METHOD OF MAKING A FLAT BUILDING COMPONENT
20200094449 ยท 2020-03-26
Inventors
Cpc classification
B29C44/083
PERFORMING OPERATIONS; TRANSPORTING
B29C44/3426
PERFORMING OPERATIONS; TRANSPORTING
B29C44/1266
PERFORMING OPERATIONS; TRANSPORTING
B29C44/445
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/08
PERFORMING OPERATIONS; TRANSPORTING
B29C44/1285
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/048
PERFORMING OPERATIONS; TRANSPORTING
B29K2071/00
PERFORMING OPERATIONS; TRANSPORTING
B29C44/5681
PERFORMING OPERATIONS; TRANSPORTING
B29C44/14
PERFORMING OPERATIONS; TRANSPORTING
B29C44/08
PERFORMING OPERATIONS; TRANSPORTING
B29K2067/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C44/08
PERFORMING OPERATIONS; TRANSPORTING
B62D29/04
PERFORMING OPERATIONS; TRANSPORTING
B29C44/56
PERFORMING OPERATIONS; TRANSPORTING
B29C44/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Among other things, the invention relates to a method of making a thin construction element (10) in sandwich lightweight construction having a high-quality surface (26).
Claims
1. A method of making a thin construction element in sandwich lightweight construction and having a high-quality surface, comprising the following steps: a) providing a substrate film b) introducing the substrate film into a lower die part of a die, c) providing granular starting material in the form of loose particles of an expandable particle foam, d) only partly expanding the particles, e) introducing the partly expanded particles into a cavity of the lower die part, h) further expanding the partly expanded particles into a completely expanded particle foam that bonds to the substrate film, i) curing the particle foam to cure into a molded article, and j) removing the molded article from the die.
2. The method according to claim 1, wherein the substrate film is formed by a deep-drawn film.
3. The method according to claim 1, further comprising the step of: k) applying a cover layer on a side of the particle foam facing away from the substrate film.
4. The method according to further comprising the step of: l) processing the molded article into a construction element.
5. The method according to claim 2, wherein the film has a wall thickness between 0.2 mm and 13 mm.
6. The method according to claim 1, wherein the cured-particle foam has a wall thickness between 1 cm and 30 cm.
7. The method according to claim 1, wherein the construction element is configured as a vehicle part for a motor vehicle, a commercial vehicle, or a trailer, like an interior fitting part, cargo compartment cover, cladding part, engine hood, roof element or roof segment, vehicle wall, or vehicle wall element.
8. The method according to claim 1, wherein the expandable particle foam is of expandable polystyrene, polypropylene, or polyether ether ketone.
9. The method according claim 1, wherein before performing step h), the following step is performed: m) positioning reinforcing elements as tie rods in the lower die part such that after the introduction of the partly expanded particles into the lower die part, the partly expanded particles surround the reinforcing elements.
10. A thin construction element having a high quality surface produced according to claim 1, further comprising: a substrate film with which a cured-particle foam is bonded.
11. The construction element according to claim 10, wherein the film has a wall thickness between 0.2 mm and 13 mm.
12. The construction element according to claim 10, wherein the cured-particle foam has a wall thickness between 1 and 30 cm.
13. The construction element according to claim 10, wherein the particle foam is expanded against the substrate film.
14. The method according to claim 1, wherein step d) is done in an infrared oven.
15. The method according to claim 1, wherein in step e) the partly expanded particles are introduced into the lower die part.
16. The method according to claim 1, further comprising between steps e) and j) the step of: f) closing the die.
17. The method according to claim 16, further comprising between steps f) and j) the step of: opening the die.
18. The method according to claim 1, further comprising between steps d) and j) the step of: g) heating the die.
19. The method according to claim 9, wherein the reinforcing elements are tie rods.
20. The method according to claim 19, wherein the tie rods are tapes.
Description
[0058] Further advantages of the invention are apparent from the non-cited subclaims, and with reference to the following description of the embodiments illustrated in the drawings. Therein:
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[0070] Embodiments of the invention are described by way of example in the following description of the figures, also with reference to the drawings. For reasons of clarity, identical or comparable parts or elements or regions are also referred to with the same reference numerals, sometimes with the addition of small letters, even if different embodiments are involved.
[0071] Features that are described, illustrated or disclosed only in relation to an embodiment can be provided within the scope of the invention in any other embodiment of the invention. Such modified embodiments are comprised by the invention, even if they are not illustrated in the drawings.
[0072] All disclosed features are essential to the invention. In the disclosure of the application, the disclosure content of the associated priority documents (copy of the prior application) and the cited documents and the described devices of the prior art are hereby incorporated in full content, also for the purpose of one or more features of the objects disclosed therein or in several claims of the present application. The invention also comprises such modified embodiments, even if they are not illustrated in the drawings.
[0073] Embodiments of construction elements that have been manufactured according to the method according to the invention are denoted by 10 in their entirety in
[0074] The method for manufacturing such a construction element 10 will be presented in the following, starting from
[0075] As shown in
[0076] As shown in
[0077] A heater 14, in particular an infrared heater 14, is provided for this purpose, which introduces a predetermined radiant power using infrared radiation 15 (indicated) into the oven 13 in order to reach a certain temperature or a certain temperature range. The granulate particles 30a, 30b, 30c are exposed in the oven 13 to the influence of temperature for a predetermined time and partly expanded. It can be seen that the individual particles 30a, 30b, 30c of
[0078] It should be noted that the figures are of course not to scale, but that the process of expanding and the volume enlargements are to be illustrated only by way of example.
[0079] The partly expanded particles 31a, 31b, 31c are still loose, in particular, not bonded with one another. During the process of only partly expanding according to
[0080] First, with reference to
[0081] As shown in
[0082] As a result of closing the die, the film 20 is deep-drawn from the flat-lying state. Any spatial contour can be applied to the film by the deep-drawing. The deep-drawing process can, although not shown in the figures, be supported in a conventional manner by temperature. For the deep-drawing process, blow molding methods or other forming methods are also considered as an alternative to the embossing/die-cutting operation of the die 17 of
[0083] After opening the die 17 from the state of
[0084] The invention also comprises when the film 21 remains in the lower die part 19 after the deep-drawing process, and only the upper die part is exchanged. In the following it is assumed that, starting from
[0085] As shown in
[0086] In this case, a holding or extraction device not shown in the figures can be provided that distributes the particles evenly along the cavity 22 in the manner of a feed head.
[0087] The die 17b is then closed. For this purpose, an upper die part 24 is moved from a state according to
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[0089] As a result of the effect of temperature, the partly expanded particles 31a, 31b, 31c are completely expanded. A honeycomb structure can be seen, only indicated by way of example in
[0090] Here, instead of the frame structure of
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[0092] It should be noted that the term fully expanded particles 32a, 32b, 32c is misleading:
[0093] In fact, the multiplicity of completely expanded particles 32a, 32b, 32c together form a completely expanded particle foam mass 33 or a completely expanded particle foam. As can be seen from
[0094] As a result of the process of final-expanding, when the die is closed, the particle foam permanently and firmly bonds to the inner side 35 of the deep-drawn film 21. As a result, a lightweight, rigid and stable and yet inexpensive to produce composite construction element is provided.
[0095] As shown in
[0096] The embodiment of
[0097] The invention also comprises construction elements in which, instead of a deep-drawn film 21 of ABS or PMMA, a thin film of polyethylene or polypropylene, or in particular also so-called slush skins, are used as the substrate 21.
[0098] The side 26 of the deep-drawn film 21 that faces away from the cured-particle foam mass 33, can form a high-quality surface. Since the provision of a deep-drawn film 21 can be made using conventional known and proven materials, the corresponding surface properties of the conventional materials can be used.
[0099] The invention also comprises when the surface 26 of the substrate 21 is subjected to a separate processing in order to provide a high-quality surface. For example, processing steps such as polishing, painting, steaming, roughening, wetting, etc. can be considered.
[0100] In
[0101] The invention particularly comprises construction elements that are configured as caravan wall elements. For example, wall sections of a caravan trailer or a caravan, or complete wall elements of a caravan, can be used in vehicle construction, using the method according to the invention.
[0102] The invention further comprises embodiments that provide that reinforcing elements are accommodated in the cavity 22 before filling the cavity 22 with partly expanded particles 31a, 31b, 31c.
[0103] The reinforcing elements not shown in the Figures can have, for example, reinforcing fibers. As a result of filling the cavity 22 with partly expanded particles 31a, 31b, 31c, the particles are equally distributed and surround the reinforcement elements on several sides, preferably on all sides. The finished manufactured construction element 10 comprises a cured-particle foam mass that encloses the reinforcing elements securely. In particular, tensile forces can be transmitted and intercepted by positioning the reinforcing elements.