A planting pot for raising a bonsai and a method of using the same

By using adjustable ring components and support mechanisms in the bonsai root lifting device, the problem of insufficient support structure is solved, enabling stable plant growth and reuse, and improving the survival rate of the root system in adapting to the sun-loving environment.

CN118901448BActive Publication Date: 2026-02-13GUANGDONG VOCATIONAL COLLEGE OF SCI & TRADE
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Patent Information

Application Number
CN202411278343.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2026-02-13
Estimated Expiration
2044-09-12

AI Technical Summary

Technical Problem

Existing bonsai root lifting devices suffer from insufficient support structure, are prone to tipping over, and are difficult to reuse.

Method used

It adopts a ring-shaped assembly and support mechanism that can be adjusted vertically and detached laterally to provide sufficient support strength to prevent the plant from tipping over. The root lifting effect is achieved by gradually removing the enclosure structure. The structure is simple and reusable.

Benefits of technology

It effectively prevents plants from tipping over, provides sufficient growing space, reduces costs, and improves the survival rate of roots adapting to sun-loving environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a planting pot for potted landscape root lifting and a use method thereof, which comprises a pot body and a surrounding structure installed in the pot body; the surrounding structure comprises a plurality of vertically stacked and connected ring sleeve assemblies, and a supporting mechanism is installed on the outer side of the ring sleeve assemblies; the surrounding assembly of the supporting mechanism is used for blocking the splicing part of the ring sleeve assemblies to prevent the ring sleeve assemblies from toppling and separating; the surrounding assembly is vertically moved to be adjusted and can be separated from the blocking part; the ring sleeve assemblies can be adjusted to be opened to release the closed loop state and release the surrounding at this height; the application can provide sufficient supporting strength and effectively prevent the problem of plant toppling; the application adopts vertically adjustable and transversely detachable structural components to achieve the effect of gradually releasing the surrounding so as to gradually remove the soil and achieve the required root lifting effect; the overall structure is simple, can be recycled and reused, and the cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of planting pots, and more particularly to a planting pot for raising roots of a bonsai and a method of using the same. BACKGROUND

[0002] The modeling of a tree stump / flower bonsai is an artistic processing of the branches of a plant, and the modeling of the roots is the most important; in the modeling of a bonsai, the roots are properly raised and exposed to achieve the desired effect.

[0003] Patent CN113179799A discloses a foldable root-raising flower pot. The pot neck is installed above the pot body, and the pot neck adopts a telescopic structure. When raising the roots of a plant, the soil in the pot neck can be removed, and then the pot neck is pulled down so that the upper end surface of the pot neck is flush with the upper end surface of the soil, so that the roots of the plant adapt to the sun, thereby achieving the effect of raising the roots.

[0004] However, it also has obvious defects. First, the soil needs to be piled up to a certain height for root-raising, and the support structure is obviously insufficient, which can easily cause the pot to tip over. Second, the soil is filled in the corrugated pipe, which can be stuck in the folded part inside, and it is difficult to shrink in actual use, which needs to be cut to be processed, which can cause damage and cannot be used again, increasing the overall cost. Therefore, it needs to be improved. SUMMARY

[0005] In order to overcome the defects of the prior art, the technical problem to be solved by the present application is to provide a planting pot for raising roots of a bonsai and a method of using the same, which can provide sufficient support strength and effectively prevent the plant from tipping over. The structure of the pot is simple, and the pot can be recycled and reused, thereby reducing the cost.

[0006] To achieve this purpose, the application adopts the following technical solutions:

[0007] The present application provides a planting pot for raising roots of a bonsai, which comprises a pot body and a surrounding structure installed in the pot body. The surrounding structure comprises a plurality of vertically stacked ring sleeve assemblies, and a support mechanism is installed on the outer side of the ring sleeve assembly. The surrounding assembly is used to block the joint of the ring sleeve assembly to prevent the ring sleeve assembly from tipping and separating. The surrounding assembly can be vertically moved by adjustment to be separated from the blocking part. The ring sleeve assembly can be opened by adjustment to break the closed loop and remove the surrounding at this height.

[0008] In the preferable technical scheme of the present application, the ring assembly comprises a first baffle and a second baffle, both of which are arc-shaped plate structures in semicircular shape, one end of the first baffle and the second baffle is rotationally connected and matched, and the other end is mutually buckled to form a detachable closed loop structure; the supporting mechanism comprises a supporting frame and a plurality of surrounding baffle assemblies installed on the supporting frame, the surrounding baffle assemblies are adjusted to move vertically along the supporting frame; the ring assembly is arranged inside the surrounding baffle assembly, and a sufficient interval for opening of the ring assembly is left on the supporting frame.

[0009] In the preferable technical scheme of the present application, the bottom surface of the first baffle is fixedly provided with two first clamping blocks, the two first clamping blocks are symmetrically arranged about the center plane of the first baffle, and the line connecting the two first clamping blocks and the center of the first baffle forms a 90° angle; the top surface of the first baffle is provided with two first clamping grooves, the first clamping grooves are shape-fitted with the first clamping blocks and correspond in position; the bottom surface of the second baffle is fixedly provided with two second clamping blocks, the two second clamping blocks are symmetrically arranged about the center plane of the second baffle, and the line connecting the two second clamping blocks and the center of the second baffle forms a 90° angle; the top surface of the second baffle is provided with two second clamping grooves, the second clamping grooves are shape-fitted with the second clamping blocks and correspond in position; the first clamping blocks and the second clamping blocks are the same in structure.

[0010] In the preferable technical scheme of the present application, the two ring assemblies are stacked and matched, one of the first clamping blocks is inserted into the first clamping groove of the lower ring assembly, and the other is inserted into the second clamping groove; one of the second clamping blocks is inserted into the first clamping groove of the lower ring assembly, and the other is inserted into the second clamping groove.

[0011] In the preferable technical scheme of the present application, the supporting frame comprises a base frame, and at least two supporting rods are installed on the base frame; the surrounding baffle assembly is in a closed loop structure, is slidingly installed on the supporting rods, and is adjusted and locked at the height of the splicing position of the ring assembly; the inner diameter of the surrounding baffle assembly is adapted to the outer diameter of the ring assembly, and the surrounding baffle assembly is slidingly abutted against the outer wall of the ring assembly.

[0012] In the preferable technical scheme of the present application, the outer wall surface of the supporting rod is provided with a plurality of third clamping grooves arranged at intervals along the length direction; the surrounding baffle assembly comprises a supporting ring and a locking ring; the inner diameter of the supporting ring is adapted to the outer diameter of the first baffle and the second baffle; the supporting ring is provided with a guide hole corresponding to the supporting rod, and the supporting ring is slidingly arranged between the supporting rods through the guide hole; the locking ring is rotationally installed on the top surface of the supporting ring, the thickness of the locking ring is adapted to the groove width of the third clamping groove, and the inner diameter of the locking ring is smaller than the distance from the third clamping groove slot to the center axis of the supporting frame; the locking ring is provided with a first gap corresponding to the supporting rod, and the shape of the first gap is adapted to the shape of the supporting rod; when the locking ring is adjusted and moved to be clamped in the third clamping groove, locking is realized, and the surrounding baffle assembly is maintained at the height; when the locking ring is adjusted and moved to the position corresponding to the first gap and the supporting rod, unlocking is realized, and the surrounding baffle assembly can slide along the supporting rod.

[0013] In a preferred embodiment of the present invention, a stop bar is fixedly provided on one side of the top surface of one of the first notches; when the stop bar abuts against the side wall of the corresponding support rod, the position of the first notch corresponds to that of the support rod.

[0014] In a preferred embodiment of the present invention, at least two pressure blocks are installed on the top surface of the support ring by screws. The outer wall of the pressure block has an arc-shaped surface structure and its diameter is adapted to the inner diameter of the locking ring. A limiting strip is fixedly provided on the top of the outer wall of the pressure block. The distance between the bottom surface of the limiting strip and the top surface of the support ring is adapted to the thickness of the locking ring. The locking ring slides against the top surface of the support ring and is rotated by the pressure blocks.

[0015] In a preferred embodiment of the present invention, the support ring is provided with at least two second notches, the shape of which is adapted to the shape of the pressure block; the second notches are distributed in an array around the central circumference of the support ring, the pressure blocks are distributed in an array around the central circumference of the support ring, and the pressure blocks and the second notches are staggered and spaced apart; the second notches and pressure blocks of two adjacent enclosure components are nested together when stacked.

[0016] This invention provides a method for using a planting pot for bonsai root lifting, comprising the following steps:

[0017] S1. Select a fence structure of appropriate height according to the type of plant being cultivated;

[0018] S2, fill the pot and enclosure structure with soil, and adjust the soil height inside the enclosure structure according to the root lifting height requirements;

[0019] S3, transplant the plants into the enclosure structure and continue to fill the empty spaces with soil until the preset height is reached;

[0020] S4 provides suitable growing conditions and performs corresponding maintenance to ensure the plant grows normally until the root lifting stage;

[0021] S5. Based on the location of the exposed roots, unlock the corresponding enclosure component to remove it from the obstructing part; then disassemble the corresponding ring component to expose the soil and roots in this part.

[0022] S6, remove the soil from the upper part of the exposed area to allow the root system in this area to gradually adapt to the sun-loving environment;

[0023] S7. According to the growth cycle, repeat steps S4 to S6, gradually removing the soil until the roots in this part are completely exposed.

[0024] S8. After the entire plant has been rooted, remove the entire plant and its surrounding structure from the pot, shake off the soil, and separate the surrounding structure from the plant; then replant the plant back into the pot.

[0025] The beneficial effects of this invention are as follows:

[0026] The application provides a planting pot for potted landscape root lifting, which comprises a pot body and a surrounding structure installed in the pot body; the surrounding structure comprises a plurality of vertically stacked and connected ring sleeve assemblies, and a supporting mechanism is installed on the outer side of the ring sleeve assembly; the surrounding assembly of the supporting mechanism is used for blocking the joint of the ring sleeve assembly to prevent the ring sleeve assembly from tilting and separating; sufficient supporting strength is provided to maintain the height position of the soil and effectively prevent the soil and the plant from tilting, and sufficient growth space is provided for the root system of the plant;

[0027] The surrounding assembly is vertically moved to be disengaged from the blocking part; the ring sleeve assembly is adjusted to be opened to release the closed loop state, release the surrounding of the height position, and gradually remove the surrounding assembly from the top downward according to the growth period, and the corresponding soil is removed, so that the standard root system gradually adapts to the sunlight environment, and the normal growth of the lower root system is not affected.

[0028] The whole is assembled, which can be conveniently disassembled and recycled, repeatedly used, and cost is reduced.

[0029] The application provides a use method of the planting pot for potted landscape root lifting, which can realize the effect of gradually removing the soil, make the standard root system gradually adapt to the sunlight environment, realize the better root lifting effect, and the plant after the root lifting is completed is planted in the original soil without the secondary transplantation, so that the survival rate can be effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 is a three-dimensional structure schematic diagram of a planting pot for potted landscape root lifting provided in the specific embodiment of the application;

[0031] Figure 2 is a three-dimensional structure schematic diagram of a surrounding structure provided in the specific embodiment of the application;

[0032] Figure 3 is a three-dimensional structure schematic diagram of a closed state of a ring sleeve assembly provided in the specific embodiment of the application;

[0033] Figure 4 is a three-dimensional structure schematic diagram of an open state of a ring sleeve assembly provided in the specific embodiment of the application;

[0034] Figure 5 is a three-dimensional structure schematic diagram of a supporting mechanism provided in the specific embodiment of the application;

[0035] Figure 6 is a three-dimensional structure schematic diagram of a supporting frame provided in the specific embodiment of the application;

[0036] Figure 7 is a three-dimensional structure schematic diagram of a surrounding assembly provided in the specific embodiment of the application;

[0037] Figure 8 is a perspective view of the enclosure assembly provided in the specific embodiments of the present application.

[0038] In the drawings:

[0039] 100, basin body; 200, enclosure structure; 300, ring sleeve assembly; 310, first baffle; 311, first clamping block; 312, first clamping groove; 313, clamping head; 314, clamping strip; 320, second baffle; 321, second clamping block; 322, second clamping groove; 324, clamping opening; 325, third gap; 400, support mechanism; 410, enclosure assembly; 411, support ring; 412, locking ring; 413, first gap; 414, pressing block; 415, limiting strip; 416, second gap; 417, blocking strip; 418, guide hole; 420, support frame; 421, base frame; 422, support rod; 423, third clamping groove. DETAILED DESCRIPTION

[0040] The technical solutions of the present application will be further described below in combination with the drawings and through specific embodiments.

[0041] As Figures 1 to 4 shown, the specific embodiments of the present application disclose a planting pot for bonsai root lifting, which comprises a basin body 100 and an enclosure structure 200 installed in the basin body 100; the enclosure structure 200 comprises a plurality of vertically stacked and connected ring sleeve assemblies 300, a support mechanism 400 is installed on the outer side of the ring sleeve assembly 300, and an enclosure assembly 410 of the support mechanism 400 is used to block the joint of the ring sleeve assembly 300 to prevent the ring sleeve assembly from tilting and separating; the enclosure assembly is vertically moved after adjustment, and can be separated from the blocking part; the ring sleeve assembly can be opened after adjustment, and the closed loop state is released, and the enclosure at this height position is released.

[0042] The above-mentioned planting pot for bonsai root lifting forms a containing space through a plurality of vertically stacked and connected ring sleeve assemblies, a support mechanism is installed on the outer side of the ring sleeve assembly, and an enclosure assembly of the support mechanism is used to block the joint of the ring sleeve assembly to prevent the ring sleeve assembly from tilting and separating; sufficient support strength is provided, so that the soil can maintain a sufficient height position, and the problem of soil and plant tilting is effectively prevented, and sufficient growth space is provided for the root system of the plant;

[0043] The enclosure assembly is adjusted to move vertically to be separated from the blocking part; the loop sleeve assembly is adjusted to be opened to release the closed loop state, to release the enclosure at this height position, and to gradually remove the enclosure assembly from the top to the bottom according to the growth cycle, and to perform corresponding soil removal, so that the standard growth root system gradually adapts to the sun environment, and the normal growth of the lower root system is not affected; the whole is assembled to facilitate the machining and production of each structural part, and the disassembly, replacement and recycling of the parts are convenient, and the parts are repeatedly used to reduce the cost.

[0044] Further, as shown in Figure 3 、 Figure 4 , the loop sleeve assembly 300 includes a first baffle 310 and a second baffle 320, both of which are semicircular arc-shaped plate structures, one end of the first baffle and the second baffle is rotatably connected and matched, and the other end is buckled to each other to form a detachable closed loop structure; the loop sleeve assembly is opened and removed from the outside of the plant by the buckled structure, which is simple to use and does not need to be separated from the top or the bottom, and will not affect the plant;

[0045] As shown in Figure 5 , the support mechanism 400 includes a support frame 420 and a plurality of enclosure assemblies 410 mounted on the support frame, the enclosure assemblies are adjusted to move vertically along the support frame; the loop sleeve assembly 300 is arranged inside the enclosure assembly 410, and the support frame leaves enough space for the loop sleeve assembly to open; the enclosure assembly can be adjusted vertically, that is, it can be moved to the corresponding height position to connect and strengthen the splicing part of the two loop sleeve assemblies to prevent the single loop sleeve assembly from easily falling off or toppling over; when the loop sleeve assembly needs to be removed, the enclosure assembly can be moved to the lower position to release the blocking effect, without affecting the normal opening and removal of the loop sleeve assembly.

[0046] Further, as shown in Figure 4 , the first baffle has a first protrusion fixed on the upper part of one end surface, the second baffle has a second protrusion fixed on the lower part of the corresponding end surface, the outer walls of the first protrusion and the second protrusion are arc-shaped structures, and circular holes extending along the axis direction are arranged on the first protrusion and the second protrusion; the first baffle has a first arc-shaped groove corresponding to the second protrusion on the lower part of the end surface, and the second baffle has a second arc-shaped groove corresponding to the first protrusion on the upper part of the end surface; the first baffle and the second baffle are rotatably connected through a rotating shaft penetrating the first protrusion and the second protrusion; a clamping head 313 is fixedly embedded on the end of the first baffle 310 away from the first protrusion, the clamping head is a flat and thin stainless steel sheet structure, one end of the clamping head is embedded in the inside of the first baffle, the other end protrudes outward, and a clamping strip 314 is fixedly arranged on the end of the protruding end; a recess is arranged on the end of the second baffle 320 away from the second protrusion, a clamping opening 324 is arranged on the bottom of the recess corresponding to the clamping strip 314, and the clamping strip can be clamped in the clamping opening to realize the buckling of the first baffle and the second baffle, which is convenient to use and easy to adjust.

[0047] Further, the third notch 325 is arranged in the middle of the side of the bayonet 324 close to the clamping head, which provides a space for inserting and pressing the clamping head, so that the clamping strip is separated from the bayonet, the first baffle and the second baffle are opened, and the operation is facilitated.

[0048] Further, the side wall of the first baffle and the second baffle is further provided with a plurality of air permeable holes, the inner port of the air permeable hole is in a narrowing structure, and the width of the inner port is less than 2mm, which can maintain the required air permeability and effectively prevent the internal soil from falling out.

[0049] Further, the bottom surface of the first baffle 310 is fixedly provided with two first clamping blocks 311, the two first clamping blocks are symmetrically arranged about the center plane of the first baffle, and the line connecting the two first clamping blocks and the center of the first baffle forms a 90° angle; the top surface of the first baffle 310 is provided with two first clamping grooves 312, the first clamping groove 312 is shape-fitted with the first clamping block 311 and positionally corresponds to the first clamping block 311; the bottom surface of the second baffle 320 is fixedly provided with two second clamping blocks 321, the two second clamping blocks are symmetrically arranged about the center plane of the second baffle, and the line connecting the two second clamping blocks and the center of the second baffle forms a 90° angle; the top surface of the second baffle 320 is provided with two second clamping grooves 322, the second clamping groove 322 is shape-fitted with the second clamping block 321 and positionally corresponds to the second clamping block 321; the first clamping block 311 and the second clamping block 321 are the same in structure; the cooperation between the first clamping block, the second clamping block, the first clamping groove and the second clamping groove can further strengthen the connection between the two ring sleeve assemblies, enhance the stress in the radial direction, and prevent tilting and loosening.

[0050] Further, the end edges of the first baffle and the second baffle are provided with chamfers, and the slot edges of the first clamping groove and the second clamping groove are provided with chamfers, which can facilitate the insertion of the first baffle and the second baffle into the first clamping groove or the second clamping groove, facilitate the alignment and stacking cooperation between the two ring sleeve assemblies.

[0051] Further, the stacking cooperation between the two adjacent ring sleeve assemblies is that one of the first clamping blocks is inserted into the first clamping groove of the lower ring sleeve assembly, and the other is inserted into the second clamping groove; one of the second clamping blocks is inserted into the first clamping groove of the lower ring sleeve assembly, and the other is inserted into the second clamping groove; the opening parts between the two ring sleeve assemblies are staggered, which further enhances the connection of the overall structure cooperation and strengthens the overall stress; and the upper ring sleeve assembly can be limited by the lower ring sleeve assembly, so that the upper ring sleeve assembly can only be opened after completely separating from the lower ring sleeve assembly, which effectively prevents the ring sleeve assembly from being easily opened due to external force.

[0052] Further, as shown in FIG. 6, the first baffle 310 and the second baffle 320 are arranged in the ring sleeve assembly 300, and the first baffle 310 and the second baffle 320 are arranged in the ring sleeve assembly 300. Figure 6As shown, the support frame 420 comprises a chassis 421, and at least two support rods 422 are mounted on the chassis 421; the fence assembly 410 has a closed loop structure, is slidably mounted on the support rods 422, and is locked at a height of a splicing position of the loop assembly; the inner diameter of the fence assembly is matched with the outer diameter of the loop assembly, and the fence assembly is slidably abutted against the outer wall of the loop assembly; wherein, a position sufficient for the loop assembly to be opened is left between the at least two support rods, so as to prevent interference and collision, and to ensure that the loop assembly can be smoothly opened and separated from the plant from the outside of the plant;

[0053] Further, the chassis comprises a cross-shaped bottom plate, a plurality of insertion pipes are fixedly arranged on the top surface of the bottom plate, the support rods have a square rod structure, the bottom of the support rod is matched in shape with the inner wall of the insertion pipe, and the bottom of the support rod is inserted into the insertion pipe and fixed by a screw; a plurality of insertion rods are fixedly arranged on the inner wall of the bottom of the pot body, and the bottom plate is clamped and mounted between the plurality of insertion rods through the plurality of through holes, so that the chassis can only move vertically along the insertion rods, and unilateral deviation and tilting of the entire support frame can be effectively prevented, thereby providing stable support; this structure design also facilitates subsequent overall disengagement, so that the fence structure can be separated from the bottom of the plant.

[0054] Further, a plurality of third clamping grooves 423 are arranged on the outer wall surface of the support rod 422 and spaced apart along the length direction; as shown in Figure 7 、 Figure 8 As shown, the fence assembly 410 comprises a support ring 411 and a lock ring 412; the inner diameter of the support ring is matched with the outer diameter of the first baffle and the second baffle; the support ring 411 is provided with a guide hole 418 corresponding to the support rod 422, and the support ring is slidably arranged between the support rods through the guide hole; the lock ring 412 is rotatably mounted on the top surface of the support ring 411, the thickness of the lock ring 412 is matched with the groove width of the third clamping groove 423, and the inner diameter of the lock ring is smaller than the distance from the third clamping groove to the center axis of the support frame; the first notch 413 is arranged on the lock ring 412 and corresponds to the support rod 422, and the shape of the first notch is matched with the shape of the support rod; when the lock ring is adjusted and moved to be clamped in the third clamping groove, locking is achieved, so that the fence assembly is maintained at the height; when the lock ring is adjusted and moved to correspond to the position of the first notch and the support rod, unlocking is achieved, and the fence assembly can slide along the support rod; by using the above structure, the locking and unlocking actions can be achieved through the cooperation between the lock ring and the support rod; when locking, the fence assembly can be maintained at the height, thereby achieving the blocking effect; when unlocking, the fence assembly can be separated from the splicing position of the loop assembly, thereby achieving the unblocking effect; by using the simple adjustment structure, the required adjustable effect can be achieved, and the operation is convenient.

[0055] Furthermore, a stop bar 417 is fixedly provided on one side of the top surface of one of the first notches 413; when the stop bar abuts against the side wall of the corresponding support rod, the position of the first notch corresponds to that of the support rod; the stop bar is used as an alignment component so that the first notch and the support rod can be quickly aligned so that the enclosure assembly can be adjusted and moved on the support rod.

[0056] Furthermore, at least two pressure blocks 414 are installed on the top surface of the support ring 411 by screws. The outer wall of the pressure block 414 has an arc-shaped surface structure and its diameter is adapted to the inner diameter of the locking ring 412. A limiting strip 415 is fixedly provided on the top of the outer wall of the pressure block. The distance between the bottom surface of the limiting strip 415 and the top surface of the support ring 411 is adapted to the thickness of the locking ring 412. The locking ring slides against the top surface of the support ring and is rotated by the pressure blocks. The pressure blocks are detachable to facilitate the installation and removal of the locking ring, so that the locking ring can maintain the required rotation effect without detaching from the support ring, so as to cooperate with the third slot to provide support force for the entire enclosure assembly.

[0057] Furthermore, the support ring 411 is provided with at least two second notches 416, the shape of which is adapted to the shape of the pressure block 414; the second notches 416 are arranged in an array around the central circumference of the support ring 411, and the pressure blocks 414 are arranged in an array around the central circumference of the support ring 411, and the pressure blocks 414 and the second notches 416 are staggered and spaced apart; the second notches and pressure blocks of two adjacent enclosure components are nested together when stacked, so that the enclosure components are closely close together, reducing space occupation;

[0058] Furthermore, each of the first gaps has a groove at its lower sidewall. The shape of the groove is adapted to the shape of the baffle strip to accommodate and place the baffle strip, thereby achieving a nesting effect and reducing the space occupied by the stacking between the two enclosure components.

[0059] The present invention also provides a method of using a planting pot for bonsai root lifting, comprising the following steps:

[0060] S1. Select a fence structure of appropriate height according to the type of plant being cultivated;

[0061] S2, fill the pot and enclosure structure with soil, and adjust the soil height inside the enclosure structure according to the root lifting height requirements;

[0062] S3, transplant the plants into the enclosure structure and continue to fill the empty spaces with soil until the preset height is reached;

[0063] S4 provides suitable growing conditions and performs corresponding maintenance to ensure the plant grows normally until the root lifting stage;

[0064] S5, according to the root position, the corresponding part of the fence assembly is unlocked, so that it is separated from the blocking part; then the corresponding ring sleeve assembly is disassembled, so that the soil and root system of this part are exposed;

[0065] S6, the upper part of the exposed area is de-soiled, and the root system in this range is gradually adapted to the sun environment;

[0066] S7, according to the growth cycle, the steps of S4 to S6 are repeated, the soil is gradually removed, and the root system of this part is completely exposed;

[0067] S8, after the whole plant is lifted, the whole plant and the fence structure are taken out from the pot body, the soil is shaken off, and the fence structure is separated from the plant; then the plant is replanted in the pot body.

[0068] This method can realize the effect of gradually removing the soil, so that the production of the root system gradually adapts to the sun environment, and better root lifting effect is realized; and after the root lifting is completed, the plant is planted in the original soil, without the need for secondary transplantation, which can effectively improve the survival rate.

[0069] The present application is described by preferred embodiments, and those skilled in the art know that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the present application. The present application is not limited by the specific embodiments disclosed herein, and other embodiments falling within the scope of the claims of the present application are within the scope of the present application.

Claims

1. A planting pot for bonsai root lifting, characterized in that: comprising a pot body and a surrounding structure installed in the pot body; the surrounding structure comprises a plurality of vertically stacked and connected ring sleeve assemblies, a support mechanism is installed on the outer side of the ring sleeve assembly, and the surrounding assembly of the support mechanism is used to block the joint of the ring sleeve assembly to prevent the ring sleeve assembly from tilting and separating; the surrounding assembly is adjusted to move vertically and can be separated from the blocking part; the ring sleeve assembly can be adjusted to be opened to release the closed loop state and release the surrounding at this height; the ring sleeve assembly comprises a first baffle and a second baffle, both of which are semicircular arc plate structures, one end of the first baffle and the second baffle is rotationally connected and matched, the other end is buckled with each other, forming a detachable closed loop structure; the support mechanism comprises a support frame and a plurality of surrounding assemblies installed on the support frame, and the surrounding assembly is adjusted to move vertically along the support frame; the ring sleeve assembly is arranged inside the surrounding assembly, and a sufficient interval for opening the ring sleeve assembly is left on the support frame; the support frame comprises a base frame, and at least two support rods are installed on the base frame; the surrounding assembly is in a closed loop structure and is slidably installed on the support rod and is adjusted to be locked at the height of the joint of the ring sleeve assembly; the inner diameter of the surrounding assembly is matched with the outer diameter of the ring sleeve assembly and is slidably abutted on the outer wall of the ring sleeve assembly; a plurality of third clamping grooves are arranged on the outer wall surface of the support rod in the length direction; the surrounding assembly comprises a support ring and a lock ring; the inner diameter of the support ring is matched with the outer diameter of the first baffle and the second baffle; the support ring is provided with a guide hole corresponding to the support rod, and the support ring is slidably arranged between the support rods through the guide hole; the lock ring is rotationally installed on the top surface of the support ring, the thickness of the lock ring is matched with the groove width of the third clamping groove, and the inner diameter of the lock ring is smaller than the distance from the third clamping groove to the center axis of the support frame; the lock ring is provided with a first gap corresponding to the support rod, and the shape of the first gap is matched with the shape of the support rod; when the lock ring is adjusted to be clamped in the third clamping groove, it is locked to maintain the surrounding assembly at the height; when the lock ring is adjusted to be moved to the position corresponding to the first gap and the support rod, it is unlocked, and the surrounding assembly can slide along the support rod. 2.The planting pot for bonsai root lifting according to claim 1, characterized in that: a first clamping block is fixedly arranged on the bottom surface of the first baffle, two first clamping blocks are symmetrically arranged about the center plane of the first baffle, and the line connecting the two first clamping blocks and the center of the first baffle forms a 90° angle; a first clamping groove is arranged on the top surface of the first baffle, the shape of the first clamping groove is matched with that of the first clamping block, and the position is corresponding; a second clamping block is fixedly arranged on the bottom surface of the second baffle, two second clamping blocks are symmetrically arranged about the center plane of the second baffle, and the line connecting the two second clamping blocks and the center of the second baffle forms a 90° angle; a second clamping groove is arranged on the top surface of the second baffle, the shape of the second clamping groove is matched with that of the second clamping block, and the position is corresponding; the first clamping block and the second clamping block are the same in structure. 3.The planting pot for bonsai root lifting according to claim 2, characterized in that: the two adjacent ring sleeve assemblies are stacked and matched, one of the first clamping blocks is inserted into the first clamping groove of the lower ring sleeve assembly, and the other is inserted into the second clamping groove. ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ ​ One of the second card blocks is inserted into the first card slot of the lower ring assembly, and the other is inserted into the second card slot.

4. A planting pot for bonsai root raising according to claim 1, characterized in that: A stop bar is fixedly installed on one side of the top surface of one of the first gaps; When the stop bar abuts against the side wall of the corresponding support rod, the first notch corresponds to the position of the support rod.

5. A planting pot for bonsai root raising according to claim 4, characterized in that: At least two pressure blocks are installed on the top surface of the support ring by screws. The outer wall of the pressure block has an arc-shaped structure and its diameter is adapted to the inner diameter of the locking ring. A limiting strip is fixedly provided on the top of the outer wall of the pressure block. The distance between the bottom surface of the limiting strip and the top surface of the support ring is adapted to the thickness of the locking ring. The locking ring slides against the top surface of the support ring and is limited to rotation by the pressure block.

6. A planting pot for bonsai root raising according to claim 5, characterized in that: The support ring is provided with at least two second notches, the shape of which is adapted to the shape of the pressure block; The second notch is distributed in a circular array around the center of the support ring, and the pressure block is distributed in a circular array around the center of the support ring, with the pressure block and the second notch being staggered at intervals. The second notches and pressure blocks of two adjacent enclosure components are nested together when stacked.

7. A method of using a planting pot for bonsai root lifting as described in claim 1, characterized in that: Includes the following steps: S1. Select a fence structure of appropriate height according to the type of plant being cultivated; S2, fill the pot and enclosure structure with soil, and adjust the soil height inside the enclosure structure according to the root lifting height requirements; S3, transplant the plants into the enclosure structure and continue to fill the empty spaces with soil until the preset height is reached; S4 provides suitable growing conditions and performs corresponding maintenance to ensure the plant grows normally until the root lifting stage. S5. Based on the location of the exposed roots, unlock the corresponding enclosure component to remove it from the obstructing part; then disassemble the corresponding ring component to expose the soil and roots in this part. S6, remove the soil from the upper part of the exposed area to allow the root system in this area to gradually adapt to the sun-loving environment; S7. According to the growth cycle, repeat steps S4 to S6, gradually removing the soil until the roots in this part are completely exposed. S8. After the entire plant has been rooted, remove the entire plant and its surrounding structure from the pot, shake off the soil, and separate the surrounding structure from the plant; then replant the plant back into the pot.

Citation Information

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