Bamboo fiber composite board production process

Through the connecting device of integrated grinding, tenon-opening glue coating and butt cutting mechanism, the problems of low joint cutting efficiency, uneven ends and uneven glue coating in the production process of bamboo fiber composite board are solved, and an efficient and excellent quality jointing process is achieved.

CN119974157AActive Publication Date: 2025-05-13FUJIAN YONGQING CONTAINER NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202510458362.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-05-13
Estimated Expiration
2045-04-14

AI Technical Summary

Technical Problem

The existing bamboo fiber composite board production process is inefficient when cutting the joint length, the ends are uneven and the glue is uneven, which affects the efficiency and quality of joint length.

Method used

The connecting device of integrated grinding, tenon-opening glue coating and butt cutting mechanism is adopted. The end of the bamboo fiber composite board is polished through the grinding mechanism, and the tenon-opening glue coating mechanism performs the tenon-opening and glue coating operations, and docking and fixed-length cutting are achieved through the butt cutting mechanism.

Benefits of technology

The efficiency and quality of connecting length is improved, the flatness of the ends of bamboo fiber composite boards and the uniformity of glue coating are ensured, and continuous automatic connecting length operation is achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a bamboo fiber composite board production process, and relates to the technical field of composite board production. The bamboo fiber composite board production process comprises the following steps that S1, raw materials are prepared, specifically, high-quality bamboo wood is selected and subjected to cleaning, cutting and smashing treatment to form fibers, and meanwhile an adhesive, waterproof paint and other auxiliary materials are prepared; s2, fiber mixing: mixing the bamboo fibers with other composite materials in proportion, and adding an adhesive, waterproof paint and other auxiliary materials. According to the production process of the bamboo fiber composite board, when the bamboo fiber composite board is lengthened, polishing, tenoning and gluing operation can be conveniently conducted on the two ends of the bamboo fiber composite board, meanwhile, gluing is more uniform, the effect is better, and then the lengthening efficiency and quality are guaranteed; during butt joint, deviation and shaking can be avoided during butt joint, fixed-length cutting can be achieved conveniently, and the lengthening quality can be guaranteed; continuous automatic lengthening operation can be achieved, and the lengthening efficiency is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of composite board production, in particular to a bamboo fiber composite board production process. Background Art

[0002] During the production of bamboo fiber composite materials, bamboo fiber is compounded with other materials such as plastic, rubber, metal, etc. to prepare new materials with high strength, high toughness, damage resistance, corrosion resistance and other properties. They can be used in automotive interior, aerospace, construction and other fields, such as automotive interior panels, aircraft seat components, building structural parts, etc. The main production processes include raw material preparation, fiber mixing, high-temperature pressing, cooling and shaping, splicing and cutting, and surface treatment. When splicing and cutting, a splicing machine is required to splice and cut them to meet the use requirements.

[0003] When the existing bamboo fiber composite board production process is used, when extending and cutting, it is necessary to first perform a tenoning operation on both ends of the bamboo fiber composite board, and then apply glue to the tenon groove, and then the operator extends the boards one by one, which makes the efficiency of the extension very low; when extending and cutting, the two ends of the bamboo fiber composite board are prone to bumping, etc., resulting in uneven ends. At the same time, it is not convenient to perform synchronous tenoning and gluing operations on the two ends of the bamboo fiber composite board, and the glue application is not uniform, which affects the efficiency and quality of the extension; when docking, it is not convenient to align and press the bamboo fiber composite board, and when cutting, it is not convenient to cut to a fixed length, which affects the quality of the extension. Summary of the invention

[0004] The purpose of the present invention is to provide a bamboo fiber composite board production process to solve the problems raised in the above background technology.

[0005] To achieve the above object, the present invention provides the following technical solution: a bamboo fiber composite board production process, comprising the following steps: S1: Raw material preparation: Select high-quality bamboo, clean, cut and crush it into fibers, and prepare adhesives, waterproof paint and other auxiliary materials; S2: Fiber mixing: Mix bamboo fiber with other composite materials, such as plastic and rubber, in proportion, add adhesive, waterproof paint and other auxiliary materials, and stir thoroughly; S3: High temperature pressing: Press the mixed fibers into a board under high temperature and high pressure to form a preliminary bamboo fiber composite board; S4: Cooling and shaping: Cooling the bamboo fiber composite board after high-temperature pressing to eliminate the thermal expansion and contraction coefficient and make the structure more stable; S5: Splicing and cutting: Use a splicing device to splice and cut the bamboo fiber composite board after cooling and shaping; S6: Surface treatment: According to application requirements, the bamboo fiber composite board is surface treated, such as painting, laminating, etc., to improve its decorativeness and durability.

[0006] The extension device includes a box body arranged on the top of the bottom plate, and a strip-shaped opening is opened on the top of the box body, a conveyor is arranged in the box body, and the conveyor includes a conveyor belt, a plurality of fixed blocks arranged in an array are fixedly connected to the surface of the conveyor belt, and the number of each fixed block is two, the conveyor belt is located directly below the strip-shaped opening, and the fixed blocks are inserted in the strip-shaped opening, a bearing plate is fixedly connected to the top of the strip-shaped opening, a grinding mechanism, a tenoning and gluing mechanism, and a butt-jointing and cutting mechanism are sequentially arranged on the top of the box body, and the grinding mechanism is used to grind the two ends of the bamboo fiber composite board, the tenoning and gluing mechanism is used to tenon and gluing the polished bamboo fiber composite board, and the butt-jointing and cutting mechanism is used to butt and cut the bamboo fiber composite board after gluing; The polishing mechanism includes two symmetrically arranged polishing plates fixedly connected to the top of the box, and the side wall of one of the polishing plates is fixedly connected to two symmetrically arranged connecting frames, the side wall of the connecting frame is fixedly connected to two L-shaped first guide plates, and the side wall of the first guide plate is provided with a first moving mechanism for moving the bamboo fiber composite board; The tenoning and gluing mechanism comprises a U-shaped frame fixedly connected to the top of the box body, and the bottom of the U-shaped frame is connected to two symmetrically arranged moving blocks through a second moving mechanism, and the side walls opposite to the two moving blocks are fixedly connected to two symmetrically arranged U-shaped plates, the side walls of the U-shaped plates are rotatably connected to the tenoning rollers through a first rotating shaft, and the side walls of the U-shaped plates are fixedly connected to a first motor, the output end of the first motor is fixed to one end of the first rotating shaft, and the top of each U-shaped plate is connected to two symmetrically arranged moving plates through a first telescopic mechanism, and the side walls of the U-shaped plates are fixedly connected to a first distance sensor, the side walls of each of the moving plates are fixedly connected to an inclined plate, and the bottom of the inclined plate is fixedly connected to a plurality of horizontally arranged bristles, the side walls of the inclined plates are provided with notches, and a rectangular tube is connected to the notch through a moving component, the side walls of the rectangular tubes are inserted with a plurality of glue coating tubes through the second telescopic mechanism, and the ends of each of the glue coating tubes are provided with a groove, and the side walls of each U-shaped plate are provided with a glue supply mechanism for automatically supplying glue to the glue coating tube; The butting and cutting mechanism includes a support plate fixedly connected to the top of the bottom plate, and a discharging plate is fixedly connected between the support plate and the top of the box body, the top of the discharging plate is provided with a cutting groove arranged through it, and the bottom of the discharging plate is provided with a cutting module, the side wall of the box body is fixedly connected with a first L-shaped plate, and the side wall of the first L-shaped plate is fixedly connected with a first cylinder, the telescopic end of the first cylinder is fixedly connected with a first pushing plate, and the side wall of the first pushing plate is provided with a plurality of avoidance grooves, the top of the discharging plate is fixedly connected with two symmetrically arranged second guide plates, and the bottom of the discharging plate is fixedly connected with a second L-shaped plate, the side wall of the second L-shaped plate is fixedly connected with a second cylinder, and the telescopic end of the second cylinder is fixedly connected with the second pushing plate, the top of the bottom plate is provided with a collecting groove, the top of the discharging plate is provided with a pressing mechanism for pressing the bamboo fiber composite board, and the top of the discharging plate is provided with a fixed length mechanism for cutting the bamboo fiber composite board to a fixed length.

[0007] Preferably, the glue supply mechanism includes a glue box fixedly connected to the side wall of the moving block, and a fixed tube is fixedly connected to the top of the U-shaped plate, a piston is slidably connected in the fixed tube, and the piston is fixed to the side wall of the moving plate, a first hose is fixedly connected between the fixed tube and the glue box, and a first one-way valve is arranged in the first hose, a second hose is fixedly connected between the fixed tube and the rectangular tube, and a second one-way valve is arranged in the second hose.

[0008] Preferably, the first telescopic mechanism includes two symmetrically arranged first sets of rods fixedly connected to the top of each U-shaped plate, and the side walls of the first sets of rods are sleeved with first sleeves, the upper end of the first sleeve is fixed to the bottom of the movable plate, and the side walls of the first sleeve are sleeved with first springs.

[0009] Preferably, the second telescopic mechanism comprises a fixing ring fixedly connected to the side wall of each rubber coating tube, the side wall of each rubber coating tube is sleeved with a second spring, and the two ends of the second spring are respectively fixed to the fixing ring and the side wall of the rectangular tube.

[0010] Preferably, the first moving mechanism includes a first moving frame, and a first conveying roller is rotatably connected to the first moving frame via a second rotating shaft, conical surfaces are provided at both ends of the first conveying roller, a second motor is fixedly connected to the side wall of the first moving frame, and an output end of the second motor is fixed to one end of the second rotating shaft, two symmetrically arranged first T-shaped guide rods are fixedly connected to the top of the first moving frame, and a first connecting block is sleeved on the side wall of each first T-shaped guide rod, the first connecting block is fixed to the side wall of the first guide plate, and a third spring is sleeved on the side wall of each first T-shaped guide rod.

[0011] Preferably, the clamping mechanism includes a second movable frame, and the second conveying roller is rotatably connected to the second movable frame via a third rotating shaft, the top of the second movable frame is fixedly connected to two symmetrically arranged second T-shaped guide rods, and the side wall of each second T-shaped guide rod is sleeved with a third L-shaped plate, the third L-shaped plate is fixed to the top of the discharge plate, and the side wall of each second T-shaped guide rod is sleeved with a fourth spring.

[0012] Preferably, the fixed-length mechanism includes a fixed plate fixedly connected to the top of the discharge plate, and two symmetrically arranged third T-shaped guide rods are inserted into the side wall of the fixed plate, one end of the third T-shaped guide rod is fixedly connected to a baffle, the side wall of each of the third T-shaped guide rods is sleeved with a fifth spring, and a second distance sensor is fixedly inserted into the side wall of the fixed plate.

[0013] Preferably, the moving component includes a U-shaped block fixedly connected to the side wall of the inclined plate, and the side wall of the U-shaped block is fixedly connected to two symmetrically arranged second sets of rods, the side wall of the second set of rods is sleeved with a second sleeve, and the other end of the second sleeve is fixedly connected to a second connecting block, the second connecting block is fixed to the side wall of the rectangular tube, and the side wall of each second sleeve is sleeved with a sixth spring, the side wall of the U-shaped block is fixedly connected to an electromagnet, and the side wall of the second connecting block is fixedly connected to an iron block.

[0014] Preferably, the second moving mechanism includes a guide rod fixedly connected to the side wall of the U-shaped frame, and the moving block is sleeved on the side wall of the guide rod, the side wall of the U-shaped frame is rotatably connected to a double-headed screw, and the moving block is threadedly connected to the threaded portion of the double-headed screw, the side wall of the U-shaped frame is fixedly connected to a third motor, and the output end of the third motor is fixed to one end of the double-headed screw.

[0015] Preferably, a dust suction mechanism is provided under the conveyor belt, and the dust suction mechanism includes a dust suction hood fixedly connected to the inner wall of the box body, the dust suction hood is fitted with the bottom of the conveyor belt, and a plurality of through holes arranged in an array are opened on the surface of the conveyor belt, and a dust suction fan is fixedly connected to the side wall of the dust suction hood.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] (1) The bamboo fiber composite board production process, by setting a grinding mechanism, etc., when the bamboo fiber composite board is extended, a plurality of bamboo fiber composite boards are first stacked and placed between two first guide plates, and then the conveyor is started to drive the conveyor belt for conveying. When the fixed block abuts against the bamboo fiber composite board in the first guide plate, a bamboo fiber composite board at the bottom can be pushed to be conveyed along the top of the bearing plate. At the same time, when the conveyed bamboo fiber composite board abuts against the conical surface, the first conveying roller and the first moving frame can be pushed to move upward. At the same time, the third spring is compressed, and, under the action of the third spring, the first conveying roller abuts against the top of the bamboo fiber composite board, and the conveyor is started. The second motor is started, and the rotation of the second motor drives the rotation of the first conveying roller, so that the bamboo fiber composite board can be pushed against the side wall of one of the polishing plates, so that one end of the bamboo fiber composite board can be polished. After the polishing is completed, the second motor is started to reverse, so that the bamboo fiber composite board can be pushed against the side wall of the other polishing plate, thereby facilitating the polishing operation on both ends of the bamboo fiber composite board, ensuring the quality of subsequent mortise and tenoning and docking, and then ensuring the production quality. In addition, when polishing, the dust suction fan is started. At this time, the debris generated can be absorbed through the hole, and enter the external filter device through the dust suction hood and the dust suction fan for filtration and collection, which is healthier and more environmentally friendly.

[0018] (2) The bamboo fiber composite board production process is characterized in that, by setting a tenoning and gluing mechanism, etc., after the bamboo fiber composite board is polished, when it is transported between two tenoning rollers, the conveyor is stopped. At this time, the bamboo fiber composite board is stopped from being transported. Then, the third motor is started. The rotation of the third motor drives the rotation of the double-headed screw, thereby driving the two moving blocks to move closer to each other, and driving the tenoning rollers and the inclined plate to move through the U-shaped plate. When the inclined plate abuts against the end of the bamboo fiber composite board, the bamboo fiber composite board can be pushed to be adjusted to the center. After the adjustment is completed, when the moving block continues to move, it can push the inclined plate to slide upward along the two ends of the bamboo fiber composite board and drive the moving plate to move upward. The first spring is stretched and, at the same time, the electromagnet is energized. When the magnet is energized, it attracts the iron block, so that the rectangular tube drives multiple glue-coating tubes to move. At the same time, the sixth spring is compressed and moves the glue-coating tube into the slot. When the bottom of the inclined plate moves to the top of the bamboo fiber composite board, the bamboo fiber composite board can be pressed under the action of the first spring. At the same time, the first distance sensor detects that the distance of the moving plate no longer changes. At this time, the third motor is stopped, and then the first motor is started. The rotation of the first motor drives the rotation of the tenoning roller. Then, the third motor is started again, so that the U-shaped plate drives the tenoning roller to continue to move a certain distance, so that the tenoning operation can be performed on both ends of the bamboo fiber composite board. In addition, it can be suitable for bamboo fiber composite boards of different lengths, has stronger applicability, and is more convenient and quick to use. At the same time, when the movable plate moves upward, it drives the piston to move upward along the fixed tube, so that negative pressure is generated in the fixed tube. At the same time, the first one-way valve is opened and the second one-way valve is closed. At this time, the glue in the glue box enters the fixed tube through the first hose for temporary storage. After the tenoning is completed, the two U-shaped plates and the tenoning rollers are driven to move away from each other through the second moving mechanism. At this time, the inclined plate slides along the top of the bamboo fiber composite board. When the inclined plate and the two ends of the bamboo fiber composite board are against each other, the inclined plate and the movable plate can move downward and reset under the action of the first spring, so that the inclined plate slides downward along the two ends of the bamboo fiber composite board. At this time, the bristles can clean the debris in the tenon groove. When the glue coating tube is flush with the top of the tenon groove, the electromagnet is powered off. At this time, the rectangular tube can The second spring is compressed to ensure that the end of the glue coating tube can contact the surface of the tenon groove, and when the movable plate moves downward, it can drive the piston to move downward along the fixed tube, so as to squeeze the glue temporarily stored in the fixed tube. At the same time, the first one-way valve is closed and the second one-way valve is opened. At this time, the glue in the fixed tube is squeezed and enters the rectangular tube through the second hose, and is smeared on the surface of the tenon groove through the glue coating tube and the groove, making the gluing more convenient and quick, and making the gluing more uniform and effective, thereby ensuring the quality of subsequent extension.

[0019] (3) This bamboo fiber composite board production process, by setting a docking and cutting mechanism, etc., after the mortise and tenoning and gluing are completed, the conveyor is started, so that the conveyor belt and the fixed block drive the bamboo fiber composite board to continue to be conveyed forward along the top of the load-bearing plate. When it moves to the docking position, the conveyor is stopped, and then the first cylinder is started, so that the first push plate is abutted against one end of the bamboo fiber composite board, and slides along the second guide plate to the center and docks with the bamboo fiber composite board that has been extended in front. At the same time, under the action of the fourth spring, the second conveying roller is abutted against the top of the bamboo fiber composite board, which can press the bamboo fiber composite board that has been extended in front, and can ensure that the extrusion force is constant during docking, and can avoid When the bamboo fiber composite board is connected, the board will be offset and shaken, so as to ensure the quality of the connection. After the connection is completed, the second conveyor roller can press and convey the bamboo fiber composite board. When the connected bamboo fiber composite board is against the side wall of the baffle, the baffle is pushed to move toward the fixed plate. When the second distance sensor detects that the baffle is a certain distance away from the fixed plate, the first cylinder is stopped. Then, the connected bamboo fiber composite board is cut by the cutting module, and the second cylinder is started. The cut bamboo fiber composite board is pushed into the collecting tank for collection by the second pushing plate to achieve fixed-length cutting, which can ensure the quality of the connection and realize continuous automatic connection operation to improve the efficiency of the connection. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the process flow of the present invention; Figure 2 It is a schematic diagram of the overall structure of the extension device in the present invention; Figure 3 It is a schematic diagram of the position of the first moving mechanism in the present invention; Figure 4 It is a structural schematic diagram of the tenoning and gluing mechanism of the present invention; Figure 5 It is a partial cross-sectional structural schematic diagram of the box body in the present invention; Figure 6 for Figure 2 A schematic diagram of the enlarged structure at A in the middle; Figure 7 for Figure 3 A schematic diagram of the enlarged structure at B in the middle; Figure 8 for Figure 3 Schematic diagram of the enlarged structure at C in the middle; Fig. 9 for Figure 3 Schematic diagram of the enlarged structure at D in the middle; Fig.10 for Figure 3 Schematic diagram of the enlarged structure at E in the middle; Fig.11 for Figure 4The enlarged structural diagram at F in the middle; Fig.12 for Fig.11 Schematic diagram of the enlarged structure at G in the middle.

[0021] In the figure: 1, bottom plate; 2, glue supply mechanism; 201, glue box; 202, fixed pipe; 203, piston; 204, first hose; 205, second hose; 3, first moving mechanism; 301, first moving frame; 302, second motor; 303, first conveying roller; 304, first T-shaped guide rod; 305, first connecting block; 306, third spring; 307, cone; 4, first telescopic mechanism; 401, first sleeve; 402, first sleeve rod; 403, first spring; 5, second telescopic mechanism; 501, fixed ring; 502, second spring; 6 , moving assembly; 601, U-shaped block; 602, second set of rods; 603, second sleeve; 604, second connecting block; 605, sixth spring; 606, electromagnet; 607, iron block; 7, second moving mechanism; 701, guide rod; 702, double-headed screw rod; 703, third motor; 8, pressing mechanism; 801, second moving frame; 802, second conveying roller; 803, second T-shaped guide rod; 804, third L-shaped plate; 805, fourth spring; 9, fixed length mechanism; 901, baffle; 902, third T-shaped guide rod; 903, fixed plate; 904 , fifth spring; 905, second distance sensor; 11, box; 12, strip opening; 13, conveyor; 1301, conveyor belt; 14, fixed block; 15, through hole; 16, dust cover; 17, dust fan; 18, bearing plate; 19, grinding mechanism; 1901, grinding plate; 1902, connecting frame; 1903, first guide plate; 20, tenoning and gluing mechanism; 2001, U-shaped frame; 2002, moving block; 2003, U-shaped plate; 2004, tenoning roller; 2005, first motor; 2006, moving plate; 2007, inclined plate; 2 008, first distance sensor; 2009, bristles; 2010, notches; 2011, rectangular tube; 2012, glue tube; 2013, grooves; 21, docking and cutting mechanism; 2101, support plate; 2102, discharge plate; 2103, cutting groove; 2104, cutting module; 2105, second guide plate; 2106, first L-shaped plate; 2107, first cylinder; 2108, first push plate; 2109, avoidance groove; 2110, second L-shaped plate; 2111, second cylinder; 2112, second push plate; 2113, collecting groove. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0023] See also Figure 1-Figure 12 The present invention provides a technical solution: a bamboo fiber composite board production process, comprising the following steps: S1: Raw material preparation: Select high-quality bamboo, clean, cut and crush it into fibers, and prepare adhesives, waterproof paint and other auxiliary materials; S2: Fiber mixing: Mix bamboo fiber with other composite materials, such as plastic and rubber, in proportion, add adhesive, waterproof paint and other auxiliary materials, and stir thoroughly; S3: High temperature pressing: Press the mixed fibers into a board under high temperature and high pressure to form a preliminary bamboo fiber composite board; S4: Cooling and shaping: Cooling the bamboo fiber composite board after high-temperature pressing to eliminate the thermal expansion and contraction coefficient and make the structure more stable; S5: Splicing and cutting: Use a splicing device to splice and cut the bamboo fiber composite board after cooling and shaping; S6: Surface treatment: According to application requirements, the bamboo fiber composite board is surface treated, such as painting, laminating, etc., to improve its decorativeness and durability.

[0024] The extension device includes a box body 11 arranged on the top of the bottom plate 1, and a strip opening 12 is opened on the top of the box body 11, a conveyor 13 is arranged in the box body 11, and the conveyor 13 includes a conveyor belt 1301, and a plurality of fixed blocks 14 arranged in an array are fixedly connected to the surface of the conveyor belt 1301, and the number of each fixed block 14 is two, the conveyor belt 1301 is located directly below the strip opening 12, and the fixed block 14 is inserted in the strip opening 12, and a bearing plate 18 is fixedly connected to the top of the strip opening 12, and a grinding mechanism 19, a tenoning and gluing mechanism 20 and a docking and cutting mechanism 21 are sequentially arranged on the top of the box body 11, and the grinding mechanism 19 is used to grind the two ends of the bamboo fiber composite board, the tenoning and gluing mechanism 20 is used to tenon and gluing the polished bamboo fiber composite board, and the docking and cutting mechanism 21 is used to dock and cut the glued bamboo fiber composite board; The grinding mechanism 19 includes two symmetrically arranged grinding plates 1901 fixedly connected to the top of the box body 11, and the side wall of one of the grinding plates 1901 is fixedly connected with two symmetrically arranged connecting frames 1902, and the side wall of the connecting frame 1902 is fixedly connected with two L-shaped first guide plates 1903, and the side wall of the first guide plate 1903 is provided with a first moving mechanism 3 for moving the bamboo fiber composite board; The tenoning and gluing mechanism 20 includes a U-shaped frame 2001 fixedly connected to the top of the box body 11, and the bottom of the U-shaped frame 2001 is connected to two symmetrically arranged moving blocks 2002 through a second moving mechanism 7, and the opposite side walls of the two moving blocks 2002 are fixedly connected to two symmetrically arranged U-shaped plates 2003, and the side walls of the U-shaped plates 2003 are rotatably connected to tenoning rollers 2004 through a first rotating shaft, and the side walls of the U-shaped plates 2003 are fixedly connected to a first motor 2005, and the output end of the first motor 2005 is fixed to one end of the first rotating shaft, and the top of each U-shaped plate 2003 is connected to two symmetrically arranged moving plates 2006 through a first telescopic mechanism 4. The side wall of the U-shaped plate 2003 is fixedly connected with a first distance sensor 2008, the side wall of each movable plate 2006 is fixedly connected with an inclined plate 2007, and the bottom of the inclined plate 2007 is fixedly connected with a plurality of horizontally arranged bristles 2009, the side wall of the inclined plate 2007 is provided with a slot 2010, and a rectangular tube 2011 is connected in the slot 2010 through a movable component 6, the side wall of the rectangular tube 2011 is inserted with a plurality of glue coating tubes 2012 through a second telescopic mechanism 5, and a groove 2013 is provided at the end of each glue coating tube 2012, and a glue supply mechanism 2 for automatically supplying glue to the glue coating tube 2012 is provided on the side wall of each U-shaped plate 2003; The docking and cutting mechanism 21 includes a support plate 2101 fixedly connected to the top of the bottom plate 1, and a discharge plate 2102 is fixedly connected between the support plate 2101 and the top of the box body 11, a cutting groove 2103 is provided on the top of the discharge plate 2102, and a cutting module 2104 is provided on the bottom of the discharge plate 2102, a first L-shaped plate 2106 is fixedly connected to the side wall of the box body 11, and a first cylinder 2107 is fixedly connected to the side wall of the first L-shaped plate 2106, a first push plate 2108 is fixedly connected to the telescopic end of the first cylinder 2107, and a plurality of avoidance grooves 2109 are provided on the side wall of the first push plate 2108, two symmetrically arranged second guide plates 2105 are fixedly connected to the top of the discharge plate 2102, and a second L-shaped plate 2110 is fixedly connected to the bottom of the discharge plate 2102, and a second The side wall of the L-shaped plate 2110 is fixedly connected to a second cylinder 2111, and the telescopic end of the second cylinder 2111 is fixedly connected to a second push plate 2112. A collecting trough 2113 is arranged on the top of the bottom plate 1, and a pressing mechanism 8 for pressing the bamboo fiber composite board is arranged on the top of the discharge plate 2102, and a fixed-length mechanism 9 for cutting the bamboo fiber composite board to a fixed length is arranged on the top of the discharge plate 2102. When the bamboo fiber composite board is extended, it is convenient to grind, mortise and tenon and apply glue to both ends of the bamboo fiber composite board, and at the same time, the gluing is made more uniform and the effect is better, thereby ensuring the efficiency and quality of the extension; when docking, it can avoid deviation and shaking during docking, and it is convenient to achieve fixed-length cutting, which can ensure the quality of the extension; it can realize continuous and automatic extension operation and improve the efficiency of the extension.

[0025] The glue supply mechanism 2 includes a glue box 201 fixedly connected to the side wall of the moving block 2002, and a fixed pipe 202 is fixedly connected to the top of the U-shaped plate 2003, a piston 203 is slidably connected in the fixed pipe 202, and the piston 203 is fixed to the side wall of the moving plate 2006, a first hose 204 is fixedly connected between the fixed pipe 202 and the glue box 201, and a first one-way valve is arranged in the first hose 204, and the conduction direction of the first one-way valve is from the glue box 201 to the fixed pipe 202, a second hose 205 is fixedly connected between the fixed pipe 202 and the rectangular pipe 2011, and a second one-way valve is arranged in the second hose 205, and the conduction direction of the second one-way valve is from the fixed pipe 202 To the rectangular tube 2011, when the movable plate 2006 moves upward, it drives the piston 203 to move upward along the fixed tube 202, so that negative pressure is generated in the fixed tube 202. At the same time, the first one-way valve is opened and the second one-way valve is closed. At this time, the glue in the glue box 201 enters the fixed tube 202 through the first hose 204 for temporary storage. When the movable plate 2006 moves downward, it can drive the piston 203 to move downward along the fixed tube 202, so that the glue temporarily stored in the fixed tube 202 can be squeezed. At the same time, the first one-way valve is closed and the second one-way valve is opened. At this time, the glue in the fixed tube 202 is squeezed and enters the rectangular tube 2011 through the second hose 205.

[0026] The first telescopic mechanism 4 includes two symmetrically arranged first rods 402 fixedly connected to the top of each U-shaped plate 2003, and the side walls of the first rods 402 are sleeved with a first sleeve 401, the upper end of the first sleeve 401 is fixed to the bottom of the movable plate 2006, and the side walls of the first sleeve 401 are sleeved with a first spring 403, which guides and resets the movement of the movable plate 2006.

[0027] The second telescopic mechanism 5 includes a fixing ring 501 fixedly connected to the side wall of each glue coating tube 2012. The side wall of each glue coating tube 2012 is sleeved with a second spring 502, and the two ends of the second spring 502 are respectively fixed to the fixing ring 501 and the side wall of the rectangular tube 2011. When the glue coating tube 2012 is in contact with the surface of the mortise and tenon, the second spring 502 is compressed, thereby ensuring that the end of the glue coating tube 2012 can contact the surface of the mortise and tenon, thereby ensuring the quality of the glue coating.

[0028] The first moving mechanism 3 includes a first moving frame 301, and the first moving frame 301 is rotatably connected with a first conveying roller 303 through a second rotating shaft, and conical surfaces 307 are arranged at both ends of the first conveying roller 303, and the side wall of the first moving frame 301 is fixedly connected with a second motor 302, and the output end of the second motor 302 is fixed to one end of the second rotating shaft, and the top of the first moving frame 301 is fixedly connected with two symmetrically arranged first T-shaped guide rods 304, and the side wall of each first T-shaped guide rod 304 is sleeved with a first connecting block 305, and the first connecting block 305 is fixed to the side wall of the first guide plate 1903, and the side wall of each first T-shaped guide rod 304 is sleeved with a third spring 306, when the transported bamboo fiber composite board abuts against the conical surface 307, it can push the first The conveying roller 303 and the first moving frame 301 move upward, and at the same time, the third spring 306 is compressed, and under the action of the third spring 306, the first conveying roller 303 is abutted against the top of the bamboo fiber composite board, and the second motor 302 is started, and the rotation of the second motor 302 drives the rotation of the first conveying roller 303, so that the bamboo fiber composite board can be pushed against the side wall of one of the polishing plates 1901, so that one end of the bamboo fiber composite board is polished. After the polishing is completed, the second motor 302 is started to reverse, and the bamboo fiber composite board can be pushed against the side wall of the other polishing plate 1901, so as to facilitate the polishing operation on both ends of the bamboo fiber composite board, ensure the quality of subsequent mortising and docking, and then ensure the production quality.

[0029] The clamping mechanism 8 includes a second moving frame 801, and the second moving frame 801 is rotatably connected with a second conveying roller 802 via a third rotating shaft. The top of the second moving frame 801 is fixedly connected with two symmetrically arranged second T-shaped guide rods 803, and the side walls of each second T-shaped guide rod 803 are sleeved with a third L-shaped plate 804, the third L-shaped plate 804 is fixed to the top of the discharge plate 2102, and the side walls of each second T-shaped guide rod 803 are sleeved with a fourth spring 805. When the bamboo fiber composite board moves to the docking position, the conveyor 13 is stopped, and then the first cylinder 2107 is started. The first push plate 2108 is made to abut against one end of the bamboo fiber composite board, and after sliding to the center along the second guide plate 2105, it is docked with the front extended bamboo fiber composite board. At the same time, under the action of the fourth spring 805, the second conveying roller 802 is made to abut against the top of the bamboo fiber composite board, so that the front extended bamboo fiber composite board can be pressed, and the extrusion force can be kept constant during docking, and deviation and shaking during docking can be avoided, thereby ensuring the quality of docking. After the docking is completed, the second conveying roller 802 can press and convey the bamboo fiber composite board.

[0030] The fixed length mechanism 9 includes a fixed plate 903 fixedly connected to the top of the discharge plate 2102, and two symmetrically arranged third T-shaped guide rods 902 are inserted into the side wall of the fixed plate 903, one end of the third T-shaped guide rod 902 is fixedly connected to a baffle 901, and the side wall of each third T-shaped guide rod 902 is sleeved with a fifth spring 904, and the side wall of the fixed plate 903 is fixedly inserted with a second distance sensor 905. When the extended bamboo fiber composite board is against the side wall of the baffle 901, the baffle 901 is pushed to move in the direction close to the fixed plate 903. When the second distance sensor 905 detects that the baffle 901 is a certain distance away from the fixed plate 903, the first cylinder 2107 is stopped, and then the extended bamboo fiber composite board is cut by the cutting module 2104, and the second cylinder 2111 is started, and the cut bamboo fiber composite board is pushed into the collecting tank 2113 for collection by the second pushing plate 2112, so as to achieve fixed-length cutting and ensure the quality of the extension.

[0031] The moving component 6 includes a U-shaped block 601 fixedly connected to the side wall of the inclined plate 2007, and the side wall of the U-shaped block 601 is fixedly connected with two symmetrically arranged second rods 602, the side wall of the second rod 602 is sleeved with a second sleeve 603, and the other end of the second sleeve 603 is fixedly connected with a second connecting block 604, the second connecting block 604 is fixed to the side wall of the rectangular tube 2011, and the side wall of each second sleeve 603 is sleeved with a sixth spring 605, the side wall of the U-shaped block 601 is fixedly connected with an electromagnet 606, and the side wall of the second connecting block 604 is fixedly connected with an iron block 607, the electromagnet 606 is energized, and the electromagnet 606 attracts the iron block 607 after being energized, so that the rectangular tube 2011 drives multiple glue-coated tubes 2012 to move, and at the same time, the sixth spring 605 is compressed and moves the glue-coated tube 2012 into the slot 2010 to avoid interference.

[0032] The second moving mechanism 7 includes a guide rod 701 fixedly connected to the side wall of the U-shaped frame 2001, and the moving block 2002 is sleeved on the side wall of the guide rod 701, the side wall of the U-shaped frame 2001 is rotatably connected with a double-headed screw rod 702, and the moving block 2002 is threadedly connected to the threaded portion of the double-headed screw rod 702, the side wall of the U-shaped frame 2001 is fixedly connected with a third motor 703, and the output end of the third motor 703 is fixed to one end of the double-headed screw rod 702, the third motor 703 is started, and the rotation of the third motor 703 drives the rotation of the double-headed screw rod 702, thereby driving the two moving blocks 2002 to move closer to or away from each other.

[0033] A dust suction mechanism is provided below the conveyor belt 1301, and the dust suction mechanism includes a dust hood 16 fixedly connected to the inner wall of the box body 11, the dust hood 16 is fitted with the bottom of the conveyor belt 1301, and the surface of the conveyor belt 1301 is provided with a plurality of through holes 15 arranged in an array, and a dust suction fan 17 is fixedly connected to the side wall of the dust hood 16. When the dust suction fan 17 is started, the through hole 15 can absorb the generated debris, and then pass through the dust hood 16 and the dust suction fan 17 into an external filtering device for filtration and collection, which is healthier and more environmentally friendly.

[0034] Working principle: When in use, when the bamboo fiber composite board is extended, firstly, a plurality of bamboo fiber composite boards are stacked and placed between the two first guide plates 1903, then, the conveyor 13 is started to drive the conveyor belt 1301 for conveying, and when the fixed block 14 abuts against the bamboo fiber composite board in the first guide plate 1903, it can push a bamboo fiber composite board at the bottom to be conveyed along the top of the bearing plate 18, and at the same time, when the conveyed bamboo fiber composite board abuts against the conical surface 307, it can push the first conveying roller 303 and the first moving frame 301 to move upward, and at the same time, the third spring 306 is compressed, and, at the third spring Under the action of 306, the first conveying roller 303 is abutted against the top of the bamboo fiber composite board, and the second motor 302 is started. The rotation of the second motor 302 drives the rotation of the first conveying roller 303, so that the bamboo fiber composite board can be pushed against the side wall of one of the grinding plates 1901, so that one end of the bamboo fiber composite board is polished. After the grinding is completed, the second motor 302 is started to reverse, so that the bamboo fiber composite board can be pushed against the side wall of the other grinding plate 1901, so that the two ends of the bamboo fiber composite board can be polished, thereby ensuring the quality of subsequent tenoning and docking, and thus ensuring the production quality; After the bamboo fiber composite board is polished, when it is transported between the two tenoning rollers 2004, the conveyor 13 is stopped, and the transportation of the bamboo fiber composite board is stopped. Then, the third motor 703 is started, and the rotation of the third motor 703 drives the rotation of the double-headed screw 702, thereby driving the two moving blocks 2002 to move closer to each other, and driving the tenoning rollers 2004 and the inclined plate 2007 to move through the U-shaped plate 2003. When the inclined plate 2007 is against the end of the bamboo fiber composite board, it can push the bamboo fiber composite board to be centered. After the adjustment is completed, when the moving block 2002 continues to move, it can push the inclined plate 2007 along The two ends of the bamboo fiber composite board slide upward and drive the moving plate 2006 to move upward, the first spring 403 is stretched, and at the same time, the electromagnet 606 is energized, and the electromagnet 606 attracts the iron block 607 after being energized, so that the rectangular tube 2011 drives the multiple glue tubes 2012 to move, and at the same time, the sixth spring 605 is compressed and moves the glue tube 2012 into the notch 2010. When the bottom of the inclined plate 2007 moves to the top of the bamboo fiber composite board, the bamboo fiber composite board can be pressed under the action of the first spring 403. At the same time, the first distance sensor 2008 detects that the distance of the moving plate 2006 no longer changes; At this time, the third motor 703 is stopped, and then the first motor 2005 is started. The rotation of the first motor 2005 drives the rotation of the tenoning roller 2004. Then, the third motor 703 is started again, so that the U-shaped plate 2003 drives the tenoning roller 2004 to continue to move a certain distance, so that the tenoning operation can be performed on both ends of the bamboo fiber composite board, and it can be applicable to bamboo fiber composite boards of different lengths, with stronger applicability and more convenient and quicker use. At the same time, when the movable plate 2006 moves upward, it drives the piston 203 to move upward along the fixed tube 202, so that negative pressure is generated in the fixed tube 202. At the same time, the first one-way valve is opened and the second one-way valve is closed. At this time, the glue in the glue box 201 enters the fixed tube 202 through the first hose 204 for temporary storage. After the tenoning is completed, the two U-shaped plates 2003 and the tenoning rollers 2004 are driven to move away from each other by the second moving mechanism 7. At this time, the inclined plate 2007 slides along the top of the bamboo fiber composite board. When the inclined plate 2007 and the two ends of the bamboo fiber composite board are against each other, the inclined plate 2007 and the moving plate 2006 can move downward and reset under the action of the first spring 403, so that the inclined plate 2007 slides downward along the two ends of the bamboo fiber composite board. At this time, the bristles 2009 can clean the debris in the tenon groove, and the glue tube 201 is ready to be applied. 2 is flush with the top of the tenon groove, the first distance sensor 2008 detects the distance change of the moving plate 2006 to determine, and the electromagnet 606 is powered off. At this time, the rectangular tube 2011 can be reset in the direction away from the U-shaped block 601 under the action of the sixth spring 605, and the second telescopic mechanism 5 drives the glue coating tube 2012 to move in the direction close to the tenon groove. When the glue coating tube 2012 is against the surface of the tenon groove, the second spring 502 is compressed, thereby ensuring that the end of the glue coating tube 2012 can contact the surface of the tenon groove; Furthermore, when the movable plate 2006 moves downward, the piston 203 can be driven to move downward along the fixed tube 202, so that the glue temporarily stored in the fixed tube 202 can be squeezed. At the same time, the first one-way valve is closed and the second one-way valve is opened. At this time, the glue in the fixed tube 202 is squeezed and enters the rectangular tube 2011 through the second hose 205, and is smeared on the surface of the mortise and tenon through the glue-spreading tube 2012 and the groove 2013, making the glue-spreading more convenient and quick, and making the glue-spreading more uniform and effective, thereby ensuring the quality of the subsequent extension, and being applicable to bamboo fiber composite boards of different thicknesses; Furthermore, during production, the dust suction fan 17 is started. At this time, the through hole 15 can absorb the generated debris, and then pass through the dust suction cover 16 and the dust suction fan 17 and enter the external filtering device for filtration and collection, which is more healthy and environmentally friendly. After the tenoning and gluing are completed, the conveyor 13 is started, so that the conveyor belt 1301 and the fixed block 14 drive the bamboo fiber composite board to continue to be conveyed forward along the top of the load-bearing plate 18. When it moves to the docking position, the conveyor 13 is stopped, and then the first cylinder 2107 is started, so that the first push plate 2108 is abutted against one end of the bamboo fiber composite board, and slides along the second guide plate 2105 to the center and docks with the front extended bamboo fiber composite board. At the same time, under the action of the fourth spring 805, the second conveying roller 802 is abutted against the top of the bamboo fiber composite board, which can press the front extended bamboo fiber composite board, ensure the constant extrusion force during docking, and avoid deviation and shaking during docking, thereby ensuring the quality of docking; After the docking is completed, the second conveying roller 802 can press and convey the bamboo fiber composite board. When the extended bamboo fiber composite board is against the side wall of the baffle 901, the baffle 901 is pushed to move towards the fixed plate 903. When the second distance sensor 905 detects that the baffle 901 is a certain distance away from the fixed plate 903, the first cylinder 2107 is stopped, and then the extended bamboo fiber composite board is cut by the cutting module 2104, and the second cylinder 2111 is started, and the cut bamboo fiber composite board is pushed into the collecting tank 2113 for collection by the second pushing plate 2112, so as to realize fixed-length cutting, ensure the quality of the extension, realize continuous and automatic extension operation, and improve the efficiency of the extension.

Claims

1. A bamboo fiber composite board production process, characterized in that: The following steps are involved: S1: Raw material preparation: Select high-quality bamboo, clean, cut and crush it into fibers, and prepare adhesives, waterproof paint and other auxiliary materials; S2: Fiber mixing: Mix bamboo fiber with other composite materials in proportion, add adhesive, waterproof paint and other auxiliary materials, and stir well; S3: High temperature pressing: Press the mixed fibers into a board under high temperature and high pressure to form a preliminary bamboo fiber composite board; S4: Cooling and shaping: Cooling the bamboo fiber composite board after high-temperature pressing to eliminate the thermal expansion and contraction coefficient and make the structure more stable; S5: Splicing and cutting: Use a splicing device to splice and cut the cooled and shaped bamboo fiber composite board; S6: Surface treatment: According to application requirements, the bamboo fiber composite board is surface treated to improve its decorativeness and durability; The extension device comprises a box body (11) arranged on the top of the bottom plate (1), and a strip-shaped opening (12) is opened on the top of the box body (11). A conveyor (13) is arranged in the box body (11), and the conveyor (13) comprises a conveyor belt (1301). A plurality of fixed blocks (14) arranged in an array are fixedly connected to the surface of the conveyor belt (1301), and the number of each fixed block (14) is two. The conveyor belt (1301) is located directly below the strip-shaped opening (12), and the fixed blocks (14) are inserted in A bearing plate (18) is fixedly connected to the top of the strip-shaped opening (12), and a grinding mechanism (19), a tenoning and gluing mechanism (20), and a butt-jointing and cutting mechanism (21) are sequentially arranged on the top of the box body (11), wherein the grinding mechanism (19) is used to grind the two ends of the bamboo fiber composite board, the tenoning and gluing mechanism (20) is used to tenon and gluing the polished bamboo fiber composite board, and the butt-jointing and cutting mechanism (21) is used to butt and cut the glued bamboo fiber composite board.

2. The production process of a bamboo fiber composite board according to claim 1, characterized in that: The polishing mechanism (19) comprises two symmetrically arranged polishing plates (1901) fixedly connected to the top of the box body (11), and the side wall of one of the polishing plates (1901) is fixedly connected to two symmetrically arranged connecting frames (1902), the side wall of the connecting frame (1902) is fixedly connected to two L-shaped first guide plates (1903), and the side wall of the first guide plate (1903) is provided with a first moving mechanism (3) for moving the bamboo fiber composite board; The tenoning and gluing mechanism (20) comprises a U-shaped frame (2001) fixedly connected to the top of the box body (11), and the bottom of the U-shaped frame (2001) is connected to two symmetrically arranged moving blocks (2002) via a second moving mechanism (7), and the opposite side walls of the two moving blocks (2002) are fixedly connected to two symmetrically arranged U-shaped plates (2003), and the side walls of the U-shaped plates (2003) are rotatably connected to tenoning rollers (2004) via a first rotating shaft, and the side walls of the U-shaped plates (2003) are fixedly connected to a first motor (2005), and the output end of the first motor (2005) is fixed to one end of the first rotating shaft, and the top of each U-shaped plate (2003) is connected to two symmetrically arranged moving plates (2006) via a first telescopic mechanism (4), and the U-shaped The side wall of the plate (2003) is fixedly connected to a first distance sensor (2008), the side wall of each movable plate (2006) is fixedly connected to an inclined plate (2007), and the bottom of the inclined plate (2007) is fixedly connected to a plurality of horizontally arranged bristles (2009), the side wall of the inclined plate (2007) is provided with a notch (2010), and a rectangular tube (2011) is connected in the notch (2010) via a movable component (6), the side wall of the rectangular tube (2011) is provided with a plurality of glue coating tubes (2012) via a second telescopic mechanism (5), the end of each glue coating tube (2012) is provided with a groove (2013), and the side wall of each U-shaped plate (2003) is provided with a glue supply mechanism (2) for automatically supplying glue to the glue coating tube (2012); The docking and cutting mechanism (21) comprises a support plate (2101) fixedly connected to the top of the bottom plate (1), and a discharge plate (2102) is fixedly connected between the support plate (2101) and the top of the box body (11), a cutting groove (2103) is provided on the top of the discharge plate (2102) and a cutting module (2104) is provided on the bottom of the discharge plate (2102), a first L-shaped plate (2106) is fixedly connected to the side wall of the box body (11), and a first cylinder (2107) is fixedly connected to the side wall of the first L-shaped plate (2106), a first push plate (2108) is fixedly connected to the telescopic end of the first cylinder (2107), and a plurality of push plates (2108) are provided on the side wall of the first push plate (2108). an avoidance groove (2109), the top of the discharge plate (2102) is fixedly connected to two symmetrically arranged second guide plates (2105), the bottom of the discharge plate (2102) is fixedly connected to a second L-shaped plate (2110), the side wall of the second L-shaped plate (2110) is fixedly connected to a second cylinder (2111), and the telescopic end of the second cylinder (2111) is fixedly connected to a second push plate (2112), the top of the bottom plate (1) is provided with a collecting groove (2113), the top of the discharge plate (2102) is provided with a pressing mechanism (8) for pressing the bamboo fiber composite board, and the top of the discharge plate (2102) is provided with a fixed length mechanism (9) for cutting the bamboo fiber composite board to a fixed length; The glue supply mechanism (2) comprises a glue box (201) fixedly connected to the side wall of the moving block (2002), and a fixed pipe (202) is fixedly connected to the top of the U-shaped plate (2003), a piston (203) is slidably connected inside the fixed pipe (202), and the piston (203) is fixed to the side wall of the moving plate (2006), a first hose (204) is fixedly connected between the fixed pipe (202) and the glue box (201), and a first one-way valve is arranged inside the first hose (204), and a second hose (205) is fixedly connected between the fixed pipe (202) and the rectangular tube (2011), and a second one-way valve is arranged inside the second hose (205).

3. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The first telescopic mechanism (4) comprises two symmetrically arranged first sets of rods (402) fixedly connected to the tops of the respective U-shaped plates (2003), and the side walls of the first sets of rods (402) are sleeved with first sleeves (401), the upper end of the first sleeve (401) is fixed to the bottom of the movable plate (2006), and the side walls of the first sleeve (401) are sleeved with first springs (403).

4. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The second telescopic mechanism (5) comprises a fixing ring (501) fixedly connected to the side wall of each glue coating tube (2012), the side wall of each glue coating tube (2012) is sleeved with a second spring (502), and the two ends of the second spring (502) are respectively fixed to the fixing ring (501) and the side wall of the rectangular tube (2011).

5. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The first moving mechanism (3) comprises a first moving frame (301), and a first conveying roller (303) is rotatably connected to the first moving frame (301) via a second rotating shaft, and conical surfaces (307) are arranged at both ends of the first conveying roller (303). A second motor (302) is fixedly connected to the side wall of the first moving frame (301), and an output end of the second motor (302) is fixed to one end of the second rotating shaft. Two symmetrically arranged first T-shaped guide rods (304) are fixedly connected to the top of the first moving frame (301), and a first connecting block (305) is sleeved on the side wall of each first T-shaped guide rod (304), and the first connecting block (305) is fixed to the side wall of the first guide plate (1903), and a third spring (306) is sleeved on the side wall of each first T-shaped guide rod (304).

6. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The clamping mechanism (8) comprises a second movable frame (801), and a second conveying roller (802) is rotatably connected to the second movable frame (801) via a third rotating shaft; two symmetrically arranged second T-shaped guide rods (803) are fixedly connected to the top of the second movable frame (801), and a third L-shaped plate (804) is sleeved on the side wall of each second T-shaped guide rod (803); the third L-shaped plate (804) is fixed to the top of the discharge plate (2102), and a fourth spring (805) is sleeved on the side wall of each second T-shaped guide rod (803).

7. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The length-fixing mechanism (9) comprises a fixing plate (903) fixedly connected to the top of the discharge plate (2102), and two symmetrically arranged third T-shaped guide rods (902) are inserted into the side wall of the fixing plate (903), one end of the third T-shaped guide rod (902) is fixedly connected to a baffle (901), a fifth spring (904) is sleeved on the side wall of each of the third T-shaped guide rods (902), and a second distance sensor (905) is fixedly inserted into the side wall of the fixing plate (903).

8. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The moving assembly (6) comprises a U-shaped block (601) fixedly connected to the side wall of the inclined plate (2007), and the side wall of the U-shaped block (601) is fixedly connected to two symmetrically arranged second sleeve rods (602), the side wall of the second sleeve rod (602) is sleeved with a second sleeve tube (603), and the other end of the second sleeve tube (603) is fixedly connected to a second connecting block (604), the second connecting block (604) is fixed to the side wall of the rectangular tube (2011), and the side wall of each second sleeve tube (603) is sleeved with a sixth spring (605), the side wall of the U-shaped block (601) is fixedly connected to an electromagnet (606), and the side wall of the second connecting block (604) is fixedly connected to an iron block (607).

9. The production process of a bamboo fiber composite board according to claim 2, characterized in that: The second moving mechanism (7) comprises a guide rod (701) fixedly connected to the side wall of the U-shaped frame (2001), and a moving block (2002) is sleeved on the side wall of the guide rod (701); the side wall of the U-shaped frame (2001) is rotatably connected to a double-headed screw rod (702), and the moving block (2002) is threadedly connected to a threaded portion of the double-headed screw rod (702); the side wall of the U-shaped frame (2001) is fixedly connected to a third motor (703), and an output end of the third motor (703) is fixed to one end of the double-headed screw rod (702).

10. The production process of a bamboo fiber composite board according to claim 1, characterized in that: A dust suction mechanism is provided below the conveyor belt (1301), and the dust suction mechanism comprises a dust suction hood (16) fixedly connected to the inner wall of the box body (11), the dust suction hood (16) is in contact with the bottom of the conveyor belt (1301), and a plurality of through holes (15) arranged in an array are provided on the surface of the conveyor belt (1301), and a dust suction fan (17) is fixedly connected to the side wall of the dust suction hood (16).

Citation Information

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