Cutting device for plate production and processing
By designing a plate production, processing and cutting device including a barrier assembly and a cutting assembly, the problem of manual measurement before cutting in the prior art is solved, and automatic adjustment of the barrier plate and auxiliary clamping treatment are realized, which improves cutting efficiency and stability.
Patent Information
- Application Number
- CN202421347207.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-13
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-13
AI Technical Summary
The existing cutting device needs to manually determine the cutting position of the plate before cutting, which leads to cumbersome operation and requires multiple measurements, which affects efficiency.
A cutting device for the production and processing of sheet materials is designed, including a bearing seat, a conveying assembly, a cutting assembly and a barrier assembly. By installing the barrier assembly on the top of the bearing seat, the transmission system with the inlay disk, worm and worm gear is used to automatically adjust the barrier plate to avoid manual measurement.
The device can pre-adjust the barrier plate to a designated position before work, reduce the number of manual measurements, improve cutting efficiency, and ensure the stability of the plate during the cutting process through auxiliary clamping treatment of laser cutting head and hydraulic rod.
Smart Images

Figure CN222832106U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of plate processing, and in particular relates to a cutting device for plate production and processing. Background Art
[0002] Calcium carbide board, also known as Norman floor board, is a high-density fiberboard material. Its main raw materials are wood or plant fibers, which are processed under high temperature and high pressure. The production process of calcium carbide board mainly includes steps such as raw material preparation, slag treatment, reaction process and product treatment. Among them, the raw materials are mainly limestone and coke, which are pretreated and reacted to generate calcium carbide and carbon dioxide. During the reaction process, it is necessary to control the reaction temperature, maintain the balance of normal production pressure in the furnace and the temperature inside the furnace shell to ensure product quality. During the processing of the board, the board needs to be assisted in cutting so that the board can be cut to the specified specifications.
[0003] The existing cutting device needs to manually determine the overall cutting position of the plate before cutting. When cutting plates of the same specification, the cutting position of the plate needs to be measured frequently for many times. The overall operation is relatively cumbersome. Therefore, a cutting device for plate production and processing is needed to assist in solving this problem. Utility Model Content
[0004] (1) Technical issues to be solved
[0005] In view of the deficiencies in the prior art, the purpose of the utility model is to provide a cutting device for plate production and processing, which can pre-adjust the blocking plate to a corresponding position according to the different cutting lengths of the plate before work, and can avoid the need for multiple manual measurements during subsequent cutting.
[0006] (2) Technical solution
[0007] In order to solve the above technical problems, the utility model provides a cutting device for plate production and processing, which includes a receiving seat, a base frame is installed at the bottom of the receiving seat, a conveying component for conveying is installed on the receiving seat, a cutting component for auxiliary cutting is installed at the middle section of the receiving seat, and an adjustment cavity is symmetrically opened at the top of the receiving seat, and a blocking component for auxiliary plate length adjustment is installed in the adjustment cavity;
[0008] The blocking assembly includes a screw rod rotatably arranged in the adjusting chamber, a sliding block is sleeved and installed on the screw rod, the sliding block and the screw rod are threadedly matched, a blocking plate is rotatably arranged on the sliding block, a stepping motor for assisting the rotation of the blocking plate is installed on the side of the sliding block away from the blocking plate, an embedded disk is rotatably embedded and installed at the top of the receiving seat, a worm is installed on one side of the embedded disk, a worm wheel is fixed on the side of the screw rod facing the embedded disk, and the worm wheel and the worm rod cooperate for transmission.
[0009] Furthermore, a scale plate is embedded and installed at the top of the receiving seat, and the scale plate is horizontally embedded along the extension section of the adjustment cavity.
[0010] Furthermore, the conveying assembly includes a conveying shaft symmetrically rotatably arranged on a receiving seat, a conveying belt is installed around the conveying shaft, and a conveying motor for driving the conveying shaft to rotate is installed on the outer side of the receiving seat.
[0011] Furthermore, the cutting assembly includes an inverted U-shaped receiving rod fixed at the top of the receiving seat, a slideway is symmetrically opened on one side of the receiving rod, an adjusting rod is horizontally rotatably arranged in the slideway, a slider is mounted on the adjusting rod, the adjusting rod and the slider are threadedly engaged, a laser cutting head is installed at the bottom of the slider, and an adjusting motor for driving the adjusting rod to rotate is installed on the receiving rod.
[0012] Furthermore, clamping assemblies for auxiliary plate clamping are symmetrically installed on both sides of the receiving rod, and the clamping assemblies include a hydraulic rod installed on the receiving rod, and a clamping plate is fixed to the extended end of the hydraulic rod.
[0013] Furthermore, a receiving box for receiving the plate is installed at one end of the receiving seat, and a receiving cavity is opened on the receiving box, and a ball is installed in the receiving cavity.
[0014] Furthermore, a section of the receiving box is inclined, and a ball is rotatably embedded and installed at the inclined section of the receiving box. A plurality of the ball is provided, and the plurality of the ball are equidistantly arranged on the receiving box.
[0015] (3) Beneficial effects
[0016] Compared with the prior art, the beneficial effects of the utility model are:
[0017] The utility model uses a blocking component arranged at the top of the receiving seat, an embedded disk drives the worm to rotate, and the worm wheel and the worm are matched for transmission, so that the worm wheel rotates as a whole, and the lead screw is driven to rotate as a whole during the rotation of the worm wheel. The threaded cooperation between the sliding block and the lead screw causes the sliding block to move as a whole, and then the sliding block is moved to a specified position, so that the sliding block is adjusted to the specified position, and the stepping motor is started to make the blocking plate fall as a whole to block the top of the conveyor belt. Before work, the blocking plate can be pre-adjusted to the corresponding position according to the different cutting lengths of the plates, and the need for multiple manual measurements can be avoided as much as possible during subsequent cutting.
[0018] The utility model uses clamping components arranged on both side edges of the receiving rod to extend the hydraulic rod as a whole. During the extension of the hydraulic rod, the clamping plate is driven to move as a whole, thereby moving the clamping plate as a whole, and then making the clamping plate fit the outer edge of the plate. The plate can be auxiliary clamped before cutting to ensure that the plate will not move during the subsequent cutting process. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.
[0020] Figure 1 It is a schematic diagram of the structure of the utility model;
[0021] Figure 2 For this utility model Figure 1 A schematic diagram of the enlarged structure at A in the middle;
[0022] Figure 3 For this utility model Figure 1 A schematic diagram of the enlarged structure at B in the middle;
[0023] Figure 4 It is a structural schematic diagram of the receiving seat corresponding to the worm gear of the utility model.
[0024] The markings in the attached drawings are: 1. receiving seat; 2. base frame; 3. conveyor belt; 4. conveying motor; 5. cutting assembly; 6. receiving rod; 7. adjusting motor; 8. adjusting rod; 9. slider; 91. laser cutting head; 10. clamping assembly; 101. clamping plate; 102. hydraulic rod; 11. blocking assembly; 12. sliding block; 13. stepping motor; 14. blocking plate; 15. screw; 16. worm gear; 17. embedded disk; 171. worm; 18. scale plate; 19. receiving box; 20. ball bearing; 21. receiving plate. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0026] This specific embodiment is a cutting device for plate production and processing, such as Figure 1 As shown, the cutting device for plate production and processing includes a receiving seat 1, a base frame 2 is installed at the bottom of the receiving seat 1, a conveying assembly for conveying is installed on the receiving seat 1, the conveying assembly includes a conveying shaft symmetrically rotatably arranged on the receiving seat 1, a conveying belt 3 is installed around the conveying shaft, and a conveying motor 4 for driving the conveying shaft to rotate is installed on the outer side of the receiving seat 1. Through the set conveying assembly, the plate can be ensured to be stably conveyed during operation, and subsequent cutting is convenient.
[0027] A receiving box 19 for receiving a plate is installed at one end of the receiving seat 1. A receiving cavity is opened on the receiving box 19, and a receiving plate 21 is installed in the receiving cavity. A section of the receiving box 19 is inclined, and a ball 20 is rotatably embedded and installed at the inclined section of the receiving box 19. A plurality of balls 20 are provided, and the plurality of balls 20 are arranged at equal distances in the receiving box 19.
[0028] The receiving box 19 can be used to effectively assist in the storage of the cut plates during operation. The balls 20 can ensure that the plates can slide and fall stably when they reach the receiving box 19, thus avoiding the receiving box 19 from getting stuck at the corresponding position.
[0029] Reference Figure 1 and Figure 2 As shown, a cutting assembly 5 for auxiliary cutting is installed at the middle section of the receiving seat 1, and the cutting assembly 5 includes an inverted U-shaped receiving rod 6 fixed at the top of the receiving seat 1, and a slideway is symmetrically opened on one side of the receiving rod 6, and an adjusting rod 8 is horizontally rotatably arranged in the slideway. A slider 9 is sleeved and installed on the adjusting rod 8, and the adjusting rod 8 and the slider 9 are threadedly matched. A laser cutting head 91 is installed at the bottom of the slider 9, and an adjusting motor 7 for driving the adjusting rod 8 to rotate is installed on the receiving rod 6.
[0030] Through the provided cutting assembly 5, the adjusting motor 7 is started, and the adjusting motor 7 drives the adjusting rod 8 to rotate as a whole. The adjusting rod 8 and the slider 9 are threadedly matched, and the slider 9 moves as a whole. Then, the sheet is assisted in cutting by the laser cutting head 91. By replacing mechanical cutting with laser cutting, dust generated during sheet cutting can be reduced, thereby ensuring the overall cleanliness of the working environment.
[0031] The two sides of the receiving rod 6 are symmetrically equipped with clamping components 10 for auxiliary plate clamping. The clamping components 10 include a hydraulic rod 102 installed on the receiving rod 6. The extended end of the hydraulic rod 102 is fixed with a clamping plate 101. The hydraulic rod 102 is extended as a whole by the clamping components 10 arranged on the two side edges of the receiving rod 6. In the process of the extension of the hydraulic rod 102, the clamping plate 101 is driven to move as a whole, thereby moving the clamping plate 101 as a whole, and then the clamping plate 101 is attached to the outer edge of the plate. The plate can be auxiliary clamped before cutting to ensure that the plate will not move during the subsequent cutting process.
[0032] Reference Figure 1 , Figure 3 and Figure 4 As shown, an adjusting cavity is symmetrically provided on the top of the receiving seat 1, and a blocking component 11 for assisting in adjusting the length of the plate is installed in the adjusting cavity. The blocking component 11 includes a screw 15 rotatably arranged in the adjusting cavity, a sliding block 12 is sleeved and installed on the screw 15, and the sliding block 12 and the screw 15 are threadedly matched. A blocking plate 14 is rotatably arranged on the sliding block 12, and a stepping motor 13 for assisting in rotating the blocking plate 14 is installed on the side of the sliding block 12 away from the blocking plate 14. An embedded disk 17 is rotatably embedded at the top of the receiving seat 1, and a worm 171 is installed on one side of the embedded disk 17. A worm wheel 16 is fixed on one side of the screw 15 facing the embedded disk 17, and the worm wheel 16 and the worm 171 cooperate for transmission. A scale plate 18 is embedded and installed at the top of the receiving seat 1, and the scale plate 18 is horizontally embedded along the extension section of the adjusting cavity.
[0033] Through the blocking component 11 arranged at the top of the receiving seat 1, the embedded disk 17 drives the worm 171 to rotate, and the worm wheel 16 and the worm 171 cooperate with each other to make the worm wheel 16 rotate as a whole, and in the process of the rotation of the worm wheel 16, the lead screw 15 is driven to rotate as a whole, and the sliding block 12 and the lead screw 15 are threadedly matched, so that the sliding block 12 moves as a whole, and then moves the sliding block 12 to a specified position, so that the sliding block 12 is adjusted to the specified position, and the stepping motor 13 is started, so that the blocking plate 14 falls as a whole to block the top of the conveyor belt 3, and the blocking plate 14 can be pre-adjusted to the corresponding position according to the different cutting lengths of the plate before work, and the need for multiple manual measurements can be avoided as much as possible during subsequent cutting.
[0034] Working principle:
[0035] Before work, the embedded disk 17 is rotated, and the embedded disk 17 drives the worm 171 to rotate. The worm wheel 16 and the worm 171 cooperate with each other to transmit the transmission, so that the worm wheel 16 rotates as a whole. In the process of the rotation of the worm wheel 16, the lead screw 15 is driven to rotate as a whole. The sliding block 12 and the lead screw 15 are threadedly matched, so that the sliding block 12 moves as a whole, and then the sliding block 12 is moved to the specified position, so that the sliding block 12 is adjusted to the specified position, and the stepping motor 13 is started, so that the blocking plate 14 falls as a whole to block the top of the conveyor belt 3.
[0036] During operation, when the plate needs to be cut, the plate is first placed on the top of the conveyor belt 3, and the conveying motor 4 is started. The conveying motor 4 drives the conveying shaft to rotate, and the conveying motor 4 drives the conveying shaft to rotate as a whole. In the process of the conveying shaft rotating, the conveyor belt 3 is driven to rotate as a whole, thereby driving the belt to rotate as a whole, and the plate is driven to move as a whole in the process of the belt rotating.
[0037] When the plate reaches the cutting component 5, one end of the plate is assisted by the blocking plate 14. When the plate reaches the specified position, the hydraulic rod 102 is extended as a whole. During the extension of the hydraulic rod 102, the clamping plate 101 is driven to move as a whole, so that the clamping plate 101 moves as a whole, and then the clamping plate 101 is attached to the outer edge of the plate, thereby realizing auxiliary clamping of the plate. During cutting, the adjusting motor 7 is started, and the adjusting motor 7 drives the adjusting rod 8 to rotate as a whole. The adjusting rod 8 and the slider 9 are threaded together, and the slider 9 moves as a whole, and then the plate is assisted in cutting by the laser cutting head 91.
[0038] After cutting, the stepper motor 13 drives the blocking plate 14 to rotate as a whole, and the blocking plate 14 is vertically unfolded as a whole when it rotates. At this time, the conveying motor 4 is continued to be started, and the plate is further conveyed to the receiving box 19, and the cut plate is assisted to be received by the ball 20.
[0039] All technical features in this embodiment can be freely combined according to actual needs.
[0040] Finally, it should be noted that the above is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A cutting device for plate production and processing, comprising a receiving seat (1), a bottom frame (2) being installed at the bottom of the receiving seat (1), characterized in that: A conveying assembly for conveying is installed on the receiving seat (1), a cutting assembly (5) for assisting cutting is installed at the middle section of the receiving seat (1), and an adjustment cavity is symmetrically opened at the top of the receiving seat (1), and a blocking assembly (11) for assisting in adjusting the length of the plate is installed in the adjustment cavity; The blocking assembly (11) comprises a screw (15) rotatably arranged in the adjustment cavity, a sliding block (12) is sleeved and installed on the screw (15), the sliding block (12) and the screw (15) are threadedly matched, a blocking plate (14) is rotatably arranged on the sliding block (12), a stepping motor (13) for assisting the blocking plate (14) to rotate is installed on the side of the sliding block (12) away from the blocking plate (14), an embedding disk (17) is rotatably embedded and installed at the top of the receiving seat (1), a worm (171) is installed on one side of the embedding disk (17), a worm wheel (16) is fixed on one side of the screw (15) facing the embedding disk (17), and the worm wheel (16) and the worm (171) are matched for transmission.
2. A cutting device for plate production and processing according to claim 1, characterized in that: A scale plate (18) is embedded and installed at the top of the receiving seat (1), and the scale plate (18) is horizontally embedded along the extension section of the adjustment cavity.
3. A cutting device for plate production and processing according to claim 1, characterized in that: The conveying assembly comprises a conveying shaft symmetrically rotatably arranged on a receiving seat (1), a conveying belt (3) is installed around the conveying shaft, and a conveying motor (4) is installed on the outer side of the receiving seat (1) to drive the conveying shaft to rotate.
4. A cutting device for plate production and processing according to claim 1, characterized in that: The cutting assembly (5) comprises an inverted U-shaped receiving rod (6) fixed at the top of the receiving seat (1), a slideway is symmetrically provided on one side of the receiving rod (6), an adjusting rod (8) is horizontally rotatably arranged in the slideway, a slider (9) is sleeved and installed on the adjusting rod (8), the adjusting rod (8) and the slider (9) are threadedly matched, a laser cutting head (91) is installed at the bottom of the slider (9), and an adjusting motor (7) is installed on the receiving rod (6) to drive the adjusting rod (8) to rotate.
5. A cutting device for plate production and processing according to claim 4, characterized in that: A clamping assembly (10) for assisting plate clamping is symmetrically mounted on both sides of the receiving rod (6). The clamping assembly (10) comprises a hydraulic rod (102) mounted on the receiving rod (6), and a clamping plate (101) is fixed to the extended end of the hydraulic rod (102).
6. A cutting device for plate production and processing according to claim 1, characterized in that: A receiving box (19) for receiving a plate is installed at one end of the receiving seat (1), and a receiving cavity is provided on the receiving box (19), and a ball (20) is installed in the receiving cavity.
7. A cutting device for plate production and processing according to claim 6, characterized in that: A section of the receiving box (19) is inclined, and a ball (20) is rotatably embedded and installed at the inclined section of the receiving box (19). A plurality of the ball (20) are provided, and the plurality of the ball (20) are equidistantly arranged on the receiving box (19).