Wood board cloth belt penetrating mechanism

Through the automated feeding mechanism, driving mechanism and belt threading mechanism, combined with the ladder belt lifting assembly and support belt assembly, the problem of high efficiency and high quality of wooden board cloth threading that traditional manual operation and simple mechanical equipment are difficult to meet is solved, and automated production and stable finished product quality are achieved.

CN223482567UActive Publication Date: 2025-10-28DONGGUAN KELUBO AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202423030191.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-28
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

In the existing technology, manual operation and simple mechanical equipment are difficult to meet the demand for high-efficiency cloth threading on wooden boards, and the quality of finished products is unstable and cannot meet high-standard product requirements.

Method used

An automated system including a loading mechanism, a driving mechanism and a belt threading mechanism is adopted. The ladder belt lifting assembly and the belt supporting assembly are used to realize the automatic cloth belt threading process of the wooden board. The driving cylinder and the supporting cylinder are used to open the ladder belt, and the belt straightening assembly keeps the ladder belt straight to ensure that the wooden board passes through the cloth belt smoothly.

Benefits of technology

It improves work efficiency, reduces workers' labor intensity, ensures the stability of the wood board threading process and the quality of the finished product, and meets high-standard product requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of board tape threading, and particularly relates to a board cloth tape threading mechanism which comprises a feeding mechanism, a driving mechanism and a tape threading mechanism. The feeding mechanism is used for feeding wood boards, and the driving mechanism is arranged between the feeding mechanism and the belt penetrating mechanism and used for driving the wood boards to be conveyed to the belt penetrating mechanism from the feeding mechanism. The cloth belt penetrating mechanism comprises a positioning track and a plurality of belt penetrating assemblies. The belt penetrating assemblies are arranged on the positioning track in a sliding mode, each belt penetrating assembly comprises a ladder belt lifting assembly and a belt supporting assembly, the ladder belt lifting assemblies are arranged on the positioning track in a sliding mode, the ladder belt lifting assemblies are used for pulling up ladder belts, the belt supporting assemblies are arranged on one sides of the ladder belt lifting assemblies, and the belt supporting assemblies are used for supporting the ladder belts on the ladder belt lifting assemblies. And workers only need to feed wood boards on the feeding mechanism in the operation process, the other processes are carried out in a full-automatic mode, the working efficiency is improved, and the labor intensity of the workers is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of wood board weaving technology, and in particular relates to a wood board weaving cloth strap mechanism. Background Technology

[0002] The basic structure of Venetian blinds consists of multiple slats horizontally arranged between an upper and lower beam. These beams are connected by a ladder rope, each containing two warp threads and multiple weft threads. The warp threads are positioned on the front and back sides of the slats, with their ends connected to the upper and lower beams respectively. Each weft thread is connected to one of the two warp threads, spaced apart between them for the slats to cross. When one warp thread moves vertically relative to another, the weft threads tilt, causing the slats to tilt and thus controlling their closure.

[0003] Traditional methods for threading fabric strips through wooden boards rely primarily on manual operation or simple mechanical traction to pass the fabric strips through holes in the wooden boards. These methods have limitations, particularly in efficiency, stability, and precision. Manual operation is not only time-consuming and labor-intensive but also prone to uneven perforation or damage to the fabric strip. While simple mechanical traction can improve efficiency, it still struggles to handle complex shapes and diverse perforation requirements, thus limiting its application. Existing manual operations and simple mechanical equipment are insufficient for high-efficiency work, especially in mass production where production speed becomes a key factor restricting its application. Furthermore, during the perforation process, fabric strip slippage or inaccurate perforation positioning leads to inconsistent finished product quality, failing to meet high-standard product requirements. Utility Model Content

[0004] The purpose of this utility model is to provide a board-and-cloth-threading mechanism, which aims to solve the technical problems in the prior art, such as the difficulty of meeting the high-efficiency work requirements due to manual operation and simple mechanical equipment, the unstable quality of finished products, and the inability to meet high-standard product requirements.

[0005] To achieve the above objectives, this utility model provides a board feeding mechanism, including a feeding mechanism, a driving mechanism, and a feeding mechanism. The feeding mechanism is used to feed the board, and the driving mechanism is located between the feeding mechanism and the feeding mechanism to drive the board from the feeding mechanism to the feeding mechanism. The feeding mechanism includes a positioning rail and several feeding assemblies. Each feeding assembly is slidably mounted on the positioning rail and includes a ladder belt lifting assembly and a support assembly. The ladder belt lifting assembly is slidably mounted on the positioning rail and is used to lift the ladder belt. The support assembly is located on one side of the ladder belt lifting assembly and is used to spread the ladder belt on the ladder belt lifting assembly.

[0006] Furthermore, the ladder belt lifting assembly includes a drive block, a mounting plate, and a drive component. One end of the drive block has a slider that is slidably connected to a positioning guide rail. The mounting plate is connected to one side of the drive block and is perpendicular to it. The mounting plate also has a first clearance groove for wooden planks to pass through. The drive component is mounted on the mounting plate and is used to lift the ladder belt. A support component is mounted on the mounting plate and is used to support the ladder belt lifted by the drive component.

[0007] Furthermore, the ladder belt lifting assembly also includes a support plate and a protective plate. One end of the support plate is connected to the mounting plate, and the other end is connected to the protective plate. The support plate is perpendicular to the drive block and the mounting plate, and the protective plate is parallel to the mounting plate. A gap is provided between the protective plate and the mounting plate for the ladder belt to pass through. The protective plate is provided with a second clearance groove corresponding to the first clearance groove.

[0008] Furthermore, the strut assembly includes a drive cylinder and a support cylinder. The drive cylinder is mounted on the support plate, and the support cylinder is located at the drive end of the drive cylinder. The drive cylinder is used to drive the support cylinder to extend into or retract from the gap between the mounting plate and the protective plate, and the support cylinder is used to spread the ladder belt.

[0009] Furthermore, the ladder belt lifting assembly also includes a belt straightening assembly, which comprises two belt straightening plates and several connecting posts. The two belt straightening plates are arranged opposite each other, and each connecting post is disposed between the two belt straightening plates, with both ends of each connecting post rotatably connected to the two sides of the belt straightening plates. A baffle is also provided on the connecting post, with one end connected to the connecting post and the other end extending inward into the belt straightening plate. A gap is provided between the baffle and the belt straightening plate for the two sides of the ladder belt to pass through.

[0010] Furthermore, the feeding mechanism includes a feeding guide rail and several pushing components. One end of the feeding guide rail is connected to the drive mechanism, and each pushing component is slidably mounted on the feeding guide rail.

[0011] Furthermore, the material pushing assembly includes a base plate, a material pushing drive, a material pushing plate, and a positioning block. The base plate is slidably mounted on the feeding guide rail, the positioning block is mounted on the base plate, and the material pushing drive is located at the end of the base plate away from the positioning block. The positioning block has an opening for receiving the wooden board, and the opening faces the material pushing drive. The material pushing plate is connected to the material pushing drive, which drives the material pushing plate to move closer to or away from the opening.

[0012] Furthermore, the pusher plate has a feeding groove at one end near the opening, which is used to place the wooden boards. The feeding guide rail also has a positioning top plate at one end near the drive mechanism. The positioning top plate is perpendicular to the feeding guide rail and is used to position the wooden boards.

[0013] Furthermore, the pushing assembly also includes a pressing assembly, which includes a pressing cylinder and a pressing plate. The pressing plate is located at the drive end of the pressing cylinder, and the pressing cylinder is located on the base plate, used to drive the pressing plate closer to or further away from the positioning block.

[0014] Furthermore, the discharge chute is also equipped with an air-avoidance opening, which is located below the pressure plate and is used to prevent the pressure plate from being exposed to air.

[0015] Furthermore, the drive mechanism includes a drive motor, drive rollers, a fixed plate, two positioning cylinders, and a clamping assembly. The drive motor is mounted on the fixed plate, and the drive rollers are driven by the drive motor, which drives the drive rollers to rotate. The two positioning cylinders are respectively located on both sides of the drive rollers and below them. Each positioning cylinder also has two positioning posts, positioned on both sides of the cylinder, with a gap between them for the wooden board to pass through. The positioning cylinders drive the positioning posts to move vertically. The clamping assembly includes a clamping cylinder, a pressure block, and a transmission block. One end of the transmission block is connected to the clamping cylinder, and the other end is connected to the pressure block, which faces the drive rollers. The middle of the transmission block is rotatably connected to the fixed plate. The clamping cylinder drives the pressure block to move closer to or away from the drive rollers.

[0016] The above-mentioned technical solutions of one or more of the wooden board weaving mechanism provided in this utility model embodiment have at least one of the following technical effects: The wooden board is placed on the feeding mechanism, which positions and feeds the wooden board. Then, the driving mechanism drives the wooden board to move onto the weaving mechanism to complete the weaving of the cloth bag. During this process, the position of the weaving component on the positioning track can be adjusted by moving the weaving component according to the different positions where the wooden board needs to be weaved, thereby adjusting the weaving position of the wooden board. During the weaving process, the ladder belt lifting component pulls the ladder belt vertically to the board weaving position. Then, the support belt component extends into the ladder belt at the board weaving position and opens the warp threads of the ladder belt at the board weaving position. Then, the driving mechanism drives the wooden board into the weaving mechanism and passes through the cloth belt of each weaving component in sequence. After the weaving is completed, the support belt component releases the ladder belt. Then, the ladder belt lifting component pulls the ladder belt to continue lifting so that the next opening reaches the board weaving position. The above steps are repeated to complete the weaving of the wooden board with cloth bag. The wooden board feeding mechanism provided by this utility model allows workers to simply feed the wooden board onto the feeding mechanism, while the rest of the process is fully automated, improving work efficiency and reducing the labor intensity of workers. At the same time, before feeding the wooden board with the cloth belt, the support belt assembly opens the cloth belt to form a space with a fixed shape that facilitates the passage of the wooden board, making the process of the wooden board entering the cloth belt smoother. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of a wooden board threading cloth strap mechanism provided in an embodiment of the present utility model.

[0019] Figure 2 This is a schematic diagram of the strap-threading assembly of a wooden board strap-threading mechanism provided in an embodiment of the present utility model.

[0020] Figure 3 This is a schematic diagram of the pusher assembly of a wooden board fabric conveying mechanism provided in an embodiment of the present utility model.

[0021] Figure 4 This is a schematic diagram of the driving mechanism of a wooden board fabric conveying mechanism provided in an embodiment of the present utility model.

[0022] Reference numerals: 100, feeding mechanism; 110, feeding guide rail; 111, positioning top plate; 120, pushing assembly; 121, bottom plate; 122, pushing drive component; 123, pushing plate; 124, positioning block; 125, opening; 126, discharge chute; 127, clearance opening; 130, pressing assembly; 131, pressing cylinder; 132, pressing plate; 200, driving mechanism; 210, drive motor; 220, drive roller; 230, fixing plate; 240, positioning cylinder; 241, positioning column; 250, clamping assembly; 251 1. Pressing cylinder; 252. Pressing block; 253. Transmission block; 300. Belt threading mechanism; 310. Positioning track; 320. Belt threading assembly; 330. Ladder belt lifting assembly; 331. Drive block; 332. Mounting plate; 333. Drive assembly; 334. Slider; 335. First clearance groove; 336. Support plate; 337. Protective plate; 338. Second clearance groove; 340. Belt support assembly; 341. Drive cylinder; 342. Support cylinder; 350. Belt smoothing assembly; 351. Belt smoothing plate; 352. Connecting column; 353. Baffle. Detailed Implementation

[0023] The embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the embodiments of the present invention, and should not be construed as limiting the present invention.

[0024] In the description of the embodiments of this utility model, it should be understood that the terms "length", "width", "upper", "lower", "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 drawings. They are only for the convenience of describing the embodiments of this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0025] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of embodiments of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0026] In this embodiment of the invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment of the invention according to the specific circumstances.

[0027] In one embodiment of this utility model, reference is made to Figures 1-4As shown, a board board weaving mechanism is provided, including a feeding mechanism 100, a driving mechanism 200, and a weaving mechanism 300. The feeding mechanism 100 is used to feed board boards, and the driving mechanism 200 is disposed between the feeding mechanism 100 and the weaving mechanism 300 to drive the board boards from the feeding mechanism 100 to the weaving mechanism 300. The weaving mechanism includes a positioning rail 310 and a plurality of weaving assemblies 320. Each weaving assembly 320 is slidably disposed on the positioning rail 310. Each weaving assembly 320 includes a ladder belt lifting assembly 330 and a support belt assembly 340. The ladder belt lifting assembly 330 is slidably disposed on the positioning rail 310 and is used to lift the ladder belt. The support belt assembly 340 is disposed on one side of the ladder belt lifting assembly 330 and is used to spread the ladder belt on the ladder belt lifting assembly 330. In this embodiment, the wooden board is placed on the feeding mechanism 100, which positions and feeds the board. Then, the driving mechanism 200 drives the board onto the webbing mechanism 300 to complete the webbing process. During this process, the position of the webbing assembly 320 on the positioning track 310 can be adjusted by moving the webbing assembly 320 according to the required webbing position of the board. During webbing, the ladder belt lifting assembly 330 pulls the ladder belt vertically to the board-passing position. Then, the support belt assembly 340 extends into the ladder belt at the board-passing position, spreading the warp threads. The driving mechanism 200 then drives the board into the webbing mechanism 300, sequentially passing through the webbing of each webbing assembly 320. After webbing is completed, the support belt assembly 340 releases the ladder belt, and the ladder belt lifting assembly 330 pulls the ladder belt to continue lifting, bringing the next opening to the board-passing position. This process is repeated to complete the webbing of the wooden board. The wooden board threading mechanism provided by this utility model allows workers to simply load the wooden board onto the feeding mechanism 100 during operation, while the rest of the process is fully automated, improving work efficiency and reducing the labor intensity of workers. At the same time, before threading the wooden board onto the cloth belt, the support belt assembly 340 opens the cloth belt to form a space with a fixed shape that facilitates the passage of the wooden board, making the process of the wooden board entering the cloth belt smoother.

[0028] Specifically, refer to Figures 1-4As shown, the ladder belt lifting assembly 330 includes a drive block 331, a mounting plate 332, and a drive component 333. One end of the drive block 331 has a slider 334, which is slidably connected to a positioning guide rail. The mounting plate 332 is connected to one side of the drive block 331 and is perpendicular to the drive block 331. The mounting plate 332 also has a first clearance groove 335 for the wooden board to pass through. The drive component 333 is mounted on the mounting plate 332 and is used to lift the ladder belt. The support component 340 is mounted on the mounting plate 332 and is used to spread the ladder belt lifted by the drive component 333. In this embodiment, the slider 334 is slidably connected to the positioning rail 310 to position the threading component 320. The drive component 333 is used to pull up the ladder belt, sequentially lifting each processing hole of the ladder belt to the working position of the support component 340, so that each processing hole of the ladder belt can pass through the wooden board. The first clearance groove 335 is used to clear the wooden plank, allowing the plank to pass through each threading assembly 320.

[0029] Specifically, refer to Figures 1-4 As shown, the ladder belt lifting assembly 330 also includes a support plate 336 and a protective plate 337. One end of the support plate 336 is connected to the mounting plate 332, and the other end is connected to the protective plate 337. The support plate 336 is perpendicular to the drive block 331 and the mounting plate 332, while the protective plate 337 is parallel to the mounting plate 332. A gap is provided between the protective plate 337 and the mounting plate 332 for the ladder belt to pass through. The protective plate 337 has a second clearance groove 338 corresponding to the first clearance groove 335. In this embodiment, a gap is provided between the protective plate 337 and the mounting plate 332 for the ladder belt to pass through. The protective plate 337 and the mounting plate 332 protect both sides of the ladder belt to prevent deformation due to contact. The first clearance groove 335 and the second clearance groove 338 are used to clear the wooden planks, allowing the wooden planks to pass through each of the belt-passing assemblies 320.

[0030] Specifically, refer to Figures 1-4 As shown, the ladder belt assembly 340 includes a drive cylinder 341 and a support cylinder 342. The drive cylinder 341 is mounted on the support plate 336, and the support cylinder 342 is mounted on the drive end of the drive cylinder 341. The drive cylinder 341 drives the support cylinder 342 to extend into or retract from the gap between the mounting plate 332 and the protective plate 337, and the support cylinder 342 is used to expand the ladder belt. In this embodiment, when the ladder belt needs to be expanded, the drive cylinder 341 drives one end of the support cylinder 342 into the ladder belt, and the support cylinder 342 expands the ladder belt to facilitate the insertion of the wooden board. After the wooden board is inserted, the support cylinder 342 releases the ladder belt, and then the drive cylinder 341 drives one end of the support cylinder 342 to retract out of the ladder belt, avoiding interference between the ladder belt lifting assembly 330 and the support cylinder 342 when lifting the ladder belt.

[0031] Specifically, refer to Figures 1-4As shown, the ladder belt lifting assembly 330 also includes a belt straightening assembly 350, which includes two belt straightening plates 351 and several connecting posts 352. The two belt straightening plates 351 are arranged opposite to each other, and each connecting post 352 is disposed between the two belt straightening plates 351, with both ends of each connecting post 352 rotatably connected to the two sides of the two belt straightening plates 351. A baffle 353 is also provided on the connecting post 352, with one end of the baffle 353 connected to the connecting post 352 and the other end extending into the belt straightening plate 351. A gap is provided between the baffle 353 and the belt straightening plate 351 for the two sides of the ladder belt to pass through. In this embodiment, the straightening assembly 350 is used to straighten the ladder belt. Since the ladder belt is very soft and easily deformed, the support cylinder 342 may not be able to extend into the ladder belt. Therefore, the ladder belt is straightened by the weight of the baffle 353 itself. The gap between the baffle 353 and the straightening plate 351 is used for the passage of the warp of the ladder belt. The baffle 353 is used to straighten the warp of the ladder belt. When the lifting assembly pulls the ladder belt, the connecting column 352 rotates, thereby driving the baffle 353 to rotate. The weft of the ladder belt passes through the baffle. Then, under the gravity of the baffle 353, the connecting column 352 rotates in the opposite direction again, so that the baffle 353 rests on the next weft of the ladder belt.

[0032] Specifically, refer to Figures 1-4 As shown, the feeding mechanism 100 includes a feeding guide rail 110 and several pushing components 120. One end of the feeding guide rail 110 is connected to the drive mechanism 200, and each pushing component 120 is slidably disposed on the feeding guide rail 110. In this embodiment, the position of each pushing component 120 is adjusted by the feeding guide rail 110 so that when each pushing component 120 pushes the wooden board simultaneously, the wooden board is subjected to uniform force, preventing the wooden board from shifting and failing to enter the drive mechanism 200.

[0033] Specifically, refer to Figures 1-4 As shown, the feeding assembly 120 includes a base plate 121, a feeding drive 122, a feeding plate 123, and a positioning block 124. The base plate 121 is slidably mounted on the feeding guide rail. The positioning block 124 is mounted on the base plate 121. The feeding drive 122 is located at the end of the base plate 121 away from the positioning block 124. The positioning block 124 has an opening 125 for receiving the wooden board, and the opening 125 faces the feeding drive 122. The feeding plate 123 is connected to the feeding drive 122, and the feeding drive 122 is used to drive the feeding plate 123 toward or away from the opening 125. In this embodiment, the wooden board is placed on the pusher plate 123, and then the pusher drive 122 drives the wooden board to move towards the positioning hole, so that the wooden board enters the opening 125 of the positioning block 124 for positioning. Then the drive mechanism 200 drives the wooden board in the opening 125 into the threading mechanism 300. At this time, the pusher drive 122 drives the pusher plate 123 to reset and carry the next wooden board.

[0034] Specifically, refer to Figures 1-4As shown, the pusher plate 123 has a feeding groove 126 at one end near the opening 125, which is used to place the wooden board. The feeding guide rail 110 also has a positioning top plate 111 at one end near the drive mechanism 200. The positioning top plate 111 is perpendicular to the feeding guide rail 110 and is used to position the wooden board. In this embodiment, the feeding groove 126 is used to support the wooden board. When the wooden board is placed in the feeding groove 126, one end of the wooden board abuts against the positioning top plate 111 to position the wooden board and facilitate its entry into the drive mechanism 200.

[0035] Specifically, refer to Figures 1-4 As shown, the pushing assembly 120 also includes a pressing assembly 130, which includes a pressing cylinder 131 and a pressing plate 132. The pressing plate 132 is disposed at the driving end of the pressing cylinder 131, which is disposed on the base plate 121, and is used to drive the pressing plate 132 to move closer to or away from the positioning block 124. In this embodiment, when the wooden board enters the opening 125 of the positioning block 124, the pressing cylinder 131 drives the pressing plate 132 to press down on the wooden board, preventing the pushing plate 123 from taking the wooden board out of the opening 125 when it resets.

[0036] Specifically, refer to Figures 1-4 As shown, the material feeding trough 126 is also provided with an air-avoidance opening 127, which is located below the pressure plate 132. The air-avoidance opening 127 is used to prevent the pressure plate 132 from being exposed to air. In this embodiment, the air-avoidance opening 127 is used to prevent the pressure plate 132 and the pusher plate 123 from pressing against each other and pressing the wooden board, which would prevent the wooden board from entering the drive mechanism 200.

[0037] Specifically, refer to Figures 1-4As shown, the drive mechanism 200 includes a drive motor 210, a drive roller 220, a fixed plate 230, two positioning cylinders 240, and a pressing assembly 250. The drive motor 210 is mounted on the fixed plate 230, and the drive roller 220 is connected to the drive motor 210 for transmission. The drive motor 210 drives the drive roller 220 to rotate. The two positioning cylinders 240 are respectively located on both sides of the drive roller 220 and below the drive roller 220. The positioning cylinders 240 are also provided with two positioning posts 241, which are respectively located on both sides of the positioning cylinder 240. A gap is provided between the two positioning posts 241 for the wooden board to pass through. The positioning cylinders 240 drive the positioning posts 241 to move in the vertical direction. The pressing assembly 250 includes a pressing cylinder 251, a pressing block 252, and a transmission block 253. One end of the transmission block 253 is connected to the pressing cylinder 251, and the other end is connected to the pressing block 252. The pressing block 252 faces the drive roller 220. The middle part of the transmission block 253 is rotatably connected to the fixed plate 230. The pressing cylinder 251 is used to drive the pressing block 252 to move closer to or away from the drive roller 220. In this embodiment, when the wooden board enters the opening 125 of the positioning block 124, the positioning cylinder 240 drives the positioning column 241 to move upward to position the wooden board. Then, the pressing cylinder 251 drives the pressing block 252 to press the wooden board, so that the wooden board is located between the pressing block 252 and the drive roller 220 and is compacted by both. At this time, the drive motor 210 is turned on to drive the drive roller 220 to rotate, thereby driving the wooden board into the threading mechanism 300.

[0038] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A board board weaving mechanism, comprising a feeding mechanism, a driving mechanism, and a weaving mechanism; the feeding mechanism is used to feed board boards, and the driving mechanism is disposed between the feeding mechanism and the weaving mechanism for driving the board boards to be transported from the feeding mechanism to the weaving mechanism; characterized in that: The fabric feeding mechanism includes a positioning rail and several feeding assemblies; each feeding assembly is slidably disposed on the positioning rail, and each feeding assembly includes a ladder belt lifting assembly and a support assembly. The ladder belt lifting assembly is slidably disposed on the positioning rail and is used to lift the ladder belt. The support assembly is disposed on one side of the ladder belt lifting assembly and is used to spread the ladder belt on the ladder belt lifting assembly.

2. The wooden board weaving strap mechanism according to claim 1, characterized in that: The ladder belt lifting assembly includes a drive block, a mounting plate, and a drive component. One end of the drive block is provided with a slider, which is slidably connected to the positioning guide rail. The mounting plate is connected to one side of the drive block and is perpendicular to the drive block. The mounting plate is also provided with a first clearance groove for wooden boards to pass through. The drive component is disposed on the mounting plate and is used to lift the ladder belt. The support component is mounted on the mounting plate and is used to support the ladder belt lifted by the drive component.

3. The mechanism for threading fabric onto a wooden board according to claim 2, characterized in that: The ladder belt lifting assembly further includes a support plate and a protective plate. One end of the support plate is connected to the mounting plate, and the other end is connected to the protective plate. The support plate is perpendicular to the drive block and the mounting plate. The protective plate is parallel to the mounting plate. A gap is provided between the protective plate and the mounting plate for the ladder belt to pass through. The protective plate is provided with a second clearance groove corresponding to the first clearance groove.

4. The wooden board weaving mechanism according to claim 3, characterized in that: The support belt assembly includes a drive cylinder and a support cylinder; the drive cylinder is disposed on the support plate, and the support cylinder is disposed on the drive end of the drive cylinder. The drive cylinder is used to drive the support cylinder to extend into or retract from the gap between the mounting plate and the protective plate, and the support cylinder is used to expand the ladder belt.

5. The wooden board weaving mechanism according to claim 3, characterized in that: The ladder belt lifting assembly further includes a belt straightening assembly, which includes two belt straightening plates and several connecting posts; the two belt straightening plates are arranged opposite to each other, and each connecting post is arranged between the two belt straightening plates, with both ends of each connecting post rotatably connected to the two sides of the two belt straightening plates; a baffle is also provided on the connecting post, one end of the baffle is connected to the connecting post, and the other end extends into the belt straightening plate, with a gap between the baffle and the belt straightening plate for the two sides of the ladder belt to pass through.

6. The mechanism for threading fabric onto a wooden board according to claim 1, characterized in that: The feeding mechanism includes a feeding guide rail and several pushing components; one end of the feeding guide rail is connected to the driving mechanism, and each of the pushing components is slidably disposed on the feeding guide rail.

7. The wooden board weaving mechanism according to claim 6, characterized in that: The material pushing assembly includes a base plate, a material pushing drive, a material pushing plate, and a positioning block; the base plate is slidably disposed on the feeding guide rail, the positioning block is disposed on the base plate, the material pushing drive is disposed at the end of the base plate away from the positioning block, the positioning block has an opening for accommodating the wooden board, and the opening faces the material pushing drive; the material pushing plate is connected to the material pushing drive, and the material pushing drive is used to drive the material pushing plate to move closer to or away from the opening.

8. The wooden board weaving strap mechanism according to claim 7, characterized in that: The pusher plate has a feeding groove at one end near the opening, which is used to place the wooden board; the feeding guide rail also has a positioning top plate at one end near the drive mechanism, which is perpendicular to the feeding guide rail and is used to position the wooden board.

9. A wooden board threading and cloth strapping mechanism according to claim 8, characterized in that: The pushing assembly also includes a pressing assembly, which includes a pressing cylinder and a pressing plate. The pressing plate is disposed at the driving end of the pressing cylinder, and the pressing cylinder is disposed on the base plate for driving the pressing plate to move closer to or away from the positioning block. The discharge trough is also provided with an air-avoiding opening, which is located below the pressing plate and is used to prevent the pressing plate from being exposed to air.

10. A wooden board threading and cloth-stripping mechanism according to any one of claims 1 to 9, characterized in that: The driving mechanism includes a drive motor, a drive roller, a fixed plate, two positioning cylinders, and a pressing assembly. The drive motor is mounted on the fixed plate, and the drive roller is driven by the drive motor. The drive motor drives the drive roller to rotate. The two positioning cylinders are respectively located on both sides of the drive roller and below it. Each positioning cylinder is also provided with two positioning posts, which are respectively located on both sides of the positioning cylinder. A gap is provided between the two positioning posts for the wooden board to pass through. The positioning cylinder drives the positioning posts to move vertically. The pressing assembly includes a pressing cylinder, a pressing block, and a transmission block. One end of the transmission block is connected to the pressing cylinder, and the other end is connected to the pressing block. The pressing block faces the drive roller, and the middle part of the transmission block is rotatably connected to the fixed plate. The pressing cylinder drives the pressing block to move closer to or away from the drive roller.