A three-axis cutting machine

By designing a three-axis cutting machine with a simple structure and using screws and transmission blocks to achieve manual and electric adjustment, the high assembly and maintenance cost problems caused by the complex structure of the traditional three-axis cutting machine are solved, and the effect of low-cost and efficient adjustment is achieved.

CN110340432BActive Publication Date: 2025-05-13东莞市恩耐尔金属科技有限公司
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Patent Information

Application Number
CN201910671975.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-07-24
Publication Date
2025-05-13
Estimated Expiration
2039-07-24

AI Technical Summary

Technical Problem

The complex structure of traditional three-axis cutting machines leads to high assembly and maintenance costs, and the maintenance process is cumbersome.

Method used

A three-axis cutting machine with simple structure is designed, using transverse cutting components, vertical cutting components, bidirectional sliding components, mounting tables and fixing tables, and manual and electric adjustments are achieved through screws and transmission blocks.

Benefits of technology

The structure of the three-axis cutting machine is simplified, which reduces manufacturing and maintenance costs, and can be manually and electric separately adjusted to meet different needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention proposes a three-axis cutting machine, comprising a transverse cutting component, a vertical cutting component, a bidirectional sliding component, a mounting table and a fixed table; the transverse cutting component is fixedly mounted on the mounting table, the vertical cutting component is fixedly mounted on the mounting table, the transverse cutting component is provided with a transverse cutting module, the transverse cutting module can slide in the X-axis direction or the Z-axis direction, the vertical cutting component is provided with a vertical cutting module, the vertical cutting module can slide in the X-axis direction or the Z-axis direction, the bidirectional sliding component comprises a first sliding component and a second sliding component, the first sliding component is fixedly mounted on the mounting table, the second sliding component is mounted on the first sliding component, the second sliding component can be slid in the Y-axis direction through the first sliding component, the fixed table is mounted on the second sliding component, the fixed table can be slid in the X-axis direction through the second sliding component; the three-axis cutting machine proposed by the present invention has a simple structure, low manufacturing cost and is convenient for maintenance.
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Description

Technical Field

[0001] The invention relates to the field of machine automation, and in particular to a three-axis cutting machine. Background Art

[0002] With the development of science and technology and the country's vigorous promotion of industrial upgrading, the structure of traditional three-axis cutting machines is very complex. The complex structure increases the assembly cost of traditional three-axis cutting machines and increases the manufacturing cost of three-axis cutting machines. Once a mechanical failure occurs and maintenance work is required, the complex internal structure of the traditional three-axis cutting machine will bring huge challenges to the maintenance work, and the cost of the maintenance work is very high. Summary of the invention

[0003] In order to solve the above problems, the present invention proposes a three-axis cutting machine with a simple structure and capable of manual and electric adjustment.

[0004] The present invention is achieved through the following technical solutions:

[0005] The present invention proposes a three-axis cutting machine, which includes a transverse cutting component, a vertical cutting component, a bidirectional sliding component, a mounting table and a fixed table; the transverse cutting component is fixedly mounted on the mounting table, the vertical cutting component is fixedly mounted on the mounting table, the transverse cutting component is provided with a transverse cutting module, the transverse cutting module can slide in the X-axis direction or the Z-axis direction, the vertical cutting component is provided with a vertical cutting module, the vertical cutting module can slide in the X-axis direction or the Z-axis direction, the bidirectional sliding component includes a first sliding component and a second sliding component, the first sliding component is fixedly mounted on the mounting table, the second sliding component is mounted on the first sliding component, the second sliding component can be slid in the Y-axis direction through the first sliding component, the fixed table is mounted on the second sliding component, the fixed table can slide in the X-axis direction through the second sliding component.

[0006] Furthermore, the transverse cutting assembly also includes a first mounting plate, a first transmission block, a first screw and a first mounting frame; a first slide groove is provided on the first mounting plate, the first mounting frame is sleeved outside the first mounting plate, the first transmission block is fixedly connected to the first mounting frame and accommodated in the first slide groove, the first screw penetrates the first mounting plate and extends into the first slide groove, the first screw penetrates the first transmission block and is threadedly connected to the first transmission block.

[0007] Furthermore, the transverse cutting assembly also includes a second screw, a second mounting plate and a second transmission block; a second slide groove is provided on the first mounting frame, the second mounting plate is mounted on the first mounting frame, the second transmission block is accommodated in the second slide groove and is fixedly connected to the second mounting plate, the second screw penetrates the first mounting frame and extends into the second slide groove, the second screw penetrates the second transmission block and is threadedly connected to the second transmission block, the transverse cutting module is fixedly mounted on the second mounting plate, and the transverse cutting module is provided with a transverse cutting machine.

[0008] Furthermore, the vertical cutting assembly also includes a third mounting plate, a third transmission block, a third screw and a second mounting frame; a third slide groove is provided on the third mounting plate, the second mounting frame is sleeved outside the third mounting plate, the third transmission block is fixedly connected to the first mounting frame and accommodated in the third slide groove, the third screw penetrates the third mounting plate and extends into the third slide groove, and the third screw penetrates the third transmission block and is threadedly connected to the third transmission block.

[0009] Furthermore, the vertical cutting assembly also includes a fourth mounting plate, a fourth screw, a fourth transmission block and a third sliding assembly; a fourth slide groove is provided on the second mounting frame, the fourth mounting plate is sleeved on the second mounting frame, the fourth transmission block is fixedly connected to the fourth mounting plate and accommodated in the fourth slide groove, the fourth screw penetrates the second mounting frame and extends into the fourth slide groove, the fourth screw penetrates the fourth transmission block and is threadedly connected to the fourth transmission block, and the third sliding assembly is fixedly mounted on the fourth mounting plate.

[0010] Further, the third sliding assembly includes a first slide rail, a first motor, a fifth transmission block, a fifth screw, a first belt, a fifth mounting plate and a first transmission plate; the first slide rail is fixedly connected to the fourth mounting plate, a fifth slide groove is provided in the first slide rail, one end of the first slide rail is fixedly connected to the fifth mounting plate, the first motor is fixedly connected to the fifth mounting plate, the fifth screw rod sequentially penetrates the fifth mounting plate and the first slide rail and extends into the fifth slide groove, the fifth screw rod penetrates the fifth transmission block and is threadedly connected to the fifth transmission block, the fifth transmission block is accommodated in the fifth slide groove, the first transmission plate is sleeved outside the first slide rail and fixedly connected to the fifth transmission block, the first belt is sleeved on the first motor and the fifth screw rod, the vertical cutting module is fixedly mounted on the first transmission plate, and a vertical cutting machine is provided on the vertical cutting module.

[0011] Furthermore, the first sliding assembly includes a second slide rail, a second motor, a sixth transmission block, a sixth screw rod, a second belt, a sixth mounting plate and a second transmission plate; the second slide rail is fixedly mounted on the mounting platform, a sixth slide groove is provided in the second slide rail, one end of the second slide rail is fixedly connected to the sixth mounting plate, the second motor is fixedly connected to the sixth mounting plate, the sixth screw rod sequentially penetrates the sixth mounting plate and the second slide rail and extends into the sixth slide groove, the sixth screw rod penetrates the sixth transmission block and is threadedly connected to the sixth transmission block, the sixth transmission block is accommodated in the sixth slide groove, the second transmission plate is sleeved outside the second slide rail and fixedly connected to the sixth transmission block, the second belt is sleeved on the second motor and the sixth screw rod, and the second sliding assembly is fixedly mounted on the second transmission plate.

[0012] Furthermore, the second sliding assembly includes a third slide rail, a third motor, a seventh transmission block, a seventh screw, a third belt, a seventh mounting plate and a third transmission plate; the point slide rail is fixedly mounted on the second transmission plate, a seventh slide groove is provided in the third slide rail, one end of the third slide rail is fixedly connected to the seventh mounting plate, the third motor is fixedly connected to the seventh mounting plate, the seventh screw rod sequentially penetrates the seventh mounting plate and the third slide rail and extends into the seventh slide groove, the seventh screw rod penetrates the seventh transmission block and is threadedly connected to the seventh transmission block, the seventh transmission block is accommodated in the seventh slide groove, the third transmission plate is sleeved outside the third slide rail and fixedly connected to the seventh transmission block, the third belt is sleeved on the seventh screw and the third motor, and the fixed platform is fixedly mounted on the third transmission plate.

[0013] Furthermore, the three-axis cutting machine also includes a fixture, and the fixture is fixedly installed on the fixed platform.

[0014] Furthermore, the three-axis cutting machine also includes an oil tank, which is fixedly connected to the mounting platform, and a filter screen fixedly connected to the oil tank is provided on the oil tank.

[0015] Beneficial effects of the present invention:

[0016] 1. The three-axis cutting machine proposed by the present invention can be adjusted manually and electrically separately to meet the user's usage needs to the greatest extent.

[0017] 2. The three-axis cutting machine proposed by the present invention has a simple structure, low manufacturing cost and is easy to maintain. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A three-dimensional diagram of a three-axis cutting machine of the present invention;

[0019] Figure 2A three-dimensional diagram of a vertical cutting assembly of a three-axis cutting machine of the present invention;

[0020] Figure 3 A three-dimensional diagram of a transverse cutting assembly of a three-axis cutting machine of the present invention;

[0021] Figure 4 A partial three-dimensional view of a first sliding assembly of a three-axis cutting machine of the present invention;

[0022] Figure 5 A partial three-dimensional diagram of the third sliding assembly of the three-axis cutting machine of the present invention;

[0023] Figure 6 It is a partial stereoscopic view of the second sliding assembly of the three-axis cutting machine of the present invention. DETAILED DESCRIPTION

[0024] In order to more clearly and completely illustrate the technical solution of the present invention, the present invention is further described below in conjunction with the accompanying drawings.

[0025] Please refer to Figures 1 to 6 The present invention proposes a three-axis cutting machine, which includes a transverse cutting component 10, a vertical cutting component 20, a bidirectional sliding component 30, a mounting table 40 and a fixed table 50; the transverse cutting component 10 is fixedly mounted on the mounting table 40, the vertical cutting component 20 is fixedly mounted on the mounting table 40, the transverse cutting component 10 is provided with a transverse cutting module 11, and the transverse cutting module 11 can slide in the X-axis direction or the Z-axis direction, the vertical cutting component 20 is provided with a vertical cutting module 21, and the vertical cutting module 21 can slide in the X-axis direction or the Z-axis direction, the bidirectional sliding component 30 includes a first sliding component 31 and a second sliding component 32, the first sliding component 31 is fixedly mounted on the mounting table 40, the second sliding component 32 is mounted on the first sliding component 31, and the second sliding component 32 can slide in the Y-axis direction through the first sliding component 31, and the fixed table 50 is mounted on the second sliding component 32, and the fixed table 50 can slide in the X-axis direction through the second sliding component 32.

[0026] In this embodiment, the transverse cutting module 11 and the vertical cutting module 21 are used to cut the objects to be cut mounted on the fixed table 50; the transverse cutting module 11 can slide in the X-axis direction or the Z-axis direction, and the vertical cutting module 21 can slide in the X-axis direction or the Z-axis direction, so that the positions of the transverse cutting module 11 and the vertical cutting module relative to the fixed table 50 can be adjusted, so that the three-axis cutting machine can meet the cutting requirements of objects to be cut of different shapes and sizes; the second sliding component 32 is installed on the first sliding component 31, The first sliding component 31 can make the second sliding component 32 slide in the Y-axis direction, the fixed table 50 is installed on the second sliding component 32, and the fixed table 50 can slide in the X-axis direction through the second sliding component 32. The first sliding component 31 and the second sliding component 32 can adjust the position of the fixed table 50 relative to the horizontal cutting module 11 and the vertical cutting module 21, so that the three-axis cutting machine can be adjusted in the three directions of X-axis, Y-axis and Z-axis; the three-axis cutting machine has a simple structure, low manufacturing cost and convenient maintenance.

[0027] Furthermore, the transverse cutting assembly 10 also includes a first mounting plate 12, a first transmission block 13, a first screw rod 14 and a first mounting frame 15; the first mounting plate 12 is provided with a first slide groove 121, the first mounting frame 15 is sleeved outside the first mounting plate 12, the first transmission block 13 is fixedly connected to the first mounting frame 15 and accommodated in the first slide groove 121, the first screw rod 14 penetrates the first mounting plate 12 and extends into the first slide groove 121, the first screw rod 14 penetrates the first transmission block 13 and is threadedly connected to the first transmission block 13.

[0028] In this embodiment, the first screw rod 14 passes through the first mounting plate 12 and extends into the first sliding groove 121. The first screw rod 14 is movably connected to the first mounting plate 12, and the first screw rod 14 can rotate relative to the first mounting plate 12. When it is necessary to adjust the position of the first mounting frame 15 relative to the first mounting plate 12, the first screw rod 14 is rotated, and the first transmission block 13 starts to slide under the rotation of the first screw rod 14, thereby driving the first mounting frame 15 to slide, and the sliding direction of the first transmission block 13 is the X-axis direction.

[0029] Furthermore, the transverse cutting assembly 10 also includes a second screw 16, a second mounting plate 17 and a second transmission block 18; a second slide groove 151 is provided on the first mounting frame 15, the second mounting plate 17 is mounted on the first mounting frame 15, the second transmission block 18 is accommodated in the second slide groove 151 and is fixedly connected to the second mounting plate 17, the second screw 16 penetrates the first mounting frame 15 and extends into the second slide groove 151, the second screw 16 penetrates the second transmission block 18 and is threadedly connected to the second transmission block 18, the transverse cutting module 11 is fixedly mounted on the second mounting plate 17, and the transverse cutting module 11 is provided with a transverse cutting machine 111.

[0030] In this embodiment, the second screw rod 16 passes through the first mounting frame 15 and extends into the second slide groove 151. The second screw rod 16 is movably connected to the first mounting frame 15, and the second screw rod 16 can rotate relative to the first mounting frame 15. When it is necessary to adjust the position of the second mounting plate 17 relative to the first mounting frame 15, the second screw rod 16 is rotated, and the second transmission block 18 starts to slide under the rotation of the second screw rod 16, thereby driving the second mounting plate 17 to slide, thereby driving the transverse cutting machine 111 to slide, and the sliding direction of the second transmission block 18 is the Z-axis direction.

[0031] Furthermore, the vertical cutting assembly 20 also includes a third mounting plate 22, a third transmission block 23, a third screw rod 24 and a second mounting frame 25; the third mounting plate 22 is provided with a third slide groove 221, the second mounting frame 25 is sleeved outside the third mounting plate 22, the third transmission block 23 is fixedly connected to the first mounting frame 15 and accommodated in the third slide groove 221, the third screw rod 24 penetrates the third mounting plate 22 and extends into the third slide groove 221, the third screw rod 24 penetrates the third transmission block 23 and is threadedly connected to the third transmission block 23.

[0032] In this embodiment, the third screw 24 passes through the third mounting plate 22 and extends into the third slide groove 221. The third screw 24 is movably connected to the third mounting plate 22, and the third screw 24 can rotate relative to the third mounting plate 22. When it is necessary to adjust the position of the second mounting frame 25 relative to the third mounting plate 22, the third screw 24 is rotated, and the third transmission block 23 starts to slide under the rotation of the third screw 24, thereby driving the second mounting frame 25 to slide, and the sliding direction of the third transmission block 23 is the X-axis direction.

[0033] Furthermore, the vertical cutting assembly 20 also includes a fourth mounting plate 27, a fourth screw rod 28, a fourth transmission block 29 and a third sliding assembly 201; the second mounting frame 25 is provided with a fourth slide groove 26, the fourth mounting plate 27 is sleeved on the second mounting frame 25, the fourth transmission block 29 is fixedly connected to the fourth mounting plate 27 and accommodated in the fourth slide groove 26, the fourth screw rod 28 penetrates the second mounting frame 25 and extends into the fourth slide groove 26, the fourth screw rod 28 penetrates the fourth transmission block 29 and is threadedly connected to the fourth transmission block 29, and the third sliding assembly 201 is fixedly mounted on the fourth mounting plate 27.

[0034] In this embodiment, the fourth screw rod 28 passes through the second mounting frame 25 and extends into the fourth sliding groove 26. The fourth screw rod 28 is movably connected to the second mounting frame 25, and the fourth screw rod 28 can rotate relative to the second mounting frame 25. When it is necessary to adjust the position of the third sliding assembly 201 relative to the second mounting frame 25, the fourth screw rod 28 is rotated, and the fourth transmission block 29 starts to slide under the rotation of the fourth screw rod 28 and then drives the third sliding group to slide. The sliding direction of the fourth transmission block 29 is the Z-axis direction.

[0035] Furthermore, the third sliding assembly 201 includes a first slide rail 202, a first motor 203, a fifth transmission block 204, a fifth screw 205, a first belt 206, a fifth mounting plate 207 and a first transmission plate 208; the first slide rail 202 is fixedly connected to the fourth mounting plate 27, a fifth slide groove 209 is provided in the first slide rail 202, one end of the first slide rail 202 is fixedly connected to the fifth mounting plate 207, the first motor 203 is fixedly connected to the fifth mounting plate 207, the fifth screw 205 passes through the fifth mounting plate 207 and the first transmission plate 208 in sequence. The slide rail 202 extends into the fifth slide groove 209, the fifth screw rod 205 penetrates the fifth transmission block 204 and is threadedly connected to the fifth transmission block 204, the fifth transmission block 204 is accommodated in the fifth slide groove 209, the first transmission plate 208 is sleeved on the outside of the first slide rail 202 and fixedly connected to the fifth transmission block 204, the first belt 206 is sleeved on the first motor 203 and the fifth screw rod 205, the vertical cutting module 21 is fixedly installed on the first transmission plate 208, and the vertical cutting module 21 is provided with a vertical cutting machine 211.

[0036] In this embodiment, the first motor 203 is fixedly connected to the fifth mounting plate 207 and the transmission shaft of the first motor 203 passes through the fifth mounting plate 207. Gears are provided on the transmission shaft of the first motor 203 and one end of the fifth screw 205. The first belt 206 is sleeved on the transmission shaft of the first motor 203 and the fifth screw 205. The first belt 206 is meshed with the gears so that the fifth screw 205 forms a transmission connection with the first motor 203. The fifth screw 205 passes through the fifth mounting plate 207. The fifth screw 205 is movably connected to the fifth mounting plate 207, and the fifth screw 205 can rotate relative to the fifth mounting plate 207; when it is necessary to adjust the position of the vertical cutting machine 211 relative to the first slide rail 202, the first motor 203 is started to rotate to drive the fifth screw 205 to rotate, and the rotation of the fifth screw 205 drives the fifth transmission block 204 to slide and then drives the first transmission plate 208 to slide, thereby adjusting the position of the vertical cutting machine 211 relative to the first slide rail 202, and the sliding direction of the fifth transmission block 204 is the Z-axis direction.

[0037] Furthermore, the first sliding assembly 31 includes a second slide rail 311, a second motor 312, a sixth transmission block 313, a sixth screw rod 314, a second belt 315, a sixth mounting plate 316 and a second transmission plate 317; the second slide rail 311 is fixedly mounted on the mounting platform 40, a sixth slide groove 3111 is provided in the second slide rail 311, one end of the second slide rail 311 is fixedly connected to the sixth mounting plate 316, the second motor 312 is fixedly connected to the sixth mounting plate 316, the sixth screw rod 314 passes through the sixth mounting plate 316 in sequence, and the sixth screw rod 314 passes through the sixth mounting plate 316 in sequence. The plate 316 and the second slide rail 311 extend into the sixth slide groove 3111, the sixth screw rod 314 penetrates the sixth transmission block 313 and is threadedly connected to the sixth transmission block 313, the sixth transmission block 313 is accommodated in the sixth slide groove 3111, the second transmission plate 317 is sleeved on the outside of the second slide rail 311 and is fixedly connected to the sixth transmission block 313, the second belt 315 is sleeved on the second motor 312 and the sixth screw rod 314, and the second sliding assembly 32 is fixedly mounted on the second transmission plate 317.

[0038] In this embodiment, the second motor 312 is fixedly connected to the sixth mounting plate 316 and the transmission shaft of the second motor 312 passes through the fifth mounting plate 207. The transmission shaft of the second motor 312 and one end of the sixth screw 314 are both provided with gears. The second belt 315 is sleeved on the transmission shaft of the second motor 312 and the sixth screw 314. The second belt 315 is meshed with the gear so that the sixth screw 314 forms a transmission connection with the second motor 312. The sixth screw 314 passes through the sixth mounting plate 31 6 and is movably connected to the sixth mounting plate 316, and the sixth screw rod 314 can rotate relative to the sixth mounting plate 316; when it is necessary to adjust the position of the second sliding assembly 32 relative to the second slide rail 311, the second motor 312 is started to drive the sixth screw rod 314 to rotate, and the rotation of the sixth screw rod 314 drives the sixth transmission block 313 to slide and then drives the second transmission plate 317 to slide, thereby adjusting the position of the second sliding assembly 32 relative to the second slide rail 311, and the sliding direction of the sixth transmission block 313 is the Y-axis direction.

[0039] Furthermore, the second sliding assembly 32 includes a third slide rail 321, a third motor 322, a seventh transmission block 323, a seventh screw rod 324, a third belt 325, a seventh mounting plate 326 and a third transmission plate 327; the third slide rail 321 is fixedly mounted on the second transmission plate 317, a seventh slide groove 3211 is provided in the third slide rail 321, one end of the third slide rail 321 is fixedly connected to the seventh mounting plate 326, the third motor 322 is fixedly connected to the seventh mounting plate 326, the seventh screw rod 324 passes through the third belt 325, and the seventh mounting plate 326 passes through the third belt 326. The seventh mounting plate 326 and the third slide rail 321 extend into the seventh slide groove 3211, the seventh screw rod 324 penetrates the seventh transmission block 323 and is threadedly connected to the seventh transmission block 323, the seventh transmission block 323 is accommodated in the seventh slide groove 3211, the third transmission plate 327 is sleeved outside the third slide rail 321 and is fixedly connected to the seventh transmission block 323, the third belt 325 is sleeved on the seventh screw rod 324 and the third motor 322, and the fixed platform 50 is fixedly mounted on the third transmission plate 327.

[0040] In this embodiment, the third motor 322 is fixedly connected to the seventh mounting plate 326 and the transmission shaft of the third motor 322 passes through the fifth mounting plate 207. The transmission shaft of the third motor 322 and one end of the seventh screw 324 are both provided with gears. The third belt 325 is sleeved on the seventh screw 324 and the transmission shaft of the third motor 322. The third belt 325 is meshed with the gear to form a transmission connection between the third motor 322 and the seventh screw 324. The seventh screw 324 passes through the seventh mounting plate 326 and moves with the seventh mounting plate 326. The seventh screw rod 324 is connected, and the seventh screw rod 324 can rotate relative to the seventh mounting plate 326; when it is necessary to adjust the position of the fixed table 50 relative to the third slide rail 321, the third motor 322 is started to rotate to drive the seventh screw rod 324 to rotate, and the seventh screw rod 324 rotates to drive the seventh transmission block 323 to slide and then drive the third transmission plate 327 to slide, thereby adjusting the position of the fixed table 50 relative to the third slide rail 321, and the sliding direction of the seventh transmission block 323 is the X-axis direction; the three-axis cutting machine can be adjusted manually and electrically separately to meet the user's usage needs to the greatest extent.

[0041] Furthermore, the three-axis cutting machine also includes a fixture 60 , and the fixture 60 is fixedly mounted on the fixed platform 50 .

[0042] In this embodiment, the clamp 60 is used to clamp the cutting object.

[0043] Furthermore, the three-axis cutting machine also includes an oil tank 70 , which is fixedly connected to the mounting platform 40 , and a filter screen 71 fixedly connected to the oil tank 70 is provided on the oil tank 70 .

[0044] In this embodiment, the oil tank 70 is used to store cutting oil for the three-axis cutting machine. When the three-axis cutting machine is working, the cutting oil carries impurities with it and flows to the filter 71. After the impurities are filtered out by the filter 71, the cutting oil flows into the oil tank 70 for reuse.

[0045] Of course, the present invention may have many other implementations. Based on this implementation, other implementations obtained by ordinary technicians in this field without any creative work are all within the scope of protection of the present invention.

Claims

1. A three-axis cutting machine, characterized in that: The three-axis cutting machine includes a transverse cutting component, a vertical cutting component, a bidirectional sliding component, a mounting table and a fixed table; the transverse cutting component is fixedly mounted on the mounting table, the vertical cutting component is fixedly mounted on the mounting table, a transverse cutting module is provided on the transverse cutting component, the transverse cutting module can slide in the X-axis direction or the Z-axis direction, the vertical cutting component is provided with a vertical cutting module, the vertical cutting module can slide in the X-axis direction or the Z-axis direction, the bidirectional sliding component includes a first sliding component and a second sliding component, the first sliding component is fixedly mounted on the mounting table, the second sliding component is mounted on the first sliding component, the second sliding component can be slid in the Y-axis direction by the first sliding component, the fixed table is mounted on the second sliding component, the fixed table can slide in the X-axis direction by the second sliding component; The transverse cutting assembly further includes a first mounting plate, a first transmission block, a first screw and a first mounting bracket; a first slide groove is provided on the first mounting plate, the first mounting bracket is sleeved outside the first mounting plate, the first transmission block is fixedly connected to the first mounting bracket and accommodated in the first slide groove, the first screw penetrates the first mounting plate and extends into the first slide groove, the first screw penetrates the first transmission block and is threadedly connected to the first transmission block; The vertical cutting assembly also includes a third mounting plate, a third transmission block, a third screw and a second mounting bracket; a third slide groove is provided on the third mounting plate, the second mounting bracket is sleeved outside the third mounting plate, the third transmission block is fixedly connected to the first mounting bracket and accommodated in the third slide groove, the third screw penetrates the third mounting plate and extends into the third slide groove, and the third screw penetrates the third transmission block and is threadedly connected to the third transmission block.

2. The three-axis cutting machine according to claim 1, characterized in that: The transverse cutting assembly also includes a second screw, a second mounting plate and a second transmission block; a second slide groove is provided on the first mounting frame, the second mounting plate is sleeved on the first mounting frame, the second transmission block is accommodated in the second slide groove and is fixedly connected to the second mounting plate, the second screw penetrates the first mounting frame and extends into the second slide groove, the second screw penetrates the second transmission block and is threadedly connected to the second transmission block, the transverse cutting module is fixedly mounted on the second mounting plate, and the transverse cutting module is provided with a transverse cutting machine.

3. The three-axis cutting machine according to claim 1, characterized in that: The vertical cutting assembly also includes a fourth mounting plate, a fourth screw rod, a fourth transmission block and a third sliding assembly; a fourth slide groove is provided on the second mounting frame, the fourth mounting plate is sleeved on the second mounting frame, the fourth transmission block is fixedly connected to the fourth mounting plate and accommodated in the fourth slide groove, the fourth screw rod penetrates the second mounting frame and extends into the fourth slide groove, the fourth screw rod penetrates the fourth transmission block and is threadedly connected to the fourth transmission block, and the third sliding assembly is fixedly mounted on the fourth mounting plate.

4. The three-axis cutting machine according to claim 3, characterized in that: The third sliding assembly includes a first slide rail, a first motor, a fifth transmission block, a fifth screw, a first belt, a fifth mounting plate and a first transmission plate; the first slide rail is fixedly connected to the fourth mounting plate, a fifth slide groove is provided in the first slide rail, one end of the first slide rail is fixedly connected to the fifth mounting plate, the first motor is fixedly connected to the fifth mounting plate, the fifth screw rod sequentially penetrates the fifth mounting plate and the first slide rail and extends into the fifth slide groove, the fifth screw rod penetrates the fifth transmission block and is threadedly connected to the fifth transmission block, the fifth transmission block is accommodated in the fifth slide groove, the first transmission plate is sleeved outside the first slide rail and fixedly connected to the fifth transmission block, the first belt is sleeved on the first motor and the fifth screw rod, the vertical cutting module is fixedly mounted on the first transmission plate, and a vertical cutting machine is provided on the vertical cutting module.

5. The three-axis cutting machine according to claim 1, characterized in that: The first sliding assembly includes a second slide rail, a second motor, a sixth transmission block, a sixth screw rod, a second belt, a sixth mounting plate and a second transmission plate; the second slide rail is fixedly mounted on the mounting platform, a sixth slide groove is provided in the second slide rail, one end of the second slide rail is fixedly connected to the sixth mounting plate, the second motor is fixedly connected to the sixth mounting plate, the sixth screw rod sequentially penetrates the sixth mounting plate and the second slide rail and extends into the sixth slide groove, the sixth screw rod penetrates the sixth transmission block and is threadedly connected to the sixth transmission block, the sixth transmission block is accommodated in the sixth slide groove, the second transmission plate is sleeved outside the second slide rail and fixedly connected to the sixth transmission block, the second belt is sleeved on the second motor and the sixth screw rod, and the second sliding assembly is fixedly mounted on the second transmission plate.

6. The three-axis cutting machine according to claim 5, characterized in that: The second sliding assembly includes a third slide rail, a third motor, a seventh transmission block, a seventh screw rod, a third belt, a seventh mounting plate and a third transmission plate; the third slide rail is fixedly mounted on the second transmission plate, a seventh slide groove is provided in the third slide rail, one end of the third slide rail is fixedly connected to the seventh mounting plate, the third motor is fixedly connected to the seventh mounting plate, the seventh screw rod sequentially penetrates the seventh mounting plate and the third slide rail and extends into the seventh slide groove, the seventh screw rod penetrates the seventh transmission block and is threadedly connected to the seventh transmission block, the seventh transmission block is accommodated in the seventh slide groove, the third transmission plate is sleeved outside the third slide rail and fixedly connected to the seventh transmission block, the third belt is sleeved on the seventh screw rod and the third motor, and the fixed platform is fixedly mounted on the third transmission plate.

7. The three-axis cutting machine according to claim 1, characterized in that: The three-axis cutting machine also includes a fixture, which is fixedly mounted on the fixed platform.

8. The three-axis cutting machine according to claim 1, characterized in that: The three-axis cutting machine also includes an oil tank, which is fixedly connected to the mounting platform. A filter screen fixedly connected to the oil tank is provided on the oil tank.

Citation Information

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