A bamboo planting cutter device and a cutting method thereof
By designing a bamboo planting cutting device that employs electric cutting, telescopic positioning, and lime slurry application, the problems of damage and sterilization during bamboo cutting are solved. This achieves efficient and damage-free bamboo harvesting and sterilization protection, improving the growth quality and economic benefits of bamboo.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUIZHOU ACAD OF FORESTRY SCI
- Filing Date
- 2026-02-27
- Publication Date
- 2026-04-24
AI Technical Summary
Existing bamboo planting cutting devices are difficult to prevent damage to the bamboo branches and trunk when cutting bamboo branches and leaves, and it is also inconvenient to apply lime slurry to the cut area for sterilization and protection, which affects the growth quality and economic benefits of bamboo.
A bamboo planting cutting device was designed, including a cutting handle, a telescopic positioning component, a cutting control component, and a lime slurry coating component. Through electric cutting, telescopic positioning, and automatic clamping, combined with lime slurry coating, it can achieve rapid and damage-free harvesting and sterilization protection of bamboo branches.
It improves the efficiency and quality of bamboo branch harvesting, prevents structural damage to bamboo trunks, ensures the sterilization effect of bamboo branch cuts, and enhances the sustainability and economic benefits of moso bamboo.
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Figure CN121713765B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bamboo branch and leaf harvesting technology, and in particular to a bamboo planting cutting device and its cutting method. Background Technology
[0002] In actual bamboo cultivation, as bamboo grows, in addition to the value of its shoots, its branches and leaves also have medicinal value, which can be harvested to increase economic income. Bamboo branches and leaves are also an important food source for many animals, such as bamboo rats, whose natural diet consists of bamboo branches and leaves. Currently, harvesting bamboo branches and leaves after planting usually involves manual cutting with a long-handled sickle. When manually pulling the sickle downwards to cut the bamboo branches, the resistance is significant, easily causing damage to the attachment points of the bamboo branches and trunk, increasing the wound area, affecting the subsequent growth quality of the bamboo, and making it difficult to provide protection against downward pull. Furthermore, especially at higher cutting points, it is inconvenient to apply lime slurry to the cut area for sterilization and protection. Additionally, traditionally, after cutting bamboo branches with a sickle, the dense foliage makes it difficult to remove the cut bamboo branches. Summary of the Invention
[0003] This disclosure relates to a bamboo planting cutting device and its cutting method, which solves the problems that current bamboo planting cutting devices are not convenient for anti-pull-down protection, nor for applying lime slurry to the cut bamboo branches for sterilization and protection.
[0004] In a first aspect, this disclosure provides a bamboo planting cutting device, specifically including a cutting knife handpiece, on which a telescopic positioning component is installed; the telescopic positioning component is used to prevent bamboo branches from pulling down; a cutting control component is installed on the telescopic positioning component; the cutting control component is used to prune bamboo branches; two bamboo branch positioning components are fixedly installed on the cutting control component; a lime slurry coating component is fixedly installed at the bottom of the telescopic positioning component; the lime slurry coating component is used to apply lime slurry to the pruning cut; the cutting knife handpiece includes: a support rod and a positioning post, the positioning post being fixedly installed inside the support rod; the positioning post is a hexagonal column structure; the end of the positioning post is a beveled structure.
[0005] In at least some embodiments, the cutter handpiece further includes: an extension rod, a sliding sleeve, a compensating tension spring, and a ball sleeve; the extension rod is threaded to the bottom of the support rod; the bottom of the extension rod is threaded; the sliding sleeve is slidably fitted onto the support rod; the positioning pin passes through the sliding sleeve; a compensating tension spring is sleeved inside the support rod, and the compensating tension spring is connected between the sliding sleeve and the support rod; a ball sleeve is fixedly installed at the end of the sliding sleeve, and the end of the positioning pin passes through the ball sleeve; the ball sleeve has a spherical hole.
[0006] In at least some embodiments, the telescopic positioning component includes: a swing ball head, a shear mounting bracket, an indicator light, an electric push rod, and a propulsion slider. The swing ball head is rotatably sleeved on the ball sleeve. The bottom of the swing ball head has a hexagonal hole. The end of the positioning post is inserted into the bottom of the swing ball head. The shear mounting bracket is fixedly mounted on the swing ball head. The indicator light is fixedly mounted on the shear mounting bracket. The positioning post is used to position the swing ball head. The electric push rod is fixedly mounted on the shear mounting bracket. The propulsion slider is fixedly mounted on the output shaft of the electric push rod, and the two sides of the propulsion slider are inclined structures. The propulsion slider is slidably mounted in the shear mounting bracket.
[0007] In at least some embodiments, the cutting control component includes: a cutting blade swing arm, a return spring, and a cutting blade. Two cutting blade swing arms are provided, each rotatably mounted on a shearing mounting frame. The inner sides of the two cutting blade swing arms are inclined surfaces. The inner sides of the two cutting blade swing arms are attached to a push slider. Return springs are fixedly mounted at the ends of the two cutting blade swing arms, and the ends of the two return springs are fixedly mounted on the shearing mounting frame. Cutting blades are fixedly mounted on the two cutting blade swing arms, and the two cutting blades are used to cut bamboo branches.
[0008] In at least some embodiments, the bamboo branch positioning device includes: bamboo branch clamps, with bamboo branch clamps fixedly mounted on the two cutting blades respectively; the inner sides of the two bamboo branch clamps are respectively provided with a rubber coating.
[0009] In at least some embodiments, the bamboo branch positioning component further includes: a clamping needle, wherein the clamping needle is fixedly installed on each of the two cutting blades; the clamping needle is used to pierce the bamboo branch.
[0010] In at least some embodiments, the lime slurry coating component includes: a coating mounting shell and a spacing auxiliary rod, wherein the coating mounting shell is fixedly mounted on a shearing mounting frame; the spacing auxiliary rod is fixedly mounted on the coating mounting shell; the spacing auxiliary rod is used to space the bamboo branch shearing positions; and the coating mounting shell is inclined.
[0011] In at least some embodiments, the lime slurry coating component further includes: a switch fixing plate, a switch spring, and a detection switch; the switch fixing plate is fixedly installed inside the coating mounting housing; the switch spring is provided inside the coating mounting housing; the end of the switch spring is fixedly installed on the switch fixing plate; the detection switch is fixedly installed on the switch fixing plate; and the detection switch is electrically connected to an indicator light.
[0012] In at least some embodiments, the lime slurry coating component further includes: a coating shell and an absorbent sponge block, wherein the coating shell is slidably sleeved on the coating mounting shell; the other end of the switch spring is connected to the coating shell; and the absorbent sponge block is fixedly installed on the inner side of the coating shell.
[0013] A method for planting and cutting moso bamboo:
[0014] 1) When harvesting and cutting bamboo branches, hold the support rod and control the electric push rod to drive the slider to move, squeeze the cutter swing rod, control the two cutting cutters to rotate, cut the bamboo branches, and the two bamboo branch clamps will also close together to clamp the bamboo branches. After removing the bamboo branches, collect them.
[0015] 2) Hold the support rod and apply pressure to the cut surface with the absorbent sponge block, then apply lime slurry to the cut surface of the bamboo branch.
[0016] This invention provides a bamboo planting cutting device and its cutting method, which has the following beneficial effects:
[0017] This invention employs a cutting control component that allows for electric cutting of bamboo branches, making it more labor-saving and faster, and improving bamboo branch harvesting efficiency. Simultaneously, the structure uses a telescopic positioning component to prevent manual pulling or the weight of the support rod from causing the cutting control component to break during cutting. Applying downward force to the bamboo branch can easily lead to splitting at the junction of the bamboo branch and the main stem, extending longitudinally along the bamboo stem to form cracks, causing structural damage to the bamboo stem and directly affecting the quality of bamboo growth. The bamboo branch positioning component allows for automatic clamping of the bamboo branch while cutting, ensuring rapid subsequent harvesting. The clamping needle can pierce the cut branch, improving the adaptability of the bamboo branch clamping pliers.
[0018] Furthermore, the use of lime slurry coating components allows workers to easily apply lime slurry to the cut surfaces of bamboo branches during harvesting, which has a sterilizing effect and ensures the sustainability of bamboo branch harvesting. At the same time, this structure allows workers to easily sterilize the cut surfaces of bamboo branches at higher locations from a lower position, and the light prompts help workers confirm the accurate coating position. The structure is simple to control. Especially in areas with high humidity, it prevents the cut surfaces of bamboo branches from being affected by bacterial growth and other factors that could affect bamboo growth. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0020] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0021] In the attached diagram:
[0022] Figure 1 A schematic diagram of the overall structure of a bamboo planting cutter device according to this application is shown;
[0023] Figure 2 A schematic diagram of the upper structure of a bamboo planting cutter device according to this application is shown;
[0024] Figure 3 A cross-sectional view of the internal structure of a bamboo planting cutter device according to this application is shown;
[0025] Figure 4 A schematic diagram of the overall structure of the cutter handpiece of this application is shown;
[0026] Figure 5 A schematic diagram of the telescopic positioning component structure of this application is shown;
[0027] Figure 6 A cross-sectional view of the telescopic positioning component structure of this application is shown;
[0028] Figure 7 A schematic diagram of the overall structure of the shear control component of this application is shown;
[0029] Figure 8 This application shows Figure 7 Enlarged view of the structure of region B in the middle;
[0030] Figure 9 This application shows Figure 3 Enlarged view of the structure of region C in the middle;
[0031] Figure 10 A schematic diagram of the lime slurry coated component structure of this application is shown.
[0032] List of reference numerals in the attached diagram:
[0033] 1. Cutter handheld component; 101. Support rod; 1011. Positioning post; 102. Extension rod; 103. Sliding sleeve; 104. Compensating tension spring; 105. Ball sleeve; 2. Telescopic positioning component; 201. Swinging ball head; 202. Shearing mounting bracket; 2021. Indicator light; 203. Electric push rod; 204. Push slider; 3. Shearing control component; 301. Cutter swing rod; 3011. Reset tension spring; 302. Cutting cutter; 4. Bamboo branch positioning component; 401. Bamboo branch clamping pliers; 4011. Clamping needle; 5. Lime slurry coating component; 501. Coating mounting shell; 502. Interval auxiliary rod; 503. Switch fixing plate; 5031. Switch spring; 504. Detection switch; 505. Coating shell; 506. Liquid-absorbing sponge block. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the described embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] Example 1: Please refer to Figures 1 to 10 :
[0036] This invention proposes a bamboo planting cutting device, including a cutting knife handpiece 1, on which a telescopic positioning component 2 is installed; the telescopic positioning component 2 is used to prevent bamboo branches from pulling down; a cutting control component 3 is installed on the telescopic positioning component 2; the cutting control component 3 is used to prune bamboo branches; two bamboo branch positioning components 4 are fixedly installed on the cutting control component 3; a lime slurry coating component 5 is fixedly installed at the bottom of the telescopic positioning component 2; the lime slurry coating component 5 is used to apply lime slurry to the pruning cut; the cutting knife handpiece 1 includes: a support rod 101 and a positioning post 1011, the positioning post 1011 is fixedly installed inside the support rod 101; the positioning post 1011 has a hexagonal column structure; the end of the positioning post 1011 has a beveled structure.
[0037] In this embodiment, the cutter handheld component 1 further includes: an extension rod 102, a sliding sleeve 103, a compensating tension spring 104, and a ball sleeve 105. The extension rod 102 is threaded to the bottom of the support rod 101; the bottom of the extension rod 102 is threaded; the sliding sleeve 103 is slidably sleeved on the support rod 101; the positioning pin 1011 passes through the sliding sleeve 103; the compensating tension spring 104 is sleeved inside the support rod 101, and the compensating tension spring 104 is connected between the sliding sleeve 103 and the support rod 101; the ball sleeve 105 is fixedly installed at the end of the sliding sleeve 103, and the end of the positioning pin 1011 passes through the ball sleeve 105; the ball sleeve 105 is provided with a spherical hole; the telescopic positioning component 2 includes: a swing ball head 201, a shearing mounting bracket 202, and an indicator light 2021. The electric push rod 203 and the push slider 204 are connected. The swing ball head 201 is rotatably sleeved on the ball sleeve 105. The bottom of the swing ball head 201 is provided with a hexagonal hole. The end of the positioning post 1011 is inserted into the bottom of the swing ball head 201. A shearing mounting bracket 202 is fixedly installed on the swing ball head 201. An indicator light 2021 is fixedly installed on the shearing mounting bracket 202. The positioning post 1011 is used to position the swing ball head 201. The electric push rod 203 is fixedly installed on the shearing mounting bracket 202. The push slider 204 is fixedly installed on the output shaft of the electric push rod 203, and the two sides of the push slider 204 are inclined structures. The push slider 204 is slidably installed in the shearing mounting bracket 202. The shearing control component 3 includes: a cutter swing rod 301 and a return spring 30. The system includes a cutting blade 302 and two cutting blade swing arms 301, each rotatably mounted on a shearing mounting frame 202. The inner sides of the two cutting blade swing arms 301 are inclined surfaces. The inner sides of the two cutting blade swing arms 301 are attached to a push slider 204. Return springs 3011 are fixedly mounted at the ends of the two cutting blade swing arms 301, and the ends of the two return springs 3011 are also fixedly mounted on the shearing mounting frame 202. Cutting blades 302 are fixedly mounted on the two cutting blade swing arms 301, and the two cutting blades 302 are used to cut bamboo branches. The shearing control component 3 allows for electric cutting of bamboo branches, which is more labor-saving and faster, improving bamboo branch harvesting efficiency. Additionally, this structure uses a telescopic positioning component 2 during bamboo branch cutting. To prevent manual pulling down and breaking of the control component 3 or pulling down and breaking of the control component 3 under the weight of the support rod 101; when cutting bamboo branches, if a downward pulling force is applied to the bamboo branch, it is easy to cause the bamboo branch to split at the point where it attaches to the main stem, that is, at the bamboo node, and to extend longitudinally along the bamboo stem to form a crack, causing structural damage to the bamboo stem and directly affecting the growth quality of the moso bamboo; the sliding sleeve 103 can be slidably fitted onto the support rod 101 for automatic compensation; at the same time, in conjunction with the swing ball head 201, it can be convenient to assist in the rotation and self-adaptation when the bamboo branch is pulled down for harvesting, so as to pull out the bamboo branch in accordance with the growth direction of the bamboo branch, reduce resistance, and reduce the bamboo leaf shedding rate; the structure is simple and improves the quality of bamboo branch harvesting; after cutting the bamboo branch, it is necessary to pull down and remove the cut bamboo branch.If there are other bamboo branches interfering or obstructing below the bamboo branch, when the support rod 101 is manually pulled down, the bamboo branch held by the bamboo branch clamp 401 will be blocked by the surrounding bamboo branches. At this time, the support rod 101 will move down and cause the positioning post 1011 to separate from the swing ball head 201, releasing the positioning restriction. The swing ball head 201 can move autonomously, making it easy for the bamboo branch to be pulled out from the gaps between the surrounding bamboo branches along its own growth direction.
[0038] In this embodiment, the bamboo branch positioning component 4 includes: a bamboo branch clamping pliers 401, with the bamboo branch clamping pliers 401 fixedly installed on each of the two cutting blades 302; the inner sides of the two bamboo branch clamping pliers 401 are respectively provided with a rubber coating; the bamboo branch positioning component 4 also includes: a clamping needle 4011, with the clamping needle 4011 fixedly installed on each of the two cutting blades 302; the clamping needle 4011 is used to pierce the bamboo branch; the bamboo branch positioning component 4 can automatically clamp the bamboo branch while cutting it, ensuring that the subsequent harvesting work can be carried out quickly, the operation is simple, and the harvesting is more efficient. The clamping needle 4011 can pierce the cut branch, maintain the stability of the bamboo branch clamping pliers 401, and at the same time improve the adaptability of the bamboo branch clamping pliers 401 in clamping the bamboo branch, so that bamboo branches of different diameters can be pierced by the clamping needle 4011.
[0039] Example 2, based on Example 1, the lime slurry coating component 5 includes: a coating mounting shell 501 and an interval auxiliary rod 502. The coating mounting shell 501 is fixedly mounted on the shearing mounting frame 202; the interval auxiliary rod 502 is fixedly mounted on the coating mounting shell 501; the interval auxiliary rod 502 is used to interval the bamboo branch shearing positions; the coating mounting shell 501 is inclined; the lime slurry coating component 5 also includes: a switch fixing plate 503, a switch spring 5031, and a detection switch 504. The switch fixing plate 503 is fixedly mounted inside the coating mounting shell 501; the switch spring 5031 is provided inside the coating mounting shell 501; the end of the switch spring 5031 is fixedly mounted on the switch fixing plate 503; the detection switch 504 is fixedly mounted on the switch fixing plate 503; the detection switch 504 is electrically connected to the indicator light 2021; the lime slurry coating component 5 also includes: a coating shell 505 and a liquid-absorbing sponge block 506, the liquid-absorbing sponge block 505... The coating shell 505 is slidably fitted onto the coating mounting shell 501; the other end of the switch spring 5031 is connected to the coating shell 505; an absorbent sponge block 506 is fixedly installed inside the coating shell 505; the use of the lime slurry coating component 5 allows workers to apply lime slurry to the cut surface of bamboo branches during harvesting, which can play a sterilizing role and ensure the sustainability of bamboo branch harvesting. At the same time, this structure allows workers to sterilize the cut surface of bamboo branches at higher locations from lower locations. The light prompts help workers to confirm the accurate coating position, and the structure is easy to control; especially in areas with high humidity, it avoids the growth of bamboo due to bacterial growth on the cut surface of bamboo branches; when harvesting bamboo branches, hold the support rod 101, align the cutting blade 302 with the bamboo branch, and at the same time, place the auxiliary rod 502 against the side of the bamboo stem to keep the cut surface of the bamboo branch with a margin and avoid getting too close to the bamboo stem.
[0040] A method for planting and cutting moso bamboo:
[0041] 1) When harvesting and cutting bamboo branches, hold the support rod 101 and control the electric push rod 203 to drive the push slider 204 to move, squeeze the cutter swing rod 301, control the two cutting cutters 302 to rotate, cut the bamboo branches, and the two bamboo branch clamps 401 will also merge to clamp the bamboo branches. After removing the bamboo branches, collect them.
[0042] 2) Hold the support rod 101 and apply pressure to the cut surface with the liquid-absorbing sponge block 506, and apply lime slurry to the cut surface of the bamboo branch.
[0043] The working principle of this embodiment is as follows: When harvesting bamboo branches, the worker holds the support rod 101, aligns the cutting blade 302 with the target bamboo branch, and simultaneously moves the interval auxiliary rod 502. The bamboo branch is placed against the side of the bamboo stalk to allow sufficient slack at the cut point, preventing the cut from being too close to the stalk. At this time, the electric push rod 203 drives the sliding block 204 to move, squeezing the cutting blade swing rod 301 and controlling the rotation of the two cutting blades 302 to cut the bamboo branch. Simultaneously, the two bamboo branch clamps 401 close together to hold the bamboo branch, with the clamping pins 4011 providing anti-slip protection. During operation, if the worker pulls down the support rod 101, the tension of the compensating spring 104 is relatively low, allowing the support rod 101 to move downwards normally without excessively pulling down the bamboo branch. After cutting the bamboo branch, if other bamboo branches obstruct the view below, manually pulling down the support rod 101 will cause the bamboo branch held by the clamps 401 to be blocked by surrounding bamboo branches, causing the support rod 101 to move downwards as well. The positioning column 1011 moves downward and separates from the swing ball head 201, releasing the positioning. At this time, the swing ball head 201 can move independently. When pulling down the clamped bamboo branch, since the bamboo branch usually grows horizontally, if it is pulled downward horizontally, the resistance is large and the rate of branch and leaf fall is high. The swing ball head 201 can be rotated and adjusted to make it easier to pull the bamboo branch out from between the surrounding bamboo branches along the direction of its own growth. It can be used for harvesting in dense bamboo forests. When applying lime slurry to the cut surface of the bamboo branch, the absorbent sponge block 506 is aligned with the cut surface and pressure is applied to make the lime slurry in the absorbent sponge block 506 squeezed out and fully applied to the cut surface of the bamboo branch. At the same time, when the absorbent sponge block 506 is pressed, it will also drive the coating shell 505 to retract, compressing the switch spring 5031, the squeeze detection switch 504, and the control indicator light 2021 to light up to prompt the staff, which is more intuitive and effective.
[0044] The following points should be noted in this article:
[0045] 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.
[0046] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0047] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A bamboo planting cutting device, comprising a cutting handle (1), wherein a telescopic positioning component (2) is mounted on the cutting handle (1); characterized in that: The telescopic positioning component (2) is used to prevent the bamboo branches from being pulled down; a cutting control component (3) is installed on the telescopic positioning component (2); the cutting control component (3) is used to trim the bamboo branches; Two bamboo branch positioning components (4) are fixedly installed on the cutting control component (3); The telescopic positioning component (2) is fixedly installed with a lime slurry coating component (5) at its bottom; the lime slurry coating component (5) is used to apply lime slurry to the cut surface. The cutter handpiece (1) includes: a support rod (101) and a positioning post (1011), wherein the positioning post (1011) is fixedly installed inside the support rod (101); the positioning post (1011) is a hexagonal column structure; and the end of the positioning post (1011) is a beveled structure. The cutter handpiece (1) further includes: an extension rod (102), a sliding sleeve (103), a compensating tension spring (104), and a ball sleeve (105). The extension rod (102) is threaded to the bottom of the support rod (101). The bottom of the extension rod (102) is threaded. The sliding sleeve (103) is slidably sleeved on the support rod (101). The positioning pin (1011) passes through the sliding sleeve (103). The compensating tension spring (104) is sleeved inside the support rod (101), and the compensating tension spring (104) is connected between the sliding sleeve (103) and the support rod (101). The end of the sliding sleeve (103) is fixedly installed with a ball sleeve (105), and the end of the positioning pin (1011) passes through the ball sleeve (105). The ball sleeve (105) is provided with a spherical hole. The telescopic positioning component (2) includes: a swing ball head (201), a shear mounting bracket (202), an indicator light (2021), an electric push rod (203), and a push slider (204). The swing ball head (201) is rotatably sleeved on a ball sleeve (105). The bottom of the swing ball head (201) is provided with a hexagonal hole. The end of the positioning post (1011) is inserted into the bottom of the swing ball head (201). The shear mounting bracket (202) is fixedly installed on the swing ball head (201). The indicator light (2021) is fixedly installed on the shear mounting bracket (202). The positioning post (1011) is used to position the swing ball head (201). The electric push rod (203) is fixedly installed on the shear mounting bracket (202). The push slider (204) is fixedly installed on the output shaft of the electric push rod (203), and the two sides of the push slider (204) are inclined structures. The push slider (204) is slidably installed in the shear mounting bracket (202). The lime slurry coating component (5) includes: a coating mounting shell (501) and a spacing auxiliary rod (502). The coating mounting shell (501) is fixedly mounted on the shearing mounting frame (202). The spacing auxiliary rod (502) is fixedly mounted on the coating mounting shell (501). The spacing auxiliary rod (502) is used to space the bamboo branch shearing positions. The coating mounting shell (501) is inclined.
2. The bamboo planting and cutting device according to claim 1, characterized in that, The cutting control component (3) includes: a cutting blade swing arm (301), a return spring (3011), and a cutting blade (302). There are two cutting blade swing arms (301), which are rotatably mounted on the shearing mounting frame (202). The inner sides of the two cutting blade swing arms (301) are respectively inclined structures. The inner sides of the two cutting blade swing arms (301) are attached to the push slider (204). The ends of the two cutting blade swing arms (301) are respectively fixedly mounted with return springs (3011), and the ends of the two return springs (3011) are respectively fixedly mounted on the shearing mounting frame (202). The two cutting blades (302) are respectively fixedly mounted on the two cutting blade swing arms (301), and the two cutting blades (302) are used to cut bamboo branches.
3. The bamboo planting and cutting device according to claim 2, characterized in that, The bamboo branch positioning component (4) includes: bamboo branch clamping pliers (401), and bamboo branch clamping pliers (401) are fixedly installed on the two cutting blades (302); the inner sides of the two bamboo branch clamping pliers (401) are respectively provided with rubber coating.
4. The bamboo planting and cutting device according to claim 3, characterized in that, The bamboo branch positioning component (4) further includes a clamping needle (4011), and clamping needles (4011) are fixedly installed on the two cutting blades (302); the clamping needles (4011) are used to pierce the bamboo branch.
5. The bamboo planting and cutting device according to claim 3, characterized in that, The lime slurry coating component (5) further includes: a switch fixing plate (503), a switch spring (5031), and a detection switch (504). The switch fixing plate (503) is fixedly installed inside the coating mounting shell (501). The coating mounting shell (501) is provided with a switch spring (5031). The end of the switch spring (5031) is fixedly installed on the switch fixing plate (503). The detection switch (504) is fixedly installed on the switch fixing plate (503). The detection switch (504) is electrically connected to an indicator light (2021).
6. The bamboo planting and cutting device according to claim 5, characterized in that, The lime slurry coating component (5) further includes: a coating shell (505) and an absorbent sponge block (506), wherein the coating shell (505) is slidably sleeved on the coating mounting shell (501); the other end of the switch spring (5031) is connected to the coating shell (505); and the absorbent sponge block (506) is fixedly installed on the inner side of the coating shell (505).
7. A method for cutting moso bamboo during planting, using the moso bamboo planting cutting device as described in claim 6, characterized in that, The steps include: 1) When harvesting and cutting bamboo branches, hold the support rod (101), control the electric push rod (203) to drive the push slider (204) to move, squeeze the cutter swing rod (301), control the two cutting cutters (302) to rotate, cut the bamboo branches, and the two bamboo branch clamps (401) will also merge to clamp the bamboo branches. After removing the bamboo branches, collect them. 2) Hold the support rod (101), align the liquid-absorbing sponge block (506) with the cut surface and apply pressure to the cut surface of the bamboo branch, and apply lime slurry to the cut surface of the bamboo branch.
Citation Information
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Device for collecting moso bamboo branches and leaves
CN216873964U
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