A stalk cutting device for harvesting taro
By designing a stem cutting device including a drive motor and a hydraulic cylinder, the automatic separation and discharge of taro stems and fruits are achieved, solving the problem of operators having to repeatedly handle the stems in the existing technology and improving the processing efficiency.
Patent Information
- Application Number
- CN202310121382.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-16
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2043-02-16
AI Technical Summary
When separating taro stems and fruits, the existing device requires operators to repeatedly discard the cut stems, which affects the processing efficiency.
A taro stem cutting device is designed, which includes a mounting base, a placement frame, an adjustment part, a classification mechanism, a cutting mechanism, a propulsion mechanism, a pressing mechanism and a collection mechanism. The cutting part and the propulsion part are driven by a driving motor, a hydraulic cylinder and a hydraulic cylinder to realize automatic separation and discharge of the stems and fruits.
The rapid separation and discharge of taro stems and fruits is achieved, which improves processing efficiency and reduces repetitive work of operators.
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Figure CN115943799B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of taro harvesting and processing, in particular to a taro stem cutting device. Background Art
[0002] Taro is a perennial herb of the Araceae family with high nutritional and practical value. In addition to being used for extracting starch, it is also widely used in the fields of vinegar making and wine making. When the taro is harvested after growth, it will have long stems, and the part people need is the taro fruit at the bottom, so the taro stems need to be separated. When the existing device separates the taro stems, the operator generally harvests the taro, and after the harvest is completed, the taro is placed on a cutting device, and then the taro stems are centrally cut by the cutting device. During the processing, the operator needs to repeatedly discard the cut stems, which affects the efficiency of taro processing.
[0003] Therefore, in order to solve the above problems, a taro stalk and fruit separation process is developed to quickly separate the taro stalk and fruit, and a taro stalk cutting device is developed to facilitate the taro stalk discharge process. Summary of the Invention
[0004] In order to overcome the disadvantage of existing devices that operators need to repeatedly discard the cut stems during the processing process, which affects the taro processing efficiency, the present invention provides a taro harvesting stem cutting device that can quickly separate the stems and fruits of taro and facilitate stem discharge processing.
[0005] The technical solution of the present invention is: a stem cutting device for harvesting taro, including a mounting seat, a placement frame, an adjusting piece, a first latch, a classification mechanism and a cutting mechanism, the top of the mounting seat is rotatably connected to a placement frame for placing the harvested taro, the front and rear sides of the placement frame are connected to adjusting pieces for adjusting the angle of the placement frame, the adjusting pieces are connected to the first latch, the front and rear sides of the mounting seat are each provided with two first positioning holes, the first latches can be engaged with adjacent first positioning holes, the mounting seat is provided with a classification mechanism for separating the taro and the stem, and the placement frame is provided with a cutting mechanism for automatically cutting off the stem.
[0006] Furthermore, the classification mechanism includes a motor placement seat, a drive motor, a pulley assembly, a screw rod and a sliding frame. The front side of the right side of the mounting seat is connected to the motor placement seat, the top of the motor placement seat is connected to the drive motor, the output shaft of the drive motor is set to face rearward, the left side of the mounting seat is rotatably connected to the screw rod, and a pulley assembly for coordinated rotation is connected between the screw rod and the output shaft of the drive motor. The sliding frame is slidably connected to the placement frame, and the sliding frame is threadedly connected to the screw rod.
[0007] Furthermore, the cutting mechanism includes a hydraulic cylinder, a connecting part, a cutting part and a pressure plate. The front and rear sides of the placement frame are connected to the hydraulic cylinder. The telescopic ends of the hydraulic cylinder are both facing upward. The tops of the telescopic ends of the hydraulic cylinder are connected to connecting parts. Cutting parts for cutting and separating the taro are connected between the connecting parts. A plurality of pressure plates for pressing and fixing the taro stems are connected to the left side of the cutting part.
[0008] Furthermore, it also includes a propulsion mechanism, which includes a first fixed frame, a propulsion member and a fixed column. The upper left side of the placement frame is connected to the first fixed frame with a Z-shaped structure at the rear. The left side of the sliding frame is slidably connected to a plurality of propulsion members for pushing the stems to discharge the materials. The top of the propulsion member is connected to a fixed column slidably connected to the first fixed frame.
[0009] Furthermore, it also includes a pressing mechanism, which includes a fixed plate, a pressing piece, a first spring, a second fixed frame, a fixed sleeve, a first baffle and a second spring. The right part of the sliding frame is connected to the fixed plate, and the fixing plate is slidably connected to the pressing piece for pressing down the cut taro fruit. The first spring is connected between the pressing piece and the fixed plate, and the first springs are both wound around the pressing piece. The right sides of the front and rear parts of the cutting piece are connected to the second fixed frame with a Z-shaped structure, and the front and rear sides of the sliding frame are connected to the fixed sleeve for guiding. The fixed sleeve is slidably connected to the first baffle for blocking and limiting the pressing piece, and the first baffle can be clamped with the adjacent second fixed frame. A second spring is connected between the first baffle and the adjacent fixed sleeve.
[0010] Furthermore, it also includes a collecting mechanism, which includes a collecting frame, a second baffle, a rotating member and a second bolt. The bottom of the mounting seat is connected to a collecting frame for collecting taro fruits, and the left part of the mounting seat is rotatably connected to a second baffle for blocking taro fruits. The front and rear sides of the second baffle are connected to rotating members, and the rotating members are connected to second bolts. Two second positioning holes are opened on the front and rear sides of the left part of the mounting seat for limiting adjacent second bolts.
[0011] Furthermore, it also includes an installation mechanism, which includes a mounting plate, a clamping plate and a nut. The mounting plate is connected to the right side of the mounting seat. The right side of the mounting plate is slidably connected to a clamping plate for clamping and fixing with the transportation equipment. The right side of the clamping plate is threadedly connected to a nut. Rotating the nut can drive the clamping plate to move to the left.
[0012] Furthermore, the pulley assembly includes a pulley and a transmission belt. The output shaft of the driving motor and the front part of the screw rod are both connected with pulleys, and the transmission belt is wound between the pulleys.
[0013] Furthermore, there are nine first springs in total.
[0014] Furthermore, the bottom of the collection frame is a structure that is tilted to the left.
[0015] Compared with the prior art, the present invention has the following advantages: 1. The output shaft of the driving motor drives the screw to rotate, so that the sliding frame automatically slides backward. At this time, the sliding frame can drive the loaded stems to move and discharge, and can quickly assist the operator to discharge and process the classified stems, thereby achieving the effect of separating the taro fruits and stems.
[0016] 2. The cutting piece is driven to move automatically by the telescopic end of the hydraulic cylinder, so that the cutting piece drives the pressing plate to move downward and presses and fixes the stem to prevent the stem from accidentally sliding and affecting the cutting. At the same time, the cutting piece cuts off the taro to achieve the effect of automatic cutting and separation.
[0017] 3. The fixed column is guided by the first fixed frame so that the fixed column drives the corresponding propulsion member to automatically slide to the right, pushing the stems remaining in the sliding frame out, thereby achieving the effect of quickly processing the taro stems.
[0018] 4. The cutting member drives the second fixing frame to move downward, so that the first baffle no longer limits the pressing member, so that the pressing member can push the taro fruit to prevent the taro fruit from being stuck at the discharge port and unable to be discharged normally. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0020] Figure 2 It is a partial three-dimensional structural schematic diagram of the present invention.
[0021] Figure 3 It is a schematic diagram of the three-dimensional structure of the classification mechanism of the present invention.
[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the cutting mechanism of the present invention.
[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the propulsion mechanism of the present invention.
[0024] Figure 6 It is a schematic diagram of the three-dimensional structure of the pressing mechanism of the present invention.
[0025] Figure 7 It is a partial structural schematic diagram of the pressing mechanism of the present invention.
[0026] Figure 8 It is a schematic diagram of the three-dimensional structure of the collecting mechanism of the present invention.
[0027] Figure 9 It is a structural schematic diagram of the installation mechanism of the present invention.
[0028] In the accompanying drawings: 1-mounting seat, 2-placement frame, 3-adjusting member, 4-first bolt, 5-first positioning hole, 6-classification mechanism, 61-motor placement seat, 62-drive motor, 63-pulley assembly, 64-screw rod, 65-sliding frame, 7-cutting mechanism, 71-hydraulic cylinder, 72-connecting member, 73-cutting member, 74-pressing plate, 8-propelling mechanism, 81-first fixed frame, 82-propelling member, 83-fixed column, 9-pressing mechanism, 91-fixed plate, 92-pressing member, 93-first spring, 94-second fixed frame, 95-fixed sleeve, 96-first baffle, 97-second spring, 10-collecting mechanism, 101-collecting frame, 102-second baffle, 103-rotating member, 104-second bolt, 105-second positioning hole, 11-mounting mechanism, 111-mounting plate, 112-clamp, 113-nut. DETAILED DESCRIPTION
[0029] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0030] A stalk cutting device for harvesting taro, such as Figure 1 and Figure 2 As shown, it includes a mounting base 1, a placement frame 2, an adjusting member 3, a first clamping bolt 4, a classification mechanism 6 and a cutting mechanism 7. The top of the mounting base 1 is rotatably connected to the placement frame 2, and the placement frame 2 is used to place the harvested taro. The front and rear sides of the placement frame 2 are connected with adjusting members 3, and the adjusting members 3 are used to adjust the angle of the placement frame 2. The adjusting members 3 are connected with the first clamping bolt 4. Two first positioning holes 5 are opened on the front and rear sides of the mounting base 1, and the first clamping bolts 4 can be clamped with adjacent first positioning holes 5. The mounting base 1 is provided with a classification mechanism 6, and the placement frame 2 is provided with a cutting mechanism 7.
[0031] It should be noted that the stems left after the taro is harvested are relatively long, so the stems need to be cut off after the taro is harvested, and the harvested taro is placed as a whole in the sorting mechanism 6. Then, the first clamping bolt 4 is disengaged from the corresponding first positioning hole 5 as needed, and then the adjustment part 3 is rotated to adjust the angle of the placement frame 2. After the adjustment is completed, the first clamping bolt 4 is engaged with the corresponding first positioning hole 5, so that the placement frame 2 is locked and fixed, so as to facilitate the falling and discharging of the taro. Then, the cutting mechanism 7 is controlled to cut and separate the taro. After cutting is completed, the sorting mechanism 6 is controlled to move backward, so that the stem drives the discharge and the taro fruits are collected.
[0032] like Figure 1 and Figure 3As shown, the classification mechanism 6 includes a motor placement seat 61, a drive motor 62, a pulley assembly 63, a screw rod 64 and a sliding frame 65. The front side of the right part of the mounting seat 1 is connected to the motor placement seat 61 by bolts, the drive motor 62 is connected to the top of the motor placement seat 61, the left part of the mounting seat 1 is rotatably connected to the screw rod 64, and a pulley assembly 63 is connected between the screw rod 64 and the output shaft of the drive motor 62. The pulley assembly 63 includes a pulley and a transmission belt. The output shaft of the drive motor 62 and the front part of the screw rod 64 are both connected with pulleys, and a transmission belt is wound between the pulleys. The sliding frame 65 is slidably connected to the placement frame 2, and the sliding frame 65 is threadedly connected to the screw rod 64.
[0033] It should be noted that the harvested taro can be placed one by one in the sliding rack 65, with the taro fruit facing right. The taro is then cut using a cutting device to separate the stems from the fruit. The fruit will fall into the placement frame 2 through the hole on the right side of the sliding rack 65, and the stems will remain on the sliding rack 65. After the classification is completed, the output shaft of the drive motor 62 is controlled to rotate, so that the pulley assembly 63 starts to run, thereby driving the screw rod 64 to rotate. It should be noted that during the rotation of the screw rod 64, the sliding rack 65 will move backward under the drive of the screw rod 64, so that the sliding rack 65 drives the stems to move backward to discharge the material. In summary, the screw rod 64 is driven to rotate by the output shaft of the drive motor 62, so that the sliding rack 65 automatically slides backward, which can quickly discharge the classified stems, thereby achieving the effect of separating the taro fruit and stems.
[0034] like Figure 1 and Figure 4 As shown, the cutting mechanism 7 includes a hydraulic cylinder 71, a connecting piece 72, a cutting piece 73 and a pressing plate 74. The front and rear sides of the placement frame 2 are connected to the hydraulic cylinder 71 by bolts, the top of the telescopic end of the hydraulic cylinder 71 is connected to the connecting piece 72, and the cutting piece 73 is connected between the connecting pieces 72 by bolts. The cutting piece 73 is used to cut and separate the taro. Nine pressing plates 74 are connected to the left side of the cutting piece 73. The pressing plate 74 is used to press and fix the taro stem.
[0035] It should be noted that in order to improve the convenience of operation, after the taro is placed stably as a whole, the telescopic ends of the hydraulic cylinder 71 are directly controlled to move downward, so that the connecting parts 72 drive the cutting parts 73 to move downward. As the cutting parts 73 move downward, they will come into contact with the taro stems. It should be noted that in the process of the cutting parts 73 moving downward, the pressure plates 74 will be driven to move downward, so that the pressure plates 74 will squeeze and fix the adjacent stems, and at the same time, the cutting parts 73 will cut the taro, thereby achieving the effect of separating the taro fruit and the stems. In summary, the cutting parts 73 are automatically moved by the telescopic ends of the hydraulic cylinder 71, so that the cutting parts 73 drive the pressure plates 74 to move downward and press and fix the stems to prevent the stems from accidentally sliding and affecting the cutting. At the same time, the cutting parts 73 cut off the taro, thereby achieving the effect of automatic cutting and separation.
[0036] like Figure 1 and Figure 5 As shown, it also includes a propulsion mechanism 8, which includes a first fixed frame 81, a propulsion member 82 and a fixed column 83. The first fixed frame 81 is connected to the upper left side of the placement frame 2 by bolts. The rear part of the first fixed frame 81 is a Z-shaped structure. The left part of the sliding frame 65 is slidably connected to nine propulsion members 82. The propulsion members 82 are used to push the stems out of the material. The tops of the propulsion members 82 are connected to the fixed columns 83, and the propulsion members 82 are slidably connected to the first fixed frame 81.
[0037] When the first fixed frame 81 is moved to the Z-shaped structure at the rear side of the first fixed frame 81, the fixed frame 83 will start to move to the right under the guidance of the first fixed frame 81, driving the corresponding propulsion member 82 to slide to the right and push the remaining stems in the sliding frame 65 out of the material, making it convenient for the operator to process the stems. In summary, the first fixed frame 81 guides the fixed frame 83, so that the fixed frame 83 drives the corresponding propulsion member 82 to automatically slide to the right, pushing the stems remaining in the sliding frame 65 out of the material, thereby achieving the effect of quickly processing the taro stems.
[0038] like Figure 1 、 Figure 6 and Figure 7As shown, it also includes a pressing mechanism 9, which includes a fixed plate 91, a pressing member 92, a first spring 93, a second fixed frame 94, a fixed sleeve 95, a first baffle 96 and a second spring 97. The right part of the sliding frame 65 is connected to the fixed plate 91, and the pressing member 92 is slidably connected to the fixed plate 91. The pressing member 92 is used to press the cut taro fruit downward, and a first spring 93 is connected between the pressing member 92 and the fixed plate 91. There are nine first springs 93 in total, which can improve the sliding stability of the pressing member 92. The right sides of the front and rear parts of the cutting member 73 are connected to the second fixed frame 94, and the second fixed frame 94 is a Z-shaped structure. The front and rear sides of the sliding frame 65 are connected to the fixed sleeve 95, and the first baffle 96 is slidably connected to the fixed sleeve 95. The first baffle 96 can be clamped with the adjacent second fixed frame 94 and guided by the corresponding second fixed frame 94. A second spring 97 is connected between the first baffle 96 and the adjacent fixed sleeve 95.
[0039] It should be noted that in order to prevent the taro from being stuck in the discharge port after being cut and unable to fall, as the cutting member 73 moves downward to cut, it will drive the second fixing frame 94 to move downward, so that the first baffle 96 is engaged with the adjacent second fixing frame 94, and then as the second fixing frame 94 continues to slide downward, it should be noted that at this time the cutting member 73 has completed cutting the taro, and at the same time, the first baffle 96 will slide to the side away from each other under the guidance of the second fixing frame 94, and the second spring 97 is compressed. At this time, the first baffle 96 no longer blocks the pressing member 92. In the initial state, the first spring 93 is in a compressed state. When the pressing member 92 is no longer blocked, it will be After the discharge is completed, the lower pressing member 92 needs to be pulled upward and reset, so that the first spring 93 is compressed. Then, as the cutting member 73 is reset upward, the second fixing frame 94 is reset. Under the action of the second spring 97, the first baffle 96 will slide and reset to the side close to each other, and block the lower pressing member 92 again. In summary, the second fixing frame 94 is driven to move downward by the cutting member 73, so that the first baffle 96 no longer limits the lower pressing member 92, so that the lower pressing member 92 can push the taro fruit, avoiding the taro fruit being stuck at the discharge port and unable to be discharged normally.
[0040] like Figure 1 and Figure 8As shown, it also includes a collecting mechanism 10, which includes a collecting frame 101, a second baffle 102, a rotating member 103 and a second latch 104. The bottom inner of the mounting seat 1 is connected to the collecting frame 101, and the collecting frame 101 is used to collect taro fruits. The bottom inner of the collecting frame 101 is a structure inclined to the left, which can guide the taro fruits to be discharged. The left part of the mounting seat 1 is rotatably connected to the second baffle 102, and the second baffle 102 is used to block the taro fruits. The front and rear sides of the second baffle 102 are connected to the rotating member 103, and the second latch 104 is connected to the rotating member 103. Second positioning holes 105 are opened on the front and rear sides of the left part of the mounting seat 1.
[0041] It should be noted that, after the taro fruits are cut, if they are not collected in a centralized manner, it will be difficult to collect the taro fruits. In order to avoid this situation, after the taro fruits are cut and discharged, the collection frame 101 will collect the taro fruits. At the same time, the taro fruits will slide to the left under the inclined surface of the collection frame 101, and the second baffle 102 will block the taro fruits. When the taro fruits need to be taken out, the second latch 104 needs to be pulled out and disengaged from the corresponding second positioning hole 105. Then, the rotating member 103 is rotated to start the rotation of the second baffle 102. Then, the second latch 104 is engaged with the corresponding second positioning hole 105, so that the second baffle 102 is locked and fixed, which is convenient for the operator to take out the taro fruits. In summary, the taro fruits are collected in a centralized manner by the collection frame 101, so as to improve the collection efficiency of the taro fruits. At the same time, the second baffle 102 is used to block the taro fruits before discharging to prevent the taro fruits from sliding out in advance, thereby reducing the collection efficiency.
[0042] like Figure 1 and Figure 9 As shown, it also includes a mounting mechanism 11, which includes a mounting plate 111, a clamping plate 112 and a nut 113. The right side of the mounting seat 1 is connected to the mounting plate 111 by bolts, and the right side of the mounting plate 111 is slidably connected to the clamping plate 112. The clamping plate 112 and the mounting plate 111 cooperate to be clamped and fixed to the transportation equipment, and a nut 113 is threadedly connected to the right side of the clamping plate 112.
[0043] It should be noted that in order to facilitate the operator to collect the taro fruits, the nut 113 is rotated to make the clamping plate 112 slide to the left, so that the clamping plate 112 and the mounting plate 111 are clamped and fixed with the transportation equipment, which makes it easier to separate the taro after the harvest is completed.
[0044] The above embodiments are only preferred embodiments of the present invention and are not intended to limit the scope of implementation of the present invention. Therefore, any equivalent changes made to the contents described in the claims of the present invention should be included in the scope of the claims of the present invention.
Claims
1. A stalk-cutting device for harvesting taro, comprising a mounting seat (1), a placement frame (2), an adjusting member (3) and a first latch (4), wherein the mounting seat (1) is rotatably connected to the placement frame (2) for placing the harvested taro, the placement frame (2) is connected to the front and rear sides thereof with adjusting members (3) for adjusting the angle of the placement frame (2), the adjusting members (3) are connected to the first latch (4), the mounting seat (1) is provided with two first positioning holes (5) on the front and rear sides thereof, and the first latch (4) can be engaged with adjacent first positioning holes (5), wherein the mounting seat (1) is characterized in that: It also includes a classification mechanism (6) and a cutting mechanism (7), wherein the mounting seat (1) is provided with the classification mechanism (6) for separating the taro and the stem, and the placement frame (2) is provided with the cutting mechanism (7) for automatically cutting off the stem; The classification mechanism (6) includes a motor placement seat (61), a drive motor (62), a pulley assembly (63), a screw rod (64) and a sliding frame (65). The front side of the right portion of the mounting seat (1) is connected to the motor placement seat (61), the top of the motor placement seat (61) is connected to the drive motor (62), the output shaft of the drive motor (62) is set to face backward, the left portion of the mounting seat (1) is rotatably connected to the screw rod (64), the pulley assembly (63) for coordinated rotation is connected between the screw rod (64) and the output shaft of the drive motor (62), the placement frame (2) is slidably connected to the sliding frame (65), and the sliding frame (65) is threadedly connected to the screw rod (64); The cutting mechanism (7) includes a hydraulic cylinder (71), a connecting member (72), a cutting member (73) and a pressing plate (74). The front and rear sides of the placement frame (2) are both connected to the hydraulic cylinder (71). The telescopic ends of the hydraulic cylinder (71) are both set to face upward. The tops of the telescopic ends of the hydraulic cylinder (71) are both connected to the connecting members (72). The cutting members (73) for cutting and separating the taro are connected between the connecting members (72). The left side of the cutting member (73) is connected to a plurality of pressing plates (74) for pressing and fixing the taro stems. The device further comprises a propulsion mechanism (8), the propulsion mechanism (8) comprising a first fixed frame (81), a propulsion member (82) and a fixed column (83); the upper left side of the placement frame (2) is connected to the first fixed frame (81) having a Z-shaped rear structure; the left side of the sliding frame (65) is slidably connected to a plurality of propulsion members (82) for pushing the stems to discharge the material; the tops of the propulsion members (82) are all connected to fixed columns (83) slidably connected to the first fixed frame (81); The invention also includes a pressing mechanism (9), which includes a fixed plate (91), a pressing member (92), a first spring (93), a second fixed frame (94), a fixed sleeve (95), a first baffle (96) and a second spring (97). The right part of the sliding frame (65) is connected to the fixed plate (91). The fixed plate (91) is slidably connected to the pressing member (92) for pressing the cut taro fruit downward. The first spring (93) is connected between the pressing member (92) and the fixed plate (91). The first spring (93) ) are wound around the pressing member (92), the right sides of the front and rear parts of the cutting member (73) are connected to a second fixed frame (94) with a Z-shaped structure, the front and rear sides of the sliding frame (65) are connected to a fixed sleeve (95) for guiding, and the fixed sleeve (95) is slidably connected to a first baffle (96) for blocking and limiting the pressing member (92), and the first baffle (96) can be clamped with the adjacent second fixed frame (94), and a second spring (97) is connected between the first baffle (96) and the adjacent fixed sleeve (95).
2. A taro harvesting stem cutting device as claimed in claim 1, characterized in that: The utility model also includes a collecting mechanism (10), which includes a collecting frame (101), a second baffle (102), a rotating member (103) and a second clamping bolt (104). The inner bottom of the mounting seat (1) is connected to the collecting frame (101) for collecting taro fruits. The left part of the mounting seat (1) is rotatably connected to the second baffle (102) for blocking the taro fruits. The front and rear sides of the second baffle (102) are both connected to the rotating member (103). The rotating member (103) is both connected to the second clamping bolt (104). The front and rear sides of the left part of the mounting seat (1) are both provided with two second positioning holes (105) for limiting adjacent second clamping bolts (104).
3. A taro stalk cutting device as claimed in claim 2, characterized in that: The invention also includes a mounting mechanism (11), which includes a mounting plate (111), a clamping plate (112) and a nut (113). The mounting seat (1) is connected to the right side with the mounting plate (111). The right side of the mounting plate (111) is slidably connected to the clamping plate (112) for clamping and fixing with the transportation equipment. The right side of the clamping plate (112) is threadedly connected to the nut (113). Rotating the nut (113) can drive the clamping plate (112) to move to the left.
4. A taro harvesting stem cutting device as claimed in claim 1, characterized in that the belt The wheel assembly (63) includes a pulley and a transmission belt. The output shaft of the driving motor (62) and the front of the screw rod (64) are both connected to the pulley, and the transmission belt is wound between the pulleys.
5. A taro stalk cutting device as claimed in claim 1, characterized in that: There are nine first springs (93).
6. A taro harvesting stem cutting device as claimed in claim 2, characterized in that: The bottom of the collecting frame (101) is a structure that is tilted to the left.