Method for producing an endless belt
09539669 ยท 2017-01-10
Assignee
Inventors
Cpc classification
B21C37/0815
PERFORMING OPERATIONS; TRANSPORTING
B23K31/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21C37/00
PERFORMING OPERATIONS; TRANSPORTING
B23K31/02
PERFORMING OPERATIONS; TRANSPORTING
F16G1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a method of producing an endless belt (1) from at least two plate-shaped metal plates (2, 3, 4), and the at least two metal plates (2, 3, 4) are introduced into one of two opposing fixtures of at least one removable connection element (5a, 5b), one edge (9, 10, 11, 12) of each leading, and form a composite board (6), whereupon free end edges (7, 8) of the composite board (6) which lie opposite the edges (9, 10, 11, 12) of the metal plates disposed in the at least one connection element (5) are bent towards one another and welded together, whereupon the at least one connection element (5a, 5b) is removed and the edges (9, 10, 11, 12) of the metal plates (2, 3, 4) connected to one another beforehand by the at least one connection element (5) are bent towards one another and welded together.
Claims
1. Method of producing an endless belt (1) from at least two metal plates (2, 3, 4), wherein the at least two metal plates (2, 3, 4) are introduced into at least one removable connection element (5, 5a), one edge (9, 10, 11, 12) of each leading, and form a composite board (6), whereupon free end edges (7, 8) of the composite board (6) which lie opposite the edges (9, 10, 11, 12) of the metal plates arranged in the at least one connection element (5) are bent towards one another and welded together, whereupon the at least one connection element (5, 5a) is removed and the edges (9, 10, 11, 12) of the metal plates (2, 3, 4) connected to one another beforehand by the at least one connection element (5) are bent towards one another and welded together, wherein three metal plates (2, 3, 4) are used to produce the belt (1) and two respectively adjacent metal plates (2, 3, 4) are connected to one another, each by at least one connection element (5, 5a), to form a composite board (6) from the three metal plates (2, 3, 4), the terminal, free end edges (7, 8) of which are then bent towards one another and welded together, whereupon at least a first connection element (5) disposed between a middle metal plate (3) and a first outer metal plate (2) is removed and the edges (9, 10) of the middle metal plate (3) and the first outer metal plate (2) connected to one another beforehand by the at least one first connection element (5) are bent towards one another and welded together, whereupon at least a second connection element (5a) disposed between the middle metal plate (3) and a second outer metal plate (4) is removed and edges (11, 12) of the middle and the second outer metal plates connected to one another beforehand by the at least one second connection element (5a) are bent towards one another and welded together.
2. Method according to claim 1, wherein the metal plates (2, 3,4) connected to one another to form the composite board (6) are formed to an annular shape in a holding device (14) by means of tensioning belts (15), and the free end edges (7, 8) of the composite board (6) are clamped in a clamping device (22) and moved towards one another until a gap between the free end edges (7, 8) is closed, whereupon the free end edges (7, 8) are welded together by means of a welding device (26).
3. Method according to claim 2, wherein the metal plates (2, 3, 4) are connected to one another by means of the at least one connection element (5, 5a) before being introduced into the holding device (14).
Description
(1) The invention and other advantages will be explained with reference to a few examples of embodiments illustrated in the appended drawings, although these are not intended to be restrictive. The drawings show very schematically simplified diagrams of the following:
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(8) Firstly, it should be pointed out that the same parts described in the different embodiments are denoted by the same reference numbers and the same component names and the disclosures made throughout the description can be transposed in terms of meaning to same parts bearing the same reference numbers or same component names. Furthermore, the positions chosen for the purposes of the description, such as top, bottom, side, etc., relate to the drawing specifically being described and can be transposed in terms of meaning to a new position when another position is being described. Individual features or combinations of features from the different embodiments illustrated and described may be construed as independent inventive solutions or solutions proposed by the invention in their own right.
(9) All the figures relating to ranges of values in the description should be construed as meaning that they include any and all part-ranges, in which case, for example, the range of 1 to 10 should be understood as including all part-ranges starting from the lower limit of 1 to the upper limit of 10, i.e. all part-ranges starting with a lower limit of 1 or more and ending with an upper limit of 10 or less, e.g. 1 to 1.7, or 3.2 to 8.1 or 5.5 to 10.
(10) As illustrated in
(11) Based on a preferred embodiment of the invention, the endless belt 1 may also be manufactured from a steel comprising 0.09% C, 15.0% Cr, 7.0% Ni, 0.7% Cu and 0.4% Ti, the remaining elements of the steel preferably being provided in the form of Fe. The endless belt 1 may also have a tensile strength of 1200 to 1600 N/mm.sup.2 and a modulus of elasticity of 190000 to 210000 N/mm.sup.2.
(12) In order to produce the endless belt 1 illustrated in
(13) To this end, as illustrated in
(14) Having formed the composite board 6, free end edges 7, 8 of the composite board 6 lying opposite the edges 9, 10, 11, 12 of the metal plates 2, 3, 4 disposed in the at least one connection element 5, 5a are bent towards one another and welded together. As far as the welding is concerned, various welding methods may be used, for example laser welding, WIG welding, plasma welding, MIG-MAG welding, etc.
(15) The process of bending the composite board 6 and welding the free end edges 7, 8 together preferably takes place using a device 13 such as that illustrated in
(16) When the end edges 7, 8 have been welded, the holding device 14 can be moved out of the device 13 and the now ring-shaped composite board 6 can be removed. The connection element 5 is then removed and the composite board 6 placed back in the holding device 14 and the edges 9, 10 that were connected to one another beforehand by the connection element 5 are bent towards the end edges 7, 8 in the manner described above and welded together. When the edges 9, 10 have been welded, the entire process of unloading and loading the holding device 14 can be repeated, in which case the connection element 5a is now removed and the edges 11, 12 that were connected to one another beforehand by the second connection element 5a in the manner described above are finally bent towards one another and welded together to form the endless belt 1.
(17) At this stage, it should also be mentioned that the process of producing the endless belt 1 from the composite board 6 by means of the device 13 may be preceded or followed by other processing steps, such as orientation, processing the edges of the metal plates 2, 3, 4, polishing.
(18) By way of example,
(19) Although not illustrated, the endless belt 1 may be used in other devices, such as drive devices for automobile test rigs, for example.
(20) The embodiments illustrated as examples represent possible variants of the device proposed by the invention and the method proposed by the invention and it should be pointed out at this stage that the invention is not specifically limited to the variants specifically illustrated, and instead the individual variants may be used in different combinations with one another and these possible variations lie within the reach of the person skilled in this technical field given the disclosed technical teaching. Accordingly, all conceivable variants which can be obtained by combining individual details of the variants described and illustrated and falling within the meaning of the independent claims are possible and fall within the scope of the invention.
LIST OF REFERENCE NUMBERS
(21) 1 Endless belt 2 Metal plate 3 Metal plate 4 Metal plate 5a Connection element 5 Connection element 6 Composite board 7 End edge 8 End edge 9 Edge 10 Edge 11 Edge 12 Edge 13 Device 14 Holding device 15 Tensioning belt 16 Side panel 17 Side panel 18 Pulley 19 Pulley 20 Reel 21 Reel 22 Clamping device 23 Support 24 Clamping jaws 25 Clamping jaws 26 Welding device 27 Device 28 Roller 29 Roller 30 Fluted roller 31 Fluted roller 32 Paper web 33 Glue applicator roll 34 Paper web