Efficient tapping positioning tool for electric cylinder mounting plate

By designing a high-efficiency electric cylinder mounting plate drilling and positioning fixture with positioning components, linkage components, and moving devices, the problem of inconvenient fixing of the electric cylinder mounting plate drilling device was solved, achieving stable clamping and precise drilling, thereby improving production efficiency and product quality.

CN224196369UActive Publication Date: 2026-05-05ZHONGSHAN XINJINGCHENG PRECISION MANUFACTURING TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN XINJINGCHENG PRECISION MANUFACTURING TECHNOLOGY CO LTD
Filing Date
2025-05-16
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing electric cylinder mounting plate drilling device is not easy to fix, which makes it easy to shift during the drilling process. It also requires manual adjustment, which is inefficient and results in unstable product quality.

Method used

A high-efficiency electric cylinder mounting plate tapping and positioning fixture was designed, which includes a positioning component, a linkage component, and a moving device. The positioning component clamps the electric cylinder mounting plate and the linkage component automatically adjusts it to achieve stable clamping. The moving device enables precise alignment and drilling.

Benefits of technology

This technology enables stable clamping and precise drilling of the electric cylinder mounting plate, improving production efficiency and product quality stability while avoiding human error.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient electric cylinder mounting plate tapping positioning tool which comprises a machining table and a connecting plate, a plurality of positioning assemblies are arranged on the connecting plate, every two adjacent positioning assemblies can be matched to clamp an electric cylinder mounting plate, each positioning assembly comprises a positioning seat, and each positioning seat is provided with a protruding supporting part capable of supporting the electric cylinder mounting plate. The positioning base is further provided with a plurality of receding grooves capable of receding when the electric cylinder mounting plate is tapped, the positioning assembly further comprises a mounting base, the mounting base is further provided with a rotating piece capable of rotating relative to the mounting base, and the rotating piece is provided with a jacking part; a linkage assembly capable of driving the rotating piece to rotate to enable the jacking part to move towards the supporting part and to enable the supporting part to clamp the electric cylinder mounting plate in a matched mode is arranged between the rotating piece and the mounting base, a plurality of machine tables are further arranged on one side of the machining table, and drill bit assemblies capable of tapping holes in the electric cylinder mounting plate are arranged on the machine tables. The efficient tapping positioning tool for the electric cylinder mounting plate is stable and convenient to clamp.
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Description

Technical Field

[0001] This utility model relates to the field of machining technology, and in particular to a tapping and positioning fixture for a high-efficiency electric cylinder mounting plate. Background Technology

[0002] In the existing machining process of electric cylinder mounting plates, tapping is usually required, but the existing tooling has many problems. During the machining of the motor plate, holes need to be drilled on its surface to facilitate motor installation. Existing drilling devices are not convenient for fixing the motor plate, which can lead to displacement during the drilling process. Moreover, most existing drilling devices require manual adjustment by operators, which is not only inefficient but also prone to human error, reducing production efficiency and product quality stability. Utility Model Content

[0003] The purpose of this invention is to overcome the problems of the prior art and provide a high-efficiency electric cylinder mounting plate tapping and positioning fixture that provides stable and convenient clamping.

[0004] To achieve the above objectives, the present invention adopts the following solution:

[0005] A high-efficiency electric cylinder mounting plate tapping and positioning fixture includes: a processing table, a connecting plate on the processing table, and multiple positioning components on the connecting plate. Adjacent positioning components can cooperate to clamp the electric cylinder mounting plate. Each positioning component includes a positioning seat with a protruding support portion that supports the electric cylinder mounting plate. The positioning seat also has multiple clearance grooves that allow space for tapping the electric cylinder mounting plate. The positioning component further includes a mounting base with a rotating component that can rotate relative to it. The rotating component has a pressing portion. A linkage component is provided between the rotating component and the mounting base, which drives the rotating component to rotate, causing the pressing portion to move towards the support portion and cooperate to clamp the electric cylinder mounting plate. Multiple machine tools are also provided on one side of the processing table, and each machine tool is equipped with a drill bit assembly for tapping the electric cylinder mounting plate.

[0006] The positioning seat is also provided with a positioning block assembly that can be positioned with the electric cylinder mounting plate.

[0007] The positioning block assembly includes a positioning block slidably connected to a positioning seat. The positioning seat is provided with a sliding groove in which the positioning block can slide. An elastic element is provided between the positioning block and the positioning seat to push the positioning block back to its original position.

[0008] The linkage component includes a first drive motor disposed within the mounting base. The output shaft of the first drive motor is rotatably connected to a rotating component. A linkage rod is disposed between the rotating component and the mounting base. One end of the linkage rod is rotatably connected to the mounting base, and the other end of the linkage rod is rotatably connected to the rotating component.

[0009] The mounting base includes a first mounting block and a second mounting block connected to the first mounting block. The second mounting block and the first mounting block cooperate to form a receiving groove that can accommodate the first drive motor. The second mounting block is provided with a through hole that allows the output shaft of the first drive motor to extend out. The second mounting block is also provided with an upwardly protruding protrusion. The rotating member is rotatably connected to the protrusion.

[0010] A moving device capable of driving the connecting plate to move relative to the processing table is provided between the processing table and the connecting plate.

[0011] The mobile device includes a support frame mounted on a mounting platform. The support frame is provided with a plurality of first slide rails, each of which is provided with a first slider that can slide relative to it. A sliding plate is provided between two of the first sliders. A first moving component that can be driven to move along the first slide rails is provided between the sliding plate and the mounting platform. A plurality of second slide rails are provided on the sliding plate, each of which is provided with a second slider that can slide relative to it. A connecting plate is provided between two of the second sliders, and a second moving component that can drive the connecting plate to move along the second slide rails is provided between the connecting plate and the sliding plate.

[0012] The first moving component includes two first connecting blocks disposed on the mounting platform, the two first connecting blocks being spaced apart from each other, and a first lead screw being disposed between the two first connecting blocks, which is rotatably connected to them. The bottom of the sliding plate is provided with a first lead screw seat that can cooperate with the first lead screw for transmission. A second drive motor is disposed on the sliding plate, and the output shaft of the second drive motor is connected to the first lead screw.

[0013] The second moving component includes a third drive motor mounted on a sliding plate. Two second connecting blocks are spaced apart on the sliding plate. A second lead screw is provided between the two second connecting blocks and can be rotatably connected to them. A second lead screw seat is provided at the bottom of the connecting plate and can cooperate with the second lead screw for transmission. A driven wheel is provided at the end of the second lead screw. A transmission belt is provided between the driven wheel and the third drive motor.

[0014] A drive assembly capable of moving the drill bit assembly toward the processing table is provided between the machine base and the drill bit assembly.

[0015] Compared with existing technologies, this utility model has the following advantages: When using this utility model, the electric cylinder mounting plate is placed on the support and then aligned so that the electric cylinder mounting plate is placed in the preset position. The linkage component is then activated, which drives the rotating part to rotate relative to the mounting base. At this time, the top pressing part on the rotating part gradually moves towards the support, thereby cooperating with the support to clamp the electric cylinder mounting plate. Due to the setting of multiple positioning components, different edges and corners of the electric cylinder mounting plate can be clamped, making the clamping more stable. At the same time, due to the setting of the clearance groove, the drill bit assembly can easily drill holes, making it more convenient to use. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the tapping and positioning fixture for the high-efficiency electric cylinder mounting plate of this utility model.

[0017] Figure 2 This is a schematic diagram of the positioning component of the tapping and positioning fixture for the high-efficiency electric cylinder mounting plate of this utility model.

[0018] Figure 3 This is a cross-sectional view of the positioning block assembly of the tapping and positioning fixture for the high-efficiency electric cylinder mounting plate of this utility model.

[0019] Figure 4 This is an exploded view of the linkage components and positioning seat of the tapping and positioning fixture for the high-efficiency electric cylinder mounting plate of this utility model.

[0020] Figure 5 This is one of the structural schematic diagrams of the processing table and moving device of the tapping and positioning fixture for the high-efficiency electric cylinder mounting plate of this utility model.

[0021] Figure 6 This is the second schematic diagram of the processing table and moving device of the tapping and positioning fixture for the high-efficiency electric cylinder mounting plate of this utility model. Detailed Implementation

[0022] The present invention will be further described in detail below with reference to embodiments:

[0023] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0024] like Figures 1 to 6As shown, a high-efficiency electric cylinder mounting plate tapping and positioning fixture includes: a processing table 11, a connecting plate 12 on the processing table 11, and multiple positioning components 13 on the connecting plate 12. Adjacent positioning components 13 can cooperate to clamp the electric cylinder mounting plate. Each positioning component 13 includes a positioning seat 131, which has a protruding support portion 1311 that supports the electric cylinder mounting plate. The positioning seat 131 also has multiple clearance grooves 1312 that allow space for tapping the electric cylinder mounting plate. 13 also includes a mounting base 132, on which a rotating component 133 is provided that can rotate relative to it. The rotating component 133 is provided with a pressing part 1331. A linkage assembly 134 is provided between the rotating component 133 and the mounting base 132, which can drive the rotating component 133 to rotate, causing the pressing part 1331 to move toward the support part 1311 and cooperate to clamp the electric cylinder mounting plate with the support part 1311. A plurality of machine tables 2 are also provided on one side of the processing table 11. The machine tables 2 are provided with a drill bit assembly 3 that can tap holes in the electric cylinder mounting plate.

[0025] In use, the electric cylinder mounting plate is placed on the support 1311 and aligned so that it is positioned in the preset position. The linkage component 134 is then activated, which drives the rotating component 133 to rotate relative to the mounting base 132. At this time, the pressing part 1331 on the rotating component 133 gradually moves toward the support 1311, thereby clamping the electric cylinder mounting plate in conjunction with the support 1311. Due to the multiple positioning components 13, the different corners of the electric cylinder mounting plate can be clamped, making the clamping more stable. At the same time, the clearance groove 1312 facilitates drilling by the drill bit assembly 3, making it more convenient to use.

[0026] The positioning seat 131 is also provided with a positioning block assembly 4 that can be positioned with the electric cylinder mounting plate. Through the cooperation of the positioning block assembly 4 and the electric cylinder mounting plate, the positioning accuracy of the electric cylinder mounting plate during the processing can be further improved.

[0027] The positioning block assembly 4 includes a positioning block 41 slidably connected to the positioning seat 131. The positioning seat 131 is provided with a sliding groove 42 within which the positioning block 41 can slide. An elastic element 43 is provided between the positioning block 41 and the positioning seat 131 to push the positioning block 41 back to its original position. The positioning block 41 is slidably connected to the positioning seat 131 through the sliding groove 42 and automatically resets with the help of the elastic element 43. It can be easily inserted into the corresponding positioning hole of the electric cylinder mounting plate for positioning, achieving rapid positioning. At the same time, during the processing, the pushing action of the elastic element 43 ensures that the positioning block 41 is in close contact with the electric cylinder mounting plate, improving positioning accuracy and stability.

[0028] The linkage component 134 includes a first drive motor 1341 disposed within the mounting base 132. The output shaft of the first drive motor 1341 is rotatably connected to the rotating component 133. A linkage rod 1342 is disposed between the rotating component 133 and the mounting base 132. One end of the linkage rod is rotatably connected to the mounting base 132, and the other end of the linkage rod 1342 is rotatably connected to the rotating component 133. When the first drive motor 1341 starts, it drives the rotating component 133 to rotate. Simultaneously, the linkage rod 1342 moves relative to the rotating component 133 and the mounting base 132, allowing the top pressing part 1331 on the rotating component 133 to move precisely towards the support part 1311, thereby clamping the electric cylinder mounting plate. This linkage is convenient and ensures the uniformity and stability of the clamping force, avoiding uneven or insufficient clamping force caused by manual operation, resulting in a more stable clamping.

[0029] The mounting base 132 includes a first mounting block 1321 and a second mounting block 1322 connected to the first mounting block 1321. The second mounting block 1322 and the first mounting block 1321 cooperate to form a receiving groove 1323 capable of accommodating the first drive motor 1341. The second mounting block 1322 is provided with a through hole 1324 for the output shaft of the first drive motor 1341 to extend out. The second mounting block 1322 is also provided with an upwardly protruding protrusion 1325, and the rotating component 133 is rotatably connected to the protrusion 1325. The mounting base 132 adopts a split design, which makes it easy to install the first mounting block 1321 and the second mounting block 1322. At the same time, it can provide a stable mounting space for the first drive motor 1341. The receiving groove 1323 fixes the drive motor in a suitable position, ensuring its operational stability. Meanwhile, the through hole 1324 allows the output shaft of the drive motor to extend smoothly and connect with the rotating component 133, ensuring the reliability of transmission. In addition, the protrusion 1325 provides a stable fulcrum for the rotating member 133, making the rotation of the rotating member 133 more precise and smoother.

[0030] A moving device 5 is provided between the processing table 11 and the connecting plate 12, which can drive the connecting plate 12 to move relative to the processing table 11. With the moving device 5, the connecting plate 12 and its positioning component 13 can be moved flexibly on the processing table 11, and the user only needs to place the electric cylinder plate on the positioning component 13.

[0031] The moving device 5 includes a support frame 51 mounted on a mounting platform. The support frame 51 has multiple first slide rails 52, each first slide rail 52 having a first slider 53 that can slide relative to it. A sliding plate 54 is positioned between two first sliders 53. A first moving component 55, capable of moving along the first slide rails 52, is positioned between the sliding plate 54 and the mounting platform. Multiple second slide rails 56 are mounted on the sliding plate 54, each second slide rail 56 having a second slider 57 that can slide relative to it. A connecting plate 12 is positioned between two second sliders 57, and a second moving component 58, capable of moving the connecting plate 12 along the second slide rails 56, is positioned between the connecting plate 12 and the sliding plate 54. This moving device, through the cooperation of the first slide rails 52 and the first sliders 53, and the cooperation of the second slide rails 56 and the second sliders 57, enables the connecting plate 12 to move flexibly in two directions, allowing for quick alignment of the electric cylinder mounting plate with the drill bit assembly 3, and then drilling holes on the front and rear sides of the electric cylinder mounting plate. Meanwhile, the first moving component 55 and the second moving component 58 can precisely control the movement of the sliding plate 54 and the connecting plate 12, ensuring that the electric cylinder mounting plate moves precisely during the processing and guaranteeing the processing accuracy.

[0032] The first moving component 55 includes two first connecting blocks 551 mounted on a mounting platform, spaced apart horizontally. A first lead screw 552, rotatably connected to the two first connecting blocks 551, is positioned between them. A first lead screw seat 553, capable of engaging with the first lead screw 552, is located at the bottom of the sliding plate 54. A second drive motor 554 is mounted on the sliding plate 54, with its output shaft connected to the first lead screw 552. By fixing the first lead screw 552 with the first connecting blocks 551, the sliding direction of the sliding plate 54 is defined. Simultaneously, through the engagement of the first lead screw 552 and the first lead screw seat 553, the second drive motor 554 can drive the sliding plate 54 to slide along the first slide rail 52, allowing the electric cylinder mounting plate to quickly align with the two drill bit assemblies 3 with precise movement.

[0033] The second moving component 58 includes a third drive motor 581 mounted on a sliding plate 54. Two second connecting blocks 582 are spaced apart on the sliding plate 54, and a second lead screw 583 rotatably connects the two connecting blocks 582. A second lead screw seat 584, capable of engaging with the second lead screw 583, is located at the bottom of the connecting plate 12. A driven wheel 585 is located at the end of the second lead screw 583, and a transmission belt connects the driven wheel 585 and the third drive motor 581. By fixing the second lead screw 583 with the second connecting blocks 582, the sliding direction of the connecting plate 12 is defined. Simultaneously, the engagement of the second lead screw 583 and the second lead screw seat 584 allows the electric cylinder mounting plate to slide forward quickly, enabling the two drill bit assemblies 3 to machine corresponding holes on the rear side of the electric cylinder mounting plate. This configuration allows for more precise movement.

[0034] A drive assembly 6 is provided between the machine base 2 and the drill bit assembly 3, which can drive the drill bit assembly 3 to move toward the processing table 11. The drive assembly 6 is a motor or a cylinder, which can easily drive the drill bit assembly 3 toward the processing table 11 and can process electric cylinder mounting plates of different thicknesses.

[0035] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A tapping and positioning fixture for a high-efficiency electric cylinder mounting plate, characterized in that, include: A processing table (11) is provided with a connecting plate (12). Multiple positioning components (13) are provided on the connecting plate (12). Two adjacent positioning components (13) can cooperate to clamp the electric cylinder mounting plate. Each positioning component (13) includes a positioning seat (131), which has a protruding support portion (1311) that can support the electric cylinder mounting plate. The positioning seat (131) also has multiple clearance grooves (1312) that allow space for drilling into the electric cylinder mounting plate. The positioning component (13) also includes a mounting base (132). The mounting base (132) is also provided with a rotating component (133) that can rotate relative to it. The rotating component (133) is provided with a pressing part (1331). A linkage assembly (134) is provided between the rotating component (133) and the mounting base (132) to drive the rotating component (133) to rotate, so that the pressing part (1331) moves toward the support part (1311) and cooperates to clamp the electric cylinder mounting plate with the support part (1311). A plurality of machine tables (2) are also provided on one side of the processing table (11). The machine table (2) is provided with a drill bit assembly (3) that can tap holes in the electric cylinder mounting plate.

2. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 1, characterized in that, The positioning seat (131) is also provided with a positioning block assembly (4) that can be positioned with the electric cylinder mounting plate.

3. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 2, characterized in that, The positioning block assembly (4) includes a positioning block (41) slidably connected to the positioning seat (131). The positioning seat (131) is provided with a sliding groove (42) in which the positioning block (41) can slide. An elastic element (43) is provided between the positioning block (41) and the positioning seat (131) to push the positioning block (41) back to its original position.

4. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 3, characterized in that, The linkage component (134) includes a first drive motor (1341) disposed in the mounting base (132). The output shaft of the first drive motor (1341) is rotatably connected to the rotating component (133). A linkage rod (1342) is disposed between the rotating component (133) and the mounting base (132). One end of the linkage rod is rotatably connected to the mounting base (132), and the other end of the linkage rod (1342) is rotatably connected to the rotating component (133).

5. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 1, characterized in that, The mounting base (132) includes a first mounting block (1321) and a second mounting block (1322) connected to the first mounting block (1321). The second mounting block (1322) and the first mounting block (1321) cooperate to form a receiving groove (1323) that can accommodate the first drive motor (1341). The second mounting block (1322) is provided with a through hole (1324) that allows the output shaft of the first drive motor (1341) to extend out. The second mounting block (1322) is also provided with an upwardly protruding protrusion (1325). The rotating member (133) is rotatably connected to the protrusion (1325).

6. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 1, characterized in that, A moving device (5) capable of driving the connecting plate (12) to move relative to the processing table (11) is provided between the processing table (11) and the connecting plate (12).

7. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 6, characterized in that, The moving device (5) includes a support frame (51) mounted on a mounting platform. The support frame (51) is provided with a plurality of first slide rails (52). Each of the first slide rails (52) is provided with a first slider (53) that can slide relative to it. A sliding plate (54) is provided between two of the first sliders (53). A first moving component (55) that can drive the sliding plate (54) to move along the first slide rail (52) is provided between the sliding plate (54) and the mounting platform. A plurality of second slide rails (56) are provided on the sliding plate (54). Each of the second slide rails (56) is provided with a second slider (57) that can slide relative to it. A connecting plate (12) is provided between two of the second sliders (57). A second moving component (58) that can drive the connecting plate (12) to move along the second slide rail (56) is provided between the connecting plate (12) and the sliding plate (54).

8. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 7, characterized in that, The first moving component (55) includes two first connecting blocks (551) disposed on the mounting platform. The two first connecting blocks (551) are spaced apart from each other. A first lead screw (552) is disposed between the two first connecting blocks (551) and is rotatably connected to them. A first lead screw seat (553) is disposed at the bottom of the sliding plate (54) and is capable of cooperating with the first lead screw (552) for transmission. A second drive motor (554) is mounted on the sliding plate (54). The output shaft of the second drive motor (554) is connected to the first lead screw (552).

9. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 8, characterized in that, The second moving component (58) includes a third drive motor (581) mounted on a sliding plate (54). Two second connecting blocks (582) are spaced apart on the sliding plate (54). A second lead screw (583) is provided between the two second connecting blocks (582) and is rotatably connected to them. A second lead screw seat (584) is provided at the bottom of the connecting plate (12) and is capable of cooperating with the second lead screw (583) for transmission. A driven wheel (585) is provided at the end of the second lead screw (583). A transmission belt is provided between the driven wheel (585) and the third drive motor (581).

10. The tapping and positioning fixture for the high-efficiency electric cylinder mounting plate according to claim 1, characterized in that, A drive assembly (6) capable of driving the drill assembly (3) to move toward the processing table (11) is provided between the machine base (2) and the drill assembly (3).