DIAGONAL BEADS CHAIN MINUS STRESS BUCKLE AND THE DIAGONAL BEADS CHAIN
20190070913 ยท 2019-03-07
Inventors
Cpc classification
B60C27/062
PERFORMING OPERATIONS; TRANSPORTING
B60C27/06
PERFORMING OPERATIONS; TRANSPORTING
B60C27/08
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60C27/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to an automotive tyre non-skid device for snowfields to increase adhesion to pavement covered with ice or snow, in particular to a diagonal bead chain stress reducing pinch plate and a diagonal bead chain. Through configuration of stress reducing pinch plates and stress reducing transition chains disposed on two sides of a second connecting assembly, concentrated stress at the connector roots of steel cables of the stress reducing transition chains are isolated, dispersed and relieved, and the service life of the steel cables are prolonged. At the same time, the present invention has the advantages of simple structure, stable performance, convenient modification and low manufacturing cost.
Claims
1. A subtracts stress buckle, comprising: a lateral cable mounting portion and a transition chain mounting portion, wherein the transition chain mounting portion comprises a fit portion, a first upper limiting portion which is disposed above the fit portion, and a first lateral limiting portion which connects the fit portion and the first upper limiting portion at one end of the fit portion; the lateral cable mounting portion is disposed at the other end of the fit portion; the transition chain mounting portion is provided with two mounting holes, wherein each one of the mounting holes shrinks to form a strip-shaped hole, each one of the strip-shaped holes includes a fit section which is disposed at the fit portion and a lateral limiting section disposed at the first lateral limiting portion, wherein at least one of the strip-shaped holes formed by shrinking one of the mounting holes gradually inclines outward in a direction away from the lateral cable mounting portion from a position close to the lateral cable mounting portion.
2. The subtracts stress buckle reducing pinch plate according to claim 1, wherein the mounting holes are formed on the fit portion, and the strip-shaped holes formed through shrinking of the mounting holes extend to the first upper limiting portion from the fit portion via the first lateral limiting portion.
3. A diagonal angle pearl chain, comprising: two horizontal lateral cables, a transition chain which is longitudinally disposed between two lateral cables, and connectors for connecting the lateral cables and the transition chain, wherein each one of the connectors comprises a subtracts stress buckle according to claim 1; the transition chain which is connected with the lateral cables through the stress reducing pinch plates has two ends respectively provided with a transition chain mounting piece, wherein each one of the transition chain mounting pieces comprises a first limiting portion, and each one of the first limiting portions passes through each corresponding one of the mounting holes and then is limited in the transition chain mounting portion.
4. The diagonal angle pearl chain according to claim 3, wherein each one of the transition chain mounting pieces also comprises a second limiting portion and a connecting pole; each one of the second limiting portions is disposed on one side of each one of the transition chain mounting pieces; each one of the connecting poles passes through each corresponding one of the first lateral limiting portions via each corresponding one of the strip-shaped holes, and connects each corresponding one of the first limiting portions and each corresponding one of the second limiting portions.
5. The diagonal angle pearl chain according to claim 3, wherein a first connecting assembly is disposed at each of the two ends of each one of the lateral cables, wherein one lateral cable is ruptured at a certain position where a second connecting assembly is provided; each one of the connectors comprises the subtracts stress buckles which are respectively disposed on two sides of each one of the second connecting assemblies and connect each corresponding one of the lateral cables and the transition chain, and a strip-shaped hole which is formed by shrinking one of the mounting holes, close to each corresponding one of the second connecting assemblies, of each one of the subtracts stress buckle s gradually approaches each corresponding one of the second connecting assemblies in a direction away from the lateral cable mounting portion from a position close to the each corresponding one of the lateral cable mounting portions.
6. The diagonal angle pearl chain according to claim 3, wherein the transition chain comprises a stress reducing transition chain which is connected with the lateral cables through the subtracts stress buckles on two sides of each one of the second connecting assemblies; each one of the stress reducing chains comprises a steel cable which is disposed between the transition chain mounting pieces; on each one of the steel cables, a stress reducing limiting piece is fixedly provided at a position isolated from each one of the transition chain mounting pieces, and a non-slip piece is disposed between two stress reducing limiting pieces.
7. The diagonal angle pearl chain according to claim 6, wherein at each one of the two ends of each one of the steel cables, the length of a stress reduction section between the stress reducing limiting portion and the transition chain mounting piece is 20-60 mm.
8. The diagonal angle pearl chain according to claim 3, wherein the mounting holes are formed on the fit portion, and the strip-shaped holes formed by shrinking the mounting holes extend from the fit portion to the first upper limiting portion via the first lateral limiting portion.
9. The diagonal angle pearl chain according to claim 3, wherein the transition chain is disposed in a Z shape between the two lateral cables.
10. The diagonal angle pearl chain according to claim 3, comprising a tightening device, wherein the tightening device comprises an elastic tightening ring and a plurality of tightening ring connectors which are disposed along the circumference of the tightening ring; the tightening ring connectors connect the lateral cables such that the lateral cables which form closed round loops on the lateral sides of the tyre are tightened toward the interior of the closed round loop.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0018] FIG.1 is a structural view of a diagonal angle pearl chain subtracts stress buckle in an expanded state;
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE INVENTION
[0023] The implementation mode of the utility model is described in detail below in conjunction with the attached drawings.
[0024] A diagonal angle pearl chain, as shown in
[0025] As shown in
[0026] Each one of the transition chains 2 includes a steel cable 212 which is provided with a non-slip piece 214, and a transition chain mounting piece 211 which is disposed at each one of the two ends of the steel cable 212; the non-slip pieces 214 can be steel plates or steel wire coiled balls; and each one of the steel cables passes through the axial center of each corresponding one of the non-slip pieces 214 and is connected with each corresponding one of the non-slip pieces 214. Each one of the transition chain mounting pieces 211 includes a relatively large first limiting portion 2111 and a relatively large second limiting portion 2112 that are respectively positioned at two ends, and a relatively thin connecting pole 2113 which connects the first limiting portion 2111 and the second limiting portion 2112. Each one of the first limiting portions 2111 is positioned at one end of each corresponding one of the transition chains 2, and each one of the second limiting portions 2112 is close to the middle of each corresponding one of the transition chains 2 with respect to each corresponding one of the first limiting portions 2111. The aperture of each one of the mounting holes 3124 should be big enough such that each corresponding one of the first limiting portions 2111 can pass through. The size of each one of the strip-shaped holes 3125 formed by shrinking each one of the mounting holes 3124 should be between the size of each one of the connecting pole 2113 and the size of each one of the first limiting portions 2111, so that each one of the relatively large first limiting portions 2111 cannot pass through each corresponding one of the strip-shaped holes 3125, while each one of the relatively thin connecting poles 2113 can pass through each corresponding one of the strip-shaped holes 3125 and move in each corresponding one of the strip-shaped holes 3125, as shown in FIGS.
[0027] A first connecting assembly 11 is disposed at each one of the two ends of each one of the lateral cables 1, one of the lateral cables 1 (outside cable 1a) is ruptured in the middle at a certain position where a second connecting assembly 12 is disposed. On the outside cable 1a, the connecting pinch plates on two sides of each one of the second connecting assemblies 12 are subtracts stress buckles 3l. Between the two lateral cables 1, the transition chains 2 on two sides of each one of the second connecting assemblies 12 are stress reducing transition chains 21.
[0028] On each one of the subtracts stress buckles 31, the strip-shaped hole 3125a formed by shrinking of the mounting hole 3214 close to the second connecting assembly 12 gradually inclines outward (namely approaches the side of the second connecting assembly 12) in a direction away from the lateral cable mounting portion 311 from a position close to the lateral cable mounting portion 311, wherein the inclination angle is related to the diameter and running speed of a tyre that uses the diagonal angle pearl chain, and can be designed and adjusted upon specific situations in use; the strip-shaped hole 3125b formed by shrinking the other mounting hole 3124 basically extends linearly in a direction away from the lateral cable mounting groove 311 from a position close to the lateral cable mounting groove 311.
[0029] As shown in
[0030] The connecting pinch plates are expanded semi-finished products that are formed through the steps of punching and boring steel plates, and bending the two ends of each one of the steel plates upward first and then toward the middle of each one of the steel plates. Then, each one of the lateral cables 1 is placed in the U-shaped limiting structure of each one of the lateral cable mounting portions 311, and press-fit toward each corresponding one of the fit portions 3121 such that each one of the lateral cables 1 is limited in each corresponding one of the lateral cable mounting grooves.
[0031] Then, connections between the transition chains 2 and the connecting pinch plates are carried out in the following way. The first limiting portion 2111 of each one of the transition chain connectors 211 passes through each corresponding one of the mounting holes 3124 through each corresponding one of the fit portions 3121, and each one of the connecting poles 2113 is positioned in each corresponding one of the strip-shaped holes 3125. Each one of the fit portions 3121 moves to each corresponding one of the first lateral limiting portions 3123 such that each one of the first limiting portions 2111 is placed in the U-shaped limiting structure that is surrounded by each corresponding one of the fit portions 3121, each corresponding one of the first upper limiting portions 3122 and each corresponding one of the first lateral limiting portions 3123. Each one of the first upper limiting portions 3121 is press-fit toward each corresponding one of the fit portions 3121 to limit each one of the first limiting portions 2111 in each corresponding one of the transition chain mounting portions 312. At this time, each one of the limiting portions 211 and each one of the second limiting portions 212 are respectively disposed on the inner and outer sides of each corresponding one of the first lateral limiting portions 333, and each one of the connecting poles 213 passes through each corresponding one of the strip-shaped holes 334 to connect each corresponding one of the first limiting portions 211 and each corresponding one of the second limiting portions 212, completing the connection between each one of the transition chains 3 and each corresponding one of the connectors 2.
[0032] When the diagonal angle pearl chain is assembled on a tyre, as shown in
[0033] The stress reducing pinch plates 31 can also be designed in the following way: the strip-shaped holes formed by reducing the two mounting holes both gradually incline outward in a direction away from the lateral cable mounting portions from positions close to the lateral cable mounting portions (the space between the two mounting holes is defined as the inside and the spaces outside the mounting holes are defined as the outside).
[0034] The connectors on two sides of the second connecting assembly 12 of the diagonal angle pearl chain are subtracts stress buckle, and the connectors at other positions on the diagonal angle pearl chain are also subtracts stress buckles.
[0035] In the present invention, the connectors on each one of the two sides of the second connecting assembly are subtracts stress buckles of which the mounting holes close to the second connecting assemblies reduce to form strip-shaped holes, and the strip-shaped holes gradually approach the second connecting assemblies in the direction away from the lateral cable mounting portions from positions close to the lateral cable mounting portions. In this way, the huge horizontal shear force on the steel cables is relieved when the tyre is rolling, the mutual friction between the roots of the steel cables of the transition chains and the subtracts stress buckles at the position is reduced, and the service life of the steel cables is prolonged. Meanwhile, the two ends of each one of the stress reducing transition chains of the second connecting assembly are respectively reserved with a stress reducing section with a certain length at the root position of each one of the transition chain mounting pieces, so that the stress which is originally concentrated at the root position of each one of the transition chain mounting pieces is dispersed and transferred to the whole stress reduction section. The stress is dispersed to all parts of the stress reducing section, greatly relieving stress concentration at the roots of the transition chain mounting pieces of the steel cables. In addition, the stress reducing limiting pieces of each one of the stress reducing transition chains limits the movement scope of the non-slip pieces between the stress reducing limiting pieces at the two ends such that the non-slip pieces are separated from the transition steel cable at the roots of the transition chain mounting pieces, preventing the non-slip pieces from extruding the roots of the transition chain mounting pieces on the steel cable, and relieving the stress at the roots of the transition chain mounting pieces of the steel cable. The service life of the steel cable is prolonged respectively from the above three aspects.
[0036] The embodiments of the present invention are depicted in conjunction with the attached drawings, but a person skilled in the art can make various modifications and changes within the scope of the attached claims.