Efficient cutting equipment for laminated boards
By designing efficient cutting equipment for positioning, cutting and chip collection mechanisms for laminated wood boards, the problem of chip splashing and poor cutting stability is solved, automatic cutting and debris collection is achieved, and cutting stability and safety is improved.
Patent Information
- Application Number
- CN202422006153.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-19
AI Technical Summary
The existing electrical laminated wood board cutting devices have problems such as splashing wood chips, poor cutting stability and harm to the human body during the cutting process.
An efficient cutting device including a positioning mechanism, a cutting mechanism and a chip collecting mechanism is designed. The positioning mechanism is used for multi-directional positioning, the cutting mechanism is used for automatic cutting, and the chip collecting mechanism is used for debris collection, and adopts a semi-enclosed structure.
The multi-directional positioning and automatic cutting of laminated wood boards are realized, cutting stability and processing accuracy are improved, debris splashing is reduced, and work-related injury risks are reduced.
Smart Images

Figure CN223099480U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laminated wood cutting equipment, in particular to an efficient cutting equipment for laminated wood. Background Art
[0002] In the prior art, electrical laminated wood belongs to special plywood, which is a new type of insulating material produced by the intersection of the wood industry and the insulating material industry. Now, a relatively complete product series of electrical laminated wood has been formed. With the development of the electrical industry, due to the advantages of high insulation, high strength, good oil absorption rate, and similar dielectric constant to transformer oil of electrical laminated wood, it is now widely used in oil-immersed transformers from 10KV to 550KV in the transformer industry. When producing electrical laminated wood, in order to ensure that the sizes and specifications of electrical laminated wood are the same, partial cutting is often carried out. However, in the existing electrical laminated wood cutting devices, during the cutting process, the wood chips generated by the electrical laminated wood will fly all over the place, which is not convenient for later cleaning and will cause certain harm to the human body.
[0003] The Chinese utility model patent with the application number 202223608465.4 discloses a wood cutting device with a dust collection structure, including a U-shaped plate, which is installed on the dust collection device through a sliding structure. The dust collection device includes a box body, a wood chip inlet, a wood chip outlet, a cover plate, and a handhold. The wood chip inlet is opened on the box body, the wood chip outlet is opened on the side wall of the box body, the cover plate is installed in the wood chip outlet, and the handhold is opened on the cover plate. The sliding structure includes two sliders and two chutes. The two sliders are respectively installed on both sides of the U-shaped plate, and the two chutes are respectively opened on both sides of the box body. Each slider is slidably connected in a chute. A cutting member is installed on the U-shaped plate, and an electrical laminated wood is fixed on the box body through a fixing member. However, this wood cutting device with a dust collection structure automatically cuts the laminated wood in a fixed state on one side through a hoisting cutting structure, and its cutting stability is poor. During the cutting process, the laminated wood may shift, affecting the cutting path and causing product scrapping. It uses an open structure to perform cutting operations on the wood. During the cutting process, the generated debris will escape, which is not convenient for later cleaning operations and will cause certain harm to the human body. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an efficient cutting equipment for laminated wood.
[0005] To achieve the above purpose, the technical solution proposed by the utility model is:
[0006] An efficient cutting device for laminated wood boards, including a workbench, the workbench is erected on the ground, and further includes a positioning mechanism for multi-directionally positioning the laminated wood boards, a cutting mechanism for automatically cutting the laminated wood boards, and a chip collection mechanism for collecting debris. The positioning mechanism is arranged at the upper end of the workbench, the cutting mechanism is configured inside the upper part of the workbench, and the chip collection mechanism is assembled corresponding to the cutting mechanism at the outer side of the upper end of the workbench.
[0007] The positioning mechanism includes positioning guide rails, adjusting baffles, and a material pressing component. There are two groups of the positioning guide rails, and the two groups of positioning guide rails are symmetrically arranged on both sides of the upper end of the workbench and fixedly connected to the workbench. The adjusting baffle is arranged between the two groups of positioning guide rails, and both ends of it are slidably connected to the two groups of positioning guide rails respectively. A locking screw is provided at the connection between the adjusting baffle and the positioning guide rail. The material pressing component is arranged at one end of the two groups of positioning guide rails and is horizontally arranged with the adjusting baffle.
[0008] The material pressing component includes material pressing cylinders, a material pressing cross beam, and material pressing positioning blocks. There are two groups of the material pressing cylinders, and the two groups of material pressing cylinders are symmetrically arranged at the upper end of the workbench and fixedly connected to the workbench. The output ends of the two groups of material pressing cylinders are arranged upward. The material pressing cross beam is arranged at the output ends of the two groups of material pressing cylinders, and both ends of it are fixedly connected to the output ends of the two groups of material pressing cylinders respectively. The material pressing positioning blocks are arranged at the bottom of the material pressing cross beam and fixedly connected to the material pressing cross beam.
[0009] The cutting mechanism includes a cutting base, a cutting motor, a cutting knife, and a transverse movement component. The cutting base is arranged inside the lower part of the workbench and is slidably connected to the workbench. The cutting motor is horizontally arranged at the upper end of the cutting base. The cutting knife is arranged at the output end of the cutting motor and fixedly connected to the output end of the cutting motor. A knife avoidance groove corresponding to the cutting knife is provided at the upper end of the workbench. A part of the cutting knife protrudes above the upper surface of the workbench through the knife avoidance groove. The transverse movement component is arranged inside the lower part of the workbench and is located at the bottom of the cutting base. The cutting base is slidably connected to the workbench through the transverse movement component.
[0010] It further includes a height adjustment cylinder and a protective knife cover. The height adjustment cylinder is arranged inside the lower part of the cutting base and fixedly connected to the cutting base. The height adjustment cylinder is vertically arranged, and its output end penetrates through the cutting base. The output end of the height adjustment cylinder is fixedly connected to the cutting motor. The protective knife cover is arranged on one side of the upper part of the cutting base corresponding to the cutting knife and fixedly connected to the cutting base. The protective knife cover covers the outer side of the lower part of the cutting knife.
[0011] The transverse movement component includes a transverse movement guide rail, a transverse movement slider, a transverse movement motor, and a transverse movement belt. There are two groups of the transverse movement guide rails, and the two groups of the transverse movement guide rails are arranged side by side at intervals inside the lower part of the workbench and fixedly connected to the workbench. There are two groups of the transverse movement sliders, and each group of the transverse movement sliders consists of two sliders arranged side by side at intervals. The two groups of the transverse movement sliders are respectively arranged at the upper ends of the two groups of the transverse movement guide rails and are slidably connected to the corresponding transverse movement guide rails. The cutting base is arranged at the upper ends of the two groups of the transverse movement sliders and is fixedly connected to the transverse movement sliders. The transverse movement motor is arranged inside the lower part of the workbench and is fixedly connected to the workbench. The transverse movement belt is arranged between the two groups of the transverse movement guide rails, and its end is fixedly connected to the cutting base through a fixing block. The transverse movement belt is drivingly connected to the transverse movement motor through a transmission belt pulley and a transmission shaft.
[0012] The chip collection mechanism includes a chip collection cover, a dust collector, and a mounting component. The chip collection cover is arranged at the upper end of the workbench and covers the outside of the positioning mechanism. The lower part of the chip collection cover is provided with a convex edge structure, and one side of it is arranged as an open structure to form a semi-open chip collection structure. The dust collector is arranged at the upper end of the chip collection cover and is fixedly connected to the chip collection cover. The dust suction end of the dust collector penetrates through the chip collection cover and is communicated with the inside of the chip collection cover. There are two groups of the mounting components, and the two groups of the mounting components are symmetrically arranged on both sides of the lower part of the chip collection cover.
[0013] It further includes dust collection guide plates. There are two groups of the dust collection guide plates, and the two groups of the dust collection guide plates are arranged relatively obliquely inside the upper part of the chip collection cover and are fixedly connected to the chip collection cover.
[0014] The mounting component includes a mounting bracket, a mounting screw, and a mounting pressing block. The mounting bracket is arranged on one side of the upper end of the workbench and is fixedly connected to the workbench. The mounting screw is arranged at the upper part of the mounting bracket and penetrates through the mounting bracket and is threadedly connected to the mounting bracket. The mounting pressing block is arranged at the lower end of the mounting screw and is rotationally connected to the mounting screw. The mounting pressing block abuts against the convex edge structure at the bottom of the chip collection cover.
[0015] It further includes an electric control unit. The electric control unit is arranged on one side of the upper end of the workbench and is fixedly connected to the workbench. The electric control unit is electrically connected to the pressing cylinder, the cutting motor, the height adjustment cylinder, the transverse movement motor, and the dust collector.
[0016] The beneficial effects of the present utility model are:
[0017] There is a positioning mechanism that cooperates with the cutting mechanism, which can perform multi-directional positioning on the laminated wood board during the cutting process, avoid the offset of the cutting path caused by the offset of the laminated wood board, improve the cutting stability to ensure the processing accuracy of the product, achieve automatic cutting without manual control, with high cutting efficiency. There is also a chip collection mechanism, which uses a semi-closed structure to block and collect the chips generated during cutting, facilitating the subsequent cleaning operation, avoiding harm to the human body, and reducing the probability of work-related injuries. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 FIG. 1 is a schematic diagram of the overall structure of the present utility model;
[0019] Figure 2 FIG. 2 is a schematic diagram of the cooperation between the positioning mechanism of the present utility model and the workbench;
[0020] Figure 3 FIG. 3 is a schematic diagram of the cooperation between the pressing and positioning block and the pressing cross beam of the present utility model;
[0021] Figure 4 FIG. 4 is a schematic diagram of the structure of the cutting mechanism of the present utility model;
[0022] Figure 5 FIG. 5 is a schematic diagram of the cooperation between the transverse movement assembly and the workbench of the present utility model;
[0023] Figure 6 FIG. 6 is a schematic diagram of the structure of the chip collection mechanism of the present utility model;
[0024] Figure 7 FIG. 7 is an electrical connection diagram of the present utility model.
[0025] In the figures: 1, workbench; 2, positioning guide rail; 3, adjusting baffle; 4, pressing cylinder; 5, pressing cross beam; 6, pressing and positioning block; 7, cutting base; 8, cutting motor; 9, cutting tool; 10, height-adjusting cylinder; 11, protective knife cover; 12, transverse movement guide rail; 13, transverse movement slider; 14, transverse movement motor; 15, transverse movement belt; 16, chip collection cover; 17, dust collector; 18, dust collection guide plate; 19, mounting bracket; 20, mounting screw; 21, mounting pressing block; 22, electronic control unit. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The following further describes the present utility model in detail with reference to the accompanying drawings.
[0027] An efficient cutting device for laminated wood boards, including a workbench 1, the workbench 1 is erected on the ground, and further includes a positioning mechanism for multi-directionally positioning the laminated wood boards, a cutting mechanism for automatically cutting the laminated wood boards, and a chip collection mechanism for collecting debris. The positioning mechanism is arranged at the upper end of the workbench 1, the cutting mechanism is configured inside the upper part of the workbench 1, and the chip collection mechanism is assembled corresponding to the cutting mechanism at the outer side of the upper end of the workbench 1. The overall structural schematic diagram of the present utility model is as shown in Figure 1 shown.
[0028] The positioning mechanism includes positioning guide rails 2, adjusting baffles 3 and a material pressing component. There are two groups of positioning guide rails 2, and the two groups of positioning guide rails 2 are symmetrically arranged on both sides of the upper end of the workbench 1 and fixedly connected to the workbench 1. The adjusting baffle 3 is arranged between the two groups of positioning guide rails 2, and its two ends are respectively slidably connected to the two groups of positioning guide rails 2. A locking screw is provided at the connection between the adjusting baffle 3 and the positioning guide rail 2. The material pressing component is arranged at one end of the two groups of positioning guide rails 2 and is horizontally arranged with the adjusting baffle 3. The positioning mechanism cooperates with the positioning guide rails 2, the adjusting baffle 3 and the material pressing component to multi-directionally position the laminated wood boards. Among them, the two groups of positioning guide rails 2 are used to jointly limit the two sides of the laminated wood board and provide sliding support for the adjusting baffle 3. The adjusting baffle 3 is used as an adjustable baffle structure to block and limit one side of the laminated wood board. The position of the adjusting baffle 3 can be adjusted to limit laminated wood boards of different specifications, so as to meet the cutting and limiting requirements of the laminated wood boards. The material pressing component is used to press and position the laminated wood board during the cutting process. The cooperation schematic diagram of the positioning mechanism of the present utility model and the workbench 1 is as shown in Figure 2 shown.
[0029] The material pressing component includes a material pressing cylinder 4, a material pressing cross beam 5 and a material pressing positioning block 6. There are two groups of material pressing cylinders 4, and the two groups of material pressing cylinders 4 are symmetrically arranged at the upper end of the workbench 1 and fixedly connected to the workbench 1. The output ends of the two groups of material pressing cylinders 4 face upward. The material pressing cross beam 5 is arranged at the output ends of the two groups of material pressing cylinders 4, and its two ends are respectively fixedly connected to the output ends of the two groups of material pressing cylinders 4. The material pressing positioning block 6 is arranged at the bottom of the material pressing cross beam 5 and fixedly connected to the material pressing cross beam 5. The material pressing component cooperates with the material pressing cylinder 4, the material pressing cross beam 5 and the material pressing positioning block 6 to press and position the laminated wood board during the cutting process. Among them, the material pressing cylinder 4 is used to provide installation support for the material pressing cross beam 5 and drive the material pressing cross beam 5 to perform a lifting action through the telescopic movement of its output end. The material pressing cross beam 5 is used to provide installation support for the material pressing positioning block 6 and perform a lifting action under the action of the material pressing cylinder 4 to drive the material pressing positioning block 6 to lift. The material pressing positioning block 6 is used to perform a lifting action driven by the material pressing cross beam 5 to press and position the laminated wood board during the cutting process. The cooperation schematic diagram of the material pressing positioning block 6 and the material pressing cross beam 5 of the present utility model is as shown in Figure 3 shown.
[0030] The cutting mechanism includes a cutting base 7, a cutting motor 8, a cutting knife 9, and a transverse movement assembly. The cutting base 7 is arranged inside the lower part of the workbench 1 and is slidably connected to the workbench 1. The cutting motor 8 is horizontally arranged at the upper end of the cutting base 7. The cutting knife 9 is arranged at the output end of the cutting motor 8 and is fixedly connected to the output end of the cutting motor 8. A relief knife groove is provided on the upper end of the workbench 1 corresponding to the cutting knife 9. A part of the cutting knife 9 protrudes from the upper surface of the workbench 1 through the relief knife groove. The transverse movement assembly is arranged inside the lower part of the workbench 1 and is located at the bottom of the cutting base 7. The cutting base 7 is slidably connected to the workbench 1 through the transverse movement assembly. The cutting mechanism cooperates with the cutting base 7, the cutting motor 8, the cutting knife 9, and the transverse movement assembly to perform an automatic cutting operation on the laminated wood board. Among them, the cutting base 7 is used to provide installation support for the cutting motor 8 and drive the cutting motor 8 to move horizontally under the action of the transverse movement assembly. The cutting motor 8 is used to provide installation support for the cutting knife 9 and drive the cutting knife 9 to rotate, so as to perform a cutting operation on the laminated wood board. The cutting knife 9 is used to rotate under the action of the cutting motor 8 to perform a cutting operation on the laminated wood board, and move horizontally under the action of the transverse movement assembly, so as to perform an automatic cutting operation on the laminated wood board. The transverse movement assembly is used to provide sliding support for the cutting base 7. The structural schematic diagram of the cutting mechanism of the present utility model is as Figure 4 shown.
[0031] It further includes a height-adjusting cylinder 10 and a protective knife cover 11. The height-adjusting cylinder 10 is arranged inside the lower part of the cutting base 7 and is fixedly connected to the cutting base 7. The height-adjusting cylinder 10 is vertically arranged and its output end penetrates through the cutting base 7. The output end of the height-adjusting cylinder 10 is fixedly connected to the cutting motor 8. The protective knife cover 11 is arranged on one side of the upper part of the cutting base 7 corresponding to the cutting knife 9 and is fixedly connected to the cutting base 7. The protective knife cover 11 covers the outside of the lower part of the cutting knife 9. Among them, the height-adjusting cylinder 10 is used to provide installation support for the cutting motor 8 and adjust the height of the cutting motor 8 through the telescopic movement of its output end. The protective knife cover 11 is used to protect the cutting knife 9 to prevent the cutting knife 9 from having a rigid collision with other structures and being damaged, and the protective knife cover 11 can prevent the cutting knife 9 from causing accidental injury to the human body.
[0032] The transverse movement assembly includes a transverse movement guide rail 12, a transverse movement slider 13, a transverse movement motor 14 and a transverse movement belt 15. The transverse movement guide rail 12 is provided with two groups, and the two groups of transverse movement guide rails 12 are arranged side by side and spaced on the lower inner side of the workbench 1 and are fixedly connected to the workbench 1. The transverse movement slider 13 is provided with two groups, and each group of transverse movement sliders 13 is composed of two sliders arranged side by side and spaced. The two groups of transverse movement sliders 13 are respectively arranged at the upper ends of the two groups of transverse movement guide rails 12 and are slidably connected to the corresponding transverse movement guide rails 12. The cutting base 7 is arranged at the upper ends of the two groups of transverse movement sliders 13 and are fixedly connected to the transverse movement sliders 13. The transverse movement motor 14 is arranged on the lower inner side of the workbench 1 and is fixedly connected to the workbench 1. The transverse movement belt 15 is arranged between the two groups of transverse movement guide rails 12 and its end is fixedly connected to the cutting base 7 through a fixed block. The transverse belt 15 is connected to the transverse motor 14 through a transmission pulley and a transmission shaft. The transverse assembly cooperates with the transverse guide rail 12, the transverse slider 13, the transverse motor 14 and the transverse belt 15 to provide sliding support for the cutting base 7 and can drive the cutting base 7 to move horizontally, wherein the transverse guide rail 12 is used to provide sliding support for the transverse slider 13, and the transverse slider 13 is used to provide installation support for the cutting base 7 to slide the cutting base 7 with the transverse guide rail 12. The transverse motor 14 is used to drive the cutting base 7 to slide along the transverse guide rail 12 through the transverse belt 15. The transverse belt 15 is used to drive the cutting base 7 to slide along the transverse guide rail 12 under the action of the transverse motor 14. The schematic diagram of the cooperation between the transverse assembly of the utility model and the workbench 1 is shown in Figure 5 shown.
[0033] The chip collection mechanism includes a chip collection cover 16, a dust collector 17 and a mounting assembly. The chip collection cover 16 is arranged at the upper end of the workbench 1 and the cover is arranged on the outside of the positioning mechanism. The lower part of the chip collection cover 16 is provided with a convex edge structure and one side thereof is provided with an opening structure to form a semi-open chip collection structure. The dust collector 17 is arranged at the upper end of the chip collection cover 16 and is fixedly connected to the chip collection cover 16. The dust suction end of the dust collector 17 passes through the chip collection cover 16 and is connected to the inside of the chip collection cover 16. The mounting assembly is provided with two groups, and the two groups of mounting assemblies are symmetrically arranged on both sides of the lower part of the chip collection cover 16. The chip collection mechanism is through The chip cover 16, the dust collector 17 and the mounting assembly cooperate to collect and clean the debris generated during the cutting process, wherein the chip cover 16 is used to form a semi-open chip collection structure to shield the debris to prevent the debris from splashing, and the chip cover 16 can provide mounting support for the dust collector 17, and the dust collector 17 is used to collect and clean the debris generated during the cutting process. The mounting assembly is used to install and position the chip cover 16, and the chip cover 16 and the workbench 1 can be quickly disassembled and assembled by the mounting assembly. The schematic diagram of the chip collection mechanism structure of the utility model is shown in FIG. Figure 6 shown.
[0034] It further includes a dust collection guide plate 18. There are two groups of dust collection guide plates 18, which are arranged obliquely relative to each other on the inner side of the upper part of the chip collection cover 16 and fixedly connected to the chip collection cover 16. The dust collection guide plate 18 is used as a guiding structure inside the chip collection cover 16 to guide the dust collection of debris during the cutting process.
[0035] The installation component includes an installation bracket 19, an installation screw 20, and an installation pressing block 21. The installation bracket 19 is arranged on one side of the upper end of the workbench 1 and fixedly connected to the workbench 1. The installation screw 20 is arranged on the upper part of the installation bracket 19 and passes through the installation bracket 19 and is threadedly connected to the installation bracket 19. The installation pressing block 21 is arranged at the lower end of the installation screw 20 and rotatably connected to the installation screw 20. The installation pressing block 21 abuts against the convex edge structure at the bottom of the chip collection cover 16. The installation component cooperates through the installation bracket 19, the installation screw 20, and the installation pressing block 21 to perform quick disassembly and assembly operations on the chip collection cover 16 and the workbench 1. Among them, the installation bracket 19 is used to provide installation support for the installation screw 20. The installation screw 20 is used to provide installation support for the installation pressing block 21 and drive the installation pressing block 21 to perform lifting actions through the relative rotation between it and the installation bracket 19. The installation pressing block 21 is used to perform lifting actions under the action of the installation screw 20 to press or disengage from the convex edge structure at the bottom of the chip collection cover 16, so as to realize the quick disassembly and assembly operation of the chip collection cover 16 and the workbench 1.
[0036] It further includes an electronic control unit 22. The electronic control unit 22 is arranged on one side of the upper end of the workbench 1 and fixedly connected to the workbench 1. The electronic control unit 22 is electrically connected to the pressing cylinder 4, the cutting motor 8, the height adjustment cylinder 10, the transverse movement motor 14, and the dust collector 17. The electrical connection diagram of the present utility model is as Figure 7 shown.
[0037] Working principle:
[0038] When it is necessary to perform cutting operations on laminated wood boards, install the chip collection cover 16 on the upper end of the workbench 1 through the installation component. Adjust the position of the adjusting baffle 3 according to the specifications of the laminated wood board and lock the position of the adjusting baffle 3 through the locking screw. Then place the laminated wood board between the two positioning guide rails 2 and make one side of it abut against the adjusting baffle 3. Then start the equipment. The pressing component is controlled by the electronic control unit 22 to press and position the laminated wood board. The transverse movement component drives the cutting motor 8 and the cutting tool 9 to move horizontally through the cutting base 7. At the same time, the cutting motor 8 drives the cutting tool 9 to rotate to automatically cut the laminated wood board. During the cutting process, the dust collector 17 collects the debris generated by cutting to prevent the debris from escaping, and the cutting operation of the laminated wood board can be realized. The height of the cutting motor 8 and the cutting tool 9 can be adjusted by the height adjustment cylinder 10.
[0039] The beneficial effects of the utility model are as follows: there is a positioning mechanism cooperating with the cutting mechanism, which can perform multi-directional positioning on the laminated wood board during the cutting process, avoid the deviation of the cutting path caused by the deviation of the laminated wood board, improve the cutting stability to ensure the processing accuracy of the product, realize automatic cutting without manual control, and has a high cutting efficiency. There is a chip collection mechanism, which adopts a semi-closed structure to block and collect the chips generated by cutting, facilitating the subsequent cleaning operation, avoiding harm to the human body, and reducing the probability of work-related injuries.
[0040] The above has described in detail an embodiment of the present utility model, but the content is only the preferred embodiment of the present utility model and cannot be considered as limiting the implementation scope of the present utility model. All equal changes and improvements made according to the scope of the application of the present utility model should still fall within the scope covered by the patent of the present utility model.
Claims
1. An efficient cutting device for laminated wooden boards, comprising a workbench (1), and the workbench (1) is erected on the ground, characterized in that, It further includes a positioning mechanism for multi-directional positioning of the laminated wood board, a cutting mechanism for automatically cutting the laminated wood board, and a chip collection mechanism for collecting chips. The positioning mechanism is arranged at the upper end of the workbench (1), the cutting mechanism is configured inside the upper part of the workbench (1), and the chip collection mechanism is assembled corresponding to the cutting mechanism at the outer side of the upper end of the workbench (1).
2. The high-efficiency cutting device for laminated wooden boards according to claim 1, characterized in that, The positioning mechanism includes positioning guide rails (2), adjusting baffles (3), and a material pressing assembly. There are two groups of the positioning guide rails (2), and the two groups of the positioning guide rails (2) are symmetrically arranged on both sides of the upper end of the workbench (1) and fixedly connected to the workbench (1). The adjusting baffle (3) is arranged between the two groups of the positioning guide rails (2), and its two ends are respectively slidably connected to the two groups of the positioning guide rails (2). A locking screw is provided at the connection between the adjusting baffle (3) and the positioning guide rail (2). The material pressing assembly is arranged at one end of the two groups of the positioning guide rails (2) and is horizontally arranged with the adjusting baffle (3).
3. The high-efficiency cutting device for laminated wood boards according to claim 2, characterized in that, The material pressing assembly includes material pressing cylinders (4), a material pressing cross beam (5), and material pressing positioning blocks (6). There are two groups of the material pressing cylinders (4), and the two groups of the material pressing cylinders (4) are symmetrically arranged at the upper end of the workbench (1) and fixedly connected to the workbench (1). The output ends of the two groups of the material pressing cylinders (4) are arranged upward. The material pressing cross beam (5) is arranged at the output ends of the two groups of the material pressing cylinders (4), and its two ends are respectively fixedly connected to the output ends of the two groups of the material pressing cylinders (4). The material pressing positioning blocks (6) are arranged at the bottom of the material pressing cross beam (5) and fixedly connected to the material pressing cross beam (5).
4. The high-efficiency cutting device for laminated wood boards according to claim 3, characterized in that, The cutting mechanism includes a cutting base (7), a cutting motor (8), a cutting knife (9), and a transverse movement assembly. The cutting base (7) is arranged inside the lower part of the workbench (1) and is slidably connected to the workbench (1). The cutting motor (8) is horizontally arranged at the upper end of the cutting base (7). The cutting knife (9) is arranged at the output end of the cutting motor (8) and fixedly connected to the output end of the cutting motor (8). A knife avoidance groove corresponding to the cutting knife (9) is provided at the upper end of the workbench (1). A part of the cutting knife (9) protrudes from the upper surface of the workbench (1) through the knife avoidance groove. The transverse movement assembly is arranged inside the lower part of the workbench (1) and is located at the bottom of the cutting base (7). The cutting base (7) is slidably connected to the workbench (1) through the transverse movement assembly.
5. The high-efficiency cutting device for laminated wood boards according to claim 4, characterized in that, It further includes a height-adjusting cylinder (10) and a protective knife cover (11). The height-adjusting cylinder (10) is arranged inside the lower part of the cutting base (7) and fixedly connected to the cutting base (7). The height-adjusting cylinder (10) is vertically arranged and its output end penetrates through the cutting base (7). The output end of the height-adjusting cylinder (10) is fixedly connected to the cutting motor (8). The protective knife cover (11) is arranged corresponding to the cutting knife (9) on one side of the upper part of the cutting base (7) and fixedly connected to the cutting base (7). The protective knife cover (11) covers the outer side of the lower part of the cutting knife (9).
6. The high-efficiency cutting device for laminated wooden boards according to claim 5, wherein, The transverse movement assembly includes a transverse movement guide rail (12), a transverse movement slider (13), a transverse movement motor (14) and a transverse movement belt (15). There are two groups of the transverse movement guide rails (12). The two groups of the transverse movement guide rails (12) are arranged side by side and spaced inside the lower part of the workbench (1) and fixedly connected to the workbench (1). There are two groups of the transverse movement sliders (13). Each group of the transverse movement sliders (13) consists of two sliders arranged side by side and spaced. The two groups of the transverse movement sliders (13) are respectively arranged at the upper ends of the two groups of the transverse movement guide rails (12) and slidably connected to the corresponding transverse movement guide rails (12). The cutting base (7) is arranged at the upper ends of the two groups of the transverse movement sliders (13) and fixedly connected to the transverse movement sliders (13). The transverse movement motor (14) is arranged inside the lower part of the workbench (1) and fixedly connected to the workbench (1). The transverse movement belt (15) is arranged between the two groups of the transverse movement guide rails (12) and its end is fixedly connected to the cutting base (7) through a fixing block. The transverse movement belt (15) is in transmission connection with the transverse movement motor (14) through a transmission belt pulley and a transmission shaft.
7. An efficient cutting device for laminated wood boards according to claim 6, characterized in that, The chip collection mechanism includes a chip collection cover (16), a dust collector (17) and a mounting assembly. The chip collection cover (16) is arranged at the upper end of the workbench (1) and covers the outside of the positioning mechanism. The lower part of the chip collection cover (16) is provided with a convex edge structure and one side of it is arranged as an open structure to form a semi-open chip collection structure. The dust collector (17) is arranged at the upper end of the chip collection cover (16) and fixedly connected to the chip collection cover (16). The dust suction end of the dust collector (17) penetrates through the chip collection cover (16) and is communicated with the inside of the chip collection cover (16). There are two groups of the mounting assemblies. The two groups of the mounting assemblies are symmetrically arranged on both sides of the lower part of the chip collection cover (16).
8. An efficient cutting device for laminated wood boards according to claim 7, characterized in that, It further includes two groups of dust collection guide plates (18). The two groups of the dust collection guide plates (18) are arranged relatively obliquely inside the upper part of the chip collection cover (16) and fixedly connected to the chip collection cover (16).
9. The efficient cutting device for laminated wood boards according to claim 8, characterized in that, The installation components include an installation bracket (19), an installation screw (20), and an installation pressing block (21). The installation bracket (19) is arranged on one side of the upper end of the workbench (1) and is fixedly connected to the workbench (1). The installation screw (20) is arranged on the upper part of the installation bracket (19) and penetrates through the installation bracket (19) and is threadedly connected to the installation bracket (19). The installation pressing block (21) is arranged at the lower end of the installation screw (20) and is rotatably connected to the installation screw (20). The installation pressing block (21) abuts against the convex edge structure at the bottom of the chip collecting cover (16).
10. An efficient cutting device for laminated wood boards according to claim 9, characterized in that, It further includes an electric control unit (22). The electric control unit (22) is arranged on one side of the upper end of the workbench (1) and is fixedly connected to the workbench (1). The electric control unit (22) is electrically connected to the material pressing cylinder (4), the cutting motor (8), the height adjustment cylinder (10), the transverse movement motor (14), and the dust collector (17).
Citation Information
Patent Citations
Wood board cutting device with dust collection structure
CN219426492U