Numerical control cutting machine worktable for aluminum material machining

By designing an automated CNC cutting machine workbench, the problem of needing to stop the machine to pick up materials and manually feed materials in the existing technology of aluminum material processing has been solved, realizing automated feeding and picking of aluminum materials, and improving processing efficiency and continuity.

CN117900849BActive Publication Date: 2026-06-02FAR EAST HENG FAI FACADE (ZHUHAI) LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FAR EAST HENG FAI FACADE (ZHUHAI) LTD
Filing Date
2022-10-10
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing CNC cutting machines for aluminum processing require stopping to retrieve the material after processing each sheet, which affects continuous processing. Furthermore, two people are needed to lift and place the sheet material, which consumes manpower, time, and physical strength.

Method used

A CNC cutting machine workbench was designed, comprising a feeding device, a storage device, a cutting device, a fixing device, and a support device. It utilizes components such as hydraulic cylinders, rollers, motors, and rubber wheels to achieve automated feeding and unloading, reducing manual intervention.

Benefits of technology

It has enabled automated feeding and unloading of aluminum materials, reducing the need for manpower, improving the continuity and efficiency of processing, and avoiding scratches between sheets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of numerical control cutting-off machines for aluminum material processing, and discloses a numerical control cutting-off machine workbench for aluminum material processing, which comprises a feeding device, a storage device, a cutting device, a fixing device, a supporting device and a discharging device. The storage device is arranged in the inner cavity of the feeding device, the discharging device is arranged at the top of the inner cavity of the feeding device, the supporting device is arranged at the right side of the feeding device, the fixing device is arranged at the top of the supporting device, and the cutting device is arranged on the outer side wall of the cutting-off machine platform. The aluminum material body can be stacked through the feeding device, the aluminum material body can be stored through the storage device, the aluminum material body can be moved to the supporting device through the discharging device, so that the automatic feeding effect is realized, the aluminum material body is cut through the cutting device, the aluminum material body is stabilized through the fixing device, and the aluminum material body is moved out of the supporting device through the fixing device after cutting.
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Description

Technical Field

[0001] This invention belongs to the technical field of CNC cutting machines for aluminum processing, specifically a worktable for a CNC cutting machine for aluminum processing. Background Technology

[0002] Existing CNC cutting machines for aluminum processing require stopping the machine and removing the processed sheet after each sheet is processed, causing the machine to stop and hindering continuous processing. In addition, at least two people are needed to lift and place the sheet onto the CNC cutting machine, which consumes manpower and time and exhausts the workers' physical strength, thus affecting the overall processing time of the sheet. Therefore, we propose a worktable for a CNC cutting machine for aluminum processing. Summary of the Invention

[0003] In order to overcome the shortcomings of the prior art, this invention provides a CNC cutting machine workbench for aluminum processing, which effectively solves the problem that existing CNC cutting machines for aluminum processing have to stop the machine and remove the processed plates after processing each plate, causing the machine to stop working and making it difficult to carry out continuous processing. In addition, at least two people are required to lift and place the plates onto the CNC cutting machine, which consumes manpower and time and consumes the physical strength of the workers, thus affecting the overall processing time of the plates.

[0004] To achieve the above objectives, the present invention provides the following technical solution: a CNC cutting machine workbench for aluminum processing, comprising a feeding device, a storage device, a cutting device, a fixing device, a supporting device, and a discharging device. The storage device is disposed in the inner cavity of the feeding device, the discharging device is disposed at the top of the inner cavity of the feeding device, the supporting device is disposed on the right side of the feeding device, the fixing device is disposed at the top of the supporting device, and the cutting device is disposed on the outer side wall of the cutting machine workbench.

[0005] The feeding device includes a box body, with first support feet evenly arranged at the bottom of the box body. A hydraulic cylinder is installed at the bottom of the inner cavity of the box body. Two sets of L-shaped guide rails are arranged at the left opening of the box body. The two sets of L-shaped guide rails are distributed in a mirror image. Rollers are evenly arranged in the inner cavity of the L-shaped guide rails through a rotating shaft. A support column is installed at the bottom of the L-shaped guide rails. A discharge chute is chiseled on the right side of the box body.

[0006] Preferably, the storage device includes a support shaft, which is evenly arranged in the inner cavity of the box. A connecting sleeve is provided on the outer side wall of the box, and a support block is provided on the outer side wall of the connecting sleeve. A limit rod is provided at the bottom of the support block. An aluminum body is provided on the top of the two sets of support blocks, and a pad is provided on the facing side of the two sets of aluminum bodies. A handle is provided on the left side of the pad.

[0007] Preferably, the discharge device includes a spring, the top of which is evenly distributed on the top of the inner cavity of the box, a support plate is provided at the bottom of the spring, a second motor is provided at the bottom of the support plate, a friction wheel is provided at the output end of the second motor, the friction wheel is in contact with the top of the aluminum body, and the aluminum body corresponds to the discharge slot of the box.

[0008] Preferably, the support device includes a cutting machine platform, which is located on the right side of the box body. The top of the cutting machine platform is flush with the bottom of the discharge chute of the box body, and the bottom of the cutting machine platform is evenly provided with second support feet.

[0009] Preferably, the fixing device includes a first motor, and the top of the cutting machine base is uniformly chiseled with two sets of first grooves and second grooves, the two sets of first grooves and second grooves are symmetrically distributed, the bottom of the first motor is set at the bottom of the first groove, a rotating column is set in the second groove, a belt is set at the output end of the first motor and the outer wall of the rotating column, a first rubber wheel is set at the top of the first motor, and a second rubber wheel is set at the top of the rotating column.

[0010] Preferably, the cutting device includes a crossbeam, which is installed on the outer wall of the cutting machine platform and can move along its long side. An X-axis drive motor that moves along the length of the cutting machine platform is installed inside the crossbeam. A lateral moving component that can move back and forth is installed on the left side of the crossbeam. A Y-axis drive motor that moves along the length of the crossbeam is installed inside the lateral moving component. A vertical moving component that can move up and down is installed on the left side of the lateral moving component. A Z-axis drive motor that moves along the height of the lateral moving component is installed inside the vertical moving component. A cutting tool for drilling, grooving, and milling is installed at the bottom end of the vertical moving component.

[0011] A method for using the worktable of a CNC cutting machine for aluminum processing:

[0012] Step 1: Place the first aluminum body on the rollers. The rollers help the aluminum body slide into the box. The hydraulic cylinder pushes the aluminum body upward. As the aluminum body moves upward, it will cause the support block to rotate upward. When the aluminum body moves to the top of the support block, the support block will automatically reset without contacting the aluminum body. The limit rod holds the support block, and then the hydraulic cylinder moves downward, and the aluminum body falls onto the support block. Place the second aluminum body on the rollers, and then place a pad on the aluminum body. Similarly, the hydraulic cylinder pushes the second aluminum body upward. The second aluminum body pushes the first aluminum body upward through the pad. Similarly, the support block above supports the first aluminum body. Repeat this process of stacking aluminum bodies.

[0013] Step 2: After the aluminum body inside the box is full, the spring will cause the support plate to reset through the rebound force. The support plate will then cause the second motor to reset. The second motor will drive the friction wheel to rotate. The friction wheel will press against the top of the first aluminum body. The rotation of the friction wheel will move the first aluminum body to the cutting machine table. When moving the aluminum body below, the handle needs to be pulled to remove the pad.

[0014] Step 3: When the aluminum material body moves to the cutting machine table, the first motor drives the first rubber wheel and belt to rotate, which in turn drives the rotating column to rotate. The rotating column then drives the second rubber wheel to rotate. The two sets of first and second rubber wheels stabilize the aluminum material body. The crossbeam moves along the X-axis, the lateral moving component moves along the Y-axis, and the vertical moving component moves along the Z-axis. This drives the cutting tool installed at the bottom of the vertical moving component for drilling, grooving, and milling to perform multi-angle cutting. After cutting is completed, the first and second rubber wheels drive the aluminum material body to move out of the cutting machine table.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] 1. By setting multiple sets of support blocks in the box on the left side of the cutting machine, several aluminum materials can be placed, and the top aluminum material can be moved onto the cutting machine for processing, avoiding the need for multiple people to move it, which is time-consuming and laborious.

[0017] 2. The top aluminum material body can be moved to the cutting machine table by the discharge device at the top of the box. The aluminum material bodies inside the box are stacked, which does not occupy space or site. The pads between each aluminum material body can prevent scratches caused by friction between each aluminum material body.

[0018] 3. After the aluminum material body is cut, the first rubber wheel and the second rubber wheel drive the aluminum material body to move out of the cutting machine platform. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0020] In the attached diagram:

[0021] Figure 1 This is a schematic diagram of the structure of a CNC cutting machine worktable for aluminum material processing according to the present invention;

[0022] Figure 2 This is a front sectional view of the worktable of a CNC cutting machine for aluminum material processing according to the present invention;

[0023] Figure 3 This is a top view of the worktable of a CNC cutting machine for aluminum processing according to the present invention;

[0024] Figure 4 This is a left-side view of the worktable of a CNC cutting machine for aluminum material processing according to the present invention.

[0025] In the diagram: 100, feeding device; 200, storage device; 300, cutting device; 400, fixing device; 500, support device; 600, discharge device; 1, housing; 11, L-shaped guide rail; 12, roller; 13, support column; 14, first support foot; 15, hydraulic cylinder; 2, support shaft; 21, connecting sleeve; 22, limit rod; 23, support block; 24, aluminum body; 25, pad; 26, handle; 3, crossbeam; 31, horizontal movement assembly; 32, vertical movement assembly; 4, first rubber wheel; 41, first motor; 42, rotating column; 43, belt; 44, second rubber wheel; 5, cutting machine platform; 51, second support foot; 6, spring; 61, support plate; 62, second motor; 63, friction wheel. Detailed Implementation

[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0027] like Figure 1-4 As shown, the present invention provides a technical solution: a CNC cutting machine workbench for aluminum material processing, including a feeding device 100, a storage device 200, a cutting device 300, a fixing device 400, a support device 500, and a discharging device 600. The storage device 200 is fixedly disposed in the inner cavity of the feeding device 100, the discharging device 600 is fixedly disposed at the top of the inner cavity of the feeding device 100, the support device 500 is fixedly disposed on the right side of the feeding device 100, the fixing device 400 is fixedly disposed at the top of the support device 500, and the cutting device 300 is slidably disposed on the outer side wall of the cutting machine workbench 5.

[0028] The feeding device 100 includes a box body 1. First support feet 14 are evenly fixedly arranged at the bottom of the box body 1. A hydraulic cylinder 15 is fixedly arranged at the bottom of the inner cavity of the box body 1. Two sets of L-shaped guide rails 11 are fixedly arranged at the left opening of the box body 1. The two sets of L-shaped guide rails 11 are distributed in a mirror image. Rollers 12 are evenly arranged in the inner cavity of the L-shaped guide rails 11 through a rotating shaft. The rollers 12 assist the aluminum body 24 to move. A support column 13 is fixedly arranged at the bottom of the L-shaped guide rails 11. A discharge groove is chiseled on the right side of the box body 1.

[0029] The storage device 200 includes a support shaft 2, which is uniformly fixed in the inner cavity of the box body 1. A connecting sleeve 21 is rotatably provided on the outer wall of the box body 1. A support block 23 is fixedly provided on the outer wall of the connecting sleeve 21. A limit rod 22 is fixedly provided at the bottom of the support block 23, and the limit rod 22 abuts against the support block 23. An aluminum body 24 is slidably provided on the top of the two sets of support blocks 23, and the aluminum body 24 is supported by the support blocks 23. A pad 25 is slidably provided on the facing sides of the two sets of aluminum bodies 24. A handle 26 is fixedly provided on the left side of the pad 25.

[0030] The discharge device 600 includes a spring 6. The top of the spring 6 is evenly fixedly disposed on the top of the inner cavity of the box 1. A support plate 61 is fixedly disposed on the bottom of the spring 6. A second motor 62 is fixedly disposed on the bottom of the support plate 61. A friction wheel 63 is fixedly disposed on the output end of the second motor 62. The friction wheel 63 is driven to rotate by the second motor 62. The friction wheel 63 is in contact with the top of the aluminum body 24. The aluminum body 24 is driven to slide out of the discharge chute of the box 1 by the friction wheel 63. The aluminum body 24 corresponds to the discharge chute of the box 1.

[0031] The support device 500 includes a cutting machine base 5, which is fixedly installed on the right side of the box body 1. The top of the cutting machine base 5 is flush with the bottom of the discharge chute of the box body 1. The aluminum body 24 slides out of the discharge chute of the box body 1 and moves onto the cutting machine base 5. Second support feet 51 are evenly fixedly installed on the bottom of the cutting machine base 5.

[0032] The fixing device 400 includes a first motor 41. The top of the cutting machine base 5 is uniformly chiseled with two sets of first grooves and second grooves, which are symmetrically distributed. The bottom of the first motor 41 is fixedly installed at the bottom of the first groove. A rotating column 42 is rotatably installed in the second groove. A belt 43 is rotatably installed on the output end of the first motor 41 and the outer wall of the rotating column 42. The first motor 41 drives the rotating column 42 to rotate through the belt 43. The two sets of first motors 41 rotate synchronously. A first rubber wheel 4 is fixedly installed on the top of the first motor 41. A second rubber wheel 44 is fixedly installed on the top of the rotating column 42. The first motor 41 drives the first rubber wheel 4 to rotate, and the rotating column 42 drives the second rubber wheel 44 to rotate. The first rubber wheel 4 and the second rubber wheel 44 drive the aluminum body 24 to move.

[0033] The cutting device 300 includes a crossbeam 3, which is slidably installed on the outer wall of the cutting machine base 5 and can move along its long side. An X-axis drive motor that moves along the length of the cutting machine base 5 is fixedly installed inside the crossbeam 3. A transverse moving component 31 that can move back and forth is slidably installed on the left side of the crossbeam 3. A Y-axis drive motor that moves along the length of the crossbeam 3 is fixedly installed inside the transverse moving component 31. A vertical moving component 32 that can move up and down is slidably installed on the left side of the transverse moving component 31. A Z-axis drive motor that moves along the height of the transverse moving component 31 is fixedly installed inside the vertical moving component 32. A cutting tool for drilling, grooving and milling is fixedly installed at the bottom end of the vertical moving component 32.

[0034] A method for using the worktable of a CNC cutting machine for aluminum processing:

[0035] Step 1: Place the first aluminum body 24 on the roller 12. The roller 12 assists the aluminum body 24 in sliding into the housing 1. The hydraulic cylinder 15 pushes the aluminum body 24 upward. When the aluminum body 24 moves upward, it will cause the support block 23 to rotate upward. When the aluminum body 24 moves to the top of the support block 23, the support block 23 will automatically reset without contacting the aluminum body 24. The limit rod 22 holds the support block 23, and then the hydraulic cylinder 15 moves downward, and the aluminum body 24 falls on the support block 23. Place the second aluminum body 24 on the roller 12, and then place the pad 25 on the aluminum body 24. Similarly, the hydraulic cylinder 15 pushes the second aluminum body 24 upward. The second aluminum body 24 pushes the first aluminum body 24 upward through the pad 25. Similarly, the support block 23 above supports the first aluminum body 24. Repeat this process of stacking aluminum bodies 24.

[0036] Step 2: When the aluminum body 24 in the box 1 is full, the spring 6 drives the support plate 61 to reset through the rebound force. The support plate 61 drives the second motor 62 to reset. The second motor 62 drives the friction wheel 63 to rotate. The friction wheel 63 abuts against the top of the first aluminum body 24. The rotation of the friction wheel 63 moves the first aluminum body 24 to the cutting machine table 5. When moving the lower aluminum body 24, the handle 26 needs to be pulled to remove the pad 25.

[0037] Step 3: When the aluminum body 24 moves to the cutting machine platform 5, the first motor 41 drives the first rubber wheel 4 and belt 43 to rotate. The belt 43 drives the rotating column 42 to rotate, and the rotating column 42 drives the second rubber wheel 44 to rotate. The two sets of first rubber wheels 4 and second rubber wheels 44 stabilize the aluminum body 24. The crossbeam 3 moves along the X-axis, the lateral moving component 31 moves along the Y-axis, and the vertical moving component 32 moves along the Z-axis. This drives the cutting tool for drilling, grooving and milling installed at the bottom of the vertical moving component 32 to perform multi-angle cutting. After the cutting is completed, the first rubber wheel 4 and the second rubber wheel 44 drive the aluminum body 24 to move out of the cutting machine platform 5.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0039] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A CNC cutting machine workbench for aluminum material processing, comprising a feeding device (100), a storage device (200), a cutting device (300), a fixing device (400), a supporting device (500), and a discharging device (600), characterized in that: The storage device (200) is located in the inner cavity of the feeding device (100), the discharge device (600) is located at the top of the inner cavity of the feeding device (100), the support device (500) is located on the right side of the feeding device (100), the fixing device (400) is located at the top of the support device (500), and the cutting device (300) is located on the outer wall of the cutting machine base (5). The feeding device (100) includes a box (1), the bottom of the box (1) is evenly provided with first support feet (14), the bottom of the inner cavity of the box (1) is provided with a hydraulic cylinder (15), the left opening of the box (1) is provided with two sets of L-shaped guide rails (11), the two sets of L-shaped guide rails (11) are mirrored, the inner cavity of the L-shaped guide rails (11) is evenly provided with rollers (12) through a rotating shaft, the bottom of the L-shaped guide rails (11) is provided with a support column (13), and the right side of the box (1) is chiseled with a discharge groove. The storage device (200) includes a support shaft (2), which is evenly arranged in the inner cavity of the box (1). A connecting sleeve (21) is provided on the outer side wall of the box (1). A support block (23) is provided on the outer side wall of the connecting sleeve (21). A limit rod (22) is provided at the bottom of the support block (23). An aluminum body (24) is provided on the top of the two sets of support blocks (23). A pad (25) is provided on the facing side of the two sets of aluminum bodies (24). A handle (26) is provided on the left side of the pad (25). The discharge device (600) includes a spring (6), the top of the spring (6) is evenly arranged on the top of the inner cavity of the box (1), the bottom of the spring (6) is provided with a support plate (61), the bottom of the support plate (61) is provided with a second motor (62), the output end of the second motor (62) is provided with a friction wheel (63), the friction wheel (63) is in contact with the top of the aluminum body (24), and the aluminum body (24) corresponds to the discharge groove of the box (1).

2. The CNC cutting machine workbench for aluminum material processing according to claim 1, characterized in that: The support device (500) includes a cutting machine platform (5), which is located on the right side of the box (1). The top of the cutting machine platform (5) is flush with the bottom of the discharge trough of the box (1), and the bottom of the cutting machine platform (5) is uniformly provided with second support feet (51).

3. The CNC cutting machine workbench for aluminum material processing according to claim 2, characterized in that: The fixing device (400) includes a first motor (41). The top of the cutting machine platform (5) is uniformly chiseled with two sets of first grooves and second grooves. The two sets of first grooves and second grooves are symmetrically distributed. The bottom of the first motor (41) is set at the bottom of the first groove. A rotating column (42) is set in the second groove. A belt (43) is set on the output end of the first motor (41) and the outer wall of the rotating column (42). A first rubber wheel (4) is set on the top of the first motor (41). A second rubber wheel (44) is set on the top of the rotating column (42).

4. The CNC cutting machine worktable for aluminum material processing according to claim 3, characterized in that: The cutting device (300) includes a crossbeam (3), which is installed on the outer wall of the cutting machine platform (5) and can move along its long side. An X-axis drive motor that moves along the length of the cutting machine platform (5) is installed inside the crossbeam (3). A transverse moving component (31) that can move back and forth is installed on the left side of the crossbeam (3). A Y-axis drive motor that moves along the length of the crossbeam (3) is installed inside the transverse moving component (31). A vertical moving component (32) that can move up and down is installed on the left side of the transverse moving component (31). A Z-axis drive motor that moves along the height of the transverse moving component (31) is installed inside the vertical moving component (32). A cutting tool for drilling, grooving and milling is installed at the bottom end of the vertical moving component (32).

5. A CNC cutting machine worktable for aluminum material processing according to any one of claims 1-4, characterized in that, Includes the following steps: Step 1: Place the first aluminum body (24) on the roller (12). The roller (12) assists the aluminum body (24) in sliding into the housing (1). The hydraulic cylinder (15) pushes the aluminum body (24) upward. When the aluminum body (24) moves upward, it will cause the support block (23) to rotate upward. When the aluminum body (24) moves to the top of the support block (23), the support block (23) will automatically reset without contacting the aluminum body (24). The limit rod (22) holds the support block (23) in place, and then the hydraulic cylinder... The cylinder (15) moves down, and the aluminum body (24) falls on the support block (23). The second aluminum body (24) is placed on the roller (12), and then a pad (25) is placed on the aluminum body (24). Similarly, the hydraulic cylinder (15) pushes the second aluminum body (24) upward, and the second aluminum body (24) pushes the first aluminum body (24) upward through the pad (25). Similarly, the first aluminum body (24) is supported by the support block (23) above. The aluminum bodies (24) are stacked repeatedly in this way. Step 2: When the aluminum body (24) inside the box (1) is full, the spring (6) drives the support plate (61) to reset through the rebound force. The support plate (61) drives the second motor (62) to reset. The second motor (62) drives the friction wheel (63) to rotate. The friction wheel (63) presses against the top of the first aluminum body (24). The rotation of the friction wheel (63) moves the first aluminum body (24) to the cutting machine table (5). When moving the lower aluminum body (24), it is necessary to pull the handle (26) to pull out the pad (25). Step 3: When the aluminum body (24) moves to the cutting machine platform (5), the first motor (41) drives the first rubber wheel (4) and belt (43) to rotate. The belt (43) drives the rotating column (42) to rotate. The rotating column (42) drives the second rubber wheel (44) to rotate. The aluminum body (24) is stabilized by the two sets of first rubber wheels (4) and second rubber wheels (44). The crossbeam (3) moves along the X-axis, the horizontal moving component (31) moves along the Y-axis, and the vertical moving component (32) moves along the Z-axis. This drives the cutting tool for drilling, grooving and milling installed at the bottom of the vertical moving component (32) to perform multi-angle cutting. After the cutting is completed, the aluminum body (24) is moved out of the cutting machine platform (5) by the first rubber wheel (4) and the second rubber wheel (44).