Diamond saw blade dynamic balance detection equipment

By designing a diamond saw blade dynamic balance detection device including a moving mechanism and an adjustment mechanism, and using laser emitters and sensors to detect the balance degree of saw blades of different thicknesses, the problem that existing equipment is difficult to detect saw blades of different thicknesses is solved, and the flexibility and accuracy of detection are improved.

CN222978989UActive Publication Date: 2025-06-13HUBEI SHENGLONG SUPERHARD MATERIAL CO LTD
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Patent Information

Application Number
CN202422070242.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-06-13
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing diamond saw blade dynamic balance detection equipment is not convenient for detecting saw blades of different thicknesses, making it difficult to meet the established expectations.

Method used

A diamond saw blade dynamic balance detection device is designed, using the moving mechanism and adjustment mechanism inside the body, and through the cooperation of the laser emitter and sensor, the balance detection of saw blades of different thicknesses is achieved.

Benefits of technology

The equipment can effectively detect the balance of diamond saw blades of different thicknesses, improve the flexibility and accuracy of detection, and meet the detection needs of saw blades of different thicknesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses diamond saw blade dynamic balance detection equipment, which comprises a machine body, a screw rod is arranged in the machine body, the screw rod is in threaded connection with a sliding block, a detection mechanism is arranged, and when the equipment is used, after a fixed plate is driven by an adjusting mechanism to be adjusted to the same height above a saw blade, a laser emitter at the front end of the fixed plate is started to emit laser; when a receiver does not receive laser, the saw blade is not adjusted to the horizontal position, a third motor drives a second rotating block to rotate, the second rotating block drives the saw blade to rotate, a push rod drives a moving block to slide in a moving plate while the saw blade rotates, and when the saw blade shakes during rotation, the saw blade makes contact with a supporting block, so that the saw blade is adjusted to the horizontal position. The supporting block slides in the moving block through the buffer mechanism, at the moment, one side of the supporting block slides above the sensor, the sensor transmits data to the processor, balance degree detection of the saw blade is completed, at the moment, the moving plate can be driven to move through the moving mechanism, and saw blades of different thicknesses can be detected conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of diamond saw blade dynamic balance detection equipment, in particular to a diamond saw blade dynamic balance detection equipment. Background Technique

[0002] A diamond saw blade is a high-strength cutting tool, mainly composed of a matrix and a cutting head. The cutting head is sintered on the matrix through powder metallurgy materials doped with diamond powder and is the main cutting part. There are still some defects in the existing devices; for example;

[0003] For example, the diamond saw blade dynamic balance detection device with the publication number of CN219996425U. When it is used, it includes a dynamic balance detection table and a saw blade fastener. The upper part of the dynamic balance detection table is provided with a detection rotating shaft, an angle disk, a friction tray and a limiting column. The angle disk, the friction tray and the limiting column are all arranged on the detection rotating shaft, and the friction tray is located above the angle disk to support the dynamic balance detection of the diamond saw blade. The limiting column is arranged above the friction tray to sleeved in the inner hole of the diamond saw blade dynamic balance detection. There is a threaded hole on the limiting column, and the axis of the threaded hole and the axis of the limiting column both coincide with the rotation axis of the detection rotating shaft; the saw blade fastener includes a screw part, a pressing part and a twisting part. The screw part cooperates with the threaded hole, the pressing part is connected to the screw part and is buckled on the limiting column, and the twisting part is arranged on the pressing part. The above device has some problems. Although it can be well applied when in use to complete the balance detection of the saw blade, it usually can only detect the same saw blade. Because it is not convenient to detect saw blades with different thicknesses, the use effect of this detection equipment is difficult to reach the established expectation. Therefore, we propose a diamond saw blade dynamic balance detection equipment to solve the above-mentioned problems. Content of the Utility Model

[0004] The purpose of the utility model is to provide a diamond saw blade dynamic balance detection equipment to solve the problem that the diamond saw blade dynamic balance detection equipment in the above background technique is not convenient to detect saw blades with different thicknesses.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: A diamond saw blade dynamic balance detection equipment, including a machine body;

[0006] A lead screw is arranged inside the machine body, and the lead screw is threadedly connected with a slider, and the slider is fixedly connected with a fixed block. A first motor is fixedly connected inside the fixed block, and the first motor is connected with a first rotating block. The inside of the machine body is connected with a fixed plate through an adjusting mechanism, and a laser emitter is connected to the front end of the fixed plate;

[0007] The interior of the body is connected to a moving plate through a moving mechanism. The moving plate is fixedly connected to a push rod, and the front end of the push rod is fixedly connected to a moving block. Inside the moving block, it is connected to a support block through a buffer mechanism. The moving block is slidably connected to the moving plate, and a sensor is arranged inside the support block. The sensor is connected to a processor. Inside the moving plate, it is fixedly connected to a third motor. The third motor is connected to a second rotating block, and inside the second rotating block, it is threadedly connected to a bolt. The bolt is fixedly connected to a receiver.

[0008] As a preferred technical solution of the present invention, the moving mechanism includes a second motor, a turntable, a rotating shaft, a long plate, a moving shaft, a moving rod, and a moving plate. The second motor is fixedly connected to the interior of the body, the second motor is connected to the turntable, and the surface of the turntable is fixedly connected to the rotating shaft. The rotating shaft is arranged in a groove at the tail of the long plate, the tail of the long plate is hinged to the body, and a moving shaft is arranged inside a groove at the front end of the long plate. The moving shaft is hinged to the moving rod, and the upper part of the moving rod is fixedly connected to the moving plate.

[0009] As a preferred technical solution of the present invention, the buffer mechanism includes a moving block, a fixed rod, a spring, and a support block. The inside of the moving block is fixedly connected to the fixed rod. Above the fixed rod, it is slidably connected to the inside of the support block. The support block is slidably connected to the inside of the moving block. A spring is arranged on the surface of the fixed rod.

[0010] As a preferred technical solution of the present invention, the adjusting mechanism includes a threaded rod, a fixing plate, and a connecting rod. The lower part of the threaded rod is threadedly connected to the interior of the body. The upper part of the threaded rod is rotatably connected to the inside of the fixing plate. The fixing plate is fixedly connected to the connecting rod. The lower part of the connecting rod is slidably connected to the interior of the body.

[0011] As a preferred technical solution of the present invention, the adjusting mechanisms are symmetrically arranged about the center of the body. Each adjusting mechanism is connected to a fixing plate, and a laser emitter is connected to the front end of each fixing plate.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The diamond saw blade dynamic balance detection device is provided with a detection mechanism. During use, after the fixing plate is driven by the adjustment mechanism to be adjusted to the same height as above the saw blade, the laser emitter at the front end of the fixing plate is started to emit laser at this time. When the receiver does not receive the laser, it indicates that the saw blade is not adjusted to the horizontal position. The third motor drives the second rotating block to rotate, and the second rotating block drives the saw blade to rotate. While the saw blade is rotating, the push rod drives the moving block to slide inside the moving plate. When the saw blade shakes during rotation, the saw blade contacts the support block, and the support block slides inside the moving block through the buffer mechanism. At this time, one side of the support block slides above the sensor, and the sensor transmits the data to the processor to complete the balance detection of the saw blade. At this time, the moving plate can be driven to move through the moving mechanism, which is convenient for detecting saw blades of different thicknesses. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is the main sectional structure schematic diagram of the present utility model;

[0014] Figure 2 is the structural schematic diagram of the moving rod of the present utility model;

[0015] Figure 3 is of the present utility model Figure 1 the enlarged structural schematic diagram at A in;

[0016] Figure 4 is the structural schematic diagram of the support block of the present utility model.

[0017] In the figure: 1, body; 2, lead screw; 3, slider; 4, fixed block; 5, first motor; 6, first rotating block; 7, second motor; 8, turntable; 9, rotating shaft; 10, long plate; 11, moving shaft; 12, moving rod; 13, moving plate; 14, push rod; 15, moving block; 16, fixed rod; 17, spring; 18, support block; 19, sensor; 20, processor; 21, third motor; 22, second rotating block; 23, bolt; 24, receiver; 25, threaded rod; 26, fixing plate; 27, connecting rod; 28, laser emitter. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0019] Please refer to Figures 1-4, the present utility model provides a technical solution, a diamond saw blade dynamic balance detection device, including a machine body 1, a lead screw 2 is arranged inside the machine body 1, and the lead screw 2 is threadedly connected with a slider 3, and the slider 3 is fixedly connected with a fixed block 4, a first motor 5 is fixedly connected inside the fixed block 4, and the first motor 5 is connected with a first rotating block 6, the inside of the machine body 1 is connected with a fixing plate 26 through an adjusting mechanism, the adjusting mechanism includes a threaded rod 25, a fixing plate 26, and a connecting rod 27, the lower part of the threaded rod 25 is threadedly connected with the inside of the machine body 1, and the upper part of the threaded rod 25 is rotatably connected with the inside of the fixing plate 26, and the fixing plate 26 is fixedly connected with the connecting rod 27, the lower part of the connecting rod 27 is slidably connected with the inside of the machine body 1, and the front end of the fixing plate 26 is connected with a laser emitter 28, the adjusting mechanism is symmetrically arranged about the center of the machine body 1, and the adjusting mechanisms are all connected with a fixing plate 26, and the front ends of the fixing plates 26 are all connected with a laser emitter 28;

[0020] When in use, after placing the saw blade above the rotating block inside the machine body 1, at this time, pass the bolt 23 through the middle position of the saw blade, then rotate the lead screw 2, the lead screw 2 drives the slider 3 to move, and at the same time the slider 3 drives the fixed block 4 to descend, so that the first rotating block 6 below the fixed block 4 is engaged with the upper part of the bolt 23. At this time, the first motor 5 drives the first rotating block 6 to rotate, and the first rotating block 6 drives the bolt 23 to rotate, so that the bolt 23 enters the second rotating block 22, and at the same time the bolt 23 fixes the saw blade. At this time, by rotating the threaded rods 25 on both sides, the threaded rods 25 drive the fixing plate 26 to move, and at the same time the fixing plate 26 drives the connecting rod 27 to slide inside the machine body 1. After adjusting the fixing plate 26 to the same height as the upper part of the saw blade, start the laser emitter 28 at the front end of the fixing plate 26 to emit laser, and receive it through the receiver 24 above the bolt 23. When the receiver 24 does not receive the laser, it means that the saw blade is not adjusted to the horizontal position;

[0021] Inside the machine body 1, it is connected to the moving plate 13 through a moving mechanism. The moving mechanism includes a second motor 7, a turntable 8, a rotating shaft 9, a long plate 10, a moving shaft 11, a moving rod 12, and a moving plate 13. The second motor 7 is fixedly connected to the inside of the machine body 1, and the second motor 7 is connected to the turntable 8. The surface of the turntable 8 is fixedly connected to the rotating shaft 9. The rotating shaft 9 is arranged in the groove at the tail of the long plate 10, and the tail of the long plate 10 is hinged to the machine body 1. Inside the groove at the front end of the long plate 10, there is a moving shaft 11. The moving shaft 11 is hinged to the moving rod 12, and the upper part of the moving rod 12 is fixedly connected to the moving plate 13. The moving plate 13 is fixedly connected to the push rod 14, and the front end of the push rod 14 is fixedly connected to the moving block 15. Inside the moving block 15, it is connected to the support block 18 through a buffer mechanism. The buffer mechanism includes a moving block 15, a fixed rod 16, a spring 17, and a support block 18. Inside the moving block 15, it is fixedly connected to the fixed rod 16. The upper part of the fixed rod 16 is slidably connected to the inside of the support block 18, and the support block 18 is slidably connected to the inside of the moving block 15. The surface of the fixed rod 16 is provided with a spring 17, and the moving block 15 is slidably connected to the moving plate 13. Inside the support block 18, there is a sensor 19. The sensor 19 is connected to the processor 20. Inside the moving plate 13, it is fixedly connected to the third motor 21. The third motor 21 is connected to the second rotating block 22, and inside the second rotating block 22, it is threadedly connected to a bolt 23. The bolt 23 is fixedly connected to the receiver 24;

[0022] At this time, the third motor 21 drives the second rotating block 22 to rotate. The second rotating block 22 drives the saw blade to rotate. While the saw blade is rotating, the push rod 14 drives the moving block 15 to slide inside the moving plate 13. When the saw blade shakes during rotation, the saw blade drives the support block 18 to slide in the fixed rod 16 and the moving block 15. At the same time, the spring 17 on the surface of the fixed rod 16 contracts. At this time, one side of the support block 18 slides above the sensor 19, and the sensor 19 transmits the data to the processor 20 to complete the balance detection of the saw blade. At the same time, during use, the second motor 7 can drive the turntable 8 to rotate, and the rotating shaft 9 on the surface of the turntable 8 rotates synchronously. At this time, the rotating shaft 9 moves in the groove at the tail of the long plate 10, driving the long plate 10 to be adjusted through the hinge shaft. At this time, the groove at the front end of the long plate 10 drives the moving shaft 11 to move. At this time, the moving shaft 11 drives the moving rod 12 to slide inside the machine body 1, and at the same time, the moving rod 12 drives the upper moving plate 13 to move, facilitating the detection of saw blades of different thicknesses.

[0023] Working principle: When using the dynamic balance detection device for diamond saw blades, after placing the saw blade above the rotating block inside the machine body 1 during use, at this time, pass the bolt 23 through the middle position of the saw blade. Then, rotate the screw rod 2. The screw rod 2 drives the slider 3 to move. At the same time, the slider 3 drives the fixed block 4 to descend, so that the first rotating block 6 below the fixed block 4 is engaged with the upper part of the bolt 23. At this time, the first motor 5 drives the first rotating block 6 to rotate. The first rotating block 6 drives the bolt 23 to rotate, so that the bolt 23 enters the second rotating block 22, and at the same time, the bolt 23 fixes the saw blade. At this time, by rotating the threaded rods 25 on both sides, the threaded rods 25 drive the fixing plate 26 to move. At the same time, the fixing plate 26 drives the connecting rod 27 to slide inside the machine body 1. After adjusting the fixing plate 26 to the same height as the upper part of the saw blade, at this time, start the laser emitter 28 at the front end of the fixing plate 26 to emit laser, and receive it through the receiver 24 above the bolt 23. When the receiver 24 does not receive the laser, it means that the saw blade is not adjusted to the horizontal position. At this time, the third motor 21 drives the second rotating block 22 to rotate. The second rotating block 22 drives the saw blade to rotate. When the saw blade rotates, the push rod 14 drives the moving block 15 to slide inside the moving plate 13. When the saw blade shakes during rotation, the saw blade drives the support block 18 to slide in the fixed rod 16 and the moving block 15. At the same time, the spring 17 on the surface of the fixed rod 16 contracts. At this time, one side of the support block 18 slides above the sensor 19, and the sensor 19 transmits the data to the processor 20 to complete the balance detection of the saw blade. At the same time, during use, the second motor 7 can be used to drive the turntable 8 to rotate. The rotating shaft 9 on the surface of the turntable 8 rotates synchronously. At this time, the rotating shaft 9 moves in the groove at the tail of the long plate 10, driving the long plate 10 to be adjusted through the hinge shaft. At this time, the groove at the front end of the long plate 10 drives the moving shaft 11 to move. At this time, the moving shaft 11 drives the moving rod 12 to slide inside the machine body 1. At the same time, the moving rod 12 drives the upper moving plate 13 to move, which is convenient for detecting saw blades of different thicknesses, thus completing a series of work. The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0024] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, it is intended to embrace all changes falling within the meaning and scope of the equivalent elements of the claims in the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.

Claims

1. A diamond saw blade dynamic balance detection device, comprising a body (1); Features: A screw rod (2) is provided inside the machine body (1), and the screw rod (2) and the slider (3) are threadedly connected, and the slider (3) and the fixed block (4) are fixedly connected, the fixed block (4) is fixedly connected to the first motor (5), and the first motor (5) is connected to the first rotating block (6), the inside of the machine body (1) is connected to the fixed plate (26) through an adjustment mechanism, and the front end of the fixed plate (26) is connected to the laser emitter (28); The interior of the machine body (1) is connected to a moving plate (13) via a moving mechanism, and the moving plate (13) is fixedly connected to a push rod (14), and the front end of the push rod (14) is fixedly connected to a moving block (15), the interior of the moving block (15) is connected to a supporting block (18) via a buffer mechanism, and the moving block (15) is slidably connected to the moving plate (13), and a sensor (19) is provided inside the supporting block (18), and the sensor (19) is connected to a processor (20), the interior of the moving plate (13) is fixedly connected to a third motor (21), and the third motor (21) is connected to a second rotating block (22), and the interior of the second rotating block (22) is threadedly connected to a bolt (23), and the bolt (23) is fixedly connected to a receiver (24).

2. A diamond saw blade dynamic balance detection device according to claim 1, characterized in that: The moving mechanism comprises a second motor (7), a turntable (8), a rotating shaft (9), a long board (10), a moving shaft (11), a moving rod (12), and a moving board (13); the second motor (7) is fixedly connected to the inside of the machine body (1), and the second motor (7) is connected to the turntable (8), and the surface of the turntable (8) is fixedly connected to the rotating shaft (9); the rotating shaft (9) is arranged in a groove at the tail of the long board (10), and the tail of the long board (10) is hinged to the machine body (1), and a moving shaft (11) is arranged in the groove at the front end of the long board (10), the moving shaft (11) is hinged to the moving rod (12), and the top of the moving rod (12) is fixedly connected to the moving board (13).

3. The diamond saw blade dynamic balance detection device according to claim 1, characterized in that: The buffer mechanism comprises a moving block (15), a fixed rod (16), a spring (17), and a support block (18); the interior of the moving block (15) is fixedly connected to the fixed rod (16), the top of the fixed rod (16) is slidably connected to the interior of the support block (18), and the support block (18) is slidably connected to the interior of the moving block (15); and a spring (17) is arranged on the surface of the fixed rod (16).

4. The diamond saw blade dynamic balance detection device according to claim 1, characterized in that: The adjustment mechanism comprises a threaded rod (25), a fixing plate (26), and a connecting rod (27); the threaded rod (25) is threadedly connected to the inside of the machine body (1) at the bottom, and is rotatably connected to the inside of the fixing plate (26) at the top; the fixing plate (26) and the connecting rod (27) are fixedly connected; and the connecting rod (27) is slidably connected to the inside of the machine body (1) at the bottom.

5. The diamond saw blade dynamic balance detection device according to claim 1, characterized in that: The adjustment mechanisms are symmetrically arranged about the center of the machine body (1), and the adjustment mechanisms are all connected to a fixing plate (26), and the front end of the fixing plate (26) is connected to a laser emitter (28).

Citation Information

Patent Citations

  • Diamond saw blade dynamic balance detection device

    CN219996425U