TRACK SECTION WITH CROSSBAR AND TRACK BELT FORMED BY SUCH TRACK SECTIONS
20220355875 · 2022-11-10
Inventors
Cpc classification
B62D55/275
PERFORMING OPERATIONS; TRANSPORTING
B62D55/04
PERFORMING OPERATIONS; TRANSPORTING
B62D55/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62D55/26
PERFORMING OPERATIONS; TRANSPORTING
B62D55/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A track section (1) adapted to be linked to a plurality of similar track sections to form a track belt for mounting around the outer periphery of vehicle tyres. The track section comprises a crossbar (11) and two lateral support members (126a, 12b). The crossbar is lattice-like and formed by two or more flat, upright and elongated crossbar elements (16) and two or more connecting elements (17). The crossbar elements (16) extend in parallel with each other and empty spaces are provided between them. Each connecting element (17) extends across and is fixed to the crossbar elements (16) in order to act as a spacer between the crossbar elements. Each connecting element (17) projects from the crossbar elements (16) on the outer side (14) of the crossbar (11).
Claims
1. A track section adapted to be linked to a plurality of similar track sections to form a track belt (1) for mounting around the outer periphery of vehicle tyres, wherein the track section (10) comprises: an elongated crossbar (11) having a tyre-facing inner side (13) and a ground engageable outer side (14) opposite to the inner side; a first lateral support member (12a) mounted to the crossbar (11) at first end section (11a) thereof; and a second lateral support member (12b) mounted to the crossbar (11) at an opposite second end section (11b) thereof, the first and second lateral support members (12a, 12b) protrude on the inner side (13) of the crossbar (11) and are spaced apart to allow a tyre (2) to be received between the first and second lateral support members (12a, 12b) with the crossbar (11) extending across and being in contact with the envelope surface (3) of the tyre, the crossbar (11) is lattice-like and is formed by two or more flat, upright and elongated crossbar elements (16) and two or more connecting elements (17), each crossbar element (16) has a longitudinal inner edge (18) on the inner side (13) of the crossbar and a longitudinal outer edge (19) on the outer side (14) of the crossbar, the crossbar elements (16) extend in parallel with each other in the longitudinal direction of the crossbar (11) and are spaced apart in the cross-direction of the crossbar, empty spaces (21) are provided between the crossbar elements (16), the connecting elements (17) are arranged at a distance from each other in the longitudinal direction of the crossbar (11), each connecting element (17) extends across and is fixed to the crossbar elements (16) to act as a spacer between the crossbar elements, and each connecting element (17) is configured to project from the crossbar elements (16) on the outer side (14) of the crossbar (11).
2. A track section according to claim 1, wherein the outer edge (19) of at least one of the crossbar elements (16), preferably of each crossbar element, is toothed over at least one part of its longitudinal extension.
3. A track section according to claim 2, wherein said toothed outer edge (19) comprises two toothed edge sections (19a, 19b) and an intermediate non-toothed edge section (19c), and the toothed edge sections (19a, 19b) are spaced apart in the longitudinal direction of the associated crossbar element (16) and separated from each other by the intermediate non-toothed edge section (19c), which is located in the middle of the associated crossbar element (16), as seen in the longitudinal direction thereof.
4. A track section according to claim 3, wherein each one of said toothed edge sections (19a, 19b) is provided with at least two teeth (24).
5. A track section according to claim 3, wherein said intermediate non-toothed edge section (19c) is convex.
6. A track section according to claim 1, wherein each connecting element (17) is flat and fixed to the crossbar elements (16) in an upright position, and each connecting element (17) has an inner edge (25) facing the crossbar elements (16) and a opposite outer edge (26).
7. A track section according to claim 6, wherein the outer edge (26) of each connecting element (17) is toothed.
8. A track section according to claim 1, wherein the inner edge (18) of each crossbar element (16) has a concave edge section (18a) at its middle.
9. A track section according to claim 1, wherein the crossbar (11) comprises three such crossbar elements (16).
10. A track section according to claim 1, wherein the connecting elements (17) are fixed to the crossbar elements (16) by welding.
11. A track section according to claim 1, wherein each crossbar element (16) has a thickness of 12-20 mm.
12. A track section according to claim 1, wherein each connecting element (17) has a thickness of 12-20 mm.
13. A track section according to claim 1, wherein the first lateral support member (12a) is mounted to the first end section (11a) of the crossbar (11) through a C-shaped first connection member (28a), which has a flat base part (29), each crossbar element (16) at a first end is secured by welding to a first side of the base part (29) of the first connection member (28a) and the first lateral support member (12a) is secured by welding to an opposite second side of the base part (29) of the first connection member (28a), the second lateral support member (12b) is mounted to the second end section (11b) of the crossbar (11) through a C-shaped second connection member (28b), which has a flat base part (29), each crossbar element (16) at a second end is secured by welding to a first side of the base part (29) of the second connection member (28b), and the second lateral support member (12b) is secured by welding to an opposite second side of the base part (29) of the second connection member (28b).
14. A track section according to claim 1, wherein the crossbar (11) has a length of 600-1400 mm.
15. A track belt for mounting around the outer periphery of vehicle tyres, wherein the track belt (1) is formed by several track sections (10) according to claim 1 connected to each other by link elements (32).
16. A track section according to claim 4, wherein said intermediate non-toothed edge section (19c) is convex.
17. A track section according to claim 16, wherein each connecting element (17) is flat and fixed to the crossbar elements (16) in an upright position, and each connecting element (17) has an inner edge (25) facing the crossbar elements (16) and a opposite outer edge (26).
18. A track section according to claim 5, wherein each connecting element (17) is flat and fixed to the crossbar elements (16) in an upright position, and each connecting element (17) has an inner edge (25) facing the crossbar elements (16) and a opposite outer edge (26).
19. A track section according to claim 4, wherein each connecting element (17) is flat and fixed to the crossbar elements (16) in an upright position, and each connecting element (17) has an inner edge (25) facing the crossbar elements (16) and a opposite outer edge (26).
20. A track section according to claim 3, wherein each connecting element (17) is flat and fixed to the crossbar elements (16) in an upright position, and each connecting element (17) has an inner edge (25) facing the crossbar elements (16) and a opposite outer edge (26).
Description
BRIEF DESCRIPTION OF THE DRAWING
[0019] With reference to the appended drawing, a specific description of embodiments of the invention cited as examples follows below. In the drawings:
[0020]
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[0027]
DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
[0028] A track section 10 according to an embodiment of the present invention is illustrated in
[0029] The lateral support members 12a, 12b protrude on the inner side 13 of the crossbar 11. The lateral support members 12a, 12b are spaced apart in the longitudinal direction of the crossbar 11 to allow a tyre 2 of a vehicle wheel to be received between the lateral support members 12a, 12b with the crossbar 11 extending across and being in contact with the envelope surface 3 of the tyre 2 and with the lateral support members 12a, 12b facing a respective one of the two opposed sidewalls 5 of the tyre, as illustrated in
[0030] The crossbar 11 has a lattice-shaped design and it is formed by two or more flat and elongated crossbar elements 16 and two or more connecting elements 17. In the illustrated embodiment, the crossbar 11 consists of three crossbar elements 16 and two connecting elements 17.
[0031] Each crossbar element 16 has a longitudinal inner edge 18 on the inner side 13 of the crossbar and a longitudinal outer edge 19 on the outer side 14 of the crossbar. Each crossbar element 16 has a flat lateral surface 20 which extends between the inner and outer edges 18, 19 on a first side of the crossbar element and another flat lateral surface 20 which extends between the inner and outer edges 18, 19 on an opposite second side of the crossbar element. The crossbar elements 16 are arranged next to each other in an upright position and they extend in parallel with each other in the longitudinal direction of the crossbar 11 and are spaced apart as seen in the cross-direction of the crossbar, wherein empty spaces 21 (see
[0032] The inner edge 18 of each crossbar element 16 may have a concave edge section 18a at its middle in order to conform to the shape of the envelop surface 3 of a tyre 2 received between the lateral support members 12a, 12b.
[0033] In the illustrated embodiment, the outer edge 19 of each crossbar element 16 comprises two toothed edge sections 19a, 19b in order to improve the grip against the ground. The toothed edge sections 19a, 19b are spaced apart as seen in the longitudinal direction of the associated crossbar element 16 and are separated from each other by an intermediate non-toothed edge section 19c. The non-toothed edge section 19c is preferably convex and it is located in the middle of the associated crossbar element 16, as seen in the longitudinal direction thereof. In the illustrated example, each one of said toothed edge sections 19a, 19b is provided with two teeth 24. As an alternative, each toothed edge section 19a, 19b may be provided with only one tooth or more than two teeth.
[0034] The connecting elements 17 are spaced apart in the longitudinal direction of the crossbar 11 and extend across the crossbar elements 16. Each connecting element 17 projects from the crossbar elements 16 on the outer side 14 of the crossbar 11 and is fixed to the crossbar elements 16 in order to act as a spacer between the crossbar elements. In the illustrated embodiment, the connecting elements 17 are fixed to the crossbar elements 16 at the opposite ends of the above-mentioned non-toothed edge section 19c on each crossbar element. The connecting elements 17 are fixed to the crossbar elements 16 by welding.
[0035] Each connecting element 17 is preferably flat and fixed to the crossbar elements 16 in an upright position, wherein each connecting element 17 has an inner edge 25 (see
[0036] The length of the crossbar 11 is preferably between 600 and 1400 mm and the width of the crossbar 11 is preferably between 100 and 200 mm. The crossbar 11 is made of steel.
[0037] In the illustrated embodiment, a first one 12a of the lateral support members is mounted to a first end section 11 a of the crossbar 11 through a C-shaped first connection member 28a in the form of a so-called link hook, and the other lateral support member 12b, in the following referred to as the second lateral support member, is mounted to a second end section 11b of the crossbar 11 through a C-shaped second connection member 28b in the form of a link hook. Each connection member 28a, 28b has a flat base part 29 (see
[0038] Each crossbar element 16 of the crossbar 11 is at a first end secured by welding to a first side of the base part 29 of the first connection member 28a and the first lateral support member 12a is secured by welding to an opposite second side of the base part 29 of the first connection member 28a. Furthermore, each crossbar element 16 is at an opposite second end secured by welding to a first side of the base part 29 of the second connection member 28b and the second lateral support member 12b is secured by welding to an opposite second side of the base part 29 of the second connection member 28b.
[0039] A first opening 31 (see
[0040] Several track sections 10 of the type described above are interconnected by means of link elements 32 to form a flexible track belt 1, as illustrated in
[0041] The invention is of course not in any way restricted to the embodiments described above. On the contrary, many possibilities to modifications thereof will be apparent to a person with ordinary skill in the art without departing from the basic idea of the invention such as defined in the appended claims.