Plant layering propagation box
By designing a plant layering propagation box that combines a mask, a transparent inner shell, and an opaque outer shell, the problem of not being able to simultaneously manage rooting and observation in existing technologies is solved. It provides a detachable dark growing environment and an observation window, improving the controllability and efficiency of the layering process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-06
- Publication Date
- 2026-03-10
AI Technical Summary
Existing plant layering propagation boxes cannot simultaneously meet the needs of promoting root growth and facilitating observation. Transparent boxes are not conducive to root growth, while opaque boxes are not convenient for observing the rooting process.
A plant layering propagation box was designed, which adopts a combination structure of a cover, a transparent inner shell and an opaque outer shell. The cover is made of opaque material and the inner shell is made of transparent material, forming a detachable dark growth environment while providing an observation window. It is fixed to the branches by straps or bolts.
This allows for easy observation of the rooting process of layering without affecting root growth, thus improving the controllability and efficiency of the layering process.
Smart Images

Figure CN223979179U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of plant layering propagation technology, specifically a plant layering propagation box. Background Technology
[0002] Layering is a method of artificial asexual reproduction (vegetative propagation) of plants. It involves burying the branches or vines of a plant in a moist substrate, and after they take root, they are separated from the mother plant to form a new plant.
[0003] Roots are photophobic; light can interfere with the normal metabolism and function of root cells, while a dark environment is more conducive to root growth.
[0004] The applicant of this utility model discovered that existing plant layering propagation boxes are basically composed of two parts made of the same material. They are either transparent, which is not conducive to root growth, or opaque, which makes it difficult to observe the rooting process during layering. Summary of the Invention
[0005] The purpose of this invention is to provide a novel plant layering propagation box, aiming to improve the problem that existing plant layering propagation boxes cannot simultaneously promote rooting and facilitate observation during the layering process. The method of achieving this invention is as follows:
[0006] A plant layering propagation box includes a cover 1, a middle shell 2, and a side shell 3. The cover 1 is made of opaque material and is connected to the middle shell 2. The middle shell 2 is made of transparent material and is connected to the side shell 3. The side shell 3 is made of opaque material. Each of the cover 1, the middle shell 2, and the side shell 3 has a cavity. The cover 1 has a cover cavity 11, the middle shell 2 has a middle shell propagation cavity 21, and the side shell 3 has a side shell propagation cavity 31. The concave surface of the cavity is the inner wall, and the convex surface of the cavity is the outer wall. In the assembled state, the inner wall of the cover cavity 11 fits against the outer wall of the middle shell propagation cavity 21, and the cover cavity 11 can completely cover the outer wall of the middle shell propagation cavity 21. The middle shell propagation cavity 21 and the side shell propagation cavity 31 together form the layering propagation cavity.
[0007] Preferably, the cover 1 has four to six cover positioning holes 12, evenly distributed around the cavity; the middle shell 2 has four to six cover middle shell positioning holes 22 and breeding box middle shell positioning holes 23, and four breeding box middle shell positioning holes 23 are distributed at the four corners of the breeding box; the side shell 3 has four to six cover side shell positioning holes 32 and breeding box side shell positioning holes 33, and four breeding box side shell positioning holes 33 are distributed at the four corners of the breeding box; in the assembled state, the cover positioning holes 12, cover middle shell positioning holes 22 and cover side shell positioning holes 32 are in corresponding positions, and the breeding box middle shell positioning holes 23 and breeding box side shell positioning holes 33 are in corresponding positions.
[0008] Preferably, the middle shell 2 is provided with a middle shell water inlet 24 and a middle shell drain outlet 25, the outer contour of the middle shell water inlet 24 is larger than that of the middle shell drain outlet 25, and the side shell 3 is provided with a side shell water inlet 34 and a side shell drain outlet 35, the outer contour of the side shell water inlet 34 is larger than that of the side shell drain outlet 35. In the assembled state, the middle shell water inlet 24 and the side shell water inlet 34 are in corresponding positions, and the middle shell drain outlet 25 and the side shell drain outlet 35 are in corresponding positions.
[0009] Preferably, the inner shell 2 and the side shell 3 have the same external dimensions to reduce production costs. Attached Figure Description
[0010] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, do not constitute an undue limitation of the present invention. In the drawings:
[0011] Figure 1 This is a schematic diagram of a plant layering propagation box in its assembled state;
[0012] Figure 2 This is a schematic diagram of the masking process.
[0013] Figure 3 This is a schematic diagram of the middle shell;
[0014] Figure 4 This is a schematic diagram of the side shell.
[0015] In the diagram: 1. Shield; 2. Middle shell; 3. Side shell; 11. Shield cavity; 12. Shield positioning hole; 21. Middle shell breeding cavity; 22. Shield middle shell positioning hole; 23. Breeding box middle shell positioning hole; 24. Middle shell water inlet; 25. Middle shell drain; 31. Side shell breeding cavity; 32. Shield side shell positioning hole; 33. Breeding box side shell positioning hole; 34. Side shell water inlet; 35. Side shell drain. Detailed Implementation
[0016] After girdling and peeling the bark of the plant branch, fill the middle shell propagation chamber 21 and the side shell propagation chamber 31 with moist, water-retaining soil substrate, wrap the girdled part of the branch and compact it. The water inlet 24 of the middle shell and the water inlet 34 of the side shell correspond to each other and face the top of the branch to facilitate the entry and exit of rainwater and also to facilitate artificial watering during the layering process. The middle shell 2 faces the operator to facilitate the observation of the rooting of the layering. The positioning holes 23 of the middle shell and 33 of the side shell of the propagation box correspond to each other. Use straps or bolts and nuts to pass through the positioning holes 23 of the middle shell and 33 of the side shell of the propagation box to fix the middle shell and the side shell to the branch.
[0017] Cover the middle shell 2 with the cover 1. The positions of the cover positioning holes 12, 22, and 32 are corresponding. The notches around the cover 1 can avoid the straps or nuts used to bind the middle shell 2 and the side shell 3. Use straps, bolts, or nuts to pass through the cover positioning holes 12, 22, and 32 to fix the cover 1 to the middle shell. The cover 1 will create a dark growth environment conducive to rooting in the layering propagation chamber. The binding of the cover 1 can prevent the layering propagation box from bulging and deforming during the layering process, which is beneficial for the reuse of the layering propagation box.
[0018] Every so often, the binding straps or bolts and nuts of the cover 1 can be loosened to observe the rooting at the girdled section of the layering through the inner shell 2. Then, the cover 1 can be secured again with the binding straps or bolts and nuts. Repeated observations can be performed simply by repeatedly removing and removing the cover 1, which will not affect the root growth of the branches in the layering propagation chamber.
[0019] The inner shell 2 and the outer shell 3 have the same external dimensions. Based on the above implementation method, the outer shell 3 made of opaque material can be replaced with a transparent inner shell 2. A cover 1 is added to the outside of the newly replaced inner shell 2. That is, two transparent inner shells 2 are used to form a layering propagation chamber, and two opaque covers 1 are used to block the light. Although this slightly increases the cost, it is more conducive to observing the rooting of the layering ring cut without affecting the root growth during the layering propagation process.
[0020] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A plant layering box, characterized in that, The application relates to a cutting propagation box, which comprises a cover (1), a middle shell (2) and a side shell (3), the cover (1) is made of opaque material, is connected with the middle shell (2), the middle shell (2) is made of transparent material, is connected with the side shell (3), and the side shell (3) is made of opaque material; the cover (1), the middle shell (2) and the side shell (3) are all provided with cavities, the cover (1) is provided with a cover cavity (11), the middle shell (2) is provided with a middle shell propagation cavity (21), and the side shell (3) is provided with a side shell propagation cavity (31); the concave surface of the cavity is an inner wall, the convex surface of the cavity is an outer wall, in the spliced state, the inner wall of the cover cavity (11) is attached to the outer wall of the middle shell propagation cavity (21), and the cover cavity (11) can completely cover the outer wall of the middle shell propagation cavity (21); the middle shell propagation cavity (21) and the side shell propagation cavity (31) jointly form a cutting propagation cavity.
2. A plant layering box according to claim 1, characterized in that The cover (1) is provided with a cover positioning hole (12), the middle shell (2) is provided with a cover middle shell positioning hole (22) and a propagation box middle shell positioning hole (23), the side shell (3) is provided with a cover side shell positioning hole (32) and a propagation box side shell positioning hole (33), in the spliced state, the cover positioning hole (12), the cover middle shell positioning hole (22) and the cover side shell positioning hole (32) are in position correspondence, and the propagation box middle shell positioning hole (23) and the propagation box side shell positioning hole (33) are in position correspondence.
3. A plant layering box according to claim 1, wherein The middle shell (2) is provided with a middle shell water inlet (24) and a middle shell water outlet (25), the side shell (3) is provided with a side shell water inlet (34) and a side shell water outlet (35), in the spliced state, the middle shell water inlet (24) and the side shell water inlet (34) are in position correspondence, and the middle shell water outlet (25) and the side shell water outlet (35) are in position correspondence.
4. The plant layering cartridge of claim 1, wherein, The middle shell (2) and the side shell (3) have the same outer dimensions.