A method for splicing a deburred bamboo board

By integrating bamboo strip feeding, glue spraying, and flipping into an automated bamboo board splicing method, the problems of low splicing efficiency and inconsistent quality of bamboo boards have been solved, achieving efficient and neat splicing of bamboo boards and supporting continuous production of bamboo boards.

CN117001788BActive Publication Date: 2026-04-28福建同竹科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
福建同竹科技有限公司
Filing Date
2023-06-07
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The existing bamboo panel splicing process is inefficient and of inconsistent quality, making it difficult to meet the needs of continuous production and high-quality splicing.

Method used

Design an automated bamboo board splicing method that integrates bamboo strip feeding, glue spraying, and flipping. The method achieves automated bamboo board splicing through integrated operation of bamboo strip lifting, glue spraying, rotation, and side pressing.

Benefits of technology

It improves the efficiency of bamboo board splicing, ensures that bamboo strips are arranged neatly, enhances the splicing quality, and supports the continuous production of bamboo boards.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN117001788B_ABST
    Figure CN117001788B_ABST
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Abstract

The present application relates to a kind of deburring bamboo board splicing methods, bamboo strip jacking mechanism will be several long width face up bamboo strip upward jacking, push material mechanism will be pushed to the bamboo strip on the conveying belt;Conveying belt will be sent to the bamboo strip to splicing workbench, glue spraying mechanism is sprayed to the long width face of bamboo strip;Bamboo strip rotating mechanism is from left and right two ends to clamp several bamboo strips on splicing workbench, then will be moved to the side pressure plate above, bamboo strip rotating mechanism will be rotated 90 degrees to the bamboo strip in the same direction, so that the long narrow face of bamboo strip is up, bamboo strip rotating mechanism will be placed after rotating the bamboo strip on splicing workbench;Shaping mechanism is from left and right sides to arrange several after rotating bamboo strip, so that the end face of several bamboo strips is in line;Bamboo strip rotating mechanism front and rear side pressure plate moves towards, several bamboo strips are clamped from front and rear direction and pressure is kept.The method effectively improves the splicing efficiency and splicing quality of bamboo board, and is conducive to the continuous operation of bamboo board splicing.
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Description

Technical fields:

[0001] This invention relates to a method for splicing deburred bamboo boards. Background technology:

[0002] In the processing of bamboo boards, the bamboo is first cut, nodes are removed, it is split into pieces, and it is polished to obtain bamboo strips that meet the requirements. Then, the bamboo strips are sprayed with glue and spliced ​​together to form bamboo boards. Finally, the bamboo boards are used to make the desired bamboo products.

[0003] Bamboo boards can be broadly classified into two categories based on the arrangement of the bamboo strips: flat-pressed bamboo boards and side-pressed bamboo boards. Side-pressed bamboo boards are made by pressing bamboo strips together vertically, resulting in a single layer. During production, the narrower side of the bamboo strip faces upwards, and the boards are pressed from both sides. A key characteristic is that only the finest bamboo strips can be used, and the entire board is clearly visible from top to bottom, with no hidden materials. Flat-pressed bamboo boards, on the other hand, are made using a horizontally combined method. The wider side of the bamboo strip faces upwards, and the boards are pressed together with heat. Because the thickness of a single bamboo strip cannot match the thickness of a single board, they are typically made by stacking three layers together.

[0004] Currently, when preparing bamboo boards using the side-press splicing method, the long and wide sides of the bamboo strips are first glued using an adhesive applicator. Then, multiple bamboo strips are manually spliced ​​together along their long and wide sides and finally manually fed into the side-pressing equipment. Because the splicing process is done manually, it is not only inefficient and not conducive to continuous production, but also results in inconsistent quality of the bamboo boards produced, which cannot adequately meet production needs. Summary of the Invention:

[0005] The present invention addresses the problems existing in the prior art by providing a method for splicing bamboo boards with deburred parts. This method is reasonably designed and effectively improves production efficiency and the quality of the finished bamboo boards.

[0006] To achieve the above objectives, the technical solution adopted by the present invention is as follows: A method for splicing bamboo strips with deburred bamboo strips includes the following steps: (1) A bamboo strip lifting mechanism lifts several horizontally arranged bamboo strips with their length and width facing upwards to the top and corresponds to a pushing mechanism. Then, the pushing mechanism pushes several bamboo strips at the top of the bamboo strip lifting mechanism to the right onto the conveyor belt; (2) The conveyor belt transports several bamboo strips from left to right to the splicing worktable, and during the transport process, a glue spraying mechanism sprays glue onto the length and width of several bamboo strips; (3) A bamboo strip rotating mechanism descends to a position close to the splicing worktable, and the bamboo strip rotating mechanism pushes the bamboo strips onto the splicing worktable from the left and right ends. The bamboo strips are clamped together, and then the bamboo strips are moved upward to the top of the side pressure plate. Then the bamboo strip rotation mechanism rotates the bamboo strips 90 degrees in the same direction so that the long and narrow sides of the bamboo strips face upward. Finally, the bamboo strip rotation mechanism moves the rotated bamboo strips downward and places them on the splicing worktable. The bamboo strip rotation mechanism then returns to its original position. (4) The shaping mechanism tidies up the rotated bamboo strips from the left and right sides so that the end faces of the bamboo strips are flush. (5) The side pressure plates on the front and back sides of the bamboo strip rotation mechanism move towards each other, clamping and pressing the bamboo strips from the front and back directions to splice the bamboo strips together.

[0007] Furthermore, the bamboo strip lifting mechanism is located on the left side of the conveyor belt and is used to lift the bamboo strips from bottom to top; the pushing mechanism is located above the left side of the lifting mechanism and is used to push the bamboo strips at the top of the bamboo strip lifting mechanism to the right onto the conveyor belt; the glue spraying mechanism is located above the conveyor belt and is used to spray glue onto the top surface of the bamboo strips; the right end of the conveyor belt is connected to a horizontally arranged splicing workbench; the bamboo strip rotating mechanism is located above the splicing workbench and is used to rotate several bamboo strips so that the long narrow side faces upward; the bamboo strip rotating mechanism is provided with side pressure plates at the front and rear, and the side pressure plates are driven by a longitudinally arranged side pressure cylinder to move forward and backward longitudinally.

[0008] Furthermore, the bamboo strip lifting mechanism includes a bamboo strip placement groove, the inside of which is provided with a plurality of bamboo strip lifting cavities distributed longitudinally at intervals. The top of the bamboo strip lifting cavity is open, and the inside of the bamboo strip lifting cavity is provided with a bamboo strip lifting plate. The bamboo strip lifting plate is driven to rise and fall by a lifting cylinder vertically installed at the bottom of the bamboo strip lifting cavity.

[0009] Furthermore, the pushing mechanism includes a pushing plate longitudinally arranged above the left side of the bamboo strip placement groove. The pushing plate is driven by a pushing cylinder arranged laterally on its left side to move left and right in a lateral direction, so as to push the bamboo strips at the top of several bamboo strip lifting cavities to the right onto the conveyor belt.

[0010] Furthermore, several bamboo strip conveying channels are provided above the conveyor belt at intervals along the longitudinal direction. The positions of the bamboo strip conveying channels correspond to the positions of the bamboo strip lifting cavities, and the bamboo strip conveying channels are connected in the transverse direction.

[0011] Furthermore, the glue spraying mechanism includes a glue spraying pipe arranged longitudinally above several bamboo strip conveying channels. The bottom of the glue spraying pipe is provided with a pair of glue spraying heads directly above each bamboo strip conveying channel. The glue spraying pipe is connected to the glue storage tank through a pipeline.

[0012] Furthermore, the bamboo strip rotating mechanism includes a lifting seat plate horizontally positioned above the splicing workbench and driven to rise and fall by a first lifting cylinder. Several pairs of vertical connecting rods are fixed at the bottom of the lifting seat plate, with each pair of vertical connecting rods corresponding to several bamboo strips on the conveyor belt. Each pair of vertical connecting rods is distributed at the left and right ends of the bottom of the lifting seat plate. Between the lower ends of each pair of vertical connecting rods are a pair of rotating clamping plates distributed on the left and right, respectively, for contacting the left and right end faces of the bamboo strips. The axis of the rotating clamping plates is arranged horizontally. The rotating clamping plates are driven to rotate by a rotating cylinder, which is mounted on an L-shaped clamping seat. The clamping seat is driven to move left and right by a clamping cylinder mounted on the side of the vertical connecting rod away from the rotating clamping plate.

[0013] Furthermore, a microwave pressure plate is provided parallel to the lower part of the lifting seat plate for contacting the long narrow surface of several bamboo strips. The microwave pressure plate is located above the rotating clamp and is driven by several second lifting cylinders installed on the top of the lifting seat plate.

[0014] Furthermore, the left end of the splicing workbench is provided with a vertically penetrating groove, and a shaping baffle is provided in the vertical groove. The shaping baffle is driven to extend out of the vertical groove by a third lifting cylinder located below it. A shaping push plate is provided above the right end of the splicing workbench. The shaping push plate is parallel to the shaping baffle and is driven to move left and right by a shaping cylinder arranged horizontally on its right side. The shaping baffle and the shaping push plate are distributed on the left and right sides of the side pressure plate.

[0015] Compared with the prior art, the present invention has the following advantages: The present invention is reasonably designed and integrates bamboo strip feeding, glue spraying, flipping and side pressing into one unit, realizing the automation of bamboo board splicing, effectively improving the splicing efficiency of bamboo boards, and facilitating the continuous splicing of bamboo boards. At the same time, compared with the traditional manual splicing method, the bamboo strips are neatly arranged when side pressing splicing, which effectively improves the splicing quality. Attached image description:

[0016] Figure 1 This is a schematic diagram of the main structure of an embodiment of the present invention;

[0017] Figure 2 This is a top view of the structure of an embodiment of the present invention;

[0018] Figure 3 yes Figure 1Schematic diagram of the AA cross-section structure;

[0019] Figure 4 yes Figure 1 Schematic diagram of the BB cross-section structure;

[0020] Figure 5 This is a schematic diagram of the bamboo strip rotating mechanism in an embodiment of the present invention;

[0021] Figure 6 yes Figure 5 A schematic diagram of the working state of the bamboo strip rotating mechanism when clamping the bamboo strip;

[0022] Figure 7 yes Figure 6 A schematic diagram showing the state of the bamboo strip after the lieutenant general moves it upwards;

[0023] Figure 8 yes Figure 7 A diagram showing the bamboo strip rotated so that the longer, narrower side faces upwards.

[0024] Figure 9 yes Figure 8 A schematic diagram showing the state of the rotated bamboo strips placed on the splicing workbench and pressed down by a microwave pressure plate. Detailed implementation method:

[0025] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0026] In the description of this invention, it should be understood that the terms "longitudinal", "lateral", "up", "down", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this invention, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.

[0027] like Figures 1-4 As shown, the present invention provides a method for splicing bamboo boards after deburring, comprising the following steps: (1) A bamboo strip lifting mechanism 3 lifts several horizontally arranged bamboo strips 2 with their length and width facing upwards to the top and corresponds to a pushing mechanism 4. Then, the pushing mechanism 4 pushes several bamboo strips 2 at the top of the bamboo strip lifting mechanism 3 to the right onto the conveyor belt 1; (2) The conveyor belt 1 transports several bamboo strips from left to right onto the splicing worktable 6, and during the transport process, the glue spraying mechanism 5 sprays glue onto the length and width of several bamboo strips; (3) The bamboo strip rotating mechanism 7 descends to be close to the splicing worktable 6, and the bamboo strip rotating mechanism 7 clamps several bamboo strips 2 on the splicing worktable 6 from the left and right ends (e.g., ...). Figure 6(As shown), then move several bamboo strips 2 upwards to above the side pressure plate 8 (as shown). Figure 7 (As shown), then the bamboo strip rotating mechanism 7 rotates several bamboo strips 2 by 90 degrees in the same direction, so that the long, narrow side of the bamboo strips 2 faces upwards (as shown). Figure 8 As shown), finally, the bamboo strip rotating mechanism 7 moves the rotated bamboo strips 2 downwards and places them on the splicing worktable 6, and then the bamboo strip rotating mechanism 7 returns to its original position (as shown). Figure 9 (as shown); (4) The shaping mechanism arranges several rotated bamboo strips 2 from the left and right sides to make the end faces of several bamboo strips flush; (5) The side pressure plates 8 on the front and rear sides of the bamboo strip rotating mechanism 7 move towards each other to clamp and press several bamboo strips 2 from the front and rear directions, so as to splice several bamboo strips together. It integrates bamboo strip feeding, glue spraying, flipping and side pressing into one unit, realizes the automation of bamboo board splicing, effectively improves the splicing efficiency of bamboo board, and is conducive to the continuous splicing of bamboo board. At the same time, compared with the traditional manual splicing method, the bamboo strips are neatly arranged when side pressing splicing, which effectively improves the splicing quality.

[0028] In another embodiment, the bamboo strip lifting mechanism 3 is located on the left side of the conveyor belt 1 and is used to lift the bamboo strips 2 from bottom to top; the pushing mechanism 4 is located above the left side of the lifting mechanism 3 and is used to push the bamboo strips at the top of the bamboo strip lifting mechanism 3 to the right onto the conveyor belt 1; the glue spraying mechanism 5 is located above the conveyor belt 1 and is used to spray glue on the top surface (i.e., the long-to-wide surface) of the bamboo strips; the right end of the conveyor belt 1 is connected to the horizontally arranged splicing workbench 6; the bamboo strip rotating mechanism 7 is located above the splicing workbench 6 and is used to rotate several bamboo strips 2 so that the long-to-narrow surface faces upward; the bamboo strip rotating mechanism 7 is provided with side pressure plates 8 at the front and rear, and the side pressure plates 8 are driven by the longitudinally arranged side pressure cylinder 9 to move forward and backward along the longitudinal direction.

[0029] In another embodiment, the bamboo strip lifting mechanism 3 includes a bamboo strip placement groove 10 with an open top. The bamboo strip placement groove 10 has several bamboo strip lifting cavities 11 spaced longitudinally inside. Each bamboo strip lifting cavity 11 is a long, rectangular structure extending laterally. The top of each bamboo strip lifting cavity 11 is open, and a bamboo strip lifting plate 12 is located inside. The bamboo strip lifting plate 12 is driven 13 to rise and fall by a lifting cylinder vertically installed at the bottom of the bamboo strip lifting cavity 11. During operation, multiple bamboo strips stacked vertically are placed in the bamboo strip lifting cavity. The bamboo strip lifting plate supports the bamboo strips, and the lifting cylinder sequentially lifts the bamboo strips upwards through the bamboo strip lifting plate. The uppermost bamboo strip is positioned above the bamboo strip placement cavity, facilitating the pushing mechanism to push it from left to right.

[0030] In another embodiment, the pushing mechanism 4 includes a pushing plate 14 longitudinally positioned above the left side of the bamboo strip placement groove 10. The pushing plate 14 is driven by a pushing cylinder 15 laterally positioned on its left side to move laterally left and right, pushing the bamboo strips at the top of several bamboo strip lifting cavities to the right onto the conveyor belt. During operation, the pushing cylinder drives the pushing plate to move from left to right, and the pushing plate pushes several bamboo strips lifted out of the bamboo strip lifting cavities at once, improving the pushing efficiency.

[0031] In another embodiment, a plurality of bamboo strip conveying channels 16 are provided above the conveyor belt 1, spaced longitudinally. The positions of the bamboo strip conveying channels 16 correspond to the positions of the bamboo strip lifting cavities 11, and the bamboo strip conveying channels are transversely connected. By setting up the bamboo strip conveying channels, the conveyor belt can play a certain guiding role when conveying the bamboo strips.

[0032] In another embodiment, the glue spraying mechanism 5 includes a glue spraying pipe 17 longitudinally positioned above several bamboo strip conveying channels 16. A pair of glue spraying heads 18 are provided at the bottom of each glue spraying pipe 17 directly above each bamboo strip conveying channel. The glue spraying pipe is connected to a glue storage tank via a pipeline. During operation, as the bamboo strips are conveyed from left to right, the pair of glue spraying heads spray glue downwards, sequentially achieving glue spraying along the length and width of the bamboo strips.

[0033] In another embodiment, the bamboo strip rotating mechanism 7 includes a lifting seat plate 20 horizontally arranged above the splicing workbench 6 and driven to rise and fall by a first lifting cylinder 19. The bottom of the lifting seat plate 20 is fixed with several pairs of vertical connecting rods 21 distributed longitudinally at intervals. The positions of the several pairs of vertical connecting rods 21 correspond to the positions of several bamboo strips and several bamboo strip conveying channels on the conveyor belt 1. Each pair of vertical connecting rods 21 (i.e., two vertical connecting rods) is distributed at the left and right ends of the bottom of the lifting seat plate 20. Between the lower ends of each pair of vertical connecting rods 21, there is a pair of rotating clamping plates 22 distributed on the left and right and used to contact the left and right end faces of the bamboo strips respectively. The axis of the rotating clamping plate 22 is arranged laterally. The rotating clamping plate 22 is driven to rotate by a rotating cylinder 23. The rotating cylinder 23 is installed on an L-shaped clamping seat 24. The clamping seat 24 is driven to move left and right by a clamping cylinder 25 installed on the side of the vertical connecting rod 21 away from the rotating clamping plate 22. During operation, when the conveyor belt transports several bamboo strips to the splicing worktable, the first lifting cylinder drives the lifting seat plate to move downward, so that a pair of rotating clamps are distributed on the left and right sides of the bamboo strip. Then, the clamping cylinder drives the clamping seat to move toward the bamboo strip, so that the rotating clamps hold the end face of the bamboo strip. After that, the first lifting cylinder drives the lifting seat plate to move upward, while the rotating cylinder drives the rotating clamps to rotate. Since the bamboo strip is clamped between a pair of rotating clamps, the rotating clamps drive the bamboo strip to rotate, so that the bamboo strip rotates until the long side faces upward.

[0034] In another embodiment, a microwave pressing plate 26 is provided parallel to the lower part of the lifting seat plate 20 for contacting the long narrow face of several bamboo strips. The microwave pressing plate 26 is located above the rotating clamping plate 22 and is driven by several second lifting cylinders 32 installed on the top of the lifting seat plate. During operation, when the bamboo strips are rotated to the position where the long narrow face is facing upward and placed on the splicing worktable, and the side pressing plate clamps several bamboo strips together from the front and back, the second lifting cylinders drive the microwave pressing plate to move downward. The bottom surface of the microwave pressing plate contacts the long narrow face of several bamboo strips, and the microwave pressing plate uses microwaves to heat the bamboo strips so that the bamboo strips can be bonded together more quickly.

[0035] In another embodiment, the left end of the splicing workbench 6 is provided with a vertically penetrating longitudinal groove 27, and a shaping baffle 28 is provided in the longitudinal groove 27. The shaping baffle 28 is driven to extend out of the longitudinal groove by a third lifting cylinder 29 located below it. A shaping push plate 30 is provided above the right end of the splicing workbench 6. The shaping push plate 30 is parallel to the shaping baffle 28. The shaping push plate 30 is driven to move left and right by a shaping cylinder 31 arranged laterally on its right side. The shaping baffle 28 and the shaping push plate 30 are distributed on the left and right sides of the side pressure plate 8. The shaping push plate, the shaping baffle, and the shaping cylinder constitute a shaping mechanism. During operation, when the bamboo strips are flipped so that their long, narrow sides are facing upwards and placed on the splicing worktable, the third lifting cylinder drives the shaping baffle to extend upwards into the longitudinal groove. Then, the shaping cylinder pushes the shaping push plate towards the shaping baffle, bringing it into contact with the right side of the bamboo strip. The push plate then pushes the bamboo strip until its left end face contacts the shaping baffle. By using the combination of the shaping push plate and the shaping baffle, several bamboo strips are shaped to ensure their end faces are flush. It should be noted that the bamboo strips can also be shaped using the shaping baffle and the shaping push plate before flipping them, such as... Figure 5 As shown.

[0036] If this invention discloses or relates to components or structural parts that are fixedly connected to each other, then, unless otherwise stated, a fixed connection can be understood as: a fixed connection that can be detached (e.g., using bolts or screws), or a fixed connection that cannot be detached (e.g., riveting, welding). Of course, a fixed connection can also be replaced by an integral structure (e.g., manufactured in one piece using a casting process) (except where it is obviously impossible to use an integral molding process).

[0037] In addition, unless otherwise stated, the terms used in any of the technical solutions disclosed in this invention to indicate positional relationships or shapes include states or shapes that are similar to, close to, or approximate with those states or shapes.

[0038] Any component provided by this invention can be assembled from multiple individual components or can be a single component manufactured by a one-piece molding process.

[0039] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them; although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications can still be made to the specific implementation of the present invention or equivalent substitutions can be made to some technical features without departing from the spirit of the technical solutions of the present invention, and all such modifications and substitutions should be covered within the scope of the technical solutions claimed in the present invention.

Claims

1. A method for splicing deburred bamboo boards, characterized in that: The process includes the following steps: (1) The bamboo strip lifting mechanism lifts several horizontally arranged bamboo strips with their length and width facing upwards to the top and aligns them with the pushing mechanism. Then, the pushing mechanism pushes several bamboo strips at the top of the bamboo strip lifting mechanism to the right onto the conveyor belt; (2) The conveyor belt transports several bamboo strips from left to right to the splicing worktable, and during the transport process, the glue spraying mechanism sprays glue onto the length and width of several bamboo strips; (3) The bamboo strip rotating mechanism descends to a position close to the splicing worktable, clamps several bamboo strips on the splicing worktable from both the left and right ends, and then... The bamboo strips move upwards to the top of the side pressure plate. Then, the bamboo strip rotation mechanism rotates several bamboo strips 90 degrees in the same direction so that the long side of the bamboo strips faces upwards. Finally, the bamboo strip rotation mechanism moves the rotated bamboo strips downwards and places them on the splicing worktable. The bamboo strip rotation mechanism then returns to its original position. (4) The shaping mechanism tidies up the rotated bamboo strips from the left and right sides so that the end faces of the bamboo strips are flush. (5) The side pressure plates on the front and rear sides of the bamboo strip rotation mechanism move towards each other, clamping and pressing the bamboo strips from the front and rear directions to splice the bamboo strips together. The bamboo strip lifting mechanism is located on the left side of the conveyor belt and is used to lift bamboo strips from bottom to top; the pushing mechanism is located above the left side of the lifting mechanism and is used to push the bamboo strips at the top of the lifting mechanism to the right onto the conveyor belt; the glue spraying mechanism is located above the conveyor belt and is used to spray glue onto the top surface of the bamboo strips; the right end of the conveyor belt is connected to a horizontally set splicing worktable; the bamboo strip rotating mechanism is located above the splicing worktable and is used to rotate several bamboo strips so that the long and narrow sides face upwards; the bamboo strip rotating mechanism is equipped with side pressure plates at the front and rear, and the side pressure plates are driven by a longitudinally set side pressure cylinder to move forward and backward along the longitudinal direction; The bamboo strip rotating mechanism includes a lifting seat plate horizontally positioned above the splicing workbench and driven to rise and fall by a first lifting cylinder. Several pairs of vertical connecting rods are fixed at the bottom of the lifting seat plate, and the positions of the several pairs of vertical connecting rods correspond to the positions of several bamboo strips on the conveyor belt. Each pair of vertical connecting rods is distributed at the left and right ends of the bottom of the lifting seat plate. Between the lower ends of each pair of vertical connecting rods, there is a pair of rotating clamping plates distributed on the left and right, which are used to contact the left and right end faces of the bamboo strips respectively. The axis of the rotating clamping plate is arranged horizontally. The rotating clamping plate is driven to rotate by a rotating cylinder. The rotating cylinder is installed on an L-shaped clamping seat. The clamping seat is driven to move left and right by a clamping cylinder installed on the side of the vertical connecting rod away from the rotating clamping plate. A microwave pressing plate is provided parallel to the lower part of the lifting seat plate for contacting the long narrow surface of several bamboo strips. The microwave pressing plate is located above the rotating clamp and is driven by several second lifting cylinders installed on the top of the lifting seat plate. The left end of the splicing workbench is provided with a vertically penetrating groove, and a shaping baffle is provided in the vertical groove. The shaping baffle is driven to extend out of the vertical groove by a third lifting cylinder located below it. A shaping push plate is provided above the right end of the splicing workbench. The shaping push plate is parallel to the shaping baffle and is driven to move left and right by a shaping cylinder arranged horizontally on its right side. The shaping baffle and the shaping push plate are distributed on the left and right sides of the side pressure plate.

2. The method for splicing deburred bamboo boards according to claim 1, characterized in that: The bamboo strip lifting mechanism includes a bamboo strip placement groove, inside which are provided several bamboo strip lifting cavities distributed longitudinally at intervals. The top of each bamboo strip lifting cavity is open, and inside each bamboo strip lifting cavity is a bamboo strip lifting plate. The bamboo strip lifting plate is driven to rise and fall by a lifting cylinder vertically installed at the bottom of the bamboo strip lifting cavity.

3. The method for splicing deburred bamboo boards according to claim 2, characterized in that: The pushing mechanism includes a pushing plate that is longitudinally arranged above the left side of the bamboo strip placement groove. The pushing plate is driven by a pushing cylinder that is laterally arranged on its left side to move left and right in a horizontal direction, so as to push the bamboo strips at the top of several bamboo strip lifting cavities to the right onto the conveyor belt.

4. The method for splicing deburred bamboo boards according to claim 3, characterized in that: Above the conveyor belt are several bamboo strip conveying channels spaced longitudinally, and the positions of the bamboo strip conveying channels correspond to the positions of the bamboo strip lifting cavities. The bamboo strip conveying channels are transversely connected.

5. The method for splicing deburred bamboo boards according to claim 4, characterized in that: The glue spraying mechanism includes a glue spraying pipe arranged longitudinally above several bamboo strip conveying channels. The bottom of the glue spraying pipe is provided with a pair of glue spraying heads directly above each bamboo strip conveying channel. The glue spraying pipe is connected to a glue storage tank through a pipeline.

Citation Information

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