A manufacturing and processing device for flame-retardant artificial board and a processing method thereof

By combining the shaped frame and the drive mechanism with the uniform mechanism, the uniform laying of mesh fiber material and wood raw material is achieved, solving the problem of low efficiency of manual laying and improving the strength and quality of flame-retardant boards.

CN119928032BActive Publication Date: 2025-11-28ZHEJIANG KANGNUO DECORATION MATERIAL CO LTD
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Patent Information

Application Number
CN202510155619.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2025-11-28
Estimated Expiration
2045-02-12

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Abstract

The present application relates to the technical field of flame-retardant artificial board, and discloses a flame-retardant artificial board manufacturing and processing device and a processing method thereof, which comprises a frame, a rectangular sliding rod is fixedly installed in the frame, a movable box is slidably sleeved on the rectangular sliding rod, a T-shaped cavity is formed in the movable box, and the processing method comprises the following steps: the frame is installed on the ground, the rectangular sliding rod is slidably arranged in the frame, the movable box is slidably arranged on the rectangular sliding rod, the T-shaped cavity is formed in the movable box, the uniform mechanism is arranged in the movable box, the wood raw material is placed in the storage tank, the wood raw material is evenly laid on the net fiber material, and the flame-retardant artificial board is obtained.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of flame-retardant artificial board manufacturing equipment, in particular to a flame-retardant artificial board manufacturing and processing equipment and a processing method thereof. BACKGROUND

[0002] The board is made of wood waste produced in the processing process and chemical adhesive. There are many types of artificial boards, such as shaving board, medium density board, fine woodworking board, plywood, and decorative fireproof board.

[0003] In the production process of flame-retardant artificial board, a net-shaped fiber material is needed to improve the strength of the board. Most of the net-shaped fiber materials are laid manually, which not only has low work efficiency, but also cannot achieve accurate uniformity, so that the gas cannot be effectively discharged during hot pressing, and uneven laying will also affect the strength and quality of the board. SUMMARY

[0004] The present application aims to provide a flame-retardant artificial board manufacturing and processing equipment and a processing method thereof, to solve the problem that manual laying not only has low work efficiency, but also cannot achieve accurate uniformity, so that the gas cannot be effectively discharged during hot pressing, and uneven laying will also affect the strength and quality of the board.

[0005] To solve the above technical problems, the present application is realized by the following technical scheme:

[0006] The present application is a kind of flame-retardant artificial board manufacturing and processing equipment, including a type frame, a rectangular slide rod is fixedly installed in the type frame, a movable box is slidably sleeved on the rectangular slide rod, a T-shaped cavity is formed in the movable box, and the present application further comprises:

[0007] The uniformity mechanism comprises a plurality of rectangular leakage grooves formed in the inner wall of the bottom of the movable box, a rectangular groove is formed in the movable box, a plurality of uniform springs are fixedly installed on the right side inner wall of the rectangular groove, a slotted closing plate is fixedly installed at the left end of the plurality of uniform springs, the back of the slotted closing plate extends out of the rectangular groove, the slots on the slotted closing plate are staggered with the plurality of rectangular leakage grooves, a compression spring is sleeved on the rectangular slide rod, the right end of the compression spring is fixedly connected with the movable box, and the left end of the compression spring is fixedly connected with the type frame.

[0008] Further, a discharging frame is arranged in the type frame, a T-shaped round rod is slidably installed on the discharging frame, the T-shaped round rod penetrates the discharging frame, a discharging spring is sleeved on the T-shaped round rod, the right end of the discharging spring is fixedly connected with the T-shaped round rod, and the left end of the discharging spring is fixedly connected with the discharging frame.

[0009] Further, the frame is provided with a driving mechanism, the driving mechanism comprises a threaded rod rotatably installed on the frame, the left end of the threaded rod extends out of the frame, the right side of the frame is fixedly installed with a driving motor, the output shaft of the driving motor is fixedly connected with the threaded rod, a internally threaded block is threadedly sleeved on the threaded rod, the top end of the internally threaded block extends into the frame and is slidably connected with the frame, a frame block is fixedly installed on the bottom of the internally threaded block, and the bottom of the frame block is fixedly connected with the discharge frame.

[0010] Further, two storage grooves are formed in the frame block, two rectangular installation grooves are formed in the frame block, two telescopic springs are fixedly installed on the sides away from each other of the two rectangular installation grooves, two trapezoidal closure blocks are fixedly installed on the sides close to each other of the two telescopic springs, two through grooves are formed in the bottom inner walls of the two storage grooves, the bottom ends of the two through grooves extend out of the frame block, the bottom of the frame block is communicated with the discharge frame, and two contact plates are fixedly installed on the backs of the two trapezoidal closure blocks.

[0011] Further, an L-shaped fixing plate is fixedly installed on the back of the frame, two adaptive springs are sleeved on the threaded rod, the ends away from each other of the two adaptive springs are fixedly connected with the frame, the ends close to each other of the two adaptive springs are fixedly installed with adaptive rings, two rotating rods are fixedly installed on the threaded rod, a Z-shaped isosceles ladder panel is slidably installed on the left side of the frame, the left end of the Z-shaped isosceles ladder panel extends into the frame, and the right end of the Z-shaped isosceles ladder panel is fixedly connected with the movable box.

[0012] Further, a shaking mechanism is arranged in the frame, the shaking mechanism comprises a rectangular limiting frame fixedly installed in the frame, a forming box is slidably installed in the rectangular limiting frame, a shaking spring is fixedly installed on the left side inner wall of the frame, the right end of the shaking spring is fixedly connected with the forming box, and an exhaust plate is slidably installed in the forming box.

[0013] Further, a connecting plate is fixedly installed on the right side of the forming box, an L-shaped ladder panel is slidably sleeved on an L-shaped limiting plate fixedly installed on the right side inner wall of the frame, a transmission plate is hingedly installed on the connecting plate, and the top end of the transmission plate is hingedly connected with the L-shaped ladder panel.

[0014] Further, the method for manufacturing and processing the fire-retardant artificial board comprises the following steps:

[0015] S1: placing a certain amount of net-shaped fiber material;

[0016] S2: uniformly arranging wood raw materials;

[0017] S3: uniformly shaking the net-shaped fiber material;

[0018] S4: Flexible layered laying of wood raw material and net fiber material.

[0019] The present application has the following beneficial effects:

[0020] (1) The present application is a kind of flame-retardant artificial board manufacturing equipment, during the process of moving the block towards the driving motor, the block will drive the material discharge frame to move, the material discharge frame will drive the T-shaped round rod to contact the L-shaped contact plate, the L-shaped contact plate will move towards the driving motor under the push of the T-shaped round rod, the L-shaped contact plate drives the slotted closing plate to move, at this time the uniform spring will compress and deform, the slot on the slotted closing plate will align with several rectangular leakage slots, due to the continuous shaking of the movable box, the net fiber material in the movable box will fall onto the laid wood raw material, since the elastic force of the material discharge spring is greater than that of the uniform spring, the uniform spring will be in a compressed state under the extrusion of the T-shaped round rod, at this time the material discharge spring will also compress, when the movable box moves to the right, the compression of the material discharge spring will decrease, when the movable box moves to the left, the compression of the material discharge spring will increase, ensuring the normal laying of the net fiber material, when the net fiber material is laid, the storage tank containing wood raw material will also be directly opposite to the T-shaped cavity, the corresponding storage tank containing wood raw material will open under the action of the contact plate, so that the wood raw material falls onto the laid net fiber material, ensuring that the wood raw material and the net fiber material can be evenly laid, improving the strength of the flame-retardant board and the effective discharge of gas;

[0021] (2) The present application is a kind of flame-retardant artificial board manufacturing equipment, after laying the first layer of wood raw material, start the driving motor, the driving motor drives the threaded rod to rotate, the threaded rod drives the internal threaded block to move away from the driving motor, the internal threaded block drives the block to move, the block will drive the trapezoidal closing block to move, the trapezoidal closing block will drive the contact plate to move towards the L-shaped fixed plate, after the L-shaped fixed plate contacts the contact plate, the contact plate will drive the trapezoidal closing block to move towards the driving motor, at this time the extension spring will compress and deform, the through slot will open, the net fiber material in the block will fall into the movable box through the through slot, when the amount of net fiber material falling into the movable box is sufficient, reverse the driving motor, at this time the internal threaded block will drive the block to move towards the driving motor, the corresponding through slot at the bottom of the storage tank containing net fiber material will close, at this time the storage tank containing wood raw material will move towards the driving motor at the same time;

[0022] (3) the present application is a kind of flame-retardant artificial board manufacturing processing equipment, the block in the process of being close to driving motor will contact L type ladder panel, L type ladder panel will be lowered under the action of its inclined surface, L type ladder panel drives transmission plate to descend, transmission plate will drive connecting plate to move away from driving motor, connecting plate will push the forming box to move, at this time, the spring occurs tensile deformation, when the next net fiber material is laid, the block will leave L type ladder panel, forming box will be close to driving motor under the elastic force of connecting plate, in this process, forming box will occur elastic swing, the left and right swing of forming box will make the wood raw material in forming box more uniform and smooth, improve the thickness uniformity of wood raw material laying, effectively improve the quality of flame-retardant board;

[0023] (4) the present application is a kind of flame-retardant artificial board manufacturing processing equipment, in the process of screw rod rotation, it will drive rotary rod to rotate, rotary rod will contact Z-shaped isosceles ladder panel in the process of rotation, Z-shaped isosceles ladder panel will move to driving motor under the action of its inclined surface, Z-shaped isosceles ladder panel will drive movable box to move to driving motor, at this time, compression spring occurs tensile deformation, when rotary rod leaves Z-shaped isosceles ladder panel, movable box will reset under the elastic force of compression spring, in the process of continuous rotation of rotary rod, movable box will constantly swing left and right to make the net fiber material in movable box evenly distributed in movable box, so that the net fiber material can completely fall on wood raw material when laying net fiber material.

[0024] Of course, implementing any product of the present application does not necessarily need to achieve all the advantages described above at the same time. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description, obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0026] Figure 1 It is the overall structure schematic diagram of the present application;

[0027] Figure 2 It is the back part cross-sectional structure schematic diagram of the present application;

[0028] Figure 3 It is the partial cross-sectional structure schematic diagram of the movable box of the present application;

[0029] Figure 4 It is the present application Figure 2 Enlarged structure schematic diagram of A in the present application;

[0030] Figure 5Enlarged structural schematic view of B in the present application Figure 2 Enlarged structural schematic view of B in the present application

[0031] Figure 6 Enlarged structural schematic view of B in the present application

[0032] Figure 7 Enlarged structural schematic view of B in the present application Figure 2 Enlarged structural schematic view of B in the present application

[0033] Figure 8 Enlarged structural schematic view of B in the present application

[0034] In the drawings, the components represented by each reference numeral are listed as follows:

[0035] In the drawings, the components represented by each reference numeral are listed as follows: 1, U-shaped frame; 2, rectangular slide rod; 3, movable box; 4, T-shaped cavity; 5, uniform mechanism; 501, rectangular leakage groove; 502, rectangular groove; 503, uniform spring; 504, slotted closing plate; 505, L-shaped contact plate; 506, compression spring; 507, discharging frame; 508, T-shaped round rod; 509, discharging spring; 6, driving mechanism; 601, threaded rod; 602, driving motor; 603, internally threaded block; 604, U-shaped block; 605, storage tank; 606, rectangular mounting groove; 607, expansion spring; 608, trapezoidal closing block; 609, through groove; 610, contact plate; 611, L-shaped fixed plate; 612, adaptive spring; 613, adaptive ring; 614, rotating rod; 615, Z-shaped isosceles ladder panel; 7, shaking mechanism; 701, rectangular limiting frame; 702, shaped box; 703, shaking spring; 704, exhaust plate; 705, connecting plate; 706, U-shaped limiting plate; 707, L-shaped ladder panel; 708, transmission plate. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0037] Please refer to Figures 1-8 As shown in the drawings, the present application is a kind of flame-retardant artificial board manufacturing and processing equipment, including U-shaped frame 1, rectangular slide rod 2 is fixedly installed in U-shaped frame 1, the movable box 3 is slidably sleeved on the rectangular slide rod 2, the T-shaped cavity 4 is formed in the movable box 3, and the present application further comprises:

[0038] The uniform mechanism 5 comprises a plurality of rectangular leakage grooves 501 formed on the inner wall of the bottom of the movable box 3, a rectangular groove 502 is formed in the movable box 3, a plurality of uniform springs 503 are fixedly installed on the right side inner wall of the rectangular groove 502, a slotted closing plate 504 is fixedly installed at the left end of the plurality of uniform springs 503, the back of the slotted closing plate 504 extends to the outside of the rectangular groove 502, the slots on the slotted closing plate 504 are staggered with the plurality of rectangular leakage grooves 501, a compression spring 506 is sleeved on the rectangular sliding rod 2, the right end of the compression spring 506 is fixedly connected with the movable box 3, and the left end of the compression spring 506 is fixedly connected with the L-shaped frame 1.

[0039] As shown in Figure 4 and Figure 6 , the L-shaped frame 1 is provided with a material discharging frame 507, the T-shaped round rod 508 is slidably installed on the material discharging frame 507, the T-shaped round rod 508 penetrates through the material discharging frame 507, the material discharging spring 509 is sleeved on the T-shaped round rod 508, the right end of the material discharging spring 509 is fixedly connected with the T-shaped round rod 508, and the left end of the material discharging spring 509 is fixedly connected with the material discharging frame 507.

[0040] The net fiber material in the movable box 3 will fall on the laid wood raw materials, since the elastic force of the material discharging spring 509 is greater than that of the uniform spring 503, the uniform spring 503 will be in a compressed state under the extrusion of the T-shaped round rod 508, at this time, the material discharging spring 509 will also be compressed, the compression of the material discharging spring 509 will become smaller when the movable box 3 moves to the right, and the compression of the material discharging spring 509 will become larger when the movable box 3 moves to the left, so that the normal laying of the net fiber material is ensured.

[0041] As shown in Figure 1 , the L-shaped frame 1 is provided with a driving mechanism 6, the driving mechanism 6 comprises a threaded rod 601 rotatably installed on the L-shaped frame 1, the left end of the threaded rod 601 extends out of the L-shaped frame 1, a driving motor 602 is fixedly installed on the right side of the L-shaped frame 1, the output shaft of the driving motor 602 is fixedly connected with the threaded rod 601, an internal threaded block 603 is threadedly sleeved on the threaded rod 601, the top end of the internal threaded block 603 extends into the L-shaped frame 1 and is slidably connected with the L-shaped frame 1, a L-shaped block 604 is fixedly installed on the bottom of the internal threaded block 603, and the bottom of the L-shaped block 604 is fixedly connected with the material discharging frame 507.

[0042] The driving motor 602 drives the threaded rod 601 to rotate, the threaded rod 601 drives the internal threaded block 603 to move away from the driving motor 602, and the internal threaded block 603 drives the L-shaped block 604 to move.

[0043] As shown in Figure 5As shown, the two storage grooves 605 are arranged on the L-shaped block 604, two rectangular mounting grooves 606 are arranged in the L-shaped block 604, two extension springs 607 are fixedly installed on the sides of the two rectangular mounting grooves 606 away from each other, two trapezoidal closure blocks 608 are fixedly installed on the ends of the two extension springs 607 close to each other, two through grooves 609 are arranged on the inner walls of the bottoms of the two storage grooves 605, the bottoms of the two through grooves 609 extend to the outside of the L-shaped block 604, the bottom of the L-shaped block 604 is communicated with the material discharge frame 507, and two contact plates 610 are fixedly installed on the backs of the two trapezoidal closure blocks 608.

[0044] When the through grooves 609 are opened, the reticular fiber material in the L-shaped block 604 falls into the movable box 3 from the through grooves 609, and when the amount of the reticular fiber material falling into the movable box 3 is sufficient, the driving motor 602 is reversed, and at this time, the inner threaded block 603 drives the L-shaped block 604 to move close to the driving motor 602, and correspondingly, the through grooves 609 at the bottoms of the reticular fiber material storage grooves 605 are closed, and at this time, the storage grooves 605 containing the wood raw materials simultaneously move close to the driving motor 602.

[0045] As shown in Figure 1 and Figure 2 The L-shaped fixed plate 611 is fixedly installed on the back of the L-shaped frame 1, the two adaptive springs 612 are sleeved on the threaded rod 601, the two adaptive springs 612 are fixedly connected to the L-shaped frame 1 at the ends away from each other, the two adaptive springs 612 are fixedly installed with the adaptive rings 613 at the ends close to each other, the two rotating rods 614 are fixedly installed on the threaded rod 601, the Z-shaped isosceles trapezoidal panel 615 is slidingly installed on the left side of the L-shaped frame 1, the left end of the Z-shaped isosceles trapezoidal panel 615 extends into the L-shaped frame 1, and the right end of the Z-shaped isosceles trapezoidal panel 615 is fixedly connected to the movable box 3.

[0046] In the rotating process of the threaded rod 601, the rotating rod 614 rotates, and the rotating rod 614 contacts the Z-shaped isosceles trapezoidal panel 615 in the rotating process, the Z-shaped isosceles trapezoidal panel 615 moves to the direction close to the driving motor 602 under the action of the inclined surface, the Z-shaped isosceles trapezoidal panel 615 drives the movable box 3 to move to the direction close to the driving motor 602, at this time, the compression spring 506 is stretched, and when the rotating rod 614 moves away from the Z-shaped isosceles trapezoidal panel 615, the movable box 3 is reset under the elastic action of the compression spring 506, and in the continuous rotating process of the rotating rod 614, the movable box 3 constantly shakes left and right, so that the reticular fiber material in the movable box 3 is evenly distributed in the movable box 3, and the reticular fiber material can completely fall on the wood raw materials when the reticular fiber material is laid.

[0047] As shown in Figure 6As shown, the L-shaped frame 1 is provided with a shaking mechanism 7, the shaking mechanism 7 comprises a rectangular limiting frame 701 fixedly installed in the L-shaped frame 1, a forming box 702 is slidably installed in the rectangular limiting frame 701, a shaking spring 703 is fixedly installed on the left side inner wall of the L-shaped frame 1, the right end of the shaking spring 703 is fixedly connected with the forming box 702, and an exhaust plate 704 is slidably installed in the forming box 702.

[0048] The left and right shaking of the forming box 702 can make the wood raw materials in the forming box 702 shake more uniformly and evenly, improve the thickness uniformity of the wood raw material laying, and effectively improve the quality of the flame-retardant board.

[0049] As shown in Figure 6 and Figure 7 The right side of the forming box 702 is fixedly provided with a connecting plate 705, the right side inner wall of the L-shaped frame 1 is fixedly provided with an L-shaped limiting plate 706, the L-shaped limiting plate 706 is slidably sleeved with an L-shaped ladder plate 707, the connecting plate 705 is hingedly provided with a transmission plate 708, and the top end of the transmission plate 708 is hingedly connected with the L-shaped ladder plate 707.

[0050] The L-shaped ladder plate 707 will be lowered under the action of the inclined surface thereof during the process of approaching the driving motor 602, the L-shaped ladder plate 707 drives the transmission plate 708 to be lowered, the transmission plate 708 drives the connecting plate 705 to move away from the driving motor 602, and the connecting plate 705 pushes the forming box 702 to move.

[0051] As shown in Figures 1-8 A method for manufacturing and processing a flame-retardant artificial board, the method steps are as follows:

[0052] S1: placing a certain amount of net-shaped fiber material;

[0053] S2: uniformly laying wood raw materials;

[0054] S3: uniformly shaking the net-shaped fiber material;

[0055] S4: flexibly layering the wood raw materials and the net-shaped fiber material.

[0056] In the process of moving the block 604 to the drive motor 602, the block 604 will move the discharge frame 507, the discharge frame 507 will make the T-shaped round rod 508 contact the L-shaped contact plate 505, the L-shaped contact plate 505 will move to the direction of the drive motor 602 under the push of the T-shaped round rod 508, the L-shaped contact plate 505 drives the moving of the slotted closing plate 504, at this time the uniform spring 503 is compressed and deformed, the slot on the slotted closing plate 504 will be aligned with the rectangular leakage slot 501, due to the continuous shaking of the movable box 3, the reticular fiber material in the movable box 3 will fall on the laid wood raw material, because the elastic force of the discharge spring 509 is greater than that of the uniform spring 503, the uniform spring 503 will be in a compressed state under the extrusion of the T-shaped round rod 508, at this time the discharge spring 509 will also be compressed, the compression of the discharge spring 509 will decrease when the movable box 3 moves to the right, and the compression of the discharge spring 509 will increase when the movable box 3 moves to the left, which ensures the normal laying of the reticular fiber material, when the reticular fiber material is laid, the storage tank 605 containing wood raw material will also be opposite to the T-shaped cavity 4, and the corresponding storage tank 605 containing wood raw material will be opened under the action of the contact plate 610, so that the wood raw material falls on the laid reticular fiber material, ensuring that the wood raw material and the reticular fiber material can be evenly laid, improving the strength and quality of the flame-retardant board; after laying the first layer of wood raw material, the drive motor 602 is started, the drive motor 602 drives the threaded rod 601 to rotate, the threaded rod 601 drives the internal threaded block 603 to move away from the drive motor 602, the internal threaded block 603 drives the block 604 to move, the block 604 drives the trapezoidal closing block 608 to move, the trapezoidal closing block 608 drives the contact plate 610 to move to the direction of the L-shaped fixed plate 611, after the L-shaped fixed plate 611 contacts the contact plate 610, the contact plate 610 drives the trapezoidal closing block 608 to move to the direction of the drive motor 602, at this time the extension spring 607 is compressed and deformed, the through slot 609 is opened, the reticular fiber material in the block 604 will fall into the movable box 3 from the through slot 609, when the amount of reticular fiber material falling into the movable box 3 is sufficient, the drive motor 602 is reversed, at this time the internal threaded block 603 drives the block 604 to move to the direction of the drive motor 602, and the through slot 609 at the bottom of the storage tank 605 containing reticular fiber material is closed, at this time the storage tank 605 containing wood raw material will move to the direction of the drive motor 602;

[0057] The L-shaped ladder panel 707 will descend under the action of its inclined surface, the L-shaped ladder panel 707 drives the transmission plate 708 to descend, the transmission plate 708 drives the connecting plate 705 to move away from the driving motor 602, the connecting plate 705 pushes the forming box 702 to move, at this time, the swing spring 703 is stretched, in the next time of laying the web-shaped fiber material, the L-shaped block 604 will leave the L-shaped ladder panel 707, the forming box 702 will suddenly approach the driving motor 602 under the elastic force of the connecting plate 705, in the process, the forming box 702 will elastically swing, the left and right swing of the forming box 702 will make the wood raw materials in the forming box 702 swing more evenly and flatly, improve the thickness uniformity of the wood raw material laying, effectively improve the quality of the flame-retardant plate; in the process of rotating the threaded rod 601, the rotating rod 614 will be rotated, the rotating rod 614 will contact the Z-shaped isosceles ladder panel 615 in the process of rotating, the Z-shaped isosceles ladder panel 615 will move to the driving motor 602 under the action of its inclined surface, the Z-shaped isosceles ladder panel 615 drives the movable box 3 to move to the driving motor 602, at this time, the compression spring 506 is stretched, when the rotating rod 614 leaves the Z-shaped isosceles ladder panel 615, the movable box 3 will reset under the elastic force of the compression spring 506, in the process of continuous rotation of the rotating rod 614, the movable box 3 will constantly swing left and right, so that the web-shaped fiber material in the movable box 3 is evenly distributed in the movable box 3, which is convenient for laying the web-shaped fiber material on the wood raw material.

[0058] The preferred embodiments disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details, nor limit the application to the specific embodiments described. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present application, so that those skilled in the art can well understand and utilize the present application. The present application is limited only by the claims and their entire scope and equivalents.

Claims

1. A kind of fire-retardant artificial board manufacturing processing equipment, including the frame (1) of type, rectangular slide bar (2) is fixedly installed in the frame (1) of type, the movable box (3) of sliding sleeve is equipped on the rectangular slide bar (2), T-shaped cavity (4) is opened in the movable box (3), it is characterized in that, Also include: The uniform mechanism includes a plurality of rectangular leakage grooves (501) opened on the inner wall of the bottom of the movable box (3), a rectangular groove (502) is opened in the movable box (3), a plurality of uniform springs (503) are fixedly installed on the right side inner wall of the rectangular groove (502), a plurality of the left end of the uniform spring (503) is fixedly installed with a slotted closing plate (504), the back of the slotted closing plate (504) extends to the outside of the rectangular groove (502), the slot on the slotted closing plate (504) is staggered with the plurality of rectangular leakage grooves (501), the rectangular sliding rod (2) is sleeved with a compression spring (506), the right end of the compression spring (506) is fixedly connected with the movable box (3), and the left end of the compression spring (506) is fixedly connected with the frame (1); The frame (1) is provided with a discharging frame (507), the T-shaped round rod (508) is slidably installed on the discharging frame (507), the T-shaped round rod (508) penetrates the discharging frame (507), the discharging spring (509) is sleeved on the T-shaped round rod (508), the right end of the discharging spring (509) is fixedly connected with the T-shaped round rod (508), and the left end of the discharging spring (509) is fixedly connected with the discharging frame (507); The driving mechanism (6) is arranged on the frame (1), the driving mechanism (6) comprises a threaded rod (601) rotatably installed on the frame (1), the left end of the threaded rod (601) extends to the outside of the frame (1), the right side of the frame (1) is fixedly installed with a driving motor (602), the output shaft of the driving motor (602) is fixedly connected with the threaded rod (601), the threaded rod (601) is threadedly sleeved with an internal threaded block (603), the top end of the internal threaded block (603) extends into the frame (1) and is slidably connected with the frame (1), the bottom of the internal threaded block (603) is fixedly installed with a frame block (604), and the bottom of the frame block (604) is fixedly connected with the discharging frame (507); Two storage grooves (605) are arranged on the frame block (604), two rectangular installation grooves (606) are arranged in the frame block (604), the mutually distant sides of the two rectangular installation grooves (606) are respectively fixedly installed with telescopic springs (607), the mutually close ends of the two telescopic springs (607) are respectively fixedly installed with trapezoidal closing blocks (608), the bottom inner walls of the two storage grooves (605) are respectively provided with through grooves (609), the bottom ends of the two through grooves (609) respectively extend to the outside of the frame block (604), the bottom of the frame block (604) is communicated with the discharging frame (507), and the back surfaces of the two trapezoidal closing blocks (608) are respectively fixedly installed with contact plates (610); The back surface of the frame (1) is fixedly installed with an L-shaped fixed plate (611); In the process of moving the block (604) to the drive motor (602) near, the block (604) will move the discharge frame (507), the discharge frame (507) will drive the T-shaped round bar (508) to contact the L-shaped contact plate (505), the L-shaped contact plate (505) will move to the direction of the drive motor (602) under the push of the T-shaped round bar (508), the L-shaped contact plate (505) drives the belt slot closing plate (504) to move, at this time the uniform spring (503) is compressed and deformed, the slot on the belt slot closing plate (504) is aligned with the rectangular leakage slot (501); After laying the first layer of wood raw materials, start the drive motor (602), the drive motor (602) drives the threaded rod (601) to rotate, the threaded rod (601) drives the inner threaded block (603) to move away from the drive motor (602), the inner threaded block (603) drives the block (604) to move, the block (604) drives the trapezoidal closing block (608) to move, the trapezoidal closing block (608) drives the contact plate (610) to move towards the L-shaped fixed plate (611), after the L-shaped fixed plate (611) contacts the contact plate (610), the contact plate (610) drives the trapezoidal closing block (608) to move towards the drive motor (602), at this time the extension spring (607) is compressed and deformed, the through slot (609) is opened, the net-like fiber material in the block (604) will fall into the movable box (3) from the through slot (609), when the amount of net-like fiber material falling into the movable box (3) is sufficient, reverse the drive motor (602), at this time the inner threaded block (603) will drive the block (604) to move towards the drive motor (602), and the through slot (609) at the bottom of the net-like fiber material storage tank (605) will be closed at the same time. The storage tank (605) containing wood raw materials will move towards the drive motor (602) at the same time.

2. The manufacturing equipment for flame-retardant artificial board according to claim 1, characterized in that: The threaded rod (601) is sleeved with two adaptive springs (612), the ends of the two adaptive springs (612) away from each other are fixedly connected with the block (1), the ends of the two adaptive springs (612) close to each other are respectively fixedly installed with adaptive rings (613), the threaded rod (601) is fixedly installed with two rotating rods (614), the left side of the block (1) is slidably installed with a Z-shaped isosceles ladder panel (615), the left end of the Z-shaped isosceles ladder panel (615) extends into the block (1), and the right end of the Z-shaped isosceles ladder panel (615) is fixedly connected with the movable box (3).

3. The manufacturing equipment for flame-retardant wood-based panels according to claim 2, characterized in that: The shaking mechanism (7) is arranged in the frame (1), the shaking mechanism (7) includes the rectangular limiting frame (701) fixedly installed in the frame (1), the shaped box (702) is slidably installed in the rectangular limiting frame (701), the shaking spring (703) is fixedly installed on the left side inner wall of the frame (1), the right end of the shaking spring (703) is fixedly connected with the shaped box (702), the exhaust plate (704) is slidably installed in the shaped box (702).

4. The manufacturing equipment for flame-retardant wood-based panels according to claim 3, characterized in that: The connecting plate (705) is fixedly installed on the right side of the shaped box (702), the frame limiting plate (706) is fixedly installed on the right side inner wall of the frame (1), the L-shaped ladder panel (707) is slidably sleeved on the frame limiting plate (706), the transmission plate (708) is hingedly installed on the connecting plate (705), and the top end of the transmission plate (708) is hingedly connected with the L-shaped ladder panel (707).

5. A method of using a manufacturing and processing apparatus for flame-retardant wood-based panels, using a manufacturing and processing apparatus for flame-retardant wood-based panels according to claim 4, characterized in that The method steps are as follows: S1: placing a quantitative reticular fiber material; S2: evenly wood raw materials; S3: evenly shaking reticular fiber material; S4: flexible layered laying of wood raw materials and reticular fiber materials.

Citation Information

Patent Citations

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