Chinese rose stock variety screening cultivation box
By introducing a retractable extension rod and snap-fit structure into the rose rootstock variety selection and cultivation box, the problems of inaccurate pollen delivery and simple structure in the existing technology have been solved. This enables spatial adjustment and fixation stability according to the plant growth stage, thereby improving the survival rate and ease of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-03-31
AI Technical Summary
Existing rose rootstock variety selection and cultivation boxes suffer from inaccurate pollen delivery during laser restoration, have a simple structure, and cannot be adjusted according to the height requirements of different varieties. This results in limited cultivation space for plants at different growth stages, affecting survival rate and practicality.
A rose rootstock variety selection and cultivation box was designed, which adopts a telescopic extension rod and snap-fit structure. It can adjust the cultivation space according to the plant growth stage and size changes. The snap-fit and arc groove design achieves stable connection and convenient disassembly. Combined with observation port, spray pipe and adjustment components, it promotes healthy plant growth.
It enables convenient adjustment according to the plant's growth stage, ensures sufficient growing space, improves the survival rate and practicality of the cultivation box, and enhances the stability and ease of use.
Smart Images

Figure CN224054918U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of screening and cultivation tools, and in particular to a rose rootstock variety screening and cultivation box. Background Technology
[0002] With the continuous progress of society, people attach great importance to environmental greening. Roses are one of the most common flowers in our lives. In order to improve the breeding effect of roses, cuttings are used in the cultivation of rose rootstock varieties. Therefore, the selection and cultivation of rose rootstock varieties affects the planting and cultivation of roses.
[0003] Existing rose rootstock variety selection and cultivation boxes have certain drawbacks. First, the powder delivery is inadequate during deep-hole laser repair, affecting the repair effect. Second, the main purpose of the selection and cultivation box is to facilitate the cultivation of rose rootstock varieties and increase the survival rate. However, most commonly used rose rootstock variety selection and cultivation boxes have a simple structure and cannot be adjusted according to the height requirements of different varieties. They are also not effective in regulating changes in plant growth stages and length, resulting in limited cultivation space for plants at different growth stages and affecting the practicality of the selection and cultivation box. Therefore, we propose a rose rootstock variety selection and cultivation box. Utility Model Content
[0004] To overcome the shortcomings of existing technologies, the purpose of this utility model is to provide a rose rootstock variety selection and cultivation box. By setting extension rods, multiple extension rods can form a support structure on the outside of the cultivation box body. The extension rods are telescopic, allowing the cultivation box body to be moved to different positions for height adjustment as needed. When different lengths are required for plant production, multiple extension rings can be connected sequentially by engaging external locking blocks into the inner ends of the locking slots, increasing the structural length of the cultivation box body. The extension rings are easy to disassemble, allowing the rose rootstock variety selection and cultivation box to be easily adjusted. This enables the cultivation box to easily adjust the cultivation space according to changes in plant growth stages and size, ensuring that plants have sufficient growth space at different growth stages to promote healthy growth and improving the practicality of the rose rootstock variety selection and cultivation box.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0006] A rose rootstock variety screening and cultivation box includes a main body, an adjustment mechanism installed at the outer end of the main body, and a connecting mechanism installed at the inner end of the adjustment mechanism.
[0007] The adjustment mechanism includes reinforcing rods arranged in a ring at the upper end of the main body. Each reinforcing rod has an extension rod slidably connected to its inner end. Each extension rod has a connecting block installed at its inner end. Multiple extension rings are movably connected to the lower inner side of each connecting block. Multiple locking blocks are installed at the bottom of each extension ring. Each locking block has a locking groove at its outer end. A symmetrically distributed locking component is installed at the inner end of the locking groove.
[0008] The practicality of the rose rootstock variety selection and cultivation box can be improved by installing an extension rod.
[0009] Furthermore, the outer end of the card block is provided with symmetrically distributed arc-shaped grooves, and the arc-shaped grooves are movably connected to the card connector.
[0010] By installing the snap-fit connector and the arc-shaped groove, the extension ring can be fixed more stably and disassembled more easily.
[0011] Furthermore, the inner end of the reinforcing rod is threaded with multiple positioning rods, and each positioning rod has a locking head installed at its front end.
[0012] The ease of use of the device structure is improved by installing a positioning rod.
[0013] Furthermore, the main body mechanism includes a support frame, with multiple insert rods installed at the bottom end of the support frame, and the incubator body is movably connected to the inner side of the support frame.
[0014] The installation of insert rods makes the screening incubator easy to position and use.
[0015] Furthermore, an observation port is provided at the outer end of the incubator body, and a connecting cover is slidably connected to the inner end of the observation port.
[0016] By installing a connecting cover, the incubator can be easily observed during use, and it also allows for ventilation.
[0017] Furthermore, a sensing component is installed at the inner end of the incubator body, and a connecting pipe is movably connected to the outer side of the incubator body, with an annular spray pipe fixedly connected to the front end of the connecting pipe.
[0018] By installing a ring-shaped spray nozzle, the screening and cultivation box can be used to spray and cultivate plants.
[0019] Furthermore, the outer end of the annular nozzle is fixedly connected to a plurality of uniformly distributed nozzles, and the inner end of the incubation box body is equipped with symmetrically distributed adjustment components. The inner end of the adjustment components is slidably connected to a slider, and the outer end of each slider is equipped with a telescopic rod.
[0020] The effectiveness of this screening and incubation chamber has been further improved by installing adjustment components and telescopic rods.
[0021] Furthermore, a retaining ring is installed at the transmission end of the telescopic rod.
[0022] By installing grafting rings, a pair of rings can protect the graft union of the plant, preventing it from falling off and further improving the success rate of cultivation in the incubator.
[0023] In summary, this utility model has the following beneficial effects:
[0024] 1. By setting extension rods, multiple extension rods can form a support structure on the outside of the cultivation box body. The extension rods are telescopic, allowing the cultivation box body to be moved to different positions for height adjustment as needed. When different lengths are required for plant production, multiple extension rings can be connected sequentially by snapping them into the slots via external clips, increasing the structural length of the cultivation box body. The extension rings are easy to disassemble, allowing the rose rootstock variety selection cultivation box to be easily adjusted. This allows the cultivation box to be easily adjusted according to changes in plant growth stage and size, ensuring that plants have sufficient growth space at different growth stages to promote healthy growth and improving the practicality of the rose rootstock variety selection cultivation box.
[0025] 2. By setting a snap-fit component and an arc-shaped groove, the snap-fit component is composed of an elastic element and an arc-shaped positioning head. The snap-fit component can be stably snapped into the arc-shaped groove on the outside of the snap-fit block. When the extension rings need to be disassembled, the extension rings are pulled, and the arc-shaped snap-fit component can be easily separated from the arc-shaped groove, making the extension ring more stable to use and easier to disassemble.
[0026] 3. By setting up an adjustment component and a telescopic rod, the adjustment component consists of a connecting frame and an internal lifting rod. The adjustment component can drive the slider to rise and fall, the slider in turn drives the telescopic rod to move, and the telescopic rod adjusts and drives the retaining ring, allowing the retaining ring to move to different positions to position and protect the grafting site of the plant, thus further improving the effectiveness of the screening and cultivation box. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure in this embodiment;
[0028] Figure 2 This is a schematic diagram of the plane structure of the adjustment mechanism in this embodiment;
[0029] Figure 3 This is in this embodiment Figure 2 A magnified structural diagram of the plane at point A in the middle;
[0030] Figure 4 This is a schematic diagram of the annular nozzle in the top view of this embodiment;
[0031] Figure 5This is a structural schematic diagram of the cross-section of the adjustment component in this embodiment.
[0032] In the diagram, 1. Main body mechanism; 101. Support; 102. Insert rod; 103. Incubator body; 104. Observation port; 105. Connecting cover; 2. Adjustment mechanism; 201. Reinforcing rod; 202. Extension rod; 203. Connecting block; 204. Extension ring; 205. Locking block; 206. Locking slot; 207. Locking component; 208. Arc groove; 209. Positioning rod; 210. Locking head; 3. Connection mechanism; 301. Sensing component; 302. Connecting pipe; 303. Annular nozzle; 304. Nozzle; 305. Adjustment component; 306. Slider; 307. Telescopic rod; 308. Locking ring. Detailed Implementation
[0033] The present invention will be further described in detail below with reference to the accompanying drawings.
[0034] Identical parts are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "bottom surface," "top surface," "inner," and "outer" refer to directions toward or away from the geometric center of a specific part, respectively.
[0035] Reference Figure 1-5 As shown, a rose rootstock variety screening and cultivation box is provided in a preferred embodiment of the present invention, including a main body mechanism 1, an adjustment mechanism 2 installed at the outer end of the main body mechanism 1, and a connecting mechanism 3 installed at the inner end of the adjustment mechanism 2.
[0036] The adjustment mechanism 2 includes a reinforcing rod 201, which is arranged in a ring at the upper end of the main body mechanism 1. The inner ends of the reinforcing rods 201 are slidably connected to extension rods 202. The inner ends of the extension rods 202 are all equipped with connecting blocks 203. Multiple extension rings 204 are movably connected to the lower inner side of the connecting blocks 203. Multiple locking blocks 205 are installed at the bottom of the extension rings 204. The outer ends of the locking blocks 205 are provided with locking grooves 206. The inner ends of the locking grooves 206 are equipped with symmetrically distributed locking components 207.
[0037] Reference Figure 2-3 As shown, the outer end of the card block 205 is provided with symmetrically distributed arc-shaped grooves 208, and the arc-shaped grooves 208 are movably connected to the card connector 207.
[0038] Reference Figure 1-2 As shown, further, the inner end of the reinforcing rod 201 is threaded with multiple positioning rods 209, and each positioning rod 209 has a clamp 210 installed at its front end.
[0039] By installing multiple extension rods 202, a support structure can be formed on the outside of the cultivation box body 103. The extension rods 202 are telescopic, allowing the cultivation box body 103 to be moved to different positions for height adjustment as needed. Rotating the positioning rod 209 moves the locking head 210, allowing the extension rod 202 to slide and extend to the required length within the reinforcing rod 201 for easy positioning. When different lengths are required for plant production, multiple extension rings 204 can be connected sequentially by engaging them with external locking blocks 205 into the inner ends of the locking slots 206, thus increasing the structural length of the cultivation box body 103. The snap-fit component 207 consists of an elastic element and an arc-shaped positioning head. The snap-fit component 207 can be stably snapped into the arc-shaped groove 208 on the outside of the snap-fit block 205. When the extension rings 204 need to be disassembled, the extension rings 204 can be pulled, and the arc-shaped snap-fit component 207 can be easily separated from the arc-shaped groove 208, making the extension rings 204 more stable in use and fixing. The extension rings 204 are easy to disassemble, which allows the rose rootstock variety selection and cultivation box to be easily adjusted. This allows the cultivation box to be easily adjusted according to the changes in plant growth stage and size, ensuring that the plants have sufficient growth space at different growth stages to promote healthy growth.
[0040] Reference Figure 1 As shown, the main body mechanism 1 further includes a support 101, a plurality of insert rods 102 are installed at the bottom end of the support 101, and the incubator body 103 is movably connected to the inner side of the support 101.
[0041] Reference Figure 1 As shown, further, an observation port 104 is provided at the outer end of the incubator body 103, and a connecting cover 105 is slidably connected to the inner end of the observation port 104.
[0042] By installing multiple insertion rods 102 and inserting them into the ground, the entire device can be positioned on the soil around the plant, making the selection and cultivation box easy to use and position. Pushing the connecting cover 105 upwards, along with the observation port 104, allows for easy observation of the cultivation box during use and facilitates ventilation.
[0043] Reference Figure 4 As shown, a sensing component 301 is installed at the inner end of the incubator body 103, and a connecting pipe 302 is movably connected to the outer side of the incubator body 103. An annular nozzle 303 is fixedly connected to the front end of the connecting pipe 302.
[0044] Reference Figure 4-5 As shown, further, the outer end of the annular nozzle 303 is fixedly connected to a plurality of uniformly distributed nozzles 304, and the inner end of the incubation box body 103 is equipped with symmetrically distributed adjustment components 305. The inner end of the adjustment components 305 is slidably connected to a slider 306, and the outer end of each slider 306 is equipped with a telescopic rod 307.
[0045] Reference Figure 4-5 As shown, a retaining ring 308 is further installed on the transmission end of the telescopic rod 307.
[0046] By installing the annular nozzle 303, water transmitted from the external water source via the connecting pipe 302 can be sprayed out. Multiple nozzles 304 on the outside of the annular nozzle 303 can evenly spray water, increasing the functionality of the screening and cultivation box. The adjustment component 305 consists of a connecting frame and an internal lifting rod. The adjustment component 305 can drive the slider 306 to rise and fall, and the slider 306 drives the telescopic rod 307 to move. The telescopic rod 307 adjusts and drives the retaining ring 308, allowing the retaining ring 308 to move to different positions to position and protect the grafting site of the plant.
[0047] Specific implementation process: When using this device, the structure is first adjusted according to the length of the plant. Multiple extension rods 202 can form a support structure on the outside of the cultivation box body 103. The extension rods 202 are telescopic, allowing the cultivation box body 103 to be moved to different positions for height adjustment as needed. When different lengths are required for plant production, multiple extension rings 204 are engaged with the inner end of the slot 206 via external locking blocks 205. The locking component 207 consists of an elastic element and an arc-shaped positioning head. The locking component 207 can engage with the locking block 206. 05 The external arc-shaped groove 208 provides a stable connection, and when the extension rings 204 need to be disassembled, the extension rings 204 can be pulled, and the arc-shaped snap-fit 207 can be easily separated from the arc-shaped groove 208, making the extension rings 204 more stable to fix. The sequential connection method increases the structural length of the cultivation box body 103, and the extension rings 204 are easy to disassemble, allowing the rose rootstock variety selection cultivation box to be easily adjusted, so that the cultivation box can be easily adjusted according to the plant growth stage and size changes.
[0048] After adjustment, multiple insertion rods 102 are inserted into the ground, allowing the entire device to be positioned on the soil around the plant. The annular nozzle 303 sprays water from the external water source via the connecting pipe 302. Multiple nozzles 304 on the outside of the annular nozzle 303 can evenly spray water, increasing the functionality of the screening and cultivation box. The adjustment component 305 consists of a connecting frame and an internal lifting rod. The adjustment component 305 can drive the slider 306 to rise and fall, which in turn drives the telescopic rod 307 to move. The telescopic rod 307 adjusts and drives the retaining ring 308, allowing the retaining ring 308 to move to different positions to position and protect the grafting site of the plant, further increasing the functionality of the cultivation box.
[0049] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A rose rootstock variety selection and breeding box, characterized by: Including the body mechanism (1), the outer end of the body mechanism (1) is equipped with the adjusting mechanism (2), and the inner end of the adjusting mechanism (2) is equipped with the connecting mechanism (3); The adjusting mechanism (2) comprises a reinforcing rod (201), which is annularly distributed on the upper end of the body mechanism (1), and the inner end of the reinforcing rod (201) is slidably connected with an extension rod (202), and the inner end of the extension rod (202) is equipped with a connecting block (203), and the inner side of the connecting block (203) is movably connected with a plurality of extension rings (204), and the bottom end of the extension ring (204) is equipped with a plurality of clamping blocks (205), and the outer end of the clamping block (205) is provided with a clamping groove (206), and the inner end of the clamping groove (206) is equipped with a symmetrically distributed clamping piece (207).
2. The screening and breeding box for rose rootstock varieties according to claim 1, characterized in that: The outer end of the clamping block (205) is provided with a symmetrically distributed arc-shaped groove (208), and the arc-shaped groove (208) is movably connected with the clamping piece (207).
3. The screening and breeding box for rose rootstock varieties according to claim 1, characterized in that: The inner end of the reinforcing rod (201) is threadedly connected with a plurality of positioning rods (209), and the front end of the positioning rod (209) is equipped with a clamping head (210).
4. The screening and breeding box for rose rootstock varieties according to claim 1, characterized in that: The body mechanism (1) comprises a support (101), and the bottom end of the support (101) is equipped with a plurality of insertion rods (102), and the inner side of the support (101) is movably connected with a cultivation box body (103).
5. The screening and breeding box for rose rootstock varieties according to claim 4, characterized in that: The outer end of the cultivation box body (103) is provided with an observation port (104), and the inner end of the observation port (104) is slidably connected with a connecting cover (105).
6. The screening and breeding box for rose rootstock varieties according to claim 5, characterized in that: The inner end of the cultivation box body (103) is equipped with an induction assembly (301), and the outer side of the cultivation box body (103) is movably connected with a connecting pipe (302), and the front end of the connecting pipe (302) is fixedly connected with an annular spray pipe (303).
7. The screening and breeding box for rose rootstock varieties according to claim 6, characterized in that: The outer end of the annular spray pipe (303) is fixedly connected with a plurality of uniformly distributed spray heads (304), and the inner end of the cultivation box body (103) is equipped with a symmetrically distributed adjusting assembly (305), and the inner end of the adjusting assembly (305) is slidably connected with a sliding block (306), and the outer end of the sliding block (306) is equipped with a telescopic rod (307).
8. The screening and breeding box for rose rootstock varieties according to claim 7, characterized in that: The transmission end of the telescopic rod (307) is equipped with a clamping ring (308).