Diamond laser cutting tool

The design of the material support plate and positioning rod structure enables rapid installation and stable fixation of diamond cutting materials, solving the problem of low efficiency in existing technologies and improving processing efficiency and stability.

CN223801772UActive Publication Date: 2026-01-16WUXI KEMENG CARBON TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520325943.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-01-16
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

In existing technologies, diamond laser cutting requires repeated disassembly and reassembly, resulting in low processing efficiency.

Method used

The material support plate and positioning rod structure are adopted. The positioning rod and adjusting screw enable the rapid installation and fixation of batch diamond cutting materials, and the magnetic block is used to improve stability.

Benefits of technology

It improves the processing efficiency and stability of diamond cutting and avoids cutting failures caused by vibration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of laser cutting, in particular to a diamond laser cutting tool which comprises a machining table, a retainer plate, a positioning rod and an adjusting screw rod, the machining table comprises a mounting part, a first boss and a second boss, the mounting part, the first boss and the second boss are of an integrally formed structure, and the retainer plate is arranged on the mounting part. The retainer plate is movably mounted at the top of the mounting portion, the diamond cutting material is mounted at the top of the retainer plate, and the positioning rod penetrates through the first boss and the second boss and is slidably connected with the first boss and the second boss. Diamond cutting materials are installed on the top of the retainer plate in batches, during machining, the retainer plate is installed on a machining table, the side wall of the retainer plate is extruded through the end of the positioning rod, and therefore the diamond cutting materials in batches can be rapidly installed, repeated disassembly and installation of a single diamond cutting material are avoided, and machining efficiency is improved. And therefore, most time is consumed on diamond fixing, and the diamond machining efficiency can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to laser cutting technical field more specifically, relate to a diamond laser cutting frock. BACKGROUND

[0002] Diamond laser cutting is based on the high energy density of laser beam and the absorption characteristics of diamond. When the laser beam irradiates the surface of diamond, diamond will absorb the energy of light and convert it into heat energy, and then cut the diamond. Diamond laser cutting frock is a key component in laser cutting equipment, used to install and fix diamond workpieces to ensure the stability of the workpieces during laser cutting.

[0003] In the prior art, a document with publication number CN220993167U discloses a diamond laser cutting machine. In this document, the device moves the connecting plate by driving the motor, and limits the diamond by the limiting column on the connecting plate to fix the diamond. However, this fixing method requires repeated disassembly and installation of individual diamond cutting materials when processing batches of diamonds, resulting in most of the time being consumed in fixing the diamonds, which causes low diamond processing efficiency. UTILITY MODEL CONTENT

[0004] The utility model provides a diamond laser cutting frock, and batches of diamond cutting materials are installed on the top of the material supporting plate, the material supporting plate is installed on the processing table, and the material supporting plate is abutted by the positioning rod, so that batches of diamond cutting materials can be quickly installed, and the processing efficiency of diamonds is improved.

[0005] The utility model provides a diamond laser cutting frock, and batches of diamond cutting materials are installed on the top of the material supporting plate, the material supporting plate is installed on the processing table, and the material supporting plate is abutted by the positioning rod, so that batches of diamond cutting materials can be quickly installed, and the processing efficiency of diamonds is improved.

[0006] Preferably, a plurality of material supporting grooves are formed in the top of the material supporting plate, and the diamond cutting materials are installed in the material supporting grooves.

[0007] Preferably, a plurality of through holes are formed in the outer wall of the first boss, and the positioning rods pass through the through holes and are slidably connected with the through holes.

[0008] Preferably, the second boss outer wall is provided with a mounting hole, the positioning rod penetrates the mounting hole and is in sliding connection therewith, and the second boss top is provided with a threaded hole, the adjusting screw rod bottom penetrates the threaded hole and is in threaded connection therewith.

[0009] Preferably, the second boss outer wall is fixedly connected with two supporting blocks, the two supporting blocks are fixedly connected with a mounting shaft, the mounting shaft outer wall is rotatably connected with a pressing frame, the pressing frame is sleeved on the positioning rod, the pressing frame outer wall is provided with two pressing grooves, the positioning rod outer wall is fixedly connected with two blocking rods, and the blocking rods are in sliding contact with the pressing grooves.

[0010] Preferably, the device further comprises a mounting plate, and the mounting plate top is provided with a plurality of connecting holes.

[0011] Preferably, the mounting plate top is fixedly connected with a supporting table, and the processing table further comprises a supporting portion, the supporting portion is located at the mounting portion bottom and is in an integral molding structure, and the supporting table top is fixedly connected with the supporting portion.

[0012] By the above technical scheme, the device has the following beneficial effects:

[0013] 1. In the device, the diamond cutting materials are installed in batches on the material supporting plate top, during processing, the material supporting plate is installed on the processing table, the positioning rod is slid, the positioning rod end portion is used for extruding the material supporting plate side wall, the adjusting screw rod is rotated to fix the positioning rod, thereby, the diamond cutting materials in batches can be quickly installed, repeated disassembly and installation of single diamond cutting material are avoided, most time consumption in fixing the diamond is avoided, and the processing efficiency of the diamond is improved.

[0014] 2. In the device, the diamond cutting materials are installed in batches in the material supporting groove on the material supporting plate top, during processing, the first positioning shaft and the second positioning shaft at the material supporting plate bottom are respectively inserted into the first positioning hole and the second positioning hole, the material supporting plate can be quickly positioned, the first positioning shaft and the magnetic attraction block in the first positioning hole are attracted, the stability of the material supporting plate installation is improved, the material supporting plate is extruded and fixed through the abutment of the positioning rod, the stability of the material supporting plate during processing is further improved, and the diamond cutting material is prevented from being broken due to vibration during cutting. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a whole structure schematic view of the device;

[0016] Figure 2 It is a local structure schematic view of the device;

[0017] Figure 3 It is a structure schematic view of the material supporting plate of the device;

[0018] Figure 4 This is a schematic diagram of the processing table of this utility model;

[0019] Figure 5 This is a schematic diagram of the installation structure of the pressure frame of this utility model.

[0020] In the diagram: 1. Mounting plate; 2. Connecting hole; 3. Support platform; 4. Machining table; 401. Support part; 402. Mounting part; 403. First boss; 4031. Through hole; 404. Second boss; 4041. Mounting hole; 4042. Threaded hole; 405. First positioning hole; 406. Second positioning hole; 407. Magnetic block; 5. Material support plate; 6. Material support groove; 7. First positioning shaft; 8. Second positioning shaft; 9. Positioning rod; 10. Adjusting screw; 11. Support block; 12. Mounting shaft; 13. Pressure frame; 14. Pressure groove; 15. Stop bar. Detailed Implementation

[0021] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this utility model. In this utility model, unless otherwise expressly specified and limited, the term "fixed connection" should be interpreted broadly. For example, "fixed connection" can mean fixed installation, detachable connection, or integral; it can mean mechanical connection or electrical connection; it can mean direct connection. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0022] Diamond is an excellent thermal conductor and has a certain absorption capacity for laser beams. When a laser beam shines on the surface of a diamond, the diamond absorbs the energy of the light and converts it into heat energy. By focusing the laser beam on the surface of the diamond, the material can be cut. However, in the cutting process, the diamond must first be fixed.

[0023] The existing fixing methods require repeated disassembly and installation when processing batches of diamonds, resulting in most of the time being spent on fixing the diamonds and thus low diamond processing efficiency.

[0024] like Figures 1-5 As shown, a diamond laser cutting fixture includes a mounting plate 1, a processing table 4, a material support plate 5, a positioning rod 9, and an adjusting screw 10. The processing table 4 includes a mounting part 402, a first boss 403, and a second boss 404. The mounting part 402, the first boss 403, and the second boss 404 are integrally formed. The positioning rod 9 passes through the first boss 403 and the second boss 404 respectively and is slidably connected to them.

[0025] The outer wall of the second boss 404 is provided with a mounting hole 4041, the positioning rod 9 penetrates through the mounting hole 4041 and is in sliding connection with the mounting hole 4041, the top of the second boss 404 is provided with a threaded hole 4042, the bottom of the adjusting screw rod 10 penetrates through the threaded hole 4042 and is in threaded connection with the threaded hole 4042;

[0026] The diamond cutting material is installed on the top of the material supporting plate 5; the outer wall of the first boss 403 is provided with a plurality of through holes 4031, the positioning rod 9 penetrates through the through holes 4031 and is in sliding connection with the through holes 4031; the top of the mounting part 402 is provided with a first positioning hole 405 and a second positioning hole 406, a magnetic block 407 is fixedly installed on the inner wall of the bottom of the first positioning hole 405, the bottom of the first positioning hole 405 is fixedly connected with the first positioning shaft 7 and the second positioning shaft 8, the top of the magnetic block 407 is in magnetic attraction connection with the first positioning shaft 7, the bottom of the first positioning shaft 7 is in sliding connection with the first positioning hole 405, and the bottom of the second positioning shaft 8 is in sliding connection with the second positioning hole 406; the bottom of the adjusting screw rod 10 is in abutment with the outer wall of the positioning rod 9; the top of the mounting plate 1 is provided with a plurality of connecting holes 2; the top of the mounting plate 1 is fixedly connected with a supporting table 3, and the processing table 4 further comprises a supporting part 401, the supporting part 401 is located at the bottom of the mounting part 402 and is in one-piece integrated structure, and the top of the supporting table 3 is fixedly connected with the supporting part 401.

[0027] Through the above structure, a plurality of material supporting plates 5 are produced in batches, and the diamond cutting materials are installed on the top of the material supporting plate 5 in batches, when processing, the material supporting plate 5 is installed on the processing table 4, and the positioning rod 9 is in abutment with the side wall of the material supporting plate 5 through sliding, so that the batch of diamond cutting materials can be quickly installed, and repeated disassembly and installation of a single diamond cutting material are avoided, so that most of the time is consumed in the fixing of the diamond, and the processing efficiency of the diamond can be improved;

[0028] The diamond cutting materials are installed in the material supporting groove 6 on the top of the material supporting plate 5 in batches, when processing, the first positioning shaft 7 and the second positioning shaft 8 at the bottom of the material supporting plate 5 are respectively inserted into the first positioning hole 405 and the second positioning hole 406, so that the material supporting plate 5 can be quickly positioned, the magnetic block 407 in the first positioning hole 405 is attracted by the first positioning shaft 7, the stability of the installation of the material supporting plate 5 can be improved, the material supporting plate 5 is fixed through the abutment of the positioning rod 9, the stability of the material supporting plate 5 in the processing process can be further improved, and the phenomenon of jumping of the material supporting plate 5 caused by vibration during cutting is avoided.

[0029] In the embodiment, as shown in Figure 5 The outer wall of the second boss 404 is fixedly connected with two supporting blocks 11, the two supporting blocks 11 are fixedly connected with a mounting shaft 12, the outer wall of the mounting shaft 12 is rotatably connected with a pressing frame 13, the pressing frame 13 is sleeved on the positioning rod 9, the outer wall of the pressing frame 13 is provided with two pressing grooves 14, the outer wall of the positioning rod 9 is fixedly connected with two blocking rods 15, and the blocking rods 15 are in sliding contact with the pressing grooves 14.

[0030] Through the above structure, the pressing frame 13 extrudes the stopper 15, so that the stopper 15 pushes the positioning rod 9 to move, thereby ensuring that the end of the positioning rod 9 can be tightly and quickly abutted on the material supporting plate 5.

[0031] Working principle: a plurality of diamond cutting materials are installed in the material supporting groove 6 on the top of the material supporting plate 5, and when processing, the first positioning shaft 7 and the second positioning shaft 8 at the bottom of the material supporting plate 5 are respectively inserted into the first positioning hole 405 and the second positioning hole 406, and the material supporting plate 5 is quickly installed on the processing table 4.

[0032] By sliding the positioning rod 9, the end of the positioning rod 9 extrudes the side wall of the material supporting plate 5, and by rotating the adjusting screw 10, the bottom of the adjusting screw 10 is abutted on the positioning rod 9 to fix the positioning rod 9, so that the material supporting plate 5 can have sufficient stability during processing.

[0033] By rotating the pressing frame 13, the pressing frame 13 extrudes the stopper 15, the stopper 15 slides along the outer wall of the pressing groove 14, and the stopper 15 pushes the positioning rod 9 to move, thereby ensuring that the end of the positioning rod 9 can be tightly and quickly abutted on the material supporting plate 5.

[0034] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A diamond laser cutting tool, characterized by, Include: Processing platform (4), the processing platform (4) includes mounting part (402), first boss (403) and second boss (404), the mounting part (402), first boss (403) and second boss (404) are integrally formed structure; Positioning rod (9), the positioning rod (9) is respectively penetrated through first boss (403) and second boss (404) and is slidably connected with them; Material supporting plate (5), diamond cutting material is installed on the top of the material supporting plate (5); The top of the mounting part (402) is provided with a first positioning hole (405) and a second positioning hole (406), a magnetic block (407) is fixedly installed on the inner wall bottom of the first positioning hole (405), a first positioning shaft (7) and a second positioning shaft (8) are fixedly connected to the bottom of the material supporting plate (5), the top of the magnetic block (407) is magnetically connected with the first positioning shaft (7), the bottom of the first positioning shaft (7) is slidably connected with the first positioning hole (405), and the bottom of the second positioning shaft (8) is slidably connected with the second positioning hole (406); Adjusting screw (10), the bottom of the adjusting screw (10) is abutted with the outer wall of the positioning rod (9).

2. The diamond laser cutting tooling of claim 1, wherein: A plurality of material supporting grooves (6) are formed in the top of the material supporting plate (5), and the diamond cutting material is installed in the material supporting groove (6).

3. The diamond laser cutting tooling of claim 2, wherein: A plurality of through holes (4031) are formed in the outer wall of the first boss (403), and the positioning rod (9) penetrates through the through holes (4031) and is slidably connected with them.

4. The diamond laser cutting tooling of claim 3, wherein: The second boss (404) is provided with a mounting hole (4041) on the outer wall, the positioning rod (9) penetrates through the mounting hole (4041) and is slidably connected with it, and the top of the second boss (404) is provided with a threaded hole (4042), the bottom of the adjusting screw (10) penetrates through the threaded hole (4042) and is threadedly connected with it.

5. The diamond laser cutting tooling of claim 4, wherein: The outer wall of the second boss (404) is fixedly connected with two supporting blocks (11), the two supporting blocks (11) are fixedly connected with a mounting shaft (12), the outer wall of the mounting shaft (12) is rotatably connected with a pressing frame (13), the pressing frame (13) is sleeved on the positioning rod (9), the outer wall of the pressing frame (13) is provided with two pressing grooves (14), the outer wall of the positioning rod (9) is fixedly connected with two blocking rods (15), and the blocking rods (15) are in sliding contact with the pressing grooves (14).

6. The diamond laser cutting tooling of claim 5, wherein: It also includes a mounting plate (1), and a plurality of connecting holes (2) are formed in the top of the mounting plate (1).

7. The diamond laser cutting tooling of claim 6, wherein: The top of the mounting plate (1) is fixedly connected with a supporting table (3), the processing platform (4) further includes a supporting part (401), the supporting part (401) is located at the bottom of the mounting part (402) and is integrally formed, and the top of the supporting table (3) is fixedly connected with the supporting part (401).

Citation Information

Patent Citations

  • A diamond laser cutting machine

    CN220993167U