Wind-resistant and live-keeping device for newly planted bamboo forest in high-altitude and cold region

By using a combination of cluster rings and support components in bamboo forests in high-altitude and cold regions, the problem of bamboo forests being blown down by strong winds has been solved, the survival rate and shoot growth rate of bamboo forests have been improved, and the development of the bamboo industry has been promoted.

CN119422712BActive Publication Date: 2026-05-05HUNAN ACAD OF FORESTRY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HUNAN ACAD OF FORESTRY
Filing Date
2024-12-21
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In high-altitude and cold regions, newly planted bamboo forests are easily blown down or off the ground by strong winds, resulting in extremely low survival rates, shoot growth rates, and mature bamboo rates, which severely restricts the introduction and cultivation of bamboo forests.

Method used

A combination device of cluster rings and support components is used. The cluster rings are wrapped around bamboo poles and tied into bundles. The support components are connected to the ground and are set at equal intervals along the circumference of the bamboo clump. Combined with the buried bags and concrete, they form a tight connection to enhance wind resistance.

Benefits of technology

It improved the survival rate, shoot emergence rate, and bamboo maturity rate of bamboo forests in high-altitude and cold regions, promoted the development of the regional bamboo industry, and achieved the effect of wind resistance and survival.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application provides a new wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions, relating to the field of bamboo forest support technology. It includes: a bundle ring and multiple support components. The bundle ring can be fitted onto the shafts of multiple bamboo poles, binding them together to form a bamboo clump. Each support component is evenly spaced along the circumference of the bamboo clump and connected to the ground. Each support component is also connected to the bundle ring and can prevent the bamboo clump from tipping over. This application not only makes the bamboo in the forest less susceptible to being blown askew or downed during strong winds, but also prevents damage to the roots and stems from wind, achieving wind resistance and survival preservation.
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Description

Technical Field

[0001] This application relates to the field of bamboo forest support technology, and in particular to a wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions. Background Technology

[0002] Bamboo is neither grass nor wood. A complete bamboo stalk consists of above-ground and underground parts, with the connection between them called a "screw." Due to its unique morphological structure, bamboo requires more sophisticated afforestation techniques compared to herbaceous and woody plants. Establishing bamboo forests in high-altitude, cold regions is far more challenging than inland areas, and successful cases are extremely rare.

[0003] High-altitude and cold regions are prone to strong winds. When transplanting bamboo or establishing new bamboo forests in these areas, due to the lack of appropriate afforestation techniques, the transplanted bamboo is often blown askew, flattened, or even uprooted by strong winds. This results in extremely low bamboo survival rates, shoot emergence rates, and mature bamboo rates in high-altitude and cold regions, severely restricting the introduction and cultivation of bamboo forests in these areas.

[0004] In view of this, the inventor of this patent developed a "wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions" by conducting cold-resistant bamboo species introduction experiments in high-altitude and cold regions and combining them with the actual conditions of the afforestation sites. Summary of the Invention

[0005] To address the problem that newly planted bamboo forests in high-altitude and cold regions are easily blown down or off the ground by strong winds, resulting in extremely low survival rates, shoot growth rates, and mature bamboo rates, this application provides a wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions.

[0006] The wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions provided in this application adopts the following technical solution: it includes a bundle ring and multiple support components. The bundle ring can be fitted onto the body of multiple bamboo poles and bundle these bamboo poles into a bamboo clump.

[0007] Each of the aforementioned support components is equally spaced along the circumference of the bamboo clump and is connected to the ground. Each of the aforementioned support components is also connected to the cluster ring and is able to prevent the bamboo clump from tipping over.

[0008] By adopting the above technical solution, after transplanting the bamboo forest to be transplanted, users can first use a bundle ring to tie several adjacent bamboo poles together to form a bamboo clump. Then, support components are set at equal intervals along the circumference of the bamboo clump to support the bamboo within the clump. This prevents the bamboo within the clump from being blown over or knocked down in strong winds, and also prevents damage to the roots and stems from wind. This achieves the effect of wind resistance and survival. The application of this wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions has greatly improved the survival rate, shoot growth rate, and mature bamboo rate in high-altitude and cold regions, accelerated the development of the regional bamboo industry, and promoted the greening and beautification of the land.

[0009] Specifically, the bundle includes a strapping band and a connector. The strapping band has a row of connecting holes along its length. The connector is located on the strapping band at one end away from the connecting holes and is detachably connected to any of the connecting holes.

[0010] By adopting the above technical solution, users can change the size of the area that the strapping tape can bind by connecting the connector to the connecting holes at different positions on the strapping tape, so that the bundle can bind bamboo of different quantities and thicknesses.

[0011] Furthermore, the connector is a cable tie, and a fixing hole adapted to the cable tie is provided at one end away from the connecting hole.

[0012] By adopting the above technical solution, users can use cable ties to connect the fixing hole to any connecting hole on the cable tie.

[0013] Furthermore, the connector is a snap-fit, which can engage with any of the connecting holes.

[0014] By adopting the above technical solution, users can use the buckle to connect to any of the connection holes on the strap.

[0015] Specifically, the support assembly includes a mounting base and a support frame. The mounting base is located on the ground, the bottom end of the support frame is connected to the mounting base, and the top end of the support frame is detachably connected to the cluster ring.

[0016] By adopting the above technical solution, users can first tie multiple bundles at intervals from top to bottom on the bamboo clump to be bundled, and then connect the support frame on the mounting base to the bundles at a height that matches the ground, thereby supporting the bamboo clump through the support components.

[0017] Specifically, the support frame includes a support rod and an elastic element. The bottom end of the support rod is hinged to the mounting base. One end of the elastic element is connected to the mounting base, and the other end of the elastic element is connected to the rod body of the support rod and can limit the support rod from moving away from the bamboo grove.

[0018] By adopting the above technical solution, when the bundled bamboo clumps are subjected to a strong wind blowing in the horizontal direction, the elastic element on the support rod will help the bamboo clumps absorb the wind force, so that the bamboo clumps are not easily blown askew or down by the wind.

[0019] Furthermore, the mounting base includes a slide rail and a limiting device. The slide rail is arranged in a direction from approaching to moving away from the bamboo clump. The bottom end of the support frame is provided on the slide rail and can slide along the slide rail.

[0020] The limiting device is connected to the support frame and can restrict the bottom end of the support frame from sliding away from the bamboo grove.

[0021] By adopting the above technical solution, the user can adjust the height of the top of the support frame off the ground by adjusting the distance between the bottom of the support frame and the bamboo clump to be supported, so that the support frame can be connected with the bundled rings at different heights off the ground. The limiting device can restrict the bottom of the support frame from moving away from the bamboo clump, so that when the bundled bamboo clump is subjected to a strong wind blowing in the horizontal direction, the bottom of the support frame will not slip away from the bamboo clump.

[0022] Furthermore, the limiting device includes a pawl and a reset member. A row of ratchet teeth adapted to the pawl is provided on the slide rail along its own length direction. The root of the pawl is rotatably connected to the support frame, and the tip of the pawl abuts against the ratchet teeth.

[0023] The reset member is disposed on the support frame and can restrict the claw tip of the ratchet from rotating away from the ratchet. When the support frame approaches the bamboo clump along the slide rail, the pawl can slide along a row of ratchet teeth. When the support frame moves away from the bamboo clump along the slide rail, the claw tip of the pawl can be locked in a row of ratchet teeth and restrict the support frame from moving away from the bamboo clump.

[0024] By adopting the above technical solution, when the support frame approaches the bamboo grove along the slide rail, the pawl can slide along a row of ratchet teeth. When the support frame moves away from the bamboo grove along the slide rail, the pawl tip can be locked in a row of ratchet teeth and restrict the support frame from moving away from the bamboo grove.

[0025] Furthermore, the bottom of the mounting base is detachably connected to a buried bag, the inside of which is provided with a cavity for filling with concrete, and the body of the buried bag is buried in the soil.

[0026] By adopting the above technical solution, the buried bag and the concrete inside the bag form an integral structure, which can enhance the connection and tightness between the mounting base and the ground.

[0027] Furthermore, the buried bag has multiple pressure relief ports on its body, and each pressure relief port is sealed with a pressure relief plate. The concrete inside the buried bag can push the pressure relief plate away from the pressure relief port and flow into the soil around the buried bag from the pressure relief port.

[0028] By adopting the above technical solution, the user can first dig a hole in the ground that matches the specifications of the buried bag, then put the deflated buried bag into the hole, and inject concrete into the buried bag at a pressure lower than the preset pressure. After the concrete fills the buried bag and the body of the buried bag comes into contact with the surrounding soil layer, concrete is then injected into the buried bag at a pressure higher than the preset pressure. At this time, the concrete in the buried bag will push each pressure relief plate on the buried bag away from the corresponding pressure relief port, so that the concrete in the buried bag can flow into the soil around the buried bag from each pressure relief port. After solidification, this concrete will form a concrete mesh structure similar to plant roots, thereby tightly connecting the buried bag with the surrounding soil layer through these concrete mesh structures.

[0029] In summary, this application includes at least one of the following beneficial technical effects:

[0030] 1. Includes a bundle ring and multiple support components. The bundle ring can be fitted onto the bamboo poles and bundle them together to form a bamboo clump. Each support component is evenly spaced along the circumference of the bamboo clump and connected to the ground. Each support component is also connected to the bundle ring and can prevent the bamboo clump from tipping over. After transplanting the bamboo forest to be transplanted, the user can first use the bundle ring to bundle several adjacent bamboo poles together to form a bamboo clump. Then, each support component is evenly spaced along the circumference of the bamboo clump to support the bamboo within the clump. This makes the bamboo within the clump less likely to be blown over or knocked down in strong winds, and also makes the roots less likely to be damaged by wind, thus achieving the effect of wind resistance and survival.

[0031] 2. A ground-buried bag is detachably connected to the bottom of the mounting base. The ground-buried bag has an internal cavity for filling with concrete. The bag body is buried in the soil, and multiple pressure relief ports are opened on the bag body. Each pressure relief port is sealed with a pressure relief plate. The concrete inside the ground-buried bag can push the pressure relief plate away from the pressure relief port and flow into the soil around the ground-buried bag from that port. The user can first dig a hole in the ground that matches the size of the ground-buried bag, then place the deflated ground-buried bag into the hole, and inject concrete into the ground-buried bag at a pressure lower than the preset pressure. After the concrete fills the buried bag and makes the bag body contact the surrounding soil layer, concrete is injected into the buried bag at a pressure higher than the preset pressure. At this time, the concrete in the buried bag will push the pressure relief plates on the buried bag away from the corresponding pressure relief ports, so that the concrete in the buried bag can flow into the soil around the buried bag from the pressure relief ports. After solidification, this concrete will form a concrete mesh structure similar to plant roots, thereby tightly connecting the buried bag with the surrounding soil layer through these concrete mesh structures. Attached Figure Description

[0032] Figure 1 This is a perspective view of the newly constructed wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions, as described in this application, which only shows some of the adult bamboo poles;

[0033] Figure 2 This is a front view of the newly constructed wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions, as described in this application.

[0034] Figure 3 It is along Figure 2 A schematic cross-sectional view taken along the AA direction, showing only one support component;

[0035] Figure 4 It is along Figure 2 A schematic cross-sectional view taken along the BB direction;

[0036] Figure 5 It is along Figure 4 A schematic cross-sectional view taken along the CC direction, in which the concrete inside the buried bag is not shown, so as to show the body of the buried bag;

[0037] Figure 6 yes Figure 5 A schematic enlarged view of region D, showing the pressure relief plate.

[0038] Reference numerals: 1. Bundling ring; 11. Strapping strap; 111. Connecting hole; 112. Connecting sleeve; 12. Buckle; 13. Snap-fit ​​sleeve; 2. Support assembly; 21. Mounting base; 211. Slide rail; 2111. Ratchet; 212. Slide sleeve; 2121. Pawl; 2122. Abutment post; 2123. Elastic abutment plate; 213. Buried bag; 2131. Pressure relief plate; 2132. Grouting port; 22. Support frame; 221. Support rod; 222. Elastic element; 3. Bamboo clump; 31. Bamboo pole; 32. Bamboo shoot; 4. Concrete. Detailed Implementation

[0039] Figure 1 This is a perspective view of the newly constructed wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions, as described in this application. Only some of the adult bamboo culms are shown. Figure 2 This is a front view of the newly constructed wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions, as described in this application. Figure 1 and Figure 2 In one embodiment, the wind-resistant and survival-preserving device for newly constructed bamboo forests in high-altitude and cold regions is used to fix a bamboo clump 3 consisting of 6 bamboo poles 31 (only part of the bamboo poles 31 are shown in the figure, and the top of the bamboo poles 31 and the branches and leaves at the top of the bamboo poles 31 are not shown) and two bamboo shoots 32. The wind-resistant and survival-preserving device for newly constructed bamboo forests in high-altitude and cold regions includes three bundle rings 1 and three support components 2. Two bundle rings 1 are fitted onto the poles of the 6 bamboo poles 31 and bind these bamboo poles 31 into a whole. The remaining bundle ring 1 is fitted onto the poles of the 6 bamboo poles 31 and the two bamboo shoots 32 and binds the bamboo shoots 32 near these bamboo poles 31 to the bamboo poles 31 into a whole. The three support components 2 are arranged at equal intervals around the bamboo clump 3, and each support component 2 is connected to the bundle ring 1 located at the top.

[0040] Figure 3 It is along Figure 2 A schematic cross-sectional view taken along the AA direction, showing only one support component. Figure 4 It is along Figure 2 A schematic cross-sectional view taken along the BB direction. See also Figure 3 and Figure 4 The bundle 1 includes a strapping band 11, a connector, and a connecting sleeve 112. A row of connecting holes 111 is provided on the strapping band 11 from one end to the middle along the length of the strapping band 11. The connector is located on the strapping band 11 at one end away from all the connecting holes 111. The connecting sleeve 112 is located on the strapping band 11 and between the connector and the row of connecting holes 111.

[0041] Specifically, the connector can be a cable tie. The user can create a fixing hole at the end of the cable tie 11 away from the connecting hole 111. After wrapping the cable tie 11 around the multiple bamboo poles 31 to be bundled, one of the connecting holes 111 will be adjacent to or overlap with a fixing hole. The user can use the cable tie to connect the connecting hole 111 to any fixing hole, so that the cable tie 11 can securely bundle bamboo poles 31 of different numbers and thicknesses. The connector can also be a buckle 12. The user can make the strapping 11 form a bundle 1 by snapping the buckle 12 with any of the connecting holes 111 on the strapping 11. After the buckle 12 is snapped with one of the connecting holes 111, the user can insert the strap part of the strapping 11 located between the connecting hole 111 and the end of the strapping 11 away from the buckle 12 into the connecting sleeve 112. The connecting sleeve 112 can limit this part of the strap part, so that the buckle 12 is not easy to come out of the connecting hole 111.

[0042] It should be noted that the clustering ring 1 used to surround the adult bamboo pole 31 can be set at a position on the bamboo pole 31 at a distance of 0.5m, 1m, 1.5m, 2m and 2.5m from the ground. The clustering ring 1 used to tie the bamboo shoot 32 together with the adult bamboo pole 31 can be set at a position at a distance of 0.5m, 1m, 1.5m and 2m from the ground, so that multiple adjacent adult bamboo poles 31 or multiple adjacent bamboo shoots 32 and adult bamboo poles 31 can be tied together to form a whole by the clustering ring 1.

[0043] See Figure 1 and Figure 3The support assembly 2 includes a mounting base 21 and a support frame 22. The mounting base 21 is located on the ground. A T-shaped slide rail 211 is provided on the top of the mounting base 21. A sliding sleeve 212 is provided above the slide rail 211 and can move closer to or further away from the bamboo clump 3 along the slide rail 211. Four sets of limiting devices are also provided on the sliding sleeve 212 to limit the sliding sleeve 212 from moving away from the bamboo clump 3. The slide rail 211 has a length-length section... Two rows of ratchet teeth 2111 are provided, each row corresponding to two sets of limiting devices. Each limiting device includes a pawl 2121 adapted to the ratchet teeth 2111, an abutment post 2122, and a reset element. The root of the pawl 2121 is rotatably connected to the support frame 22, and the tip of the pawl 2121 abuts against the ratchet teeth 2111. The reset element is an elastic abutment piece 2123. The elastic abutment piece 2123 and the abutment post 2122 are respectively disposed on both sides of the pawl 2121, so that during sliding... When the slide sleeve 212 is about to approach the bamboo clump 3 along the slide rail 211, the tip of the pawl 2121 can rotate along one inclined plane of the ratchet 2111 towards the elastic abutment 2123 and away from the ratchet 2111, thus compressing the elastic abutment 2123, allowing the slide sleeve 212 to approach the bamboo clump 3 along the slide rail 211; however, when the slide sleeve 212 is about to move away from the bamboo clump 3 along the slide rail 211, the tip of the pawl 2121 will be stuck between two adjacent ratchet teeth 2111. Between 11, the abutment post 2122 will also abut against one side of the pawl 2121 and restrict the pawl tip of the pawl 2121 from rotating along the other inclined surface of the ratchet 2111 towards the abutment post 2122 and away from the ratchet 2111, so that the slide sleeve 212 cannot move away from the bamboo clump 3 along the slide rail 211; when it is necessary to move the slide sleeve 212 away from the bamboo clump 3, the user must rotate it so that the pawl tips of all four sets of pawls 2121 are away from the corresponding ratchet 2111.

[0044] See Figure 1 and Figure 3 The support frame 22 includes a support rod 221 and an elastic element 222. The uppermost cluster ring 1 is also provided with three snap-fit ​​sleeves 13 at equal intervals along the circumference. The bottom end of each support rod 221 is hinged to a corresponding mounting base 21, and the top end of each support rod 221 is snapped into a corresponding snap-fit ​​sleeve 13. The elastic element 222 is a tension spring. One end of the tension spring is connected to the sliding sleeve 212, and the other end of the tension spring is connected to the rod body of the support rod 221, so that the top end of the support rod 221 can be restricted to rotate away from the bamboo clump 3 by the tension spring.

[0045] Figure 5 It is along Figure 4 A schematic cross-sectional view taken along the CC direction, where the concrete inside the buried bag is not shown, in order to show the body of the buried bag. Figure 6 yes Figure 5 A schematic enlarged view of region D, showing the pressure relief plate. See also... Figure 5and Figure 6 The bottom of the mounting base 21 is provided with a buried bag 213. The opening of the buried bag 213 has a grouting port 2132 and a fixing port for bolts. A cap is sealed over the grouting port 2132, allowing the user to pour concrete 4 into the buried bag 213 through the grouting port 2132. The opening of the buried bag 213 is detachably connected to the bottom of the mounting base 21 via bolts and the fixing port. Multiple inclined surfaces are formed on the body of the buried bag 213. Each inclined surface slopes away from the center of the buried bag 213 in the direction from the opening to the center, so that the buried bag 213 is not easily pulled out of the soil by external force after the user buries it in the soil; the buried bag 213 also has multiple pressure relief ports on its body, each of which is sealed with a pressure relief plate 2131. The concrete 4 inside the buried bag 213 can push the pressure relief plate 2131 away from the pressure relief port and flow into the soil around the buried bag 213 from the pressure relief port. This allows the user to first dig a hole in the ground that matches the specifications of the buried bag 213, then place the deflated buried bag 213 into the hole, and inject concrete slurry into the buried bag 213 at a pressure lower than the preset pressure. After the concrete slurry fills the buried bag 213 and the bag body of the buried bag 213 comes into contact with the surrounding soil layer, the concrete slurry is then injected into the buried bag 213 at a pressure higher than the preset pressure. At this time, the concrete slurry in the buried bag 213 will push each pressure relief plate 2131 on the buried bag 213 away from the corresponding pressure relief port, so that the concrete slurry in the buried bag 213 can flow into the soil around the buried bag 213 from each pressure relief port. After solidification, this concrete slurry will form a concrete slurry network structure similar to plant roots, thereby tightly connecting the buried bag 213 with the surrounding soil layer through this concrete slurry network structure.

[0046] Specifically, the buried bag 213 and the pressure relief plate 2131 can both be made of geotextile. The pressure relief plate 2131 is directly connected to the body of the buried bag 213. Each pressure relief plate 2131 has a ring of easy-tear holes punched around it. When the pressure of the concrete slurry 4 inside the buried bag 213 is greater than the preset pressure, the connection between the pressure relief plate 2131 and the body of the buried bag 213 will be broken. The preset pressure can be set between 1 MPa and 10 MPa.

[0047] The application process of the wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions described in this application is as follows:

[0048] After transplanting the bamboo grove, the user can first use three bundle rings 1 to tie several adjacent mature bamboo poles 31 and bamboo shoots 32 together to form a bamboo clump 3. Then, dig three equally spaced pits along the circumference of the bamboo clump 3 for burying the ground bags 213. Next, bury the ground bags 213 into each pit and connect the ground bags 213 to the mounting bases 21. Then, perform grouting operations on each ground bag 213 in sequence. After the concrete 4 has solidified, adjust the sliding sleeves 212 on each mounting base 21 to a suitable position so that the top of each support rod 221 is at a suitable height. The support rods 221 on each mounting base 21 are connected to the uppermost cluster ring 1 so that the support components 2 can support the bamboo in the bamboo clump 3. When the adult bamboo poles 31 and bamboo shoots 32 in the bamboo clump 3 are subjected to a strong wind blowing in the horizontal direction, the tension spring on the windward support rod 221 will help the bamboo clump 3 absorb the wind force. When the adult bamboo poles 31 and bamboo shoots 32 in the bamboo clump 3 are subjected to an upward strong wind, or when there is a strong wind blowing in the horizontal direction above the bamboo clump 3, the buried bag 213, which is closely connected to the ground, will ensure that the bamboo clump 3 is not easily blown away from the soil.

[0049] The implementation principle of the wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions described in this application is as follows:

[0050] After transplanting the bamboo grove, the user can first use three bundle rings 1 to tie several adjacent mature bamboo poles 31 and bamboo shoots 32 together to form a bamboo clump 3. Then, dig three pits at equal intervals around the circumference of the bamboo clump 3 for burying the ground bags 213. Next, bury the ground bags 213 into each pit and connect the ground bags 213 to the mounting bases 21. Then, perform grouting operations on each ground bag 213 in sequence. After the concrete 4 has solidified, adjust the sliding sleeves 212 on each mounting base 21 to a suitable position so that the top of each support rod 221 is at a suitable height. Then, connect the support rods 221 on each mounting base 21 to the uppermost bundle ring 1 so that the support rods can be used to support the bamboo clump 221. The support component 2 supports the bamboo in the bamboo clump 3. When the adult bamboo stalks 31 and bamboo shoots 32 in the bamboo clump 3 are subjected to a strong wind blowing horizontally, the tension spring on the windward support rod 221 will help the bamboo clump 3 absorb the wind force, so that the bamboo in the bamboo clump 3 is not easily blown over or knocked down in strong winds. When the adult bamboo stalks 31 and bamboo shoots 32 in the bamboo clump 3 are subjected to an upward strong wind, or when there is a strong wind blowing horizontally above the bamboo clump 3, the buried bag 213, which is closely connected to the ground, will ensure that the bamboo clump 3 is not easily blown away from the soil, so that the bamboo in the bamboo clump 3 is not easily damaged by the wind, thus achieving the effect of wind resistance and survival.

[0051] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.

Claims

1. A newly constructed wind-resistant and survival-preserving device for bamboo forests in high-altitude and cold regions, characterized in that... It includes a bundle ring (1) and multiple support components (2). The bundle ring (1) can be fitted onto the poles of multiple bamboo poles (31) and bundle these bamboo poles (31) into a bamboo clump (3). Each of the aforementioned support components (2) is equally spaced along the circumference of the bamboo clump (3) and is connected to the ground. Each of the aforementioned support components (2) is connected to the cluster ring (1) and is able to prevent the bamboo clump (3) from tipping over. Each support component (2) includes a mounting base (21) and a support frame (22). The mounting base (21) is located on the ground. The bottom end of the support frame (22) is connected to the mounting base (21), and the top end of the support frame (22) is detachably connected to the cluster ring (1). The support frame (22) includes a support... The support rod (221) and the elastic element (222) are connected to the mounting base (21). One end of the elastic element (222) is connected to the mounting base (21), and the other end of the elastic element (222) is connected to the rod body of the support rod (221) and can limit the support rod (221) from moving away from the bamboo clump (3). The elastic element (222) on the support rod (221) helps the bamboo clump absorb wind. The mounting base (21) includes a slide rail (211) and a limiting device. The slide rail (211) is arranged in a direction from close to away from the bamboo clump (3), and the bottom end of the support frame (22) is provided on the slide rail (211) and can slide along the slide rail (211); the limiting device is connected to the support frame (22) and can limit the bottom end of the support frame (22) from sliding away from the bamboo clump (3); the bottom of the mounting base (21) is detachably connected to a ground bag (213), and the ground bag (213) has an internal cavity for filling concrete (4). The body of the (213) bag is buried in the soil; the body of the buried bag (213) has multiple pressure relief ports, and each pressure relief port is sealed with a pressure relief plate (2131). When the pressure of the concrete (4) inside the buried bag (213) is greater than the preset pressure, the concrete (4) inside the buried bag (213) can push the pressure relief plate (2131) away from the pressure relief port and flow into the soil around the buried bag (213) from the pressure relief port. After solidification, the concrete will form a concrete mesh structure similar to plant roots. The limiting device includes a pawl (2121) and a reset member. The slide rail (211) has a row of ratchet teeth (2111) that are adapted to the pawl (2121) along its own length direction. The root of the pawl (2121) is rotatably connected to the support frame (22), and the tip of the pawl (2121) abuts against the ratchet teeth (2111). The reset member is disposed on the support frame (22) and can restrict the claw tip of the ratchet (2111) from rotating away from the ratchet (2111). When the support frame (22) moves close to the bamboo clump (3) along the slide rail (211), the pawl (2121) can slide along a row of ratchet teeth (2111). When the support frame (22) moves away from the bamboo clump (3) along the slide rail (211), the claw tip of the pawl (2121) can be locked in a row of ratchet teeth (2111) and restrict the support frame (22) from moving away from the bamboo clump (3).

2. The wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions according to claim 1, characterized in that... The bundle (1) includes a strap (11) and a connector. A row of connecting holes (111) is provided on the strap (11) along its length. The connector is located on the strap (11) at one end away from the connecting holes (111) and is detachably connected to any of the connecting holes (111).

3. The wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions according to claim 2, characterized in that... The connector is a cable tie, and a fixing hole adapted to the cable tie is provided at one end of the cable tie (11) away from the connecting hole (111).

4. The wind-resistant and survival-preserving device for newly planted bamboo forests in high-altitude and cold regions according to claim 2, characterized in that... The connector is a snap fastener (12) that can engage with any of the connecting holes (111).

Citation Information

Patent Citations

  • Protection device used after tree transplanting

    CN113170697A