COUPLING DEVICE
20220333629 · 2022-10-20
Inventors
Cpc classification
F16B7/0426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E04G7/34
FIXED CONSTRUCTIONS
E04G7/308
FIXED CONSTRUCTIONS
E04G7/301
FIXED CONSTRUCTIONS
F16B7/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A coupling device suitable for interconnecting two beam ends is provided, wherein the beam with the beam end has an elongate axis, where on a first beam end is arranged first interconnection units having two first parallel flange elements arranged with a mutual first distance x, wherein in each flange is designed a cut-out with a cross-section in the plane of the flange; a second beam end is arranged a second interconnection unit having a second flange, the width of the second flange across the plane of the second flange is smaller than or equal to x, and where largely perpendicular to the plane of the second flange, a connecting element protrudes on each side of the second flange, the cross-section of the connecting element in the plane of the second flange allows insertion of the connecting element into the cut-outs of the first flanges on the first beam end.
Claims
1. A coupling device suitable for interconnecting two beam ends, wherein the beam with the beam end has an elongate axis, where on a first beam end is arranged first interconnection units consisting of two first parallel flange elements arranged with a mutual first distance x, wherein the flanges are arranged symmetrically on either side of a plane parallel to the elongated axis of the beam, and wherein the plane of each flange is parallel to the longitudinal direction of the beam, and that in each flange is configured a cut-out with a cross-section in the plane of the flange; and a second beam end is arranged a second interconnection unit consisting of a second flange with the plane of the second flange in the longitudinal direction of the beam, wherein the width of the second flange across the plane of the second flange is smaller than or equal to x, and where substantially perpendicular to the plane of the second flange, a connecting element protrudes on each side of the second flange, wherein the cross-section of the connecting element in the plane of the second flange allows insertion of the connecting element into the cut-outs of the first flanges on the first beam end.
2. The coupling device according to claim 1, wherein the connecting element in a cross-section parallel to the second flange has an oval or elliptical cross-section with a first longitudinal axis a and a shorter width axis b, and wherein the cut-outs in the first flanges have a dimension corresponding to the short width axis b, so that when the connecting element is inserted into the cut-outs, the connecting element will be retained in the cut-outs.
3. The coupling device according to claim 1, wherein when two beams with coupling devices arranged on abutting ends are assembled, the connecting element inserted into the cut-out will releasably lock the two ends together.
4. The coupling device according to claim 1, wherein the beam with the beam ends as well as the flanges are made in metal, including in particular steel or aluminium, and wherein the flanges are welded or bolted to the beam end.
5. A beam section made as a lattice work beam, having an upper longitudinal sub-beam member and a lower longitudinal sub-beam member, where a first end of the upper longitudinal sub-beam member is provided with a first beam end according to claim 1 and the opposite end of the upper longitudinal sub-beam member is provided with a second beam end.
6. A beam section according to claim 5, wherein the lower longitudinal beam members ends are provided with flanges extending in the longitudinal direction of the lower longitudinal beam, where the flanges are provided with apertures, such that in use when beam sections are assembled into longer beams the apertures in two adjacent beam ends may be overlapped and a bolt inserted through the overlapping apertures, connecting two adjacent beam sections.
7. A beam section according to claim 5, wherein a plurality of lattice members are fastened between the upper longitudinal sub-beam member and the lower longitudinal sub-beam member.
8. A method of assembling two beam ends, where in the beam ends to be connected, coupling devices according to claim 1 is provided, and wherein a first beam end is swung relative to the beam end with which it is to be assembled, so that their longitudinal axes form an angle β in a plane parallel to the plane of the flanges, whereafter the connecting element is inserted into the cut-outs, so that the second flange is inserted between the first parallel flanges, whereafter the beams are swung so that their longitudinal axes form a substantially straight line, whereby the connecting element locks releasably in the cut-out.
Description
BRIEF DESCRIPTION
[0020] Some of the embodiments will be described in detail, with references to the following Figures, wherein like designations denote like members, wherein:
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026]
[0027] It should be understood that embodiments of the present invention are also applicable to beam structures other than lattice beams, embodiments of the invention being generally applicable where it is desired to assemble two beam elements into a larger beam by interconnecting, for which the coupling device as defined in the appended claims may be applicable and provide an easy, strong and stable interconnection.
[0028]
[0029] A second beam end 30 is arranged with a second interconnection unit 32, consisting of a second flange 34. This second flange 34 is similarly arranged in the plane of the second beam end, corresponding to the plane of the first beam end. The width y of the flange 34 is smaller than or equal to the width x, i.e., the distance between the two flanges 14, 16 on the first beam end 10, so that the second flange 34 fits into the space between the two flanges 14, 16 when the beam ends 10, 30 are assembled.
[0030] Furthermore, the second flange 34 is provided with a connecting element 36 protruding largely perpendicularly from the plane of the second flange 34 on both sides of the flange 34. The protruding connecting element 36 has a geometry, so that when the coupling device is assembled, i.e., when the second flange 34 is fitted into the space x between the flanges 14, 16 on the first beam end, the connecting element 36 will fit into the cut-out so that the cut-out, at least for part of the connecting element, encloses the circumference thereof.
[0031] With reference to
[0032] When assembling two beam ends, what will typically happen, as illustrated in
[0033] Although the present invention has been disclosed in the form of preferred embodiments and variations thereon, it will be understood that numerous additional modifications and variations could be made thereto without departing from the scope of the invention.
[0034] For the sake of clarity, it is to be understood that the use of “a” or “an” throughout this application does not exclude a plurality, and “comprising” does not exclude other steps or elements. The mention of a “unit” or a “module” does not preclude the use of more than one unit or module.