Three-station numerical control bus processing machine convenient to position

By introducing adjustment and auxiliary mechanisms into the CNC busbar processing machine, multi-directional adjustment and waste chip collection are achieved, which solves the problems of manual positioning offset and inconvenient cleaning in traditional busbar processing and improves processing quality and efficiency.

CN223441634UActive Publication Date: 2025-10-17SHANDONG SHANHE CNC EQUIP CO LTD
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Patent Information

Application Number
CN202422931752.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-17
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Traditional CNC three-station busbar processing machines require workers to manually position materials, which leads to worker fatigue and positioning deviation, affecting processing quality.

Method used

The adjustment mechanism and auxiliary mechanism, including worm, worm wheel, threaded rod, sliding frame, chuck, etc., are used to achieve multi-directional adjustment and waste chip collection. The scale and clamping machine are used for precise positioning and fixation, and the waste chips are collected in a collection box.

Benefits of technology

It improves the fatigue and positioning deviation problems caused by workers supporting materials for a long time, improves processing quality and work efficiency, and simplifies the waste chip cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bus processing machines, and discloses a three-station numerical control bus processing machine convenient to position, which comprises a numerical control processing platform, an adjusting mechanism is arranged on the numerical control processing platform, the adjusting mechanism is used for carrying out multi-direction adjusting auxiliary processing on a processed part, an auxiliary mechanism is arranged on the numerical control processing platform, and the auxiliary mechanism is used for carrying out multi-direction adjusting auxiliary processing on the processed part. The auxiliary mechanism is used for collecting sweeps generated during machining, the adjusting mechanism comprises a worm, the worm is rotationally connected to the inner wall of the bottom of the numerical control machining platform through a bearing, the top end of the worm is fixedly connected with an adjusting disc, the worm is connected with a worm gear in a meshed mode, and an inner ring of the worm gear is fixedly connected with a threaded rod. And the threaded rod is in threaded connection with a sliding frame. According to the utility model, the sliding frame, the dial gauge and other structures are arranged, so that the problems that people are easy to feel tired when the materials are manually supported for a long time, the materials are easy to position and deviate due to the fact that the hands are easy to move and misplace, and the bus processing quality is influenced are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to busbar processing machine technical field especially, relates to a three station numerical control busbar processing machine of convenient positioning. BACKGROUND

[0002] With the rapid development of high, low voltage electric appliance, transformer manufacturing industry, the demand of copper, aluminum busbar is more and more big, and processing kind is more and more, in the production of high, low voltage switch cabinet and complete electrical equipment installation, often need to cut, punch, embossing and other various processing to copper, aluminum busbar, in the shearing, punching, bending processing of copper, aluminum busbar, need to use three station hydraulic busbar processing.

[0003] Numerical control three station busbar processing instrument can complete the shearing, punching, bending process of copper, aluminum busbar, and has higher production efficiency, but the traditional numerical control three station busbar processing instrument directly rotates the turret with hand, and the worker's hand contacts the stamping part, and the copper, aluminum busbar is placed in the die, and manual observation is needed before stamping whether the copper, aluminum busbar is aligned with the punch.

[0004] The above device has the following defects: during the processing, the worker needs to manually operate the material for positioning, and the long-time manual support of the material can easily make the worker tired, and the hand holding can be moved and misaligned, which can cause the material positioning to deviate, and affect the busbar processing quality, therefore, a three station numerical control busbar processing machine for convenient positioning is proposed to solve the above problems. SUMMARY

[0005] In order to make up for the above shortcomings, the utility model provides a three station numerical control busbar processing machine for convenient positioning, which aims to improve the problem that the worker needs to manually operate the material for positioning during the processing in the prior art, and the long-time manual support of the material can easily make the worker tired, and the hand holding can be moved and misaligned, which can cause the material positioning to deviate.

[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a three position numerical control bus processing machine of convenient positioning, including numerical control processing platform, be provided with adjusting mechanism on the numerical control processing platform, the adjusting mechanism is used for the multidirectional adjusting of workpiece and is assisted processing, the auxiliary mechanism is set up on the numerical control processing platform, the auxiliary mechanism is used for collecting the swarf generated when processing, the adjusting mechanism includes worm, the worm is rotatably connected in the bottom inner wall of numerical control processing platform through bearing, the top of worm is fixedly connected with adjusting disc, the worm is meshed and is connected with worm wheel, the inner ring of worm wheel is fixedly connected with threaded rod, the threaded rod is threadedly connected with sliding frame, the top outer wall of numerical control processing platform is fixedly connected with scale table, the outer wall of one side of sliding frame is rotatably connected with chuck through bearing, the top inner wall of sliding frame is slidably connected with paddle, the outer wall of one side of paddle is fixedly connected with limit rod, the outer wall of one side of paddle away from limit rod is fixedly connected with compression spring.

[0007] As further description of the above technical solution: the auxiliary mechanism includes installation slot, the installation slot is opened in the top inner wall of numerical control processing platform, the two side inner walls of installation slot are slidably connected with miscellaneous box, the outer wall of one side of miscellaneous box is provided with hand holding groove, the top outer wall of miscellaneous box is fixedly connected with arc baffle.

[0008] As further description of the above technical solution: the two ends of threaded rod are rotatably connected in the two side inner walls of numerical control processing platform, and the sliding frame is slidably connected in the top inner wall of numerical control processing platform.

[0009] As further description of the above technical solution: the limit rod is clamped in the one side inner wall of chuck, and the one end of compression spring away from paddle is fixedly connected in the one side inner wall of sliding frame.

[0010] As further description of the above technical solution: the one side outer wall of chuck is fixedly connected with clamp machine, the output end of clamp machine is fixedly connected with bidirectional threaded rod through shaft coupling, and the bidirectional threaded rod is threadedly connected with clamping plate.

[0011] As further description of the above technical solution: the bidirectional threaded rod is rotatably connected in the one side inner wall of chuck, and the clamping plate is two.

[0012] As further description of the above technical solution: the inner wall of one side of hand holding groove is fixedly connected with frosted pad, and the inner diameter width of miscellaneous box is adapted to the length of scale table.

[0013] As a further description of the above technical solutions: the top outer wall of the numerical control machining platform is fixedly connected with a lifting frame, an output end of the lifting frame is fixedly connected with a machining head, and one side outer wall of the numerical control machining platform is fixedly connected with a control panel.

[0014] The utility model has the advantages of the following:

[0015] 1. In the utility model, the sliding frame, the scale table and the chuck are arranged to adjust and position the workpiece in multiple directions, which can improve the problem that long-time manual support of the material can cause fatigue of the personnel, the hand-held part can be moved and misaligned to cause deviation of the material positioning, and the busbar machining quality is affected.

[0016] 2. In the utility model, the impurity collecting box, the hand holding groove and the arc-shaped baffle are arranged to collect the waste generated during machining, which can facilitate unified cleaning by the personnel, improve the problem that the waste generated during machining can fall to various parts of the machining platform and the personnel need to clean each area, and affect the work efficiency of the personnel. DRAWINGS

[0017] Figure 1 The utility model provides an overall front view split schematic diagram of the three-station numerical control busbar machining machine which is convenient to position;

[0018] Figure 2 The utility model provides an overall side view split schematic diagram of the three-station numerical control busbar machining machine which is convenient to position;

[0019] Figure 3 The utility model provides an adjusting mechanism schematic diagram of the three-station numerical control busbar machining machine which is convenient to position;

[0020] Figure 4 The utility model provides an auxiliary mechanism schematic diagram of the three-station numerical control busbar machining machine which is convenient to position.

[0021] LEGEND:

[0022] 1. Numerical control machining platform; 2. Lifting frame; 3. Machining head; 4. Control panel; 5. Adjusting mechanism; 51. Worm; 52. Adjusting disc; 53. Worm gear; 54. Threaded rod; 55. Sliding frame; 56. Scale table; 57. Chuck; 58. Pushing piece; 59. Limiting rod; 510. Compression spring; 61. Clamping machine; 62. Bidirectional threaded rod; 63. Clamping plate; 7. Auxiliary mechanism; 71. Mounting groove; 72. Impurity collecting box; 73. Hand holding groove; 74. Arc-shaped baffle. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] Reference Figures 1-3 The utility model provides an embodiment: a three-station CNC busbar processing machine with convenient positioning, including a CNC processing platform 1, an adjusting mechanism 5 is provided on the CNC processing platform 1, the adjusting mechanism 5 is used to perform multi-directional adjustment auxiliary processing on the workpiece, an auxiliary mechanism 7 is provided on the CNC processing platform 1, the auxiliary mechanism 7 is used to collect waste chips generated during processing, the adjusting mechanism 5 includes a worm 51, the worm 51 is rotatably connected to the bottom inner wall of the CNC processing platform 1 through a bearing, the top of the worm 51 is fixedly connected to an adjusting disk 52, and a worm wheel 53 is meshedly connected to the worm 51. By setting the worm 51 and the worm wheel 53 to cooperate with each other, the worm wheel 53 has a certain self-locking property when the worm 51 is not rotating, and the inner ring of the worm wheel 53 is fixedly connected It is connected to a threaded rod 54, which is used to drive the sliding frame 55 to move left and right for adjustment. The sliding frame 55 is threadedly connected to the threaded rod 54, and a scale 56 is fixedly connected to the top outer wall of the CNC machining platform 1. The scale 56 is provided to facilitate personnel to accurately move the distance of the sliding frame 55 according to the scale 56, thereby adjusting the moving position of the workpiece on the sliding frame 55. The outer wall of one side of the sliding frame 55 is rotatably connected to a chuck 57 through a bearing, and the top inner wall of the sliding frame 55 is slidably connected to a paddle 58, and the outer wall of one side of the paddle 58 is fixedly connected to a limit rod 59, and the outer wall of the side of the paddle 58 away from the limit rod 59 is fixedly connected to a compression spring 510, and a continuous thrust is generated on the paddle 58 by providing the compression spring 510.

[0025] Reference Figures 2-4Both ends of the threaded rod 54 are rotatably connected to the two side inner walls of the numerical control machining platform 1 through bearings, the sliding frame 55 is slidably connected to the top inner wall of the numerical control machining platform 1, the limiting rod 59 is clamped to the side inner wall of the chuck 57, the compression spring 510 is fixedly connected to the side inner wall of the sliding frame 55 away from the end of the push piece 58, the push piece 58 is convenient for personnel to operate and adjust, the chuck 57 is fixedly connected with the clamp machine 61 on the side outer wall, the output end of the clamp machine 61 is fixedly connected with the bidirectional threaded rod 62 through a shaft coupling, the bidirectional threaded rod 62 is threadedly connected with the clamping plate 63, the clamping plate 63 is used for clamping and fixing the workpiece, the bidirectional threaded rod 62 is rotatably connected to the side inner wall of the chuck 57 through a bearing, and the clamping plate 63 comprises two clamping plates 63, the two clamping plates 63 are slidably connected to the side inner wall of the chuck 57, the top outer wall of the numerical control machining platform 1 is fixedly connected with the elevator frame 2, the output end of the elevator frame 2 is fixedly connected with the machining head 3, and the side outer wall of the numerical control machining platform 1 is fixedly connected with the control panel 4.

[0026] With reference to Figures 3-4 The auxiliary mechanism 7 comprises a mounting groove 71, the mounting groove 71 is formed in the top inner wall of the numerical control machining platform 1, and the two side inner walls of the mounting groove 71 are slidably connected with the scrap collecting box 72. The scrap collecting box 72 is used for collecting the waste generated during machining. The side outer wall of the scrap collecting box 72 is provided with a hand holding groove 73, the top outer wall of the scrap collecting box 72 is fixedly connected with an arc-shaped baffle 74, the arc-shaped baffle 74 is used for reducing the waste floating outside the scrap collecting box 72, the side inner wall of the hand holding groove 73 is fixedly connected with a frosted pad, the frosted pad is used for reducing the problem of slipping and losing hold when personnel operate the hand holding groove 73, and the inner diameter width of the scrap collecting box 72 is matched with the length of the scale 56.

[0027] Working principle: the workpiece is placed between the two clamping plates 63, then the bidirectional threaded rod 62 rotates when the clamp machine 61 is turned on, the bidirectional threaded rod 62 drives the two clamping plates 63 to move, so that the clamping plates 63 clamp and fix the workpiece, then the worm gear 51 rotates by rotating the adjusting disc 52, the worm gear 51 drives the worm wheel 53 to rotate, the worm wheel 53 drives the threaded rod 54 to rotate, the threaded rod 54 drives the sliding frame 55 to move, the sliding frame 55 moves to adjust the horizontal position according to the scale 56, then the push piece 58 is pulled to press the compression spring 510, at the same time, the push piece 58 drives the limiting rod 59 to move, the limiting rod 59 moves away from the side inner wall of the chuck 57, then the chuck 57 is rotated to adjust the angle of the workpiece, then the limiting rod 59 is inserted into the chuck 57 to position the workpiece after the push piece 58 is released, then the busbar is machined through the machining assembly, the waste generated during machining falls into the scrap collecting box 72, then the scrap collecting box 72 is separated from the mounting groove 71 by pulling the hand holding groove 73, and the waste is uniformly cleaned and assembled.

[0028] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. A three-station CNC busbar processing machine with convenient positioning, comprising a CNC processing platform (1), characterized in that: The numerical control machining platform (1) is provided with an adjustment mechanism (5), and the adjustment mechanism (5) is used for multi-directional adjustment auxiliary machining of the workpiece. The numerical control machining platform (1) is provided with an auxiliary mechanism (7), and the auxiliary mechanism (7) is used for collecting waste chips generated during machining. The adjustment mechanism (5) includes a worm (51), and the worm (51) is rotatably connected to the bottom inner wall of the numerical control machining platform (1) through a bearing. The top end of the worm (51) is fixedly connected to an adjustment disk (52), and the worm (51) is meshedly connected to a worm wheel (53). The inner ring of the worm wheel (53) is fixedly connected to a threaded rod (54), and a sliding frame (55) is threadedly connected to the threaded rod (54). The top outer wall of the CNC machining platform (1) is fixedly connected to a scale (56), and one side outer wall of the sliding frame (55) is rotatably connected to a chuck (57) through a bearing. The top inner wall of the sliding frame (55) is slidably connected to a paddle (58), and one side outer wall of the paddle (58) is fixedly connected to a limiting rod (59). The side outer wall of the paddle (58) away from the limiting rod (59) is fixedly connected to a compression spring (510).

2. The three-station CNC busbar processing machine with convenient positioning according to claim 1, characterized in that: The auxiliary mechanism (7) includes a mounting groove (71), the mounting groove (71) is provided on the top inner wall of the CNC machining platform (1), the inner walls on both sides of the mounting groove (71) are slidably connected to a sundry box (72), a hand support groove (73) is provided on one outer wall of the sundry box (72), and the top outer wall of the sundry box (72) is fixedly connected to an arc-shaped baffle (74).

3. The three-station CNC busbar processing machine with convenient positioning according to claim 1, characterized in that: The two ends of the threaded rod (54) are rotatably connected to the inner walls on both sides of the CNC machining platform (1) through bearings, and the sliding frame (55) is slidably connected to the top inner wall of the CNC machining platform (1).

4. The three-station CNC busbar processing machine with convenient positioning according to claim 1 is characterized in that: The limiting rod (59) is clamped on an inner wall of one side of the chuck (57), and one end of the compression spring (510) away from the paddle (58) is fixedly connected to an inner wall of one side of the sliding frame (55).

5. The three-station CNC busbar processing machine with convenient positioning according to claim 1, characterized in that: A clamping machine (61) is fixedly connected to an outer wall of one side of the clamping disc (57), and an output end of the clamping machine (61) is fixedly connected to a bidirectional threaded rod (62) via a coupling, and a clamping plate (63) is threadedly connected to the bidirectional threaded rod (62).

6. The three-station CNC busbar processing machine with convenient positioning according to claim 5, characterized in that: The bidirectional threaded rod (62) is rotatably connected to the inner wall of one side of the chuck (57) via a bearing. There are two clamping plates (63) in total, and the two clamping plates (63) are slidably connected to the inner wall of one side of the chuck (57).

7. The three-station CNC busbar processing machine with convenient positioning according to claim 2, characterized in that: A frosting pad is fixedly connected to the inner wall of the side of the hand support groove (73), and the inner diameter width of the sundry collection box (72) is adapted to the length of the scale (56).

8. The three-station CNC busbar processing machine with convenient positioning according to claim 1, characterized in that: The top outer wall of the CNC machining platform (1) is fixedly connected to a lifting frame (2), the output end of the lifting frame (2) is fixedly connected to a machining head (3), and one side outer wall of the CNC machining platform (1) is fixedly connected to a control panel (4).