A high-efficiency bundling device for ornamental bamboo planting
By combining a motor-driven threaded rod and clamping block, the automatic knotting and cleaning of ornamental bamboo is achieved, solving the problems of complex structure and difficult cleaning of existing equipment, and improving binding efficiency and flexibility.
Patent Information
- Application Number
- CN202410199177.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-22
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2044-02-22
AI Technical Summary
Existing binding equipment requires clamping the bamboo when binding it. After the binding tape is wrapped by the winding mechanism, it cannot be automatically knotted. The structure is complex and it is difficult to quickly adjust to adapt to bamboo of different sizes. Furthermore, it cannot collect and clean up residue during adjustment.
A high-efficiency binding device for ornamental bamboo planting was designed. It uses a combination of a motor-driven threaded rod and a clamping block to achieve automatic knotting of the binding straps and clamping of the bamboo. Through the cooperation of an electric cylinder and an adjusting block, it can adapt to different bamboo sizes, and the setting of a spring rod and a cleaning hole can achieve automatic cleaning of residue.
It achieves automatic knotting of the binding straps, improves binding efficiency, adapts to different bamboo sizes, and can automatically clean up residue. It has a simple structure, low cost, and high flexibility of use.
Smart Images

Figure CN117837400B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of binding equipment technology, specifically to a high-efficiency binding equipment for planting ornamental bamboo. Background Technology
[0002] Bamboo originated in China and is abundant in tropical, subtropical, and temperate regions. It is widely cultivated in China, mainly in Sichuan, Chongqing, Zhejiang, and Jiangsu provinces. It is also distributed in some countries in Asia, Africa, and North America. There are many types of bamboo, among which ornamental bamboo is one. When planting ornamental bamboo, it is necessary to tie the bamboo, which requires the use of tying equipment.
[0003] Existing binding equipment requires clamping the bamboo, then wrapping it with binding tape using a winding mechanism, and finally tying a knot. This structure is complex and cannot automatically tie the binding tape after wrapping. When binding bamboo of different sizes, it is inconvenient to make quick adjustments, and it cannot collect and clean up residue or perform vibration cleaning during the adjustment process. Summary of the Invention
[0004] This invention provides a high-efficiency binding device for ornamental bamboo planting, which solves the problems of existing binding devices that require clamping the bamboo, then wrapping the bamboo with binding tape through a winding mechanism, and then tying knots. The structure is complex and cannot automatically tie the binding tape after winding. Furthermore, it is inconvenient to make quick adjustments when binding bamboo of different sizes, and it cannot collect and clean up residues or perform vibration cleaning during the adjustment process.
[0005] The purpose and effectiveness of this invention, a high-efficiency binding device for ornamental bamboo planting, are achieved through the following specific technical means:
[0006] This invention provides a high-efficiency binding device for ornamental bamboo planting, comprising: a workbench; four support legs welded to the bottom surface of the workbench, with one end of each of the four support legs in contact with the ground; a first clamping seat fixed to the top surface of the workbench, with two first clamping blocks slidably connected to the first clamping seat; a motor A fixed to the rear end surface of the first clamping seat, with a threaded rod A mounted on the rotating shaft of the motor A; the front and rear ends of the threaded rod A have opposite thread directions, and the front and rear ends of the threaded rod A are threadedly connected to the two first clamping blocks.
[0007] Preferably, two sliding rods are symmetrically welded to the left end face of the first clamping seat. Both sliding rods are cylindrical rod-shaped structures. A second clamping seat is slidably connected to the two sliding rods. The second clamping seat is also equipped with a first clamping block for clamping bamboo, a motor A, and a threaded rod A. A motor B is fixed to the right end face of the first clamping seat. A threaded rod B is fixed to the rotating shaft of the motor B. The threaded rod B is threadedly connected to the second clamping seat.
[0008] Preferably, two first mounting blocks are welded to the top surface of the workbench. Both first mounting blocks are rectangular block structures. Two guide rods are welded between the two first mounting blocks. A second mounting block is slidably connected to the two guide rods. A motor is fixed on one of the first mounting blocks on the right side. A screw is fixed on the rotating shaft of the motor and is threadedly connected to the second mounting block.
[0009] Preferably, two electric cylinders A are symmetrically fixed to the front end of the second mounting block. The front end of each of the two electric cylinders A is fixed to the mounting base. The mounting base is a concave seat structure, and two cylindrical rods are symmetrically welded on the mounting base.
[0010] Preferably, two adjusting blocks are slidably connected on the mounting base, a motor C is fixed on the top surface of the mounting base, and a threaded rod C is fixed on the rotating shaft of the motor C. The thread directions of the lower end and the upper end of the threaded rod C are opposite, and the lower end and the upper end of the threaded rod C are respectively threadedly connected to the two adjusting blocks.
[0011] Preferably, each adjustment block is fixed with two electric cylinders B. The front ends of the two upper electric cylinders B are welded to a second clamping block, and the front ends of the two lower electric cylinders B are welded to another second clamping block. There are two second clamping blocks in total, and both second clamping blocks are rectangular block structures. Each adjustment block is welded with a stop block. Both stop blocks are rectangular block structures, and the two stop blocks are aligned with the two second clamping blocks.
[0012] Preferably, the top surface of the upper adjustment block is provided with a placement hole, and an iron binding strap is placed in the placement hole. A converging seat is welded to the top surface of the upper adjustment block at the position of the placement hole. The converging seat has a U-shaped structure and the inner side of the converging seat is inclined.
[0013] Preferably, a locking block A is welded to the bottom end face of the upper second clamping block, and a long strip-shaped protrusion is welded to the bottom end face of the locking block A. A locking block B is welded to the top end face of the lower second clamping block, and a long strip-shaped groove is formed on the top end face of the locking block B, which is aligned with the position of the aforementioned protrusion.
[0014] Preferably, a first connecting rod is welded between the two front support legs and a first connecting rod is also welded between the two rear support legs. Two adjusting screws are rotatably connected above each first connecting rod. The two front adjusting screws are threaded to a second connecting rod, and the two rear adjusting screws are threaded to another second connecting rod. The first connecting rods are located below the second connecting rods. A sliding block is slidably connected to each of the two upper second connecting rods, and a support rod for supporting the workbench is threaded to each sliding block. The lower end of each of the four support rods is in contact with the ground. Cleaning holes are linearly arrayed on the top surface of the workbench. The cleaning holes are elongated hole structures, and the linearly arrayed cleaning holes together form the cleaning structure for removing residue from the top surface of the workbench. The cleaning holes are aligned with the second clamping seat. A conveyor plate is welded to each of the four support legs. The conveyor plate is a rectangular plate structure and is located directly below the cleaning holes. The conveyor plate is inclined at an angle of 30 degrees.
[0015] Preferably, two fixing blocks are welded to the right end face of the second clamping seat. Both fixing blocks are rectangular block structures, and a spring rod is welded to the bottom end face of each second clamping seat. The lower ends of the two spring rods are ground, and after grinding, the lower ends of the two spring rods are arc-shaped structures, and the lower ends of the two spring rods are elastically engaged with the cleaning holes. A receiving plate is welded to the first clamping seat. The receiving plate is a rectangular plate structure that passes through the two first clamping blocks, and the top surface of the receiving plate is flush with the lower position of the upper clamping groove of the first clamping block. When placing bamboo, the bamboo can be placed directly on the receiving plate, and the support of the receiving plate ensures that the bamboo is better clamped into the clamping groove on the first clamping block.
[0016] The beneficial effects of the bundling device of the present invention are as follows:
[0017] (1) The high-efficiency binding device for ornamental bamboo planting of the present invention, through the setting of binding components, can achieve the binding strap and bamboo entanglement by the inward convergence of the adjusting block, and automatically complete the fixing of the binding strap by the cooperation of locking block A and locking block B. Compared with the existing device, there is no need to set a separate locking structure to lock and knot the binding strap after binding, which saves equipment costs and improves the binding and fixing efficiency of ornamental bamboo.
[0018] (2) The high-efficiency bundling device for ornamental bamboo planting of the present invention, through the setting of the clamping component, on the one hand, can clamp the bamboo through two first clamping blocks, and can synchronously reverse the adjustment of the two first clamping blocks during clamping, resulting in high clamping efficiency; on the other hand, the rotation of motor B can drive the second clamping seat to move to the right. When the second clamping seat is adjusted to the right, it can adapt to the bundling of bamboo of different lengths. When cleaning the residue on the workbench, it can also be completed by moving the second clamping seat to the right. In general, the rightward movement of the second clamping seat can complete both adaptive adjustment and cleaning of residue on the top surface of the workbench, and the structure is reasonable.
[0019] (3) The high-efficiency binding device for ornamental bamboo planting of the present invention, through the setting of fixed blocks and spring rods, achieves the cleaning of residues on the worktable by moving the second clamping seat to the right. The continuous elastic engagement between the spring rod and the cleaning hole can generate vibration. This vibration can vibrate and slide the debris remaining on the conveyor plate, ensuring the cleaning effect of residues and making it highly practical.
[0020] (4) The high-efficiency bundling device for ornamental bamboo planting of the present invention can support the bamboo by setting the receiving plate. By supporting the bamboo, it is easier for the first clamping block to clamp the bamboo into the slot on the first clamping block, which improves the clamping efficiency of the bamboo and avoids damaging the bamboo.
[0021] (5) The high-efficiency bundling device for ornamental bamboo planting of the present invention, through the setting of the support components, firstly, can complete the horizontal adjustment of the workbench to ensure stability during use; secondly, when moving to a new position, the forklift arm can be fixed through the first connecting rod, the second connecting rod and the support rod to ensure stability during the move; thirdly, when supporting, the position of the support can be adjusted by adjusting the position of the sliding block on the second connecting rod, which is more flexible. Attached Figure Description
[0022] Figure 1 This is an axial view structural schematic diagram of the high-efficiency bundling device for ornamental bamboo planting according to the present invention;
[0023] Figure 2 This is a schematic diagram of the main structure of the high-efficiency bundling device for ornamental bamboo planting of the present invention;
[0024] Figure 3 This is a schematic diagram of the left-side structure of the high-efficiency bundling device for ornamental bamboo planting of the present invention;
[0025] Figure 4 This is an axial view schematic diagram of the clamping structure in the high-efficiency bundling device for ornamental bamboo planting of the present invention;
[0026] Figure 5This is an axial view of the workbench support structure in the high-efficiency bundling device for ornamental bamboo planting of the present invention;
[0027] Figure 6 yes Figure 5 A schematic diagram of the left-side view structure;
[0028] Figure 7 This is an axial view of the binding structure in the high-efficiency binding device for ornamental bamboo planting of the present invention;
[0029] Figure 8 yes Figure 7 A schematic diagram of the left-side view structure;
[0030] Figure 9 This is a schematic diagram of the axial view of the workbench after it has been cut open in the high-efficiency bundling equipment for ornamental bamboo planting of the present invention.
[0031] Figure 10 This is a schematic diagram of the main structure of the fixing block, spring rod and workbench in the high-efficiency bundling device for ornamental bamboo planting of the present invention after partial cross-section.
[0032] List of reference numerals in the attached diagram:
[0033] 1. Workbench; 101. Support leg; 102. Cleaning hole; 103. Conveyor plate;
[0034] 201. First connecting rod; 202. Second connecting rod; 203. Sliding block; 204. Support rod; 205. Adjusting screw;
[0035] 301. First clamping seat; 302. First clamping block; 303. Motor A; 304. Threaded rod A; 305. Sliding rod; 306. Second clamping seat; 307. Motor B; 308. Threaded rod B; 309. Fixing block; 310. Spring rod; 311. Support plate;
[0036] 401. First mounting block; 402. Guide rod; 403. Second mounting block; 404. Electric cylinder A; 405. Mounting base;
[0037] 501. Adjusting block; 502. Motor C; 503. Threaded rod C; 504. Electric cylinder B; 505. Stop block; 506. Second clamping block; 507. Converging seat; 508. Locking block A; 509. Locking block B. Detailed Implementation
[0038] 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.
[0039] Example 1:
[0040] Please refer to Figures 1-10 :
[0041] This invention provides a high-efficiency binding device for ornamental bamboo planting, comprising: a workbench 1; four support legs 101 welded to the bottom surface of the workbench 1, with one end of each of the four support legs 101 in contact with the ground; a first clamping seat 301 fixed to the top surface of the workbench 1, with two first clamping blocks 302 slidably connected to the first clamping seat 301 for clamping the bamboo; a motor A303 fixed to the rear end surface of the first clamping seat 301, with a threaded rod A304 mounted on the rotating shaft of the motor A303; the front and rear ends of the threaded rod A304 have opposite thread directions, and the front and rear ends of the threaded rod A304 are threadedly connected to the two first clamping blocks 302.
[0042] The first clamping seat 301 has two sliding rods 305 symmetrically welded to its left end. Both sliding rods 305 are cylindrical rod-shaped structures. A second clamping seat 306 is slidably connected to the two sliding rods 305. The second clamping seat 306 is also equipped with a first clamping block 302 for clamping bamboo, a motor A303, and a threaded rod A304. A motor B307 is fixed to the right end of the first clamping seat 301. A threaded rod B308 is fixed to the rotating shaft of the motor B307 and is threadedly connected to the second clamping seat 306. When clamping, the bamboo is first placed between the two first clamping blocks 302. The motor A303 is controlled to rotate. When the motor A303 rotates, it can drive the threaded rod A304 to rotate. Under the drive of the threaded rod A304, the two first clamping blocks 302 can move inward synchronously. The bamboo can be clamped and fixed by the two first clamping blocks 302.
[0043] Two first mounting blocks 401 are welded to the top surface of the workbench 1. Both first mounting blocks 401 are rectangular block structures. Two guide rods 402 are welded between the two first mounting blocks 401. A second mounting block 403 is slidably connected to the two guide rods 402. A motor is fixed on one of the first mounting blocks 401 on the right side. A screw is fixed on the rotating shaft of the motor. The screw is threadedly connected to the second mounting block 403.
[0044] Among them, two electric cylinders A404 are symmetrically fixed on the front end of the second mounting block 403. The front end of each of the two electric cylinders A404 is fixed to the mounting base 405. The mounting base 405 is a concave seat structure, and two cylindrical rods are symmetrically welded on the mounting base 405.
[0045] The mounting base 405 has two adjusting blocks 501 slidably connected to it. A motor C502 is fixed on the top surface of the mounting base 405. A threaded rod C503 is fixed on the rotating shaft of the motor C502. The thread directions of the lower end and the upper end of the threaded rod C503 are opposite. The lower end and the upper end of the threaded rod C503 are respectively threaded to the two adjusting blocks 501.
[0046] Each adjusting block 501 is fixed with two electric cylinders B504. The front end of the two upper electric cylinders B504 is welded to a second clamping block 506, and the front end of the two lower electric cylinders B504 is welded to another second clamping block 506. There are two second clamping blocks 506 in total, and both second clamping blocks 506 are rectangular block structures. Each adjusting block 501 is welded with a stop block 505. Both stop blocks 505 are rectangular block structures, and the two stop blocks 505 are aligned with the two second clamping blocks 506.
[0047] Among them, a locking block A508 is welded to the bottom end face of the upper second clamping block 506, and a long strip-shaped protrusion is welded to the bottom end face of the locking block A508. A locking block B509 is welded to the top end face of the lower second clamping block 506, and a long strip-shaped groove is formed on the top end face of the locking block B509, which is aligned with the aforementioned protrusion. After the bamboo is clamped, the two electric cylinders B504 are extended. When the two electric cylinders B504 extend, they can drive the two second clamping blocks 506 to move forward. When the two second clamping blocks 506 move forward, the second The clamping block 506 and the stop block 505 can clamp the strap. After the strap is clamped, the two electric cylinders A404 are extended. When the electric cylinders A404 extend, they can drive the strap forward. When the strap comes into contact with the bamboo, the motor C502 is rotated synchronously. When the motor C502 rotates, it can drive the two adjusting blocks 501 to move downward. When the two adjusting blocks 501 move downward, the strap completes the wrapping around the bamboo. Finally, the strap is locked by the pressure of the protrusions and grooves on the locking block A508 and locking block B509, and the binding is completed.
[0048] A first connecting rod 201 is welded between the two front support legs 101, and a first connecting rod 201 is also welded between the two rear support legs 101. Two adjusting screws 205 are rotatably connected above each first connecting rod 201. The two front adjusting screws 205 are threaded to a second connecting rod 202, and the two rear adjusting screws 205 are threaded to another second connecting rod 202. The first connecting rod 201 is located below the second connecting rod 202.
[0049] Each of the two upper second connecting rods 202 is slidably connected to a sliding block 203, and each sliding block 203 is threadedly connected to a support rod 204 for supporting the workbench 1. The lower end of each of the four support rods 204 is in contact with the ground. When supporting, the horizontal support of the device can be achieved by rotating the support rods 204. When it is necessary to adjust the two front support rods 204 at the same time, the two adjusting screws 205 can be rotated directly to achieve synchronous adjustment of the two front support rods 204.
[0050] The top surface of the workbench 1 has cleaning holes 102 arranged in a linear array. The cleaning holes 102 are elongated hole structures. The linear array of cleaning holes 102 together form the cleaning structure for the residue on the top surface of the workbench 1. The cleaning holes 102 are aligned with the second clamping seat 306. A conveying plate 103 is welded to the four support legs 101. The conveying plate 103 is a rectangular plate structure. The conveying plate 103 is located directly below the cleaning holes 102. The conveying plate 103 is inclined at an angle of 30 degrees. When it is necessary to clean the residue on the top of the workbench 1, the residue can be manually collected to the cleaning holes 102 for cleaning. Alternatively, the motor B307 can be controlled to rotate. When the motor B307 rotates, it can drive the threaded rod B308 to rotate. Driven by the threaded rod B308, the second clamping seat 306 moves to the right. When the second clamping seat 306 moves to the right, it can automatically collect the residue to the cleaning holes 102 for cleaning.
[0051] The second clamping seat 306 has two fixing blocks 309 welded to its right end face. Both fixing blocks 309 are rectangular block structures. Each second clamping seat 306 has a spring rod 310 welded to its bottom end face. The lower end of both spring rods 310 is polished and has an arc-shaped structure. The lower end of both spring rods 310 is elastically engaged with the cleaning hole 102. When the second clamping seat 306 moves to the right, the spring rods 310 and the cleaning hole 102 are in a continuous elastic engagement state. When the two are in continuous elastic engagement, the worktable 1 can vibrate. The vibration on the worktable 1 can be transmitted to the conveyor plate 103, at which time the debris remaining on the conveyor plate 103 can be cleaned.
[0052] The first clamping base 301 is welded with a support plate 311, which is a rectangular plate structure. The support plate 311 passes through the two first clamping blocks 302, and the top surface of the support plate 311 is flush with the lower position of the upper clamping groove of the first clamping block 302. When placing bamboo, the bamboo can be placed directly on the support plate 311. With the support of the support plate 311, the bamboo can be better clamped into the clamping groove on the first clamping block 302.
[0053] Example 2:
[0054] Based on Embodiment 1, it also includes: a converging seat 507, with a placement hole on the top surface of an upper adjustment block 501, where an iron binding strap is placed. A converging seat 507 is welded to the top surface of the upper adjustment block 501 at the placement hole position. The converging seat 507 has a U-shaped structure and the inner side of the converging seat 507 is inclined. When placing the binding strap, it will be more convenient and faster under the action of the converging seat 507.
[0055] The working process and usage of the high-efficiency binding device for ornamental bamboo planting of this invention are as follows: During binding, the bamboo is first placed between two first clamping blocks 302. When placing the bamboo, it can be directly placed on the receiving plate 311. The receiving plate 311 supports the bamboo, ensuring it is better clamped into the clamping grooves on the first clamping blocks 302. The motor A303 is controlled to rotate. When the motor A303 rotates, it drives the threaded rod A304 to rotate. Driven by the threaded rod A304, the two first clamping blocks 302 move synchronously inward, thus clamping and fixing the bamboo. After the bamboo is clamped, the two electric cylinders B504 are controlled to extend... When the two electric cylinders B504 extend, they drive the two second clamping blocks 506 to move forward. As the two second clamping blocks 506 move forward, they clamp the strap through the stop block 505. After the strap is clamped, the two electric cylinders A404 are extended. When the electric cylinders A404 extend, they drive the strap forward. When the strap contacts the bamboo, the motor C502 is simultaneously rotated. When the motor C502 rotates, it simultaneously drives the two adjusting blocks 501 to move downward. When the two adjusting blocks 501 move downward, the strap completes its wrapping around the bamboo. Finally, the protrusions and grooves on the locking blocks A508 and B509 secure the strap. The straps can be locked under pressure, thus completing the binding. When it is necessary to clean the residue at the top of the workbench 1, the residue can be manually collected into the cleaning hole 102 for cleaning. Alternatively, the motor B307 can be controlled to rotate. When the motor B307 rotates, it drives the threaded rod B308 to rotate. Driven by the threaded rod B308, the second clamping seat 306 moves to the right. When the second clamping seat 306 moves to the right, it automatically collects the residue into the cleaning hole 102 for cleaning. When the second clamping seat 306 moves to the right, the spring rod 310 and the cleaning hole 102 are in a continuous elastic engagement state. This continuous elastic engagement causes the workbench 1 to vibrate, and the vibration on the workbench 1 can be transmitted... When the device is moved to the conveyor plate 103, any remaining debris can be cleaned off. During relocation, the forklift arm is inserted between the first connecting rod 201 and the second connecting rod 202. Then, the two sliding blocks 203 are aligned with the two forklift arms. The support rod 204 is rotated until its lower end is pressed against the forklift arm. This completes the fixing of the device to the forklift arm. Raising the forklift arm allows for relocation of the device. For support, the device can be horizontally supported by rotating the support rod 204. When both front support rods 204 need to be adjusted simultaneously, simply rotate the two adjusting screws 205 to achieve synchronous adjustment of the two front support rods 204.
Claims
1. A high-efficiency binding device for ornamental bamboo planting, characterized in that, include: Workbench (1); The bottom end of the workbench (1) is welded with four support legs (101), and the lower end of each of the four support legs (101) is in contact with the ground; The top end of the workbench (1) is fixed with a first clamping seat (301), and two first clamping blocks (302) are slidably connected on the first clamping seat (301); A motor A (303) is fixed on the rear end of the first clamping seat (301), and a threaded rod A (304) is installed on the rotating shaft of the motor A (303); The front end and the rear end of the threaded rod A (304) have opposite thread directions, and the front end and the rear end of the threaded rod A (304) are threadedly connected to the two first clamping blocks (302); Two sliding rods (305) are symmetrically welded to the left end of the first clamping seat (301). Both sliding rods (305) are cylindrical rod-shaped structures. A second clamping seat (306) is slidably connected to the two sliding rods (305). A first clamping block (302), a motor A (303), and a threaded rod A (304) for clamping bamboo are also installed on the second clamping seat (306). A motor B (307) is fixed to the right end of the first clamping seat (301). A threaded rod B (308) is fixed to the rotating shaft of the motor B (307). The threaded rod B (308) is threadedly connected to the second clamping seat (306). A first connecting rod (201) is welded between the two front support legs (101), and a first connecting rod (201) is also welded between the two rear support legs (101). Two adjusting screws (205) are rotatably connected above each first connecting rod (201). The two front adjusting screws (205) are threadedly connected to a second connecting rod (202), and the two rear adjusting screws (205) are threadedly connected to another second connecting rod (202). The first connecting rods (201) are located below the second connecting rods (202). A sliding block (203) is slidably connected to each of the two upper second connecting rods (202), and a screw is threaded onto each sliding block (203) for... The workbench (1) is supported by support rods (204), and the lower end of each of the four support rods (204) is in contact with the ground. The top surface of the workbench (1) is provided with cleaning holes (102) in a linear array. The cleaning holes (102) are long and narrow. The cleaning holes (102) in the linear array together form the cleaning structure for the residue on the top surface of the workbench (1). The cleaning holes (102) are aligned with the second clamping seat (306). A conveying plate (103) is welded on the four support legs (101). The conveying plate (103) is a rectangular plate structure. The conveying plate (103) is located directly below the cleaning holes (102). The conveying plate (103) is inclined. The inclination angle of the conveying plate (103) is 30 degrees. Two fixing blocks (309) are welded to the right end face of the second clamping seat (306). Both fixing blocks (309) are rectangular block structures. A spring rod (310) is welded to the bottom end face of each second clamping seat (306). The lower end of the two spring rods (310) is polished. After polishing, the lower end of the two spring rods (310) is an arc structure. The lower end of the two spring rods (310) is elastically engaged with the cleaning hole (102). A receiving plate (311) is welded to the first clamping seat (301). The receiving plate (311) is a rectangular plate structure. The receiving plate (311) passes through the two first clamping blocks (302). The top surface of the receiving plate (311) is flush with the lower position of the upper clamping groove of the first clamping block (302).
2. The high-efficiency binding device for ornamental bamboo planting as described in claim 1, characterized in that: The top surface of the workbench (1) is welded with two first mounting blocks (401). Both first mounting blocks (401) are rectangular block structures. Two guide rods (402) are welded between the two first mounting blocks (401). A second mounting block (403) is slidably connected to the two guide rods (402). A motor is fixed on one of the first mounting blocks (401) on the right side. A screw is fixed on the rotating shaft of the motor. The screw is threadedly connected to the second mounting block (403).
3. The high-efficiency binding device for ornamental bamboo planting as described in claim 2, characterized in that: The front end of the second mounting block (403) is symmetrically fixed with two electric cylinders A (404). The front end of each of the two electric cylinders A (404) is fixed to the mounting seat (405). The mounting seat (405) is a concave seat structure, and two cylindrical rods are symmetrically welded on the mounting seat (405).
4. The high-efficiency binding device for ornamental bamboo planting as described in claim 3, characterized in that: Two adjusting blocks (501) are slidably connected on the mounting base (405). A motor C (502) is fixed on the top surface of the mounting base (405). A threaded rod C (503) is fixed on the rotating shaft of the motor C (502). The thread directions of the lower end and the upper end of the threaded rod C (503) are opposite. The lower end and the upper end of the threaded rod C (503) are respectively threadedly connected to the two adjusting blocks (501).
5. The high-efficiency binding device for ornamental bamboo planting as described in claim 4, characterized in that: Each adjustment block (501) is fixed with two electric cylinders B (504). The front end of the two upper electric cylinders B (504) is welded to a second clamping block (506), and the front end of the two lower electric cylinders B (504) is welded to another second clamping block (506). There are two second clamping blocks (506), and both second clamping blocks (506) are rectangular block structures. Each adjustment block (501) is welded with a stop block (505). Both stop blocks (505) are rectangular block structures, and the two stop blocks (505) are aligned with the two second clamping blocks (506).
6. The high-efficiency binding device for ornamental bamboo planting as described in claim 5, characterized in that: An adjustment block (501) is provided with a placement hole on its top surface. An iron binding strap is placed in the placement hole. A converging seat (507) is welded to the top surface of the adjustment block (501) at the placement hole. The converging seat (507) has a U-shaped structure and the inner side of the converging seat (507) is inclined.
7. The high-efficiency binding device for ornamental bamboo planting as described in claim 5, characterized in that: A locking block A (508) is welded to the bottom end face of the upper second clamping block (506), and a long strip protrusion is welded to the bottom end face of the locking block A (508). A locking block B (509) is welded to the top end face of the lower second clamping block (506), and a long strip groove is opened on the top end face of the locking block B (509), which is aligned with the position of the aforementioned protrusion.
Citation Information
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Bamboo cane bundling device
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