Kidney bean planting insertion rod structure
By designing a bean support structure that includes a ground cone, a threaded rod, and an adjustment component, the problem that existing support structures cannot adapt to diverse environments is solved, enabling flexible adjustment of the bean plant's growth direction and healthy growth.
Patent Information
- Application Number
- CN202520556510.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-27
AI Technical Summary
The existing support structure for kidney beans cannot adapt to diverse planting environments, leading to problems such as low photosynthetic efficiency, plant lodging, and breakage.
A rod structure comprising a ground cone, a threaded rod, a nut, a connecting sleeve, an outer ring, and an adjustment assembly was designed. The angle of the connecting rod is adjusted by threaded connection and rope, and a torsion spring assembly provides cushioning to adapt to different growth stages and environmental conditions.
It enables bean plants to flexibly adjust their growth direction in complex environments, improves photosynthetic efficiency, prevents lodging and breakage, optimizes planting space utilization, and ensures healthy plant growth.
Smart Images

Figure CN223899868U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to kidney bean planting insertion rod structure field, specifically is a kind of kidney bean planting insertion rod structure. BACKGROUND
[0002] Kidney bean as a kind of widely planted crops, occupies important position in agricultural production. Its growth process needs effective support structure to assist, to ensure that plant normal development and realize good productivity.
[0003] The existing kidney bean support structure is mostly adopted straight rod support, which makes kidney bean plant only climb growth along specific, relatively single direction when growing. However, planting environment in different regions is different, including light angle, wind direction, topographic feature and other factors are different.
[0004] Simple support structure cannot adapt to these diversified environmental conditions, greatly limit the adaptability of kidney bean plant to environment, so that in the area of uneven light distribution, due to the limitation of support structure, kidney bean cannot fully adjust growth direction to obtain sufficient light, leading to photosynthesis efficiency reduction, affect plant nutrition accumulation and fruit development, and in the face of wind force of different wind direction, kidney bean plant of single growth direction is prone to lodging, breakage and other conditions due to uneven stress, seriously affect growth situation. SUMMARY
[0005] The main technical problem to be solved by the utility model is to provide a kidney bean planting insertion rod structure with reasonable structure design, convenient operation, which can flexibly and accurately adjust the growth direction of kidney bean in all directions according to different planting environmental conditions, to meet the growth needs of kidney bean plant under complex and changeable environment.
[0006] To solve the above technical problems, the utility model provides the following technical scheme:
[0007] A kind of kidney bean planting insertion rod structure, including ground cone, the top of ground cone is integrally connected with threaded insertion rod, threaded insertion rod is threadedly connected with nut, threaded insertion rod and located above nut slidingly covers connection sleeve, connection sleeve is rotatably connected with nut, outer side wall of connection sleeve is fixedly covered with outer ring, two connecting rods are hingedly connected on outer ring by torsional spring assembly, threaded insertion rod top is provided with adjusting assembly for adjusting the opening angle between two connecting rods.
[0008] The following is the further optimization of the utility model to the above technical scheme:
[0009] The adjusting assembly includes the shell fixedly installed on the top of threaded insertion rod, two winding rollers are symmetrically arranged in the shell, both ends of each winding roller are rotatably penetrated through the shell and extend to its outside, and a rope is wound around each winding roller.
[0010] Further optimization: the connecting rod is provided with a groove at one end away from the outer ring, and a rotating shaft is rotatably connected in each groove.
[0011] Further optimization: a rotating handle is fixedly sleeved on the outer side wall of one end of each winding roller.
[0012] Further optimization: an insertion hole is formed in the end of each winding roller close to the rotating handle, the insertion hole is square in cross section, a fixing rod is clamped in the insertion hole, and a locking rod is fixedly connected between the two fixing rods.
[0013] Further optimization: a push rod is fixedly connected to the outer side wall of the nut.
[0014] Further optimization: a plurality of downwardly inclined ground spikes are fixedly arranged on the outer side wall close to the bottom end of the ground cone, and the ground spikes are arranged at intervals around the circumference of the ground cone.
[0015] By adopting the above technical scheme, the adjusting assembly is arranged, so that the opening angle between the two connecting rods can be accurately adjusted by rotating the winding roller according to the distribution and growth trend of the kidney bean plants.
[0016] In the utility model, the connecting sleeve is rotatably connected with the nut and can slide on the threaded insertion rod, the height of the connecting sleeve, the outer ring and the connecting rod can be flexibly adjusted by rotating the nut, so that the needs of the kidney bean plants at different growth stages can be met, such as lower support at the seedling stage and higher support at the vine stretching stage, and the growth space and light conditions of the plants are optimized.
[0017] In the utility model, the outer ring and the connecting rod are hingedly connected through the torsion spring assembly, so that when the kidney bean plants exert pressure on the connecting rod, the torsion spring assembly provides buffering to avoid damage to the plants caused by rigid connection and protect the healthy growth of the kidney bean plants.
[0018] By adopting the above technical scheme, the utility model has reasonable structure and convenient operation, can flexibly and accurately adjust the growth direction of the kidney bean plants in all directions according to different planting environment conditions, and meets the growth needs of the kidney bean plants in complex and changeable environment.
[0019] The utility model will be further described below in combination with the drawings and examples. DRAWINGS
[0020] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced below, and obviously, the drawings in the following description can be used to obtain other drawings without creative labor for those skilled in the art.
[0021] Figure 1 It is the whole structure schematic view of the utility model embodiment;
[0022] Figure 2 It is the front view of the utility model embodiment;
[0023] Figure 3 It is the section view of the outer ring in the utility model embodiment;
[0024] Figure 4 It is the structure schematic view of the adjusting assembly in the utility model embodiment.
[0025] In the drawing: 1-ground cone;2-threaded rod;3-nut;4-connection sleeve;5-outer ring;6-torsion spring assembly;61-mounting groove;62-hinge shaft;63-torsion spring;7-connection rod;8-adjusting assembly;81-outer shell;82-rolling roller;83-rope;84-groove;85-rotation shaft;86-rotation handle;87-jack;88-fixed rod;89-locking rod;9-limit ring groove;10-limit block;11-push rod;12-ground thorn. DETAILED DESCRIPTION
[0026] The technical scheme in the utility model embodiments will be described clearly and completely below with reference to the drawings in the utility model embodiments. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0027] As Figures 1-4 shown, a kidney bean planting rod structure, including ground cone 1, the top of ground cone 1 is integrally connected with threaded rod 2, threaded rod 2 is threadedly connected with nut 3, threaded rod 2 and located above nut 3 slidingly sleeve is provided with connection sleeve 4, connection sleeve 4 is rotatably connected with nut 3, the outer side wall of connection sleeve 4 is fixedly sleeve provided with outer ring 5, outer ring 5 is hingedly provided with two connection rods 7 through torsion spring assembly 6, threaded rod 2 top is provided with adjusting assembly 8 for adjusting the opening angle between two connection rods 7.
[0028] In this way, first, ground cone 1 is integrally connected with threaded rod 2, which facilitates insertion into the soil, and the grower can easily place the rod in the predetermined position, saving labor and time costs.
[0029] Secondly, the connecting sleeve 4 is rotationally connected with the nut 3 and can slide on the threaded rod 2, and the height of the connecting sleeve 4, the outer ring 5 and the connecting rod 7 can be flexibly adjusted by rotating the nut 3, so as to meet the needs of the kidney beans at different growth stages, such as lower support at the seedling stage and higher support at the vine stretching stage, and to optimize the plant growth space and light conditions.
[0030] Thirdly, the adjusting assembly 8 can control the ropes 83 by rotating the winding rollers 82 according to the distribution and growth trend of the kidney bean plants, so as to accurately adjust the opening angle between the two connecting rods 7.
[0031] Finally, the outer ring 5 and the connecting rod 7 are hingedly connected through the torsional spring assembly 6, and when the kidney beans grow and exert pressure on the connecting rod 7, the torsional spring assembly 6 provides buffering to avoid damage to the plants caused by rigid connection, and protects the healthy growth of the kidney beans.
[0032] The adjusting assembly 8 comprises an outer shell 81 fixedly installed at the top of the threaded rod 2, and two winding rollers 82 are symmetrically arranged in the outer shell 81, both ends of each winding roller 82 rotationally penetrate through the outer shell 81 and extend out of it, and a rope 83 is wound around each winding roller 82.
[0033] In this way, firstly, the two winding rollers 82 are symmetrically arranged in the outer shell 81, and the connecting rods 7 are connected through the ropes 83, so that when the plants are distributed sparsely in the planting area, the winding rollers 82 can be rotated to lengthen the ropes 83, so that the opening angle of the connecting rods 7 is increased, the support range is expanded, a larger space is effectively covered, and land resources are not wasted; and at the plant-dense place, the ropes 83 are retracted to reduce the angle of the connecting rods 7, so that multiple kidney bean plants are supported, the planting space layout is optimized, and the limited planting space is most reasonably utilized.
[0034] Secondly, the grower can individually rotate one of the winding rollers 82 according to actual needs, so as to change the angle of the unilateral connecting rod 7, and this flexible adjustment method is extremely useful in dealing with some special situations, such as the abnormal growth direction of some kidney bean plants due to factors such as terrain and light, and the corresponding side connecting rod 7 can be individually adjusted to provide targeted support for these plants and meet the individualized growth needs of different plants.
[0035] Thirdly, the winding rollers 82 are installed in the outer shell 81 at the top of the threaded rod 2, so that the entire adjusting assembly 8 is compactly arranged, the outer shell 81 not only protects the winding rollers 82 but also enhances the stability of the entire structure, so that in the face of adverse weather such as strong wind, the compact and stable structure can reduce shaking, ensure the support effect of the connecting rod 7 on the kidney bean plants, and ensure that the threaded rod can work reliably and continuously in complex environments.
[0036] Finally, the winding roller 82 extends through the shell 81 at both ends to the outside, and the grower can directly observe the rotation of the winding roller 82 and the winding and unwinding state of the rope 83. The visual design makes the operation process easier to control. When adjusting the angle, the rotation amplitude can be accurately adjusted according to the actual observation of the length change of the rope 83, avoiding over-adjustment or insufficient adjustment, and improving the accuracy and efficiency of the operation.
[0037] The connecting rod 7 is provided with a groove 84 at one end away from the outer ring 5, and a rotating shaft 85 is rotatably connected in each groove 84. Each rotating shaft 85 is fixedly connected with the corresponding rope 83.
[0038] In this way, first, the connecting rod 7 is provided with a groove 84 at one end away from the outer ring 5, and a rotating shaft 85 is rotatably connected in the groove 84. The rotating shaft 85 is fixedly connected with the rope 83, forming a stable connection structure. When the rope 83 is wound and unwound to drive the connecting rod 7 to rotate, the rotating shaft 85 can ensure that the force is uniformly applied to the connecting rod 7, avoiding damage or deformation of the connecting rod 7 due to single-point force, and ensuring the stability of the insertion rod structure during adjustment, providing continuous and reliable support for the kidney bean plant.
[0039] Secondly, the rotating connection between the rotating shaft 85 and the groove 84 allows the connecting rod 7 to have greater rotational freedom, so that when the adjusting assembly 8 is working, the rope 83 pulls the rotating shaft 85, allowing the connecting rod 7 to flexibly rotate around the rotating shaft 85, thereby more accurately adjusting the expansion angle. This flexible angle adjustment capability can better adapt to the morphological changes of kidney bean plants at different growth stages and the complex and variable planting environment, creating suitable conditions for kidney bean growth.
[0040] Thirdly, during the growth of kidney beans, the plant may exert external force on the connecting rod 7 due to wind blowing or self-growth swinging. Due to the rotating connection between the rotating shaft 85 and the groove 84, combined with the torsional spring assembly 6 between the outer ring 5 and the connecting rod 7, these external forces can be effectively buffered. When the plant pushes the connecting rod 7, the rotating shaft 85 can rotate in the groove 84, and the torsional spring assembly 6 can elastically deform, avoiding hard pulling or collision of the connecting rod 7 on the plant, maximizing the protection of the plant from damage and promoting the healthy growth of kidney beans.
[0041] The outer side wall of one end of each winding roller 82 is fixedly provided with a rotating handle 86.
[0042] In this way, first, the rotating handle 86 provides a convenient gripping and force application site for the grower. Compared to directly rotating the narrow end of the winding roller 82, the rotating handle 86 has a larger area and is more comfortable to grip, allowing the grower to more easily rotate the winding roller 82.
[0043] Secondly, the grower can accurately control the rotation amount of the winding roller 82 through the fine perception of the rotation amplitude of the rotating handle 86, thereby accurately adjusting the length of the rope 83, and finally achieving accurate adjustment of the unfolding angle of the connecting rod 7, so that when facing complex plant distribution situations, such as irregular growth direction of part of the kidney bean plants, the rotating handle 86 can enable the grower to realize such fine operation and meet the individualized growth needs of different plants.
[0044] Thirdly, in the outdoor planting environment, there may be situations such as soil moisture and hands covered with mud, and the rotating handle 86 is easier to operate than directly rotating the winding roller 82, so that the grower can stably hold the rotating handle 86 for adjustment even in unfavorable operating conditions.
[0045] The rotating handle 86 comprises a rotating ring concentrically arranged outside the winding roller 82, and at least two transmission rods are fixedly arranged between the rotating ring and the winding roller 82, each transmission rod being arranged along the radial direction of the rotating ring.
[0046] In this way, first, the rotating ring is concentrically arranged outside the winding roller 82, which expands the operation area, so that when the grower holds the rotating ring to rotate, the contact area is larger and the hand feeling is more comfortable. The multiple transmission rods arranged along the radial direction of the rotating ring fixedly connect the rotating ring and the winding roller 82, so that the force can be uniformly transmitted to the winding roller 82 during the rotation of the rotating ring, avoiding the shaking or jamming phenomenon caused by uneven local force, making the operation process more stable and smooth, and further improving the operation experience.
[0047] Secondly, the transmission rods are arranged along the radial direction, like reinforced spokes, which greatly enhances the connection strength between the rotating ring and the winding roller 82. In the case of frequent rotation operation and bearing a large external force (such as a large torsion force generated by the resistance of the rope 83 during adjustment), this structure can effectively prevent the rotating ring and the winding roller 82 from loosening, deforming or separating, ensuring the stability and reliability of the rotating handle 86 during long-term use, and prolonging the service life of the entire insertion rod structure.
[0048] Thirdly, the radial arrangement of the transmission rods makes the rotating ring and the winding roller 82 form a stable whole, so that when the grower rotates the rotating ring, the rotation angle of the winding roller 82 can be more accurately controlled. Since the force is transmitted more directly and uniformly, the perception of the rotation amplitude by the hand can be more accurately fed back to the rotation of the winding roller 82, thereby achieving accurate adjustment of the length of the rope 83 and the unfolding angle of the connecting rod 7, and meeting the strict requirements for adjustment accuracy in different planting scenarios.
[0049] The outer side wall of the rotating ring is sleeved with an elastic anti-skid sleeve (not shown in the figure).
[0050] In this way, firstly, the surface of the elastic anti-skid sleeve has special texture or material, which can effectively increase the friction, thereby avoiding the slipping of the grower when rotating the rotating ring due to the wet and slippery hands, reducing the risk of injury caused by operation failure, and ensuring the operation safety.
[0051] Secondly, the elastic anti-skid sleeve is soft and elastic, fits the curve of the hand, buffers the friction and pressure between the hand and the rotating ring, and is not easy to be tired after a long time of operation, thereby improving the operation comfort and efficiency.
[0052] Thirdly, the elastic anti-skid sleeve can reduce the friction damage of the hand to the rotating ring, prolong the service life of the rotating ring, and reduce the replacement cost.
[0053] In the embodiment, the elastic anti-skid sleeve is made of rubber material.
[0054] Each winding roller 82 is provided with a insertion hole 87 near the end of the rotating handle 86, the cross section of the insertion hole 87 is square, a fixing rod 88 is clamped in the insertion hole 87, and a locking rod 89 is fixedly connected between the two fixing rods 88.
[0055] In this way, firstly, when the position of the winding roller 82 is adjusted by the rotating handle 86, and the unfolding angle of the connecting rod 7 is determined, the fixing rod 88 is inserted into the insertion hole 87 at the end of the winding roller 82, and then the two fixing rods 88 are connected by the locking rod 89, so that the two winding rollers 82 are fixed firmly, thereby forming a stable locking structure, preventing the winding roller 82 from rotating due to external force (such as wind blowing, accidental touching of the grower, etc.), ensuring that the winding and unwinding state of the rope 83 remains unchanged, so that the angle of the connecting rod 7 is always stable, providing continuous and reliable support angle for the kidney bean plants, and ensuring that the normal growth of the kidney beans is not affected by the change of the support structure.
[0056] Secondly, when the angle needs to be adjusted, the grower only needs to pull out the fixing rod 88, and then rotate the rotating handle 86 to adjust the winding roller 82; after the adjustment is completed, the fixing rod 88 is inserted into the insertion hole 87 and connected, so that the angle locking can be quickly completed, and the process does not require complex tools and professional skills, thereby greatly improving the adjustment efficiency, and saving a lot of time and labor cost when adjusting the angles of many insertion rods in large-area planting.
[0057] The top of the nut 3 is provided with a limiting ring groove 9 with L-shaped cross section, a limiting block 10 with L-shaped cross section is slidably connected in the limiting ring groove 9, and the top of the limiting block 10 penetrates out of the limiting ring groove 9 and is fixedly connected with the bottom of the connecting sleeve 4.
[0058] In this way, the connecting sleeve 4 and the nut 3 are tightly and stably connected, and when the nut 3 is rotated to adjust the height of the insertion rod, the connecting sleeve 4 can stably move up and down following the rotation of the nut 3, avoiding deviation, shaking or disconnection, and ensuring the stability of the entire insertion rod structure during the height adjustment process, thereby providing a reliable support for the kidney bean plants.
[0059] The outer side wall of the nut 3 is fixedly connected with a push rod 11.
[0060] In this way, the push rod 11 provides a larger force point for the grower, and compared with directly rotating the nut 3, when the push rod 11 is held and rotated, the force arm is increased, and according to the principle of lever, it is more labor-saving when tightening or loosening the nut 3, so that the grower can easily operate during the installation or adjustment of the height of the insertion rod, and especially in the case of frequent operation of the nut 3, hand fatigue can be effectively reduced and operation efficiency can be improved.
[0061] The outer side wall of the push rod 11 is also fixedly sleeved with an elastic anti-skid sleeve (not shown in the figure).
[0062] The torsional spring assembly 6 comprises two installation grooves 61 opened on the outer side wall of the outer ring 5, and a hinged shaft 62 is rotatably connected to the inner wall on both sides of each installation groove 61, and the proximal ends of the two hinged shafts 62 are fixedly connected with the connecting rod 7.
[0063] The hinged shaft 62 is sleeved with a torsional spring 63, and the two ends of the torsional spring 63 are fixedly connected with the inner wall of the installation groove 61 and the connecting rod 7.
[0064] In this way, first, the hinged shaft 62 allows the connecting rod 7 to flexibly rotate relative to the outer ring 5, which can adapt to the changes in the growth direction and intensity of the kidney bean vines, for example, in windy weather, it can effectively buffer external force, and ensure that the plant and the insertion rod are stably connected and normally grow.
[0065] Secondly, the torsional spring assembly 6 provides elastic buffering for the rotation of the connecting rod 7, can absorb the impact force caused by environmental changes or vine growth, avoid damage to the insertion rod due to excessive force, and reduce replacement cost; and after the external force disappears, the torsional spring assembly 6 can automatically reset the connecting rod 7 to an angle that is conducive to the climbing of the vines, and the same after picking, without the need for frequent manual adjustment, improving the convenience and efficiency of planting management.
[0066] The outer side wall of the ground cone 1 near the bottom end is fixedly provided with a plurality of downwardly inclined ground thorns 12, and the plurality of ground thorns 12 are arranged at intervals around the circumference of the ground cone 1.
[0067] In this way, firstly, the plurality of downwardly inclined ground spikes 12 are circumferentially spaced apart around the ground cone 1, like a plurality of "claws" grabbing into the soil, so that when encountering external forces such as strong winds, the ground spikes 12 can increase the friction and gripping force of the soil on the insertion rod, effectively preventing the insertion rod from swaying or being pulled out, ensuring that the insertion rod is stably rooted during the entire growth period of the kidney beans, providing solid and reliable support for the climbing of the plants, and ensuring that the normal growth of the kidney beans is not affected by the instability of the insertion rod.
[0068] Secondly, the downwardly inclined design of the ground spikes 12 makes the ground cone 1 more directional when inserted into the soil, as the sharp end can easily break through the surface layer of the soil, reducing the resistance to entering the soil, so that the grower can install the insertion rod in place more easily and quickly.
[0069] In use, firstly, the ground cone 1 is aligned with the planting position and inserted into the soil, and the circumferentially spaced apart downwardly inclined ground spikes 12 on the outer side wall of the bottom end of the ground cone 1 can reduce the resistance to entering the soil and increase the gripping force.
[0070] After the ground cone 1 is inserted, the height of the support is adjusted according to the needs of the growth stage of the kidney beans, and the nut 3 is rotated again, since the connecting sleeve 4 is rotationally connected to the nut 3 and is sleeved on the threaded insertion rod 2, when the nut 3 is rotated, the connecting sleeve 4 will drive the outer ring 5 fixedly sleeved on the outer side wall thereof and the connecting rod 7 as a whole to move up and down along the threaded insertion rod 2, thereby achieving adjustment of the height of the connecting rod 7.
[0071] The rotating handle 86 on one end of the outer side wall of the winding roller 82 is rotated, the rotating handle 86 drives the winding roller 82 to rotate in the outer shell 81, and during the rotation of the winding roller 82, the rope 83 wound thereon will be wound or unwound, the rope 83 is fixedly connected to the rotating shaft 85 in the groove 84 of the connecting rod 7, drives the connecting rod 7 to rotate relative to the outer ring 5 around the torsional spring assembly 6, thereby changing the opening angle between the two connecting rods 7, and the angle can be flexibly adjusted according to the distribution and growth trend of the kidney bean plants.
[0072] When the opening angle between the two connecting rods 7 is adjusted to a suitable position, the fixing rods 88 are inserted into the insertion holes 87 of the winding rollers 82 near the end of the rotating handle 86, since the two fixing rods 88 are fixedly connected with the locking rod 89, the two winding rollers 82 are locked so that they cannot rotate, thereby fixing the winding and unwinding state of the rope 83, and further maintaining the opening angle between the two connecting rods 7 unchanged, thereby providing stable support for the kidney bean plants.
[0073] For those skilled in the art, according to the teachings of the present application, changes, modifications, replacements and variations made to the embodiments without departing from the principles and spirits of the present application still fall within the protection scope of the present application.
Claims
1. A structure of a kidney bean planting stick, comprising a ground cone (1), characterized in that: The top of the ground cone (1) is integrally connected with a threaded inserting rod (2), the threaded inserting rod (2) is threadedly connected with a nut (3), the threaded inserting rod (2) is slidingly sleeved with a connecting sleeve (4) above the nut (3), the connecting sleeve (4) is rotatably connected with the nut (3), an outer ring (5) is fixedly sleeved on the outer side wall of the connecting sleeve (4), the outer ring (5) is hingedly connected with two connecting rods (7) through a torsional spring assembly (6), the threaded inserting rod (2) is provided with an adjusting assembly (8) for adjusting the opening angle between the two connecting rods (7).
2. A kidney bean planting stick structure according to claim 1, characterized in that: The adjusting assembly (8) comprises an outer shell (81) fixedly installed on the top of the threaded inserting rod (2), two winding rollers (82) are symmetrically arranged in the outer shell (81), both ends of each winding roller (82) are rotatably penetrated through the outer shell (81) and extend out of it, and a rope (83) is wound around each winding roller (82).
3. A kidney bean planting stick structure according to claim 2, characterized in that: The end of the connecting rod (7) away from the outer ring (5) is provided with a groove (84), and a rotating shaft (85) is rotatably connected in each groove (84), and each rotating shaft (85) is fixedly connected with the corresponding rope (83).
4. A kidney bean planting stick structure according to claim 3, characterized in that: The outer side wall of one end of each winding roller (82) is fixedly sleeved with a rotating handle (86).
5. A kidney bean planting stick structure according to claim 4, characterized in that: The end of each winding roller (82) close to the rotating handle (86) is provided with a insertion hole (87), the cross section of the insertion hole (87) is square, a fixed rod (88) is clamped in the insertion hole (87), and the two fixed rods (88) are fixedly connected with a locking rod (89).
6. A kidney bean planting stick structure according to claim 5, characterized in that: The outer side wall of the nut (3) is fixedly connected with a push rod (11).
7. A kidney bean planting stick structure according to claim 1, characterized in that: The outer side wall of the ground cone (1) close to the bottom end is fixedly provided with a plurality of downwardly inclined ground thorns (12), and the plurality of ground thorns (12) are arranged at intervals around the circumference of the ground cone (1).