High-efficiency automatic equipment for bamboo strip production

By designing automated equipment to achieve continuous operation of bamboo strip production, the problems of high labor costs and low efficiency in bamboo strip production were solved, and efficient assembly line production was achieved.

CN223407147UActive Publication Date: 2025-10-03FUJIAN MAIWEI INTELLIGENT EQUIP CO LTD

Patent Information

Application Number
CN202422568086.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-10-03
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

The existing bamboo strip production method cannot form a continuous operation mode for whole bamboo, with high labor costs, prone to operational errors and low production efficiency.

Method used

A high-efficiency automated equipment is designed, which includes a bamboo saw, a bamboo tube conveyor belt, a bamboo breaking device, a roller, a slicer, a bundling machine and a stacking area. The equipment can detect the bamboo tube parameters in real time through identification components, and realize the automatic diversion and continuous processing of bamboo tubes of different specifications.

Benefits of technology

It realizes the connection between various processes in bamboo strip production, reduces the labor intensity and labor costs of workers, improves production efficiency, and forms an assembly line production model.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses high-efficiency automatic equipment for bamboo batten production. The high-efficiency automatic equipment comprises a whole bamboo feeding table, a bamboo sawing machine, a bamboo tube conveying belt and a plurality of unit processing areas, wherein the bamboo sawing machine is provided with an identification element for detecting a section image of each section of bamboo tube (namely parameter information of the wall thickness and the diameter of each section of bamboo tube); the unit processing areas are used for carrying out subsequent processing on the bamboo tubes with different specifications and are arranged in sequence; each unit processing area comprises a bamboo breaking device, a rotatable roller, a stripping assembly, a strapping machine and a stacking area. The high-efficiency automatic equipment is ideal in design, the joining operation effect of all procedures of bamboo strip production is good, the automatic production degree is high, bamboo tubes of different specifications (such as diameters and end thicknesses) are subjected to flow splitting and cutting, bamboo strip slicing, bamboo strip bundling, bamboo strip stacking and other procedure treatment, a whole bamboo continuous operation mode is formed, and the production efficiency is improved. Bamboo canes of different specifications can be produced; and due to an assembly line type bamboo strip production mode, the labor intensity of workers and the labor cost are greatly reduced, and the production efficiency is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the field of bamboo strip processing equipment, in particular to high-efficiency automated equipment for bamboo strip production. Background Art

[0002] The production of bamboo products involves a series of processes, including sawing, splitting, slicing, and bundling. Sawing involves cutting a whole bamboo (i.e., moso bamboo) into multiple tubes of a fixed length using a sawing tool (e.g., a bamboo saw); splitting involves slicing a bamboo tube axially into several slices using a bamboo splitting device (e.g., the blades of a bamboo splitting machine); and slicing involves slicing bamboo strips into strips of a fixed width on all four sides, achieving the desired specifications (e.g., size and shape), with a generally rectangular cross-section. Bundling involves bundling a set of bamboo strips into bundles using a bundling device (e.g., a bundling machine).

[0003] Bamboo strips are available in a variety of sizes. Thickness is typically between 3mm and 10mm (e.g., 3mm, 4mm, 5mm, 6mm, and 8mm); width is typically between 10mm and 30mm (e.g., 10mm, 12mm, 16mm, and 21mm). The diameter of a whole bamboo (i.e., the stem of a moso bamboo) gradually decreases, forming a thicker head and narrower tail. Therefore, a single whole bamboo is cut into multiple bamboo tubes of a given length using a bamboo saw. Each tube is sized based on its diameter and end thickness. For splitting, a corresponding blade disc (e.g., eight-blade, seven-blade, nine-blade, or twelve-blade discs, depending on the number of blades) is selected. This often requires frequent replacement of blade discs with varying numbers of blades. Planing, however, requires frequent adjustment of the relative positions of the planer blades to produce strips of varying sizes.

[0004] The existing bamboo strip production process is not seamlessly connected. Typically, after each process is completed, the semi-finished products (such as multiple bamboo tubes) are sorted and stacked according to different specifications (such as diameter and end thickness). The next process is then completed by selecting and adjusting the corresponding equipment (such as the bamboo splitting disc) based on the required bamboo strip specifications. This bamboo strip production method does not form a continuous operation model for whole bamboo strips, resulting in high labor costs and heavy labor, as well as prone to errors and low production efficiency. Utility Model Content

[0005] The utility model provides a high-efficiency automated equipment for bamboo strip production, which aims to overcome the problems of the existing bamboo strip production method that cannot form a continuous operation mode for whole bamboo, has high labor costs and heavy labor of workers, is prone to operating errors, and has low production efficiency.

[0006] In order to achieve the purpose, the technical solution provided by the utility model is as follows:

[0007] The invention discloses a high-efficiency automated equipment for producing bamboo strips, comprising a whole bamboo feeding table for stacking whole bamboos, a bamboo sawing machine for cutting whole bamboos into a plurality of bamboo tubes of fixed length and provided with an identification element for detecting a cross-sectional image of each bamboo tube (i.e., parameter information of the wall thickness and diameter of each bamboo tube), a bamboo tube conveyor belt (i.e., a bamboo tube conveyor line) for receiving bamboo tubes of different specifications from the bamboo sawing machine, and a plurality of unit processing areas for performing post-processing on the bamboo tubes of different specifications and arranging them in sequence; each unit processing area comprises a bamboo breaking device for axially splitting bamboo tubes of the same specification into a plurality of bamboo slices, a rotatable drum for receiving the bamboo slices from the bamboo breaking device, a strip drawing assembly for drawing the bamboo slices in the drum one by one to a slicing device for slicing, a bundling machine for receiving bamboo strips from the slicing device and bundling them, and a stacking area for stacking bundled bamboo strips discharged from the bundling machine.

[0008] Furthermore, the end of the bamboo tube conveyor belt is provided with a wire drawing device for bamboo tubes (i.e. tailings) that do not meet the requirements of wall thickness and diameter parameter information to enter the wire drawing device, which is a bamboo wire drawing machine that slices the bamboo tubes and draws them.

[0009] Furthermore, the bamboo tubes of different specifications are differentiated into bamboo tubes of various specifications according to parameter information of the wall thickness and diameter of each section of the bamboo tube.

[0010] Furthermore, each bamboo breaking device includes a bamboo breaking cutter disc located on one side of the bamboo tube conveyor belt and a pushing member located on the other side thereof and pushing the corresponding bamboo tubes of the same specification toward the bamboo breaking cutter disc for breaking and cutting operations (the pushing member can be an oil cylinder, and pushes the bamboo tubes toward the bamboo breaking cutter disc for breaking and cutting operations through the head of its piston rod); the front side of each bamboo breaking cutter disc is provided with a roller for receiving a plurality of bamboo slices, and the interior of the roller is provided with a plurality of partitions arranged along its length, and a guide groove for the bamboo slices to pass through is formed between two adjacent partitions, and the number of guide grooves is the same as the number of blades on the bamboo breaking cutter disc located at the rear.

[0011] Furthermore, each strip drawing assembly is located directly behind the feed end of the planing equipment. The strip drawing assembly includes an upper strip drawing roller and a lower strip drawing roller that are arranged at intervals and can rotate in the same direction. A strip drawing channel through which bamboo slices pass is formed between the upper and lower strip drawing rollers. Every time the roller rotates one station, the front end of a bamboo slice therein is placed in the strip drawing channel. The strip drawing assembly draws a bamboo slice in the strip drawing channel to the feed end of the planing equipment through the same direction rotation of the upper and lower strip drawing rollers.

[0012] Furthermore, each stacking area is equipped with a stacker for stacking bamboo strips. Bundles of bamboo strips of various specifications are stacked by the corresponding stacker to form stacked bamboo strips of various specifications, which are then transported to the carbonization equipment for carbonization treatment by a conveying tool (such as a forklift).

[0013] The technical solution provided by the present invention has the following beneficial effects compared with the existing technology: the design of the high-efficiency automated equipment is ideal, the connection between the various processes of bamboo strip production is good, the degree of automated production is high, and bamboo tubes of different specifications (such as diameter and end thickness) are processed through processes such as splitting and cutting, bamboo slices, bamboo strip bundling, and bamboo strip stacking, forming a continuous operation mode for the whole bamboo, and can produce bundles of bamboo strips of different specifications. The assembly line bamboo strip production mode greatly reduces the labor intensity and labor costs of workers, and greatly improves production efficiency; workers are easy to operate, and only need to control the head and tail ends of the production line (i.e., the whole bamboo feeding table is used to feed the whole bamboo and the stacked bamboo strips of various specifications to the bamboo sawing machine). Finally, the stacked bamboo strips of various specifications are transported to the carbonization equipment for carbonization treatment by conveying tools (such as forklifts). BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is the overall arrangement and flow chart of the utility model.

[0015] Figure 2 This is a schematic diagram of the main viewing direction of the bamboo splitting knife disc in the present invention.

[0016] Figure 3 This is a schematic diagram of the main viewing direction of the drum in the present invention.

[0017] Figure 4 This is a schematic diagram of the side view of the drum in the present invention.

[0018] Figure 5 This is a schematic diagram of the cooperation between the bamboo breaking cutter disc, the drum and the slicing equipment in the present invention.

[0019] Figure 6 This is a schematic diagram of the bamboo tube conveyor belt in the utility model when viewed from the side.

[0020] Figure 7This is a schematic diagram of the bamboo tube conveyor belt in the present invention when viewed from above.

[0021] Figure 8 It is a schematic diagram of the drum in the present utility model. DETAILED DESCRIPTION

[0022] In order to further understand the content of the present invention, the present invention is described in detail in conjunction with embodiments. The following embodiments are used to illustrate the present invention but are not used to limit the scope of the present invention.

[0023] Refer to the attached Figure 1 、 Figure 2 、 Figure 3 and Figure 5A highly efficient automated equipment for producing bamboo strips, comprising a whole bamboo feeding table 1 for stacking whole bamboos, a bamboo sawing machine 3 for cutting whole bamboos 2 into a plurality of bamboo tubes 20 of fixed length and equipped with an identification element 30 for detecting a cross-sectional image of each bamboo tube 20 (i.e., parameter information of the wall thickness and diameter of each bamboo tube 20), a bamboo tube conveyor belt 4 (i.e., a bamboo tube conveyor line) for receiving bamboo tubes 20 of different specifications from the bamboo sawing machine 3, and a plurality of unit processing areas 5 for performing post-processing on bamboo tubes 20 of different specifications and arranging them in sequence; each unit The raw processing area 5 includes a bamboo splitting device 51 that splits bamboo tubes 20 of the same specification axially into a plurality of bamboo slices 21; a rotatable drum 52 for receiving the bamboo slices 21 from the bamboo splitting device 51; a strip drawing assembly 54 that draws the bamboo slices 21 from the drum 52 one by one to a slicing device 53 (e.g., a bamboo planer) for slicing; a bundling machine 55 for receiving and bundling bamboo strips from the slicing device 53; and a stacking area for stacking the bundled bamboo strips discharged from the bundling machine 55. Each stacking area is equipped with a stacker 56 for stacking the bundled bamboo strips. Bundled bamboo strips of different specifications are stacked by the corresponding stacker 56 to form stacked bamboo strips of different specifications. The stacked bamboo strips are then transported to the carbonization equipment for carbonization by a conveyor (e.g., a forklift). The stacker 56 is composed of components such as columns, upper beams and lower beams. It is an existing commonly used equipment (for example, the Chinese Patent Library discloses a stacker for public use in a bamboo strip weaving curtain production line (patent number: ZL202320472605.5; authorization announcement date: 2023-11-07)). Here, its internal structure and its working principle are not described in detail. The bamboo tubes 20 of different specifications are differentiated according to the parameter information of the wall thickness and diameter of each section of the bamboo tube to form bamboo tubes of various specifications. According to the market demand for bamboo strip specifications, bamboo strips of different specifications can be subdivided, such as bamboo strip specification one: its width × thickness is 21mm × 8mm; bamboo strip specification two: its width × thickness is 16mm × 6mm; processed bamboo strip specification three: its width × thickness is 12mm × 4mm; and this is subdivided into bamboo strip specification N. The bamboo sawing machine 3 with the identification element 30 is a common existing bamboo sawing machine (application number: 202320814083.2; announcement date: 2023-09-15). Here, its internal structure and its working principle are not described in detail. For example, the Chinese patent library discloses a multifunctional clamping device for a bamboo sawing machine, which includes a bracket, a clamp, and an identification element 30 for obtaining a cross-sectional image of a bamboo at the discharge end of the bamboo sawing machine 3. The bracket is provided with a linear reciprocating device, the movable end of which moves in a direction parallel to the direction in which the bamboo sawing machine conveys the bamboo. The clamp is connected to the movable end of the linear reciprocating device, and the identification element is provided on the clamp.During the bamboo sawing process, the linear reciprocating device drives the clamp to pull the bamboo out of the discharge end of the bamboo sawing machine 3, and at the same time, the identification element 30 on the clamp will obtain the cross-sectional image of the bamboo tube located at the discharge end of the bamboo sawing machine 3 to obtain the diameter and wall thickness information at the cross-section of the bamboo tube (that is, the parameter information of the wall thickness and diameter of each section of the bamboo tube 20).

[0024] In addition, the bamboo sawing machine 3 can also be an existing multi-station bamboo sawing machine. For example, the Chinese Patent Library discloses a bamboo sawing machine (application number: 202211667496.9; publication date: 2023-04-25), which discloses a placing mechanism, a feeding mechanism and at least one cutting mechanism arranged in sequence. The placing mechanism transfers the bamboo raw material to the feeding mechanism along the X direction. The feeding mechanism includes several parallel storage troughs arranged in the X direction. The storage troughs are penetrated from front to back and are transferred to the cutting mechanism through the storage troughs to cut the bamboo raw material into segments.

[0025] Refer to the attached Figure 1 . The end of the bamboo tube conveyor belt 4 is provided with a wire drawing device 6 for the bamboo tubes 20 (i.e., tailings) that do not meet the requirements for the parameter information of wall thickness and diameter. The wire drawing device 6 is a bamboo wire drawing machine that slices the bamboo tubes 20 and draws them. The bamboo wire drawing machine is a commonly used mechanical equipment for processing bamboo, such as the patent name disclosed in the Chinese Patent Library: Bamboo wire drawing machine with adjustable bamboo wire cross-sectional shape (patent number: ZL201410702997.5, authorization publication date: 2016-08-24). The bamboo wire drawing machine combines the two processes of bamboo slicing and bamboo wire drawing, so that the bamboo tubes 20 that do not meet the requirements are cut into bamboo strips by horizontal blades, and then when the bamboo strips come into contact with the vertical blades on the wire drawing rod, they will be cut by the vertical blades to realize the wire drawing operation; bamboo wire can be used to make bamboo toothpicks, bamboo mats, bamboo chopsticks, bamboo barbecue skewers and other products. The wire drawing device 6 is a common existing bamboo wire drawing machine, and its internal structure and working principle are no longer described in detail.

[0026] Refer to the attached Figure 1 、 Figure 6 and Figure 7The bamboo tube conveyor belt 4 includes a conveyor support 41, a driving roller 42 and a driven roller 43 mounted on either end of the conveyor platform 40 of the conveyor support 41, and two belt strips 44 wound around the driving and driven rollers 42 and 43 and arranged on the left and right sides. It also includes a plurality of L-shaped transverse push strips 45 arranged at equal intervals along the length of the conveyor platform 40, each of which is secured to the surfaces of the two belt strips 44 by a locking member. The bamboo tube conveyor belt 4 also includes an alignment assembly for aligning the ends of the bamboo tubes 20 of different sizes. This alignment assembly includes left and right alignment plates 46 and 47 located on the left and right sides of the conveyor platform 40. Each of the left and right alignment plates 46 and 47 includes an alignment baffle 481 arranged parallel to the conveyor platform 40 and a deflector slant 482 connected to the alignment baffle 481 and inclined outward. The alignment assembly design ensures that the bamboo tubes 20 of different sizes on the bamboo tube conveyor belt 4 are neatly and orderly arranged and conveyed forward.

[0027] Refer to the attached Figure 1 、 Figure 2 、 Figure 5 、 Figure 7 and Figure 8 . Each bamboo breaking device 51 includes a bamboo breaking knife disc 511 located on one side of the bamboo tube conveyor belt 4 and a pushing member located on the other side thereof and pushing the corresponding bamboo tubes 20 of the same specification toward the bamboo breaking knife disc 511 for breaking and cutting operations. The pushing member can be an oil cylinder 512, and the bamboo tubes 20 are pushed toward the bamboo breaking knife disc 511 for breaking and cutting operations through the head of its piston rod; the front side of each bamboo breaking knife disc 511 is provided with a roller 52 for receiving a plurality of bamboo slices, and the interior of the roller 52 is provided with a plurality of partitions 521 arranged along its length, and a guide groove 522 for the bamboo slices to pass through is formed between two adjacent partitions 521. The number of guide grooves 522 is the same as the number of blades on the bamboo breaking knife disc 511 located at the rear, and they are arranged in a one-to-one docking manner. Each roller 52 also includes a roller bracket 521 for supporting its rolling, a ring rack 522 installed on the outer circumference of the roller 52, and a rolling motor 523 installed on the roller bracket 521. The conveying shaft of the rolling motor 523 is equipped with a gear 524 that meshes with the ring rack 522. The rolling motor 523 drives the roller 52 to rotate through the meshing between the ring rack 522 and the gear 524.

[0028] Refer to the attached Figure 1 、 Figure 3 、 Figure 4 and Figure 5. Each strip drawing assembly 54 is located directly behind the feed end of the slicing device 53. The strip drawing assembly 54 includes an upper strip drawing roller 541 and a lower strip drawing roller 542 that are spaced apart and can rotate in the same direction (i.e., clockwise). A strip drawing channel 540 is formed between the upper and lower strip drawing rollers 541, 542, through which the bamboo piece 21 passes. Every time the drum 52 rotates one station, the front end of a bamboo piece 21 therein is placed in the strip drawing channel 540. The strip drawing assembly 54 draws a bamboo piece 21 in the strip drawing channel 540 toward the feed end of the slicing device 53 by rotating the upper and lower strip drawing rollers 541, 542 in the same direction (i.e., clockwise). Specifically, the upper strip drawing roller 541 is driven up and down by a vertical cylinder to clamp a bamboo piece 21 in the strip drawing channel 540. Each upper strip-drawing roller 541 can be movably arranged up and down, and one of the lower strip-drawing rollers 542 is provided with a rotating device for providing power. One of the upper strip-drawing rollers 541 is driven by a corresponding driving cylinder, such as an air cylinder, and can be extended and retracted toward the lower strip-drawing roller 542; so that when the bamboo piece 21 is transported to the corresponding strip-drawing assembly 54, the upper and lower strip-drawing rollers 541 and 542 are closed and the bamboo piece 21 is drawn out.

[0029] Refer to the attached Figures 1 to 8 The production process of the highly efficient automated equipment includes the following steps: 1) whole bamboo cutting: a whole bamboo 2 (i.e., moso bamboo) is cut into a plurality of bamboo tubes 20 of fixed length (i.e., bamboo tubes of different specifications). The wall thickness and diameter of each bamboo tube section are detected to obtain parameter information of each bamboo tube section, and the parameter information is fed back to a controller in real time. The whole bamboo cutting operation is performed using a bamboo sawing machine 3 equipped with an identification element 30 that detects the cross-sectional image of each bamboo tube section 20 (i.e., the parameter information of the wall thickness and diameter of each bamboo tube section 20).

[0030] 2) Bamboo tube transport: bamboo tubes of different specifications are transported one by one to multiple unit processing areas via a bamboo tube conveyor belt 4 for subsequent processing. The bamboo tube conveyor belt 4 includes a conveying support 41, a driving roller 42 and a driven roller 43 mounted on the two ends of the conveying table 40 of the conveying support 41, and two belt strips 44 arranged on the left and right sides of the driving and driven rollers 42 and 43. It also includes a plurality of transverse push strips 45 (L-shaped) arranged at equal intervals along the length of the conveying table 40, and each transverse push strip 45 is fixed to the surface of the two belt strips 44 by a locking member. The bamboo tube conveyor belt 4 also includes an alignment component for aligning the ends of the bamboo tubes 20 of different specifications. The alignment component includes left and right alignment plates 46 and 47 located on the left and right sides of the conveying table 40. The left and right alignment plates 46 and 47 each include an alignment baffle 481 arranged parallel to the conveying table 40 and a guide inclined plate 482 connected to the alignment baffle 481 and inclined outward. The design of neat components allows bamboo tubes 20 of different specifications on the bamboo tube conveyor belt 4 to be neatly and orderly arranged and conveyed forward.

[0031] 3) Diversion and cutting: Based on the parameter information fed back by the controller, the bamboo splitting device 51 in the corresponding unit processing area is activated to axially split the bamboo tubes of the same specification on the bamboo tube conveyor belt 4 into a plurality of bamboo slices. Each bamboo splitting device 51 includes a bamboo splitting blade 511 located on one side of the bamboo tube conveyor belt 4 and a pusher located on the other side of the bamboo splitting blade 511 to push the corresponding bamboo tubes 20 of the same specification toward the bamboo splitting blade 511 for splitting. The pusher can be an oil cylinder 512, and the head of its piston rod pushes the bamboo tube 20 toward the bamboo splitting blade 511 for splitting.

[0032] 4) Bamboo chipping: The bamboo chips from the bamboo breaking equipment in each unit processing area are fed into the drum 52. As the drum 52 rotates, the bamboo chips are drawn one by one through the strip drawing assembly 53 and transported to the slicing device 54 for slicing. Each drum 52 is equipped with several partitions 521 along its length. A guide slot 522 for the bamboo chips to pass through is formed between adjacent partitions 521. The number of guide slots 522 is the same as the number of blades on the rear bamboo breaking disc 511, and they are arranged in a one-to-one, corresponding arrangement. Each strip drawing assembly 54 is located directly behind the feed end of the slicing device 53. The strip drawing assembly 54 includes an upper strip drawing roller 541 and a lower strip drawing roller 542 that are arranged at intervals and can rotate in the same direction (i.e., clockwise). A strip drawing channel 540 through which the bamboo piece 21 passes is formed between the upper and lower strip drawing rollers 541, 542; each time the drum 52 rotates one station, the front end of a bamboo piece 21 therein is placed in the strip drawing channel 540, and the strip drawing assembly 54 draws a bamboo piece 21 in the strip drawing channel 540 toward the feed end of the slicing device 53 (such as a bamboo planer) by rotating the upper and lower strip drawing rollers 541, 542 in the same direction (i.e., clockwise).

[0033] 5) Bamboo strip bundling: The bamboo strips discharged from the slicing equipment 53 in each unit processing area are bundled to form bundles of various specifications. A bundling machine 55 is used to receive and bundle the bamboo strips from the slicing equipment 53, and the bundling machine 55 is used to perform the bundling operation. For example, the patent application previously filed in the Chinese Patent Library entitled "Automatic Bamboo Strip Bundling Equipment and Method" (Patent No.: ZL 202210801692.4, Authorization Publication Date: 2023-09-22) discloses an automatic bamboo strip bundling device (i.e., the bundling machine 55) to achieve the bamboo strip bundling operation.

[0034] 6) Stacking of bamboo strips: The bamboo strips of various specifications are stacked by the stacker 56 of the corresponding unit processing area 5 to form stacked bamboo strips of various specifications; finally, they are transported to the carbonization equipment for carbonization treatment by a transportation tool (such as a forklift).

[0035] 7) Tailings processing: According to the parameter information fed back by the controller, the bamboo tubes (i.e. tailings) whose wall thickness and diameter parameter information on the bamboo tube conveyor belt 4 do not meet the requirements are directly transported to the wire drawing equipment 6, which is a bamboo wire drawing machine that slices and draws the bamboo tubes.

[0036] The above describes the present invention in detail with reference to the embodiments. However, the above contents are only preferred embodiments of the present invention and should not be considered as limiting the scope of implementation of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent application of the present invention.

Claims

1. A high-efficiency automated equipment for bamboo strip production, characterized in that: The invention comprises a whole bamboo feeding table for stacking whole bamboos, a bamboo sawing machine for cutting whole bamboos into several bamboo tubes of fixed length and provided with an identification element for detecting the cross-sectional image of each bamboo tube, a bamboo tube conveyor belt for receiving bamboo tubes of different specifications on the bamboo sawing machine, and a plurality of unit processing areas for carrying out post-processing on bamboo tubes of different specifications and arranging them in sequence; each unit processing area comprises a bamboo breaking device for axially splitting bamboo tubes of the same specification into several bamboo slices, a rotatable drum for receiving several bamboo slices on the bamboo breaking device, a strip drawing component for drawing several bamboo slices in the drum one by one to a slicing device for slicing, a bundling machine for receiving bamboo strips on the slicing device and bundling them, and a stacking area for stacking bundled bamboo strips discharged from the bundling machine.

2. The high-efficiency automated equipment for bamboo strip production according to claim 1, characterized in that: The end of the bamboo tube conveyor belt is provided with a bamboo tube that does not meet the requirements for wall thickness and diameter parameter information and enters a wire drawing device, which is a bamboo wire drawing machine that slices the bamboo tube and draws it.

3. The high-efficiency automated equipment for bamboo strip production according to claim 1, characterized in that: The bamboo tubes of different specifications are differentiated into bamboo tubes of various specifications according to parameter information of the wall thickness and diameter of each section of the bamboo tube.

4. The high-efficiency automated equipment for bamboo strip production according to claim 1, characterized in that: Each bamboo breaking device includes a bamboo breaking disc located on one side of the bamboo tube conveyor belt and a pushing member located on the other side thereof and pushing the corresponding bamboo tubes of the same specification toward the bamboo breaking disc for breaking and cutting operations; the front side of each bamboo breaking disc is provided with a roller for receiving a number of bamboo slices, and the interior of the roller is provided with a number of partitions arranged along its length, and a guide groove for the bamboo slices to pass through is formed between two adjacent partitions, and the number of guide grooves is the same as the number of blades on the bamboo breaking disc located at the rear.

5. The high-efficiency automated equipment for bamboo strip production according to claim 1 or 4, characterized in that: Each strip drawing assembly is located directly behind the feed end of the planing equipment. The strip drawing assembly includes an upper strip drawing roller and a lower strip drawing roller that are arranged at intervals and can rotate in the same direction. A strip drawing channel for bamboo slices to pass through is formed between the upper and lower strip drawing rollers. Every time the roller rotates one station, the front end of a bamboo slice therein is placed in the strip drawing channel. The strip drawing assembly draws a bamboo slice in the strip drawing channel to the feed end of the planing equipment through the same direction rotation of the upper and lower strip drawing rollers.

6. The high-efficiency automated equipment for bamboo strip production according to claim 1, characterized in that: Each stacking area is equipped with a stacker for stacking bamboo strips. Bundles of bamboo strips of various specifications are stacked by the corresponding stacker to form stacked bamboo strips of various specifications, which are then transported to the carbonization equipment for carbonization treatment through conveying tools.

Citation Information

Patent Citations

  • Bamboo wire drawing machine with adjustable cross-sectional shape of bamboo wire

    CN104526812B

  • An automatic bamboo strip bundling device and method

    CN114955063B

  • Bamboo sawing machine

    CN116001044A

  • Multifunctional clamping device of bamboo sawing machine

    CN219685994U

  • Bamboo cane woven curtain production line

    CN219968289U

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