A garden greening corner-opening and branch-stabilizing device

By designing a branch stabilization device for landscaping, and utilizing an adjustable structure with assembled semi-rings and multiple positioning parts, the problems of poor adjustment capability and inadequate stability of existing devices are solved, thereby achieving stable traction of branches and improved wind resistance.

CN224504201UActive Publication Date: 2026-07-17URUMQI BOTANICAL GARDEN

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
URUMQI BOTANICAL GARDEN
Filing Date
2025-08-27
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing branch stabilization devices are not convenient to adjust the angle and position of the branch traction structure according to needs during use. They have poor adjustment capabilities and poor structural stability, which makes it easy for branches to change their growth direction or sway and break in strong winds, affecting the appearance of trees.

Method used

A tree branch stabilization device for landscaping was designed, comprising an assembly semi-ring, an arc-shaped guide rod, a locking part, a positioning part, a supporting part, and a traction part. The assembly and adjustment of multiple positioning parts are achieved through bolt and threaded connections to form a triangular support structure. The traction part can be adjusted in angle and height to fix the tree branches and enhance stability.

Benefits of technology

It achieves stable traction and fixation of tree branches, is applicable to branches of different heights and directions, improves wind resistance, prevents branches from changing their growth direction and breaking, and maintains the aesthetic appearance of trees.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a garden greening angle opening and branch stabilization device, comprising: two assembly semi-rings connected to each other by bolts and movably sleeved on the outside of the tree trunk, with two arc-shaped guide rods symmetrically fixed to the outside of each of the two assembly semi-rings; two locking parts symmetrically installed between the two assembly semi-rings, which synchronously approach and fit against the tree trunk, restricting the vertical movement of the two assembly semi-rings; and a positioning part movably sleeved on the outside of one of the arc-shaped guide rods. This garden greening angle opening and branch stabilization device can be provided with several positioning parts on the two assembly semi-rings, and the positioning parts can rotate around the tree trunk along the arc-shaped guide rods, so that the support part can adjust the support position according to the position of the branch. Combined with the triangular stable traction structure formed by the traction part, it can achieve stable traction and stabilization of branches at different positions on the tree trunk, and has high practicality.
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Description

Technical Field

[0001] This utility model relates to the field of landscaping technology, and more specifically, to a landscaping angle-opening and branch-stabilizing device. Background Technology

[0002] Landscape greening is the creation of a beautiful natural environment and recreational area in a certain area by using engineering technology and artistic means to modify the terrain, plant seedlings and flowers, construct buildings and arrange garden paths. In the process of landscape greening, fruit tree cultivation and landscape tree shaping, it is often necessary to fix the branches of trees at different angles in order to adjust the shape of the crown, improve ventilation and light conditions or promote fruit growth.

[0003] However, existing branch stabilization devices are inconvenient to adjust the angle and position of the branch traction structure according to needs during use, have poor adjustment capabilities, are not convenient to effectively traction branches at different heights on the tree, and have poor structural stability, which can easily cause the growth direction of the branches to change, making it difficult to achieve the expected growth direction, or causing them to sway or even break in strong winds, resulting in a reduction in the tree's appearance. Utility Model Content

[0004] The purpose of this invention is to provide a garden greening corner-opening and branch-stabilizing device to solve the above-mentioned problems.

[0005] To achieve the above objectives, this utility model provides a garden greening angle opening and branch stabilizing device, comprising: an assembly half-ring, two assembly half-rings being connected to each other by bolts and movably sleeved on the outside of the tree trunk, and two arc-shaped guide rods being symmetrically fixedly sleeved on the outside of each of the two assembly half-rings; The locking part is symmetrically installed between the two assembly half-rings. The two locking parts move closer to the tree trunk at the same time to restrict the vertical movement of the two assembly half-rings. A positioning part, which is movably sleeved on the outside of one of the arc-shaped guide rods; A support portion, which is mounted on the positioning portion, is used to support the connection between the tree branch and the tree trunk; The traction unit, mounted on the support unit, is used to pull tree branches, wherein... The drive locking and positioning part causes the supporting part and the traction part to rotate around the tree trunk under the restriction of the arc-shaped guide rod.

[0006] Furthermore, the positioning part includes a base plate disposed between the two arc-shaped guide rods and the corresponding assembly half ring, a bearing plate movably sleeved outside the two arc-shaped guide rods and abutting against the base plate, two control screws symmetrically threaded to the bearing plate, two adjusting heads respectively fixed on the two control screws, two threaded holes symmetrically opened on the base plate and corresponding to the two control screws respectively, and a bearing sleeve fixed on the bearing plate; The two control screws pass through the two threaded holes respectively and abut against the outer wall of one of the assembly semi-rings.

[0007] Furthermore, the supporting part includes a supporting rod that fits and slides inside the bearing sleeve, a supporting plate fixed to the top of the supporting rod, several toothed grooves formed on the outer wall of the supporting rod, a positioning sleeve sleeved on the outside of the bearing sleeve, positioning tooth blocks fixed to the inner wall of the positioning sleeve and meshing with the several toothed grooves, insertion grooves formed on the bearing sleeve and corresponding to the positioning tooth blocks, two locking holes symmetrically formed on the positioning sleeve and corresponding to the two control screws respectively.

[0008] Furthermore, the traction unit includes a first connecting sleeve sleeved on the outside of the support rod, a traction rod hinged to the first connecting sleeve, and a strap fixed to the other end of the traction rod.

[0009] Furthermore, the traction part also includes a second connecting sleeve sleeved on the outside of the support rod, a reinforcing rod fixed on the second connecting sleeve, a third connecting sleeve hinged to the other end of the reinforcing rod and movably sleeved on the outside of the traction rod; Both the first connecting sleeve and the second connecting sleeve are threaded with locking bolts, and both locking bolts are rotatably connected with locking tooth blocks that mesh with a plurality of tooth grooves; The two locking teeth are slidably assembled in the first connecting sleeve and the second connecting sleeve, respectively.

[0010] Furthermore, the positioning part also includes two mating protrusions symmetrically fixed on the bearing plate, and two mating grooves symmetrically opened on the base plate, each corresponding to one of the two mating protrusions.

[0011] Furthermore, the locking part includes threaded grooves formed on the two assembly half-rings, a locking screw threadedly connected to the two assembly half-rings through the two threaded grooves, a guide groove formed on the two assembly half-rings, a guide rod slidably inserted into the two guide grooves, and a locking plate rotatably connected to the locking screw and fixed to the guide rod.

[0012] Compared with the prior art, the embodiments of this utility model have the following beneficial effects: The base of the positioning part in this garden greening branch opening and stabilization device consists of a base plate and a support part. The support plate can be installed and removed from the base plate by controlling the screw, so that multiple positioning parts can be installed on the arc-shaped guide rods on the outside of the two assembly semi-rings to adapt to the number of branches that need to be opened. The support plate can drive the base plate to move along the arc-shaped guide rail outside the assembly semi-ring to rotate around the tree trunk. After adjustment, the position of the positioning part can be restricted by rotating the control screw to abut against the assembly semi-ring. It is suitable for the branch opening angle requirements in different directions. The support part on the positioning part can be height adjusted to support branches of different heights. It is suitable for different tree species and ages and has high practicality. This garden greening branch stabilization device, through its support section, connects the positioning section to the base of the branch with the branch angle, providing a stable base for the traction section. The traction rod in the traction section can be adjusted in angle and height, thus effectively connecting the branch to the support section and forming a triangular support. After the traction rod completes the traction of the branch, the middle of the traction rod is connected to the middle of the support rod through the reinforcement rod, restricting the rotation of the traction rod and further improving the traction stability of the branch. It is not easy to loosen, has high wind resistance, maintains the stability of the branch's growth direction, and avoids branch breakage due to wind. Attached Figure Description

[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0014] Figure 1 A perspective view of the present invention is shown; Figure 2 This invention provides a partially cross-sectional perspective view. Figure 1 ; Figure 3 A partial exploded view of the present invention is shown; Figure 4 A partial perspective view of the present invention is shown; Figure 5 A partially disassembled perspective view of this utility model is shown; Figure 6 This invention provides a partially cross-sectional perspective view. Figure 2 .

[0015] In the picture 1. Assembly semi-ring; 2. Arc-shaped guide rod; 3. Locking part; 4. Positioning part; 5. Supporting part; 6. Traction part; 7. Base plate; 8. Bearing plate; 9. Control screw; 10. Adjusting head; 11. Threaded hole; 12. Bearing sleeve; 13. Support rod; 14. Support plate; 15. Tooth groove; 16. Positioning sleeve; 17. Positioning tooth block; 18. Insertion groove; 19. Locking hole; 20. First connecting sleeve; 21. Traction rod; 22. Binding strap; 23. Second connecting sleeve; 24. Reinforcing rod; 25. Third connecting sleeve; 26. Locking bolt; 27. Locking tooth block; 28. Butt joint protrusion; 29. ​​Butt joint groove; 30. Threaded groove; 31. Locking screw; 32. Guide groove; 33. Guide rod; 34. Locking plate. Detailed Implementation

[0016] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0017] like Figure 1-6 As shown, a garden greening corner opening and branch stabilizing device includes: an assembly half ring 1, two assembly half rings 1 are connected to each other by bolts and are movably sleeved on the outside of the tree trunk, and two arc-shaped guide rods 2 are symmetrically fixedly sleeved on the outside of the two assembly half rings 1. The locking part 3 is symmetrically installed between the two assembly half rings 1. The two locking parts 3 move closer to the tree trunk at the same time to restrict the vertical movement of the two assembly half rings 1. Positioning part 4, which is movably sleeved on the outside of one of the arc-shaped guide rods 2; Support part 5, which is installed on the positioning part 4, is used to support the connection between the tree branch and the tree trunk; The traction part 6, which is mounted on the support part 5, is used to pull the tree branches. Drive the locking and positioning part 4, which in turn causes the supporting part 5 and the traction part 6 to rotate around the tree trunk under the constraint of the arc-shaped guide rod 2; In use, the two assembly semi-rings 1 are bolted to the tree trunk to form a stable support frame. Then, the two locking screws 31 are rotated, pushing the two locking plates 34 to move radially under the constraint of the two guide rods 33, tightly fitting the tree trunk and preventing the entire device from sliding up and down or loosening. Next, according to the required number of branches to be opened, a corresponding number of positioning parts 4 are installed on the two assembly semi-rings 1. Several positioning parts 4 can slide along the arc-shaped guide rod 2, causing the support part 5 and the traction part 6 to rotate around the tree trunk, adjusting the branch opening angle. After adjustment, the position of the positioning parts 4 can be restricted by rotating the control screw 9 to abut against the assembly semi-rings 1, ensuring the angle is fixed. In the support section 5, the support rod 13 engages with the positioning tooth block 17, which can be controlled to move, through the tooth groove 15, thereby adjusting the height of the support plate 14 to support branches at different heights. The traction rod 21 fixes the branch with the binding strap 22 and cooperates with the support rod 13 to form a triangular structure for initial traction support of the branch. In conjunction with the reinforcing rod 24, the angle of the traction rod 21 can be locked, further improving the traction stability of the traction section 6 on the branch, making it less prone to loosening, with high wind resistance, maintaining the stability of the branch production direction restriction, preventing the traction rod 21 from rebounding, ensuring that the branch maintains the ideal angle for a long time, and avoiding branch breakage due to wind.

[0018] Optionally, the positioning part 4 includes a base plate 7 disposed between the two arc-shaped guide rods 2 and the corresponding assembly half ring 1, a bearing plate 8 movably sleeved outside the two arc-shaped guide rods 2 and abutting against the base plate 7, two control screws 9 symmetrically threadedly connected to the bearing plate 8, two adjusting heads 10 respectively fixed on the two control screws 9, two threaded holes 11 symmetrically opened on the base plate 7 and corresponding to the two control screws 9 respectively, and a bearing sleeve 12 fixed on the bearing plate 8; The two control screws 9 pass through the two threaded holes 11 respectively and abut against the outer wall of one of the assembly half-rings 1; The base plate 7 is installed between the two arc-shaped guide rods 2 and the assembly half-ring 1. After the bearing plate 8 is connected to the base plate 7 through the two control screws 9, the bearing plate 8 can drive the base plate 7 to move along the direction of the two arc-shaped guide rods 2 and rotate relative to the two assembly half-rings 1, serving as the base of the entire positioning part 4 and controlling the tightening degree of the two control screws 9. When the two control screws 9 abut against the outer wall of the assembly half-ring 1, they can restrict the adjusted base plate 7 and bearing plate 8, thereby allowing the support part 5 and the traction part 6 to move together around the tree trunk, so that the support part 5 and the traction part 6 can move to the underside of the branch to be opened, which is convenient for adjustment and locking according to the branch, and has high practicality. In addition, since the bearing plate 8 can be removed and assembled from the base plate 7 by twisting the control screws 9, multiple positioning parts 4 can be assembled on the outside of the two assembly half-rings 1 at the same time to adapt to the number and position of the branches that need to be opened on the tree trunk, which has high practicality.

[0019] Optionally, the support part 5 includes a support rod 13 that fits and slides into the support sleeve 12, a support plate 14 fixed to the top of the support rod 13, a plurality of toothed grooves 15 formed on the outer wall of the support rod 13, a positioning sleeve 16 sleeved on the outside of the support sleeve 12, a positioning tooth block 17 fixed to the inner wall of the positioning sleeve 16 and meshing with the plurality of toothed grooves 15, an insertion groove 18 formed on the support sleeve 12 and corresponding to the positioning tooth block 17, and two locking holes 19 symmetrically formed on the positioning sleeve 16 and corresponding to the two control screws 9 respectively. In use, pushing the support rod 13 causes the support plate 14 to contact and support the base of the branch, providing a support for the assembly of the traction part 6. This allows the traction rod 21 in the subsequent traction part 6 to connect with the support rod, forming a triangular support to ensure the overall stability of the branch after the angle is opened. Since the outer wall of the support rod 13 has several toothed grooves 15, when the two control screws 9 are tightened, the two adjusting heads 10 push the positioning sleeve 16 to move, so that the positioning tooth block 17 meshes with several toothed grooves 15, thereby restricting the movement of the support rod 13 after adjustment and preventing the support rod 13 from accidentally sliding down. Since the support rod 13 can be height adjusted, it is convenient to support branches of different heights.

[0020] Optionally, the traction part 6 includes a first connecting sleeve 20 sleeved on the outside of the support rod 13, a traction rod 21 hinged to the first connecting sleeve 20, and a strap 22 fixed to the other end of the traction rod 21. In use, the first connecting sleeve 20 is moved vertically to adjust its position on the support rod 13, thus determining the starting point of the traction rod 21. Then, the angle of the traction rod 21 is adjusted so that the binding strap 22 fits against the branch. After the binding strap 22 fixes the branch, the traction rod 21 provides tension to maintain the ideal opening angle of the branch. Since the traction rod 21 is hinged to the first connecting sleeve 20, it is convenient to adjust the angle of the traction rod 21 according to the length of the opening angle support rod, ensuring that the binding strap 22 can be effectively fixed to the branch. The binding strap 22 is made of flexible material to reduce friction damage to the branch bark. The first connecting sleeve 20 can slide along the support rod 13, which facilitates the adjustment of the starting height of the traction rod 21, so as to effectively adjust the traction distance of the branch according to the opening angle.

[0021] Optionally, the traction part 6 may also include a second connecting sleeve 23 sleeved on the outside of the support rod 13, a reinforcing rod 24 fixed on the second connecting sleeve 23, and a third connecting sleeve 25 hinged to the other end of the reinforcing rod 24 and movably sleeved on the outside of the traction rod 21. Both the first connecting sleeve 20 and the second connecting sleeve 23 are threaded with locking bolts 26, and both locking bolts 26 are rotatably connected with locking tooth blocks 27 that mesh with a plurality of tooth grooves 15; The two locking teeth 27 are respectively slidably assembled in the first connecting sleeve 20 and the second connecting sleeve 23; The second connecting sleeve 23 can drive the reinforcing rod 24 to move vertically along the supporting rod 13. In conjunction with the movement of the third connecting sleeve 25 outside the traction rod 21, the reinforcing rod 24 can provide stable support or traction for the traction rod 21 when it is at different angles, forming a triangular support to ensure the overall stability of the traction rod 21 after the angle is adjusted, and to ensure the stability of the traction support for the branches. When the first connecting sleeve 20 and the second connecting sleeve 23 move vertically on the supporting rod 13 to a certain position, the two locking bolts 26 are rotated respectively, pushing the two locking teeth 27 into several tooth grooves 15, thereby ensuring the stability of the first connecting sleeve 20 and the second connecting sleeve 23 after the position is adjusted, and ensuring the overall stability of the traction part 6.

[0022] Optionally, the positioning part 4 further includes two mating protrusions 28 symmetrically fixed on the bearing plate 8, and two mating grooves 29 symmetrically opened on the base plate 7, which correspond to the two mating protrusions 28 respectively. When the bearing plate 8 is sleeved on the outside of the two arc-shaped guide rods 2 and docks with the base plate 7, the two docking protrusions 28 are respectively inserted into the two docking grooves 29, providing initial positioning for the subsequent locking of the control screw 9, avoiding misalignment of the bearing plate 8, preventing the bearing plate 8 from shifting or shaking during the adjustment and fixing process, and improving operating efficiency.

[0023] Optionally, the locking part 3 includes threaded grooves 30 formed on the two assembly half rings 1, a locking screw 31 threadedly connected to the two assembly half rings 1 through the two threaded grooves 30, a guide groove 32 formed on the two assembly half rings 1, a guide rod 33 slidably inserted into the two guide grooves 32, and a locking plate 34 rotatably connected to the locking screw 31 and fixed to the guide rod 33. In use, by rotating the two locking screws 31 in the two locking parts 3, the two locking plates 34 are moved towards the tree trunk and come into direct contact with the tree trunk surface. By rotating the locking screws 31, uniform pressure is applied, so that the entire device is firmly fixed to the tree trunk. Since the two guide rods 33 are respectively embedded in the two guide grooves 32, the movement trajectory of the two locking plates 34 is restricted, ensuring that the locking plates 34 move in a straight line and preventing unstable clamping due to the irregular shape of the tree trunk. It is suitable for trees of different diameters and has strong adaptability.

[0024] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A garden greening angle opening and branch stabilizing device, characterized in that, include: Assemble half rings (1), two assembly half rings (1) are connected to each other by bolts and are movably sleeved on the outside of the tree trunk. Two arc-shaped guide rods (2) are symmetrically fixedly sleeved on the outside of the two assembly half rings (1). The locking part (3) is symmetrically installed between the two assembly half rings (1). The two locking parts (3) move closer to the tree trunk at the same time, restricting the vertical movement of the two assembly half rings (1). Positioning part (4), which is movably sleeved on the outside of one of the arc-shaped guide rods (2); Support part (5), the support part (5) is installed on the positioning part (4) and is used to support the connection between the tree branch and the tree trunk; The traction part (6) is installed on the support part (5) and is used to pull the tree branches, wherein Drive the locking and positioning part (4), which in turn causes the supporting part (5) and the traction part (6) to rotate around the tree trunk under the restriction of the arc-shaped guide rod (2).

2. The garden greening angle-opening and branch-stabilizing device as described in claim 1, characterized in that, The positioning part (4) includes a base plate (7) disposed between the two arc-shaped guide rods (2) and the corresponding assembly half ring (1), a bearing plate (8) movably sleeved outside the two arc-shaped guide rods (2) and abutting against the base plate (7), two control screws (9) symmetrically threadedly connected to the bearing plate (8), two adjusting heads (10) respectively fixed on the two control screws (9), two threaded holes (11) symmetrically opened on the base plate (7) and respectively corresponding to the two control screws (9), and a bearing sleeve (12) fixed on the bearing plate (8). The two control screws (9) pass through the two threaded holes (11) respectively and abut against the outer wall of one of the assembly half rings (1).

3. A garden greening angle-opening and branch-stabilizing device as described in claim 2, characterized in that, The support part (5) includes a support rod (13) that fits and slides inside the support sleeve (12), a support plate (14) fixed to the top of the support rod (13), several toothed grooves (15) opened on the outer wall of the support rod (13), a positioning sleeve (16) sleeved on the outside of the support sleeve (12), a positioning tooth block (17) fixed to the inner wall of the positioning sleeve (16) and meshing with several toothed grooves (15), an insertion groove (18) opened on the support sleeve (12) and corresponding to the positioning tooth block (17), and two locking holes (19) symmetrically opened on the positioning sleeve (16) and corresponding to the two control screws (9).

4. A garden greening angle-opening and branch-stabilizing device as described in claim 3, characterized in that, The traction unit (6) includes a first connecting sleeve (20) sleeved on the outside of the support rod (13), a traction rod (21) hinged to the first connecting sleeve (20), and a strap (22) fixed to the other end of the traction rod (21).

5. A garden greening angle-opening and branch-stabilizing device as described in claim 4, characterized in that, The traction part (6) also includes a second connecting sleeve (23) sleeved on the outside of the support rod (13), a reinforcing rod (24) fixed on the second connecting sleeve (23), and a third connecting sleeve (25) hinged to the other end of the reinforcing rod (24) and movably sleeved on the outside of the traction rod (21). Both the first connecting sleeve (20) and the second connecting sleeve (23) are threaded with locking bolts (26), and both locking bolts (26) are rotatably connected with locking tooth blocks (27) that mesh with a plurality of tooth grooves (15). The two locking teeth (27) are slidably assembled in the first connecting sleeve (20) and the second connecting sleeve (23), respectively.

6. A garden greening angle-opening and branch-stabilizing device as described in claim 2, characterized in that, The positioning part (4) also includes two mating protrusions (28) symmetrically fixed on the bearing plate (8), and two mating grooves (29) symmetrically opened on the base plate (7) and corresponding to the two mating protrusions (28).

7. A garden greening angle-opening and branch-stabilizing device as described in claim 6, characterized in that, The locking part (3) includes threaded grooves (30) on the two assembly half rings (1), a locking screw (31) threadedly connected to the two assembly half rings (1) through the two threaded grooves (30), a guide groove (32) on the two assembly half rings (1), a guide rod (33) slidingly inserted into the two guide grooves (32), and a locking plate (34) rotatably connected to the locking screw (31) and fixed to the guide rod (33).