A horticultural plant securing and protecting frame

By designing a horticultural plant fixing and protection frame with components such as adjustable fastening straps, anti-slip textures, and elastic joints, the problem of existing devices being unable to adapt to seasonal changes has been solved, achieving flexible support and protection for plants and promoting healthy growth.

CN224290834UActive Publication Date: 2026-05-29丰城市农业良种试验基地

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
丰城市农业良种试验基地
Filing Date
2024-12-10
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing horticultural plant fixing and protection devices fail to effectively adapt to the different growth needs of plants as the seasons change, resulting in damage to the support points or restriction of the natural expansion of plants, affecting their aesthetics and health.

Method used

A horticultural plant fixing and protection frame was designed, which includes a fixing rod, an adjustable sleeve, a support arm, a crossbeam, and a protective sleeve. Through components such as adjustable fastening straps, anti-slip textures, elastic joints, and memory foam material, it can provide flexible support and protection for plants and adapt to the needs of different growth stages.

Benefits of technology

It effectively avoids plant damage caused by improper fixing, ensures that plants receive appropriate support at different growth stages, promotes healthy growth, reduces mechanical contact damage, and improves ease of use and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the present disclosure provides a kind of horticultural plant fixed protection frame, comprising: fixed rod;Adjusting sleeve, is sleeved on the fixed rod, and can slide up and down along the fixed rod;Supporting arm, one end is hinged with the adjusting sleeve, the other end is equipped with adjustable fastening band, and the adjustable fastening band includes band body and buckle;Crossbeam, horizontal fixed in the upper portion of the fixed rod, for supporting multiple adjusting sleeves;Protective sleeve, is sleeved on the supporting arm;Wherein the inner wall of the adjusting sleeve is equipped with anti-skid line, and the anti-skid line is distributed in spiral shape;A plurality of adjusting holes are evenly distributed on the crossbeam, and the position of multiple adjusting sleeves is fixed and stable by corresponding fixed pin on adjusting sleeve.It can solve the problem that the design of plant fixing device cannot effectively adapt to the different growth needs of plants due to seasonal changes, resulting in support point bruise or hindering the natural growth of plants by the scheme of the embodiment of the present disclosure.
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Description

Technical Field

[0001] This application relates to the field of agricultural machinery technology, specifically to a horticultural plant fixing and protection frame. Background Technology

[0002] A horticultural plant support frame is a device used to support and protect horticultural plants to ensure their healthy growth. These frames typically include supports, straps, and other accessories to help plants remain stable and upright throughout their different growth stages. However, a design flaw in these devices is that they often fail to adequately consider the varying growth needs of plants with seasonal changes. For example, fixed supports may damage plants due to uneven growth rates or restrict their natural expansion, hindering their growth. This not only affects the plant's appearance but can also negatively impact its overall health. Summary of the Invention

[0003] In view of this, the present disclosure provides a horticultural plant fixing and protection frame, which at least partially solves the problems existing in the prior art.

[0004] This application discloses a horticultural plant fixing and protection frame, comprising:

[0005] A fixing rod is used to insert into the soil to secure the protective frame.

[0006] An adjusting sleeve is fitted onto the fixed rod and can slide up and down along the fixed rod;

[0007] The support arm is hinged at one end to the adjusting sleeve and has an adjustable fastening strap at the other end for wrapping and fixing plant branches. The adjustable fastening strap includes a strap body and a buckle.

[0008] A crossbeam, horizontally fixed to the upper part of the fixed rod, is used to support multiple adjusting sleeves;

[0009] A protective sleeve is fitted onto the support arm; wherein

[0010] The inner wall of the adjusting sleeve is provided with anti-slip texture, which is distributed in a spiral shape.

[0011] The crossbeam is provided with multiple evenly distributed adjustment holes for fixing adjustment sleeves, and the positions of the multiple adjustment sleeves are fixed and stable by corresponding fixing pins on the adjustment sleeves.

[0012] According to one embodiment, the bottom of the fixing rod is provided with an inverted conical tip.

[0013] According to one embodiment, the surface of the fixing rod is provided with scale markings to adjust the position of the adjusting sleeve.

[0014] According to one embodiment, the top of the fixing rod is provided with a windproof cap.

[0015] According to one embodiment, the windproof cap is a hemispherical or umbrella-shaped structure, and its bottom surface is connected to the top of the fixing rod by means of threads or snaps.

[0016] According to one embodiment, the hinge portion of the support arm is provided with an elastic joint, which allows it to bend freely within a certain angle range.

[0017] According to one embodiment, the pitch of the anti-slip texture is 3 mm to 5 mm.

[0018] According to one embodiment, the spacing between the adjustment holes is 10 centimeters.

[0019] According to one embodiment, the protective case is filled with memory foam material.

[0020] According to one embodiment, the length of the protective sleeve is 5 to 10 centimeters longer than the support arm.

[0021] This disclosure provides a horticultural plant fixing and protection frame, comprising: a fixing rod for inserting into the soil to fix the frame; an adjusting sleeve fitted onto the fixing rod and capable of sliding up and down along the fixing rod; a support arm, one end of which is hinged to the adjusting sleeve, and the other end having an adjustable fastening strap for wrapping and fixing plant branches, the adjustable fastening strap including a strap body and a buckle; a crossbeam horizontally fixed to the upper part of the fixing rod for supporting multiple adjusting sleeves; and a protective sleeve fitted onto the support arm; wherein the inner wall of the adjusting sleeve has anti-slip texture, the anti-slip texture being spirally distributed; the crossbeam has multiple evenly distributed adjusting holes for fixing the adjusting sleeves, and the positions of the multiple adjusting sleeves are fixed and stable by corresponding fixing pins on the adjusting sleeves. The solution of this disclosure can solve the problem of support point damage or obstruction of natural plant growth caused by the plant fixing device design failing to effectively adapt to the different growth needs of plants with seasonal changes. Attached Figure Description

[0022] To more clearly illustrate the technical solutions of the exemplary embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the axial structure of the protective frame of this utility model;

[0024] Figure 2This utility model Figure 1 A top-view cross-sectional view of the regulating sleeve;

[0025] Figure 3 This utility model Figure 1 Schematic diagram of the hinge section;

[0026] Figure 4 This utility model Figure 1 A top-view cross-sectional structural diagram of the inner protective sleeve.

[0027] In the diagram: 1. Fixed rod; 2. Adjusting sleeve; 3. Support arm; 4. Crossbeam; 5. Protective sleeve; 6. Inverted conical tip; 7. Scale markings; 8. Windproof cap; 9. Anti-slip texture; 10. Hinge; 11. Elastic joint; 12. Adjustment hole; 13. Fixing pin; 14. Memory foam material Detailed Implementation

[0028] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of this application. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.

[0029] like Figure 1 As shown, a horticultural plant fixing and protection frame of this application includes multiple components, specifically a fixing rod 1, an adjusting sleeve 2, a support arm 3, a crossbeam 4, and a protective sleeve 5. These components are ingeniously combined to form a fully functional horticultural plant fixing and protection system, designed to adapt to the needs of plants at different growth stages and prevent plant damage caused by improper fixing device design.

[0030] The fixing rod 1 is the foundation of this protective frame, its main function being to insert into the soil and provide stable support for the overall structure. The fixing rod 1 is made of sturdy and durable materials, ensuring it can be used for extended periods under various environmental conditions without deformation. The adjusting sleeve 2 is fitted onto the fixing rod 1, allowing it to slide freely up and down and be secured at the desired height using fasteners. The fasteners allow users to flexibly adjust the position of the adjusting sleeve 2 according to the actual growth of the plants to meet different height requirements.

[0031] One end of the support arm 3 is hinged to the adjusting sleeve 2, allowing it to rotate freely in the vertical plane for easy adjustment of the support direction. The other end is equipped with an adjustable fastening strap for securing plant branches. This adjustable fastening strap consists of a strap body and a buckle. Adjusting the tightness of the buckle ensures that the strap is neither too tight (causing damage to the plant) nor too loose (losing its support function). The strap body is made of a soft, comfortable material to avoid damaging the plant's surface. Furthermore, each support arm 3 is equipped with a protective sleeve 5, also made of a soft material, which covers the outside of the support arm 3 to further reduce potential mechanical damage from direct contact.

[0032] The crossbeam 4 is horizontally fixed to the upper part of the fixing rod 1. Its main function is to support multiple adjusting sleeves 2, ensuring their even distribution and providing effective support for multiple plants or different branches of the same plant. The design of the crossbeam 4 ensures a more stable overall structure of the fixing frame, while also increasing the flexibility of use, allowing the multiple adjusting sleeves 2 to be freely adjusted in position as needed.

[0033] From a technical perspective, the fixing rod 1 can be made of stainless steel or other corrosion-resistant materials to ensure it is not prone to rusting or aging during long-term outdoor use. The connection between the adjusting sleeve 2 and the fixing rod 1 is designed with a sliding groove and a locking hole, allowing for easy locking and unlocking by rotating the locking bolt or buckle. The hinge 10 between the support arm 3 and the adjusting sleeve 2 can use a metal pivot with a rubber washer, enabling flexible rotation while ensuring a tight connection. The adjustable fastening strap's buckle can be quickly adjusted by pressing a button, and the strap itself is made of a highly flexible and breathable synthetic fiber material, ensuring both durability and safety. The protective sleeve 5 can be made of elastic fabric or sponge material for easy application and removal, while ensuring protection for plant branches.

[0034] Through the above design, this application's horticultural plant fixing and protection frame effectively solves the problem that existing plant fixing device designs fail to effectively adapt to the different growth needs of plants with seasonal changes. Firstly, the adjustable fastening strap design ensures that the strap can always be adjusted in a timely manner according to the plant's growth, neither too tight and damaging the plant nor too loose and unable to provide support. Secondly, the flexible height adjustment function of the adjusting sleeve 2 allows the fixing frame to adapt to the different growth height requirements of different plants, ensuring that each branch receives appropriate support. Furthermore, the hinged design of the support arm 3 and the adjusting sleeve 2 allows the fixing frame to be adjusted to the optimal support angle, further improving the plant's growth environment and avoiding poor growth caused by unsuitable support points. Finally, the use of the protective sleeve 5 and soft materials reduces the potential damage to the plant from mechanical contact, improves the protective effect, and extends the plant's healthy growth period.

[0035] In one embodiment, the fixing rod 1 of a horticultural plant fixing and protective frame of this application has an inverted conical tip 6 at its bottom. This design significantly enhances the stability and ease of insertion of the fixing rod 1 into the soil. By making the bottom of the fixing rod 1 into an inverted conical tip 6, the resistance during insertion into the soil can be effectively reduced, making it easier for the fixing rod 1 to penetrate the soil surface and reach the expected insertion depth. The shape of the inverted conical tip 6 makes the insertion process smoother and more fluid, while providing better guidance during insertion, ensuring that the fixing rod 1 can stand vertically and stably on the ground. This design is not only suitable for soft soil, but also adaptable to harder or stickier soil types, enhancing the applicability of the fixing and protective frame in different horticultural environments.

[0036] For example, the inverted conical tip 6 can be made of the same or different material as the main body of the fixing rod 1, depending on the actual usage requirements and cost considerations. The inverted conical tip 6 can be installed by welding, threaded connection, or integral molding. Specifically, when using a threaded connection, the top of the inverted conical tip 6 has external threads, while the bottom of the fixing rod 1 has matching internal threads. By rotating the tip, a tight fit is ensured, providing sufficient stability when inserted into the soil.

[0037] In one embodiment, the fixing rod 1 of a garden plant fixing and protective frame of this application has a series of scale marks 7 on its surface. These scale marks 7 are designed to help users accurately adjust the position of the adjusting sleeve 2, thereby ensuring that the height and growth of the plant are properly fixed. Specifically, the fixing rod 1 is a vertically arranged long rod with a smooth surface and a series of scale lines evenly distributed. There are clear spacing and numerical markings between the scale lines so that users can easily read and compare them. The scale marks 7 not only indicate the height, but also serve as reference points when adjusting the adjusting sleeve 2, avoiding errors caused by inaccurate visual estimation.

[0038] Furthermore, the adjusting sleeve 2 is fitted onto the fixing rod 1 and can be moved up and down along the fixing rod 1 as needed, and is secured with fasteners. The design of the scale markings 7 allows users to clearly observe the relative position of the adjusting sleeve 2 as it moves, thus ensuring that each fixing point is accurate. This design improves the ease of use and precision of the entire fixed protective frame, avoiding problems such as plant damage or unstable support caused by improper fixing positions.

[0039] For example, when it is necessary to fix plants of different heights, the user can first measure the actual height of the plant, and then refer to the scale mark 7 on the fixing rod 1 to adjust the adjusting sleeve 2 to the corresponding scale position. In this way, the user can ensure that the adjusting sleeve 2 is at the most suitable height, providing stable and effective support.

[0040] In one embodiment, the top of the fixing rod 1 of a horticultural plant fixing and protection frame of this application is provided with a windproof cap 8. The windproof cap 8 is designed to reduce the direct impact of wind on the plants and improve the overall stability of the entire fixing and protection frame. Specifically, the windproof cap 8 is installed at the top of the fixing rod 1, which can effectively block and disperse wind force, thereby preventing the fixing rod 1 from swaying due to excessive wind. This not only helps to maintain the stability of the fixing rod 1, but also indirectly improves the growing environment of the plants, protecting them from strong wind interference.

[0041] The windproof cap 8 is typically made of robust and durable materials, such as metal or rigid plastic, to ensure its structural stability and functionality under harsh weather conditions. The windproof cap 8 can have a streamlined structure or other designs that effectively reduce wind resistance, further enhancing its wind-damping performance. For example, the windproof cap 8 can be designed as a hemispherical or umbrella-shaped structure, with its bottom surface tightly connected to the top of the fixing pole 1 via threads or snaps, ensuring sturdiness and a tight seal, thereby better protecting the plants below.

[0042] Specifically, a corresponding connecting device, such as a threaded interface or a slot, can be pre-installed on the top of the fixing rod 1 to facilitate the quick installation and removal of the windproof cap 8. This design not only simplifies the installation process but also facilitates subsequent maintenance and replacement, improving the ease of use and reliability of the fixed protective frame.

[0043] In one embodiment, such as Figure 2 The adjusting sleeve 2 of the horticultural plant fixing and protection bracket of this application has anti-slip texture 9 on its inner wall to increase the friction between it and the fixing rod 1, ensuring that the adjusting sleeve 2 can be firmly fixed at any height. By setting the anti-slip texture 9 on the inner wall of the adjusting sleeve 2, accidental slippage caused by external force or the plant's own weight can be effectively prevented, thereby ensuring stable support for the plant branches. The design of the anti-slip texture 9 makes the fixation more secure and reduces displacement caused by vibration or wind, making it particularly suitable for use in variable outdoor environments.

[0044] Furthermore, the anti-slip texture 9 is spirally distributed, further increasing the contact area between the adjusting sleeve 2 and the fixing rod 1. This spiral design not only increases friction but also makes the fixation between the adjusting sleeve 2 and the fixing rod 1 more secure, improving overall stability. Specifically, the pitch of the anti-slip texture 9 is 3 mm to 5 mm. This design provides sufficient friction while avoiding difficulties in installation or adjustment caused by overly dense textures. Users can easily adjust the position of the sleeve 2 at different heights to meet the growth needs of various plants.

[0045] Specifically, anti-slip texture 9 can be formed on the inner wall of the adjusting sleeve 2 through injection molding. First, a mold with spiral texture is prepared, and then suitable plastic material is injected into the mold for injection molding. The molded adjusting sleeve 2 will have uniform spiral anti-slip texture 9 on its inner wall, ensuring moderate friction between it and the fixing rod 1, providing both stable fixation and convenient adjustment by the user. For example, during the manufacturing process, the quality and uniformity of the anti-slip texture 9 can be ensured by adjusting the injection pressure and temperature, thereby meeting the design requirements.

[0046] In one embodiment, such as Figure 3 As shown, the hinge portion 10 of the support arm 3 of the garden plant fixing and protective frame of this application is provided with an elastic joint 11, which can bend freely within a certain angle range. This design aims to flexibly adjust according to the growth direction of different plant branches, so as to avoid compressing the plant branches or restricting their normal growth due to a fixed angle. By setting the elastic joint 11 in the hinge portion 10 of the support arm 3, the user can easily change the angle of the support arm 3, ensuring that the plant branches can extend naturally without being affected by external mechanical forces.

[0047] Specifically, the elastic joint 11 is made of flexible material or structural components, allowing free bending within a preset angle range. This flexible material possesses a certain degree of elasticity and resilience, enabling it to deform under external force and return to its original shape after the force is removed, thus ensuring the stability of the support arm 3 at different positions. For example, the elastic joint 11 can employ a hinge structure with an internal spring, or a joint portion made of shape memory alloy material, allowing the support arm 3 to be flexibly adjusted according to the natural growth direction of the plant branches. Furthermore, the elastic joint 11 can also control its maximum bending angle by setting a limiting structure, ensuring that the support arm 3 does not bend excessively during use, thereby further improving the reliability of plant protection.

[0048] Return to reference Figure 1 In one embodiment, the crossbeam 4 of a horticultural plant fixing and protective frame of this application is provided with a plurality of evenly distributed adjustment holes 12, which are used to fix adjustment sleeves 2. The design of the adjustment holes 12 can ensure that the position of the adjustment sleeves 2 on the crossbeam 4 is fixed and stable, thereby avoiding deformation or damage caused by uneven force on the crossbeam 4. By setting corresponding fixing pins 13 on the adjustment sleeves 2, multiple adjustment sleeves 2 can be firmly fixed to the crossbeam 4, ensuring its stability and safety. In addition, this design can also make the plant branches evenly distributed, promoting their healthy growth.

[0049] Specifically, the spacing between the adjustment holes 12 on the crossbeam 4 is 10 centimeters. This design not only meets the distribution needs of different plant branches but also ensures sufficient space between multiple plant branches, preventing them from shading or crowding each other, thereby ensuring the photosynthetic efficiency of the plants. For example, in practical implementation, holes spaced 10 centimeters apart can be pre-drilled on the crossbeam 4, and then the adjustment sleeve 2 can be inserted into these holes and fixed with the fixing pin 13 to ensure its position is firm and reliable.

[0050] In one embodiment, such as Figure 4 As shown, the protective sleeve 5 of a garden plant fixing and protective frame of this application is filled with memory foam material 14, which can adaptively adjust to the shape of the plant branches, providing a soft and stable protective effect and avoiding mechanical damage caused by direct contact, especially the discomfort caused by changes in branch thickness during plant growth. The protective sleeve 5 is designed to ensure that the plant is fixed without any unnecessary external forces, thereby maintaining a healthy growth state. The adaptive properties of the memory foam material 14 not only provide appropriate support and protection when the branches thicken, but also gradually adjust its internal shape during branch growth, ensuring that the branches are always in an optimal protective state.

[0051] In terms of specific technical implementation, the memory foam material 14 filling the inside of the protective sleeve 5 can be fixed in various ways. For example, the memory foam can be cut to a size and shape suitable for the internal space of the protective sleeve 5, and then firmly installed inside the protective sleeve 5 using adhesives or other fixing methods. The connection between the memory foam material 14 and the inner wall of the protective sleeve 5 must ensure that it will not shift or fall off under long-term use and external environmental influences, thereby ensuring effective protection of the plant branches.

[0052] In one embodiment, the protective sleeve 5 of a garden plant support frame of this application is 5 to 10 centimeters longer than the support arm 3, ensuring that even when the support arm 3 is bent or extended, the protective sleeve 5 can completely cover the contact area of ​​the plant branches, preventing the exposed parts from being damaged by external environmental factors. This design adapts to the changes in the support arm 3 under different working conditions by increasing the length of the protective sleeve 5, ensuring that the plant branches are isolated from the external environment. The protective sleeve 5 is usually made of a flexible material, such as soft plastic or rubber, which can effectively reduce physical damage to the plant branches while maintaining good protective performance.

[0053] Specifically, the protective sleeve 5 can be installed at one end of the support arm 3, extending inwards from the end of the support arm 3 by a certain length. This ensures that when the angle or length of the support arm 3 is adjusted, the protective sleeve 5 always covers the portion of the plant branch that contacts the support arm 3. Furthermore, the connection between the protective sleeve 5 and the support arm 3 can be either a snap-on or screw-on type for easy installation and removal, while ensuring that it will not accidentally fall off during use.

[0054] For example, in one specific embodiment, the protective sleeve 5 may have elastic openings at both ends, making it easy to slip the protective sleeve 5 onto the support arm 3 and adjust the coverage area as needed, thereby ensuring effective protection of plant branches under any circumstances. This design is not only simple and practical, but also improves the overall reliability and service life of the protective frame.

[0055] In actual operation, when using this device, first insert the fixing rod 1 into the soil to ensure the stability of the protective frame. Next, the user can adjust the position of the adjusting sleeve 2 according to the height of the specific plant, allowing the adjusting sleeve 2 to slide freely up and down along the fixing rod 1, and then fix the adjusting sleeve 2 at the desired height using fasteners. At this time, the adjusting sleeve 2 not only serves as a support but also allows for flexible height adjustment as the plant grows. Next, the user can hinge one end of the support arm 3 to the adjusting sleeve 2, allowing the support arm 3 to rotate freely within a certain range, thus adapting to plant branches in different directions. The other end of the support arm 3 is equipped with an adjustable fastening strap, allowing the user to adjust the tightness of the fastening strap according to the specific condition of the plant branches, ensuring that the fastening strap can stably fix the plant branches without causing damage to the plant due to excessive tightness. In addition, to protect the plant from mechanical damage, the user can put a protective sleeve 5 on the support arm 3. The protective sleeve 5 is made of soft material, which can effectively prevent abrasions or wear caused by direct contact between plant branches and metal parts. Finally, the crossbeam 4 is horizontally fixed to the upper part of the fixing rod 1. Users can install multiple adjusting sleeves 2 through the crossbeam 4 to support more plant branches and ensure that these branches are more evenly distributed in space, which helps the plants receive better sunlight and air circulation and promotes healthy plant growth. The various components of the entire device work together to provide an efficient, flexible and safe fixing and protection solution for horticultural plants.

[0056] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in this application, and these should all be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A horticultural plant fixing and protective frame, characterized in that, include: A fixing rod (1) is used to insert into the soil to fix the protective frame; Adjusting sleeve (2) is fitted onto the fixed rod (1) and can slide up and down along the fixed rod (1); The support arm (3) is hinged at one end to the adjusting sleeve (2) and the other end is provided with an adjustable fastening strap for wrapping and fixing plant branches. The adjustable fastening strap includes a strap body and a buckle. A crossbeam (4) is horizontally fixed to the upper part of the fixed rod (1) to support multiple adjusting sleeves (2); A protective sleeve (5) is fitted onto the support arm (3); wherein The inner wall of the adjusting sleeve (2) is provided with anti-slip texture (9), and the anti-slip texture (9) is distributed in a spiral shape; The crossbeam (4) is provided with a plurality of evenly distributed adjustment holes (12) for fixing the adjustment sleeves (2), and the position of the plurality of adjustment sleeves (2) is fixed and stable by the corresponding fixing pins (13) on the adjustment sleeves (2).

2. The horticultural plant fixing and protection frame according to claim 1, characterized in that: The bottom of the fixing rod (1) is provided with an inverted conical tip (6).

3. The horticultural plant fixing and protection frame according to claim 1, characterized in that: The surface of the fixing rod (1) is provided with scale marks (7) so as to adjust the position of the adjusting sleeve (2).

4. The horticultural plant fixing and protection frame according to claim 1, characterized in that: The top of the fixing rod (1) is provided with a windproof cap (8).

5. A horticultural plant fixing and protection frame according to claim 4, characterized in that: The windproof cap (8) is a hemispherical or umbrella-shaped structure, and its bottom surface is connected to the top of the fixing rod (1) by means of threads or buckles.

6. A horticultural plant fixing and protection frame according to claim 1, characterized in that: The hinge portion (10) of the support arm (3) is provided with an elastic joint (11), which can be bent freely within a certain angle range.

7. A horticultural plant fixing and protection frame according to claim 1, characterized in that: The pitch of the anti-slip texture (9) is 3 mm to 5 mm.

8. A horticultural plant fixing and protection frame according to claim 1, characterized in that: The spacing between the adjustment holes (12) is 10 cm.

9. A horticultural plant fixing and protection frame according to claim 1, characterized in that: The protective sleeve (5) is filled with memory foam material (14).

10. A horticultural plant fixing and protection frame according to claim 9, characterized in that: The protective sleeve (5) is 5 to 10 centimeters longer than the support arm (3).