Connector shell tool convenient to clamp
By designing a connector housing fixture that is easy to clamp, and using a cylinder-driven positioning block and clamping plate, the problems of complex structure and poor versatility of existing fixtures are solved, realizing fast, stable and safe clamping of connector housings, and improving processing accuracy and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-27
AI Technical Summary
Existing connector housing clamping fixtures are complex in structure and cumbersome in operation, making it difficult to quickly clamp connector housings of different specifications. They also have poor clamping stability and insufficient versatility, which affects processing accuracy and product quality.
A connector housing fixture for easy clamping was designed, which adopts a structure including a base plate, positioning rod, cylinder, positioning block and clamping plate. The positioning block and clamping plate are driven by the cylinder to achieve rapid positioning and clamping of the connector housing. The inner side of the clamping plate is equipped with rubber anti-slip strips and locking blocks to adaptively adjust the clamping force and adapt to connector housings of different shapes and sizes.
It enables rapid and stable clamping of connector housings, improves processing precision and the accuracy of inspection results, reduces operational difficulty and the probability of errors, enhances the versatility and safety of tooling, protects the housing surface, and meets diverse production needs.
Smart Images

Figure CN224053608U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to connector housing processing technical field more specifically, relate to a kind of connector housing tooling of being convenient for clamping. BACKGROUND
[0002] The electric connector is a kind of conductor equipment that two conductors on a loop are bridged, so that electric current or signal can flow from one conductor to another conductor, and the electric connector is an electronic system, which can provide a detachable interface to connect two secondary electronic systems, and the electric connector needs to use clamping tooling to clamp and fix the connector housing during production process, so as to process and assemble the connector housing.
[0003] During the production and processing of the connector housing, it is often necessary to clamp and fix it in order to carry out subsequent assembly, welding, detection and other operations;Some existing clamping tooling is either complex in structure and difficult to operate, or cannot quickly clamp different specifications of connector housings;Or poor clamping stability, connector housings are prone to shaking and displacement during processing, affecting processing precision and product quality;And some tooling has poor versatility, can only clamp connector housings of specific sizes, and cannot meet diversified production needs.
[0004] The utility model can make the device more flexible and convenient when in use. UTILITY MODEL CONTENTS
[0005] The utility model aims at solving the technical problems in the above background art, and provides a kind of connector housing tooling of being convenient for clamping.
[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of connector housing tooling of being convenient for clamping, comprising: bottom plate, the first positioning rod and the second positioning rod are arranged on the upper end of the bottom plate, the first positioning rod upper end is provided with placement plate, the first positioning rod side is equipped with first air cylinder, the first air cylinder output end is installed with connecting plate, the connecting plate one side is installed with positioning block, the second positioning rod one side is equipped with second air cylinder, the second air cylinder output end is installed with positioning plate, the positioning plate one side is installed with multiple clamping plates.
[0007] Further preferred scheme: the connecting plate is inverted "T" shape, the positioning block is connected with connecting plate by bolt, the inner side of positioning block is rubber material.
[0008] Further preferred scheme: multiple anti-skid strips are arranged on the inner side of each clamping plate, multiple anti-skid lines are arranged on the outer side of anti-skid strip, and the anti-skid strip is made of rubber material.
[0009] Further preferred: a plurality of grooves are formed on one side of each of the clamping plates, springs are arranged inside the grooves, and clamping blocks are mounted outside the springs, the outer surface of the clamping blocks being made of rubber.
[0010] Further preferred: the placing plate is provided with a surrounding plate on one side, and the corners of the surrounding plate are in arc shape.
[0011] Further preferred: a baffle is fixedly mounted on the upper end of the placing plate, and a plurality of anti-skid particles are fixedly mounted on one side of the baffle, the anti-skid particles being in arc shape on the outside, and the upper end of the placing plate being made of rubber.
[0012] Further preferred: the positioning blocks are arranged adjacent to the clamping plates.
[0013] Beneficial effects:
[0014] 1. By providing a baffle fixedly mounted on the upper end of the placing plate, and a plurality of anti-skid particles in arc shape on the outside mounted on one side of the baffle, and the rubber material on the upper end of the placing plate, the friction with the bottom of the connector shell is increased, the initial placement of the shell on the placing plate is more stable, and the shell is prevented from sliding randomly on the placing plate, ensuring that the shell can remain in a predetermined position during subsequent operations, providing a basis for accurate positioning and clamping. The baffle plays a blocking role to some extent, preventing the shell from accidentally falling off the placing plate due to external forces and other factors, enhancing the safety of the tool during use, and reducing product damage and potential production accident risks caused by shell falling;
[0015] 2. By providing positioning blocks, a plurality of anti-skid strips and anti-skid lines made of rubber material are arranged on the inner side of the clamping plates, the friction between the clamping plates and the connector shell is greatly increased, the shell is effectively prevented from sliding during clamping, and the clamping effect is stable and reliable. The spring in the groove on one side of the clamping plate is connected to the clamping block with a rubber material outer surface, which can be self-adapted according to the shape of the shell when the clamping plate contacts the shell. By contracting and expanding the spring, the clamping force is changed, thereby providing uniform and adaptive clamping force for different shapes of connector shells, avoiding shell deformation or loosening caused by improper clamping force. Multiple clamping plates work together with the positioning blocks on the other side of the connector shell to achieve omnidirectional and stable clamping, meeting the efficient clamping needs of different specifications of connector shells in diversified production scenarios;
[0016] 3. By setting the clamping plate, the inner side of the clamping plate is provided with a plurality of anti-skid strips and anti-skid patterns of rubber material, which greatly enhances the friction between the connector shell and the connector shell, effectively prevents the shell from sliding during clamping, ensures the stable and reliable clamping effect, the spring in the groove on one side of the clamping plate connects the clamping block on the outer surface of the rubber material, when the clamping plate contacts the shell, the clamping block can be self-adapted according to the shape of the shell, and the clamping force is changed by the contraction and expansion of the spring, so that uniform and adaptive clamping force is provided for connector shells of different shapes, and deformation or loosening of the shell caused by improper clamping force is avoided, and a plurality of clamping plates work together to realize omnidirectional and stable clamping by cooperating with the positioning block on the other side of the connector shell, and meet the efficient clamping demand of different specifications of connector shells in diversified production scenes;
[0017] 4. As described above, the connector shell tool convenient to clamp is provided with a baffle and a clamping plate, the baffle increases the friction with the bottom of the shell by the anti-skid particles and the rubber material, the initial placement is stable, the shell is prevented from sliding, the safety is improved, the positioning plate cooperates with the second positioning rod to drive the clamping plate to move accurately and stably, the clamping plate can uniformly apply force, the shell is firmly fixed in the center of the tool, the controllability of operation and the universality of the tool are enhanced, the anti-skid strips, patterns and self-adaptive clamping blocks on the inner side of the clamping plate prevent the shell from sliding and provide adaptive clamping force for shells of different shapes, and the positioning block realizes omnidirectional and stable clamping, and meets the diversified production demand. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a whole structure schematic view of the utility model.
[0019] Figure 2 It is a baffle structure schematic view of the utility model.
[0020] Figure 3 It is a clamping plate structure schematic view of the utility model.
[0021] Figure 4 It is a recess internal structure schematic view of the utility model.
[0022] Figures 1-4 Center: 1, bottom plate; 2, first positioning rod; 201, first air cylinder; 202, connecting plate; 203, positioning block; 3, second positioning rod; 301, second air cylinder; 302, positioning plate; 303, clamping plate; 304, anti-skid strip; 305, groove; 306, spring; 307, clamping block; 4, placing plate; 401, fence; 402, baffle; 403, anti-skid particle. DETAILED DESCRIPTION
[0023] The utility model embodiments will be described below with reference to the accompanying drawings. Figures 1-4 The technical scheme in the utility model embodiment is clearly and completely described.
[0024] Please refer to Figures 1-4 The utility model discloses an embodiment of a connector shell tool convenient to clamp, which comprises a bottom plate 1, the upper end of the bottom plate 1 is provided with a first positioning rod 2 and a second positioning rod 3, the upper end of the first positioning rod 2 is provided with a placing plate 4, the side of the first positioning rod 2 is provided with a first air cylinder 201, the output end of the first air cylinder 201 is provided with a connecting plate 202, one side of the connecting plate 202 is provided with a positioning block 203, one side of the second positioning rod 3 is provided with a second air cylinder 301, the output end of the second air cylinder 301 is provided with a positioning plate 302, and one side of the positioning plate 302 is provided with a plurality of clamping plates 303; the connecting plate 202 is in the shape of an inverted "T", the positioning block 203 is connected with the connecting plate 202 through bolts, and the inner side of the positioning block 203 is made of rubber;
[0025] Before using the tool to clamp the connector shell, the bottom plate 1 is placed on a stable workbench, at this time, the first positioning rod 2 and the second positioning rod 3 are vertically erected on the upper end of the bottom plate 1, playing a basic role of supporting and positioning; place the connector shell: place the connector shell to be clamped on the placement plate 4, which is located at the upper end of the first positioning rod 2, providing a preliminary placement position for the connector shell; start the first cylinder 201, the output end of the first cylinder 201 extends, pushing the connecting plate 202 to move along the side of the first positioning rod 2, because the connecting plate 202 is in the shape of an inverted "T", its unique shape ensures stability during movement, without deviation or shaking, as the connecting plate 202 moves, the positioning block 203 installed on one side of it also moves, the positioning block 203 is connected to the connecting plate 202 by bolts, this connection method facilitates the replacement of different specifications of positioning blocks 203 according to the size requirements of different connector shells, when the positioning block 203 moves to contact the connector shell, it begins to position one side of the connector shell, pushing it to the center position of the tool, preliminarily fixing the position of the connector shell, preventing it from moving randomly in subsequent operations; after the positioning block 203 completes the positioning of one side of the connector shell, start the second cylinder 301, the output end of the second cylinder 301 extends, pushing the positioning plate 302 to move along one side of the second positioning rod 3, the positioning plate 302 has multiple clamping plates 303 installed on one side, when the positioning plate 302 approaches the connector shell, multiple clamping plates 303 simultaneously contact and apply pressure to the other side of the connector shell, tightly clamping the connector shell between the positioning block 203 and the clamping plate 303, the design of multiple clamping plates 303 can better adapt to connector shells of different shapes and sizes, ensuring that each part of the connector shell receives uniform clamping force during clamping, avoiding deformation or loosening of the shell due to uneven clamping force; by simply starting the first cylinder 201 and the second cylinder 301, quick positioning and clamping of the connector shell can be achieved, compared with traditional complex clamping tools, the number of operation steps and the difficulty of operation are greatly reduced, the work efficiency is improved, for example, in the case of traditional tools that may require manual adjustment of multiple clamping components, this tool only needs to control the actions of two cylinders, the operation process is smoother, reducing the possibility of human operation errors; the first positioning rod 2 and the second positioning rod 3 provide a stable structural foundation for the entire tool, ensuring the positional accuracy of each component during clamping, at the same time, the positioning block 203 and multiple clamping plates 303 cooperate with each other to position and clamp the connector shell from both sides, accurately fixing the connector shell at the center position of the tool, ensuring that the connector shell does not shift during subsequent machining, detection, etc. operations, improving the machining accuracy and the accuracy of the detection results, taking welding operation as an example, accurate positioning can ensure the accuracy of the welding position, avoiding welding defects caused by shell displacement, improving product quality;The positioning block 203 is connected with the connecting plate 202 through bolts, different shapes and sizes of the positioning block 203 are convenient to replace, so as to adapt to various different specifications of the connector shell, in addition, the design of the plurality of clamping plates 303 can better fit the connector shell of different shapes, and the versatility of the tool is enhanced, whether it is a small and precise connector shell or a large and complex structure connector shell, stable clamping can be realized through adjusting the positioning block 203 or using different combination modes of the plurality of clamping plates 303, and diversified production demands are met; the inner side of the positioning block 203 is made of rubber material, in the clamping process, the rubber material can play a buffering role, avoiding the direct hard contact between the positioning block 203 and the connector shell to cause scratches or damage to the surface of the shell, at the same time, the friction of the rubber material is large, which can increase the friction between the positioning block 203 and the connector shell, further improve the stability of clamping, ensure the clamping effect, and protect the appearance and performance of the connector shell,
[0026] The utility model discloses an embodiment of the utility model, every clamping plate 303 inside sets up a plurality of antiskid strip 304, and the antiskid strip 304 outside sets up a plurality of antiskid lines, and the antiskid strip 304 is rubber material quality, every clamping plate 303 one side is provided with a plurality of grooves 305, and the groove 305 inside is provided with spring 306, and spring 306 outside is installed with the clamping block 307, and the clamping block 307 outer surface is rubber material quality, and the placing plate 4 one side is provided with the fence 401, and the fence 401 corner is arc shape, the placing plate 4 upper end is fixedly installed with the baffle 402, and the baffle 402 one side is fixedly installed with a plurality of antiskid grain 403, and the antiskid grain 403 outside is arc shape, and the placing plate 4 upper end is rubber material quality, and the positioning block 203 is adjacent with clamping plate 303 Setting, the bottom plate 1 is settled on the stable work platform, and the first positioning rod 2 and the second positioning rod 3 vertical stand on the bottom plate 1 upper end, and the foundation framework of laying the support and positioning of tool is established, and the stability of subsequent operation is ensured, and the connector shell to be clamped is placed on the placing plate 4 on the top of the first positioning rod 2, and the fence 401 on the one side of the placing plate 4 can prevent the shell from accidentally rolling, and the arc shape design of the corner of the fence 401 avoids scratching the operator, and the rubber material quality of the placing plate 4 upper end and the fixed installation of a plurality of antiskid grain 403 (the antiskid grain 403 outside is arc shape) on the one side of the baffle 402 can increase the friction with the bottom of the connector shell, and the shell position is preliminarily fixed, and it prevents from sliding randomly on the placing plate 4, and one side positioning and pre-clamping: starting the first cylinder 201, and its output end stretches and pushes the connecting plate 202 along the first positioning rod 2 side movement, and the unique shape of the connecting plate 202 ensures the movement process stable, and will not appear to deviate, and the positioning block 203 installed on the one side of the connecting plate 202 moves along, and the positioning block 203 is connected on the connecting plate 202 through bolt, and it is convenient to replace according to different connector shell size, when the positioning block 203 contacts the connector shell, starts to position one side of the shell, and pushes it to the tool center position, completes preliminary fixation, prevents the shell from moving during subsequent operation, and the positioning block 203 is adjacent with clamping plate 303 Setting, and prepares for the clamping operation of the other side, after the positioning block 203 completes one side positioning, starts the second cylinder 301, and the output end of the second cylinder 301 stretches and pushes the positioning plate 302 along the second positioning rod 3 one side movement, and the plurality of clamping plates 303 installed on the one side of the positioning plate 302 gradually approach the connector shell, and the plurality of rubber material quality antiskid strips 304 set up in every clamping plate 303 inside and the antiskid lines outside the antiskid strip 304 increase the friction between the clamping plate 303 and the shell, and ensure that the shell will not slide during clamping, and at the same time, in a plurality of grooves 305 opened on the one side of every clamping plate 303, spring 306 connects the clamping block 307 of rubber material quality outer surface, when the clamping plate 303 contacts the connector shell, the clamping block 307 is extruded, and the spring 306 contracts, and the rubber material quality outer surface of the clamping block 307 further adheres to the shell surface, and the clamping force is adjusted according to the shell shape self-adapting,The connector shell is clamped tightly between the positioning block 203 and the clamping plate 303 from the other side, ensuring uniform clamping force and avoiding shell deformation or loosening. Only by sequentially starting the first cylinder 201 and the second cylinder 301, the positioning and clamping of the connector shell can be quickly completed, and the operation process is greatly simplified. Compared with the traditional complex clamping tool, the operator does not need to manually adjust multiple components, reducing the operation difficulty and failure probability, and significantly improving the work efficiency. The first and second positioning rods form a stable structure to ensure the position accuracy of each component during clamping. The positioning block 203 and the multiple clamping plates 303 cooperate with each other to accurately position and clamp the connector shell from both sides, so that it is stably positioned at the center of the tool. In subsequent processing (such as welding) or detection operations, it can effectively prevent the shell from moving, improve the processing accuracy and the accuracy of the detection results, and improve the product quality. The positioning block 203 is connected by bolts and is convenient to replace different specifications, which is suitable for various sizes of connector shells. The anti-slip strips 304 on the inner side of the multiple clamping plates 303, the springs 306 and the clamping blocks 307 in the grooves 305 are designed to adaptively adjust the clamping mode according to the shape of the connector shell, enhance the versatility of the tool, and realize stable clamping of small and precise or large and complex connector shells, meeting the diversified production needs. The rubber material on the inner side of the positioning block 203 has buffering and anti-slip effects, avoiding hard contact and scratching the shell. The rubber material on the outer surface of the anti-slip strips 304, the anti-slip patterns on the clamping plate 303 and the clamping block 307 also reduce the damage to the shell surface. The rubber material of the placing plate 4, the arc-shaped corners of the surrounding plate 401 and the arc-shaped outer side of the anti-slip particles 403 protect the appearance and performance of the connector shell from all directions, ensuring that the product quality is not affected by the clamping process.
[0027] Working principle: when using the tool, first put the bottom plate 1 on the stable work platform, vertical on the first positioning rod 2 and the second positioning rod 3 on the end of the bottom plate 1, as the foundation of the whole tool, guarantee the stable operation, then put the connector shell to be clamped on the placement plate 4 on the top of the first positioning rod 2, the side of the placement plate 4 is provided with the surrounding plate 401, the corner is arc shape, which can prevent the shell from falling accidentally, and avoid scratching the operator; the upper end of the placement plate 4 is rubber material, and the side of the baffle 402 is fixedly installed with a plurality of anti-skid grains 403 with arc shape outside, which increases the friction with the bottom of the connector shell, can preliminarily fix the shell position, prevent it from sliding on the placement plate 4, then carry out one side positioning and pre-clamping operation, start the first cylinder 201, its output end stretches, pushes the connecting plate 202 with inverted T shape along the side of the first positioning rod 2, because of the unique shape of the connecting plate 202, the moving process is stable, will not deviate, the positioning block 203 installed on one side of the connecting plate 202 moves with it, the positioning block 203 is connected with the connecting plate 202 through bolts, which is convenient to replace according to different shell size, when the positioning block 203 contacts with the connector shell, start to position one side of the shell, push it to the center position of the tool, complete the preliminary fixation, prevent the shell from moving during subsequent operation, at this time, the positioning block 203 is adjacent to the clamp plate 303, which prepares for the clamping operation of the other side, finally, after the positioning block 203 completes one side positioning, start the second cylinder 301, the output end of the second cylinder 301 stretches, pushes the positioning plate 302 along one side of the second positioning rod 3, the plurality of clamp plates 303 installed on one side of the positioning plate 302 gradually approach the connector shell, the rubber material anti-skid strip 304 and anti-skid pattern inside the clamp plate 303 increase the friction between the shell, ensure that the shell will not slide during clamping, at the same time, the spring 306 in the groove 305 on one side of the clamp plate 303 connects the rubber material clamping block 307 on the outer surface, when the clamp plate 303 contacts with the shell, the clamping block 307 is extruded, the spring 306 is contracted, its rubber outer surface further fits the shell surface, according to the shell shape, the clamping force is adjusted adaptively, tightly clamp the connector shell between the positioning block 203 and the clamp plate 303 from the other side, ensure uniform clamping force, avoid shell deformation or loosening.
Claims
1. A connector housing tooling for facilitating clamping, comprising: The bottom plate (1) is characterized in that: the first positioning rod (2) and the second positioning rod (3) are arranged at the upper end of the bottom plate (1), the first positioning rod (2) is provided with a placing plate (4) at the upper end, the first positioning rod (2) is provided with a first air cylinder (201) on the side, the output end of the first air cylinder (201) is provided with a connecting plate (202), one side of the connecting plate (202) is provided with a positioning block (203), one side of the second positioning rod (3) is provided with a second air cylinder (301), the output end of the second air cylinder (301) is provided with a positioning plate (302), and a plurality of clamping plates (303) are arranged on one side of the positioning plate (302).
2. A connector housing tooling for facilitating gripping according to claim 1, wherein: The connecting plate (202) is in the shape of an inverted "T", the positioning block (203) is connected with the connecting plate (202) through bolts, and the inner side of the positioning block (203) is made of rubber.
3. A connector housing tooling for facilitating gripping according to claim 1, wherein: A plurality of anti-skid strips (304) are arranged on the inner side of each clamping plate (303), a plurality of anti-skid patterns are arranged on the outer side of the anti-skid strips (304), and the anti-skid strips (304) are made of rubber.
4. The connector housing tooling of claim 1, wherein: A plurality of grooves (305) are formed in one side of each clamping plate (303), a spring (306) is arranged in each groove (305), a clamping block (307) is arranged on the outer side of the spring (306), and the outer surface of the clamping block (307) is made of rubber.
5. The connector housing tooling of claim 1, wherein: One side of the placing plate (4) is provided with a surrounding plate (401), and the corners of the surrounding plate (401) are in the shape of an arc.
6. A connector housing tooling for facilitating gripping according to claim 1, wherein: A baffle (402) is fixedly installed at the upper end of the placing plate (4), a plurality of anti-skid particles (403) are fixedly installed on one side of the baffle (402), the outer side of the anti-skid particles (403) is in the shape of an arc, and the upper end of the placing plate (4) is made of rubber.
7. A connector housing tooling for facilitating gripping according to claim 1, wherein: The positioning block (203) and the clamping plate (303) are arranged adjacent to each other.