of an embodiment of the present process are conducted; Figure 5 is a perspective view of the mold comprising the trim cover on the upper mold, the cushion member on the lower mold and the foamable polymeric composition in the open recess of the cushion member;
Figure 6 is a sectional view of the closed mold; Figure 7 is an enlargement of a portion of Figure 6;
Figure 8 is a perspective view of a padded element produced in accordance with another embodiment of the present process;
Figure 9 is a section along the line 9-9 in Figure 8;
Figure 10 is a perspective view of the trim cover and the cushion member used in the initial step of an embodiment of the present process;
Figure 11 is a perspective view of the trim cover enveloping the cushion member;
Figure 12 is a sectional view of the trim cover/cushion member illustrated in Figure 11 being placed in an open mold; and
Figure 13 is a sectional view of the mold illustrated in Figure 12 in a closed position and illustrating introduction of the foamable composition into the open recess of the cushion member.
BEST MODE FOR CARRYING OUT THE INVENTION
Preferred embodiments of the invention will now be described with reference to Figures 1-13. In the Figures, like numerals designate like parts. With reference to Figures 1 and 2, there is illustrated a padded element in the form of a vehicle seat 10 produced in accordance with the present process. Vehicle seat 10 comprises an upper surface 20 and a lower surface 30. Vehicle seat 10 further comprises a trim cover 40 and a cushion member 50. Trim cover 40 includes a finished outer surface 60, an inner surface comprising foam layer 70 and side panels 80. Adhering trim cover 40 to cushion member 50 is a foam member 90. The production of foam member 90 will be described in more detail hereinafter.
With reference to Figure 3, there is illustrated a mold 100 suitable for use in the present process. Moid 100 comprises an upper mold 110 having an interior surface 120 corresponding substantially to upper surface 20 of vehicle seat 10. Mold 100 further comprises a lower mold 130 having an interior surface 140 corresponding substantially to lower surface 30 of vehicle seat 10. Upper mold 110 further comprises steel bars 115 (only one is illustrated) oppositely disposed from one another.
With reference to Figure 4, cushion member 50 is placed on interior surface 140 of lower mold 130. Cushion member 50 comprises a first portion 150 having an open recess 155 therein and a second portion 160 corresponding proportionally to upper surface 20 of vehicle seat 10. By "proportionally" it is meant that, with the exception of first portion 150, the upper surface of cushion member 50 corresponds to upper surface 20 of vehicle seat 10 (i.e. the seat to be formed).
Trim cover 40 is placed on interior surface 120 of upper mold 110 such that finished upper surface 60 is in contact with interior surface 120. Trim cover 40 is held in place on upper mold 110 by any suitable means. In the embodiment illustrated in Figure 4, trim cover 40 may be held in place by magnetic bars 170 which attract steel bars 115 on upper mold 110 and serve to affix side panels 80 of the trim cover.
With reference to Figure 5, a liquid foamable polymeric composition 180 is dispensed from container 190 to open recess 155 in cushion member 50. After foamable polymeric composition 180 is dispensed in open recess 155, mold 100 is closed (Figure 6) to abut second portion 160 and trim cover 40 thereby enclosing open recess 155 to define enclosure 200. Thereafter, foamable composition 180 expands to fill substantially enclosure 200. This expansion results in the formation of foam member 90 (Figure 2). Depending on the type of foamable polymeric composition used, such expansion can occur within 30 seconds to three minutes after dispensing in the open recess of the cushion member. Thus, foam member 90 adheres to first portion 150 of cushion member 50 and to a portion of foam layer 70 of trim cover 40. After the suitable period of time has elapsed for expansion of the foamable polymeric composition, the vehicle seat may be removed from the mold. Thereafter, side panels 80 of trim cover 40 may be pulled down over the sides of cushion member 50. The resultant vehicle seat is illustrated in Figures 1 and 2.
The foregoing process described with reference to Figures
1-7 is particularly suited for the production of padded elements wherein one surface thereof is unfinished and of frameless padded elements. For example, this process is particularly suitable for manufacturing the seat portion in vehicle seat systems. Such seat portions have finished upper and side surfaces. The undersurface of such seat portions are typically unfinished. Thus, the trim cover of the seat portion is adhered to the upper portion of the cushion member. Thereafter, the side portions are merely pulled over and secured beneath the seat to the frame of the seat.
It is has been discovered that another embodiment of the present process is more particularly suited for the manufacture of padded elements which comprise virtually all surfaces as finished surfaces and which, optionally, further comprise a rigid frame member therein. Examples of such padded elements include the backrest portion of a vehicle seat system. For such a portion of a vehicle seat system, it has been discovered that manufacture of the finished padded element may be facilitated by providing a trim cover having at least one aperture therein and enveloping the cushion member. The liquid foamable polymeric composition is then placed in the open recess in the cushion member via the aperture in the trim cover.
With reference to Figures 8 and 9, there is illustrated a padded element in the form of a backrest 205 produced in accordance with the present process. Backrest 205 comprises an upper surface 210 and a lower surface 215. Backrest 205 further comprises a trim cover 220 and a cushion member 225. Trim cover 220 includes a finished outer surface 230, an inner surface comprising foam layer 235 and end panels 240 and 245. Adhering trim cover 220 to cushion member 225 is a foam member 250. Cushion member 225 encases a rigid frame member 255. The production of foam member 250 will be described in more detail hereinafter.
With reference to Figure 10, there is illustrated a mode of placing cushion member 225 in trim cover 220. Cushion member 225 comprises a first portion 260 having an open recess 265 therein and a second portion 270 corresponding proportionally to upper surface 210 of backrest 205. By "proportionally" it is meant that, with the exception of first portion 260, the upper surface of cushion member 225 corresponds to upper surface 210 of backrest 205 (i.e. the backrest to be formed). As illustrated by the broken lines in cushion member 225, rigid frame member 255 follows the periphery of first portion 260 and is encased by cushion member 225.
Trim cover 220 comprises an aperture 275 through which cushion member 225 is inserted. End panel 240 of trim cover 220 comprises a row of hooks 280 on the inner surface thereof. End panel 245 comprises a row of loops 285 on the outer surface thereof.
With reference to Figure 11, there is illustrated trim cover 220 enveloping cushion member 225. A portion 290 of aperture 275 in trim cover 220 is exposed permitting access to open recess 265 of cushion member 225.
With reference to Figure 12, there is illustrated a mold 295 suitable for use in the present process. Mold 295 comprises an upper mold 300 having an inner surface 305 corresponding to upper surface 210 (Figures 8 and 9) of the backrest to be formed. Mold 295 further comprises a lower mold 310 having an inner surface 315 corresponding substantially to the lower surface 215 of backrest 205 (Figures 8 and 9) to be formed.
With further reference to Figure 12, after cushion member
225 has been mounted, via frame member 255, to lower mold 310, the mounted cushion member is pivoted such that lower surface 215 (Figures 8 and 9) is in contact with inner surface 315 of lower mold 310. Thereafter, upper mold 300 is pivoted such that inner surface 305 is in contact with upper surface 210.
With reference to Figure 13, a liquid foamable polymeric composition 320 is dispensed from a suitable dispensing means 325 via portion 290. After composition 320 has been dispensed in open recess 265, dispensing means 325 is withdrawn from open recess 265 and portion 290 is blocked by any suitable means (not shown). Thereafter, foamable composition 320 expands to fill substantially open recess 265 thereby forming foam member 250 illustrated in Figure 9. As illustrated in Figures 12 and 13, backrest 205 to be formed may be suitably inclined to assist in dispensing of foamable polymeric composition 320 in open recess 265.
After liquid foamable polymeric composition 320 has expanded and cured, upper mold 300 may be pivoted upward from lower mold 310. Finished backrest 205 may then be removed from lower mold 310, and thereafter end panels 240 and 245 may be closed and fastened to one another by hooks 280 and loops 285 to provide backrest 205 illustrated in Figures 8 and 9.
The form of liquid foamable polymeric compositions suitable for use in the present process and the manner by which it is dispensed into the open recess of the cushion member is not particularly restricted. Preferably, the foamable polymeric composition comprises a polyurethane. More preferably, the polyurethane is a diphenylmethane diisocyanate (MD_Q-based system of low index and of a high molecular weight conventional polyol. Such a system is typically completely "water blown" using highly-catalyzed odorless amines and a cell regulator. Typically, this system cures at room temperature in about three minutes or less.
The present process can be used to manufacture a variety of padded elements. Non-limiting examples of such padded elements include: components of vehicle seats such as the seat cushion, the backrest and the headrest; components of other types of seat systems such as those used in boats, snowmobiles, and in office furniture; pillar covers; and padded interior door and quarter trim panels in vehicles.
Further, the present process can be used with virtually all conventional trim cover materials. Non-limiting examples of such materials include leather, vinyl and cloth. Preferably, the inner surface of the trim cover includes a foam layer made of polyurethane foam.
The present process can be used with virtually any cushion member which is made from a resilient material. The preferred foam cushion member is made from a polymer foam, more preferably polyurethane foam. Alternatively, the cushion member may be made from horsehair or coconut fibers which are resin-filled, or from cotton or jute.
In the most preferred embodiment of the present process, each of the foam layer (when present) of the inner surface of the trim cover, the cushion member and the foamable polymeric composition comprises polyurethane.
Thus, the present process can be used to produce a padded element in a convenient and efficient manner. There is no requirement to use high temperature, pressure, vacuum or steam during the present process as there is with the prior art processes discussed hereinabove.

Claims

What is claimed is:
1. A process for manufacturing a padded element which comprises providing a cushion member having an open recess in one surface thereof, providing a trim cover having a finished outer surface and an inner surface, and placing a liquid foamable polymeric composition in said open recess in a manner whereby said polymeric composition to expands to meet and adhere to the inner surface of said trim cover.
2. The process defined in claim 1, wherein the inner surface of the trim cover comprises a layer of material capable of enhancing adhesion between the trim cover and the polymeric composition.
3. The process defined in claim 2, wherein said material is a foam layer.
4. The process defined in claim 2, wherein said material is a reticulated fabric.
5. The process defined in claim 1, wherein said trim cover includes a finished upper surface made of leather.
6. The process defined in claim 1, wherein said trim cover includes a finished upper surface made of vinyl.
7. The process defined in claim 1, wherein said trim cover includes a finished upper surface made of cloth.
8. The process defined in claim 3, wherein the foam layer comprises a polyurethane foam.
9. The process defined in claim 1, wherein said cushion member comprises a polyurethane foam.
10. The process defined in claim 1, wherein said foamable polymeric composition comprises polyurethane.
11. The process defined in claim 4, wherein each of the foam layer, said cushion member and said foamable polymeric composition comprises polyurethane.
12. The process defined in claim 11, wherein the padded element is a component of a vehicle seat.
13. The process defined in claim 12, wherein said component is a seat cushion.
14. The process defined in claim 12, wherein said component is a backrest.
15. The process defined in claim 1, wherein the padded element is a component of a seat system.
16. A process for manufacturing a padded element using a mold including an upper mold having an interior surface corresponding substantially to the upper surface of the padded element and a lower mold having an interior surface corresponding substantially to the lower surface of the padded element, the process comprising the steps of:
(i) placing a cushion member on said lower mold, the upper surface of said cushion member comprising a first portion having an open recess therein; (ii) placing a trim cover on said upper mold, said trim cover comprising a finished outer surface in contact with the interior surface of said upper mold and an inner surface;
(ϋi) placing a liquid foamable polymeric composition in said open recess;
(iv) closing said upper mold and said lower mold to cover said open recess and form an enclosure containing said liquid foamable polymeric composition; whereby, said polymeric composition expands to fill substantially said open recess, and adheres to said cushion member and to the inner surface of said trim cover.
17. The process defined in claim 16, wherein said cushion member further comprises a second portion corresponding proportionally to the finished surface of the padded element.
18. The process defined in claim 16, wherein the inner surface of the trim cover comprises a layer of material capable of enhancing adhesion between the trim cover and the polymeric composition.
19. The process defined in claim 18, wherein said material is a foam layer.
20. The process defined in claim 18, wherein said material is a reticulated fabric.
21. The process defined in claim 16, wherein the finished upper surface of said trim cover is made of leather.
22. The process defined in claim 16, wherein the finished upper surface of said trim cover is made of vinyl.
23. The process defined in claim 16, wherein the finished upper surface of said trim cover is made of cloth.
24. The process defined in claim 19, wherein the foam layer comprises a polyurethane foam.
25. The process defined in claim 16, wherein said cushion member comprises a polyurethane foam.
26. The process defined in claim 16, wherein said foamable polymeric composition comprises polyurethane.
27. The process defined in claim 19, wherein each of the foam layer, said cushion member and said foamable polymeric composition comprises polyurethane.
28. The process defined in claim 27, wherein the padded element is a component of a vehicle seat.
29. The process defined in claim 28, wherein said component is a seat cushion.
30. The process defined in claim 28, wherein said component is a backrest.
31. The process defined in claim 16, wherein the padded element is a component of a seat system.
32. A process for manufacturing a padded component of a seat system using a mold including an upper mold having an interior surface corresponding substantially to the upper surface of the padded element and a lower mold having an interior surface corresponding substantially to the lower surface of the padded element, the process comprising the steps of:
(i) placing a polyurethane cushion member on said lower mold, the upper surface of said cushion member comprising a first portion having an open recess therein and a second portion corresponding proportionally to the upper surface of the padded element;
(ii) placing a trim cover on said upper mold, said trim cover comprising a finished outer surface in contact with the interior surface of said upper mold and an inner surface comprising a polyurethane foam layer; (iii) placing a liquid foamable polyurethane composition in said open recess;
(iv) closing said upper mold and said lower mold to cover said open recess and form an enclosure containing said liquid foamable polymeric composition; whereby, said polymeric composition expands to fill substantially said open recess, and adheres to said cushion member and to the foam layer of said trim cover.
33. A process for manufacturing a padded element in a mold having an upper mold and a lower mold, the process comprising the steps of:
(i) providing in said lower mold a cushion member comprising a first portion having an open recess therein, the cushion member being enveloped by a trim cover comprising a finished outer surface and an inner surface, the trim cover having at least one aperture therein, said open recess and said trim cover defining a cavity;
(ii) closing said upper mold and said lower mold so that said upper mold is in contact with the upper outer surface of said trim cover;
(iii) placing a liquid foamable polymeric composition in the open recess via the aperture of the trim cover;
(iv) allowing the polymeric composition to expand to fill substantially the open recess such that the first portion corresponds proportionally to the finished surface of the padded element; whereby the expanded polymeric composition adheres to the first portion of the cushion member and to the inner surface of the trim cover.
34. The process defined in claim 33, wherein said cushion member further comprises a second portion corresponding proportionally to the finished surface of the padded element.
35. The process defined in claim 33, wherein the inner surface of the trim cover comprises a layer of material capable of enhancing adhesion between the trim cover and the polymeric composition.
36. The process defined in claim 35, wherein said material is a foam layer.
37. The process defined in claim 35, wherein said material is a reticulated fabric.
38. The process defined in claim 33, wherein the finished upper surface of said trim cover is made of leather.
39. The process defined in claim 33, wherein the finished upper surface of said trim cover is made of vinyl.
40. The process defined in claim 33, wherein the finished upper surface of said trim cover is made of cloth.
41. The process defined in claim 36, wherein the foam layer comprises a polyurethane foam.
42. The process defined in claim 33, wherein said cushion member comprises a polyurethane foam.
43. The process defined in claim 33, wherein said foamable polymeric composition comprises polyurethane.
44. The process defined in claim 36, wherein each of the foam layer, said cushion member and said foamable polymeric composition comprises polyurethane.
45. The process defined in claim 44, wherein the padded element is a component of a vehicle seat.
46. The process defined in claim 45, wherein said component is a seat cushion.
47. The process defined in claim 45, wherein said component is a backrest.
48. The process defined in claim 33, wherein said cushion member encases a rigid frame member.
49. The process defined in claim 48, wherein said cushion member comprises a polyurethane foam.
50. The process defined in claim 49, wherein said cushion member is a backrest of a vehicle seat.
51. The process defined in claim 33, wherein the padded element is a component of a seat system.
52. A process for manufacturing a backrest of a seat system in a mold having an upper mold and a lower mold, the process comprising the steps of:
(i) providing a polyurethane cushion member encasing a rigid frame member, said cushion member comprising a first portion having an open recess therein and a second portion corresponding proportionally to the finished surface of the padded element to be formed, the cushion member being enveloped by a trim cover comprising a finished outer surface and an inner surface comprising a polyurethane foam layer, the trim cover having at least one aperture therein, said open recess and said trim cover defining a cavity;
(ii) closing said upper mold and said lower mold so that said upper mold is in contact with the upper outer surface of said trim cover;
(iii) placing a liquid foamable polyurethane composition in the open recess via the aperture of the trim cover;
(iv) allowing the polymeric composition to expand to fill substantially the open recess such that the first portion corresponds proportionally to the finished surface of the backrest; whereby the expanded polymeric composition adheres to the first portion of the cushion member and to the polyurethane foam layer of the trim cover.
PCT/CA1991/000095 1990-03-28 1991-03-22 Process for manufacturing a padded element Ceased WO1991014566A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
DE69110127T DE69110127T2 (en) 1990-03-28 1991-03-22 METHOD FOR PRODUCING A PADDED ELEMENT.
EP91906298A EP0521929B1 (en) 1990-03-28 1991-03-22 Process for manufacturing a padded element

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
US50008090A 1990-03-28 1990-03-28
US500,080 1990-03-28
US562,924 1990-08-06
US562,925 1990-08-06
US07/562,925 US5096639A (en) 1990-03-28 1990-08-06 Process for manufacturing a padded element
US07/562,924 US5089191A (en) 1990-03-28 1990-08-06 Process for manufacturing a padded element

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AT (1) ATE123250T1 (en)
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WO (1) WO1991014566A1 (en)

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WO1994019209A1 (en) * 1993-02-26 1994-09-01 Woodbridge Foam Corporation Moulding process for producing a vehicle seat
EP0738576A3 (en) * 1995-04-19 1997-04-02 Davidson Textron Inc Method and mould for making a panel with integral energy absorber & air duct
WO2000005050A1 (en) * 1998-07-23 2000-02-03 Grammer Ag Method for producing a padded object
FR2862578A1 (en) * 2003-11-21 2005-05-27 Cera Vehicle seat headrest manufacturing procedure consists of overmolding more rigid rear foam portion onto more supple front portion and frame
FR2914881A1 (en) * 2007-04-12 2008-10-17 Cera AUTOMOTIVE VEHICLE GARMENT COMPONENT COMPRISING A COATED LEATHER REST
WO2010010281A3 (en) * 2008-07-24 2010-03-25 Faurecia Sieges D'automobile Motor vehicle seat upholstery formation
US10040381B2 (en) 2015-04-16 2018-08-07 Faurecia Sieges D'automobile Alignment of motor vehicle seat cap pieces
US10137615B2 (en) 2013-08-02 2018-11-27 Faurecia Sieges D'automobile Method for forming motor vehicle seat uphosltery
US10457174B2 (en) 2013-08-02 2019-10-29 Faurecia Sieges D'automobile Forming of motor vehicle seat upholstery

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ES2711645T3 (en) * 2011-07-14 2019-05-06 Proprietect Lp Foam seat element and process and mold for its production

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Publication number Priority date Publication date Assignee Title
WO1994019209A1 (en) * 1993-02-26 1994-09-01 Woodbridge Foam Corporation Moulding process for producing a vehicle seat
US5400490A (en) * 1993-02-26 1995-03-28 Woodbridge Foam Corporation Method of molding a seat having anchoring means connected thereto
US5542747A (en) * 1993-02-26 1996-08-06 Woodbridge Foam Corporation Seat having a frame element of high-density, rigid foam
EP0738576A3 (en) * 1995-04-19 1997-04-02 Davidson Textron Inc Method and mould for making a panel with integral energy absorber & air duct
WO2000005050A1 (en) * 1998-07-23 2000-02-03 Grammer Ag Method for producing a padded object
EP1535795A1 (en) * 2003-11-21 2005-06-01 Centre d'Etude et de Recherche pour l'Automobile ( CERA) Method for producing a headrest by moulding in situ
FR2862578A1 (en) * 2003-11-21 2005-05-27 Cera Vehicle seat headrest manufacturing procedure consists of overmolding more rigid rear foam portion onto more supple front portion and frame
FR2914881A1 (en) * 2007-04-12 2008-10-17 Cera AUTOMOTIVE VEHICLE GARMENT COMPONENT COMPRISING A COATED LEATHER REST
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WO2010010281A3 (en) * 2008-07-24 2010-03-25 Faurecia Sieges D'automobile Motor vehicle seat upholstery formation
US8794708B2 (en) 2008-07-24 2014-08-05 Faurecia Sieges d'Autmobile Motor vehicle seat upholstery formation
US10137615B2 (en) 2013-08-02 2018-11-27 Faurecia Sieges D'automobile Method for forming motor vehicle seat uphosltery
US10457174B2 (en) 2013-08-02 2019-10-29 Faurecia Sieges D'automobile Forming of motor vehicle seat upholstery
US10040381B2 (en) 2015-04-16 2018-08-07 Faurecia Sieges D'automobile Alignment of motor vehicle seat cap pieces

Also Published As

Publication number Publication date
AU7480891A (en) 1991-10-21
DE69110127D1 (en) 1995-07-06
EP0521929A1 (en) 1993-01-13
CA2027471C (en) 1994-02-15
ATE123250T1 (en) 1995-06-15
CA2027471A1 (en) 1991-09-29
DE69110127T2 (en) 1996-01-04
EP0521929B1 (en) 1995-05-31

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