Locking mechanism transfer tool
Patent Information
- Application Number
- CN202522362254.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-06
AI Technical Summary
[0005]本实用新型的目的是提供了一种锁紧机构转运工装,解决锁紧机构在转运过程中料件相互摩擦导致表面划伤、磨损的问题,提高了转运效率和转运质量
[0017]本实用新型实施例提供的锁紧机构转运工装,通过采用插槽式结构,尺寸和形状需精准匹配被转运工件,确保工件能稳定卡入,不易晃动,通过挡块卡接锁紧机构,在使用过程中不易发生晃动或移位,插槽式工装具有高效性,其结构设计使工件能够快速准确地定位,解决锁紧机构在转运过程中料件相互摩擦导致表面划伤、磨损的问题,提高了转运效率和转运质量。
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Figure CN224782691U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of locking mechanism transfer technology, specifically to a locking mechanism transfer tooling. Background Technology
[0002] The locking mechanism is used to lock the unloading chute, so that the unloading chute will not rotate randomly due to the vehicle's inertia and cause an accident during vehicle operation.
[0003] Existing locking mechanisms handle different types and specifications of workpieces during the locking process of the unloading chute. This not only occupies a lot of space during use but also makes it difficult to locate specific workpieces. Furthermore, some protective fixtures are difficult to adjust and adapt quickly to workpieces of different shapes and sizes, which may damage the workpiece surface and affect the product's appearance quality.
[0004] Therefore, how to efficiently transfer tooling of different sizes and types while ensuring that the surface is not damaged is a key focus for those skilled in the art. Utility Model Content
[0005] The purpose of this invention is to provide a locking mechanism transfer fixture that solves the problem of surface scratches and wear caused by mutual friction between parts during the transfer process, thereby improving transfer efficiency and quality.
[0006] To solve the above-mentioned technical problems, this utility model provides a locking mechanism transfer fixture, including multiple vertically arranged support columns and a transverse mounting rod connecting adjacent support columns. The transverse mounting rod is provided with multiple mounting positions, and each mounting position is provided with a vertical workpiece groove for mounting the locking mechanism. A stop block is provided in the vertical workpiece groove for engaging the locking mechanism and for laterally limiting the locking mechanism.
[0007] The support column is either a square tube support column or a round tube support column.
[0008] It also includes a lower push cup located at the bottom of the support column and an upper push cup located at the top of the support column.
[0009] The stop block includes an outer stop block located on the surface of the space formed by the locking mechanism and the support column, and an inner stop block located on the surface of the space formed by the locking mechanism away from the support column.
[0010] It also includes a bottom limit stop bar disposed at the bottom of the vertical workpiece groove for laterally limiting the bottom engagement of the locking mechanism.
[0011] The tops of the multiple vertical workpiece slots are on the same horizontal plane, and the multiple vertical workpiece slots are distributed in an array.
[0012] Wherein, the inner stop block, the outer stop block, and the bottom limit stop strip are polyurethane inner stop block, polyurethane outer stop block, and polyurethane bottom limit stop strip, or the inner stop block, the outer stop block, and the bottom limit stop strip are polytetrafluoroethylene inner stop block, polytetrafluoroethylene outer stop block, and polytetrafluoroethylene bottom limit stop strip.
[0013] It also includes a groove marking provided on the outer surface of the vertical workpiece groove, the groove marking being used to display the workpiece size parameters that the vertical workpiece groove can accept.
[0014] It also includes mounting brackets disposed adjacent to the support columns, the mounting brackets being snap-fitted or bolted to the mounting brackets, and both ends of the transverse mounting rods being mounted on the mounting brackets.
[0015] The mounting brackets include multiple mounting sub-brackets of different heights, and the two ends of the horizontal mounting rods of different heights are mounted on the mounting sub-brackets of corresponding heights.
[0016] The locking mechanism transfer fixture provided in this embodiment of the invention has the following advantages compared with the prior art:
[0017] The locking mechanism transfer fixture provided in this embodiment of the utility model adopts a slot-type structure. The size and shape of the slot-type fixture must be precisely matched to the workpiece being transferred to ensure that the workpiece can be stably locked in and is not easy to shake. The locking mechanism is secured by a stop block, which prevents shaking or displacement during use. The slot-type fixture is highly efficient. Its structural design enables the workpiece to be positioned quickly and accurately, solving the problem of surface scratches and wear caused by mutual friction between parts during the transfer process, thus improving the transfer efficiency and transfer quality. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 A schematic diagram of the structure of an embodiment of the locking mechanism transfer fixture provided by this utility model;
[0020] Among them, 1-upward push stacking bowl, 2-support column, 3-inner stop block, 4-locking mechanism, 5-outer stop block, 6-bottom limit stop bar, 7-upward push stacking bowl. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please refer to Figure 1 , Figure 1 This is a schematic diagram of the structure of one embodiment of the locking mechanism transfer fixture provided by this utility model.
[0023] In one specific embodiment, the locking mechanism 4 transfer fixture includes multiple vertically arranged support columns 2 and a transverse mounting rod that connects adjacent support columns 2 laterally. The transverse mounting rod is provided with multiple mounting positions, and each mounting position is provided with a vertical workpiece groove for mounting the locking mechanism 4. A stop block is provided in the vertical workpiece groove for engaging the locking mechanism 4 and for laterally limiting the locking mechanism 4.
[0024] By adopting a slot-type structure, the size and shape must be precisely matched to the workpiece being transferred, ensuring that the workpiece can be stably locked in and not easily shaken. The locking mechanism 4 is engaged by a stop block, which prevents shaking or displacement during use. The slot-type tooling is highly efficient, and its structural design allows the workpiece to be positioned quickly and accurately, solving the problem of surface scratches and wear caused by mutual friction between the parts during the transfer process, thus improving the transfer efficiency and quality.
[0025] In this application, support columns 2 are used to support the entire device. There are no limitations on their number, size and material. The support columns 2 can be square tube support columns 2, round tube support columns 2, or support columns 2 of other shapes. The support columns 2 can be stainless steel support columns 2, aluminum alloy support columns 2, or support columns 2 of other materials.
[0026] To further facilitate the multi-layer placement of workpieces and reduce damage to the ground, in one embodiment, the locking mechanism 4 transfer fixture further includes a lower push cup disposed at the bottom of the support column 2 and an upper push cup 71 disposed at the top of the support column 2.
[0027] Multiple devices can be stacked vertically by using the lower push-stacking bowl at the bottom of the support column 2 and the upper push-stacking bowl 71 at the top of the support column 2, or by setting support plates at the top or bottom of the support column 2, so as to facilitate the transportation of the entire device or its use in conjunction with other devices.
[0028] This application does not limit the shape, material, size, or installation method of the lower push stack bowl and the upper push stack bowl 71.
[0029] To further limit the lateral movement of the locking mechanism 4, in one embodiment, the stop includes an outer stop 5 located on the surface of the space formed by the locking mechanism 4 near the support column 2 and an inner stop 3 located on the surface of the space formed by the locking mechanism 4 away from the support column 2.
[0030] By setting an inner stop 3 on the inside of the locking mechanism 4 and an outer stop 5 on the outside, the locking mechanism 4 is less likely to move or shift during use, thus ensuring its reliability and safety.
[0031] This application does not impose any restrictions on the material, size, or installation method of the inner stop block 3 and the outer stop block 5.
[0032] To further limit the locking mechanism 4 and ensure its safety during transportation, in one embodiment, the transfer fixture of the locking mechanism 4 further includes a bottom limit bar 8 disposed at the bottom of the vertical workpiece groove for laterally limiting the bottom engagement of the locking mechanism 4.
[0033] By setting a bottom limiting stop 8 at the bottom of the vertical workpiece groove to laterally limit the bottom engagement of the locking mechanism 4, a structure is achieved that simultaneously limits the top and bottom of the locking mechanism 4. This prevents the locking mechanism 4 from rotating after being inserted into the vertical workpiece groove and from colliding with other components, thus improving safety. Simultaneously, the bottom limiting stop 8 restricts the sliding of the workpiece on its outer side, while also enabling the insertion and locking operation of the locking mechanism 4.
[0034] This application does not limit the structure of the bottom limit stop bar 8, its installation time, or the limiting method.
[0035] In this application, the locking mechanism 4 is transferred by inserting multiple vertical workpiece slots to improve space utilization efficiency. In one embodiment, the tops of the multiple vertical workpiece slots are on the same horizontal plane, and the multiple vertical workpiece slots are distributed in an array.
[0036] By having the tops of the multiple vertical workpiece slots on the same horizontal plane and distributing the multiple vertical workpiece slots in an array, a modular setup can be achieved, eliminating concerns about difficulties in finding workpieces due to differences in size.
[0037] In addition, this application can also set sensors in the corresponding tank, corresponding to the workpiece, to achieve rapid position acquisition.
[0038] This application does not limit the distribution method or spacing of vertical workpiece grooves.
[0039] This application does not limit the material and size of the stop blocks. The inner stop block 3, the outer stop block 5, and the bottom limit stop strip 8 are polyurethane inner stop block 3, polyurethane outer stop block 5, and polyurethane bottom limit stop strip 8, or the inner stop block 3, the outer stop block 5, and the bottom limit stop strip 8 are polytetrafluoroethylene inner stop block 3, polytetrafluoroethylene outer stop block 5, and polytetrafluoroethylene bottom limit stop strip 8. They are generally made of materials that are not easily corroded or worn, and their dimensions are set as needed.
[0040] To further facilitate the identification of the corresponding workpiece, in one embodiment, the locking mechanism 4 transfer fixture further includes a groove mark disposed on the outer surface of the vertical workpiece groove, the groove mark being used to display the workpiece size parameters that the vertical workpiece groove can accommodate.
[0041] By setting groove markings on the outer surface of the vertical workpiece groove to display the size parameters of the workpieces that the vertical workpiece groove can accept, it is possible to quickly obtain the workpieces that can be transferred, thus improving management efficiency.
[0042] This application does not impose any restrictions on the structure or formation method of the tank markings.
[0043] To further increase the number of transfers of the locking mechanism 4, in one embodiment, the transfer fixture of the locking mechanism 4 further includes a mounting bracket disposed adjacent to the support column 2, the mounting bracket being snapped or bolted to the mounting bracket, and both ends of the transverse mounting rod being mounted on the mounting bracket.
[0044] By setting mounting brackets adjacent to the support columns 2, the mounting brackets can be installed on the support columns 2 first, and then the horizontal mounting rods can be installed on the mounting brackets, which can improve the installation efficiency of the vertical workpiece groove.
[0045] This application does not limit the structure, material, size, or installation method of the mounting bracket.
[0046] In order to further improve installation efficiency, in one embodiment of this application, the plurality of mounting brackets include multiple mounting sub-brackets of different heights, and the two ends of the plurality of transverse mounting rods of different heights are mounted on the mounting sub-brackets of corresponding heights.
[0047] This application does not limit the number of installation brackets or their specific height.
[0048] In one embodiment, the locking mechanism 4, a transfer fixture, employs a slot-type placement and lateral limiting method. This stable structure allows for quick and accurate placement of the workpiece without excessive adjustments, precisely positioning it and ensuring its secure fixation during placement. This prevents loosening or shaking during transfer, avoiding displacement and facilitating maintenance and replacement. The slot-type fixture design also simplifies replacement when a component is damaged. The internal and external polyurethane blocks offer excellent durability, allowing for prolonged use in various complex environments and reducing replacement frequency. Their elasticity allows them to adapt to different shapes and sizes, ensuring the workpiece's appearance quality.
[0049] The locking mechanism 4 is inserted precisely into the polyurethane inner stop block 3 and the bottom limit polyurethane stop strip, preventing the material from shaking and thus causing damage to the surface of the material.
[0050] This application adopts a slot-type structure. When an object is placed in the slot, the polyurethane inner stop 3 provides lateral restraint. The distance between the polyurethane inner stop 3 and the polyurethane outer stop 5 in the same component is adjustable to limit the movement of objects of different sizes. The bottom limit polyurethane stop strip is set at the bottom to restrict the object from sliding outward, and at the same time realizes the insertion and locking operation of the locking mechanism 4.
[0051] In summary, the locking mechanism transfer fixture provided by this utility model adopts a slot-type structure, and its size and shape must be precisely matched to the workpiece being transferred to ensure that the workpiece can be stably locked in and not easily shaken. The locking mechanism is secured by a stop block, which prevents shaking or displacement during use. The slot-type fixture is highly efficient, and its structural design allows the workpiece to be positioned quickly and accurately, solving the problem of surface scratches and wear caused by mutual friction between parts during the transfer process, thus improving transfer efficiency and transfer quality.
[0052] The locking mechanism transfer fixture provided by this utility model has been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core idea of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.
Claims
1. A locking mechanism transfer fixture, characterized in that, It includes multiple vertically arranged support columns and horizontal mounting rods that connect adjacent support columns laterally. Each horizontal mounting rod has multiple mounting positions, and each mounting position has a vertical workpiece groove for mounting a locking mechanism. Each vertical workpiece groove has a stop block for engaging the locking mechanism and for laterally limiting the locking mechanism.
2. The locking mechanism transfer fixture as described in claim 1, characterized in that, The support column is a square tube support column or a round tube support column.
3. The locking mechanism transfer fixture as described in claim 2, characterized in that, It also includes a lower push cup disposed at the bottom of the support column and an upper push cup disposed at the top of the support column.
4. The locking mechanism transfer fixture as described in claim 1, characterized in that, The stop includes an outer stop located on the surface of the space formed by the locking mechanism near the support column and an inner stop located on the surface of the space formed by the locking mechanism away from the support column.
5. The locking mechanism transfer fixture as described in claim 4, characterized in that, It also includes a bottom limit stop bar disposed at the bottom of the vertical workpiece groove for laterally limiting the bottom engagement of the locking mechanism.
6. The locking mechanism transfer fixture as described in claim 5, characterized in that, The tops of the multiple vertical workpiece slots are on the same horizontal plane, and the multiple vertical workpiece slots are distributed in an array.
7. The locking mechanism transfer fixture as described in claim 6, characterized in that, The inner stop block, the outer stop block, and the bottom limit stop strip are polyurethane inner stop block, polyurethane outer stop block, and polyurethane bottom limit stop strip, or the inner stop block, the outer stop block, and the bottom limit stop strip are polytetrafluoroethylene inner stop block, polytetrafluoroethylene outer stop block, and polytetrafluoroethylene bottom limit stop strip.
8. The locking mechanism transfer fixture as described in claim 1, characterized in that, It also includes a groove marking provided on the outer surface of the vertical workpiece groove, the groove marking being used to display the workpiece size parameters that the vertical workpiece groove can accept.
9. The locking mechanism transfer fixture as described in claim 1, characterized in that, It also includes mounting brackets disposed adjacent to the support columns, the mounting brackets being snap-fitted or bolted to the mounting brackets, and both ends of the transverse mounting rods being mounted on the mounting brackets.
10. The locking mechanism transfer fixture as described in claim 9, characterized in that, The plurality of mounting brackets include multiple mounting sub-brackets of different heights, and the two ends of the plurality of transverse mounting rods of different heights are mounted on the mounting sub-brackets of corresponding heights.