Bumper block for glass lifter slide
Patent Information
- Application Number
- CN202522391452.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-11
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-11
AI Technical Summary
现有滑板缓冲块多为一体化固定结构,缓冲位置无法根据实际需求调整
[0005]这样设置的有益效果是:这样设置,装配槽与螺杆的螺纹配合,不仅能便捷调整位置,还可根据玻璃升降器调节滑板的实际工况,实现精准微调,无需拆卸更换部件,大幅提升适配性与操作效率,降低维护成本;卡齿结构除导向与辅助定位外,装配时可沿升降器对应卡槽顺向引导,避免主体偏移,同时卡齿与周边部件的啮合能减少缓冲块在玻璃升降过程中的松动,增强结构稳固性。螺纹配合可实现位置锁定,防止振动导致缓冲块移位,保证缓冲精度、减少运行异响,两侧倾斜挡板与上述结构协同,可分散缓冲时的冲击力,并且整体结构简单,利于实现,具有良好的使用效果。
Smart Images

Figure CN224785558U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a buffer block for a sliding plate of a window regulator. Background Technology
[0002] The cushioning mechanism of a skateboard is a key component for ensuring stability and comfort while gliding. Currently, most skateboard cushioning blocks are integrated, fixed structures, and their position cannot be adjusted according to actual needs. In different usage environments and with different window regulator configurations, fixed cushioning blocks are difficult to adapt to diverse usage scenarios, easily leading to poor cushioning performance. Furthermore, the difficulty in adjusting the cushioning block structure after it is connected to the skateboard affects structural adjustments and reduces the overall effectiveness of the structure. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a buffer block for a sliding plate of a window lifter, which has a simple structure, is easy to adjust, and has good performance.
[0004] To achieve the above objectives, this utility model provides a buffer block for a sliding plate of a window regulator, comprising a main body, with baffles respectively provided on both sides of the main body, the baffles being inclined, a positioning platform also provided on the main body, with two positioning plates provided on the positioning platform, an assembly groove formed between the two positioning plates, the assembly groove being provided with threads for engaging with screw threads, and locking teeth provided on the outer wall of the positioning plates.
[0005] The advantages of this design are as follows: The threaded engagement between the mounting slot and the screw not only allows for convenient position adjustment but also enables precise fine-tuning based on the actual working conditions of the window regulator's adjustment slide, eliminating the need for disassembly and replacement of parts. This significantly improves adaptability and operational efficiency while reducing maintenance costs. The locking tooth structure, in addition to guiding and assisting in positioning, guides the assembly along the corresponding slot of the regulator, preventing main body misalignment. Simultaneously, the engagement of the locking teeth with surrounding components reduces loosening of the buffer block during window lifting, enhancing structural stability. The threaded engagement allows for position locking, preventing vibration-induced buffer block displacement, ensuring buffering accuracy, and reducing operational noise. The inclined baffles on both sides, working in conjunction with the above structure, disperse the impact force during buffering. Furthermore, the overall structure is simple, easy to implement, and provides excellent performance.
[0006] As a further feature of this utility model, an abutting step is provided on the main body corresponding to the position of the baffle, and a gap is formed between the abutting step and the baffle.
[0007] The beneficial effects of this design are as follows: This arrangement, by using the counter-step to provide auxiliary support to the baffle, effectively disperses the force on the baffle, preventing deformation and breakage due to long-term impact from glass lifting. This further enhances the overall structural stability of the buffer block and meets the long-term usage requirements of the window regulator's adjusting slide. The gap between the step and the baffle allows for minor deformation space during buffering, preventing damage to components from rigid contact and reducing collision noises. An extended benefit is that it prolongs the baffle's lifespan, indirectly ensuring the stability of the buffer block after position adjustment and improving the operational reliability of the window regulator.
[0008] As a further feature of this invention, a positioning protrusion is provided on the contact step, and a plurality of positioning flanges are provided on the side wall of the positioning protrusion.
[0009] The advantages of this design are as follows: The positioning protrusion can quickly align with the corresponding mounting hole of the window regulator's adjusting slide, achieving pre-positioning of the buffer block, reducing positional deviations during installation, and significantly improving assembly efficiency. The positioning flange on its side wall can form a tight engagement with the inner wall of the mounting hole, preventing radial displacement of the buffer block during subsequent position adjustments or window lifting operations, further enhancing installation stability. The positioning flange can also distribute localized pressure during installation, preventing deformation of the contact step due to concentrated stress, and improving the structural performance.
[0010] As a further feature of this utility model, the main body is provided with a through hole, and a hollow groove is provided on the main body corresponding to the position of the assembly groove.
[0011] The beneficial effects of this design are as follows: the through holes in the main body and the empty slots at the assembly slot positions reduce the overall load on the adjustable slide plate, reduce power loss during sliding or adjustment, and improve operational flexibility, while also reducing the weight and saving materials. The empty slots also allow for small deformation space for the assembly slots, avoiding the concentration of rigid stress. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model; Figure 2 This is a bottom view of an embodiment of the present invention. Detailed Implementation
[0013] This utility model provides an embodiment of a buffer block for a sliding plate of a window regulator, such as... Figures 1 to 2As shown, the device includes a main body 1, with baffles 2 on both sides of the main body 1. The baffles 2 are inclined. A positioning platform is also provided on the main body 1, and two positioning plates 3 are provided on the positioning platform. An assembly groove 4 is formed between the two positioning plates 3. The assembly groove 4 is provided with threads for engaging with the screw thread. The outer wall of the positioning plate 3 is provided with retaining teeth 31. The beneficial effects of this design are: with this design, the engagement of the assembly groove 4 with the screw thread not only allows for convenient position adjustment, but also enables precise fine-tuning according to the actual working conditions of the glass lifter's adjustment slide plate, without the need to disassemble or replace parts, greatly improving adaptability and operational efficiency, and reducing maintenance costs; in addition to guiding and assisting positioning, the retaining teeth 31 structure can guide along the corresponding retaining groove of the lifter during assembly, preventing the main body 1 from shifting. At the same time, the engagement of the retaining teeth 31 with surrounding components can reduce the loosening of the buffer block during glass lifting, enhancing structural stability. The threaded fit can achieve position locking, prevent vibration from causing the buffer block to shift, ensure buffering accuracy, and reduce abnormal noise during operation. The inclined baffles 2 on both sides work together with the above structure to disperse the impact force during buffering. The overall structure is simple, easy to implement, and has good performance.
[0014] As a further feature of this embodiment, a contact step 11 is provided on the main body 1 at the position corresponding to the baffle 2, and a gap is formed between the contact step 11 and the baffle 2. The beneficial effects of this design are: the contact step 11 provides auxiliary support to the baffle 2, effectively dispersing the force on the baffle 2 and preventing deformation and breakage due to long-term impact from glass lifting, further enhancing the overall structural stability of the buffer block and meeting the long-term use requirements of the window regulator's adjusting slide. The gap between the step and the baffle 2 allows for minor deformation space during buffering, preventing damage to components from rigid contact and reducing collision noise. An extended effect is to extend the lifespan of the baffle 2, indirectly ensuring the stability of the buffer block after position adjustment and improving the operational reliability of the window regulator.
[0015] As a further feature of this embodiment, a positioning protrusion 5 is provided on the contact step 11, and a plurality of positioning flanges are provided on the side wall of the positioning protrusion 5. The advantages of this configuration are: the positioning protrusion 5 can quickly align with the corresponding mounting hole of the glass lifter's adjusting slide, achieving pre-positioning of the buffer block, reducing positional deviations during installation, and significantly improving assembly efficiency; the positioning flanges on its side wall can form a tight engagement with the inner wall of the mounting hole, preventing radial displacement of the buffer block during subsequent position adjustment or glass lifting operation, further enhancing installation stability. The positioning flanges can disperse local pressure during installation, preventing the contact step 11 from deforming due to concentrated force, and improving the structural performance.
[0016] As a further feature of this embodiment, the main body 1 has a through hole 12, and a slot 13 is provided on the main body 1 corresponding to the position of the assembly slot 4. The beneficial effects of this configuration are: the through hole 12 and the slot 13 at the position of the assembly slot 4 reduce the weight and save materials, thereby reducing the overall load of the adjustable slide plate, reducing power loss during sliding or adjustment, and improving operational flexibility; the slot 13 also provides space for minor deformation of the assembly slot 4, avoiding rigid stress concentration.
[0017] The above examples are merely one preferred embodiment of this utility model. Ordinary variations and substitutions made by those skilled in the art within the scope of this utility model's technical solution are all included within the protection scope of this utility model.
Claims
1. A buffer block for a sliding plate of a window regulator, comprising a main body, wherein baffles are respectively provided on both sides of the main body, the baffles being inclined, characterized in that: The main body is also provided with a positioning platform, on which two positioning plates are provided, and an assembly groove is formed between the two positioning plates. The assembly groove is provided with threads for engaging with the screw thread, and the outer wall of the positioning plate is provided with retaining teeth.
2. The buffer block for the sliding plate of a window regulator according to claim 1, characterized in that: The main body is provided with an abutting step at the position corresponding to the baffle, and a gap is formed between the abutting step and the baffle.
3. The buffer block for the sliding plate of a window regulator according to claim 2, characterized in that: The contact step is provided with a positioning protrusion, and the side wall of the positioning protrusion is provided with several positioning flanges.
4. The buffer block for the sliding plate of a window regulator according to claim 1, characterized in that: The main body has a through hole, and a hollow groove is provided on the main body corresponding to the position of the assembly groove.