Bamboo chip splitting and bamboo juice taking all-in-one machine
By designing floating wire splitting rollers and scraping components in the bamboo sheet wire splitting device, the problem of degradation of wire splitting efficiency and equipment failure caused by fiber accumulation is solved, and the stable transmission and efficient wire splitting of bamboo sheets are achieved.
Patent Information
- Application Number
- CN202510508002.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2045-04-22
AI Technical Summary
In the existing bamboo sheet wire separation device, the triangular cavity area formed between the three wire separation rollers is likely to become the accumulation point of bamboo sheet fibers, resulting in reduced filamentation efficiency and equipment failure.
A bamboo slice thread-shaving and bamboo juice integrated machine is designed. By designing a wire splitting roller to float. When the fibers in the cavity accumulate to a certain extent, the floating wire splitting roller stays away from other wire splitting rollers, causing the fibers to fall and discharge, and a scraping assembly is provided to remove fiber residues on the rollers.
It effectively avoids excessive accumulation of fibers in the cavity, ensures stable transmission and efficient filamentation of bamboo sheets, and reduces the risk of equipment failure and maintenance costs.
Smart Images

Figure CN120190879A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of bamboo slice splitting, in particular to a bamboo slice splitting and bamboo juice extracting integrated machine. Background Art
[0002] As a renewable natural material with a short growth cycle and excellent mechanical properties, bamboo has wide application value in building materials, furniture, handicrafts and papermaking. After being made into bamboo charcoal, due to its porous structure and large specific surface area, it is mainly used to adsorb pollutants such as formaldehyde, benzene, odor and moisture in air purification. It has the advantages of being natural and environmentally friendly, reusable (partially recovering adsorption capacity after drying) and no secondary energy consumption, and is suitable for improving small spaces or low-concentration pollution.
[0003] In some application areas, bamboo strips need to be separated into fibers (pressed or hammered into fibers) to efficiently separate bamboo strips into continuous and uniform bamboo fibers along the fiber direction to meet the needs of subsequent processes such as reorganization or papermaking. Existing material separation devices usually use three sets of continuously rotating separation rollers, one of which is located above the junction of the other two sets, forming a specific angle configuration. The purpose is to efficiently and continuously press and separate the material into slender and uniform bamboo fibers along its fiber direction through the rotation of the rollers. This process is crucial to ensure the applicability and performance of bamboo fibers in subsequent processing such as reorganization or papermaking.
[0004] However, the existing technology faces a significant problem in practical application: the triangular cavity area formed between the three wire separation rollers easily becomes the accumulation point of bamboo fiber. As the wire separation process continues, these accumulated fibers will gradually increase, which not only affects the smooth transmission of bamboo chips, but also may cause the wire separation efficiency to decrease, and even cause equipment failure in severe cases, increasing maintenance costs and the risk of production interruption. Summary of the invention
[0005] The object of the present invention is to provide an integrated machine for separating bamboo chips and extracting bamboo juice. By designing one of the separating rollers to be floating, when there are more bamboo chip fibers in the triangular cavity formed by the three separating rollers, the floating separating roller will move away from the other separating knots, so that the bamboo chip fibers fall and are discharged.
[0006] To solve the problems of the prior art, the present invention provides a bamboo slice fiberizing and bamboo juice extracting integrated machine, which includes a main fiberizing body that can extrude bamboo slices into fibrous shapes. At the discharge end of the main fiberizing body, there is a secondary fiberizing body that can further extrude the fibrous bamboo slices. In the main fiberizing body, there are two first fiberizing rollers with unchanged positions, and there is also a second fiberizing roller that can reciprocate along the direction of its feed end and discharge end. The two first fiberizing rollers and the second fiberizing roller are distributed in a triangular shape. On the main fiberizing body, there is also an adjusting component that can drive the second fiberizing roller to reciprocate. The first fiberizing roller can rotate around its axis, and the second fiberizing roller can rotate around its axis. And one of the first fiberizing rollers is arranged at the top of the intersection of the other first fiberizing roller and the second fiberizing roller. When the second fiberizing roller moves away from the first fiberizing roller, the bamboo slice fibers in the cavity formed by the two first fiberizing rollers and the second fiberizing roller fall.
[0007] Preferably, the adjusting component includes a first telescopic driving member installed on the front and rear sides of the main fiberizing body and arranged along the transverse direction of the main fiberizing body. The output end of the first telescopic driving member is connected to an adjusting plate, and the two ends of the second fiberizing roller are respectively rotatably arranged in the adjusting plate. When the first telescopic driving member extends or contracts, the second fiberizing roller can move away from or close to the first fiberizing roller.
[0008] Preferably, the adjusting component further includes a first scraping component that can move synchronously with the second fiberizing roller. The first scraping component includes a first scraping plate. A number of grooves are formed on the second fiberizing roller, and on the first scraping plate, there are also comb teeth that cooperate with the grooves on the second fiberizing roller and are used to scrape the residual bamboo slice fibers on the second fiberizing roller.
[0009] Preferably, the first scraping component includes an adjusting threaded rod that can be rotatably arranged on the adjusting plate and is used to adjust the distance between the first scraping plate and the second fiberizing roller. One end of the adjusting threaded rod is movably connected to the first scraping plate, and the first scraping plate is inclined downward along the discharge end of the main fiberizing body.
[0010] Preferably, at the bottom of the main fiberizing body, there is also a second scraping plate that can scrape the bamboo slice fibers on the first fiberizing roller. The second scraping plate includes a second scraping plate that can contact the surface of the lower first fiberizing roller. A number of grooves are also formed on the first fiberizing roller, and on the second scraping plate, there are also comb teeth that cooperate with the number of grooves. On the second scraping component, there is also a second telescopic driving member fixed to the bottom of the main fiberizing body. The output end of the second telescopic driving member is connected to the second scraping plate, and a number of through holes for the bamboo juice to flow down are also formed on the second scraping plate.
[0011] Preferably, a juice discharge port for allowing bamboo slice juice to flow downward and inclined downward is further provided on the side of the main filament separating body. The feeding end of the main filament separating body is inclined with a feeding port for allowing bamboo slices to enter the main filament separating body. A retaining roller capable of preventing bamboo slices from bouncing upward is rotatably arranged on the feeding port through a bracket.
[0012] Preferably, a plurality of first filament separating protrusions are arranged on the first filament separating roller along its length direction. A plurality of first filament separating teeth for separating bamboo slices are distributed on the first filament separating protrusions. A filament separating groove is formed between adjacent first filament separating protrusions, and a plurality of second filament separating teeth are distributed in the filament separating groove. A plurality of second filament separating protrusions are arranged on the second filament separating roller along its length direction, and a plurality of third filament separating teeth are distributed on the second filament separating protrusions. A filament separating groove is formed between adjacent second filament separating protrusions, and a plurality of fourth filament separating teeth are distributed on the filament separating groove of the second filament separating roller.
[0013] Preferably, the auxiliary filament separating body includes a pressing table installed at the bottom of the auxiliary filament separating body and a pressing plate capable of moving up and down in the auxiliary filament separating body. A connecting rod is rotatably arranged at the center position of the top of the pressing plate. An elevating mechanism capable of driving the pressing plate to move up and down is further provided on the auxiliary filament separating body.
[0014] Preferably, the elevating mechanism includes a crankshaft rotatably arranged through a bearing seat. The crankshaft is movably connected with the connecting rod. One end of the crankshaft is connected with a first belt pulley. The elevating mechanism further includes a second rotary driving member fixed on the side of the auxiliary filament separating body. A second belt pulley is connected to the output end connecting plate of the second rotary driving member. The second belt pulley and the first belt pulley are connected by a belt.
[0015] Preferably, one end of the two first filament separating rollers passes through the main filament separating body and is connected with a first gear. One end of the second filament separating roller passes through the main filament separating body and is connected with a second gear, and the first gear and the second gear can be meshed. A speed reducer and a first rotary driving member in transmission connection with the speed reducer are arranged on one side of the main filament separating body away from the first gear and the second gear. The output end of the speed reducer is in transmission connection with one of the first filament separating rollers.
[0016] The beneficial effects of the present invention compared with the prior art are:
[0017] 1. The present application provides a second filament separating roller capable of reciprocating movement. When the main filament separating body performs filament separation on bamboo slices, the first filament separating roller and the second filament separating roller rotate in coordination, and the bamboo slices are separated into continuous bamboo fiber by the filament separating teeth on the roller surface. However, during the filament separation process, some bamboo fibers will inevitably remain in the triangular cavity formed by the three filament separating rollers. Over time, these residual fibers may gradually accumulate, thus affecting the smooth transmission of bamboo slices. To solve this problem, the present invention introduces a first telescopic driving member. When it is detected that the fibers in the cavity have accumulated to a certain extent, by activating the first telescopic driving member, the second filament separating roller can be driven to move away from the first filament separating roller. This action enables the bamboo fibers originally accumulated therein to fall naturally due to gravity and be discharged. In this way, the present invention successfully avoids the excessive accumulation of bamboo fibers in the cavity, thereby ensuring the stable transmission and efficient filament separation of bamboo slices.
[0018] 2. In addition to solving the problem of fiber accumulation, the present invention further considers how to effectively remove the fiber residues on the surface of the filament separating rollers. For this purpose, a first scraping assembly and a second scraping assembly are specially provided. The first scraping assembly is closely matched with the second filament separating roller through the comb teeth on the first scraper. When the second filament separating roller rotates under the action of the driving device, the comb teeth can effectively scrape off the fiber residues on its surface. At the same time, the position of the first scraping assembly can be flexibly adjusted according to actual needs. Similarly, a second scraper is provided in the second scraping assembly, but the second scraper contacts and scrapes off the fiber residues on the surface of another first filament separating roller. It is particularly worth mentioning that through holes are designed on the second scraper, which can allow liquids such as bamboo juice to be discharged smoothly and collected for use.
[0019] 3. To further improve the subsequent processing quality of bamboo fibers, the present invention provides a secondary filament separating body. The secondary filament separating body is internally equipped with a pressing plate capable of moving up and down. When the bamboo fibers enter the area between the pressing plate and the pressing table, the pressing plate will continuously hammer the bamboo fibers under the action of the lifting mechanism. This action can not only make the bamboo fibers softer and easier to reorganize, but also further remove the residual stress in the fibers, thereby improving the overall quality and performance of the subsequent processed products. In summary, through a series of innovative designs and technical means, the present invention successfully solves the problems of fiber accumulation, decline in roller performance, and unstable subsequent processing quality existing in the existing bamboo slice filament separating device. These improvements not only improve the efficiency and quality of bamboo slice filament separation, but also provide strong support for the sustainable development of the bamboo processing industry. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is the first three-dimensional structural schematic diagram of the bamboo slice filament separating and bamboo juice extracting integrated machine of the present invention.
[0021] Figure 2It is the second three-dimensional structure schematic diagram of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0022] Figure 3 It is the three-dimensional structure schematic diagram of the auxiliary fiber separation body of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0023] Figure 4 It is the first three-dimensional structure schematic diagram of the main fiber separation body of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0024] Figure 5 It is the second three-dimensional structure schematic diagram of the main fiber separation body of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0025] Figure 6 It is the third three-dimensional structure schematic diagram of the main fiber separation body of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0026] Figure 7 It is the three-dimensional structure schematic diagram of the first adjustment component of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0027] Figure 8 It is the three-dimensional structure schematic diagram of the second adjustment component of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0028] Figure 9 It is the structure schematic diagram when the first fiber separation roller and the second fiber separation roller of the second embodiment of the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention are matched.
[0029] Figure 10 It is the Figure 9 amplified structure schematic diagram at position A in the bamboo slice fiber separation and bamboo juice extraction integrated machine of the present invention.
[0030] In the figure, the reference numerals are: 1, main fiber separation body; 11, first fiber separation roller; 111, first gear; 112, first fiber separation protrusion; 1121, first fiber separation tooth; 113, second fiber separation tooth; 12, second fiber separation roller; 121, second gear; 122, second fiber separation protrusion; 1221, third fiber separation tooth; 123, fourth fiber separation tooth; 13, feeding port; 131, retaining roller; 14, speed reducer; 15, first rotation driving member; 16, juice discharge port; 17, adjustment component; 171, first telescopic driving member; 172, adjustment plate; 173, first scraping component; 1731, first scraping plate; 1732, adjustment screw rod; 18, second scraping component; 181, second telescopic driving member; 182, second scraping plate; 2, auxiliary fiber separation body; 21, pressing plate; 211, connecting rod; 22, crankshaft; 221, first belt pulley; 23, second rotation driving member; 231, second belt pulley; 24, pressing table. Detailed implementation manners
[0031] To further understand the features, technical means, specific purposes and functions achieved by the present invention, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0032] Referring to Figures 1-8 As shown in the figure, Embodiment 1: The present invention provides a bamboo slice fiber separation and bamboo juice extraction integrated machine, which includes a main fiber separation body 1. The main fiber separation body 1 can extrude bamboo slices into fibrous shapes. A secondary fiber separation body 2 is provided at the discharge end of the main fiber separation body 1, which can further extrude the fibrous bamboo slices. Two first fiber separation rollers 11 with fixed positions are arranged in the main fiber separation body 1. A second fiber separation roller 12 that can reciprocate along the direction of its feed end and discharge end is also arranged in the main fiber separation body 1. The two first fiber separation rollers 11 and the second fiber separation roller 12 are distributed in a triangular shape. An adjustment assembly 17 that can drive the second fiber separation roller 12 to reciprocate is also arranged on the main fiber separation body 1. The first fiber separation roller 11 can rotate around its axis, and the second fiber separation roller 12 can rotate around its axis. One of the first fiber separation rollers 11 is arranged at the top of the intersection of the other first fiber separation roller 11 and the second fiber separation roller 12. When the second fiber separation roller 12 moves away from the first fiber separation roller 11, the bamboo fiber in the cavity formed by the two first fiber separation rollers 11 and the second fiber separation roller 12 drops.
[0033] When the bamboo slices enter the main fiber separation body 1, the bamboo slices are first extruded by the two first fiber separation rollers 11 with fixed positions. Since the first fiber separation rollers 11 can rotate around their axes, the bamboo slices will be evenly extruded when passing through, thus forming a preliminary fibrous structure. As the bamboo slices continue to move forward, the bamboo slices will encounter the second fiber separation roller 12 that can reciprocate, further extruding the bamboo slices. The bamboo fiber after preliminary extrusion will enter the secondary fiber separation body 2 for further extrusion and processing.
[0034] The adjustment assembly 17 includes a first telescopic driving member 171 installed on the front and rear sides of the main fiber separation body 1 and arranged along the transverse direction of the main fiber separation body 1. The output end of the first telescopic driving member 171 is connected to an adjustment plate 172. The two ends of the second fiber separation roller 12 are respectively rotatably arranged in the adjustment plate 172. When the first telescopic driving member 171 extends or contracts, the second fiber separation roller 12 can move away from or close to the first fiber separation roller 11.
[0035] During the fiber splitting process, some bamboo fiber inevitably remains in the triangular cavity formed by the three fiber splitting rollers. Over time, these residual fibers may gradually accumulate, thereby affecting the smooth conveyance of the bamboo slices. To solve this problem, the present invention introduces a first telescopic driving member 171. When it is detected that the fibers in the cavity have accumulated to a certain extent, by activating the first telescopic driving member 171, the second fiber splitting roller 12 can be driven to move away from the first fiber splitting roller 11. This action enables the bamboo fibers originally accumulated therein to fall naturally due to gravity and be discharged.
[0036] The adjusting assembly 17 further includes a first scraping assembly 173 that can move synchronously with the second fiber splitting roller 12. The first scraping assembly 173 includes a first scraping plate 1731. A plurality of grooves are formed on the second fiber splitting roller 12, and comb teeth that cooperate with the grooves on the second fiber splitting roller 12 and are used for scraping the residual bamboo fibers on the second fiber splitting roller 12 are further provided on the first scraping plate 1731.
[0037] The first scraping assembly 173 includes an adjusting threaded rod 1732 that is rotatably arranged on the adjusting plate 172 and is used for adjusting the distance between the first scraping plate 1731 and the second fiber splitting roller 12. One end of the adjusting threaded rod 1732 is movably connected to the first scraping plate 1731, and the first scraping plate 1731 is inclined downward along the discharge end of the main fiber splitting body 1.
[0038] The first scraping assembly 173 is closely matched with the second fiber splitting roller 12 through the comb teeth on the first scraping plate 1731. When the second fiber splitting roller 12 rotates under the action of the driving device, the comb teeth can effectively scrape the fiber residues on its surface. At the same time, the position of the first scraping assembly 173 can also be flexibly adjusted according to actual needs.
[0039] A second scraping plate 182 that can scrape the bamboo fibers on the first fiber splitting roller 11 is further provided at the bottom in the main fiber splitting body 1. The second scraping plate 182 includes a second scraping plate 182 that can contact the surface of the lower first fiber splitting roller 11. A plurality of grooves are further formed on the first fiber splitting roller 11, and comb teeth that cooperate with the plurality of grooves are further provided on the second scraping plate 182. A second telescopic driving member 181 fixed to the bottom of the main fiber splitting body 1 is further included in the second scraping assembly 18. The output end of the second telescopic driving member 181 is connected to the second scraping plate 182, and a plurality of through holes for the bamboo juice to flow down are further provided on the second scraping plate 182.
[0040] A second scraping plate 182 is provided in the second scraping assembly 18, but the second scraping plate 182 contacts another first fiber splitting roller 11 and scrapes the fiber residues on its surface. It is particularly worth mentioning that through holes are designed on the second scraping plate 182, which can enable liquids such as bamboo juice to be discharged and collected smoothly. The collected bamboo juice can be used in agriculture, medicine, or biological culture media, etc.
[0041] On the side of the main filament separating body 1, there is also a juice discharge port 16 which is used for the bamboo slice juice to flow down and is inclined downward. During the process of squeezing and filament separating the bamboo slices, some bamboo juice or moisture may be generated. The juice discharge port 16 can ensure that these liquids can flow out of the main filament separating body 1 smoothly, avoiding their accumulation inside the machine. The inclined downward design helps to accelerate the outflow of the juice. The feeding end of the main filament separating body 1 is inclined and provided with a feeding port 13 for the bamboo slices to enter the main filament separating body 1. On the feeding port 13, there is also a retaining roller 131 rotatably arranged through a bracket, which can prevent the bamboo slices from bouncing upward. The feeding port 13 is designed to be inclined. This design helps the bamboo slices to smoothly slide into the main filament separating body 1, reducing the risk of material jamming or blockage. The main function of the retaining roller 131 is to prevent the bamboo slices from hitting the staff due to the upward rebounding force generated during the process of the bamboo slices entering the main filament separating body 1 due to extrusion or friction.
[0042] Example 2: Refer to Figures 9-10 As shown, on the first filament separating roller 11, there are several first filament separating protrusions 112 distributed along its length direction. The existence of the first filament separating protrusions 112 increases the roughness of the roller surface, which helps to provide sufficient friction when the bamboo slices pass through, enabling them to be effectively squeezed and filament separated. There are several first filament separating teeth 1121 distributed on the first filament separating protrusions 112. The fine tooth-like structure of the first filament separating teeth 1121 can penetrate deeper into the bamboo slices, thus helping to divide them into finer fibers. The number and distribution density of the first filament separating teeth 1121 will directly affect the filament separating effect and the thickness of the fibers. Between adjacent first filament separating protrusions 112, there are filament separating grooves formed, and several second filament separating teeth 113 are distributed in the filament separating grooves. The filament separating grooves provide additional space for the bamboo slices, enabling them to deform and split more easily when being squeezed. The tooth-like structure of the second filament separating teeth 113 further enhances the filament separating effect. When the bamboo slices are squeezed into the filament separating grooves, the second filament separating teeth 113 will exert additional shear force on them, thus helping to divide them into smaller fibers. On the second filament separating roller 12, there are several second filament separating protrusions 122 distributed along its length direction, and several third filament separating teeth 1221 are distributed on the second filament separating protrusions 122. Between adjacent second filament separating protrusions 122, there are filament separating grooves formed, and several fourth filament separating teeth 123 are distributed on the filament separating grooves of the second filament separating roller 12. The function of the second filament separating protrusions 122 is the same as that of the first filament separating protrusions 112, the function of the third filament separating teeth 1221 is the same as that of the first filament separating teeth 1121, and the function of the fourth filament separating teeth 123 is the same as that of the second filament separating teeth 113.
[0043] The auxiliary wire-splitting body 2 includes a press table 24 installed at the bottom of the auxiliary wire-splitting body 2 and a pressing plate 21 that can move up and down in the auxiliary wire-splitting body 2. A connecting rod 211 is rotatably arranged at the center position of the top of the pressing plate 21. The auxiliary wire-splitting body 2 is also provided with a lifting mechanism that can drive the pressing plate 21 to move up and down. The lifting mechanism includes a crankshaft 22 that is rotatably arranged through a bearing seat, the crankshaft 22 is movably connected to the connecting rod 211, one end of the crankshaft 22 is connected to a first pulley 221, and the lifting mechanism also includes a second rotating driving member 23 fixed to the side of the auxiliary wire-splitting body 2, and the output end connecting plate of the second rotating driving member 23 has a second pulley 231, and the second pulley 231 is connected to the first pulley 221 through a belt.
[0044] When the second rotary drive member 23 is started, it drives the second pulley 231 to rotate, and then drives the first pulley 221 and the crankshaft 22 to rotate through the belt. The rotation of the crankshaft 22 drives the connecting rod 211 to swing up and down, thereby driving the pressing plate 21 to move up and down in the auxiliary filament separation body 2. When the bamboo fiber enters the area between the pressing plate 21 and the pressing platform 24, the pressing plate 21 will continuously beat the bamboo fiber under the action of the lifting mechanism. This action can not only make the bamboo fiber softer and easier to weave or reorganize, but also further remove the residual stress in the fiber, thereby improving the overall quality and performance of the subsequent processed products.
[0045] One end of the two first wire-separating rollers 11 passes through the main wire-separating body 1 and is connected to the first gear 111, one end of the second wire-separating roller 12 passes through the main wire-separating body 1 and is connected to the second gear 121, and the first gear 111 and the second gear 121 can mesh, and a reducer 14 and a first rotating drive member 15 that is transmission-connected to the reducer 14 are provided on the side of the main wire-separating body 1 away from the first gear 111 and the second gear 121, and the output end of the reducer 14 is transmission-connected to one of the first wire-separating rollers 11.
[0046] The above embodiments only express one or several implementation modes of the present invention, and the description thereof is relatively specific and detailed, but it cannot be understood as limiting the scope of the present invention. It should be pointed out that, for those of ordinary skill in the art, several variations and improvements can be made without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the attached claims.
Claims
1. Bamboo slice separation and bamboo juice extraction machine, characterized by: The invention comprises a main wire-separating machine body (1), wherein the main wire-separating machine body (1) is capable of squeezing bamboo pieces into fibers, and a secondary wire-separating machine body (2) is provided at the discharge end of the main wire-separating machine body (1) and is capable of squeezing the fibrous bamboo pieces again, and the main wire-separating machine body (1) is provided with two first wire-separating rollers (11) whose positions remain unchanged, and the main wire-separating machine body (1) is also provided with a second wire-separating roller (12) capable of reciprocating along the direction of its feed end and discharge end, and the two first wire-separating rollers (11) and the second wire-separating rollers (12) are distributed in a triangular shape, and the main wire-separating machine body (1) is provided with a plurality of first wire-separating rollers (11) and a plurality of second wire-separating rollers (12) that are capable of reciprocating along the direction of its feed end and discharge end. The wire-separating machine body (1) is also provided with an adjusting assembly (17) capable of driving the second wire-separating roller (12) to move back and forth; the first wire-separating roller (11) is capable of rotating around its axis, the second wire-separating roller (12) is capable of rotating around its axis, and one of the first wire-separating rollers (11) is arranged at the top of the intersection of the other first wire-separating roller (11) and the second wire-separating roller (12); when the second wire-separating roller (12) moves away from the first wire-separating roller (11), the bamboo fiber in the cavity formed by the two first wire-separating rollers (11) and the second wire-separating roller (12) falls down.
2. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 1, characterized in that: The adjustment component (17) comprises a first telescopic driving member (171) which is installed on the front and rear sides of the main wire-separating body (1) and is arranged along the lateral direction of the main wire-separating body (1); the output end of the first telescopic driving member (171) is connected to an adjustment plate (172); the two ends of the second wire-separating roller (12) are respectively rotatably arranged in the adjustment plate (172); when the first telescopic driving member (171) is extended or shortened, the second wire-separating roller (12) can be away from the first wire-separating roller (11) or close to the first wire-separating roller (11).
3. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 2, characterized in that: The adjustment component (17) also includes a first scraping component (173) capable of moving synchronously with the second wire separation roller (12), the first scraping component (173) including a first scraper (1731), the second wire separation roller (12) is provided with a plurality of grooves, and the first scraper (1731) is also provided with comb teeth that cooperate with the grooves on the second wire separation roller (12) and are used to scrape off the bamboo fiber remaining on the second wire separation roller (12).
4. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 3 is characterized in that: The first scraping assembly (173) comprises an adjusting threaded rod (1732) which is rotatably arranged on the adjusting plate (172) and is used to adjust the distance between the first scraper (1731) and the second wire separation roller (12); one end of the adjusting threaded rod (1732) is movably connected to the first scraper (1731); and the first scraper (1731) is inclined downward along the discharge end of the main wire separation machine body (1).
5. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 1, characterized in that: The bottom of the main wire-separating machine body (1) is also provided with a second scraper (182) capable of scraping off the bamboo fiber on the first wire-separating roller (11); the second scraper (182) includes a second scraper (182) capable of contacting the surface of the lower first wire-separating roller (11); the first wire-separating roller (11) is also provided with a plurality of grooves; the second scraper (182) is also provided with comb teeth that cooperate with the plurality of grooves; the second scraping assembly (18) also includes a second telescopic driving member (181) fixed to the bottom of the main wire-separating machine body (1); the output end of the second telescopic driving member (181) is connected to the second scraper (182); the second scraper (182) is also provided with a plurality of through holes for bamboo juice to flow down.
6. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 1, characterized in that: The side of the main wire-dividing machine body (1) is also provided with a juice outlet (16) inclined downward for allowing bamboo juice to flow down, and the feeding end of the main wire-dividing machine body (1) is provided with an inlet (13) inclined to allow bamboo chips to enter the main wire-dividing machine body (1), and a blocking roller (131) is also provided on the inlet (13) through a bracket to rotate and prevent the bamboo chips from bouncing upward.
7. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 1, characterized in that: The first wire-dividing roller (11) is provided with a plurality of first wire-dividing protrusions (112) distributed along its length direction, and a plurality of first wire-dividing teeth (1121) for dividing bamboo pieces are distributed on the first wire-dividing protrusions (112), and a wire-dividing groove is formed between adjacent first wire-dividing protrusions (112), and a plurality of second wire-dividing teeth (113) are distributed in the wire-dividing groove; the second wire-dividing roller (12) is provided with a plurality of second wire-dividing protrusions (122) distributed along its length direction, and a plurality of third wire-dividing teeth (1221) are distributed on the second wire-dividing protrusions (122), and a wire-dividing groove is formed between adjacent second wire-dividing protrusions (122), and a plurality of fourth wire-dividing teeth (123) are distributed on the wire-dividing groove on the second wire-dividing roller (12).
8. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 1, characterized in that: The auxiliary wire-splitting machine body (2) comprises a pressing platform (24) installed at the bottom of the auxiliary wire-splitting machine body (2) and a pressing plate (21) capable of moving up and down in the auxiliary wire-splitting machine body (2); a connecting rod (211) is rotatably arranged at the center position of the top of the pressing plate (21); and a lifting mechanism capable of driving the pressing plate (21) to move up and down is also arranged on the auxiliary wire-splitting machine body (2).
9. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 8, characterized in that: The lifting mechanism comprises a crankshaft (22) rotatably arranged through a bearing seat, the crankshaft (22) is movably connected to a connecting rod (211), one end of the crankshaft (22) is connected to a first pulley (221), and the lifting mechanism also comprises a second rotating driving member (23) fixed to the side of the auxiliary wire-dividing machine body (2), the output end connecting plate of the second rotating driving member (23) is provided with a second pulley (231), and the second pulley (231) is connected to the first pulley (221) through a belt.
10. The integrated bamboo slice separating and bamboo juice extracting machine according to claim 1, characterized in that: One end of the two first wire-separating rollers (11) passes through the main wire-separating body (1) and is connected to a first gear (111); one end of the second wire-separating roller (12) passes through the main wire-separating body (1) and is connected to a second gear (121); the first gear (111) and the second gear (121) are meshable; a reducer (14) and a first rotating driving member (15) transmission-connected to the reducer (14) are provided on a side of the main wire-separating body (1) away from the first gear (111) and the second gear (121); an output end of the reducer (14) is transmission-connected to one of the first wire-separating rollers (11).
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