Workpiece storage device for pipe laser cutting equipment
By designing a workpiece storage device for pipe laser cutting equipment with multiple components, the problem of pipes being easily contaminated and damaged in existing devices is solved, and the layered closed storage of pipes and convenient access and storage are realized, which improves the protection and practical value of the storage device.
Patent Information
- Application Number
- CN202422208072.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-09
AI Technical Summary
The existing workpiece storage device for laser cutting equipment for pipes has a simple structure, which makes the pipes easily contaminated and damaged.
A workpiece storage device including a storage box, an opening and closing component, a locking component, an access component, a first mounting component, a placement component and a second mounting component are designed. The flexible opening and closing and locking of the storage box is realized through the opening and closing component and a locking component, and the access component and a placement component are used to realize layered closed storage and convenient access of the pipe.
It effectively improves the protection of the workpiece storage device, prevents contamination and damage of pipes, and enhances the practical value and safety of the device.
Smart Images

Figure CN223013156U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of workpiece storage devices, in particular to a workpiece storage device for a pipe laser cutting device. Background Art
[0002] A pipe laser cutting device is a laser processing device specifically used for cutting metal pipes. It uses a laser beam with high energy density as a cutting tool to quickly and accurately cut pipes. Pipe laser cutting devices are widely used in industries such as metal processing, automobile manufacturing, aerospace, construction, and furniture manufacturing. After the laser cutting operation on pipes, the pipes need to be uniformly stored and managed. However, most workpiece storage devices for pipe laser cutting devices often directly expose the pipes to the workshop environment, resulting in the pipes being easily contaminated with dust after being stored for a certain period of time, and the pipes are relatively easy to be collided and dropped, affecting the safety of workpiece storage. Summary of the Utility Model
[0003] In order to overcome the problem that most workpiece storage devices for pipe laser cutting devices have relatively simple storage structures, and most of them are directly stored in an open manner in the workshop, resulting in the workpieces being relatively easy to be contaminated and damaged.
[0004] The technical solution of the utility model is: a workpiece storage device for a pipe laser cutting device, comprising a storage box, an opening and closing component, a locking component, an access component, a first mounting component, a placement component, and a second mounting component; two groups of opening and closing components are arranged on one side of the storage box, a locking component is arranged outside the opening and closing components, an access component is arranged inside the storage box, two groups of access components are arranged, a first mounting component is arranged above the access component, a placement component is arranged outside the first mounting component, and a second mounting component is also arranged outside the first mounting component.
[0005] Preferably, by setting the opening and closing component to flexibly open and close the storage box, using the locking component to flexibly open and lock the opening and closing component, adjusting the distance between the second mounting components through the first mounting component, using the second mounting component to install and fix the placement component, stably fixing the placement component on the access component, placing the cut pipe workpieces through the placement component, and using the access component to move the placement component out and in, so that the placement component can move flexibly inside and outside the storage box, thereby realizing layered and enclosed storage of the pipes according to their actual sizes, and being convenient for taking and placing, effectively improving the protection effect of the workpiece storage device, and enhancing the practical value of the device.
[0006] Preferably, the opening and closing assembly includes a storage cavity, a first rotating shaft, a box door and a handle; a storage cavity is formed on one side of the storage box, there are two groups of storage cavities, a first rotating shaft is arranged on one side of the storage cavity, the first rotating shaft is rotatably connected to the storage box, a box door is arranged on the outer side of the first rotating shaft, and a handle is arranged on the outer side of the box door; the storage box is layered through the storage cavity, pipe workpieces of different sizes are stored in different storage cavities, the box door is rotated by rotating the first rotating shaft, the storage cavity is flexibly closed by the box door, and the box door is flexibly opened and closed by the handle.
[0007] Preferably, the locking assembly includes a second rotating shaft, a clamping plate and a positioning hook; a second rotating shaft is arranged on one side of the outer surface of the box door, a clamping plate is arranged at one end of the second rotating shaft, the clamping plate is rotatably connected to the second rotating shaft, positioning hooks are arranged on the outer side of the storage box, there are two groups of positioning hooks, and the clamping plate is engaged with the positioning hook; the clamping plate is rotated by rotating the second rotating shaft, and the clamping plate is inserted into the positioning hook, and the clamping plate is tightly fixed by the positioning hook, so as to achieve the effect of conveniently opening and closing the box door.
[0008] Preferably, the access assembly includes a first groove, a first lead screw, a first motor, a first connecting block and a fixed plate; a first groove is formed on the bottom surface inside the storage cavity, a first lead screw is arranged inside the first groove, a first motor is arranged on the outer side of the storage box, the output end of the first motor is connected to the first lead screw, a first connecting block is arranged on the outer side of the first lead screw, and a fixed plate is arranged on the outer side of the first connecting block; the position of the first lead screw is fixed by the first groove, the first lead screw is rotated by the first motor, the position of the first connecting block is moved by rotating the first lead screw, the fixed plate is fixedly connected by the first connecting block, and the position of the first mounting assembly is fixed by the fixed plate.
[0009] Preferably, the first mounting assembly includes a second groove, a bidirectional adjustment lead screw and a second motor; a second groove is formed on one side of the fixed plate, a bidirectional adjustment lead screw is arranged inside the second groove, a second motor is arranged at one end of the fixed plate, and the output end of the second motor is connected to the bidirectional adjustment lead screw; the position of the bidirectional adjustment lead screw is fixed by the second groove, the bidirectional adjustment lead screw is rotated by the second motor, and the distance between two groups of second mounting assemblies is adjusted by rotating the bidirectional adjustment lead screw.
[0010] Preferably, the placing assembly includes a fixed frame and a placing plate; a fixed frame is arranged on the outer side of the fixed plate, a placing plate is arranged inside the fixed frame, and there are multiple groups of placing plates; the placing plate is fixed by the fixed frame, and the placing sizes of two groups of placing plates are different, and pipes of different sizes are placed by using the placing plates, so as to achieve the effect of placing pipes of different sizes in layers.
[0011] Preferably, the second installation component includes an L-shaped block and an L-shaped slot; the outer side of the bidirectional adjustment screw rod is provided with an L-shaped block, and there are two groups of L-shaped blocks. On one side of the fixed frame, two groups of L-shaped slots are opened. The L-shaped block and the L-shaped slot are mutually engaged; by sliding the L-shaped block in the L-shaped slot, the L-shaped block is snapped into the L-shaped slot, and the fixed frame is fixed to one side of the fixed plate, thereby achieving the effect of flexibly disassembling and assembling the fixed frame.
[0012] The beneficial effects of the present utility model:
[0013] 1. Compared with the traditional workpiece storage device for pipe laser cutting equipment, most of them use a storage rack to store pipe workpieces. Most of the storage structures are relatively simple, and the pipes are often directly exposed to the workshop environment, resulting in the pipes being easily contaminated with dust and being more likely to be collided and dropped. Through the closed storage method, the pipes are stored in layers and enclosed according to their actual sizes, and the access is convenient, effectively improving the protection effect of the workpiece storage device and enhancing the practical value of the device;
[0014] 2. When taking and placing pipes, place the pipes of the corresponding size on the placement plate, use the first motor to drive the first screw rod in the first groove to rotate, rotate the first screw rod to move the position of the first connecting block, thereby driving the position of the fixed plate to move, and flexibly retract and move the fixed frame in and out of the storage cavity. The pipes are stored in the storage cavity in a closed manner to solve the problem that most workpiece storage devices for pipe laser cutting equipment are mostly directly stored in an open manner in the workshop, resulting in the workpieces being more easily contaminated and damaged, and enhancing the safety of workpiece storage;
[0015] 3. When installing the fixed frame, select the corresponding placement plate according to the actual size of the processed pipe, place the fixed frame on one side of the fixed plate, and make the L-shaped block embed into the L-shaped slot. Subsequently, use the second motor to drive the bidirectional adjustment screw rod in the second groove to rotate, so that the L-shaped block is completely engaged with the L-shaped slot, and the fixed frame is installed on the fixed plate. When closing the box door, control the box door to drive the first rotating shaft to rotate through the handle, so that the box door closes the storage cavity. Subsequently, rotate the clamping plate around the second rotating shaft, and snap the clamping plate into the positioning hook to lock the box door. Description of the Drawings
[0016] Figure 1 Shown is a three-dimensional structural schematic diagram of a workpiece storage device for a pipe laser cutting equipment of the present utility model;
[0017] Figure 2 Shown is a three-dimensional structural schematic diagram of an access component of a workpiece storage device for a pipe laser cutting equipment of the present utility model;
[0018] Figure 3The figure shows a three-dimensional structural schematic diagram of an opening and closing component of a workpiece storage device for a pipe laser cutting device of the present utility model;
[0019] Figure 4 The figure shows a three-dimensional structural schematic diagram of a first installation component of a workpiece storage device for a pipe laser cutting device of the present utility model;
[0020] Figure 5 The figure shows a three-dimensional structural schematic diagram of a second installation component of a workpiece storage device for a pipe laser cutting device of the present utility model.
[0021] Explanation of reference numerals: 1, storage box; 2, opening and closing component; 3, locking component; 4, access component; 5, first installation component; 6, placement component; 7, second installation component; 201, storage cavity; 202, first rotating shaft; 203, box door; 204, handle; 301, second rotating shaft; 302, clamping plate; 303, positioning hook; 401, first groove; 402, first lead screw; 403, first motor; 404, first connecting block; 405, fixed plate; 501, second groove; 502, bidirectional adjustment lead screw; 503, second motor; 601, fixed frame; 602, placement plate; 701, L-shaped clamping block; 702, L-shaped clamping groove. Detailed implementation manners
[0022] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0023] Please refer to Figure 1 , the present utility model provides an embodiment: a workpiece storage device for a pipe laser cutting device, including a storage box 1, an opening and closing component 2, a locking component 3, an access component 4, a first installation component 5, a placement component 6 and a second installation component 7; two groups of opening and closing components 2 are provided on one side of the storage box 1, a locking component 3 is provided outside the opening and closing components 2, an access component 4 is provided inside the storage box 1, two groups of access components 4 are provided, a first installation component 5 is provided above the access components 4, a placement component 6 is provided outside the first installation component 5, and a second installation component 7 is also provided outside the first installation component 5.
[0024] Please refer to Figures 2-3, in this embodiment, the opening and closing assembly 2 includes a storage cavity 201, a first rotating shaft 202, a box door 203 and a handle 204; a storage cavity 201 is provided on one side of the storage box 1, there are two groups of storage cavities 201, a first rotating shaft 202 is arranged on one side of the storage cavity 201, the first rotating shaft 202 is rotatably connected to the storage box 1, a box door 203 is arranged on the outer side of the first rotating shaft 202, and a handle 204 is arranged on the outer side of the box door 203. The storage box 1 is layered by the storage cavity 201, and pipe workpieces of different sizes are stored in different storage cavities 201. By rotating the first rotating shaft 202, the box door 203 is driven to rotate, and the storage cavity 201 is flexibly closed by the box door 203. The box door 203 is flexibly opened and closed by the handle 204; the locking assembly 3 includes a second rotating shaft 301, a clamping plate 302 and a positioning hook 303; a second rotating shaft 301 is arranged on one side of the outer surface of the box door 203, a clamping plate 302 is arranged at one end of the second rotating shaft 301, the clamping plate 302 is rotatably connected to the second rotating shaft 301, a positioning hook 303 is arranged on the outer side of the storage box 1, there are two groups of positioning hooks 303, and the clamping plate 302 is engaged with the positioning hook 303. By rotating the second rotating shaft 301, the clamping plate 302 is driven to rotate, and the clamping plate 302 is rotated and snapped into the positioning hook 303, and the clamping plate 302 is tightly fixed by the positioning hook 303, so as to achieve the effect of conveniently opening and closing the box door 203;
[0025] The access assembly 4 includes a first groove 401, a first lead screw 402, a first motor 403, a first connecting block 404 and a fixed plate 405; a first groove 401 is provided on the bottom surface inside the storage cavity 201, a first lead screw 402 is arranged on the inner side of the first groove 401, a first motor 403 is arranged on the outer side of the storage box 1, the output end of the first motor 403 is connected to the first lead screw 402, a first connecting block 404 is arranged on the outer side of the first lead screw 402, and a fixed plate 405 is arranged on the outer side of the first connecting block 404. The position of the first lead screw 402 is fixed by the first groove 401, the first lead screw 402 is driven to rotate by the first motor 403, the position of the first connecting block 404 is moved by rotating the first lead screw 402, the fixed plate 405 is fixedly connected by the first connecting block 404, and the position of the first mounting assembly 5 is fixed by the fixed plate 405.
[0026] Please refer to Figures 4-5, in this embodiment, the first installation component 5 includes a second groove 501, a bidirectional adjustment screw rod 502, and a second motor 503; a second groove 501 is provided on one side of the fixed plate 405, a bidirectional adjustment screw rod 502 is arranged inside the second groove 501, a second motor 503 is arranged at one end of the fixed plate 405, the output end of the second motor 503 is connected to the bidirectional adjustment screw rod 502, the position of the bidirectional adjustment screw rod 502 is fixed through the second groove 501, the bidirectional adjustment screw rod 502 is driven to rotate by the second motor 503, and the distance between two groups of second installation components 7 is adjusted by rotating the bidirectional adjustment screw rod 502; the placement component 6 includes a fixed frame 601 and a placement plate 602; the fixed frame 601 is arranged outside the fixed plate 405, the placement plate 602 is arranged inside the fixed frame 601, there are multiple groups of placement plates 602, the placement plate 602 is fixed through the fixed frame 601, the placement sizes of two groups of placement plates 602 are different, and pipes of different sizes are placed in layers by using pipes of different sizes of the placement plate 602; the second installation component 7 includes an L-shaped block 701 and an L-shaped slot 702; the L-shaped block 701 is arranged outside the bidirectional adjustment screw rod 502, there are two groups of L-shaped blocks 701, an L-shaped slot 702 is provided on one side of the fixed frame 601, there are two groups of L-shaped slots 702, the L-shaped block 701 is fitted with the L-shaped slot 702, the L-shaped block 701 slides in the L-shaped slot 702, the L-shaped block 701 is snapped into the L-shaped slot 702, and the fixed frame 601 is fixed to one side of the fixed plate 405, so as to achieve the effect of flexibly disassembling and assembling the fixed frame 601.
[0027] When installing the fixed frame 601, select the corresponding placement plate 602 according to the actual size of the processed pipe, place the fixed frame 601 on one side of the fixed plate 405 to make the L-shaped block 701 embed into the L-shaped slot 702. Subsequently, drive the bidirectional adjustment screw rod 502 in the second groove 501 to rotate by using the second motor 503, so that the L-shaped block 701 is completely fitted into the L-shaped slot 702, and the fixed frame 601 is installed on the fixed plate 405;
[0028] When storing the pipes, place the pipes of corresponding sizes on the placement plate 602. Subsequently, drive the first screw rod 402 in the first groove 401 to rotate by using the first motor 403, and rotate the first screw rod 402 to move the fixed plate 405 on the first connecting block 404 into the storage cavity 201, thereby driving the fixed frame 601 to be received into the storage cavity 201, and storing the pipes in the storage cavity 201;
[0029] When closing the storage box 1, control the box door 203 to drive the first rotating shaft 202 to rotate through the handle 204, so that the box door 203 closes the storage cavity 201. Subsequently, rotate the clamping plate 302 around the second rotating shaft 301, and snap the clamping plate 302 into the positioning hook 303 to lock the box door 203.
[0030] Through the above steps, the storage box 1 is flexibly opened and closed by setting the opening and closing component 2, the opening and closing component 2 is flexibly opened and locked by using the locking component 3, the distance between the second mounting component 7 is adjusted by the first mounting component 5, the placing component 6 is mounted and fixed by using the second mounting component 7, the placing component 6 is stably fixed on the access component 4, the cut pipe workpiece is placed by the placing component 6, and the placing component 6 is moved out and in by using the access component 4, so that the placing component 6 can move flexibly inside and outside the storage box 1.
[0031] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those skilled in the art.
Claims
1. A workpiece storage device for a tube laser cutting device, comprising a storage box (1); characterized in that: The invention also comprises an opening and closing component (2), a locking component (3), an access component (4), a first installation component (5), a placement component (6) and a second installation component (7); an opening and closing component (2) is arranged on one side of the storage box (1), the opening and closing component (2) is arranged in two groups, a locking component (3) is arranged on the outside of the opening and closing component (2), an access component (4) is arranged inside the storage box (1), the access component (4) is arranged in two groups, a first installation component (5) is arranged above the access component (4), a placement component (6) is arranged on the outside of the first installation component (5), and a second installation component (7) is also arranged on the outside of the first installation component (5).
2. The workpiece storage device for tube laser cutting equipment according to claim 1, characterized in that: The opening and closing assembly (2) comprises a storage chamber (201), a first rotating shaft (202), a box door (203) and a handle (204); a storage chamber (201) is provided on one side of the storage box (1), the storage chamber (201) is provided with two groups, a first rotating shaft (202) is provided on one side of the storage chamber (201), the first rotating shaft (202) and the storage box (1) are rotatably connected to each other, a box door (203) is provided on the outside of the first rotating shaft (202), and a handle (204) is provided on the outside of the box door (203).
3. The workpiece storage device for tube laser cutting equipment according to claim 2, characterized in that: The locking assembly (3) comprises a second rotating shaft (301), a clamping plate (302) and a positioning hook (303); a second rotating shaft (301) is arranged on one side of the outer surface of the box door (203); a clamping plate (302) is arranged at one end of the second rotating shaft (301); the clamping plate (302) and the second rotating shaft (301) are rotatably connected to each other; a positioning hook (303) is arranged on the outer side of the storage box (1); two groups of the positioning hooks (303) are arranged; the clamping plate (302) and the positioning hooks (303) are engaged with each other.
4. The workpiece storage device for tube laser cutting equipment according to claim 2, characterized in that: The storage and retrieval assembly (4) comprises a first groove (401), a first screw rod (402), a first motor (403), a first connecting block (404) and a fixed plate (405); the bottom surface of the storage cavity (201) is provided with a first groove (401), the first screw rod (402) is arranged inside the first groove (401), the first motor (403) is arranged outside the storage box (1), the output end of the first motor (403) is connected to the first screw rod (402), the first connecting block (404) is arranged outside the first screw rod (402), and the fixed plate (405) is arranged outside the first connecting block (404).
5. The workpiece storage device for tube laser cutting equipment according to claim 4, characterized in that: The first mounting assembly (5) comprises a second groove (501), a bidirectional adjustment screw rod (502) and a second motor (503); a second groove (501) is provided on one side of the fixed plate (405), a bidirectional adjustment screw rod (502) is arranged inside the second groove (501), a second motor (503) is arranged at one end of the fixed plate (405), and an output end of the second motor (503) is connected to the bidirectional adjustment screw rod (502).
6. The workpiece storage device for tube laser cutting equipment according to claim 4, characterized in that: The placement component (6) includes a fixed frame (601) and a storage board (602); the fixed frame (601) is arranged outside the fixed plate (405), and the storage board (602) is arranged inside the fixed frame (601), and the storage board (602) is arranged in multiple groups.
7. The workpiece storage device for tube laser cutting equipment according to claim 6, characterized in that: The second mounting assembly (7) comprises an L-shaped clamping block (701) and an L-shaped clamping groove (702); an L-shaped clamping block (701) is arranged outside the bidirectional adjustment screw rod (502), two groups of L-shaped clamping blocks (701) are arranged, one side of the fixed frame (601) is provided with an L-shaped clamping groove (702), two groups of L-shaped clamping groove (702) are arranged, and the L-shaped clamping block (701) and the L-shaped clamping groove (702) are interlocked.