BAR ELEMENT
20180238054 ยท 2018-08-23
Assignee
Inventors
Cpc classification
B05D2254/04
PERFORMING OPERATIONS; TRANSPORTING
B63B15/00
PERFORMING OPERATIONS; TRANSPORTING
E04C3/29
FIXED CONSTRUCTIONS
B63B3/06
PERFORMING OPERATIONS; TRANSPORTING
B05D1/28
PERFORMING OPERATIONS; TRANSPORTING
B05D1/40
PERFORMING OPERATIONS; TRANSPORTING
International classification
E04C3/29
FIXED CONSTRUCTIONS
B63B3/06
PERFORMING OPERATIONS; TRANSPORTING
E04C3/18
FIXED CONSTRUCTIONS
E04C3/12
FIXED CONSTRUCTIONS
Abstract
A bar element as a construction element includes strips preferably produced from bamboo and is hollow at least in certain regions. The hollow interior is formed at least in certain sections as a hollow fillet achieved by a plastic and/or resin introduced into the bar elements, using a shaped body movable through the interior. Producing bar elements from interconnected strips ensures that although produced from a natural raw material, the bar elements have a reproducible outer cross section. Using a shaped body movable through the interior to produce the inner cross section also ensures a defined inner cross section of the bar elements, with the result that in turn connections between a plurality of bar elements that are defined by suitable connection elements can be formed. In this way, the bar elements make it possible to produce lattice works, grid constructions, frameworks or other desired structures and/or three-dimensional bodies.
Claims
1-18. (canceled)
19: Method for the production of a bar element (1, 1) as a construction element, wherein the bar element (1, 1) comprises a plurality of strips (2), preferably produced from bamboo, and is configured as a hollow element at least in certain sections, wherein the interior of the hollow element is configured as a fillet, at least in certain sections, by means of a plastic or resin that is introduced into the bar element (1, 1), wherein the bar element (1, 1) is coated on the inner wall by a plastic and/or resin, and in a further step, a movable piston having a round outer cross-section is moved through the interior of the bar element (1, 1), or by means of an inner tube (7) that is coated with a parting agent and coated on the outside with a plastic and/or resin outer mantle (8), preferably one that is fiber-reinforced, wherein this inner tube (7) is removed from the bar element (1, 1) by pulling it out after completion of a hardening process of the outer mantle (8), and thereby the bar element (1, 1) can be produced in reproducible manner, with an inner cross-section having defined dimensions, in the form of a fillet, in each instance.
20: Method for the production of bar element (1, 1) according to claim 19, wherein the outer mantle (8) of the inner tube (7) is applied to the inner tube (7) from the outside, with the interposition of a parting layer, that the inner tube (7) provided with the outer mantle (8) is introduced into the interior of the bar element (1, 1), the outer mantle (8) hardens, and subsequently, the inner tube (7) is pulled out of the bar element (1, 1), leaving the outer mantle (8) in the bar element (1, 1), and subsequently, the bar element (1, 1), is reinforced with glass fibers or carbon fibers in the longitudinal or transverse direction and/or with the formation of a woven lattice structure.
21: Method for the production of a bar element (1, 1) according to claim 19, wherein for production of the bar element (1, 1), strips (2) that are connected with one another and have a trapezoid cross-section are used.
22: Method for the production of a bar element (1, 1) according to claim 21, wherein bar elements (1, 1) having a preferably hexagonal or octagonal cross-section are produced from six or eight strips (2), preferably connected by means of an adhesive connection, which strips are connected with one another along their longitudinal edges (3, 3), in each instance, in such a manner that they complement one another to form the closed bar element (1, 1).
23: Method for the production of a bar element (1, 1) according to claim 21, wherein the longitudinal sides (3, 3) of the strips (2) are configured to be planar to form the bar elements (1, 1).
24: Method for the production of a bar element (1, 1) according to claim 19, wherein the inner contour of the bar elements (1, 1), using the shaped body that can be moved through the interior of the bar element (1, 1), in each instance, can be impressed, if applicable also in certain sections, and thereby a round, triangular or square inner contour, in particular, is impressed.
25: Method for the production of a bar element (1, 1) according to claim 19, wherein the inner contour of the bar element (1, 1), if applicable also in certain sections, is configured by means of an inner tube, inner square, inner triangle or other internally hollow body (10) inserted into the interior of the bar element (1, 1).
26: Method for the production of a bar element (1, 1) according to claim 25, wherein by means of an internally hollow body (10) that projects beyond the face side of a bar element (1, 1), another, subsequent bar element (1, 1) that can be set onto this excess length (11) of the internally hollow body (10) and/or otherwise connected with this internally hollow body (10) is connected with the one bar element (1, 1) with force fit and/or shape fit, wherein at least the end section of the excess length (11) of the internally hollow body (10) fulfills the function of a connector piece for the other bar element (1, 1) that is to be set onto this connector piece.
27: Method for the production of a bar element (1, 1) according to claim 25, wherein corner connections or curve connections between two bar elements (1, 1) that participate in this connection, in each instance, are produced by means of an angled-away or cropped internally hollow body (10).
28: Method for the production of a bar element (1, 1) according to claim 24, wherein multiple bar elements (1, 1) are joined together by means of one or more internally hollow bodies (10), which in turn are provided with multiple connector pieces, if necessary, to produce polygonal constructions, grid constructions, three-dimensional bodies, geometric bodies or lattice works.
29: Method for the production of a bar element (1, 1) according to claim 25, wherein the bar elements (1, 1) are connected by means of the internally hollow bodies (10), wherein a connection region of the internally hollow bodies (10) that lies between the connected bar elements (1, 1), in each instance, is provided with at least one articulated connection, in each instance.
30: Method for the production of a bar element (1, 1) according to claim 25, wherein separate connection elements, comprising at least two cuff sections that are spaced apart from one another, are set onto the excess lengths (11) of the internally hollow bodies (10), in such a manner that the face-side end sections of the internally hollow bodies (10) are held with shape fit in these cuff sections, in each instance.
31: Method for the production of a bar element (1, 1) according to claim 25, wherein the internally hollow body tubes (10), articulated connections, connection elements and/or cuff sections are produced using the 3D printing method or die-cast, in each instance.
32: Method for the production of a bar element (1, 1) according to claim 19, wherein half-round and/or other half-open bar elements (1, 1) can also be produced by means of the strips (2), which are preferably produced from bamboo.
33: Method for the production of a bar element (1, 1) according to claim 19, wherein multiple bar elements (1, 1) can also be connected with one another along their outer contour, to form composite bar arrangements, for example for building honeycomb-like wall structures (13).
34: Method for the production of bar element (1, 1) according to claim 33, wherein open (14) or closed bar elements or also closed half-bar elements (15) are also used for production of the composite bar arrangement.
35: Method for the production of a bar element (1, 1) according to claim 33, wherein the composite bar arrangement has planks on one or both sides and/or, using sandwich construction, is provided with such an outer planking on both sides, if applicable with the interposition of insulating material and/or reinforcement materials.
36: Bar element according to claim 19, which comprises a plurality of strips (2), preferably produced from bamboo, and is configured as a hollow element at least in certain sections, wherein the interior of the hollow element is configured as a fillet, at least in certain sections, by means of plastic or resin that is introduced into the bar element (1, 1) wherein the bar element (1, 1) is coated on the inner wall by a plastic and/or resin that is introduced, into which a movable piston having a round outer cross-section was moved through the interior of the bar element (1, 1), or by means of an inner tube (7) that is coated with a parting agent and coated on the outside with a plastic and/or resin outer mantle (8), preferably one that is fiber-reinforced, wherein this inner tube (7) was removed from the bar element (1, 1) by pulling it out after completion of a hardening process of the outer mantle (8), and thereby the bar element (1, 1) is provided, in each instance, with an inner cross-section having defined dimensions, in the form of a fillet, in each instance.
Description
[0025] The figures show:
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[0038] In a further work step, the bar elements 1 according to
[0039] According to the representation in
[0040] Alternatively, according to the representation in
[0041] The bar elements 1 according to the representations in
[0042]
[0043] According to the perspective representation in
[0044] In this regard, the internally hollow bodies 10 can be shaped more or less in any desired manner to produce the connection between two bar elements 1, 1, in other words as an angled element or as a curved element, for example, so that angular or curved connections between multiple bar elements 1, 1 according to the representation in
[0045] In this regard, the internally hollow body 10 is introduced into the bar element 1, at least in certain sections, according to the representation in
[0046] Any desired other constructions can also be produced by means of the selection of suitable connection elements. Thus,
[0047] More or less any desired lattice works, grid constructions, frameworks, three-dimensional bodies or, in the case of connection elements having integrated articulations, also spatially changeable bodies or articulated connections can be produced by means of these and comparable constructions.
[0048] In connection with the formation of more complex constructions, expansive constructions such as frameworks or three-dimensional bodies, it has proven itself if the individual connection elements are provided with cuffs for face-side accommodation of the bar elements 1 according to the invention, so that these are stabilized in their end region, and possible breakout of the bar element 1 in the end region is prevented or the connection is only insignificantly impaired by it. Such connections have proven to be strong also in connection with simple constructions.
[0049] Furthermore, wall structures of any desired shape and wall thickness can be produced using the bar elements 1, 1 according to the invention, which can be joined together by means of suitable adhesive connections, to produce a composite arrangement or honeycomb arrangement 13 according to
[0050] In this regard, fundamentally closed bar elements 1, 1 do not necessarily have to be inserted into the honeycomb structure 13 according to the representation in
[0051] The honeycomb arrangements 13 shown in
REFERENCE SYMBOL LIST
[0052] 1, 1 bar element [0053] 2 strip [0054] 3, 3 longitudinal edge [0055] 4 round inner cross-section [0056] 5 round outer cross-section [0057] 6 further bamboo strip [0058] 7 inner tube [0059] 8 outer mantle [0060] 10 internally hollow body [0061] 11 excess length [0062] 12 cross-connector [0063] 13 honeycomb arrangement [0064] 14 open bar element. [0065] 15 half-bar