The present invention relates to the technical field of buckles, and in particular to a webbing adjusting buckle.
Buckles are widely used in daily life, especially in products such as safety harness. Buckles play a role in length adjustment, locking and clamping of webbing. Usually, a buckle includes a rectangular buckle frame and at least one cross bar located in the middle of the buckle frame, and a free end of the webbing is locked in various ways after bypassing the cross bar. For a structure with multiple cross bars or a single cross bar plus an external lock catch, the operation of adjusting the length of the webbing is relatively complex; and for a structure with a single cross bar, the safety risk of webbing slack exists. Therefore, structures with rotatable cross bars and able to tightly press the webbing have gradually appeared in the market, and the function of adjusting the length of the bypassing webbing is achieved by the rotation of the cross bars. However, this scheme will still impose safety risks, especially the possibility that the cross bars may rotate reversely and make the webbing slack, or even the risk that the webbing is drawn back and deviates from the cross bars.
In view of the above problems in the prior art, the present invention provides a webbing adjusting buckle in order to overcome at least one of the above defects.
The present invention has the following specific technical solution:
A webbing adjusting buckle includes a shell, a roller, and at least one limit locking member. The shell is provided with a webbing connecting space. The roller is arranged in the shell and is capable of rotating around an axis of the roller, as well as moving back and forth relative to the shell. The middle part of the roller is located in the webbing connecting space, and both ends of the roller are extended into the shell, allowing a webbing of a seat belt to be mounted on the shell after bypassing the roller, and allowing the length of the webbing of the seat belt to be adjusted by rotating the roller. The at least one limit locking member is movably assembled in the shell, and the locking member moves in the same direction as the roller. The limit locking member includes a limit column and an elastic member. The limit column includes a first end and a second end opposite to each other, and the elastic member includes a first end and a second end opposite to each other. The elastic member is arranged in a length direction of the limit column, and the first end of the elastic member rests against the first end of the limit column. The second end of the elastic member rests against the shell. At least a part of the second end of the limit column rests against the outer wall of the roller, and a rotation limit structure is formed between the outer wall of the roller and the limit column, to allow the roller to rotate in one direction and prevent the roller from rotating reversely; and the elastic member is used to provide the limit column with an elastic force towards the roller.
In an embodiment, the outer wall of each end of the roller is circumferentially provided with a plurality of notches, at least a part of the second end of the limit column rests in the notches, and the length direction of the limit column is perpendicular to an axis direction of the roller to allow the roller to rotate in one direction and prevent the roller from rotating reversely.
In an embodiment, the cross section of the notches is V-shaped, each notch includes a limit surface and a guide surface adjacent to each other, and the guide surface has an arc transition. In a limited and clamped state, the upper end face of the limit column rests against the limit surface to clamp and prevent the roller from rotating reversely, the guide surface rests against the front end face of the limit column, and the limit column is pushed backward by the guide surface when the roller rotates; and the rotation limit structure is jointly formed by the notches and the front end of the limit column.
In an embodiment, the second end of the limit column facing to the roller is a square column structure.
In an embodiment, the elastic member is a spring.
In an embodiment, the webbing adjusting buckle includes two limit locking members that are symmetrically arranged. The shell is spliced by an upper shell and a lower shell. The upper shell and the lower shell cooperate to form the webbing connecting space, two mounting grooves, and two waist type through grooves. The webbing connecting space runs up and down. Two mounting grooves is used for accommodating the two limit locking members. The two waist type through grooves are adjacent to the mounting grooves respectively, and used for accommodating two ends of the roller respectively.
In an embodiment, the outer wall of the middle part of the roller is provided with a helically arranged anti-slip tooth structure.
The above technical solution has the following beneficial effects:
The webbing adjusting buckle includes a shell, a roller and a limit locking member, the limit locking member includes a limit column and an elastic member, and a rotation limit structure is formed between the outer wall of the roller and the limit column, so that the roller is allowed to rotate in one direction and prevented from rotating reversely, and the length of the webbing of the seat belt can be adjusted with the one-way rotation of the roller when the webbing is mounted on the shell after bypassing the roller; and due to the rotation limit structure, the webbing is prevented from being drawn back reversely, so that a self-locking function can be achieved to avoid the situation that the webbing is drawn back and even deviates from the roller, and the safety and reliability of the webbing adjusting buckle is effectively improved.
To easily understand the technical means, the creative feature, the object and the effect realized by the present invention, the present invention is further elaborated in the following embodiments in combination with drawings. The top-down direction shown on paper in
As shown in
The webbing adjusting buckle further includes at least one limit locking member 4 which is movably assembled in the shell 1, and the limit locking member 4 includes a limit column 5 and an elastic member 6 which rest against each other in the front and back. Specifically, as shown in
In a specific application, as shown in
Based on the above technical solution, the webbing adjusting buckle includes a shell 1, a roller 3 and a limit locking member 4, the limit locking member 4 includes a limit column 5 and an elastic member 6, and a rotation limit structure is formed between the outer wall of the roller 3 and the limit column 5, so that the roller 3 is allowed to rotate in one direction and prevented from rotating reversely, and the length of the webbing of the seat belt can be adjusted with the one-way rotation of the roller 3 when the webbing is mounted after bypassing the roller 3; and due to the rotation limit structure, the webbing is prevented from being drawn back reversely, so that a self-locking function can be achieved to avoid the situation that the webbing is drawn back and even deviates from the roller 3, and the safety and reliability of the webbing adjusting buckle is effectively improved.
In a preferred embodiment, as shown in
As a further preferred embodiment, specifically as shown in
The above is just preferred embodiments of the present invention, and is only intended to illustrate rather than limiting the present invention. Those skilled in the art shall understand that many changes, modifications or even equivalents can be made within the spirit and scope defined by the claims of the present invention, and all of which will fall into the protection scope of the present invention.
Number | Date | Country | Kind |
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202320188268.7 | Feb 2023 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
2754560 | Warner | Jul 1956 | A |
3293713 | Gaylord | Dec 1966 | A |
3591900 | Brown | Jul 1971 | A |
4130255 | Sasaki | Dec 1978 | A |
4608735 | Kasai | Sep 1986 | A |
4699747 | Lovato | Oct 1987 | A |
4903378 | Kasai | Feb 1990 | A |
5285555 | Bell | Feb 1994 | A |
5673936 | Mondel | Oct 1997 | A |
7004695 | Wen-Hsiang | Feb 2006 | B1 |
8668696 | Foerster | Mar 2014 | B2 |
11338766 | Wang | May 2022 | B2 |
11553764 | Evans | Jan 2023 | B2 |
20020014096 | Kaneko et al. | Feb 2002 | A1 |
20100125980 | Zedel | May 2010 | A1 |
20110016678 | Bergkvist | Jan 2011 | A1 |
20140230195 | Ruge | Aug 2014 | A1 |
20150107067 | Zedel | Apr 2015 | A1 |
20200114862 | Jaradi | Apr 2020 | A1 |
Number | Date | Country | |
---|---|---|---|
20240260721 A1 | Aug 2024 | US |