A rapid bamboo shoot peeling machine and its peeling method
By designing the structure and method of a rapid bamboo shoot peeling machine, the problem of existing bamboo shoot peeling machines easily cutting the bamboo shoot core has been solved, achieving stable linear conveying and efficient peeling of bamboo shoots, and ensuring the integrity of the bamboo shoot core.
Patent Information
- Application Number
- CN202410164845.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-05
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2044-02-05
AI Technical Summary
The blades of existing bamboo shoot peeling machines are set perpendicular to the direction of bamboo shoot feeding, resulting in a large cutting area that easily cuts into the core of the bamboo shoot, causing waste.
A rapid bamboo shoot peeling machine was designed, which adopts a base frame with parallel and symmetrical arrangement on both sides. The limiting plate, feeding end, feeding end and discharging end are arranged at an angle. By utilizing the rotation of the upper and lower feeding rollers and the discharging rollers, combined with the ring cutter and the feeding box, it is ensured that the cutting direction of the bamboo shoot is consistent with the direction of the bamboo shoot heart during the straight conveying process, so as to avoid damage to the bamboo shoot heart.
It achieves stable linear transport and efficient peeling of bamboo shoots, avoids damage to the core of the shoot, and improves peeling efficiency and product integrity.
Smart Images

Figure CN117770467B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bamboo shoot peeling machine technology, specifically to a rapid bamboo shoot peeling machine and its peeling method. Background Technology
[0002] Bamboo shoots, as a purely natural food ingredient, are highly favored by the public. There are many edible varieties of bamboo shoots, such as the Lei bamboo shoots and Shui bamboo shoots, which are abundant in the mountainous areas of southern Anhui during spring and are considered delicacies. These bamboo shoots are generally slender and conical in shape. The diameter of the root end of the Shui bamboo shoot, including its sheath, is about 20-30mm, and its length is about 300-450mm. Bamboo shoots harvested from the wild are often steamed or boiled for immediate consumption because peeling the sheaths is extremely tedious. Each person peels the sheaths themselves. If other cooking methods are used, the sheaths must first be peeled to remove the shoot core, also known as the shoot fruit. Due to seasonal factors, bamboo shoots grow extremely rapidly, and bamboo shoots from the same area mature within a short period. Therefore, a synchronized and rapid processing method is needed to collect the shoot cores (shoot fruits) and process them into bamboo stalks for easy storage and long-term consumption.
[0003] In the prior art, such as the patent document with publication number CN217906189U, a bamboo shoot peeling machine is disclosed. During the peeling process, the bamboo shoot head is fed to the guide side of the bamboo shoot stalk. The bamboo shoot is pressed by the bamboo shoot stalk pressing mechanism and comes into contact with the blade, thereby cutting the bamboo shoot from near the head to the tail, exposing the core. However, in actual application, because the blade of this peeling machine is set perpendicular to the feeding direction of the bamboo shoot, the cutting range is relatively large when cutting the bamboo shoot skin, so it is easy to cut into the core of the bamboo shoot, resulting in waste. Summary of the Invention
[0004] The purpose of this invention is to provide a rapid bamboo shoot peeling machine and a bamboo shoot peeling method thereof, solving the following technical problems:
[0005] In practical applications, because the blades of this bamboo shoot peeling machine are set perpendicular to the feeding direction of the bamboo shoot, the cutting area is relatively large when cutting the bamboo shoot skin, making it easy to cut to the core of the bamboo shoot.
[0006] The objective of this invention can be achieved through the following technical solutions:
[0007] A rapid bamboo shoot peeling machine includes a base frame arranged in parallel and symmetrical arrangement on both sides, with limiting plates fixedly arranged on the base frame on both sides;
[0008] The feeding end, the conveying end, and the discharging end are arranged in an inclined sequence between the limiting plates on both sides;
[0009] The feeding end includes an upper feeding roller and a lower feeding roller arranged in parallel, with a feeding channel formed between the upper feeding roller and the lower feeding roller. The upper feeding roller and the lower feeding roller are connected to a first rotating mechanism that drives them to rotate.
[0010] Among them, the surfaces of the upper feed roller and the lower feed roller are respectively symmetrically and fixedly provided with two sets of first annular cutters and second annular cutters;
[0011] The feeding end includes two sets of feeding plates symmetrically arranged on one side of the feeding channel. Each set of feeding plates is provided with a feeding box, and the feeding box has openings at both ends.
[0012] The discharge end includes an upper discharge roller and a lower discharge roller arranged in parallel, with a discharge channel formed between the upper discharge roller and the lower discharge roller. The upper discharge roller and the lower discharge roller are connected to a second rotating mechanism that drives them to rotate.
[0013] Preferably, the feeding end further includes two sets of feeding plates symmetrically arranged on the other side of the feeding channel, and two sets of guide plates symmetrically and slidingly arranged on the feeding plates;
[0014] The distance between the guide plates on both sides gradually decreases along the direction of the feed channel.
[0015] Preferably, guide rods are symmetrically fixedly arranged on the feed plate, and guide plates on both sides are slidably arranged on the guide rods;
[0016] A return spring is fitted onto the guide rod.
[0017] Preferably, the upper feed roller is symmetrically and fixedly provided with support shafts on both sides;
[0018] One of the limiting plates on one side has a swing rod rotatably arranged on its outer side, and the support shaft is rotatably connected to the swing rod.
[0019] Preferably, L-shaped brackets are symmetrically fixed at both ends of the feed plate, and the L-shaped brackets are rotatably connected to the support shaft;
[0020] One side of the swing rod is fixed to the L-shaped bracket by a support rod.
[0021] Preferably, a drive motor is fixedly arranged between the two limiting plates, and the output end of the drive motor is connected to the upper discharge roller through the first pulley.
[0022] Preferably, the second rotating mechanism includes a first gear fixedly disposed at the other end of the upper discharge roller;
[0023] The lower discharge roller is provided with a second gear that meshes with the first gear at its end.
[0024] Preferably, the first rotating mechanism includes a third gear rotatably mounted on the limiting plate, the third gear meshing with the second gear, and a fourth gear meshing with the third gear fixedly mounted at the end of the lower feed roller.
[0025] Preferably, the second rotating mechanism further includes a fifth gear rotatably arranged on the outside of the limiting plate, the fifth gear meshing with the fourth gear;
[0026] The fifth gear is connected to the upper feed roller via the second pulley.
[0027] A method for peeling bamboo shoots using a rapid bamboo shoot peeling machine includes the following steps:
[0028] With one end of the bamboo shoot facing between the two sets of guide plates, it enters the feed trough along the channel formed by the guide plates on both sides.
[0029] The first rotating mechanism drives the upper and lower feed rollers to rotate, conveying the bamboo shoots toward the feeding end.
[0030] When bamboo shoots are conveyed in the feeding trough, the first annular cutter and the second annular cutter are respectively inserted into the bamboo shoot shell. When the first rotating mechanism drives the upper feeding roller and the lower feeding roller to rotate and convey the bamboo shoots, the first annular cutter and the second annular cutter cut the shell of the bamboo shoot on the upper and lower sides.
[0031] After the bamboo shoots are output through the feeding trough, their heads first enter the feeding box through the opening, and the feeding box guides the bamboo shoots.
[0032] After the bamboo shoots are output through the feeding box, the sheaths at the head of the bamboo shoots reach the discharge trough. Under the reverse rotation of the upper and lower discharge rollers, the sheaths at the tip of the bamboo shoots are separated from the core.
[0033] The first storage trough is placed directly below the discharge channel, and the second storage trough is placed directly below the upper discharge roller. After peeling, the bamboo shoot shells fall into the first storage trough, and the bamboo shoot cores fall into the second storage trough.
[0034] The beneficial effects of this invention are:
[0035] (1) After the bamboo shoots of the present invention are output through the feeding channel, their heads first enter the feeding box through the opening. The feeding box guides the bamboo shoots so that they can always maintain a straight conveying state when entering the discharge end, and avoid the phenomenon of feeding deviation.
[0036] (2) After the bamboo shoots of the present invention are output through the feeding box, the sheath at the head of the bamboo shoot reaches the discharge channel. Under the reverse rotation of the upper and lower discharge rollers, the sheath at the tip of the shoot is pressed into the discharge channel. Since the core of the bamboo shoot inside the sheath has appropriate stiffness or appropriate bending strength, the tip of the core first protrudes from the sheath. The rear section of the bamboo shoot stalk containing the sheath rests on the lower discharge roller, and the exposed tip of the core rests on the upper discharge roller. As the upper and lower discharge rollers continue to rotate, the sheath is continuously pressed into the discharge channel. The bamboo shoot is continuously peeled off from the core, and the gradually exposed core is discharged along the upper and lower discharge rollers, falling to the bottom of the frame for collection. In this embodiment, the cutting direction of the cutter is consistent with the running direction of the bamboo shoot, so that the cutter cuts the bamboo shoot shell in a straight line, thus avoiding damage to the core. At the same time, the first and second annular cutters, while cutting the bamboo shoot shell, also act to clamp the bamboo shoot between the two, so that the bamboo shoot can always be conveyed in a straight line during feeding, without deviation, and with higher feeding stability. Attached Figure Description
[0037] The invention will now be further described with reference to the accompanying drawings.
[0038] Figure 1 This is a schematic diagram of the structure of a rapid bamboo shoot peeling machine according to the present invention. Figure 1 ;
[0039] Figure 2 This is a schematic diagram of the structure of a rapid bamboo shoot peeling machine according to the present invention. Figure 2 ;
[0040] Figure 3 This is a schematic diagram of the structure of a rapid bamboo shoot peeling machine according to the present invention. Figure 3 ;
[0041] Figure 4 This is a schematic diagram of the discharge channel in a rapid bamboo shoot peeling machine of the present invention;
[0042] Figure 5 This is the present invention. Figure 1 A schematic diagram of the enlarged portion at point A in the middle.
[0043] In the diagram: 1. Base frame; 2. Upper feed roller; 3. Upper discharge roller; 4. Feed plate; 5. Feeding plate; 6. Drive motor; 7. Storage bin; 101. Limiting plate; 102. L-shaped support plate; 103. Arc-shaped guide frame; 104. Arc-shaped guide groove; 105. Pin shaft; 106. Support shaft; 107. L-shaped bracket; 108. Swing rod; 109. Support rod; 201. Lower feed roller; 202. Fourth gear; 203. Fifth gear; 204. Second pulley; 205. Second annular cutter; 206. Feed chute; 207. First annular cutter; 301. Lower discharge roller; 302. First gear; 303. Second gear; 304. Third gear; 305. Discharge chute; 401. Guide plate; 402. Return spring; 403. Guide rod; 501. Feeding box; 601. First pulley; 701. First storage trough; 702. Second storage trough. Detailed Implementation
[0044] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0045] Example 1
[0046] Please see Figures 1-2 As shown, the present invention is a rapid bamboo shoot peeling machine, including a base frame 1 arranged in parallel and symmetrical arrangement on both sides, and a limiting plate 101 fixedly arranged on the base frame 1 on both sides; in one embodiment of this invention, several sets of support legs are provided at the bottom of the base frame 1 on both sides to support the bamboo shoot peeling machine. The base frame 1 on both sides can be connected and fixed by at least two sets of connecting plates. Specifically, the base frame 1, the limiting plate 101, the support legs and the connecting plates are all fixed by welding or bolting to improve the overall stability of the device.
[0047] The feeding end, the feeding end, and the discharging end are arranged in an inclined sequence between the two limiting plates 101, wherein the height of the feeding end, the feeding end, and the discharging end decreases in sequence. In this embodiment, by setting the height of the feeding end, the feeding end, and the discharging end to decrease in sequence, the influence of the bamboo shoot's own weight on the feeding during the peeling process is avoided.
[0048] The feeding end includes an upper feeding roller 2 and a lower feeding roller 201 arranged in parallel, with a feeding channel 206 formed between the upper feeding roller 2 and the lower feeding roller 201. The upper feeding roller 2 and the lower feeding roller 201 are connected to a first rotating mechanism that drives them to rotate. Specifically, when peeling bamboo shoots, the tip of the bamboo shoot is inserted into the feeding channel 206, and then the upper feeding roller 2 and the lower feeding roller 201 are driven to rotate by the first rotating mechanism, thereby conveying the bamboo shoot towards the feeding end.
[0049] Two sets of first annular cutters 207 and second annular cutters 205 are symmetrically fixedly arranged on the surfaces of the upper feed roller 2 and the lower feed roller 201, respectively. Specifically, when the bamboo shoots are conveyed in the feed trough 206, the first annular cutters 207 and second annular cutters 205 are inserted into the bamboo shoot shells. When the first rotating mechanism drives the upper feed roller 2 and the lower feed roller 201 to rotate and convey the bamboo shoots, the first annular cutters 207 and second annular cutters 205 cut the shells of the bamboo shoots on the upper and lower sides.
[0050] In this embodiment, the first annular cutter 207 and the second annular cutter 205 have the same structure. The height of the cutter head from the surface of the feed roller can be set based on the actual thickness of the bamboo shoot shell. This embodiment does not limit this.
[0051] The feeding end includes two sets of feeding plates 5 symmetrically arranged on one side of the feeding channel 206. The feeding plates 5 are provided with feeding boxes 501, and the feeding boxes 501 have openings at both ends. Specifically, after the bamboo shoots are output through the feeding channel 206, their heads first enter the feeding boxes 501 through the openings. The feeding boxes 501 guide the bamboo shoots so that they can always maintain a straight conveying state when entering the discharge end, avoiding the phenomenon of feeding deviation.
[0052] The discharge end includes an upper discharge roller 3 and a lower discharge roller 301 arranged in parallel, forming a discharge channel 305 between them. The upper and lower discharge rollers 301 are connected to a second rotating mechanism that drives their rotation. It can be explained that after the bamboo shoot is output through the feeding box 501, the sheath at the head of the bamboo shoot reaches the discharge channel 305. Under the counter-rotation of the upper and lower discharge rollers 301, the sheath at the tip of the shoot is pressed into the discharge channel 305. Because the shoot core within the sheath has appropriate stiffness or bending strength, the tip of the shoot core protrudes first from the sheath. The rear section of the bamboo shoot stalk containing the sheath rests on the lower discharge roller 301. On 01, the exposed tip of the bamboo shoot core rests on the upper discharge roller 3. As the upper discharge roller 3 and the lower discharge roller 301 continue to rotate, the sheath is continuously peeled off from the bamboo shoot core. The gradually exposed bamboo shoot core is discharged along the upper discharge roller 3 and the lower discharge roller 301 and falls to the bottom of the base frame 1 for collection. In this embodiment, the cutting direction of the cutter is consistent with the running direction of the bamboo shoot, so that the cutter cuts the bamboo shoot shell in a straight line, thus avoiding damage to the bamboo shoot core. At the same time, the first annular cutter 207 and the second annular cutter 205, while cutting the bamboo shoot shell, also play the role of clamping the bamboo shoot between the two, so that the bamboo shoot can always be conveyed in a straight line during feeding without deviation, and the feeding stability is higher.
[0053] Example 2
[0054] Based on Example 1, please refer to Figures 3-4 The feeding end also includes two sets of feeding plates 4 symmetrically arranged on the other side of the feeding channel 206. Each set of feeding plates 4 has two sets of guide plates 401 symmetrically slidably arranged on it. The distance between the two guide plates 401 gradually decreases along the direction of the feeding channel 206. It can be explained that when the bamboo shoot is fed, the tip of the bamboo shoot is facing between the two sets of guide plates 401 and enters the feeding channel 206 along the channel formed by the two guide plates 401.
[0055] In this embodiment, by setting two sets of feeding plates 4, two bamboo shoots can be fed and peeled simultaneously when peeling bamboo shoots, which is more efficient. At the same time, this embodiment does not limit the number of feeding plates 4, as long as it meets the actual peeling needs. Based on this, the number of the first annular cutter 207, the second annular cutter 205 and the feeding plate 5 should be the same as the number of feeding plates 4.
[0056] As a further embodiment, guide rods 403 are symmetrically fixed on the feed plate 4, and guide plates 401 on both sides are slidably arranged on the guide rods 403. A return spring 402 is sleeved on the guide rod 403. Specifically, one end of the return spring 402 is fixed to the end of the guide rod 403, and the other end is fixed to the guide plate 401. It can be explained that since the bamboo shoot has a conical structure, when one end of the shoot tip is inserted into the two sets of guide plates 401, the diameter of the bamboo shoot gradually increases, and the bamboo shoot can squeeze the guide plates 401 on both sides to move in a direction away from each other. At this time, the return spring 402 contracts. Therefore, the return springs 402 on both sides can also give the guide plates 401 a squeezing force on the bamboo shoot, so that the bamboo shoot always moves in a straight line, and the feeding stability is higher.
[0057] Please see Figure 5 The upper feed roller 2 is symmetrically fixed with support shafts 106 on both sides. A swing rod 108 is rotatably arranged on the outer side of the limiting plate 101 on one side. The support shafts 106 and the swing rod 108 are rotatably connected. It can be explained that during the feeding process of bamboo shoots, as the diameter of the bamboo shoots gradually increases, the bamboo shoots can push the upper feed roller 2 to deflect upward. In this embodiment, by rotatably connecting the support shafts 106 and the swing rod 108, the upper feed roller 2 can rotate around the rotatable connection end between the swing rod 108 and the limiting plate 101, thereby achieving a guiding effect and improving its stability during deflection.
[0058] In addition, L-shaped brackets 107 are symmetrically fixed at both ends of the feed plate 4. The L-shaped brackets 107 are rotatably connected to the support shaft 106. The swing rod 108 is fixed to the L-shaped bracket 107 on one side through the support rod 109. In this embodiment, during the deflection process of the upper feed roller 2, the swing rod 108 can drive the feed plate 4 to deflect synchronously through the support rod 109 and the L-shaped bracket 107, so that the bamboo shoots that have not entered the feed channel 206 can also deflect synchronously, avoiding damage to the bamboo shoots.
[0059] A drive motor 6 is fixedly arranged between the two limit plates 101. The output end of the drive motor 6 is connected to the upper discharge roller 3 through the first pulley 601. Specifically, during the discharge process, the drive motor 6 is started first, and the drive motor 6 drives the upper discharge roller 3 to rotate through the first pulley 601.
[0060] The second rotating mechanism includes a first gear 302 fixedly arranged at the other end of the upper discharge roller 3, wherein a second gear 303 meshing with the first gear 302 is correspondingly fixedly arranged at the end of the lower discharge roller 301. It can be explained that when the upper discharge roller 3 rotates, the upper discharge roller 3 drives the lower discharge roller 301 to rotate through the meshing of the first gear 302 and the second gear 303, so that the upper discharge roller 3 and the lower discharge roller 301 rotate in opposite directions, so as to roll the sheath at the tip of the bamboo shoot to the discharge channel 305.
[0061] The first rotating mechanism includes a third gear 304 rotatably mounted on the limiting plate 101, which meshes with the second gear 303. A fourth gear 202 meshing with the third gear 304 is fixedly mounted at the end of the lower feed roller 201. It can be explained that the second gear 303 drives the lower feed roller 201 to rotate by meshing with the fourth gear 202 during the rotation process.
[0062] The second rotating mechanism also includes a fifth gear 203 rotatably arranged on the outside of the limiting plate 101. The fifth gear 203 meshes with the fourth gear 202. The fifth gear 203 is connected to the upper feed roller 2 via the second pulley 204. Specifically, in this embodiment, the fourth gear 202 synchronously drives the fifth gear 203 to rotate during the rotation process. The fifth gear 203 can drive the upper feed roller 2 to rotate via the second pulley 204.
[0063] It should be noted that when the upper feed roller 2 deflects under the abutment of the bamboo shoot, the second pulley 204 rotates synchronously around the connection end of the fifth gear 203 and the limiting plate 101. This deflection will not affect the normal drive of the upper feed roller 2 by the second pulley 204.
[0064] Throughout the entire driving process, the upper feed roller 2 and the upper discharge roller 3 maintain the same direction of rotation, and the lower feed roller 201 and the lower discharge roller 301 maintain the same direction of rotation.
[0065] Furthermore, the tooth ratio of the first gear 302, the second gear 303, the fourth gear 202 and the fifth gear 203 is 1:1:1:1; specifically, in this embodiment, by keeping the number of teeth of the first gear 302, the second gear 303, the fourth gear 202 and the fifth gear 203 consistent, the rotational speed of each gear is consistent, and the feeding and discharging rates of bamboo shoots in this device are consistent.
[0066] It should also be noted that, in order to limit the swing range of the swing arm 108, in this embodiment, an L-shaped support plate 102 is fixedly arranged on the outside of the limiting plate 101, and an arc-shaped guide frame 103 is fixedly arranged on the L-shaped support plate 102. An arc-shaped guide groove 104 is opened in the arc-shaped guide frame 103, and a pin 105 fixed to the support shaft 106 is slidably embedded in the arc-shaped guide groove 104. It can be explained that when the upper feed roller 2 deflects, it drives the pin 105 to slide in the arc-shaped guide groove 104 synchronously through the support shaft 106, which improves the deflection stability on the one hand and limits the deflection angle on the other.
[0067] The bottom of the two side base frames 1 is provided with a storage box 7. The storage box 7 is provided with a partition in the middle. The partition divides the storage box 7 into a first storage trough 701 for storing bamboo shoot shells and a second storage trough 702 for storing bamboo shoot cores. It can be explained that when collecting bamboo shoot shells and bamboo shoot cores, the first storage trough 701 is placed directly below the discharge channel 305, and the second storage trough 702 is placed directly below the upper discharge roller 3. After peeling, the bamboo shoot shells fall into the first storage trough 701, and the bamboo shoot cores fall into the second storage trough 702, achieving the effect of classified collection.
[0068] Example 3
[0069] Based on Example 2, a method for peeling bamboo shoots using a rapid bamboo shoot peeling machine includes the following steps:
[0070] With one end of the bamboo shoot facing between the two sets of guide plates 401, it enters the feed trough 206 along the channel formed by the two guide plates 401.
[0071] The first rotating mechanism drives the upper feed roller 2 and the lower feed roller 201 to rotate respectively, conveying the bamboo shoots toward the feeding end;
[0072] When bamboo shoots are conveyed in the feeding trough 206, the first annular cutter 207 and the second annular cutter 205 are respectively inserted into the bamboo shoot shell. When the first rotating mechanism drives the upper feeding roller 2 and the lower feeding roller 201 to rotate and convey the bamboo shoots, the first annular cutter 207 and the second annular cutter 205 cut the shell of the bamboo shoot on the upper and lower sides.
[0073] After the bamboo shoots are output through the feeding trough 206, their heads first enter the feeding box 501 through the opening, and the feeding box 501 guides the bamboo shoots.
[0074] After the bamboo shoots are output through the feeding box 501, the sheaths at the head of the bamboo shoots reach the discharge channel 305. Under the reverse rotation of the upper discharge roller 3 and the lower discharge roller 301, the sheaths at the tip of the bamboo shoots are peeled off from the core of the bamboo shoot.
[0075] The first storage trough 701 is placed directly below the discharge channel 305, and the second storage trough 702 is placed directly below the upper discharge roller 3. After peeling, the bamboo shoot shells fall into the first storage trough 701, and the bamboo shoot cores fall into the second storage trough 702.
[0076] In the description of this invention, it should be understood that the terms "upper," "lower," "left," and "right," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or a specific orientational structure and operation. Therefore, they should not be construed as limitations on the invention. Furthermore, "first" and "second" are only for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, unless otherwise stated, "multiple" means two or more.
[0077] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0078] The foregoing has provided a detailed description of one embodiment of the present invention, but this description is merely a preferred embodiment and should not be construed as limiting the scope of the invention. All equivalent variations and modifications made within the scope of the claims of this invention should still fall within the patent coverage of this invention.
Claims
1. A quick bamboo shoot stripping machine, comprising a chassis (1) symmetrically arranged on both sides, and a limiting plate (101) fixedly arranged on both sides of the chassis (1); characterized in that An inclined feeding end, a feeding end and a discharging end are sequentially arranged between the limiting plates (101) on both sides; The feeding end comprises upper feeding rollers (2) and lower feeding rollers (201) arranged in parallel, a feeding channel (206) is formed between the upper feeding rollers (2) and the lower feeding rollers (201), and the upper feeding rollers (2) and the lower feeding rollers (201) are connected with a first rotating mechanism for driving the rotation thereof; Wherein, two groups of first annular cutters (207) and second annular cutters (205) are symmetrically fixedly arranged on the surfaces of the upper feeding rollers (2) and the lower feeding rollers (201), respectively; The feeding end comprises two groups of feeding plates (5) symmetrically arranged on one side of the feeding channel (206), a feeding box body (501) is arranged on the feeding plate (5), and openings are formed at both ends of the feeding box body (501); The discharging end comprises upper discharging rollers (3) and lower discharging rollers (301) arranged in parallel, a discharging channel (305) is formed between the upper discharging rollers (3) and the lower discharging rollers (301), and the upper discharging rollers (3) and the lower discharging rollers (301) are connected with a second rotating mechanism for driving the rotation thereof; The feeding end further comprises two groups of feeding plates (4) symmetrically arranged on the other side of the feeding channel (206), and two groups of guide plates (401) are symmetrically and slidably arranged on each group of feeding plates (4); Wherein, the distance between the guide plates (401) on both sides gradually decreases in the direction along the feeding channel (206); and a support shaft (106) is symmetrically and fixedly arranged on both sides of the upper feeding rollers (2); Wherein, a swing rod (108) is rotatably arranged on the outside of one limiting plate (101), the support shaft (106) is rotatably connected with the swing rod (108), a driving motor (6) is fixedly arranged between the limiting plates (101) on both sides, and the output end of the driving motor (6) is drivingly connected with the upper discharging rollers (3) through a first belt pulley (601); The second rotating mechanism comprises a first gear (302) fixedly arranged on the other end of the upper discharging rollers (3); Wherein, a second gear (303) engaged with the first gear (302) is fixedly arranged on the end of the lower discharging rollers (301); The first rotating mechanism comprises a third gear (304) rotatably arranged on the limiting plate (101), the third gear (304) is engaged with the second gear (303), and a fourth gear (202) engaged with the third gear (304) is fixedly arranged on the end of the lower feeding rollers (201); The second rotating mechanism further comprises a fifth gear (203) rotatably arranged on the outside of the limiting plate (101), and the fifth gear (203) is engaged with the fourth gear (202); Wherein, the fifth gear (203) is drivingly connected with the upper feeding rollers (2) through a second belt pulley (204).
2. The machine according to claim 1, characterized in that, Guide rods (403) are symmetrically and fixedly arranged on the feeding plates (4), and the guide plates (401) on both sides are slidably arranged on the guide rods (403); Wherein, a return spring (402) is sleeved on the guide rod (403).
3. The machine as claimed in claim 1, wherein, The feeding plate (4) is symmetrically fixed with an L-shaped support (107) at both ends, and the L-shaped support (107) is rotationally connected with a support shaft (106). Wherein, one side of the swing rod (108) is fixed with the L-shaped support (107) through a support rod (109).
4. The method of peeling bamboo shoots by the quick bamboo shoot peeling machine according to claim 1, characterized in that, The method comprises the following steps: The bamboo shoots are fed into the feeding channel (206) along the channel formed by the two guide plates (401); The first rotating mechanism drives the upper feeding roller (2) and the lower feeding roller (201) to rotate respectively, and the bamboo shoots are fed towards the feeding end; When the bamboo shoots are fed in the feeding channel (206), the first annular cutter (207) and the second annular cutter (205) are inserted into the bamboo shoot shell respectively, and the first rotating mechanism drives the upper feeding roller (2) and the lower feeding roller (201) to rotate to feed the bamboo shoots, and the first annular cutter (207) and the second annular cutter (205) cut the shell of the bamboo shoots on the upper and lower sides of the bamboo shoots respectively; After the bamboo shoots are fed out of the feeding channel (206), the head of the bamboo shoots enters the feeding box (501) through the opening, and the bamboo shoots are guided by the feeding box (501); After the bamboo shoots are fed out of the feeding box (501), the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding box (501), and the bamboo shoots are fed out of the feeding
Citation Information
Patent Citations
Bamboo shoot peeling machine
CN217906189U
Bamboo shoots shucking machine
CN1463638A
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CN207151865U
Small automatic bamboo shoot peeling equipment
CN218164223U
Centering structure for conveying belt
CN220244645U