Wet board slitting device for high-density fiberboard
By designing a cutting mechanism driven by a guide rail, auxiliary slide rail and a cylinder system, combined with a drainage structure, the problem of wet fiberboard being unable to be dried as a whole is solved, stable slitting and waste liquid treatment are achieved, and the processing efficiency and safety of wet fiberboard are improved.
Patent Information
- Application Number
- CN202422737945.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-11
AI Technical Summary
In the prior art, the wet fiberboard has a large area and cannot be placed in an oven for drying as a whole. Cutting equipment is required to facilitate drying. However, the existing equipment cannot ensure stable cutting and cannot effectively handle waste liquid during wet board cutting.
A high-density fiberboard wet board slitting device is designed. The guide rail, auxiliary slide rail and cylinder system are used to drive the cutting mechanism. Combined with the drainage structure, the stable slitting of fiberboard and waste liquid discharge are achieved.
It achieves stable slitting of wet fiberboard, avoids cutting damage, and effectively removes waste liquid during the cutting process, ensuring cleanliness and efficient operation of the cutting area.
Smart Images

Figure CN223369598U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of high-density fiberboards, in particular to a wet board cutting device for high-density fiberboards. Background Art
[0002] The fiberboard used in shoe midsoles is a material used to make shoe midsoles to provide support for shoes. It is usually a hard board pressed from wood fiber or paper fiber. It has the characteristics of being easy to cut, non-irritating to the skin, free of chemicals harmful to the human body, and non-fading.
[0003] The wet board process is required in the fiberboard production process. The wet board of fiberboard refers to the semi-finished product state that has not been completely dried after the molding and pressing processes in the fiberboard production process. At this stage, the fiberboard still contains a high moisture content.
[0004] Moisture content: The moisture content of wet board is usually high, which depends on the specific production process and material type. The high moisture content makes the fiberboard have a certain flexibility and plasticity, which is convenient for subsequent processing and shaping.
[0005] At present, when drying fiberboard, due to the large area of the wet fiberboard, most ovens cannot put the entire board into the drying oven for overall drying. Therefore, the wet fiberboard needs to be cut into multiple pieces to facilitate placement in the oven and drying. Therefore, it is necessary to design a device for cutting the wet fiberboard so that the fiberboard can be cut stably when cutting. At the same time, the water left on the wet fiberboard can also be discharged. Utility Model Content
[0006] The purpose of the utility model is to solve the above-mentioned shortcomings in the prior art and to propose a wet board slitting device for high-density fiberboard.
[0007] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0008] A high-density fiberboard wet board slitting device is designed, comprising a base, an upper end of the base is provided with a built-in groove, an operating table is fixedly installed in the middle position of the built-in groove, and two sides of the upper end of the operating table are respectively provided with parallel first guide rail auxiliary slides, and a first guide rail auxiliary slide is slidably provided on the first guide rail auxiliary slide;
[0009] A side plate is fixed to the upper end of the first guide rail sub-slide, a support plate is fixed between the two side plates, a first cylinder is slidably provided on the support plate, and the outer wall surface of the first cylinder is fixed to the surface of the support plate through a bracket, and a first piston rod for extension and retraction is provided inside the first cylinder;
[0010] A connecting plate is fixed to the end of the first piston rod, the lower end of the connecting plate is equipped with a second guide rail auxiliary slide, and a second guide rail auxiliary slide is slidably provided on the second guide rail auxiliary slide, and a cutting mechanism is installed at the lower end of the second guide rail auxiliary slide.
[0011] In detail, the cutting mechanism includes a motor, a rotating shaft, a shaft seat and a cutting disk. The outer wall surface of the motor and the outer wall surface of the shaft seat are fixedly assembled with the surface of the second guide rail sub-slide through a bracket. The internal rotation of the motor is provided with a rotating shaft for driving, and the other end of the rotating shaft is inserted and docked with the shaft seat, and the surface of the rotating shaft is fixedly sleeved with a cutting disk.
[0012] In detail, a plate seat is fixed to the upper end of the operating table, and a cutting groove is opened on the end surface of the plate seat. The width of the cutting groove is 1.1 times the thickness of the cutting disk.
[0013] In detail, a second cylinder is slidably passed through both sides of the operating table, and the outer wall surface of the second cylinder is fixed to the outer wall surface of the operating table through a bracket.
[0014] In detail, a second piston rod for extension and retraction is provided inside the second cylinder, and a clamping plate is fixed to the other end of the second piston rod. The clamping plates are arranged in parallel on both sides of the operating table.
[0015] In detail, strip-shaped drainage holes are provided on both sides of the bottom of the built-in trough, and ramps for guiding drainage are fixed on both sides of the side walls of the operating table and the inner walls of the built-in trough, and the ramps are arranged perpendicular to the drainage holes.
[0016] In detail, drainage boxes are fixed on both sides of the lower end of the base, the port position of the drainage box covers the lower end opening position of the drainage hole, the inner bottom end of the drainage box is an inclined structure, and the lower end of the slope is provided with a waste discharge interface fixed through the drainage box.
[0017] The design scheme proposed by the utility model has the following beneficial effects during application:
[0018] 1. The wet fiberboard can be placed on the board seat on the operating table. The cutting disc is driven by the motor to rotate and the wet fiberboard can be cut. The cutting groove can be deepened in conjunction with the cutting disc to avoid damaging the board seat. The cutting disc can be moved forward and backward by sliding the first guide rail sub-slide on the first guide rail sub-slide. The cutting disc can be moved left and right by sliding the second guide rail sub-slide on the second guide rail sub-slide. The upper and lower positions of the cutting disc can be adjusted by extending and retracting the first piston rod of the first cylinder to meet the slitting requirements of the wet fiberboard.
[0019] 2. The four sides of the operating table are sloped, so the water left by the wet plate can be sent into the built-in groove, and the waste liquid can be transported to the drainage holes on both sides through the guidance of the ramp, and fall into the drainage box, and finally discharged through the waste discharge interface to ensure that there is no waste liquid accumulation in the cutting area. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0021] Figure 2 This is an enlarged schematic diagram of point a of the present utility model;
[0022] Figure 3 This is an enlarged schematic diagram of point b of the present utility model;
[0023] Figure 4 This is a cross-sectional schematic diagram of the position of the drainage hole and drainage box of the utility model.
[0024] In the figure: 10, base; 11, built-in groove; 12, operating table; 13, first guide rail auxiliary slide; 14, first guide rail auxiliary slide; 15, side panel; 16, first cylinder; 17, support plate; 18, connecting plate; 19, second guide rail auxiliary slide; 110, second guide rail auxiliary slide; 20, motor; 21, cutting disc; 30, plate seat; 31, cutting groove; 32, second cylinder; 33, splint; 40, drainage hole; 41, ramp; 50, drainage box; 51, waste discharge interface. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0026] Reference Figure 1-Figure 4 A high-density fiberboard wet board slitting device includes a base 10, an upper end of the base 10 is provided with a built-in groove 11, an operating table 12 is fixedly installed in the middle position of the built-in groove 11, and two sides of the upper end of the operating table 12 are respectively provided with parallel first guide rail auxiliary slides 13, and a first guide rail auxiliary slide 14 is slidably provided on the first guide rail auxiliary slide 13;
[0027] A side plate 15 is fixed to the upper end of the first guide rail sub-slide 14, and a support plate 17 is fixed between the two side plates 15. A first cylinder 16 is slidably provided on the support plate 17, and the outer wall surface of the first cylinder 16 is fixed to the surface of the support plate 17 through a bracket. A first piston rod for extension and retraction is provided inside the first cylinder 16;
[0028] A connecting plate 18 is fixed to the end of the first piston rod, and a second guide rail auxiliary slide 19 is assembled at the lower end of the connecting plate 18. A second guide rail auxiliary slide 110 is slidably provided on the second guide rail auxiliary slide 19, and a cutting mechanism is installed at the lower end of the second guide rail auxiliary slide 110.
[0029] It should be further explained that the cutting mechanism includes a motor 20, a rotating shaft, a shaft seat and a cutting disk 21. The outer wall surface of the motor 20 and the outer wall surface of the shaft seat are fixedly assembled with the surface of the second guide rail sub-slide 110 through a bracket. The internal rotation of the motor 20 is provided with a rotating shaft for driving. The other end of the rotating shaft is inserted and docked with the shaft seat. The cutting disk 21 is fixedly sleeved on the surface of the rotating shaft. The motor 20 is a stepper model and is powered by a wire plug connected to the indoor 220V power socket.
[0030] It should be further explained that a board seat 30 is fixed to the upper end of the operating table 12, and a cutting groove 31 is provided on the end face of the board seat 30. The width of the cutting groove 31 is 1.1 times the thickness of the cutting disk 21. When the cutting disk 21 cuts the wet fiberboard, displacement compensation can be performed through the cutting groove 31 to avoid damage to the board seat 30.
[0031] It should be further explained that second cylinders 32 slide through both sides of the operating table 12, and the outer wall of the second cylinder 32 is fixed to the outer wall of the operating table 12 through a bracket. The number of second cylinders 32 is at least six, and at least three are distributed on one side.
[0032] It should be further explained that a second piston rod for extension and retraction is provided inside the second cylinder 32, and a clamping plate 33 is fixed to the other end of the second piston rod. The clamping plates 33 are arranged in parallel on both sides of the operating table 12, and can clamp and position the wet fiberboard on both sides when it is placed.
[0033] It should be further explained that strip-shaped drainage holes 40 are provided on both sides of the bottom of the built-in groove 11, and ramps 41 for guiding drainage are fixed on both sides of the side walls of the operating table 12 and the inner walls of the built-in groove 11. The ramps 41 are arranged perpendicular to the drainage holes 40. The ramps 41 can prevent wastewater from gathering at the side walls of the built-in groove 11 parallel to the drainage holes 40, thereby achieving a stable diversion effect.
[0034] It should be further explained that drainage boxes 50 are fixed on both sides of the lower end of the base 10. The port position of the drainage box 50 covers the lower end opening position of the drainage hole 40. The inner bottom end of the drainage box 50 is an inclined structure. The lower end of the slope is provided with a waste discharge interface 51 fixedly passing through the drainage box 50. The drainage box 50 can collect the waste liquid falling into the drainage hole 40, and the waste discharge interface 51 can be connected to an external drainage pipe to discharge the waste liquid.
[0035] Working method: When it is necessary to cut the fiberboard wet board, place the whole piece of fiberboard wet board on the board seat 30, then turn on the power of the motor 20, the motor 20 can drive the cutting disc 21 to rotate through the rotating shaft, and the first guide rail sub-slide 14 slides on the first guide rail sub-slide 13 to move the cutting disc 21 forward and backward, and the second guide rail sub-slide 110 slides on the second guide rail sub-slide 19 to move the cutting disc 21 left and right, and the first piston rod of the first cylinder 16 is extended and retracted to adjust the upper and lower positions of the cutting disc 21, so that the cutting disc 21 can cut the fiberboard wet board according to the distribution position of the cutting groove 31, and the second piston rod of the second cylinder 32 is extended to drive the clamping plate 33 to clamp the fiberboard wet board to ensure that the fiberboard wet board is stably placed during the cutting process.
[0036] During the cutting process, since the wet fiberboard contains moisture, the remaining waste water will fall into the built-in groove 11 through the four inclined surfaces of the operating table 12, and be guided by the ramp 41 so that the waste liquid can enter the drainage hole 40, and finally fall into the drainage box 50 and be discharged through the waste discharge interface 51.
[0037] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A wet board slitting device for high-density fiberboard, comprising a base (10), characterized in that: The upper end of the base (10) is provided with a built-in groove (11), an operating table (12) is fixedly installed in the middle position of the built-in groove (11), and first guide rail auxiliary slides (13) distributed in parallel are respectively provided on both sides of the upper end of the operating table (12), and a first guide rail auxiliary slide seat (14) is slidably provided on the first guide rail auxiliary slide (13); A side plate (15) is fixed to the upper end of the first guide rail auxiliary slide (14), a support plate (17) is fixed between the two side plates (15), a first cylinder (16) is slidably provided on the support plate (17), and the outer wall surface of the first cylinder (16) is fixed to the surface of the support plate (17) through a bracket, and a first piston rod for extension and retraction is provided inside the first cylinder (16); A connecting plate (18) is fixed to the end of the first piston rod, a second guide rail auxiliary slide (19) is assembled at the lower end of the connecting plate (18), and a second guide rail auxiliary slide seat (110) is slidably arranged on the second guide rail auxiliary slide rail (19), and a cutting mechanism is installed at the lower end of the second guide rail auxiliary slide seat (110).
2. The wet board slitting device for high-density fiberboard according to claim 1, characterized in that: The cutting mechanism comprises a motor (20), a rotating shaft, a shaft seat and a cutting disc (21); the outer wall surface of the motor (20) and the outer wall surface of the shaft seat are fixedly assembled with the surface of the second guide rail auxiliary slide (110) through a bracket; a rotating shaft for driving is provided inside the motor (20); the other end of the rotating shaft is inserted into and docked with the shaft seat; and the surface of the rotating shaft is fixedly sleeved with the cutting disc (21).
3. The wet board slitting device for high-density fiberboard according to claim 1, characterized in that: A plate seat (30) is fixed to the upper end of the operating table (12), and a cutting groove (31) is provided on the end surface of the plate seat (30). The width of the cutting groove (31) is 1.1 times the thickness of the cutting disc (21).
4. The wet board slitting device for high-density fiberboard according to claim 1, characterized in that: A second cylinder (32) is slidably passed through both sides of the operating table (12), and the outer wall surface of the second cylinder (32) is fixed to the outer wall surface of the operating table (12) through a bracket.
5. The wet board slitting device for high-density fiberboard according to claim 4, characterized in that: A second piston rod for extension and retraction is provided inside the second cylinder (32), and a clamping plate (33) is fixed to the other end of the second piston rod. The clamping plates (33) are arranged in parallel on both sides of the operating table (12).
6. The device for cutting wet board of high-density fiberboard according to claim 1, characterized in that: Strip-shaped drainage holes (40) are provided on both sides of the bottom of the built-in groove (11), and ramps (41) for guiding drainage are fixed on both sides of the side walls of the operating table (12) and the inner walls of the built-in groove (11), and the ramps (41) are arranged perpendicular to the drainage holes (40).
7. The wet board slitting device for high-density fiberboard according to claim 1, characterized in that: Drain boxes (50) are fixed on both sides of the lower end of the base (10), and the port position of the drainage box (50) covers the lower end opening position of the drainage hole (40). The inner bottom end of the drainage box (50) is an inclined structure, and the lower end of the slope is provided with a waste discharge interface (51) fixedly penetrating the drainage box (50).