WO2010034302A2 - Dispositif de renforcement de fond destiné à un contenant, et son procédé de production - Google Patents

Dispositif de renforcement de fond destiné à un contenant, et son procédé de production Download PDF

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Publication number
WO2010034302A2
WO2010034302A2 PCT/DE2009/001348 DE2009001348W WO2010034302A2 WO 2010034302 A2 WO2010034302 A2 WO 2010034302A2 DE 2009001348 W DE2009001348 W DE 2009001348W WO 2010034302 A2 WO2010034302 A2 WO 2010034302A2
Authority
WO
WIPO (PCT)
Prior art keywords
carrier components
protective material
carrier
steel
plastic
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/DE2009/001348
Other languages
German (de)
English (en)
Other versions
WO2010034302A8 (fr
WO2010034302A3 (fr
Inventor
Wilhelm Helling
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.)
Absolut Komposit & Co KG GmbH
Original Assignee
Absolut Komposit & Co KG GmbH
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 Absolut Komposit & Co KG GmbH filed Critical Absolut Komposit & Co KG GmbH
Publication of WO2010034302A2 publication Critical patent/WO2010034302A2/fr
Publication of WO2010034302A3 publication Critical patent/WO2010034302A3/fr
Publication of WO2010034302A8 publication Critical patent/WO2010034302A8/fr
Anticipated expiration legal-status Critical
Priority to DKPA201100321A priority Critical patent/DK201100321A/en
Ceased legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/74Large containers having means for heating, cooling, aerating or other conditioning of contents
    • B65D88/745Large containers having means for heating, cooling, aerating or other conditioning of contents blowing or injecting heating, cooling or other conditioning fluid inside the container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/74Large containers having means for heating, cooling, aerating or other conditioning of contents
    • B65D88/742Large containers having means for heating, cooling, aerating or other conditioning of contents using ventilating sheaths
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D90/00Component parts, details or accessories for large containers
    • B65D90/02Wall construction
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/02Large containers rigid
    • B65D88/12Large containers rigid specially adapted for transport

Definitions

  • the invention relates to a bottom device for a container, in particular refrigerated containers, and a method for their preparation.
  • Containers are used to transport food or other perishable goods.
  • the refrigerated containers are internally lined with insulating materials, such as polyurethane foam, to provide insulation. Since the insulating materials are not mechanically stable enough to withstand a point load of the pallets containing the perishable goods, a bottom device which distributes the load of the pallets evenly, thus making a surface load from a point load, is placed on the insulating material disposed on the container bottom. Since this floor device still has to allow a uniform and / or predeterminable flow of air under the pallets containing the perishable goods, a shape of this floor device has prevailed, which is referred to as bottom grid, or internationally Gräting or T-grade.
  • the bottom device must be resistant to corrosion, as a container is not completely sealed, so that warmer and wetter outside air enters the container and condenses on the cooled goods, with the result that condensation moisture reaches the Gräting.
  • ground fixtures that are designed as floor gratings made of corrosion-resistant aluminum and also referred to as "aluminum T-grade” or “aluminum T-grade container floor” have prevailed.
  • Fig. 9 shows a prior art ground device 101 from a view of an end face.
  • the all-aluminum base apparatus 101 forms a grating with elongate T-shaped support components 110 disposed on a floor 112.
  • a ridge 110 is formed on a floor 112 from ridges 110. Cooling and exhaust air is passed through the flow gap between two carrier components 110.
  • the carrier components 110 have a head 116, which is provided with a horizontal support surface 117, and a body 118. Due to the high modulus of elasticity of aluminum, which is 70 kN / mm 2 , the carrier components can be made relatively thin, ie with a small horizontal dimension of the carrier body.
  • a disadvantage of these known ground devices made of corrosion-resistant aluminum is the relatively high price.
  • the object of the invention is to provide a cheaper ground device for a container, in particular reefer containers, wherein the performance characteristics of the known ground devices are at least achieved.
  • the invention encompasses the idea of a base device for a container, in particular a refrigerated container, which comprises at least two carrier components on which a protective material is arranged.
  • the carrier components are at least partially made of steel.
  • "at least partially made of steel” means, in particular, that the carrier components may be made of steel and of at least one other material.
  • the protective material is required because the bottom device may be exposed to a mechanical and / or surface damaging load in a refrigerated container.
  • the floor device may include a plurality of spaced support components to form a bottom shelf. Because of that Carrier components are spaced, disfigures on the one hand, a flow gap between the carrier components. So it is possible that the goods supplied cooling air and exhaust air is discharged. Furthermore, the distances between the carrier components are predetermined so that the cooling air, which is blown by means of pressurization in the container interior, between the carrier components is guided upward in the direction of the goods, or that the exhaust air through these distances down again in the Flow spaces away from the goods to be cooled can escape.
  • the ground device according to the invention is thus able to provide a load distribution from a point load to a surface load, as required for a bearing of goods to be cooled on an insulating, mechanically yielding material, and to allow the corresponding flow conditions.
  • the carrier components each provide a spacer between the goods and the bottom portion and / or the underlying insulating material.
  • the inventive considerations also take into account that steel has a very high modulus of elasticity of 210 kN / mm 2 , but is not resistant to corrosion. Considerations for an alternative lead to plastic, which indeed has excellent corrosion resistance, but due to the small modulus of elasticity of 3 kN / mm 2 and the corresponding required material use is not suitable to completely replace the aluminum of the known floor devices.
  • a preferred embodiment of the invention therefore provides that at least the carrier components are made of a coated on both sides with a coating plastic steel.
  • This combination of steel and plastic makes it possible to produce a stable and corrosion-resistant floor device.
  • Stable means, in particular, that the carrier component has a sufficient flexural rigidity.
  • coating plastic is meant in particular the plastic with which the steel profile is coated. It is important in this context that the bottom portion of the carrier components is resistant to corrosion, as accumulates in a refrigerated container in the bottom area usually condensation, which will be contaminated. For reasons of food hygiene, regular cleaning of the floor sections is required. Therefore, it can preferably be provided to provide the upwardly facing sides of the floor sections with a further protective measure. Preferably, the use of a special film may be provided here.
  • the special foil can preferably be provided with non-stick properties.
  • the surface of the carrier components may preferably be provided with a predetermined microstructure, so that the lotus effect occurs.
  • the surface may be provided with peaks of suitable size and density. Then a cleaning by means of a steam jet device is particularly facilitated.
  • each of the at least two carrier components has a body oriented substantially perpendicular to the bottom section and a head with a carrying surface oriented substantially parallel to the bottom section.
  • each of the carrier components forms a T-shape or an H-shape on the bottom portion. Since the T-shape and the FI-shape are equivalent in terms of the function of the ground device, in the following, only the T-shape will be discussed.
  • the goods or pallets may then be supported on the support surfaces of the T-shaped carrier components.
  • substantially perpendicular it is meant herein that within the scope of measurement accuracy and practical, industrial design, a vertical, and “substantially parallel”, is meant to provide a parallel arrangement within the scope of measurement accuracy and practical, industrial design becomes.
  • Angular deviations of less than 15 °, preferably less than 10 °, more preferably less than 5 °, are considered to be within the scope of measurement accuracy.
  • the carrier components extend in the manner of a grating.
  • the carrier components can be formed in different ways. It is possible to produce several carrier components in one piece by a suitable molding process from a steel sheet. But it is also possible to arrange several carrier components individually next to each other. For example, a plurality of carrier components may be arranged side by side in such a way that their bottom sections overlap at least partially. In this case, it is possible to carry out maintenance and / or repair work on the floor device without having to replace the entire floor device immediately.
  • a development of the invention provides that the protective material arranged on the carrier components encompasses at least one region of the carrier component.
  • the plastic cap will be designed as a plastic profile.
  • the carrier components made of plastic-coated steel are protected against damaging effects. A damaging effect could cause the steel to corrode at the location where the layer is damaged, thereby adversely affecting the stability of the ground device.
  • the protective material embraces the head. In this way, the head is protected even during side attacks.
  • the protective material may for example be made of fiberglass, but other plastics and aluminum and / or stainless steel are also usable.
  • the carrier components are made of coated on both sides with coating plastic steel profile parts.
  • the carrier components and the bottom portion are coated with a special plastic film.
  • This plastic film may for example be made of polyethylene, but also of any other suitable for the production of special films, plastic.
  • a development of the invention provides that an interior of the respective carrier component is filled with a filling plastic.
  • the interior are so dimensioned and the filling plastic selected such that a shear-resistant adhesive bond is provided.
  • the carrier components may be formed such that there are cut surfaces of the profile steel coated on both sides with coating plastic at the top of the respective carrier component. At the interfaces of the section steel, the steel is open and therefore prone to corrosion. Not there can be ruled out that moisture penetrates under the protective material, the steel profile is provided at the cut surfaces with a corrosion protection. It can also be provided that a corrosion protection is applied to kinks of the steel profile or other vulnerable points of the steel profile.
  • the carrier components may be formed together with the protective material such that the protective material engages over a plurality of carrier components, so that a corrosion protection as described above is not required.
  • the protective material arranged on the carrier components engages over at least two carrier components. More preferably, the protective material arranged on the carrier components engages over all carrier components on the bottom device. Then the risk of damaging the bottom sections is reduced.
  • the protective material is formed as a plate which is placed on the carrier components of a ground device.
  • recesses are provided in the plate, which are provided to allow a positive connection with the heads of the carrier components. Then the carrier components are fixed relative to each other and to the plate.
  • the recesses advantageously embrace the heads of the carrier components.
  • a development of the invention preferably provides that the carrier components extend along the bottom section in the manner of a T-grade arrangement.
  • the carrier components form with the bottom portion a grate, or a grating, which is formed by at least two parallel, longitudinally extending carrier components.
  • a plurality of parallel, longitudinally extending carrier components may be provided.
  • the invention provides that the protective material is formed as a perforated plate.
  • the protective material is formed as a perforated plate.
  • air exchange between a lower side of the protective material and an upper side of the protective material is enabled.
  • an air flow can be maintained, which preferably supports cooling of the goods to be transported.
  • the holes provided in the plate can be produced by punching or laser cutting or otherwise known per se.
  • the arrangement, density, number, Shape and dimensions of the holes are preferably matched to the requirements in terms of weight and tensile strength of the entire device.
  • an array of slots is provided, the main axis of the longitudinal extent of the protective material formed as a perforated plate an angle between 0 ° and 90 °, preferably between 15 ° and 75 °, more preferably between 30 ° and 60 ° and even more preferably an angle of 45 ° describes.
  • oval holes or square holes may be provided.
  • a combination of different hole shapes may be provided.
  • the protection material formed as a perforated plate recesses, which are arranged between the holes. In these recesses upper portions of the carrier components, so the heads of the carrier components, preferably engage such that the perforated plate is non-displaceable.
  • the invention further provides a method for producing a bottom device for a container, in particular a refrigerated container, as described above, comprising the steps of: providing steel profile parts coated on both sides with coating plastic; Stringing together the steel profile parts so that an arrangement of carrier components is formed; Placing a protective material on surfaces of heads of the respective carrier components.
  • a preferred embodiment provides that an interior of the carrier components is filled with a filling plastic.
  • steel profiles coated on both sides with coating plastic are juxtaposed in the approximate shape of a rectangular U.
  • a protection material or a plastic profile formed as a plastic cap is applied to the head region of the carrier components. Thereafter, the Stalilprofiler be pulled apart.
  • a filler plastic is introduced, which may be a shear-resistant adhesive bond. Alternatively, the filler plastic is filled into prefabricated carrier components.
  • the carrier components have a head width of 10 mm, a socket width of 20 mm and a height of 57 mm.
  • the bottom portion extends to the left and right sides of the base with a length of 40 mm, so that a support component has a total horizontal length of 100 mm.
  • the steel material constituting the carrier component may be about 0.8 mm thick. This thickness of the steel material may be composed of a thickness of the steel of about 0.63 mm and a two-sided coating of about 0.03 mm per side. The provision of a special film can make a further contribution to the thickness of the steel material.
  • a thickness of the protective material is 10 mm.
  • a total height of the carrier components together with the uppermost surface of the protective material is 63 mm.
  • the depth of the recess in the protective material may be 4 mm.
  • Fig. 1 is a bottom device for a container, in particular refrigerated containers, in one
  • FIG. 2 shows schematically individual stages in carrying out a method for producing the
  • Fig. 3a is another ground device for a container, in particular refrigerated containers, in
  • FIG. 3b shows a carrier component of the ground device from FIG. 3a
  • FIG. 4a shows a still further bottom device for a container, in particular refrigerated container, in view of an end face
  • FIG. 4b shows a carrier component of the ground device from FIG. 4a;
  • FIG. 5a shows a still further base device for a container, in particular refrigerated container, in view of an end face;
  • Fig. 5b is a carrier component of the bottom device of Fig. 5 a;
  • FIG. 6a shows a protective material designed as a perforated plate, wherein the holes are formed as elongated holes;
  • FIG. Fig. 6b is a detail of Fig. 6a;
  • FIG. 7 a shows a protective material designed as a perforated plate, wherein the holes are formed as oval holes;
  • FIG. Fig. 7b is a detail of Fig. 7a;
  • FIG. 8 a shows a protective material designed as a perforated plate, wherein the holes are formed as square holes;
  • FIG. 8b shows a detail from FIG. 8a;
  • FIG. and Fig. 9 is a bottom device, as known from the prior art.
  • Fig. 1 shows a bottom device for a container in a view from a front side.
  • the bottom device for a container comprises at least two carrier components 10, which are arranged on a bottom portion 12, wherein at least one of the carrier components 10 and the bottom portion 12 is at least partially made of steel.
  • both the carrier component 10 and the bottom portion 12 are made of a steel coated on both sides with a coating plastic 14.
  • each of the carrier components 10 has a body 18 aligned substantially perpendicular to the bottom portion and a head 16 having a support surface 17 aligned substantially parallel to the bottom portion 12.
  • the head 16 of the carrier component 10 is provided with a encompassing plastic cap 28.
  • the carrier components or carrier sections 10, 24, 24 'and the bottom sections 12, 26 are made of steel profile parts or steel profile sections 2, 22', 24 ', 24', 26 coated on both sides with coating plastic.
  • the steel profile sections required for the production of the floor device are shaped such that two adjacent steel profiles each form a carrier component arranged between two floor sections.
  • the carrier components 10 and the bottom portion 12 are coated with a plastic film.
  • the plastic film can also be designed as an anti-adhesive layer or provided with an anti-adhesive layer.
  • the surface may be provided with peaks of suitable size and density. Then a particularly easy cleaning by means of, for example, a steam jet device is possible.
  • the interior 25 formed within the respective carrier component 10 is filled with a filling plastic.
  • This filler plastic creates a shear-resistant adhesive bond, so that the carrier components act as a total of shear-resistant spacers.
  • the carrier components 10 extend in the manner of a T-grade arrangement on the bottom portion 26 in the longitudinal direction.
  • a bottom grid is formed, which consists of a plurality of parallel extending, in the frontal section T-shaped webs.
  • FIG. 2 shows schematically individual stages in the execution of a method for producing the base device according to FIG. 1.
  • the method comprises the following steps: a) provision of steel profile parts coated on both sides with coating plastic with sections 22, 22 '. b) juxtaposing the steel profile parts 22 and 22 ', so that carrier components 10 are formed, as shown in Fig. 2 a. c) providing the head 16 of the respective carrier component 10, each with a encompassing plastic cap 28 as shown in Fig. 2 b. d) pulling apart the steel profile parts, so that in each case a carrier component 10, an interior 25 is formed and the plastic cap 28 is fixed to the head 16. e) filling the interior 25 of the carrier components 10 with a filling plastic 31.
  • FIG. 3a shows a further bottom device for a container, in particular refrigerated container, in view of an end face.
  • FIG. 3b shows a single carrier component 10 'of the bottom device from FIG. 3a in an end view.
  • the carrier component 10 ' is at least partially made of steel 14, preferably of a steel 14 coated on both sides with a coating plastic.
  • the carrier component has a body 18 which is arranged substantially perpendicular to the bottom section 12 and on which there is a head or copy area 16 with a carrying surface 17 aligned substantially perpendicular to the bottom section 12 of the carrier component 10 '.
  • the support surface 17 is intended to support the protective material 28 '.
  • recesses 15 are advantageously provided in the protective material 28 ', which are formed in a form-fitting manner with the heads 16 of the carrier components.
  • the individually formed carrier components 10 ' are arranged regularly adjacent to one another such that overlapping regions 13 are formed on the bottom sections 12.
  • the carrier components have a head width KB of 10 mm, a base width SB of 20 mm and a height h of 57 mm.
  • the bottom portion extends on the left and right sides of the base with a length of 40 mm, so that a support component 10 'has a total horizontal length A' of 100 mm.
  • the steel material 14 constituting the carrier component may have a thickness d of about 0.8 mm. This thickness of the steel material may be composed of a thickness of the steel of about 0.63 mm and a two-sided coating of about 0.03 mm per side. The provision of a special film can make a further contribution to the thickness of the steel material.
  • a thickness D of the protective material 28 ' is 10 mm.
  • a total height H of the carrier components 10 'together with the uppermost surface of the protective material 28' is 63 mm.
  • the depth t of the recess in the protective material 28 ' may be 4 mm.
  • Fig. 4 shows a still further ground device for a container, in particular refrigerated containers, in view of a front side.
  • the floor device comprises a plurality of support components 210 that form a body 218 and a bottom portion 212.
  • the support components are at least partially made from steel 214, preferably from coated steel 214 as described above.
  • the carrier components 210 are arranged in contact with each other and glued together as parts 224 and 224 'so that they are a Gräting form.
  • the head 216 consists of the subheads 216 'and 216 ", which together form a support surface 217 upon which the protective material 228 rests,
  • the width of a subhead is KB / 2
  • the support component has a length A'
  • the thickness of the protective material is D
  • the distances between the profile elements 228 of the protective material 228 is A2
  • the width of the protective material is BPR
  • the protective material 228 is preferably formed such that it surrounds the heads 216, so that a corrosion protection is provided at the locations 233.
  • the heads 216 may be formed by simply bending the steel material 214 inwardly or by double inward bending as shown in Figure 4.
  • the on the heads 216 stored protection material 228 is shown in Fig.
  • the protective mat Erial also as a plate, for example as a perforated plate, as shown for example in Figs. 6 to 8, may be formed.
  • the support surfaces 217 of the heads can be glued to the protective material 228, depending on the configuration of the heads and the recesses can also be dispensed with bonding.
  • FIG. 5 shows a still further base device for a container, in particular a refrigerated container, in a view from one end face.
  • the floor device comprises a plurality of support components 310, which form a body 318 and a bottom section 312.
  • the carrier components are at least partially made of steel 314, preferably of coated steel 314 as described above.
  • the carrier components 310 are arranged in contact with each other and glued together as parts 324 and 324 'so that they form a Gräting.
  • the head 316 consists of the subheads KBL and KBR.
  • a support surface 317, on which the protective material 328 rests, is formed only by the partial head KBL.
  • the dividing head KBL is arranged higher than the dividing head KBR by the material thickness of the dividing head KBR.
  • the height h2 of the partial head KBL is higher than the height h of the partial head KBR by the material thickness of the partial head KBR.
  • the carrier component has a length A '.
  • the protective material 328 is preferably formed so that it surrounds the heads 316, so that a corrosion protection is provided at the locations 333. But it can also be provided that a further corrosion protection can be effected by applying a suitable substance or layer.
  • the heads 316 may be formed by simply bending the steel material 314 in a common direction to give an arabesque-like shape formation or by double bending as shown in FIG. 5.
  • the protective material 328 mounted on the heads 316 is shown in FIG Fig. 5 is shown as a plate 328 with suitable recesses for the heads 316. It is clear that the protective material 328 may also be formed, for example, as a perforated plate, as shown for example in FIGS. 6 to 8. It is also possible to provide 328 profiles as protection material, as shown in Fig. 4.
  • the support surfaces 317 of the heads can be glued to the protective material 328, depending on the configuration of the heads and the recesses can also be dispensed with a bond.
  • FIG. 6 shows a protective material 1028 designed as a perforated plate 1028, wherein the holes 1027 are formed as elongated holes 1027.
  • the perforated plate has a length L1000 and a width B1000.
  • the longitudinal axes of the slots 1027 form with the longitudinal extent of the perforated plate 1028 in this Fig. An angle of about 45 °, but it is clear that other angles can be provided.
  • Two elongated holes 1027 shown in detail in FIG. 6b each have an outer length 1a 1000, an inner length li 1000 extending between the centers of curvature of the final semicircles, a radius r100 of the final semicircles, a width bl000 and a distance from one another by 10000. From these data, a percentage area coverage of the slots in the perforated plate is calculated.
  • FIG. 7 shows a protective material 1128 formed as a perforated plate 1128, wherein the holes 1127 are formed as oval holes 1127.
  • the perforated plate has a length L1100 and a width Bl 100.
  • the longitudinal axes of the oval holes 1127 form with the longitudinal extent of the perforated plate 1128 in this Fig. An angle of about 90 °, but it is clear that other angles can be provided.
  • Two oval holes 1127 shown in detail in FIG. 7b each have an outer length IaI 100, a radius r100 of the final semi-circles, a width B100 and a distance from each other. From these data, a percentage area coverage of the oval holes in the perforated plate is calculated.
  • FIG. 8 shows a protective material 1228 formed as a perforated plate 1228, wherein the holes 1227 are formed as square holes 1227.
  • the perforated plate has a length L 1200 and a width B 1200.
  • Two square holes 1227 shown in detail in FIG. 8b each have an outer length lal200, a width bl200 and a distance from each other of al200. From these data, a percentage area coverage of the four holes in the perforated plate is calculated.
  • 5 , 4, and 5 may be provided with protective caps or, alternatively, with a protective material plate overlapping all the carrier components.
  • the carrier components shown in FIG. 3 may be provided with protective material formed in each case as a protective cap for each carrier component.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Packages (AREA)
  • Refrigerator Housings (AREA)

Abstract

L'invention concerne un dispositif de renforcement de fond destiné à un contenant, en particulier un contenant frigorifique, comprenant au moins deux éléments de support (10,10', 210, 310) sur lesquels est disposé un matériau de protection (28, 28', 228, 328, 1028, 1128, 1228), lesdits éléments de support étant fabriqués au moins partiellement en d'acier.
PCT/DE2009/001348 2008-09-26 2009-09-25 Dispositif de renforcement de fond destiné à un contenant, et son procédé de production Ceased WO2010034302A2 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DKPA201100321A DK201100321A (en) 2008-09-26 2011-04-26 Floor apparatus for a container and method for the production thereof

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE102008049128 2008-09-26
DE102008049128.4 2008-09-26
DE102008049613A DE102008049613A1 (de) 2008-09-26 2008-09-30 Bodenvorrichtung für einen Container sowie Verfahren zu deren Herstellung
DE102008049613.8 2008-09-30

Publications (3)

Publication Number Publication Date
WO2010034302A2 true WO2010034302A2 (fr) 2010-04-01
WO2010034302A3 WO2010034302A3 (fr) 2010-06-24
WO2010034302A8 WO2010034302A8 (fr) 2010-12-02

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PCT/DE2009/001348 Ceased WO2010034302A2 (fr) 2008-09-26 2009-09-25 Dispositif de renforcement de fond destiné à un contenant, et son procédé de production

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DE (1) DE102008049613A1 (fr)
DK (1) DK201100321A (fr)
WO (1) WO2010034302A2 (fr)

Cited By (1)

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WO2020201365A1 (fr) * 2019-04-03 2020-10-08 Maersk Container Industry A/S Plancher pour récipient, récipient comprenant une partie de plancher, partie de plancher et procédé de fabrication d'une section de plancher

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US3046852A (en) * 1958-07-03 1962-07-31 Capitol Prod Corp Gratings
US6613216B2 (en) * 2000-05-15 2003-09-02 James B. Bushman Combination galvanic anode and wear plate for storage tanks
DE10215129A1 (de) * 2002-04-05 2003-10-16 Elze Waggonbau Gmbh & Co Kg Bodenplatte für einen Kühlcontainer
FR2903674B1 (fr) * 2006-07-13 2008-10-10 Richard Suard Benne en acier inoxydable

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020201365A1 (fr) * 2019-04-03 2020-10-08 Maersk Container Industry A/S Plancher pour récipient, récipient comprenant une partie de plancher, partie de plancher et procédé de fabrication d'une section de plancher
CN113840786A (zh) * 2019-04-03 2021-12-24 马士基集装箱工业公司 用于集装箱的底板、包括底板部分的集装箱、底板部分和制造底板区段的方法

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WO2010034302A8 (fr) 2010-12-02
WO2010034302A3 (fr) 2010-06-24
DE102008049613A1 (de) 2010-04-08
DK201100321A (en) 2011-04-26

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