A lodging-resistant support structure for transplanted garden trees
By designing a support structure to prevent the trees from falling over during transplantation, and utilizing structures such as curved sections and hinged rods, the tree can be positioned and adjusted in multiple directions. This solves the problems of existing support frames being unstable and unsuitable for growth, and improves the survival rate of the trees and the stability of the support structure.
Patent Information
- Application Number
- CN202510631563.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2045-05-16
AI Technical Summary
Existing tree support frames are not sturdy enough to secure trees, are prone to loosening or collapsing, cannot meet the growth needs of trees, and may damage trees, affecting their survival rate.
A support structure for preventing lodging during transplanting of garden trees was designed, including a retainer, a positioning component, and an adjustment component. Through structures such as arc-shaped parts and hinged rods, the tree is positioned and adjusted in multiple directions using a traction rope and roller system to adapt to different diameters and growth positions, preventing tilted growth.
It effectively prevents trees from growing at an angle, improves tree survival rate, enhances the stability and flexibility of the support structure, and reduces damage to trees.
Smart Images

Figure CN120436015B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to landscaping technology, and more particularly to a support structure for preventing the lodging of transplanted garden trees. Background Technology
[0002] After trees are planted or transplanted, their root systems have not yet expanded. To prevent them from tilting or falling under external forces and to ensure their survival rate, they are often fixed in place with supports after planting.
[0003] Based on the above, the inventors have discovered that trees are very fragile after planting or transplanting. Some trees cannot withstand wind and sun after transplanting or planting. Existing tree support frames simply provide support for the trees without providing protection, and cannot guarantee the survival rate of the trees. Furthermore, the connections between the support rods are not firm, and they are prone to loosening or collapsing in strong winds or when the trees are shaken violently. In addition, trees grow relatively quickly, and existing tree support frames cannot be adapted to the appropriate height and width, making them easy to be damaged or harmed by the trees. Moreover, the tree support frames have poor ground grip and are prone to tilting. Most of the existing support frames are also relatively large and inflexible in use.
[0004] CN202210807100.X discloses a method and device for supporting trees against lodging. It uses a pulley bracket, winch, and strand to stretch the tree. However, the contact structure between the strand and the tree is not disclosed. If the tree is pulled using a strand, the contact area between the strand and the tree will be small, affecting the tree's normal growth. For trees with small diameters, this can easily lead to breakage, affecting the tightening of the strand. Summary of the Invention
[0005] To address the shortcomings of the existing technology, this invention proposes a support structure for preventing the lodging of transplanted garden trees.
[0006] The technical solution of this invention is implemented as follows:
[0007] A support structure for preventing lodging during transplanting of garden trees, comprising:
[0008] The retainer has a central area for accommodating the tree. The retainer consists of an arc-shaped part that contacts the tree and symmetrically arranged mounting plates, mounting arms, and hinge arms. The mounting plate has a hinge groove, and the hinge arms are connected to the mounting plate via the mounting arms. The hinge arms have a first hinge rod in the middle, and the first hinge rod has a roller.
[0009] A positioning component is provided in the receiving area. The positioning component includes a rotating component and a positioning component. The positioning component is kept in contact with the outer wall of the tree. The middle of the rotating component is set in a hinge groove through a second hinge rod. The upper end of the rotating component is hinged to the positioning component through a third hinge rod.
[0010] And an adjustment assembly hinged to the lower end of the rotating component, wherein a traction rope is provided in the middle of the adjustment assembly, one end of the traction rope is located in the middle of the adjustment assembly, and the other end extends downward around the roller, the adjustment assembly including:
[0011] An adjusting seat is provided with a hinge block that is hinged to a rotating component. The hinge block and the rotating component are hinged together by a fourth hinge rod. An installation area is formed in the middle of the adjusting seat. A first through hole and a second through hole are respectively provided at both ends of the installation area. The traction rope enters from the first through hole and then exits from the second through hole.
[0012] A first adjusting member and a second adjusting member are provided in the installation area. The first adjusting member and the second adjusting member are hinged together in the middle of the installation area. The adjusting seat is also provided with a fastener. When the fastener rotates, it pushes the hinged part of the first adjusting member and the second adjusting member to rotate downward, thereby applying pressure to the traction rope in the installation area.
[0013] In this invention, the positioning member is composed of a hinge body and an arc-shaped body, with an arc-shaped opening formed in the middle of the arc-shaped body, and the diameter of the arc-shaped opening being larger than the diameter of the arc-shaped portion.
[0014] In this invention, one end of the rotating member is provided with a first hinge end, and the other end is provided with a second hinge end. The first hinge end is hingedly connected to the hinge block, and the second hinge end is hingedly connected to the adjusting seat.
[0015] In this invention, the hinge groove is composed of a first inclined groove and a second inclined groove. Both the first inclined groove and the second inclined groove are inclinedly disposed on the mounting plate, and the first inclined groove is located in the middle of the second inclined groove.
[0016] In this invention, the second hinge rod has symmetrically arranged cut surfaces, and the two ends of the second hinge rod are provided with limiting blocks. The diameter of the limiting blocks is larger than the diameter of the second hinge rod. The width between the cut surfaces matches the width of the first inclined groove, and the width of the first inclined groove is smaller than the width of the second inclined groove.
[0017] In this invention, one end of the installation area is provided with a first hinge interface and the other end is provided with a second hinge interface. The upper end of the first hinge interface is provided with a first limiting part, and the upper end of the second hinge interface is provided with a second limiting part.
[0018] In this invention, the first adjusting member consists of a first hinge post, a first connecting body, and an arc-shaped head. The first connecting body connects the first hinge post and the arc-shaped head. The first hinge post is hinged with a first hinge interface. An arc-shaped area is formed in the middle of the arc-shaped head. A first notch is provided in the middle of the first hinge post. A first receiving groove that cooperates with the traction rope is provided at the lower end of the first connecting body.
[0019] In this invention, the second adjusting member is composed of a second hinge post, a second connecting body and a third hinge post. The second hinge post is hinged to the arc-shaped area, and the third hinge post is hinged to the second hinge interface. The second hinge post is provided with a limiting notch that cooperates with the arc-shaped head, and push rods are provided at both ends of the second hinge post.
[0020] In this invention, the installation area is provided with multiple limiting holes, and the first adjusting member and the second adjusting member are provided with limiting rods that cooperate with the limiting holes.
[0021] In this invention, the installation area is provided with a first protrusion and a second protrusion, and the second connector is provided with a recessed chamber that mates with the second protrusion.
[0022] The anti-lodging support structure for transplanted garden trees according to this invention has the following beneficial effects: By tightening the traction ropes, the retaining seat and positioning component can be engaged to tighten the tree. With multiple traction ropes and retaining seats, multi-directional positioning of the tree can be achieved, thereby maintaining the tree's position and preventing it from growing tilted. Furthermore, with the adjustment component, it can be adapted to different diameters and the positions of multiple retaining seats without needing to cut the traction ropes. Tightening the traction ropes restricts the tree's position, reducing the probability of the tree growing tilted. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the anti-lodging support structure for transplanted garden trees according to the present invention;
[0024] Figure 2 for Figure 1 Top view;
[0025] Figure 3 for Figure 2 Cross-sectional view at point AA;
[0026] Figure 4 for Figure 3 Enlarged view of section B in the image;
[0027] Figure 5 for Figure 3 Enlarged view of section C in the image;
[0028] Figure 6 for Figure 1A schematic diagram of the structure of the retainer, positioning component, and adjustment component;
[0029] Figure 7 for Figure 6 Exploded view;
[0030] Figure 8 for Figure 7 A schematic diagram of the retainer structure in the middle;
[0031] Figure 9 for Figure 7 A schematic diagram of the positioning component structure in the diagram;
[0032] Figure 10 for Figure 7 A schematic diagram of the adjustment component structure;
[0033] Figure 11 for Figure 10 Exploded view;
[0034] Figure 12 for Figure 11 A schematic diagram of the adjusting seat structure;
[0035] Figure 13 for Figure 11 A schematic diagram of the first adjusting component in the middle;
[0036] Figure 14 for Figure 11 A schematic diagram of the second adjusting component in the diagram;
[0037] Figure 15 for Figure 12 The main view;
[0038] Figure 16 for Figure 10 Another schematic diagram of the state structure.
[0039] In the diagram: 1. Holding seat; 2. Positioning component; 3. Adjusting component; 4. Tree; 5. Traction rope; 6. Receiving area; 7. Arc-shaped part; 8. Positioning component; 9. Mounting plate; 10. Mounting arm; 11. Hinge arm; 12. Hinge groove; 13. First inclined groove; 14. Second inclined groove; 15. Second hinge rod; 16. Cut surface; 17. First hinge rod; 18. Roller; 19. Rotating component; 20. Arc-shaped opening; 21. Third hinge rod; 22. Hinge body; 23. Arc-shaped body; 24. First hinge end; 25. Second hinge end; 26. Hinge block; 27. Adjusting seat; 28. First rotating opening; 29. Second rotating opening; 30. Limiting block; 31. First adjusting component; 32. Second adjusting component; 33. Fastener; Fourth... Hinged rod 34, mounting area 35, first through hole 36, second through hole 37, threaded part 38, threaded block 39, threaded hole 40, first hinge interface 41, second hinge interface 42, first limiting part 43, second limiting part 44, first hinge post 45, first connecting body 46, arc head 47, arc area 48, first notch 49, first receiving groove 50, third receiving groove 51, second receiving groove 52, second hinge post 53, second connecting body 54, third hinge post 55, limiting notch 56, push rod 57, second notch 58, limiting hole 59, limiting rod 60, first protrusion 61, second protrusion 62, recessed chamber 63. Detailed Implementation
[0040] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
[0041] like Figures 1 to 16 As shown, this garden tree transplant anti-falling support structure of the present invention includes a retaining seat 1, a positioning component 2, and an adjusting component 3. The positioning component 2 and the adjusting component 3 are located in the middle of the retaining seat 1, which is fitted onto the tree 4 that needs anti-falling support. Through the cooperation of the positioning component 2 and the retaining seat 1, the retaining seat 1 and the positioning component 2 clamp the tree 4. Simultaneously, the position of the tree 4 is adjusted by the tension of the adjusting component 3 and the traction rope 5, ensuring its vertical growth. It is suitable for anti-falling support of trees of different diameters.
[0042] The middle of the retainer 1 forms a receiving area 6 for accommodating the tree 4. The retainer 1 is open at one end and has an arc-shaped part 7 at the other end. The arc-shaped part 7 contacts the outer wall of the tree 4, thereby cooperating with the positioning member 8 to clamp the tree 4 in the middle. When installing the retainer 1, the first hinge rod 17 is removed.
[0043] The retainer 1 consists of an arc-shaped portion 7 that contacts the tree 4, and symmetrically arranged mounting plates 9, mounting arms 10, and hinge arms 11. The mounting plate 9 has a hinge groove 12, which is composed of a first inclined groove 13 and a second inclined groove 14. Both the first and second inclined grooves 13 and 14 are inclined on the mounting plate 9, with the first inclined groove 13 located in the middle of the second inclined groove 14. When installing the second hinge rod 15, the cut surface 16 on the second hinge rod 15 must first contact the inner wall of the first inclined groove 13. Then, the second hinge rod 15 is pushed to move along the inclined direction of the first inclined groove 13 into the second inclined groove 14. Finally, the second hinge rod 15 is moved to its N end. One end of the second inclined groove 14 is the N end, and the other end is the M end. The N end is close to the hinge arm 11, while the M end is close to the arc-shaped portion 7. The M-end can prevent the second hinge rod 15 from sliding directly out of the first inclined groove 13, which helps to limit the position of the second hinge rod 15 and prevents the second hinge rod 15 from sliding directly out of the first inclined groove 13 when installing and disassembling the positioning component 2, thus avoiding affecting the construction progress.
[0044] Furthermore, since the first inclined groove 13 and the second inclined groove 14 are set at an inclination, when the traction rope 5 is not under tension, the second hinge rod 15 can slide from the N end to the M end in the second inclined groove 14, thereby improving the safety performance of the entire support structure.
[0045] The articulated arm 11 is connected to the mounting plate 9 via the mounting arm 10. The articulated arm 11 has a first articulated rod 17 in the middle, and a roller 18 is provided on the first articulated rod 17. The roller 18 can guide and reduce the friction of the traction rope 5, thereby improving the service life of the traction rope 5.
[0046] The positioning component 2 is set in the receiving area 6. The positioning component 2 is provided with a rotating member 19 and a positioning member 8. The rotating member 19 rotates within the receiving area 6, so that the lower end of the rotating member 19 moves toward the roller 18 and the upper end of the rotating member 19 moves toward the arc-shaped part 7. Since the positioning member 8 and the rotating member 19 are hinged, when the rotating member 19 rotates and tilts, it will apply pressure to the positioning member 8, keeping the positioning member 8 pushed. When the positioning member 8 contacts the outer wall of the tree 4, the tree 4 can be placed in the arc-shaped opening 20, and the arc-shaped part 7 will clamp and limit the tree 4.
[0047] Because the positioning element 8 is pressurized by the rotating element 19, it is kept pressed in the direction of P1. Meanwhile, the traction rope 5 pulls the adjusting component 3, which in turn pulls the rotating element 19, keeping the second hinge rod 15 at the middle of the rotating element 19 exerting a force in the opposite direction to P1 on the retaining seat 1. This allows the retaining seat 1, the positioning component 2, and the adjusting component 3 to be secured to the tree 4. When an external force is applied to the lower end of the traction rope 5, the seat 1 can be kept in a stable state and will not slip off the tree 4. At the same time, when the position of the traction rope 5 remains unchanged, it can also restrict the position of the tree 4, preventing the tree 4 from tilting due to strong winds.
[0048] like Figure 3 As shown, direction F is the direction in which the strong wind blows. Position the lower end of the traction rope 5 in the direction in which the strong wind blows, thereby pulling the tree 4 and keeping the tree 4 stationary.
[0049] The positioning component 8 remains in contact with the outer wall of the tree 4. The middle of the rotating component 19 is set in the hinge groove 12 through the second hinge rod 15. The upper end of the rotating component 19 is hinged to the positioning component 8 through the third hinge rod 21.
[0050] The positioning component 8 is composed of a hinge body 22 and an arc-shaped body 23. An arc-shaped opening 20 is formed in the middle of the arc-shaped body 23, and the diameter of the arc-shaped opening 20 is larger than the diameter of the arc-shaped part 7.
[0051] One end of the rotating component 19 is provided with a first hinge end 24, and the other end is provided with a second hinge end 25. The first hinge end 24 is hingedly connected to the hinge block 26, and the second hinge end 25 is hingedly connected to the adjusting seat 27. A first rotation opening 28 is formed between the first hinge end 24 and the second rotation opening 29 is formed between the second hinge end 25 and the second hinge end 26. The hinge body 22 is disposed within the first rotation opening 28, and the hinge block 26 is disposed within the second rotation opening 29.
[0052] The second hinge rod 15 has symmetrically arranged cut surfaces 16, and limiting blocks 30 are provided at both ends of the second hinge rod 15. The diameter of the limiting blocks 30 is larger than the diameter of the second hinge rod 15. The width between the cut surfaces 16 matches the width of the first inclined groove 13, and the width of the first inclined groove 13 is smaller than the width of the second inclined groove 14. This means that the second hinge rod 15 can only be moved out of the first inclined groove 13 if it comes into contact with the inner wall of the first inclined groove 13 through the cut surfaces 16. When the cut surfaces 16 do not contact the inner wall of the first inclined groove 13 or are at an angle (i.e., not parallel), the second hinge rod 15 cannot be moved out of the first inclined groove 13.
[0053] The adjusting component 3 is hinged to the lower end of the rotating component 19. A traction rope 5 is provided in the middle of the adjusting component 3. One end of the traction rope 5 is located in the middle of the adjusting component 3, and the other end extends downward around the roller 18. One end of the traction rope 5 is restricted by the adjusting component 3, and the other end is fixed in the soil by a fixed spear (not shown in the figure) around the roller 18, or a weight is suspended at the other end of the traction rope 5 to maintain a certain tension in the traction rope 5.
[0054] The adjusting assembly 3 includes an adjusting seat 27, a first adjusting member 31, and a second adjusting member 32. Both the first adjusting member 31 and the second adjusting member 32 are hinged in the middle of the adjusting seat 27. The first adjusting member 31 and the second adjusting member 32 can rotate in the middle of the adjusting seat 27, thereby applying pressure to the traction rope 5 located at the lower ends of the first adjusting member 31 and the second adjusting member 32, causing it to deform and preventing the traction rope 5 from being horizontal. This results in bending between the traction rope 5 and the first adjusting member 31 and the second adjusting member 32, increasing the friction between the traction rope 5 and the first adjusting member 31, the second adjusting member 32, and the adjusting seat 27, thus preventing the traction rope 5 from detaching from the adjusting assembly 3.
[0055] Furthermore, since the trees 4 are transplanted to different locations and are exposed to different wind directions, multiple support structures can be set on the trees 4. The multiple retaining seats 1 are arranged vertically, while the length of the traction rope 5 remains consistent. When the traction rope 5 on the lower retaining seat 1 is longer, the fastener 33 can be rotated in the opposite direction so that the fastener 33 no longer applies pressure to the second adjusting member 32, causing the first adjusting member 31 and the second adjusting member 32 to move upward, thereby pulling the traction rope 5 in the direction of the arc-shaped part 7 on the retaining seat 1. This shortens the length of the traction rope 5, eliminating the need for further cutting and facilitating its collection and use next time. It also makes it easier to uniformly cut the traction rope 5 to a uniform length when cutting it in batches.
[0056] The adjusting seat 27 is provided with a hinge block 26 that is hinged to the rotating member 19. The hinge block 26 and the rotating member 19 are hinged together by a fourth hinge rod 34. The middle of the adjusting seat 27 forms an installation area 35. The two ends of the installation area 35 are respectively provided with a first through hole 36 and a second through hole 37. The traction rope 5 enters from the first through hole 36 and then exits from the second through hole 37.
[0057] The first adjusting member 31 and the second adjusting member 32 are disposed within the mounting area 35, and are hinged together in the middle of the mounting area 35. A fastener 33 is also provided on the adjusting seat 27, the fastener 33 having a threaded portion 38. A threaded block 39 is provided on the adjusting seat 27, and a threaded hole 40 in the middle of the threaded block 39 mates with the threaded portion 38.
[0058] When the fastener 33 rotates, it pushes the hinged part of the first adjusting member 31 and the second adjusting member 32 to rotate downward, which puts pressure on the traction rope 5 in the installation area 35, thereby causing the traction rope 5 to deform under force and increase the friction.
[0059] One end of the mounting area 35 is provided with a first hinge interface 41, and the other end is provided with a second hinge interface 42. The upper end of the first hinge interface 41 is provided with a first limiting part 43, and the upper end of the second hinge interface 42 is provided with a second limiting part 44. The first limiting part 43 is used to limit the rotation angle of the first adjusting member 31, and the second limiting part 44 is used to limit the rotation angle of the second adjusting member 32.
[0060] The first adjusting member 31 consists of a first hinge post 45, a first connecting body 46, and an arc-shaped head 47. The first connecting body 46 connects the first hinge post 45 and the arc-shaped head 47. The first hinge post 45 is hinged to the first hinge interface 41. An arc-shaped area 48 is formed in the middle of the arc-shaped head 47. The first hinge post 45 has a first notch 49 in the middle. The lower end of the first connecting body 46 has a first receiving groove 50 that cooperates with the traction rope 5.
[0061] A third receiving groove 51 is provided in the installation area 35. The third receiving groove 51 cooperates with the first receiving groove 50 and the second receiving groove 52. The traction rope 5 is placed in the first receiving groove 50, the second receiving groove 52 and the third receiving groove 51. The third receiving groove 51 connects the first through hole 36 and the second through hole 37.
[0062] The second adjusting member 32 consists of a second hinge post 53, a second connecting body 54, and a third hinge post 55. The second hinge post 53 is hinged to the arc-shaped area 48, and the third hinge post 55 is hinged to the second hinge interface 42. The second hinge post 53 has a limiting notch 56 that mates with the arc-shaped head 47, and push rods 57 are provided at both ends of the second hinge post 53. The lower end of the second connecting body 54 has a second receiving groove 52, and the middle of the third hinge post 55 has a second notch 58. The first notch 49 and the second notch 58 are used to install the first adjusting member 31 and the second adjusting member 32 into the installation area 35 when the traction rope 5 is within the installation area 35, and the first notch 49 and the second notch 58 are used to avoid the traction rope 5.
[0063] Multiple limiting holes 59 are provided in the installation area 35. The first adjusting member 31 and the second adjusting member 32 are provided with limiting rods 60 that cooperate with the limiting holes 59. The limiting rods 60 can prevent the positions of the first adjusting member 31 and the second adjusting member 32 from sliding within the installation area 35.
[0064] A first protrusion 61 and a second protrusion 62 are provided in the installation area 35, and a recessed chamber 63 that mates with the second protrusion 62 is provided on the second connector 54. The first protrusion 61 and the second protrusion 62 are used to cause the traction rope 5 to be compressed and deformed under force, thereby increasing the friction.
[0065] Of course, in practical applications, two first through holes 36 and second through holes 37 can also be provided on the adjusting seat 27. First, the rope 5 is inserted through one of the first through holes 36 and then exits through the corresponding second through hole 37. Then, the rope 5 is wrapped around the fourth hinge rod 34 once, and then inserted into the installation area 35 through the other second through hole 37, and then exits through the other first through hole 36. Two corresponding first receiving grooves 50, second receiving grooves 52, and third receiving grooves 51 are provided to ensure that the first adjusting member 31 and the second adjusting member 32 can be used to apply pressure and position the two ropes 5, thereby improving the fixing strength of the rope 5 and strengthening the fixing of trees 4 with different diameters.
[0066] like Figure 16 As shown, the first adjusting member 31 and the second adjusting member 32 are in the open state at this time. The traction rope 5 can be passed through the first through hole 36 and then through the second through hole 37. Then the fastener 33 is rotated, thereby applying pressure to the first adjusting member 31 through the fastener 33. The first adjusting member 31 drives the second adjusting member 32 to move downward, thereby ensuring that the first adjusting member 31 and the second adjusting member 32 fix the traction rope 5 within the installation area 35.
[0067] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A support structure for preventing lodging during transplanting of garden trees, characterized in that, include: The retainer has a central area for accommodating the tree. The retainer consists of an arc-shaped part that contacts the tree and symmetrically arranged mounting plates, mounting arms, and hinge arms. The mounting plate has a hinge groove, and the hinge arms are connected to the mounting plate via the mounting arms. The hinge arms have a first hinge rod in the middle, and the first hinge rod has a roller. A positioning component is provided within the accommodating area. The positioning component includes a rotating component and a positioning component. The positioning component is kept in contact with the outer wall of the tree. The middle of the rotating component is located in a hinge groove through a second hinge rod. The upper end of the rotating component is hinged to the positioning component through a third hinge rod. And an adjustment assembly hinged to the lower end of the rotating component, wherein a traction rope is provided in the middle of the adjustment assembly, one end of the traction rope is located in the middle of the adjustment assembly, and the other end extends downward around the roller, the adjustment assembly including: An adjusting seat is provided with a hinge block that is hinged to a rotating component. The hinge block and the rotating component are hinged together by a fourth hinge rod. An installation area is formed in the middle of the adjusting seat. A first through hole and a second through hole are respectively provided at both ends of the installation area. The traction rope enters from the first through hole and then exits from the second through hole. A first adjusting member and a second adjusting member are provided in the installation area. The first adjusting member and the second adjusting member are hinged together in the middle of the installation area. A fastener is also provided on the adjusting seat. When the fastener rotates, it pushes the hinged part of the first adjusting member and the second adjusting member to rotate downward, thereby applying pressure to the traction rope in the installation area.
2. The anti-lodging support structure for transplanted garden trees according to claim 1, characterized in that, The positioning component consists of a hinge body and an arc-shaped body. An arc-shaped opening is formed in the middle of the arc-shaped body, and the diameter of the arc-shaped opening is larger than the diameter of the arc-shaped part.
3. The anti-lodging support structure for transplanted garden trees according to claim 2, characterized in that, One end of the rotating component is provided with a first hinge end, and the other end is provided with a second hinge end. The first hinge end is hinged to the hinge block, and the second hinge end is hinged to the adjusting seat.
4. The anti-lodging support structure for transplanted garden trees according to claim 1, characterized in that, The hinge groove consists of a first inclined groove and a second inclined groove. Both the first inclined groove and the second inclined groove are inclinedly arranged on the mounting plate, with the first inclined groove located in the middle of the second inclined groove.
5. The anti-lodging support structure for transplanted garden trees according to claim 4, characterized in that, The second hinge rod has symmetrically arranged cut surfaces, and the two ends of the second hinge rod are provided with limiting blocks. The diameter of the limiting blocks is larger than the diameter of the second hinge rod. The width between the cut surfaces matches the width of the first inclined groove, and the width of the first inclined groove is smaller than the width of the second inclined groove.
6. The anti-lodging support structure for transplanted garden trees according to claim 1, characterized in that, One end of the installation area is provided with a first hinge interface and the other end is provided with a second hinge interface. The upper end of the first hinge interface is provided with a first limiting part, and the upper end of the second hinge interface is provided with a second limiting part.
7. The anti-lodging support structure for transplanted garden trees according to claim 6, characterized in that, The first adjusting component consists of a first hinge post, a first connecting body, and an arc-shaped head. The first connecting body connects the first hinge post and the arc-shaped head. The first hinge post is hinged with a first hinge interface. An arc-shaped area is formed in the middle of the arc-shaped head. A first notch is provided in the middle of the first hinge post. A first receiving groove that cooperates with the traction rope is provided at the lower end of the first connecting body.
8. The anti-lodging support structure for transplanted garden trees according to claim 7, characterized in that, The second adjusting component consists of a second hinge post, a second connecting body, and a third hinge post. The second hinge post is hinged to the arc-shaped area, and the third hinge post is hinged to the second hinge interface. The second hinge post is provided with a limiting notch that cooperates with the arc-shaped head, and push rods are provided at both ends of the second hinge post.
9. The anti-lodging support structure for transplanted garden trees according to claim 8, characterized in that, The installation area is provided with multiple limiting holes, and the first and second adjusting components are provided with limiting rods that cooperate with the limiting holes.
10. The anti-lodging support structure for transplanted garden trees according to claim 9, characterized in that, The installation area is provided with a first protrusion and a second protrusion, and the second connector is provided with a recessed chamber that mates with the second protrusion.
Citation Information
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