Brassica oleracea seed plant fixing support
By designing an adjustable cabbage seedling support, the problems of instability and scratches of traditional support materials were solved, achieving stable support and improving cabbage yield and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUNING COUNTY LVYUAN VEGETABLE TECH SERVICE CO LTD
- Filing Date
- 2025-05-21
- Publication Date
- 2026-04-17
AI Technical Summary
In traditional cabbage cultivation, materials such as bamboo poles and wooden sticks provide unstable support, easily scratching the main branches of the cabbage and making it difficult to adjust, thus affecting yield and quality.
A cabbage seedling fixing bracket was designed, which includes a fixing part and a support part. The support part consists of a first reinforcement frame and a second reinforcement frame. The opening and closing degree can be adjusted by an adjustment mechanism to adapt to the thickness of the main branches of the cabbage and provide stable support.
Reduce the tilting or falling of main branches during cabbage planting to avoid scratches and improve yield and quality.
Smart Images

Figure CN224124766U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cabbage planting technology, specifically a cabbage seedling fixing support. Background Technology
[0002] Cabbage is an annual or biennial herbaceous plant belonging to the Brassicaceae family and the Brassica genus. It is rich in high-quality protein, fiber, minerals, vitamins, and other nutrients, giving it significant economic value. During cabbage cultivation, scientific management and support of the plants are necessary to improve yield and quality. Especially in the middle and later stages of cabbage growth, as the main stem gradually thickens and increases in weight, a lack of effective support can easily cause the main stem to break, affecting yield and quality.
[0003] Traditional cabbage cultivation methods typically use simple materials like bamboo poles and wooden sticks to support the main stems. However, this method has several drawbacks. For example, bamboo poles and wooden sticks are hard and can easily scratch the cabbage stems; their support is also unstable and easily affected by natural factors such as wind and rain. Furthermore, traditional support methods lack adjustability and cannot be flexibly adjusted according to the growth of the cabbage stems, resulting in poor support effectiveness. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] This invention provides a support for fixing cabbage seedlings, which solves the problems mentioned in the background art.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, this utility model provides the following technical solution: a cabbage seedling fixing bracket, comprising a fixing part and a supporting part, wherein the supporting part is connected and disposed on the fixing part, and the supporting part is adjustable in opening and closing degree for supporting the main branch of the cabbage seedling; the supporting part includes a first reinforcing frame, a second reinforcing frame, two positioning shafts, and an adjusting mechanism; the first reinforcing frame and the second reinforcing frame are symmetrically arranged, and the middle of each of the first reinforcing frame and the second reinforcing frame is rotatably connected to the fixing part by a positioning shaft; the adjusting mechanism is connected to the end of the first reinforcing frame and the second reinforcing frame respectively, and the adjusting mechanism is used to adjust the deflection state of the first reinforcing frame and the second reinforcing frame, so that the first reinforcing frame and the second reinforcing frame can form a cavity that matches the main branch of the cabbage seedling.
[0008] Preferably, the adjusting mechanism includes a telescopic rod, a first connecting shaft, a second connecting shaft, a first connecting frame, a second connecting frame, and a diagonal rod. The two ends of the telescopic rod are respectively sleeved on the first connecting shaft and the second connecting shaft and rotatably connected thereto. The first connecting frame is fixedly connected to the end of the first connecting shaft, and the second connecting frame is fixedly connected to the end of the second connecting shaft. The ends of the first connecting frame away from the first connecting shaft and the ends of the second connecting frame away from the second connecting shaft are respectively rotatably connected to the two ends of the diagonal rod. The ends of the first reinforcing frame and the second reinforcing frame near the adjusting mechanism are respectively sleeved on the second connecting shaft and the first connecting shaft and fixedly connected thereto.
[0009] In a further preferred embodiment, the telescopic rod includes a sleeve, a cover, a lug, an inner plug, and a rod. The inner cavity of the sleeve extends through one end of the sleeve, and the cover is locked to the inner cavity of the sleeve. The lug is formed on the cover and rotatably connected to the second connecting shaft. The inner plug is slidably disposed in the inner cavity of the sleeve, and a rubber ring is fitted around the outer ring of the inner plug. The outer wall of the rubber ring is in contact with the inner wall of the sleeve. The rod is formed at the center of the inner plug and extends through the sleeve away from the cover. The rod is rotatably connected to the first connecting shaft.
[0010] In a further preferred embodiment, the fixing part includes a base, with top supports formed on opposite sides of the top of the base and bottom supports formed on opposite sides of the bottom of the base. Coaxially distributed connecting holes are formed on both the top and bottom supports on the same side. The two ends of the positioning shaft are respectively inserted into the two connecting holes on the same side. A through-hole fixing groove is also formed on the top and bottom supports, and an anchor rod is detachably inserted into the fixing groove to limit the position of the fixing part. The bottom end of the anchor rod is tapered.
[0011] (III) Beneficial Effects
[0012] Compared with the prior art, this utility model provides a cabbage seedling fixing support, which has the following beneficial effects:
[0013] In this invention, the fixing part and the supporting part are arranged in a coordinated manner so that the cabbage seed fixing bracket can be fixed next to the cabbage seed. Furthermore, through the cooperation of the first reinforcing frame and the second reinforcing frame in the supporting part, the bracket can be fitted on the outside of the main branch of the cabbage seed according to its thickness. Thus, the first reinforcing frame and the second reinforcing frame provide auxiliary reinforcement support for the main branch of the cabbage seed, thereby reducing the tilting or falling of the cabbage seed during the planting process and avoiding scratches on the main branch when supporting it. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the cabbage seedling support structure according to the implementation plan;
[0015] Figure 2 for Figure 1 A schematic diagram of the support structure for fixing Chinese cabbage seedlings from another angle;
[0016] Figure 3 This is a structural schematic diagram of the fixing part according to the implementation plan;
[0017] Figure 4 This is a structural schematic diagram of the support section according to the implementation plan;
[0018] Figure 5 This is a structural schematic diagram of the telescopic rod according to the implementation plan.
[0019] In the diagram: 10. Fixing part; 11. Base; 12. Top bracket; 13. Bottom bracket; 14. Fixing groove; 15. Connecting hole; 20. Support part; 21. Telescopic rod; 211. Sleeve; 212. Cover; 213. Lug; 214. Inner plug; 215. Rubber ring; 216. Rod body; 22. First connecting shaft; 23. Second connecting shaft; 24. First connecting frame; 25. Second connecting frame; 26. First reinforcing frame; 27. Second reinforcing frame; 28. Diagonal bar; 29. Positioning shaft. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figure 1 and Figure 2 A cabbage seedling support includes a fixing part 10 and a supporting part 20. The supporting part 20 is connected to the fixing part 10 and is used to support the main branches of the cabbage seedling with an adjustable opening and closing degree. The fixing part 10 is used to place and fix the entire device.
[0022] See Figure 3The fixing part 10 includes a base 11. Top supports 12 are formed on opposite sides of the top of the base 11, and bottom supports 13 are formed on opposite sides of the bottom of the base 11. Coaxially distributed connecting holes 15 are formed on both the top supports 12 and the bottom supports 13 on the same side. The connecting holes 15 are used to connect with the support part 20. A through-hole fixing groove 14 is also formed on the top supports 12 and the bottom supports 13. Several anchor rods are detachably inserted into the fixing groove 14. The bottom ends of the anchor rods are tapered and extend downwards from the fixing part 10 and insert into the ground, so that the multiple anchor rods limit and fix the fixing part 10 as a whole.
[0023] See Figure 4 The support part 20 includes a first reinforcing frame 26, a second reinforcing frame 27, two positioning shafts 29, and an adjustment mechanism. The first reinforcing frame 26 and the second reinforcing frame 27 are symmetrically arranged. The two ends of each positioning shaft 29 are respectively inserted into two connecting holes 15 located on the same side and rotatably connected to the fixing part 10. The two positioning shafts 29 are respectively inserted into the middle of the first reinforcing frame 26 and the second reinforcing frame 27 and fixedly connected thereto, so that the middle of the first reinforcing frame 26 and the second reinforcing frame 27 are rotatably connected to the fixing part 10 by one positioning shaft 29. The adjustment mechanism is connected to the end of the first reinforcing frame 26 and the second reinforcing frame 27 that is close to each other, and the adjustment mechanism is used to adjust the deflection state of the first reinforcing frame 26 and the second reinforcing frame 27, so that the first reinforcing frame 26 and the second reinforcing frame 27 can form a cavity that matches the main branch of the cabbage plant, thereby using the first reinforcing frame 26 and the second reinforcing frame 27 to reinforce and support the outside of the main branch of the cabbage plant.
[0024] In this embodiment, the adjustment mechanism includes a telescopic rod 21, a first connecting shaft 22, a second connecting shaft 23, a first connecting frame 24, a second connecting frame 25, and a diagonal rod 28. Both ends of the telescopic rod 21 are respectively sleeved on and rotatably connected to the first connecting shaft 22 and the second connecting shaft 23. The first connecting frame 24 is fixedly connected to the end of the first connecting shaft 22, and the second connecting frame 25 is fixedly connected to the end of the second connecting shaft 23. The ends of the first connecting frame 24 and the second connecting frame 25 away from the first connecting shaft 22 and the second connecting frame 25 away from the second connecting shaft 23, respectively, are rotatably connected to both ends of the diagonal rod 28. The ends of the first reinforcing frame 26 and the second reinforcing frame 27 near the adjustment mechanism are respectively sleeved on and fixedly connected to the second connecting shaft 23 and the first connecting shaft 22. When the user pushes the telescopic rod 21 to make it extend or retract, the first connecting shaft 22 and the second connecting shaft 23 can be moved by its two ends respectively, and the first reinforcing frame 26 and the second reinforcing frame 27 can be deflected towards or away from each other by the drive of the diagonal rod 28, thereby adjusting the size of the cavity formed between the first reinforcing frame 26 and the second reinforcing frame 27.
[0025] See Figure 5The telescopic rod 21 includes a sleeve 211, a cover 212, a lug 213, an inner plug 214, a rubber ring 215, and a rod 216. The inner cavity of the sleeve 211 extends through one end, and the cover 212 covers and securely connects to the inner cavity of the sleeve 211. The lug 213 is formed on the cover 212 and rotatably connected to the second connecting shaft 23. The inner plug 214 is slidably disposed within the inner cavity of the sleeve 211. A rubber ring 215 is fitted around the outer ring of the inner plug 214, and the outer wall of the rubber ring 215 contacts the inner wall of the sleeve 211. The frictional resistance between the rubber ring 215 and the sleeve 211 helps the inner plug 214 maintain its position when not pushed. The rod 216 is formed at the center of the inner plug 214 and extends out of the sleeve 211 away from the cover 212. The rod 216 is rotatably connected to the first connecting shaft 22. The rod 216 can adjust the distance between the rod 216 and the lug 213 by using the movement of the inner plug 214 within the sleeve 211.
[0026] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, welding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.
Claims
1. A fixing support for a Brassica oleracea plant, characterized in that, It includes a fixing part (10) and a supporting part (20), wherein the supporting part (20) is connected to the fixing part (10), and the supporting part (20) is adjustable in opening and closing to support the main branches of the cabbage plant. The support part (20) includes a first reinforcing frame (26), a second reinforcing frame (27), two positioning shafts (29), and an adjustment mechanism. The first reinforcing frame (26) and the second reinforcing frame (27) are symmetrically arranged, and the middle of the first reinforcing frame (26) and the second reinforcing frame (27) are rotatably connected to the fixing part (10) by a positioning shaft (29). The adjustment mechanism is connected to the end of the first reinforcing frame (26) and the second reinforcing frame (27) that are close to each other. The adjustment mechanism is used to adjust the deflection state of the first reinforcing frame (26) and the second reinforcing frame (27) so that the first reinforcing frame (26) and the second reinforcing frame (27) can form a cavity that matches the main branch of the cabbage plant.
2. The cabbage seedling support according to claim 1, characterized in that: The adjustment mechanism includes a telescopic rod (21), a first connecting shaft (22), a second connecting shaft (23), a first connecting frame (24), a second connecting frame (25), and a diagonal rod (28). The two ends of the telescopic rod (21) are respectively sleeved on the first connecting shaft (22) and the second connecting shaft (23) and rotatably connected thereto. The first connecting frame (24) is fixedly connected to the end of the first connecting shaft (22), and the second connecting frame (25) is fixedly connected to the end of the second connecting shaft (23). The end of the first connecting frame (24) away from the first connecting shaft (22) and the end of the second connecting frame (25) away from the second connecting shaft (23) are respectively rotatably connected to the two ends of the diagonal rod (28). The ends of the first reinforcing frame (26) and the second reinforcing frame (27) close to the adjustment mechanism are respectively sleeved on the second connecting shaft (23) and the first connecting shaft (22) and fixedly connected thereto.
3. A support for fixing a brassica plant according to claim 2, characterised in that: The telescopic rod (21) includes a sleeve (211), a cover (212), a lug (213), an inner plug (214), and a rod (216). The inner cavity of the sleeve (211) extends through the sleeve (211) to one end, and the cover (212) covers and securely connects to the inner cavity of the sleeve (211). The lug (213) is formed on the cover (212) and is rotatably connected to the second connecting shaft (23). The inner plug (214) is slidably disposed in the inner cavity of the sleeve (211). The rod (216) is formed at the center of the inner plug (214), and the rod (216) extends out of the sleeve (211) with its back to the cover (212). The rod (216) is rotatably connected to the first connecting shaft (22).
4. A support for brassica plants according to claim 3 wherein: The outer ring of the inner plug (214) is fitted with a rubber ring (215), and the outer wall of the rubber ring (215) is in contact with the inner wall of the sleeve (211).
5. The fixing support for brassica plants according to any one of claims 1-4, characterized in that: The fixing part (10) includes a base (11), with top supports (12) formed on opposite sides of the top of the base (11) and bottom supports (13) formed on opposite sides of the bottom of the base (11). The top supports (12) and bottom supports (13) on the same side are provided with coaxially distributed connecting holes (15), and the two ends of the positioning shaft (29) are respectively inserted into the two connecting holes (15) on the same side.
6. A support for brassica plants according to claim 5 wherein: The top support (12) and bottom support (13) are also provided with a through-hole fixing groove (14), and an anchor rod is detachably inserted into the fixing groove (14) to limit the position of the fixing part (10). The bottom end of the anchor rod is set to be conical.