Bamboo shoot shelling mechanism and bamboo shoot processing system

The separation of bamboo shoots and bamboo shoot meat is achieved through guides and the broken shell and shell peeling mechanism driven by synchronously, solving the problem of bamboo shoot meat damage caused by inertia of the conveyor belt, and improving the yield and structural compactness of bamboo shoots processing.

CN223195469UActive Publication Date: 2025-08-08HANGZHOU AUTOMATIC TABLE INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202422448053.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-08
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

In existing bamboo shoot shell peelers, the inertia of the conveyor belt causes the bamboo shoot meat to be easily damaged, affecting the yield rate.

Method used

The guide member and the broken shell and peeling mechanism are used to drive the bamboo shoots to the peeling mechanism by using the guide member. The separation of the bamboo shoots and the bamboo shoot meat is achieved through the synchronous movement of the broken shell and the shell and the peeling mechanism is achieved, and the inertial effect of the conveyor belt is avoided.

Benefits of technology

It effectively avoids damage to bamboo shoot meat during separation, improves the yield rate of bamboo shoot meat, simplifies the structure, and reduces the power demand.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of agricultural and sideline product processing, in particular to a bamboo shoot husking mechanism and a bamboo shoot processing system.The bamboo shoot husking mechanism is provided with a rack, a shell breaking mechanism, a guiding piece, a husking mechanism and a driving mechanism, the guiding piece arranged on the rack is used for guiding bamboo shoots to be husked to the husking mechanism after the shells of the bamboo shoots are broken by the shell breaking mechanism from a bamboo shoot inlet end, and the husking mechanism is used for husking the bamboo shoots; the husking mechanism is used for husking the to-be-husked bamboo shoots so as to separate the to-be-husked bamboo shoots into bamboo shoot shells and bamboo shoot meat, then the bamboo shoot meat is discharged out of the husking space from the bamboo shoot outlet end, and meanwhile, the bamboo shoot shells are discharged out of the husking space from the shell outlet end; a driving mechanism is used for simultaneously driving a shell breaking mechanism and a shelling mechanism to synchronously move and is matched with an arranged unpowered guide piece to guide and convey bamboo shoots to be shelled after being subjected to shell breaking by the shell breaking mechanism to the shelling mechanism; the defects that bamboo shoot meat is easy to damage in the separation process of bamboo shoot skin and bamboo shoot meat and the yield of the bamboo shoot meat is affected due to the fact that the movement speed of the bamboo shoots to be husked is too high can be avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of agricultural and sideline product processing, in particular to a bamboo shoot peeling mechanism and a bamboo shoot processing system. Background Art

[0002] Bamboo shoots, a popular food ingredient, have long relied on manual processing. With technological advancements, the food processing industry has begun exploring automation to improve efficiency and yield. This led to the concept of an automatic bamboo shoot peeling machine, designed to replace traditional manual peeling methods and address the inefficiencies and labor-intensive nature of bamboo shoot processing.

[0003] Automatic bamboo shoot peeling machine technology has advanced considerably, with a wide variety of models now available on the market. These machines primarily consist of a hopper, peeling mechanism, transmission, and motor. They peel the bamboo shoots using thin rollers rotating in the same direction, using threads and underlying protrusions to remove the skin. Some advanced peelers even integrate cleaning and peeling functions, enabling efficient and continuous production processes.

[0004] In the prior art, when shelling bamboo shoots to be shelled, a conveyor belt is required for transport. When using the conveyor belt to transport the bamboo shoots to be shelled, the speed of the bamboo shoots to be shelled needs to be controlled. Therefore, an independent drive system is often required to drive the conveyor belt. However, due to the speed of the conveyor belt itself, when the bamboo shoots to be shelled move on the conveyor belt to the shelling position, when the bamboo shoots to be shelled come into contact with the bamboo shoot skin and bamboo shoot meat separation equipment at the shelling position, the bamboo shoot meat is easily damaged due to inertia, which affects the yield of the bamboo shoot meat. Utility Model Content

[0005] The main purpose of the utility model is to provide a bamboo shoot shelling mechanism and a bamboo shoot processing system, aiming to solve the technical problem in the related technology that due to the speed of the conveyor belt itself, when the bamboo shoots to be shelled move to the shelling position on the conveyor belt, the bamboo shoots to be shelled come into contact with the bamboo shoot skin and bamboo shoot meat separation equipment at the shelling position, the bamboo shoot meat will be easily damaged due to inertia, thereby affecting the finished product rate of the bamboo shoot meat.

[0006] To achieve the above objectives, in a first aspect, the present invention provides a bamboo shoot peeling mechanism comprising:

[0007] A frame, wherein a shelling space for shelling bamboo shoots to be shelled is formed in the frame, wherein a shelling position and a shelling position spaced apart along a first direction are formed in the shelling space, and an installation position spaced apart from the shelling position along a second direction is formed below the shelling position, the shelling position is located above the shelling position, a guide is provided between the shelling position and the shelling position, and a side of the shelling position away from the shelling position is a bamboo shoot inlet end, a side of the shelling position away from the shelling position is a bamboo shoot outlet end, and a side of the shelling position away from the shelling position is a bamboo shoot outlet end, and a shelling position below is a shelling end;

[0008] a shell breaking mechanism, the shell breaking mechanism being rotatably connected to the frame and located at the shell breaking position;

[0009] a shelling mechanism, the shelling mechanism being rotatably connected to the frame and being located at the shelling position; and

[0010] A driving mechanism, comprising a transmission component and a driving component installed at the installation position, wherein the transmission component is respectively installed on the shell breaking mechanism and the shell peeling mechanism so that the shell peeling mechanism and the shell breaking mechanism are in transmission cooperation, and the transmission component is connected to the output shaft of the driving component;

[0011] The driving component can drive the transmission component to synchronously drive the shell breaking mechanism and the shelling mechanism to rotate synchronously, so that after the bamboo shoots to be shelled are shelled from the bamboo shoot inlet end by the shell breaking mechanism, they slide inertially through the guide part and are separated into bamboo shoot meat and bamboo shoot skin by the shelling mechanism, the bamboo shoot meat is discharged from the shelling space from the bamboo shoot outlet end, and the bamboo shoot skin is discharged from the shelling space from the shell outlet end.

[0012] In one embodiment, the shell breaking mechanism includes:

[0013] A hinged member, the hinged member is located in the shelling space, the two ends of the hinged member are respectively a hinged end and a free end, the free end is located at the shell breaking position, the hinged end extends from the shell breaking position to be hinged to the side wall of the frame near the shelling position, and the free end can rotate around the hinged end to enter or leave the shelling space;

[0014] a first transmission roller, the first transmission roller being rotatably mounted on the free end and being in transmission cooperation with the shelling mechanism, and a guide ring groove being formed on the first transmission roller;

[0015] a shell breaking assembly, the shell breaking assembly being arranged near the free end, the shell breaking assembly being installed on a side of the first conveying roller facing the shelling position and being spaced apart from the first conveying roller; and

[0016] a second conveying roller, the second conveying roller being rotatably connected to the frame, the second conveying roller being located at the shell-breaking position, the vertical distance from the top of the second conveying roller to the installation position being greater than the vertical distance from the top of the guide member to the installation position, the second conveying roller being located below the free end, a shell-breaking gap being formed between the first conveying roller and the second conveying roller for the bamboo shoots to be shelled to pass through, the linear speeds of the first conveying roller and the second conveying roller being the same and the angular speeds being in opposite directions, the shell-breaking assembly being capable of shelling the bamboo shoots to be shelled that are squeezed and conveyed through the shell-breaking gap;

[0017] When entering the shelling space, the first conveying roller can cooperate with the second conveying roller to squeeze and convey the bamboo shoots to be shelled that are fed from the bamboo shoot inlet end into the guide ring groove to pass through the shell breaking assembly for shelling operation.

[0018] In one embodiment, the transmission component includes a first transmission component and a second transmission component, the first transmission component is installed on the shelling mechanism, the first transmission component is connected to the driving component, the second transmission component is installed on the shelling mechanism, and the second transmission component is coordinated with the first transmission component for transmission, the driving component can drive the first transmission component to drive the shelling mechanism to move and synchronously drive the shelling component to move through the second transmission component to perform shelling operations on the bamboo shoots to be shelled.

[0019] In one embodiment, the shelling mechanism is formed with a first transmission position and a second transmission position distributed at intervals, and the first transmission position and the second transmission position are transmitted and coordinated through the first transmission assembly so that the movement direction of the first transmission position is opposite to the movement direction of the second transmission position, the first transmission roller is transmitted and coordinated with the first transmission position through the second transmission assembly, and the second transmission roller is transmitted and coordinated with the second transmission position through the second transmission assembly, and the driving component can drive the first transmission position to drive the first transmission roller and the second transmission position to drive the second transmission roller to rotate synchronously through the first transmission assembly, so as to squeeze and transmit the bamboo shoots to be shelled through the shell breaking gap to the shell breaking assembly for shell breaking operation.

[0020] In one embodiment, the number of the hinges is two, and the two hinges are respectively provided on both sides of the shelling space, and the two ends of the first conveying roller are rotatably connected to the two free ends respectively;

[0021] The shell breaking assembly comprises:

[0022] A connecting plate, the two ends of which are respectively connected to the two hinged members, the connecting plate being located above the guide member, and the connecting plate having a through groove extending through the guide member at a position corresponding to the guide ring groove;

[0023] Two clamping plates, the two clamping plates are oppositely arranged on both sides of the through slot and are both detachably connected to the connecting plate; and

[0024] A shell-breaking knife, the shell-breaking knife is installed between the two clamping plates, and the tip of the shell-breaking knife can pass through the through slot downward and extend to the top of the guide member;

[0025] The shelling knife can perform shelling operation on the bamboo shoots to be shelled that are squeezed and transmitted through the shelling gap.

[0026] In one embodiment, the shelling mechanism includes a first separating roller and a second separating roller, both ends of which are rotatably connected to the frame, the first separating roller and the second separating roller are distributed side by side in the second direction at the shelling position, and the first separating roller is arranged close to the bamboo shoot outlet end, the first transmission position is formed at one end of the first separating roller, and the second transmission position is arranged on the same side as the first transmission position and is formed at one end of the second separating roller, and a biting gap for biting the bamboo shoot skin can be formed between the first separating roller and the second separating roller when they rotate synchronously, and the biting gap is connected to the shelling end, and the driving mechanism can drive the first separating roller and the second separating roller to rotate synchronously through the transmission assembly so that the biting gap can bit the bamboo shoot skin guided from the guide to the shelling position, and separate the bamboo shoot skin from the bamboo shoot meat and discharge the bamboo shoot meat and the bamboo shoot skin from the bamboo shoot outlet end and the shelling end respectively.

[0027] In one embodiment, the first transmission assembly includes:

[0028] a first transmission sprocket, the first transmission sprocket being mounted at the second transmission position and being rotatably engaged with the output shaft of the driving component via a third transmission belt;

[0029] a second transmission sprocket, the second transmission sprocket being installed at the second transmission position, the second transmission sprocket being spaced apart from the first transmission sprocket, and the second transmission sprocket being coupled to the second transmission roller via a second transmission belt;

[0030] A driving gear, wherein the driving gear, the first transmission sprocket and the second transmission sprocket are sequentially spaced and distributed on the rotating shaft of the second separating roller;

[0031] a driven gear mounted on the rotating shaft of the first separating roller and meshing with the driving gear; and

[0032] A fourth transmission sprocket is arranged on the rotating shaft of the first separating roller in sequence with the driven gear, and the fourth transmission sprocket is coupled to the first transmission roller via a first transmission belt.

[0033] In one embodiment, the second transmission assembly includes:

[0034] a third transmission sprocket, the third transmission sprocket being mounted on the rotating shaft of the second transmission roller, and the third transmission sprocket being in transmission cooperation with the second transmission sprocket via the second transmission belt; and

[0035] A fifth transmission sprocket is mounted on the rotating shaft of the first transmission roller, and the fifth transmission sprocket is rotationally matched with the fourth transmission sprocket through the first transmission belt.

[0036] In one embodiment, the driving component includes:

[0037] a driving member, the driving member being installed at the installation position, and the output shaft of the driving member passing through the frame and extending into the shelling space, the output shaft being connected to the frame via a bearing seat; and

[0038] A sixth transmission sprocket is rotatably coupled to the first transmission sprocket via the third transmission belt, and a diameter of the sixth transmission sprocket is smaller than a diameter of the first transmission sprocket.

[0039] Based on the same technical concept, in a second aspect, the present invention further proposes a bamboo shoot processing system, which applies the bamboo shoot shelling mechanism described in the first aspect.

[0040] The technical solution of the present invention is to provide a frame, a shelling mechanism, a shelling mechanism, a guide member and a driving mechanism. When in use, the guide member provided on the frame is used to guide the bamboo shoots to be shelled after being shelled by the shelling mechanism from the bamboo shoot inlet end to the shelling mechanism, and the shelling mechanism is used to shell the bamboo shoots to be shelled so as to separate the bamboo shoots to be shelled into bamboo shoot skin and bamboo shoot meat, and then the bamboo shoot meat is discharged from the bamboo shoot outlet end to the shelling space, and the bamboo shoot skin is discharged from the shelling end to the shelling space, thereby making the present invention, when in use, capable of realizing the shelling of bamboo shoots without the need for using a conveying device with external power such as a conveyor belt. The utility model has the function of conveying and separating. At the same time, since the utility model only utilizes one driving mechanism to simultaneously drive the shelling mechanism and the shelling mechanism to move synchronously and cooperates with the provided unpowered guide member to guide the bamboo shoots to be shelled after being shelled by the shelling mechanism to be conveyed to the shelling mechanism, the utility model can avoid the inertia effect generated by the conveyor belt in the prior art when shelling the bamboo shoots to be shelled, and further can avoid the defect that the bamboo shoot skin and the bamboo shoot flesh are easily damaged during the separation process due to the excessive movement speed of the bamboo shoots to be shelled, thereby affecting the finished product rate of the bamboo shoot flesh. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0042] Figure 1 This is a schematic structural diagram of one of the driving modes of a bamboo shoot peeling mechanism according to an example of the present invention;

[0043] Figure 2 for Figure 1 A schematic side view of the bamboo shoot peeling mechanism shown in FIG.

[0044] Figure 3 for Figure 1 A schematic diagram of the transmission cooperation relationship between the shell breaking mechanism and the shell stripping mechanism in the example;

[0045] Figure 4 for Figure 1 A schematic structural diagram of a shell breaking mechanism from one perspective;

[0046] Figure 5 for Figure 1 A structural diagram of another perspective of the shell breaking mechanism part of the example;

[0047] Figure 6 for Figure 5 A schematic diagram of the structure of the connecting plate of the example;

[0048] Figure 7 for Figure 5 A schematic structural diagram of the first transmission roller in the example;

[0049] Figure 8 for Figure 5 A schematic diagram of the structure of the shell breaking component of the example;

[0050] Figure 9 for Figure 5 A schematic diagram of the structure of the shell-breaking knife shown in the example;

[0051] Figure 10 This is a structural schematic diagram of another driving form of the bamboo shoot peeling mechanism of the present invention.

[0052] Description of reference numerals:

[0053]

[0054]

[0055] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0056] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0057] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0058] In the present invention, unless otherwise specified or limited, the terms "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can mean fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. Those skilled in the art will be able to understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0059] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the meaning of "and / or" appearing throughout the text includes three parallel schemes. Taking "A and / or B" as an example, it includes scheme A, or scheme B, or a scheme in which A and B are satisfied at the same time. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0060] The inventive concept of the present invention is further described below with reference to some specific embodiments.

[0061] The invention provides a bamboo shoot peeling mechanism and a bamboo shoot processing system.

[0062] like Figures 1 to 9 As shown, an embodiment of the bamboo shoot peeling mechanism and bamboo shoot processing system of the present invention is proposed.

[0063] The present invention relates to a bamboo shoot shelling mechanism 400, comprising a frame 100, a shelling mechanism 300 and a shelling mechanism 400. A shelling space 110 is formed in the frame 100 for shelling bamboo shoots to be shelled. Shelling positions 120 and shelling positions 130 are formed in the shelling space 110 and are spaced apart along a first direction. The shelling position 120 is located above the shelling position 130. A guide member 200 is provided between the shelling position 120 and the shelling position 130. The side of the shelling position 120 away from the shelling position 130 is a bamboo shoot inlet end 140, and the side of the shelling position 130 away from the shelling position 120 is a bamboo shoot outlet end. The shelling end 150 is located below the shelling position 130, and the shelling end 160 is located below the shelling position 130. The shelling mechanism 300 is rotatably connected to the frame 100, and the shelling mechanism 300 is located at the shelling position 120. The shelling mechanism 400 is rotatably connected to the frame 100, and the shelling mechanism 400 is located at the shelling position 130. The shelling mechanism 400 and the shelling mechanism 300 are transmission-coordinated. After the bamboo shoots to be shelled are shelled from the bamboo shoot inlet end 140 by the shelling mechanism 300, they are slidably guided by the guide part 200 to the shelling mechanism 400 to be separated into bamboo shoot meat and bamboo shoot skin. The bamboo shoot meat is discharged from the bamboo shoot outlet end 150 to the shelling space 110, and the bamboo shoot skin is discharged from the shelling space 110 from the shell outlet end 160.

[0064] In this embodiment, by providing a frame 100, a shell breaking mechanism 300, a shelling mechanism 400, a guide member 200 and a driving mechanism 500, when in use, the guide member 200 provided on the frame 100 is used to guide the bamboo shoots to be shelled after being shelled by the shell breaking mechanism 300 from the bamboo shoot inlet end 140 to the shelling mechanism 400, and the shelling mechanism 400 is used to shell the bamboo shoots to be shelled so as to separate the bamboo shoots to be shelled into bamboo shoot skin and bamboo shoot meat, and then the bamboo shoot meat is discharged from the shelling space 110 from the bamboo shoot outlet end 150, and the bamboo shoot skin is discharged from the shelling space 110 from the shell outlet end 160, thereby making the utility model capable of being used without the need for a conveying device with external power such as a conveyor belt. The function of conveying and separating the bamboo shoots can be realized under the conveying action. At the same time, since the utility model only utilizes a driving mechanism 500 to simultaneously drive the shell breaking mechanism 300 and the shelling mechanism 400 to move synchronously and cooperates with the provided unpowered guide member 200 to guide the bamboo shoots to be shelled after being shelled by the shell breaking mechanism 300 to be conveyed to the shelling mechanism 400, the utility model can avoid the inertia effect generated in the process of conveying the bamboo shoots by the conveyor belt in the prior art when shelling the bamboo shoots to be shelled, and thus can avoid the defect that the bamboo shoot skin and the bamboo shoot meat are easily damaged during the separation process due to the excessive movement speed of the bamboo shoots to be shelled, which affects the yield of the bamboo shoot meat.

[0065] It should be specifically and clearly stated that the guide member 200 illustrated in this embodiment is a plate or cylindrical structure having a guiding function, such as a guide plate or guide cylinder. It should be further emphasized that the guide member 200 illustrated in this embodiment does not have a power function. Furthermore, the first direction illustrated in this embodiment is an obliquely downward direction from the shell breaking position 120 to the shelling position 130.

[0066] It should be emphasized again that when the guide member 200 illustrated in this embodiment guides the bamboo shoots to be shelled after being shelled by the shell breaking mechanism 300, the bamboo shoots to be shelled can freely slide downward from the upper surface of the guide member 200 along the first direction to the shelling position 130 after leaving the shell breaking gap 360, and be picked up by the shelling mechanism 400 installed at the shelling position 130 for shelling. By setting the guide member 200 so that the bamboo shoots to be shelled can slide freely under the action of gravity, the present invention does not need to use a conveyor belt to transport the bamboo shoots to be shelled when in use, thereby reducing the hidden danger of the bamboo shoots to be shelled being easily damaged due to the excessive speed when the bamboo shoots move from the shell breaking mechanism 300 to the shelling mechanism 400, which affects the yield of the bamboo shoots. It can be further clarified that in order to further adjust the speed of the bamboo shoots to be shelled after leaving the shelling gap 360 and sliding to the shelling position 130, the speed of the bamboo shoots to be shelled can be adjusted by adjusting the smoothness of the upper surface of the guide 200.

[0067] Of course, it should be clearly stated that in the prior art, when the bamboo shoots to be shelled are shelled, a conveyor belt is used in conjunction with a shell breaking mechanism 300 installed above the conveyor belt to convey the bamboo shoots to be shelled from the shell breaking position 120 to the shelling mechanism 400 for shelling. During the shelling process, even if it is found that the bamboo shoots to be shelled have defects such as easy damage to the shoot meat and affecting the yield of the shoot meat, the conveyor belt's conveying speed is adjusted to reduce the speed of the bamboo shoots to be shelled. If the conveyor belt in the prior art is replaced with the guide member 200 exemplified in this embodiment, the basic principle of the shell breaking operation of the bamboo shoots to be shelled in the prior art will be completely changed.

[0068] It can be further explained that in this embodiment, the linear speeds of the first transmission roller 320 and the second transmission roller 350 are the same, and the angular velocity direction of the first transmission roller 320 and the angular velocity direction of the second transmission roller 350 should be opposite and both squeeze and convey the bamboo shoots to be shelled downward from the inlet end 140 to the outlet end 150. This setting method can enable the present invention to squeeze and convey the bamboo shoots to be shelled to the shell breaking component 340 for shell breaking when in use.

[0069] In one embodiment, a mounting position 170 is formed below the shell breaking position 120 and is spaced apart from the shelling position 130 ;

[0070] The bamboo shoot shelling mechanism 400 also includes a driving mechanism 500 installed at the installation position 170. The driving mechanism 500 is transmitted and cooperated with the shelling mechanism 400 through the transmission assembly 600, and the driving mechanism 500 can drive the shelling mechanism 400 and synchronously drive the shelling mechanism 300 to move, so as to shell the bamboo shoots to be shelled that enter the shelling space 110 through the bamboo shoot inlet end 140.

[0071] In this embodiment, by providing a driving mechanism 500 and allowing the driving mechanism 500 to cooperate with the shelling mechanism 400 through the transmission assembly 600, the present invention can utilize the provided driving mechanism 500 to drive the shelling mechanism 400 to move while simultaneously driving the shelling mechanism 300 to move, thereby realizing that the shelling operation and the shelling operation can be performed simultaneously by using one driving mechanism 500, which saves the power source, ensures the compactness of the overall structure, and reduces the manufacturing difficulty.

[0072] In one embodiment, the shell breaking mechanism 300 includes:

[0073] The hinged member 310 is located in the shelling space 110. The two ends of the hinged member 310 are respectively a hinged end 311 and a free end 312. The free end 312 is located at the shell breaking position 120. The hinged end 311 extends from the shell breaking position 120 to be hinged to the side wall of the frame 100 near the shelling position 130, and the free end 312 can rotate around the hinged end 311 to enter or leave the shelling space 110.

[0074] A first transmission roller 320 is rotatably mounted on the free end 312 and is in transmission cooperation with the shelling mechanism 400. A guide ring groove 330 is formed on the first transmission roller 320.

[0075] a shell breaking assembly 340, the shell breaking assembly 340 being disposed near the free end 312, the shell breaking assembly 340 being mounted on a side of the first conveying roller 320 facing the shelling position 130 and being spaced apart from the first conveying roller 320; and

[0076] The second conveying roller 350 is rotatably connected to the frame 100 and is located at the shell breaking position 120. The vertical distance between the top of the second conveying roller 350 and the installation position 170 is greater than the vertical distance between the top of the guide member 200 and the installation position 170. The second conveying roller 350 is located below the free end 312. A shell breaking gap 360 is formed between the second conveying roller 350, the first conveying roller 320, and the shell breaking assembly 340 for the bamboo shoots to be shelled to pass through. The rotation direction of the second conveying roller 350 is opposite to that of the first conveying roller 320.

[0077] When entering the shelling space 110 , the first transfer roller 320 can cooperate with the second transfer roller 350 to squeeze and transfer the bamboo shoots to be shelled that are fed from the bamboo shoot inlet end 140 into the guide ring groove 330 to pass through the shell breaking assembly 340 for shell breaking.

[0078] In this embodiment, by setting a hinge 310, a first transmission roller 320, a shell breaking assembly 340 and a second transmission roller 350, when in use, the first transmission roller 320 and the shell breaking assembly 340 are set at the shell breaking position 120 using the hinge 310, so that the present invention can adjust the shell breaking gap 360 between the first transmission roller 320 and the second transmission roller 350 through the rotation action of the hinge end 311 of the hinge 310, so as to realize the function of shelling bamboo shoots to be shelled of different diameters, thereby improving the versatility of the bamboo shoot shelling mechanism 400 of the example of the present invention.

[0079] It should be particularly and clearly stated that the hinge 310 illustrated in the present embodiment is a hinge plate, wherein the hinge end 311 of the hinge plate is hinged to the side of the frame 100 close to the shelling position 130. Through this arrangement, the movement amplitude of the hinge 310 is increased, thereby making it possible to increase the adjustment range of the shelling gap 360 between the first transmission roller 320 and the second transmission roller 350, so as to facilitate the shelling operation of bamboo shoots to be shelled with a larger diameter.

[0080] It should be further emphasized that, in the present embodiment, when the bamboo shoots are shelled and peeled, the bamboo shoots should be pointed downward and passed through the shell breaking assembly 340 in sequence from the tip to the root. Since the first transmission roller 320 and the second transmission roller 350 can both move in opposite directions under the driving action of the driving mechanism 500, the present invention can squeeze and transmit the bamboo shoots to be shelled downward in the first direction from the tip to the root through the cooperation of the first transmission roller 320 and the second transmission roller 350 and complete the shelling, thereby avoiding the situation in the prior art where the bamboo shoots are transported at an excessively high speed using a conveyor belt to transport the bamboo shoots to be shelled, thereby ensuring the yield of the bamboo shoots. At the same time, by increasing the length of the hinge 310 and adjusting the hinge position of the hinge 310 and the frame 100 to be close to the shelling position 130, the first transmission roller 320 and the shell breaking assembly 340 can cooperate with the second transmission roller 350 to perform the shelling operation on the bamboo shoots to be shelled. The first transmission roller 320 and the shell breaking assembly 340 can enter the shell breaking gap 360 when the tip of the bamboo shoots to be shelled enters the shell breaking gap 360 and then move upward to leave the shelling space 110. When the bamboo shoots to be shelled leave the shell breaking gap 360, the first transmission roller 320 and the shell breaking assembly 340 can also move downward under the action of their own weight to enter the shelling space 110, without the need for resetting of an external resetting device, thereby simplifying the structure and ensuring the flexibility of the overall structure.

[0081] In one embodiment, the shelling mechanism 400 is formed with a first transmission position 410 and a second transmission position 420 distributed at intervals. The first transmission position 410 and the second transmission position 420 are driven and matched by a transmission assembly 600 so that the movement direction of the first transmission position 410 is opposite to the movement direction of the second transmission position 420. The first transmission roller 320 is driven and matched with the first transmission position 410 through a first transmission belt 370, and the second transmission roller 350 is driven and matched with the second transmission position 420 through a second transmission belt 620. The driving mechanism 500 can drive the first transmission position 410 through the transmission assembly 600 to drive the first transmission roller 320 and the second transmission position 420 to drive the second transmission roller 350 to rotate synchronously, so as to squeeze and transmit the bamboo shoots to be shelled through the shell breaking gap 360 to the shell breaking assembly 340 for shell breaking. This allows the shell breaking operation and the shelling operation of the present invention to be linked, thereby ensuring the shelling efficiency of the bamboo shoots to be shelled.

[0082] In one embodiment, a plurality of first protrusions 351 are formed on the outer periphery of the second transmission roller 350 and are distributed at intervals along the circumferential direction. When the driving mechanism 500 drives the first transmission roller 320 and the second transmission roller 350 to rotate synchronously through the transmission assembly 600, each first protrusion 351 can cooperate with the guide ring groove 330 to squeeze and transmit the bamboo shoots to be shelled through the shell breaking gap 360 to the shell breaking assembly 340 for shell breaking operation.

[0083] In this embodiment, by providing a plurality of first protrusions 351 , the present invention can enhance the bite effect on the bamboo shoots to be shelled passing through the shell cracking gap 360 , thereby ensuring the shell cracking efficiency.

[0084] It should be particularly and clearly stated that, in this embodiment, the multiple first protrusions 351 shown in the example should all pass through the second transmission roller 350 along the extension direction of the second transmission roller 350. This arrangement can not only increase the bite effect of the bamboo shoots to be peeled, but also reduce the gap between any two adjacent first protrusions 351, thereby reducing the difficulty of cleaning the second transmission roller 350.

[0085] Of course, in an exemplary embodiment, the second transport roller 350 may also be a structure made of elastic materials such as rubber. When the exemplary second transport roller 350 is an elastic structure, the surface of the second transport roller 350 does not need to be provided with the first protrusion 351, that is, the squeezing effect of the first transport roller 320 and the second transport roller 350 can also guide and transport the bamboo shoots to be peeled passing through the shell breaking gap 360.

[0086] In one embodiment, there are two hinges 310 , which are respectively disposed on both sides of the shelling space 110 , and both ends of the first conveying roller 320 are rotatably connected to the two free ends 312 ;

[0087] The shell breaking assembly 340 includes:

[0088] A connecting plate 341, with its two ends connected to the two hinged members 310 respectively. The connecting plate 341 is located above the guide member 200. A through slot 344 is formed on the connecting plate 341 at a position corresponding to the guide ring groove 330 and extending through the guide member 200.

[0089] Two clamping plates 342 , which are oppositely disposed on either side of the through slot 344 and are both detachably connected to the connecting plate 341 ; and

[0090] The shell-breaking knife 343 is installed between the two clamping plates 342, and the tip of the shell-breaking knife 343 can pass through the through slot 344 downward and extend to the top of the guide member 200;

[0091] The shelling knife 343 can perform shelling operation on the bamboo shoots to be shelled that are squeezed and transmitted through the shelling gap 360.

[0092] In this embodiment, by providing a connecting plate 341, two splints 342 and a shelling knife 343, when in use, the shelling knife 343 is installed in the through groove 344 of the connecting plate 341 using the two splints 342, so that the present invention can use the shelling knife to perform shelling operations on the bamboo shoots to be shelled, and can also replace the shelling knife, thereby ensuring the service life of the overall structure.

[0093] It should be particularly and clearly stated that in this embodiment, when the two ends of the exemplary connecting plate 341 are simultaneously connected to the two hinges 310, the two ends of the connecting plate 341 may be provided with threaded countersunk holes, and the two hinges 310 may be threadedly engaged with the threaded countersunk holes on the corresponding sides using screws or bolts, or the connecting plate 341 may be connected to the hinge 310 using an L-shaped connecting block.

[0094] Of course, in order to further enhance the practicality of the present invention, in a specific implementation, the blade of the shell-breaking knife 343 of the example should also be provided with a waist-shaped hole arranged along the extension direction of the shell-breaking knife 343 or a plurality of installation holes distributed at intervals. In a specific implementation, by adjusting the clamping and fixing position of the two splints 342 and the waist-shaped holes or installation holes on the shell-breaking knife 343, the length of the tip of the shell-breaking knife 343 extending out of the through slot 344 can be adjusted to perform shell-breaking operations on bamboo shoots of different thicknesses.

[0095] In one embodiment, the shelling mechanism 400 includes a first separating roller 430 and a second separating roller 440, both ends of which are rotatably connected to the frame 100. The first separating roller 430 and the second separating roller 440 are spaced apart along the second direction at the shelling position 130, and the first separating roller 430 is arranged near the bamboo shoot outlet end 150. The outer periphery of the first separating roller 430 is formed with a plurality of second protrusions 431 spaced apart along the circumferential direction, and the outer periphery of the second separating roller 440 is formed with a plurality of third protrusions 441 spaced apart along the circumferential direction. The first transmission position 410 is formed at one end of the first separating roller 430, and the second transmission position 420 is formed at one end of the first separating roller 430. The first separating roller 430 and the second separating roller 440 are arranged on the same side as the first transmission position 410 and are formed at one end of the second separating roller 440. A biting gap 450 for biting the bamboo shoot skin is formed between the first separating roller 430 and the second separating roller 440. The biting gap 450 is connected to the shelling end 160. The driving mechanism 500 can drive the first separating roller 430 and the second separating roller 440 to rotate synchronously through the transmission assembly 600, so that the biting gap 450 can bit the bamboo shoot skin guided from the guide member 200 to the shelling position 130, and separate the bamboo shoot skin from the bamboo shoot meat and discharge the bamboo shoot meat and bamboo shoot skin from the bamboo shoot outlet end 150 and the shelling end 160 respectively.

[0096] In this embodiment, by providing a first separating roller 430 and a second separating roller 440, and forming an engaging gap 450 between the first separating roller 430 and the second separating roller 440, when the tip of the bamboo shoots to be shelled moves to the shelling position 130, due to the opposite rotation of the first separating roller 430 and the second separating roller 440, the engaging gap 450 can bite the bamboo shoot skin at the tip position. At the same time, due to the synchronous movement of the first separating roller 430 and the second separating roller 440, the tip of the bamboo shoots to be shelled can be further moved out of the shelling space 110, and due to the rolling action of the first separating roller 430, the bamboo shoot meat can be transmitted to the bamboo shoot outlet end 150 and the bamboo shoot skin can be transmitted to the shelling end 160, thereby achieving the purpose of separating the bamboo shoot meat and the bamboo shoot skin.

[0097] It should be particularly and clearly stated that, in this embodiment, the multiple second protrusions 431 shown in the example should all pass through the first separation roller 430 along the extension direction of the first separation roller 430, and the multiple third protrusions 441 shown in the example should all pass through the second separation roller 440 along the extension direction of the second separation roller 440. This arrangement can not only increase the biting effect of the bamboo shoots to be peeled, but also reduce the gap between any two adjacent second protrusions 431 and any two adjacent third protrusions 441, thereby reducing the difficulty of cleaning the first separation roller 430 and the second separation roller 440. The second direction used in the example in this embodiment is a horizontal direction. Since the second direction is a horizontal direction and the first direction is an inclined direction, when the tip of the bamboo shoots to be peeled slides along the first direction to the second separating roller 440, the second separating roller 440 will continue to transmit the tip downward. Since the first separating roller 430 and the second separating roller 440 are spaced apart along the horizontal direction, there is a certain height difference between the first separating roller 430 and the second separating roller 440 in the first direction. As a result, when the tip of the bamboo shoot passes through the second separating roller 440 and moves to the first separating roller 430, it will be bitten by the biting gap 450 between the first separating roller 430 and the second separating roller 440, and the function of separating the bamboo shoot skin and the bamboo shoot meat will be realized.

[0098] It can be clearly stated that in this embodiment, when the second protrusion 431 is provided on the example first separation roller 430 and the third protrusion 441 is provided on the example second separation roller 440, the second protrusion 431 and the third protrusion 441 can be in a mutual bite relationship, that is, the example bite gap 450 is the gap when the second protrusion 431 and the third protrusion 441 are bite-fitted; the example second protrusion 431 and the third protrusion 441 can also be a structure that is parallel to each other and is not in a bite-fit configuration. In specific implementation, it can be installed according to actual needs.

[0099] Of course, in an exemplary embodiment, the first separating roller 430 and the second separating roller 440 can both be structures made of elastic materials such as rubber. When the first separating roller 430 and the second separating roller 440 are both elastic structures, the surface of the first separating roller 430 does not need to be provided with the second protrusion 431, and the surface of the second separating roller 440 does not need to be provided with the third protrusion 441. That is, the first separating roller 430 and the second separating roller 440 can form an interlocking gap 450 for interlocking the bamboo shoots due to the opening of the bamboo shoots when moving, so as to peel and separate the bamboo shoots to be peeled.

[0100] In one embodiment, the transmission assembly 600 includes:

[0101] A first transmission wheel 610 is mounted on the rotating shaft of the first separation roller 430 and is rotatably coupled to the output shaft of the driving mechanism 500 via a third transmission belt 650 ;

[0102] The second transmission wheel 630 is mounted on the rotating shaft of the first separation roller 430, and the second transmission wheel 630 is spaced apart from the first transmission wheel 610;

[0103] A third transmission wheel 640 is mounted on the rotating shaft of the second transmission roller 350 and is rotatably coupled to the second transmission wheel 630 via the second transmission belt 620 ;

[0104] The first gear 660, the first gear 660, the first transmission wheel 610 and the second transmission wheel 630 are sequentially spaced and distributed on the rotating shaft of the first separation roller 430;

[0105] A second gear 670 , which is mounted on the rotating shaft of the second separating roller 440 and meshes with the first gear 660 ;

[0106] a fourth transmission wheel 680 , wherein the fourth transmission wheel 680 and the second gear 670 are sequentially spaced and distributed on the rotation axis of the second separation roller 440 ; and

[0107] The fifth transmission wheel 690 is mounted on the rotating shaft of the first transmission roller 320 . The fifth transmission wheel 690 rotates in conjunction with the fourth transmission wheel 680 through the first transmission belt 370 .

[0108] In this embodiment, by providing a first transmission wheel 610, a second transmission wheel 630, a third transmission wheel 640, a first gear 660, a second gear 670, a fourth transmission wheel 680 and a fifth transmission wheel 690, the present invention can use a single driving mechanism 500 to synchronously drive the first transfer roller 320, the second transfer roller 350, the first separation roller 430 and the second separation roller 440, thereby saving power and ensuring the compactness of the overall structure.

[0109] Of course, it should be specifically and clearly stated that in this embodiment, the first transmission wheel 610, the second transmission wheel 630, the third transmission wheel 640, the fourth transmission wheel 680, and the fifth transmission wheel 690 can also be pulleys. Moreover, the diameters of the first transmission wheel 610, the second transmission wheel 630, the third transmission wheel 640, the fourth transmission wheel 680, and the fifth transmission wheel 690 can also be different to achieve deceleration or acceleration functions.

[0110] It should be noted that, in particular, the first transmission wheel 610, the second transmission wheel 630, the third transmission wheel 640, the fourth transmission wheel 680, the fifth transmission wheel 690, and the sixth transmission wheel 530 in the present embodiment may all be transmission sprockets. When they are all transmission sprockets, the first transmission belt 370, the second transmission belt 620, and the third transmission belt 650 are chains. Of course, in the present embodiment, the first transmission wheel 610, the second transmission wheel 630, the third transmission wheel 640, the fourth transmission wheel 680, the fifth transmission wheel 690, and the sixth transmission wheel 530 may all be pulleys. When they are all pulleys, the first transmission belt 370, the second transmission belt 620, and the third transmission belt 650 are chains. The second transmission belt 620 and the third transmission belt 650 are belts; in addition, the first transmission wheel 610, the second transmission wheel 630, the third transmission wheel 640, the fourth transmission wheel 680, the fifth transmission wheel 690 and the sixth transmission wheel 530 illustrated in this embodiment may also be other wheel structures that can realize the transmission function. Regardless of the first transmission wheel 610, the second transmission wheel 630, the third transmission wheel 640, the fourth transmission wheel 680, the fifth transmission wheel 690 and the sixth transmission wheel 530 and any other wheel structure that can realize the transmission function, the illustrated first transmission belt 370, the second transmission belt 620 and the third transmission belt 650 can be set accordingly.

[0111] In one embodiment, the driving mechanism 500 includes:

[0112] A driving member 510 , the driving member 510 is installed at the installation position 170 , and an output shaft of the driving member 510 passes through the frame 100 and extends into the shelling space 110 , and the output shaft is connected to the frame 100 via a bearing seat; and

[0113] The sixth transmission wheel 530 is rotatably coupled to the first transmission wheel 610 via the third transmission belt 650 , and the diameter of the sixth transmission wheel 530 is smaller than that of the first transmission wheel 610 .

[0114] In this embodiment, by providing a driving member 510 and a sixth transmission wheel 530, the present invention can utilize the driving member 510 to cooperate with the first transmission wheel 610 through the sixth transmission wheel 530 when in use to drive the first transmission roller 320, the second transmission roller 350, the first separation roller 430 and the second separation roller 440 for synchronous transmission, thereby saving power and ensuring the compactness of the overall structure.

[0115] Of course, in this embodiment, the diameter of the sixth transmission wheel 530 is smaller than the diameter of the first transmission wheel 610, so that the present invention can reduce the speed of synchronous transmission of the first transmission roller 320, the second transmission roller 350, the first separation roller 430 and the second separation roller 440 when in use, ensuring the safe operation of the bamboo shoot peeling mechanism 400 illustrated in this embodiment and guaranteeing the yield of bamboo shoot meat.

[0116] In some optional embodiments, see Figure 1 、 Figure 2 and Figure 3 When the driving member 510 of the example is a motor, the first transmission wheel 610 of the example is installed on the second separating roller 440. The driving member 510 drives the second separating roller 440 to rotate actively through the sixth transmission wheel 530, and makes the first gear 660 installed on the second separating roller 440 a driving gear, and the second gear 670 installed on the first separating roller 430 a driven gear, so that the second separating roller 440 can drive the first separating roller 430 to rotate synchronously through the engagement of the first gear 660 and the second gear 670, so as to achieve the purpose of making the first separating roller 430 and the second separating roller 440 have the same linear velocity and opposite angular velocity movement directions.

[0117] Of course, in other exemplary embodiments, please refer to Figure 10 When the driving member 510 in the example is a gasoline engine, the first transmission wheel 610 in the example is installed on the first separation roller 430. The driving member 510 drives the first separation roller 430 to rotate actively through the sixth transmission wheel 530, and makes the second gear 670 installed on the first separation roller 430 a driving gear, and the first gear 660 installed on the second separation roller 440 a driven gear. In this way, the first separation roller 430 can drive the second separation roller 440 to rotate synchronously through the engagement of the second gear 670 and the first gear 660, so as to achieve the purpose of making the second separation roller 440 and the first separation roller 430 have the same linear velocity and opposite angular velocity movement directions.

[0118] In order to be able to understand the present invention more clearly, when in use, the present invention treats the shelling process of shelling bamboo shoots as follows:

[0119] The tip of the bamboo shoot to be shelled is directed toward the shell-breaking gap 360 formed between the first transmission roller 320 and the second transmission roller 350, and the bamboo shoot to be shelled enters the shell-breaking gap 360 from the bamboo shoot inlet end 140. At this time, the driving member 510 drives the sixth transmission sprocket to rotate through the third transmission belt 650 to drive the first transmission wheel 610, and the second separation roller 440 drives the first separation roller 430 and the second separation roller 440 to rotate synchronously through the cooperation of the first gear 660 and the second gear 670. At the same time, the second separation roller 440 drives the second transmission roller 350 through the second transmission belt 620 and the first separation roller 430 drives the first transmission roller 320 through the first transmission belt 370 to rotate synchronously, so as to realize that the first transmission roller 320 and the second transmission roller 350 rotate in opposite directions while squeezing the bamboo shoot to be shelled downward in the first direction until it passes through the shell-breaking knife 343 for shelling operation. At the same time, the squeezing of the first transmission roller 320 and the second transmission roller 350 Under the action of the first separating roller 430, the bamboo shoots to be shelled move downward from the tip to the root in turn and pass through the shelling knife 343 to complete the shelling operation. After completing the shelling operation, the bamboo shoots to be shelled continue to move downward to the shelling position 130 under the guidance of the guide member 200, and at the shelling position 130, the bamboo shoot skin at the tip of the bamboo shoots to be shelled is engaged in the bite gap 450 between the first separating roller 430 and the second separating roller 440 due to the synchronous rotation of the first separating roller 430 and the second separating roller 440. At this time, the bamboo shoot meat at the tip position of the bamboo shoots to be shelled continues to move from the top surface of the first separating roller 430 to the direction away from the shelling space 110 under the rotation action of the first separating roller 430, while the bamboo shoot skin moves downward from the bite position under the synchronous movement of the first separating roller 430 and the second separating roller 440 and the bite action of the bite position, until the bamboo shoot meat at the root position leaves the shelling space 110 from the top surface of the first separating roller 430, completing the automatic shelling operation of the bamboo shoots to be shelled.

[0120] It should be clearly stated that in this embodiment, the second protrusion 431 provided on the first separating roller 430 and the third protrusion 441 provided on the second separating roller 440 cooperate with each other, which will generate friction and tensile force on the engaged bamboo shoot skins. Through friction and tensile force, the function of automatically separating the bamboo shoot skins and bamboo shoot meat to be peeled can be achieved.

[0121] Based on the same technical concept, in a second aspect, the present invention further proposes a bamboo shoot processing system, which applies the bamboo shoot shelling mechanism 400 of the first aspect.

[0122] The bamboo shoot processing system provided by the present application utilizes the bamboo shoot shelling mechanism 400 of the above-described embodiment, which can solve the technical problem in the related art that due to the inertial effect generated during the conveyor belt conveying the bamboo shoots, the bamboo shoot flesh to be shelled is easily damaged due to the excessive movement speed of the bamboo shoots, thereby affecting the yield rate of the bamboo shoot flesh and the efficiency of peeling. Compared with the prior art, the beneficial effects of the bamboo shoot processing system provided by the present application are the same as those of the bamboo shoot shelling mechanism 400 provided by the above-described embodiment, and other technical features of the existing bamboo shoot processing system are the same as those of the disclosed bamboo shoot shelling mechanism 400 of the previous embodiment, and are not further described here.

[0123] The above are only optional embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention description and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A bamboo shoot peeling mechanism, characterized in that: include: A frame, wherein a shelling space for shelling bamboo shoots to be shelled is formed in the frame, wherein a shelling position and a shelling position spaced apart along a first direction are formed in the shelling space, and an installation position spaced apart from the shelling position along a second direction is formed below the shelling position, the shelling position is located above the shelling position, a guide is provided between the shelling position and the shelling position, and a side of the shelling position away from the shelling position is a bamboo shoot inlet end, a side of the shelling position away from the shelling position is a bamboo shoot outlet end, and a side of the shelling position away from the shelling position is a bamboo shoot outlet end, and a shelling position below is a shelling end; a shell breaking mechanism, the shell breaking mechanism being rotatably connected to the frame and located at the shell breaking position; a shelling mechanism, the shelling mechanism being rotatably connected to the frame and being located at the shelling position; and A driving mechanism, comprising a transmission component and a driving component installed at the installation position, wherein the transmission component is respectively installed on the shell breaking mechanism and the shell peeling mechanism so that the shell peeling mechanism and the shell breaking mechanism are in transmission cooperation, and the transmission component is connected to the output shaft of the driving component; The driving component can drive the transmission component to synchronously drive the shell breaking mechanism and the shelling mechanism to rotate synchronously, so that after the bamboo shoots to be shelled are shelled from the bamboo shoot inlet end by the shell breaking mechanism, they slide inertially through the guide part and are separated into bamboo shoot meat and bamboo shoot skin by the shelling mechanism, the bamboo shoot meat is discharged from the shelling space from the bamboo shoot outlet end, and the bamboo shoot skin is discharged from the shelling space from the shell outlet end.

2. The bamboo shoot peeling mechanism according to claim 1, characterized in that: The shell breaking mechanism comprises: A hinged member, the hinged member is located in the shelling space, the two ends of the hinged member are respectively a hinged end and a free end, the free end is located at the shell breaking position, the hinged end extends from the shell breaking position to be hinged to the side wall of the frame near the shelling position, and the free end can rotate around the hinged end to enter or leave the shelling space; a first transmission roller, the first transmission roller being rotatably mounted on the free end and being in transmission cooperation with the shelling mechanism, and a guide ring groove being formed on the first transmission roller; a shell breaking assembly, the shell breaking assembly being arranged near the free end, the shell breaking assembly being installed on a side of the first conveying roller facing the shelling position and being spaced apart from the first conveying roller; and a second conveying roller, the second conveying roller being rotatably connected to the frame, the second conveying roller being located at the shell-breaking position, the vertical distance from the top of the second conveying roller to the installation position being greater than the vertical distance from the top of the guide member to the installation position, the second conveying roller being located below the free end, a shell-breaking gap being formed between the first conveying roller and the second conveying roller for the bamboo shoots to be shelled to pass through, the linear speeds of the first conveying roller and the second conveying roller being the same and the angular speeds being in opposite directions, the shell-breaking assembly being capable of shelling the bamboo shoots to be shelled that are squeezed and conveyed through the shell-breaking gap; When entering the shelling space, the first conveying roller can cooperate with the second conveying roller to squeeze and convey the bamboo shoots to be shelled that are fed from the bamboo shoot inlet end into the guide ring groove to pass through the shell breaking assembly for shelling operation.

3. The bamboo shoot peeling mechanism according to claim 2, characterized in that: The transmission component includes a first transmission assembly and a second transmission assembly. The first transmission assembly is installed on the shelling mechanism. The first transmission assembly is connected to the driving component. The second transmission assembly is installed on the shelling mechanism, and the second transmission assembly is coordinated with the first transmission assembly. The driving component can drive the first transmission assembly to drive the shelling mechanism to move and synchronously drive the shelling assembly to move through the second transmission assembly to perform shelling operations on the bamboo shoots to be shelled.

4. The bamboo shoot peeling mechanism according to claim 3, characterized in that: The shelling mechanism is provided with a first transmission position and a second transmission position which are spaced apart. The first transmission position and the second transmission position are matched with each other through the first transmission assembly so that the movement direction of the first transmission position is opposite to the movement direction of the second transmission position. The first transmission roller is matched with the first transmission position through the second transmission assembly, and the second transmission roller is matched with the second transmission position through the second transmission assembly. The driving component can drive the first transmission position through the first transmission assembly to drive the first transmission roller and the second transmission position to drive the second transmission roller to rotate synchronously, so as to squeeze and transmit the bamboo shoots to be shelled through the shell breaking gap to the shell breaking assembly for shell breaking operation.

5. The bamboo shoot peeling mechanism according to claim 4, characterized in that: There are two hinges, which are respectively arranged on both sides of the shelling space, and the two ends of the first conveying roller are rotatably connected to the two free ends respectively; The shell breaking assembly comprises: A connecting plate, the two ends of which are respectively connected to the two hinged members, the connecting plate being located above the guide member, and the connecting plate having a through groove extending through the guide member at a position corresponding to the guide ring groove; Two clamping plates, the two clamping plates are oppositely arranged on both sides of the through slot and are both detachably connected to the connecting plate; and A shell-breaking knife, the shell-breaking knife is installed between the two clamping plates, and the tip of the shell-breaking knife can pass through the through slot downward and extend to the top of the guide member; The shelling knife can perform shelling operation on the bamboo shoots to be shelled that are squeezed and transmitted through the shelling gap.

6. The bamboo shoot peeling mechanism according to claim 5, characterized in that: The shelling mechanism includes a first separating roller and a second separating roller, both ends of which are rotatably connected to the frame, the first separating roller and the second separating roller are distributed in parallel along the second direction at the shelling position, and the first separating roller is arranged close to the bamboo shoot outlet end, the first transmission position is formed at one end of the first separating roller, and the second transmission position is arranged on the same side as the first transmission position and is formed at one end of the second separating roller, and a biting gap for biting the bamboo shoot skin can be formed between the first separating roller and the second separating roller when they rotate synchronously, and the biting gap is connected to the shelling end, and the driving mechanism can drive the first separating roller and the second separating roller to rotate synchronously through the transmission assembly so that the biting gap can biting the bamboo shoot skin guided from the guide to the shelling position, and separate the bamboo shoot skin from the bamboo shoot meat and discharge the bamboo shoot meat and the bamboo shoot skin from the bamboo shoot outlet end and the shelling end respectively.

7. The bamboo shoot peeling mechanism according to claim 6, characterized in that: The first transmission assembly includes: a first transmission sprocket, the first transmission sprocket being mounted at the second transmission position and being rotatably engaged with the output shaft of the driving component via a third transmission belt; a second transmission sprocket, the second transmission sprocket being installed at the second transmission position, the second transmission sprocket being spaced apart from the first transmission sprocket, and the second transmission sprocket being coupled to the second transmission roller via a second transmission belt; A driving gear, wherein the driving gear, the first transmission sprocket and the second transmission sprocket are sequentially spaced and distributed on the rotating shaft of the second separating roller; a driven gear mounted on the rotating shaft of the first separating roller and meshing with the driving gear; and A fourth transmission sprocket is arranged on the rotating shaft of the first separating roller in sequence with the driven gear, and the fourth transmission sprocket is coupled to the first transmission roller via a first transmission belt.

8. The bamboo shoot peeling mechanism according to claim 7, characterized in that: The second transmission assembly includes: a third transmission sprocket, the third transmission sprocket being mounted on the rotating shaft of the second transmission roller, and the third transmission sprocket being in transmission cooperation with the second transmission sprocket via the second transmission belt; and A fifth transmission sprocket is mounted on the rotating shaft of the first transmission roller, and the fifth transmission sprocket is rotationally matched with the fourth transmission sprocket through the first transmission belt.

9. The bamboo shoot peeling mechanism according to claim 8, characterized in that: The driving component includes: a driving member, the driving member being installed at the installation position, and the output shaft of the driving member passing through the frame and extending into the shelling space, the output shaft being connected to the frame via a bearing seat; and A sixth transmission sprocket is rotatably coupled to the first transmission sprocket via the third transmission belt, and a diameter of the sixth transmission sprocket is smaller than a diameter of the first transmission sprocket.

10. A bamboo shoot processing system, characterized in that: A bamboo shoot shelling mechanism as described in any one of claims 1 to 9 is used.