Waste collecting assembly of punching machine for molybdenum-tungsten alloy machining

By designing a support frame and a motor-driven vibrating screen box structure for easy disassembly of the screen plate, the problems of waste classification and screen plate disassembly in the waste collection assembly of punch presses used for molybdenum-tungsten alloy processing were solved, achieving efficient waste recycling and equipment maintenance.

CN223960012UActive Publication Date: 2026-03-03LUOYANG TAIMO METAL PRODUCTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

The existing waste collection components of punch presses used for processing molybdenum-tungsten alloys cannot effectively classify and recycle waste of different sizes, and the screen plate is easily deformed, making disassembly and assembly difficult.

Method used

A waste collection assembly including a support frame, a motor, a screen box, and a screen plate was designed. The motor drives a round rod to vibrate and screen the waste. The screen plate is easy to disassemble and replace through a tie rod and spring structure.

Benefits of technology

It enables graded recycling of waste materials and convenient disassembly and assembly of screen plates, improving the quality of waste recycling and reducing the difficulty of equipment maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of molybdenum-tungsten alloy machining, and discloses a waste collecting assembly of a punching machine for molybdenum-tungsten alloy machining, which comprises a support, a controller is fixedly arranged on the outer wall of the support, a second motor is fixedly arranged on the outer wall of the support, and a round rod is fixedly assembled on a power output shaft of the second motor. The outer wall of the round rod is rotationally connected with a short rod, and the inner wall of the short rod is rotationally connected with a rotating rod. According to the waste collecting assembly of the punching machine for molybdenum-tungsten alloy machining, a controller is controlled, a second motor is used for driving round rods to rotate, the two round rods drive a rotating rod to rotate through short rods, then the rotating rod drives waste on the inner wall of a screen box to conduct vibration screening through long rods, and the waste recycling quality is improved; the four connecting rods are evenly distributed on the outer walls of the two sides of the screen box, the screen box drives the connecting rods to rotate and limit at the bottoms of the supporting rods, and deviation of the vibration screening position of the screen box is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of molybdenum-tungsten alloy processing technology, specifically to a waste collection component for a punch press used in molybdenum-tungsten alloy processing. Background Technology

[0002] Tungsten-molybdenum alloys are alloys composed of tungsten and molybdenum, and are widely used in aviation, aerospace, automotive, machinery manufacturing, shipbuilding, and chemical industries. The rapid development of the industrial economy has led to an increasing demand for welded aluminum alloy structural components, prompting in-depth research into the weldability of aluminum alloys. This process also generates a large amount of waste during production.

[0003] In the existing waste collection components for punch presses used in molybdenum-tungsten alloy processing, the waste generated during alloy production varies in size, making it impossible for the equipment to classify and recycle it. This reduces the applicable scope of the equipment for waste collection. At the same time, during the recycling process, the alloy waste is subjected to collisions with the equipment for a long time, which can easily cause deformation of the screen plate, making disassembly and assembly difficult for personnel. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a waste collection assembly for a punch press used in the processing of molybdenum-tungsten alloys. It has the advantages of graded recycling of waste and easy disassembly and assembly of the sieve plate, thus solving the problems mentioned in the background art.

[0005] This utility model provides the following technical solution: a waste collection assembly for a punch press used in molybdenum-tungsten alloy processing, comprising a bracket, a controller fixedly mounted on the outer wall of the bracket, a second motor fixedly mounted on the outer wall of the bracket, a round rod fixedly mounted on the power output shaft of the second motor, a short rod rotatably connected to the outer wall of the round rod, a rotating rod rotatably connected to the inner wall of the short rod, a long rod rotatably connected to the outer wall of the rotating rod, a screen box fixedly mounted on the top of the long rod, a square groove fixedly mounted on the inner wall of the screen box, a square block mounted on the inner wall of the square groove, a screen plate fixedly connected to the top of the square block, a pull rod slidably connected to the inner wall of the square block, a round plate fixedly mounted on the outer wall of the pull rod, a spring movably sleeved on the outer wall of the pull rod, a support rod fixedly mounted on the outer wall of the bracket, a connecting rod rotatably connected to the bottom of the support rod, a bellows fixedly mounted on the outer wall of the bracket, and a hopper fixedly mounted on the outer wall of the bracket.

[0006] As a preferred technical solution of this utility model: a first motor is fixedly installed on the outer wall of the wind box, a fan is fixedly mounted on the power output shaft of the first motor, and the controller is electrically connected to the first motor.

[0007] As a preferred technical solution of this utility model: the controller and the second motor are electrically connected, and there are two round rods, which are symmetrically arranged with the short rod and the rotating rod as the center.

[0008] As a preferred technical solution of this utility model: the number of connecting rods is four, and the four connecting rods are evenly distributed on both sides of the outer wall of the screen box.

[0009] As a preferred technical solution of this utility model: the inner wall of the square groove overlaps with the outer wall of the block, and the outer wall of the pull rod forms a sliding sleeve with the inner wall of the sieve box.

[0010] As a preferred technical solution of this utility model: one end of the sieve plate is fixed to the outer wall of the circular plate, and the other end of the spring is fixed to the inner wall of the sieve box.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] 1. The waste collection assembly of the punch press for processing molybdenum-tungsten alloy uses a controller to drive a second motor to rotate a round rod. This causes the two round rods to rotate through a short rod, which in turn drives a rotating rod to vibrate and screen the waste on the inner wall of the screen box through a long rod, thus improving the quality of waste recycling. When the waste is screened by the screen box, four connecting rods are evenly distributed on both sides of the outer wall of the screen box. The screen box drives the connecting rods to rotate and limit the bottom of the support rod, preventing the screen box from shifting during vibration and screening.

[0013] 2. The waste collection component of this punch press for processing molybdenum-tungsten alloy uses a screen plate to move a block onto the inner wall of the screen box, allowing the block to overlap with the inner wall of the square groove. A pull rod is inserted through the inner wall of the screen box and into the inner wall of the block, stabilizing the screen plate on the inner wall of the screen box. By pulling the pull rod with external force, the pull rod drives the circular plate to compress the spring, enabling quick disassembly of the screen plate from the screen box. This facilitates the replacement of different sizes of the screen plate according to the waste material being recycled, and also facilitates the inspection and cleaning of the screen plate. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0015] Figure 2 This is a schematic diagram of the fan structure of this utility model;

[0016] Figure 3 This is a schematic diagram of the rotating rod structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the square groove structure of this utility model;

[0018] Figure 5 This is a schematic diagram of the spring structure of this utility model.

[0019] In the diagram: 1. Support frame; 2. Controller; 3. Hopper; 4. Air box; 5. First motor; 6. Round rod; 7. Second motor; 8. Connecting rod; 9. Support rod; 10. Screen box; 11. Screen plate; 12. Pull rod; 13. Rotating rod; 14. Fan; 15. Long rod; 16. Block; 17. Square channel; 18. Spring; 19. Round plate; 20. Short rod. Detailed Implementation

[0020] 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.

[0021] Please see Figure 1 - Figure 5 A waste collection assembly for a punch press used in molybdenum-tungsten alloy processing includes a support 1, a controller 2 fixedly mounted on the outer wall of the support 1, a second motor 7 fixedly mounted on the outer wall of the support 1, a round rod 6 fixedly mounted on the power output shaft of the second motor 7, a short rod 20 rotatably connected to the outer wall of the round rod 6, a rotating rod 13 rotatably connected to the inner wall of the short rod 20, a long rod 15 rotatably connected to the outer wall of the rotating rod 13, a screen box 10 fixedly mounted on the top of the long rod 15, a square groove 17 fixedly mounted on the inner wall of the screen box 10, a block 16 mounted on the inner wall of the square groove 17, a screen plate 11 fixedly connected to the top of the block 16, a pull rod 12 slidably connected to the inner wall of the block 16, a round plate 19 fixedly mounted on the outer wall of the pull rod 12, a spring 18 movably sleeved on the outer wall of the pull rod 12, a support rod 9 fixedly mounted on the outer wall of the support 1, a connecting rod 8 rotatably connected to the bottom of the support rod 9, a bellows 4 fixedly mounted on the outer wall of the support 1, and a hopper 3 fixedly mounted on the outer wall of the support 1.

[0022] In the above structure, by installing bracket 1, the overall weight of the equipment is evenly supported, thereby increasing the stability of the equipment during operation.

[0023] In a preferred embodiment: a first motor 5 is fixedly installed on the outer wall of the bellows 4, a fan 14 is fixedly mounted on the power output shaft of the first motor 5, and an electrical connection is formed between the controller 2 and the first motor 5.

[0024] In the above structure, by controlling the controller 2, the first motor 5 drives the fan 14 to rotate on the inner wall of the air box 4, so that the airflow generated by the fan 14 rotates discharges the debris generated when the waste falls through the hopper 3, thus avoiding the debris from mixing with the waste and reducing the recycling quality.

[0025] In a preferred embodiment: the controller 2 is electrically connected to the second motor 7, and there are two round rods 6, which are symmetrically arranged with the short rod 20 and the rotating rod 13 as the center.

[0026] In the above structure, the waste material falls onto the inner wall of the screen box 10 through the inner wall of the hopper 3. By controlling the controller 2, the second motor 7 drives the round rod 6 to rotate, so that the two round rods 6 drive the rotating rod 13 to rotate through the short rod 20. In turn, the rotating rod 13 drives the waste material on the inner wall of the screen box 10 to vibrate and screen through the long rod 15, thereby improving the quality of waste recycling.

[0027] In a preferred embodiment, there are four connecting rods 8, and the four connecting rods 8 are evenly distributed on both outer walls of the screen box 10.

[0028] In the above structure, when the waste material is screened by the screen box 10, four connecting rods 8 are evenly distributed on both sides of the outer wall of the screen box 10. The screen box 10 drives the connecting rods 8 to rotate and limit the bottom of the support rod 9, so as to prevent the screen box 10 from vibrating and shifting the screening position.

[0029] In a preferred embodiment: the inner wall of the square groove 17 overlaps with the outer wall of the block 16, and the outer wall of the pull rod 12 forms a sliding connection with the inner wall of the screen box 10.

[0030] In the above structure, the sieve plate 11 drives the block 16 to be placed on the inner wall of the sieve box 10, so that the block 16 overlaps with the inner wall of the square groove 17. The pull rod 12 is inserted through the inner wall of the sieve box 10 and the inner wall of the block 16, so that the sieve plate 11 is stable on the inner wall of the sieve box 10.

[0031] In a preferred embodiment, one end of the sieve plate 11 is fixed to the outer wall of the circular plate 19, and the other end of the spring 18 is fixed to the inner wall of the sieve box 10.

[0032] In the above structure, by pulling the lever 12 with external force, the lever 12 drives the circular plate 19 to compress the spring 18, so that the screen plate 11 and the screen box 10 can be quickly disassembled, which makes it convenient for personnel to replace the screen plate 11 with different sizes according to the waste recycling, and also makes it convenient for personnel to inspect and clean the screen plate 11.

[0033] Working principle: Waste material falls through the inner wall of hopper 3 onto the inner wall of screen box 10. Control controller 2 uses first motor 5 to drive fan 14 to rotate within air box 4. The airflow generated by fan 14 discharges debris produced when waste material falls through hopper 3. Control controller 2 also uses second motor 7 to drive round rod 6 to rotate. The two round rods 6, through short rod 20, drive rotating rod 13 to rotate. Rotating rod 13, through long rod 15, vibrates and screens the waste material on the inner wall of screen box 10, improving waste recycling quality. During waste screening via screen box 10, four connecting rods 8 are evenly distributed on both outer walls of screen box 10. The screen box 10 drives the connecting rod 8 to rotate and limit the bottom of the support rod 9 to prevent the screen box 10 from vibrating and shifting its screening position. The screen plate 11 drives the block 16 to be placed on the inner wall of the screen box 10, so that the block 16 overlaps with the inner wall of the square groove 17. The pull rod 12 is inserted through the inner wall of the screen box 10 and the inner wall of the block 16, so that the screen plate 11 is stable on the inner wall of the screen box 10. By pulling the pull rod 12 with external force, the pull rod 12 drives the circular plate 19 to compress the spring 18, so that the screen plate 11 and the screen box 10 can be quickly disassembled. This makes it easy for personnel to replace the screen plate 11 with different sizes according to the waste recycling, and also makes it easy for personnel to inspect and clean the screen plate 11.

[0034] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A waste collection assembly for a punch press for machining molybdenum-tungsten alloys, comprising a support (1), characterized in that: The outer wall of the support (1) is fixedly installed with a controller (2), the outer wall of the support (1) is fixedly installed with a second motor (7), the power output shaft of the second motor (7) is fixedly assembled with a round rod (6), the outer wall of the round rod (6) is rotatably connected with a short rod (20), the inner wall of the short rod (20) is rotatably connected with a rotating rod (13), the outer wall of the rotating rod (13) is rotatably connected with a long rod (15), the top of the long rod (15) is fixedly installed with a sieve box (10), the inner wall of the sieve box (10) is fixedly installed with a square groove (17), the inner wall of the square groove (17) is installed with a square block (16), the top of the square block (16) is fixedly connected with a sieve plate (11), the inner wall of the square block (16) is slidably connected with a pull rod (12), the outer wall of the pull rod (12) is fixedly installed with a round plate (19), the outer wall of the pull rod (12) is movably sleeved with a spring (18), the outer wall of the support (1) is fixedly installed with a support rod (9), the bottom of the support rod (9) is rotatably connected with a connecting rod (8), the outer wall of the support (1) is fixedly installed with a bellows (4), the outer wall of the support (1) is fixedly installed with a hopper (3).

2. The scrap collecting assembly of a punch press for molybdenum-tungsten alloy machining according to claim 1, characterized in that: The outer wall of the bellows (4) is fixedly installed with a first motor (5), the power output shaft of the first motor (5) is fixedly assembled with a fan (14), and the controller (2) and the first motor (5) are electrically connected.

3. The scrap collecting assembly of a punch press for molybdenum-tungsten alloy machining according to claim 2, characterized in that: The controller (2) and the second motor (7) are electrically connected, the number of the round rod (6) is two, and the two round rods (6) are centrally symmetrically arranged with the short rod (20) and the rotating rod (13) as the centers.

4. The scrap collecting assembly of a punch press for molybdenum-tungsten alloy machining according to claim 1, characterized in that: The number of the connecting rod (8) is four, and the four connecting rods (8) are uniformly distributed on the two side outer walls of the sieve box (10).

5. The scrap collecting assembly of a punch press for molybdenum-tungsten alloy machining according to claim 4, characterized in that: The inner wall of the square groove (17) and the outer wall of the square block (16) are overlapped, and the outer wall of the pull rod (12) and the inner wall of the sieve box (10) are slidably sleeved.

6. The scrap collecting assembly of a punch press for molybdenum-tungsten alloy machining according to claim 1, characterized in that: One end of the sieve plate (11) is fixed with the outer wall of the round plate (19), and the other end of the spring (18) is fixed with the inner wall of the sieve box (10).