Automatic feeding mechanism for diamond blades

By introducing pneumatic feeding and gravity unloading structures into the automatic diamond cutting tool feeding mechanism, combined with buffer guides and buffers, the problems of low feeding efficiency and unstable output are solved, achieving efficient and stable diamond cutting tool feeding and reducing equipment wear.

CN224160001UActive Publication Date: 2026-04-24HUBEI ST BAIRUI DIAMOND TOOLS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI ST BAIRUI DIAMOND TOOLS CO LTD
Filing Date
2025-06-11
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing automatic diamond cutting tool feeding mechanisms have poor feeding efficiency, and the diamond cutting tools are prone to displacement during the discharge process, leading to scratches or damage, and the discharge structure is prone to clogging.

Method used

It adopts a pneumatic feeding structure, a gravity unloading structure, and a reset buffer structure. The diamond sheet is automatically and efficiently fed by the gravity pressing of the counterweight block and the pushing of the cylinder body. The discharge plate is reset by the buffer guide rail and the buffer to avoid excessive displacement.

Benefits of technology

It improves the feeding efficiency and effectiveness of diamond cutting tools, reduces the risk of displacement during the discharge process, extends the service life of the cylinder body, and avoids jamming and breakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of bus connection, in particular to an automatic feeding mechanism for diamond blades, which adopts the technical scheme that the automatic feeding mechanism for the diamond blades comprises a discharging base, an air cylinder seat, a buffer seat, a bearing base, an air cylinder main body, a buffer, a storage rack and a balancing weight, according to the diamond piece feeding device, diamond pieces are pressed down to the discharging plate through the balancing weight, the discharging plate is pushed by the air cylinder body to move in a reciprocating mode, and therefore the diamond pieces in the storage frame are brought into the storage plate to be efficiently fed; and a buffer guide rail is matched with a buffer, so that the discharging plate can be reset and buffered after the discharging plate is reset, the situation that the discharging plate is excessively displaced, and consequently, the storage plate cannot take out the diamond pieces in the storage frame is avoided, and the problems that an existing automatic feeding mechanism for the diamond blades is poor in feeding efficiency and effect; and the problem that the diamond blade is easy to displace in the discharging process is solved.
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Description

Technical Field

[0001] This utility model belongs to the field of busbar connection, specifically relating to an automatic diamond blade feeding mechanism. Background Technology

[0002] The automatic diamond cutting tool feeding mechanism is a device used in automated production processes. It is mainly used to automatically feed diamond cutting tools into processing or cutting machine tools, reducing manual intervention and improving production efficiency and accuracy.

[0003] Most existing automatic diamond cutting tool feeding mechanisms use a single cylinder or electric cylinder structure to achieve automatic feeding. However, the rebound and vibration generated during the reset of a single cylinder structure during automatic feeding can affect the stability and accuracy of the diamond cutting tool being fed out by the discharge structure. This can lead to the diamond cutting tool being scratched or broken during the feeding process. Furthermore, the efficiency and effectiveness of a single cylinder discharge structure in pushing out diamond cutting tools are poor, and it is easy for the diamond cutting tool to get stuck in the storage structure, thereby blocking the discharge structure and affecting its normal use.

[0004] Therefore, in view of the problems of poor feeding efficiency and effect of the existing automatic diamond cutting tool feeding mechanism and the easy displacement of diamond cutting tools during the discharge process, an automatic diamond cutting tool feeding mechanism is developed. By adding a pneumatic feeding structure, a gravity unloading structure and a reset buffer structure to the automatic diamond cutting tool feeding mechanism, the feeding efficiency and effect of the automatic diamond cutting tool feeding mechanism can be effectively improved, and the impact of the discharge structure rebound on the diamond cutting tool discharge can be reduced. Utility Model Content

[0005] In order to overcome the problems of poor feeding efficiency and effect of existing automatic diamond cutting tool feeding mechanisms, and the easy displacement of diamond cutting tools during the discharge process.

[0006] The technical solution of this utility model is as follows: an automatic diamond cutting tool feeding mechanism, including a discharge base, a cylinder base, a buffer base, and a bearing base, and further including a cylinder body, a buffer, a storage rack, and a counterweight. The upper end of the discharge base is bolted with the cylinder base, the buffer base, the bearing base, and the slide rail. The left and right ends of the cylinder base are provided with through holes. The right end of the cylinder base is bolted with the cylinder body. The output end of the cylinder body is fixedly connected to the first connector through the through hole. The upper end of the slide rail is movably provided with a movable base. The upper end of the movable base is bolted with a discharge plate. The right end of the discharge plate is fixedly connected with a second connector. The front and rear edges of the discharge plate are conveniently fixed with buffers and fitted with buffer guide rails. The upper end of the bearing base is bolted with symmetrically distributed storage racks. The right end of the storage rack is bolted with a limit block. The inner walls of the two sets of storage racks are movably provided with counterweights.

[0007] Preferably, a waste bin is bolted to the left end of the support base, and limit slots are provided at both the front and rear ends of the storage rack.

[0008] Preferably, a first limiting rod is fixed to the front end of the counterweight, and a second limiting rod is fixed to the rear end of the counterweight, with the first limiting rod being longer than the second limiting rod.

[0009] Preferably, a first groove is provided at the upper edge of the discharge plate, and a storage plate is installed in the first groove.

[0010] Preferably, the slide rail is adapted to the movable base, the first connector and the second connector are connected, and the inner wall of the limiting groove is in contact with the outer wall of the first limiting rod and the second limiting rod.

[0011] Preferably, the buffer seats are divided into two symmetrical groups, which are distributed on the front and rear sides of the discharge plate. The left end of the buffer guide rail and the output end of the buffer are both fixed to the buffer seats.

[0012] Preferably, the discharge plate is located above the discharge base, the cylinder seat is located to the right of the discharge plate, and the bearing base is located at the left end of the buffer seat.

[0013] The beneficial effects of this utility model are:

[0014] 1. The counterweight can press the diamond sheet down along the inner wall of the storage rack onto the discharge plate by its own gravity. Then, the cylinder body pushes the discharge plate to move back and forth, so as to bring the diamond sheet in the storage rack into the placement plate for automatic and efficient feeding.

[0015] 2. By using a buffer guide rail in conjunction with a buffer, the pneumatic discharge plate can be buffered after the discharge plate reciprocates during the discharge operation, so as to avoid excessive displacement of the discharge plate, which would prevent the storage plate from being unable to carry out the diamond sheets in the storage rack, and to improve the service life of the cylinder body. Attached Figure Description

[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the automatic diamond cutting tool feeding mechanism of this utility model.

[0017] Figure 2 The diagram shown is a three-dimensional disassembled view of the automatic diamond blade feeding mechanism of this utility model.

[0018] Figure 3 The diagram shown is a three-dimensional disassembled view of the discharge base and slide rail of the automatic diamond blade feeding mechanism of this utility model.

[0019] Figure 4 The diagram shown is a three-dimensional disassembled view of the cylinder seat, cylinder body and first connector of the automatic diamond cutting tool feeding mechanism of this utility model.

[0020] Figure 5 The diagram shows a three-dimensional disassembled view of the buffer seat, discharge plate, movable base, second connector, buffer guide rail and buffer of the automatic diamond blade feeding mechanism of this utility model.

[0021] Figure 6 The diagram shown is a three-dimensional disassembled view of the supporting base, storage rack, limiting block and counterweight of the automatic diamond cutting tool feeding mechanism of this utility model.

[0022] Explanation of reference numerals in the attached drawings: 1-Discharge base, 2-Cylinder seat, 3-Buffer seat, 4-Bearing base, 5-Discharge plate, 6-Waste bin, 7-Slide rail, 8-Cylinder body, 9-Through hole, 10-First connector, 11-Second connector

[0023] 12-Buffer rail, 13-Buffer, 14-Modible base, 15-First groove, 16-Place plate, 17-Counterweight block, 18-First limit rod, 19-Second limit rod, 20-Storage rack, 21-Limit block, 22-Limit groove. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0025] Please see Figures 1-6 This utility model provides an embodiment of an automatic diamond cutting tool feeding mechanism, comprising a discharge base 1, a cylinder seat 2, a buffer seat 3, and a bearing base 4, and further comprising a cylinder body 8, a buffer 13, a storage rack 20, and a counterweight 17. The upper end of the discharge base 1 is bolted with the cylinder seat 2, the buffer seat 3, the bearing base 4, and the slide rail 7. The left and right ends of the cylinder seat 2 are provided with through holes 9, and the right end of the cylinder seat 2 is bolted with the cylinder body 8. The output end of the cylinder body 8 passes through the through hole 9. A first connector 10 is fixedly connected. A movable base 14 is movably installed on the upper end of the slide rail 7. A discharge plate 5 is bolted to the upper end of the movable base 14. A second connector 11 is fixedly connected to the right end of the discharge plate 5. A buffer 13 and a buffer guide rail 12 are conveniently fixedly connected to the front and rear edges of the discharge plate 5. A storage rack 20 symmetrically distributed in front and rear is bolted to the upper end of the bearing base 4. A limit block 21 is bolted to the right end of the storage rack 20. A counterweight block 17 is movably installed on the inner wall of the two sets of storage racks 20.

[0026] The counterweight 17 presses the diamond sheet down along the inner wall of the storage rack 20 onto the discharge plate 5 by its own gravity. Then, the cylinder body 8 pushes the discharge plate 5 to move back and forth, so as to bring the diamond sheet in the storage rack 20 onto the placement plate 16 for automatic and efficient feeding. The buffer guide rail 12 and the buffer 13 can buffer the pneumatic discharge plate 5 after the discharge plate 5 reciprocates, so as to avoid excessive displacement of the discharge plate 5, which would prevent the placement plate 16 from carrying out the diamond sheet in the storage rack 20, and improve the service life of the cylinder body 8.

[0027] Please see Figures 5-6 In this embodiment, a waste bin 6 is bolted to the left end of the support base 4. Limiting grooves 22 are opened through the front and rear ends of the storage rack 20. During use, the waste bin 6 can facilitate the user to collect the broken diamond sheets to prevent waste from being sent out. A first limiting rod 18 is fixed to the front end of the counterweight 17, and a second limiting rod 19 is fixed to the rear end of the counterweight 17. The first limiting rod 18 is longer than the second limiting rod 19. During use, the first limiting rod 19 and the second limiting rod 18 can limit the counterweight 17 to prevent the counterweight 17 from stably pressing the diamond sheets down from the storage rack 20 onto the discharge plate 5. A first groove 15 is opened at the upper edge of the discharge plate 5. A shelf 16 is installed in the first groove 15. During use, the shelf 16 can position and support the diamond sheets, and the anti-slip texture on it can stably carry the diamond sheets out with the discharge plate 5 for discharge.

[0028] Please see Figures 3-6 In this embodiment, the slide rail 7 is adapted to the movable base 14, the first connector 10 and the second connector 11 are connected, and the inner wall of the limiting groove 22 is in contact with the outer wall of the first limiting rod 18 and the second limiting rod 19. In use, the first connector 10 and the second connector 11 can facilitate the user to connect the cylinder body 8 to the discharge plate 5, and also facilitate the user to disassemble or maintain the cylinder body 8. The buffer seat 3 is divided into two symmetrical groups, and the two groups of buffer seats 3 are distributed on the front and rear sides of the discharge plate 5. The left end of the buffer guide rail 12 and the output end of the buffer 13 are fixed to the buffer seat 3. In use, the buffer seat 3 can fix the buffer guide rail 12 and the buffer 13 and provide them with buffer support. The discharge plate 5 is located above the discharge base 1, the cylinder seat 2 is located on the right side of the discharge plate 5, and the bearing base 4 is located on the left end of the buffer seat 3. In use, the cylinder seat 2 can support and bear the cylinder body 8, and the bolt installation method also facilitates the user to disassemble the cylinder body 8.

[0029] Before use, first loosen the bolt on the limit block 21 to remove it, then hold the first limit rod 18 and the second limit rod 19 to remove the counterweight 17 from the storage rack 20, put the diamond sheet into the storage rack 20, and then reinstall the counterweight 17 and the limit block 21 as described above.

[0030] During operation, the counterweight 17 presses down the diamond sheet along the inner wall of the storage rack 20 onto the discharge plate 5. At the same time, the cylinder body 8 is activated, which pushes the discharge plate 5 to move back and forth, so as to bring the diamond sheet on the discharge plate 5 into the placement plate 16 and push it outward to the left side of the storage rack 20 for discharge.

[0031] Meanwhile, after the cylinder body 8 completes one discharge operation, it needs to push the discharge plate 5 to reset again. During this process, the buffer guide rail 12 and the buffer 13 are used to buffer the reset of the discharge plate 5 to avoid excessive displacement of the discharge plate 5, which would prevent the storage plate 16 from carrying out the diamond sheet in the storage rack 20. Then the discharge operation can be repeated.

[0032] Through the above steps, the counterweight 17 can press the diamond sheet down along the inner wall of the storage rack 20 onto the discharge plate 5 by its own gravity. Then, the cylinder body 8 pushes the discharge plate 5 to move back and forth, so as to bring the diamond sheet in the storage rack 20 onto the placement plate 16 for automatic and efficient feeding. The buffer guide rail 12 and the buffer 13 can buffer the pneumatic discharge plate 5 after the discharge plate 5 reciprocates, so as to avoid excessive displacement of the discharge plate 5, which would prevent the placement plate 16 from being unable to carry out the diamond sheet in the storage rack 20. This also improves the service life of the cylinder body 8 and solves the problems of poor feeding efficiency and effect of the existing diamond blade automatic feeding mechanism, and the diamond blade is prone to displacement during the discharge process.

[0033] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. An automatic diamond cutting tool feeding mechanism, comprising a discharge base (1), a cylinder seat (2), a buffer seat (3), and a support base (4), characterized in that: It also includes a cylinder body (8), a buffer (13), a storage rack (20), and a counterweight (17). The upper end of the discharge base (1) is bolted with a cylinder seat (2), a buffer seat (3), a bearing base (4), and a slide rail (7). The left and right ends of the cylinder seat (2) are provided with through holes (9). The right end of the cylinder seat (2) is bolted with a cylinder body (8). The output end of the cylinder body (8) is fixedly connected to a first connector (10) through the through hole (9). The upper end of the slide rail (7) is movably provided with a movable base. The upper end of the movable base (14) is bolted with a discharge plate (5). The right end of the discharge plate (5) is fixed with a second connector (11). The front and rear edges of the discharge plate (5) are conveniently fixed with a buffer (13) and a buffer guide rail (12). The upper end of the bearing base (4) is bolted with symmetrically distributed storage racks (20). The right end of the storage rack (20) is bolted with a limit block (21). The inner walls of the two sets of storage racks (20) are movably equipped with counterweights (17).

2. The automatic diamond cutting tool feeding mechanism according to claim 1, characterized in that: The left end of the support base (4) is bolted to a waste bin (6), and the front and rear ends of the storage rack (20) are provided with limit grooves (22).

3. The automatic diamond cutting tool feeding mechanism according to claim 2, characterized in that: The front end of the counterweight (17) is fixedly connected to a first limiting rod (18), and the rear end of the counterweight (17) is fixedly connected to a second limiting rod (19). The first limiting rod (18) is longer than the second limiting rod (19).

4. The automatic diamond cutting tool feeding mechanism according to claim 3, characterized in that: A first groove (15) is provided at the upper edge of the discharge plate (5), and a storage plate (16) is installed in the first groove (15).

5. The automatic diamond cutting tool feeding mechanism according to claim 4, characterized in that: The slide rail (7) is adapted to the movable base (14), the first connector (10) and the second connector (11) are connected, and the inner wall of the limiting groove (22) is in contact with the outer wall of the first limiting rod (18) and the second limiting rod (19).

6. The automatic diamond cutting tool feeding mechanism according to claim 5, characterized in that: The buffer seat (3) is divided into two symmetrical groups. The two groups of buffer seats (3) are distributed on the front and rear sides of the discharge plate (5). The left end of the buffer guide rail (12) and the output end of the buffer (13) are both fixed to the buffer seat (3).

7. The automatic diamond cutting tool feeding mechanism according to claim 6, characterized in that: The discharge plate (5) is located above the discharge base (1), the cylinder seat (2) is located on the right side of the discharge plate (5), and the bearing base (4) is located at the left end of the buffer seat (3).