WO2010006257A2 - Flush quarter glass seal - Google Patents

Flush quarter glass seal Download PDF

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Publication number
WO2010006257A2
WO2010006257A2 PCT/US2009/050250 US2009050250W WO2010006257A2 WO 2010006257 A2 WO2010006257 A2 WO 2010006257A2 US 2009050250 W US2009050250 W US 2009050250W WO 2010006257 A2 WO2010006257 A2 WO 2010006257A2
Authority
WO
WIPO (PCT)
Prior art keywords
glass
elastomer
reinforcement member
seal assembly
window
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/US2009/050250
Other languages
French (fr)
Other versions
WO2010006257A3 (en
Inventor
Marc Brookman
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.)
Cooper Standard Automotive Inc
Original Assignee
Cooper Standard Automotive Inc
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
Application filed by Cooper Standard Automotive Inc filed Critical Cooper Standard Automotive Inc
Priority to MX2011000470A priority Critical patent/MX2011000470A/en
Priority to US13/003,703 priority patent/US8667739B2/en
Publication of WO2010006257A2 publication Critical patent/WO2010006257A2/en
Publication of WO2010006257A3 publication Critical patent/WO2010006257A3/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/16Sealing arrangements on wings or parts co-operating with the wings
    • E06B7/22Sealing arrangements on wings or parts co-operating with the wings by means of elastic edgings, e.g. elastic rubber tubes; by means of resilient edgings, e.g. felt or plush strips, resilient metal strips
    • E06B7/23Plastic, sponge rubber, or like strips or tubes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J10/00Sealing arrangements
    • B60J10/15Sealing arrangements characterised by the material
    • B60J10/18Sealing arrangements characterised by the material provided with reinforcements or inserts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J10/00Sealing arrangements
    • B60J10/30Sealing arrangements characterised by the fastening means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J10/00Sealing arrangements
    • B60J10/30Sealing arrangements characterised by the fastening means
    • B60J10/38Sealing arrangements characterised by the fastening means using magnetic means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J10/00Sealing arrangements
    • B60J10/70Sealing arrangements specially adapted for windows or windscreens
    • B60J10/74Sealing arrangements specially adapted for windows or windscreens for sliding window panes, e.g. sash guides
    • B60J10/79Sealing arrangements specially adapted for windows or windscreens for sliding window panes, e.g. sash guides for flush-glass windows, i.e. for windows flush with the vehicle body or the window frame

Definitions

  • This disclosure is directed to a seal assembly, and more particularly, an automotive seal of the type referred to as a glass seal. It finds particular application in association with an interface between adjacent movable front and rear windows.
  • the disclosure is preferably of the type where a thickness or transverse dimension of the seal is preferably minimized, and more preferably does not include any portion extending to an outer surface of the window so as to minimize overall thickness, reduce wind noise, minimize thickness of the sash seal so that wear of the belt strip is reduced, eliminate an unappealing appearance on the outside of the vehicle, and reduce the amount of material and associated expense and component weight associated therewith to the vehicle.
  • a glass seal assembly particularly an edge seal or sash seal, includes a rigid reinforcement member such as a thin metal or rigid polymer material (e.g., rigid thermoplastic or thermoset material) that is disposed in spaced relation from a first planar surface or interior surface of the window.
  • a rigid reinforcement member such as a thin metal or rigid polymer material (e.g., rigid thermoplastic or thermoset material) that is disposed in spaced relation from a first planar surface or interior surface of the window.
  • One of an elastomer or plastomer is provided between the reinforcement member and the inner surface of the window. This material is applied in a very thin, controlled layer thickness on the window surface or on the reinforcement member which are then joined together.
  • the reinforcement member is preferably a metal, although alternative materials may be used.
  • the reinforcement member has a portion extending in substantially parallel relation to the first planar surface of the window and includes another portion that extends beyond the edge of the window.
  • a method of forming a flush edge window seal assembly includes providing a first window member and a rigid reinforcement member, applying a thin layer of elastomer to a portion of one side of the reinforcement member and a first planar surface of the window, positioning at least a portion of the rigid reinforcement member on the first planar surface, and inserting the first window member, elastomer, and rigid reinforcement member in a mold.
  • the method further includes extruding the thin layer of elastomer onto the rigid reinforcement member.
  • the applying step may include coextruding the reinforcement member and elastomer together
  • the method further includes introducing a curable material into the mold, wherein at least a portion of the rigid reinforcement member is covered by the curable material.
  • the method includes introducing the curable material that is substantially identical to the thin layer of elastomer.
  • a primary benefit of the present disclosure is the ability to provide a much thinner weatherseal design.
  • Another benefit resides in the reduced wear associated with the belt line seal.
  • Still another advantage resides in the reduced component weight.
  • Figure 1 is an elevational view of a portion of an automotive vehicle, particularly illustrating the interface between front and rear window portions.
  • Figure 2 is a cross-sectional view of a conventional sash seal, taken generally along the line A-A of Figure 1.
  • Figure 3 is a cross-sectional view along the lines A-A of a portion of the seal assembly, i e , the initial preparatory step of forming same.
  • Figure 4 is a similar cross-sectional view illustrating the completed seal assembly
  • Figure 1 shows a portion of an automotive vehicle 100 and particularly, a front window 102 and a rear window 104.
  • each of the windows sometimes referenced to as glass, are moveable relative to a vehicle door or body in which they are received
  • conventional window moving apparatus such as a regulator may be included and form no part of the present disclosure, so that further discussion herein is deemed unnecessary.
  • the front and rear windows are separated by a gap 110 ( Figure 2).
  • a rear edge 102a of the front window is spaced from a front edge 104a of the rear window
  • the front and rear windows are substantially co-planar so that first or inner surfaces 102b, 104b are substantially co-planar and likewise the second or outer surfaces 102c, 104c are substantially co-planar.
  • a weatherseal assembly is provided at the gap between the windows. This is sometimes referred to as a sash seal or as a division bar between the front and rear windows.
  • the weatherseal assembly 112 includes a rigid reinforcement member 114, shown here as first and second metal components 116, 118 that are joined together along portions thereof, typically through a spot welding operation. Typically, the reinforcing components 116, 118 are stamped metal that are subsequently spot-welded together. Because of the welding operation, coated metal typically cannot be used since the spot-welding process would adversely impact any coating provided thereon.
  • the metal reinforcing member includes portions 116a, 118a that are received on opposite surfaces of the rear window. That is, component 116a is adjacent the inner surface 104b of the rear window, while component 118a is disposed adjacent the outer surface 104c. This provides desired rigidity and strength to the seal assembly.
  • the metal reinforcement member is then placed in a mold and an elastomer or plastomer material 130 is formed around the metal.
  • This molded material would preferably include at least one seal fin 132 having a low friction coating 134, for example, thereon
  • the metal with the molded material once it is cured, is then glued onto the rear window, particularly along edge 104a.
  • this seal assembly still results in materia! on the outer surface of the w ⁇ dow
  • the metal reinforcement member can be placed with the glass into a mold and the elastomer/plastomer 130 injected into the mold. Generally, however, this results in an undesired thickness of the elastomer. It - A - is also difficult to provide for injection of the elastomer between the glass and the metal reinforcement member.
  • the weatherseal assembly 212 of the present disclosure includes a rigid reinforcement member 214.
  • the reinforcement member is preferably a single-piece structure as opposed to an assembled piece that is formed from a welding operation of two separate components. It is common that the reinforcement member is metal, such as a stamped metal, to form a desired shape or configuration. It is also contemplated that the reinforcement member can be formed of a different material such as a rigid polymer, for example, a rigid thermoplastic or rigid thermoset material.
  • the metal can be purchased as a coated material to provide further protection and not encounter additional processing steps or expense as noted above in connection with the prior arrangement of Figure 2.
  • the coating not only protects the meal reinforcement member, but also advantageously enhances the bond with the elastomer/plastomer 230.
  • the metal reinforcement member can be bent to the desired shape for example in an in-line extrusion process. That is, a planar material is introduced at an upstream end of the line and one or more bending operations provide for deformation or progressive deformation of the reinforcement member into its final configuration.
  • portion 214a is preferably substantially planar. This portion is substantially planar and disposed in substantially planar relation with the inner surface 104b of the rear window A thin layer of material such as an elastomer 240 is applied to one of the reinforcement member or the inner surface 104b of the glass In a preferred arrangement, the thin layer is an elastomer that is preferably extruded onto the metal reinforcement member
  • the rigid re' ⁇ forcemept wenher is a ren-metaf and can be formed f rom an extrudable material, then the thin layer of elastomer 240 can be coextruded with the rigid reinforcement member.
  • the thin layer is preferably provided on one surface of portion 214a that is disposed in facing relation with the inner surface 104b of the rear window.
  • the manufacturer need not be concerned with applying too much pressure against the reinforcement member or metal and, if desired, an elastomer- or rubber-to-metal adhesive may be provided on the metal to enhance the bond between the thin layer and the reinforcement member. Even under high pressures, the thin layer is maintained between the metal reinforcement member and the window glass.
  • the elastomer/plastomer material 230 is represented in dotted line to indicate that this material is added in a subsequent step of the process. That is, the thin layer of elastomer/plastomer 240 is sandwiched between the reinforcement member 214 and the inner surface of the rear window 104. That sub-assembly is then placed in a mold and the elastomer material 230 is next injected into the mold. This assures that a flush interface is achieved, i.e., the outer surface 104c of the rear window (and likewise the outer surface 102c of the front window) is devoid of any seal material.
  • edge 104a of the rear window is encased in the elastomer 230, and a first seal fin 250 extends into sealing engagement with edge 102a of the front window.
  • a second seal fin 252 is formed in the molding operation.
  • the second seal fin 252 is shown in an undeformed state in Figures 3 and 4, although one skilled in the art will recognize that seal fins 250, 252 are preferably biased into sealing engagement with the respective surfaces 102a, 102b of the front window.
  • the seal assembly advantageously forms a strong bond with the rear window, while the r einforcement member provides the desired rigidity and strength to the seal assembly,
  • the structure also improves the aesthetics or appearance on the outside of the vehicle because of the flush nature of the seal.
  • Manufacture in accordance with the teachings of this disclosure also reduces the amount of material required and substantially reduces the component weight by approximately thirty percent (30%) or more.
  • the improved manufacturing process is highly desirable since the process provides an extruded or co-extruded preform of elastomer on the reinforcement member The manufacturer can carefully control the provision of a very thin layer of elastomer to reduce the overall thickness, and particularly reduce the thickness of the material between the glass and the reinforcement member, which is virtually impossible via an insert injection molding process.
  • the reinforcement member is preferably a thin metal, such as a stamped metal, or roll-formed metal, or even a combination of those forming processes.
  • reinforcement is not limited to metal and could be made of a thermoplastic or a thermosetting material, if desired. This will find particular application for example in a rear movable window glass in a hard-top vehicle, as well as the windows associated with convertible vehicles.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Seal Device For Vehicle (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)

Abstract

A method and resultant apparatus for a window seal assembly is shown and described. A thin layer of elastomer is introduced between a reinforcement member and a first surface of a window member. The subassembly of the glass member, elastomer, and rigid reinforcement is then introduced into a mold. Preferably, the thin layer of elastomer is provided by an extrusion process, such as on a metal reinforcement member, or as a co-extrusion process when an extruded reinforcement member is formed. A curable, elastomer/plastomer material is then injection molded to provide a flush glass appearance where an outer surface of the window is devoid of any seal material.

Description

FLUSH QUARTER GLASS SEAL
Background of the Disclosure
[0001] This disclosure is directed to a seal assembly, and more particularly, an automotive seal of the type referred to as a glass seal. It finds particular application in association with an interface between adjacent movable front and rear windows. The disclosure is preferably of the type where a thickness or transverse dimension of the seal is preferably minimized, and more preferably does not include any portion extending to an outer surface of the window so as to minimize overall thickness, reduce wind noise, minimize thickness of the sash seal so that wear of the belt strip is reduced, eliminate an unappealing appearance on the outside of the vehicle, and reduce the amount of material and associated expense and component weight associated therewith to the vehicle.
[0002] Thus, a need exists for a new sash seal or flush quarter glass seal, for example, that is mounted over an edge of a window and overcomes the noted problems enumerated above.
Summary of the Disclosure
[0003] A glass seal assembly, particularly an edge seal or sash seal, includes a rigid reinforcement member such as a thin metal or rigid polymer material (e.g., rigid thermoplastic or thermoset material) that is disposed in spaced relation from a first planar surface or interior surface of the window. One of an elastomer or plastomer is provided between the reinforcement member and the inner surface of the window. This material is applied in a very thin, controlled layer thickness on the window surface or on the reinforcement member which are then joined together. [0004] The reinforcement member is preferably a metal, although alternative materials may be used.
[0005] The reinforcement member has a portion extending in substantially parallel relation to the first planar surface of the window and includes another portion that extends beyond the edge of the window.
[0006] A method of forming a flush edge window seal assembly includes providing a first window member and a rigid reinforcement member, applying a thin layer of elastomer to a portion of one side of the reinforcement member and a first planar surface of the window, positioning at least a portion of the rigid reinforcement member on the first planar surface, and inserting the first window member, elastomer, and rigid reinforcement member in a mold.
[0007] The method further includes extruding the thin layer of elastomer onto the rigid reinforcement member.
[0008] The applying step may include coextruding the reinforcement member and elastomer together
[0009] The method further includes introducing a curable material into the mold, wherein at least a portion of the rigid reinforcement member is covered by the curable material.
[0010] The method includes introducing the curable material that is substantially identical to the thin layer of elastomer.
[0011] A primary benefit of the present disclosure is the ability to provide a much thinner weatherseal design.
[0012] Another benefit resides in the reduced wear associated with the belt line seal.
[0013] Still another advantage resides in the reduced component weight.
[0014] Yet another attribute is a more aesthetically pleasing seal assembly.
[0015] Still other features and benefits of the invention will become more apparent from and understanding the following detailed description of the disclosure.
Brief Description of the Drawings
[0016] Figure 1 is an elevational view of a portion of an automotive vehicle, particularly illustrating the interface between front and rear window portions.
[0017] Figure 2 is a cross-sectional view of a conventional sash seal, taken generally along the line A-A of Figure 1.
[0018] Figure 3 is a cross-sectional view along the lines A-A of a portion of the seal assembly, i e , the initial preparatory step of forming same.
[0019] Figure 4 is a similar cross-sectional view illustrating the completed seal assembly
Detailed Description of the Preferred Embodiments
[0020] Figure 1 shows a portion of an automotive vehicle 100 and particularly, a front window 102 and a rear window 104. In this arrangement, it is contemplated that each of the windows, sometimes referenced to as glass, are moveable relative to a vehicle door or body in which they are received For example, conventional window moving apparatus such as a regulator may be included and form no part of the present disclosure, so that further discussion herein is deemed unnecessary. The front and rear windows are separated by a gap 110 (Figure 2). In other words, a rear edge 102a of the front window is spaced from a front edge 104a of the rear window Generally, the front and rear windows are substantially co-planar so that first or inner surfaces 102b, 104b are substantially co-planar and likewise the second or outer surfaces 102c, 104c are substantially co-planar.
[0021] As shown in Figure 2, a weatherseal assembly is provided at the gap between the windows. This is sometimes referred to as a sash seal or as a division bar between the front and rear windows. The weatherseal assembly 112 includes a rigid reinforcement member 114, shown here as first and second metal components 116, 118 that are joined together along portions thereof, typically through a spot welding operation. Typically, the reinforcing components 116, 118 are stamped metal that are subsequently spot-welded together. Because of the welding operation, coated metal typically cannot be used since the spot-welding process would adversely impact any coating provided thereon. Subsequently, the metal is coated for protective purposes The metal reinforcing member includes portions 116a, 118a that are received on opposite surfaces of the rear window. That is, component 116a is adjacent the inner surface 104b of the rear window, while component 118a is disposed adjacent the outer surface 104c. This provides desired rigidity and strength to the seal assembly. The metal reinforcement member is then placed in a mold and an elastomer or plastomer material 130 is formed around the metal. This molded material would preferably include at least one seal fin 132 having a low friction coating 134, for example, thereon In such an arrangement, the metal with the molded material, once it is cured, is then glued onto the rear window, particularly along edge 104a. As is evident, even though attempts are made to minimize the amount of material on the outer surface 104c this seal assembly still results in materia! on the outer surface of the wπdow
[0022] It is also contemplated that the metal reinforcement member can be placed with the glass into a mold and the elastomer/plastomer 130 injected into the mold. Generally, however, this results in an undesired thickness of the elastomer. It - A - is also difficult to provide for injection of the elastomer between the glass and the metal reinforcement member.
[0023] An improved weatherseal and a method of forming same is shown in
Figures 3 and 4. The reference numerals regarding the windows are maintained for purposes of consistency, while new reference numerals are provided for the weatherseal assembly. More particularly, the weatherseal assembly 212 of the present disclosure includes a rigid reinforcement member 214. As evident in Figures 3 and 4, the reinforcement member is preferably a single-piece structure as opposed to an assembled piece that is formed from a welding operation of two separate components. It is common that the reinforcement member is metal, such as a stamped metal, to form a desired shape or configuration. It is also contemplated that the reinforcement member can be formed of a different material such as a rigid polymer, for example, a rigid thermoplastic or rigid thermoset material. Likewise, if metal is used, the metal can be purchased as a coated material to provide further protection and not encounter additional processing steps or expense as noted above in connection with the prior arrangement of Figure 2. The coating not only protects the meal reinforcement member, but also advantageously enhances the bond with the elastomer/plastomer 230. More particularly, the metal reinforcement member can be bent to the desired shape for example in an in-line extrusion process. That is, a planar material is introduced at an upstream end of the line and one or more bending operations provide for deformation or progressive deformation of the reinforcement member into its final configuration.
[0024] Of particular note with respect to the reinforcement structure is that portion 214a is preferably substantially planar. This portion is substantially planar and disposed in substantially planar relation with the inner surface 104b of the rear window A thin layer of material such as an elastomer 240 is applied to one of the reinforcement member or the inner surface 104b of the glass In a preferred arrangement, the thin layer is an elastomer that is preferably extruded onto the metal reinforcement member However, it is also contemplated that if the rigid re'πforcemept wenher is a ren-metaf and can be formed from an extrudable material, then the thin layer of elastomer 240 can be coextruded with the rigid reinforcement member. The thin layer is preferably provided on one surface of portion 214a that is disposed in facing relation with the inner surface 104b of the rear window. By extruding or co-extruding the elastomer, one can be assured that a controlled, thin elastomer layer is achieved between the reinforcement member and the window glass, This is to be contrasted with the arrangement of the prior art where careful control could not be effectively achieved. The reinforcement member with this uncured, thin layer of elastomer is introduced into a mold and after which a moldable material 230 is next introduced into the mold to at least partially encompass the reinforcement member. The thin layer 240 and the plastomer 230 do not have to be but could be the same material. The manufacturer need not be concerned with applying too much pressure against the reinforcement member or metal and, if desired, an elastomer- or rubber-to-metal adhesive may be provided on the metal to enhance the bond between the thin layer and the reinforcement member. Even under high pressures, the thin layer is maintained between the metal reinforcement member and the window glass.
[0025] As shown in Figure 3, the elastomer/plastomer material 230 is represented in dotted line to indicate that this material is added in a subsequent step of the process. That is, the thin layer of elastomer/plastomer 240 is sandwiched between the reinforcement member 214 and the inner surface of the rear window 104. That sub-assembly is then placed in a mold and the elastomer material 230 is next injected into the mold. This assures that a flush interface is achieved, i.e., the outer surface 104c of the rear window (and likewise the outer surface 102c of the front window) is devoid of any seal material. As shown here, edge 104a of the rear window is encased in the elastomer 230, and a first seal fin 250 extends into sealing engagement with edge 102a of the front window. Likewise, a second seal fin 252 is formed in the molding operation. The second seal fin 252 is shown in an undeformed state in Figures 3 and 4, although one skilled in the art will recognize that seal fins 250, 252 are preferably biased into sealing engagement with the respective surfaces 102a, 102b of the front window.
[0026] Once cured, the seal assembly advantageously forms a strong bond with the rear window, while the reinforcement member provides the desired rigidity and strength to the seal assembly,
[0027] By this structure, the thickness of the seal is substantially reduced.
This advantageously reduces undesired wear on the belt strip, such as when the rear window is raised and lowered relative to the door. The structure also improves the aesthetics or appearance on the outside of the vehicle because of the flush nature of the seal. Manufacture in accordance with the teachings of this disclosure also reduces the amount of material required and substantially reduces the component weight by approximately thirty percent (30%) or more. The improved manufacturing process is highly desirable since the process provides an extruded or co-extruded preform of elastomer on the reinforcement member The manufacturer can carefully control the provision of a very thin layer of elastomer to reduce the overall thickness, and particularly reduce the thickness of the material between the glass and the reinforcement member, which is virtually impossible via an insert injection molding process.
[0028] The reinforcement member is preferably a thin metal, such as a stamped metal, or roll-formed metal, or even a combination of those forming processes. As noted above, reinforcement is not limited to metal and could be made of a thermoplastic or a thermosetting material, if desired. This will find particular application for example in a rear movable window glass in a hard-top vehicle, as well as the windows associated with convertible vehicles.
[0029] The invention has been described with reference to the preferred embodiment. Modifications and alterations will occur to others upon reading and understanding this specification. It is intended to include all such modifications and alterations in so far as they come within the scope of the appended claims or the equivalents thereof

Claims

Having thus described the invention, it is now claimed:
1. A flush edge of glass seal assembly comprising: a first glass member having first and second opposed planar surfaces interconnected along an edge; a rigid reinforcement member spaced from the first planar surface of the glass; an elastomer interposed between at least the reinforcement member and the first planar surface of the glass, and the elastomer also extending along the glass edge while the second planar surface is devoid of elastomer.
2. The glass seal assembly of claim 1 wherein the rigid reinforcement member is metal,
3. The glass seal assembly of claim 1 wherein the elastomer is a rubber.
4. The glass seal assembly of claim 1 wherein the elastomer includes a seal lip formed therealong contoured for sealing engagement with an adjacent, second glass member.
5. The glass seal assembly of claim 1 wherein the reinforcement member extends in substantially parallel relation to the first planar surface of the glass member and includes a portion that extends beyond the glass edge.
6. The glass seal assembly of claim 1 further comprising a second glass member disposed in substantially planar relation with the first glass member.
7. The glass seal assembly of claim 6 wherein the first glass member is a rear quarter glass panel and the second glass member is a front glass window of an automotive vehicle.
8. The glass seal assembly of claim 7 wherein the reinforcement member overlaps at least portions of each of the front and rear glass members.
9 A method of forming a flush edge window seal assembly comprising providing a first window member having first and second opposed planar surfaces interconnected along an edge; providing a rigid reinforcement member, applying a thin layer of elastomer to a portion of one of the reinforcement member and the first planar surface; positioning at least a portion of a rigid reinforcement member on the first planar surface with the thin layer of elastomer therebetween, and inserting the first glass member, elastomer, and rigid reinforcement member in a mold
10. The method of claim 9 wherein the applying step includes extruding the thin layer of elastomer onto the rigid reinforcement member
11. The method of claim 10 wherein the applying step includes coextruding the reinforcement member and the elastomer.
12. The method of claim 9 of using an elastomer to metal adhesive on the reinforcement member to enhance a bond between the elastomer and the reinforcement member.
13. The method of claim 9 wherein the elastomer is uncured at the time of the inserting step
14. The method of claim 9 further comprising coating the reinforcement member with a protective material
15. The method of claim 9 further comprising applying an elastomer to metal adhesive to the reinforcement member
16 The method of claim 9 further comprising introducing a curable material into the mold wherein at least a portion of the rigid reinforcement member is covered by the curable material.
17. The method of claim 15 wherein the curable material is substantially identical to the thin layer of elastomer.
18. The method of claim 15 wherein the curable material is an elastomer that covers the reinforcement member and a portion of the first surface of the glass.
PCT/US2009/050250 2008-07-11 2009-07-10 Flush quarter glass seal Ceased WO2010006257A2 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
MX2011000470A MX2011000470A (en) 2008-07-11 2009-07-10 Flush quarter glass seal.
US13/003,703 US8667739B2 (en) 2008-07-11 2009-07-10 Flush quarter glass seal

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US8012308P 2008-07-11 2008-07-11
US61/080,123 2008-07-11

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WO2010006257A2 true WO2010006257A2 (en) 2010-01-14
WO2010006257A3 WO2010006257A3 (en) 2010-04-29

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WO (1) WO2010006257A2 (en)

Cited By (5)

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FR2976860A1 (en) * 2011-06-24 2012-12-28 Peugeot Citroen Automobiles Sa Sealing assembly for sealing interface of pillar-side windows of car equipped with frameless doors, has joint element including fixing portion to be fixed to center pillar, and sealing portion to be clamped between edges of windows
WO2018178574A1 (en) 2017-03-30 2018-10-04 Saint-Gobain Glass France Glazing comprising at least one profiled bead for the connection between two windows and window for such a glazing
WO2018178572A1 (en) 2017-03-30 2018-10-04 Saint-Gobain Glass France Glazing comprising a profiled bead for clipping on a clip-on cover part
WO2018178575A1 (en) 2017-03-30 2018-10-04 Saint-Gobain Glass France Glazing comprising a single profiled bead for the connection between two windows and window for such a glazing
DE102017214420B4 (en) * 2017-08-18 2025-02-06 Volkswagen Aktiengesellschaft Sealing arrangement for two windows of a motor vehicle that can be moved relative to one another from a closed position to an open position

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GB201018924D0 (en) * 2010-11-09 2010-12-22 Airbus Operations Ltd Seal
KR20130006962A (en) * 2011-06-28 2013-01-18 시게이트 테크놀로지 인터내셔날 Hard disk drive
US8646215B2 (en) * 2011-09-08 2014-02-11 Ford Global Technologies, Llc Flush glass assembly interfaces
WO2016172483A1 (en) * 2015-04-24 2016-10-27 Quick Fix Solutions, Inc. Sealing device and method of installation
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US20110187060A1 (en) 2011-08-04

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