Pitaya cultivation rack

By designing a dragon fruit cultivation frame with auxiliary limiting mechanism, the problem of ineffective support and limiting of dragon fruit seedlings in the prior art in the growth of dragon fruit in the prior art was solved, and the effect of improving growth survival rate and preventing branches and trunk fracture was achieved.

CN223025057UActive Publication Date: 2025-06-27青州市蔚然农业科技发展有限公司
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Patent Information

Application Number
CN202421664781.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-15
Publication Date
2025-06-27
Estimated Expiration
2034-07-15

AI Technical Summary

Technical Problem

The existing dragon fruit cultivation stand cannot provide effective support and limits in the early stages of the growth of dragon fruit seedlings, resulting in a low growth and survival rate.

Method used

A dragon fruit cultivation rack with an auxiliary limiting mechanism is designed, which includes 2 fixed rods, limiting main rods, limiting secondary rods, rotating gears, control mechanisms and connecting mechanisms. Through the cooperation of the rotating gear and the control mechanism, the limiting secondary rod can be rotated at different heights, providing flexible limiting support.

Benefits of technology

The dragon fruit cultivation frame can carry out limiting work at different heights during the growth of dragon fruit, which improves the growth and survival rate of seedlings, and provides multiple layers of support after the dragon fruit grows to avoid branches and trunks breakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pitaya cultivation frame which comprises two fixing rods which are arranged in a rectangular columnar structure, a mounting seat which is integrally mounted at the top ends of the fixing rods, and a plurality of fixing rods which are arranged on the mounting seat, and the bottoms of the fixing rods are fixed on the ground and used for supporting work. Two limiting main rods are connected to the middle of the mounting base at the top ends of the two fixing rods, the auxiliary limiting mechanisms are symmetrically arranged between the two fixing rods, and each auxiliary limiting mechanism comprises a limiting auxiliary rod, a rotating gear, a control mechanism and a connecting mechanism. The utility model discloses a dragon fruit cultivation rack. An auxiliary limiting mechanism is arranged, in the growth process of pitaya, a control mechanism on the auxiliary limiting mechanism is controlled to rotate, so that a limiting auxiliary rod can be driven to rotate, and when the rotating auxiliary rod rotates to the highest and lowest positions, the pitaya can be driven to rotate. The pitaya seedling supporting and limiting device can support and limit pitaya seedlings at the corresponding height.
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Description

Technical Field

[0001] The utility model relates to the technical field of pitaya cultivation, in particular to a pitaya cultivation rack. Background Technique

[0002] Due to the long bottom branches and few branches of pitaya, when it grows to a certain height, because there are many branches at its top, it is necessary to use a cultivation rack to assist the growth of pitaya. Through the cultivation rack, the top branches of the grown pitaya can be neatly guided and placed, and the bottom of the branches can also be supported to support the branches of the pitaya after the fruit matures, avoiding the breakage of the pitaya branches. In the existing market, when cultivating pitaya, only two limit rods are symmetrically arranged in the middle of two fixed rods to complete the auxiliary cultivation work. However, during the growth process of pitaya seedlings, in order to restrain them and ensure their vertical growth, it is also necessary to limit them. However, the traditional cultivation rack can only carry out auxiliary limit work when the pitaya grows to the height of the limit rod. As a result, in the early stage of pitaya growth, it is impossible to carry out auxiliary support work on pitaya, resulting in a low survival rate of pitaya in the early stage. Content of the Utility Model

[0003] The purpose of the utility model is to provide a pitaya cultivation rack to solve the problem in the above background technique that the existing cultivation rack on the market can only carry out auxiliary limit work when the pitaya grows to the height of the limit rod, resulting in the inability to carry out auxiliary support work on pitaya in the early stage of pitaya growth and a low survival rate of pitaya in the early stage.

[0004] To achieve the above purpose, the utility model provides the following technical scheme: A pitaya cultivation rack includes two fixed rods, which are arranged in a rectangular columnar structure and are fixed on the ground at the bottom for supporting work;

[0005] An installation seat is integrally installed at the top of the fixed rod;

[0006] Two limit main rods are connected in the middle of the installation seats at the top of the two fixed rods for the limit support work of the branches of the grown pitaya;

[0007] It also includes;

[0008] An auxiliary limit mechanism is symmetrically arranged in the middle of the two fixed rods for carrying out limit work at different heights according to the growth trend of pitaya;

[0009] The auxiliary limiting mechanism includes a limiting secondary rod, a rotating gear, a control mechanism, and a connecting mechanism. There are 2 limiting secondary rods. The rotating gears provided at the top ends of the connecting mechanisms at the bottoms of the 2 limiting secondary rods are meshed with each other. The rotating gear on the outside of one of the connecting mechanisms is controlled to rotate by the control mechanism, so as to achieve the effect of controlling the height and position of the limiting secondary rod, and further achieve the effect of supporting and limiting pitaya seedlings at different heights.

[0010] Preferably, both of the 2 limiting main rods are arranged in a cylindrical structure, and 2 of them are symmetrically arranged about the horizontal central axis of the mounting base.

[0011] Preferably, the control mechanism includes a rotating shaft, a control main body, and a clamping mechanism. The top end of the rotating shaft is coaxially connected to the rotating gear, and the rotating shaft is controlled to rotate by the control main body, and the control main body performs a limiting clamping operation inside the clamping mechanism;

[0012] Four bumps are equiangularly distributed on the outside of the rotating shaft.

[0013] Preferably, the control main body includes a rotating handle, a clamping ring, fixed teeth, and a connecting cylinder;

[0014] The connecting cylinder is sleeved on the outside of the rotating shaft, and it moves on the outside of the rotating shaft. The four bumps on the outside of the rotating shaft are engaged with the four grooves on the inner wall of the connecting cylinder;

[0015] The top end of the connecting cylinder is coaxially installed with a rotating handle, and a circular clamping ring is arranged on the inner side of the rotating handle. Fixed teeth are equiangularly distributed on the outer wall of the clamping ring;

[0016] The clamping ring is arranged at the outer top end position of the connecting cylinder.

[0017] Preferably, the clamping mechanism includes a reserved card slot and limiting teeth. The reserved card slot is embedded on the outer wall of the fixed rod, and its position corresponds to the position of the clamping ring;

[0018] Limiting teeth are also equiangularly distributed on the upper inner wall of the reserved card slot, and they are engaged with the fixed teeth.

[0019] Preferably, the connecting mechanism includes a movable cylinder and a telescopic cylinder. Both the movable cylinder and the telescopic cylinder are in an "L"-shaped cylindrical structure;

[0020] The vertical cylinder of the movable cylinder is engaged with the vertical cylinder of the telescopic cylinder, and the two are fastened by bolts.

[0021] Compared with the prior art, the beneficial effects of the present utility model are as follows: For this pitaya cultivation rack, an auxiliary limiting mechanism is provided. During the growth of pitaya, by controlling the rotation of the control mechanism on the auxiliary limiting mechanism, the limiting secondary rod can be driven to rotate. When the rotating secondary rod rotates to the highest and lowest positions, it can support and limit the pitaya seedlings at the corresponding heights. At the same time, since the height of the connecting mechanism at the bottom of the limiting secondary rod can be flexibly adjusted, it is ensured that the height of the connecting mechanism can be adjusted according to different required limiting heights, thereby ensuring that the limiting position of the limiting secondary rod is more flexible.

[0022] When the limiting secondary rod rotates, it can also rotate to the outer side of the limiting main rod. Thus, when the whole pitaya grows up, the multiple branches at its top can be limited not only under the action of the limiting main rod but also under the action of the limiting secondary rod, achieving multi-layer support and auxiliary work for the pitaya, which can not only prevent the branches from breaking but also facilitate the subsequent pitaya picking work. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is the front view structural schematic diagram of the present utility model;

[0024] Figure 2 is the meshing structural schematic diagram between two rotating gears on the auxiliary limiting mechanism of the present utility model;

[0025] Figure 3 is the sectional structural schematic diagram of the connection between the auxiliary limiting mechanism and the fixed rod of the present utility model;

[0026] Figure 4 is the semi-sectional structural schematic diagram of the control mechanism of the present utility model;

[0027] Figure 5 is the enlarged structural schematic diagram of the connection mechanism of the present utility model;

[0028] Figure 6 is the connection structural schematic diagram of the control main body, the engaging mechanism and the rotating shaft of the present utility model.

[0029] In the figure: 1, fixed rod; 2, mounting seat; 3, limiting main rod; 4, limiting secondary rod; 5, rotating gear; 6, control mechanism; 61, rotating shaft; 62, control main body; 621, rotating handle; 622, engaging ring; 623, fixed tooth; 624, connecting tube; 63, engaging mechanism; 631, reserved card slot; 632, limiting tooth; 7, connection mechanism; 71, movable tube; 72, telescopic tube. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts belong to the scope of protection of the present utility model.

[0031] Please refer to Figures 1 - 5 , the present utility model provides a technical solution: a pitaya cultivation rack, including two fixed rods 1, which are arranged in a rectangular columnar structure and fixed to the ground at the bottom for supporting work;

[0032] The mounting seat 2 is integrally installed at the top of the fixed rod 1;

[0033] Two limiting main rods 3 are connected in the middle of the mounting seats 2 at the top of the two fixed rods 1 for the branch limiting support work of the pitaya after it grows up;

[0034] It also includes;

[0035] The auxiliary limiting mechanism is symmetrically arranged in the middle of the two fixed rods 1 for limiting work at different heights according to the growth trend of the pitaya;

[0036] The auxiliary limiting mechanism includes a limiting sub-rod 4, a rotating gear 5, a control mechanism 6 and a connecting mechanism 7. There are two limiting sub-rods 4, and the rotating gears 5 arranged at the top of the connecting mechanisms 7 at the bottom of the two limiting sub-rods 4 are meshed with each other. The outside of the rotating gear 5 outside one connecting mechanism 7 is controlled by the control mechanism 6 to rotate, so as to rotate and control the height and position of the limiting sub-rod 4, and then achieve the effect of supporting and limiting the pitaya seedlings at different heights;

[0037] The present application provides a pitaya cultivation rack with an auxiliary limiting mechanism. Specifically, when in use, first, the fixed rod 1 is fixed inside the planted soil. After that, only need to plant the pitaya at the middle position corresponding to the bottom of the two limiting main rods 3. When the pitaya is growing, when it is desired to limit its growth to a certain height to prevent it from bending, at this time, the control mechanism 6 on the auxiliary limiting mechanism can be started to drive the rotating gear 5 to rotate, and then mesh with the other rotating gear 5, so that the other rotating gear 5 also rotates. When the rotating gear 5 rotates, it will cause the connecting mechanism 7 at its top to rotate, thereby driving the limiting sub-rod 4 at its top to rotate. When the two limiting sub-rods 4 rotate to the highest or lowest point, the branches of the pitaya can be limited between the two, and then the effect of assisting in guiding during the growth process of the pitaya is completed;

[0038] When the pitaya grows to a certain height and the branches are intertwined, at this time, each branch can be placed on the limiting main rods 3 on both sides, so that the limiting main rods 3 can limit and support it, ensuring that the branches will not break due to excessive weight. At this time, the limiting auxiliary rod 4 can also be controlled to rotate to the top and tilt, and then it can support the top of the pitaya branches, ensuring the normal growth and fruiting of the pitaya.

[0039] Among them, according to Figure 1 As shown, the two limiting main rods 3 are both arranged in a cylindrical structure, and two of them are symmetrically arranged about the horizontal central axis of the mounting base 2;

[0040] Specifically, the pitaya can be planted at the middle position of the soil corresponding to the bottoms of the two limiting main rods 3, ensuring that the grown pitaya can be located between the two limiting main rods 3 for limiting and supporting work.

[0041] As a further preferred embodiment of this example, according to Figures 2 - 4 and Figure 6 As shown, in order to facilitate the manual rotation of the limiting auxiliary rod 4, the control mechanism 6 includes a rotating shaft 61, a control body 62 and an engaging mechanism 63. The top of the rotating shaft 61 is coaxially connected to the rotating gear 5, and the rotating shaft 61 is controlled to rotate by the control body 62, and the control body 62 performs a limiting and engaging work inside the engaging mechanism 63;

[0042] Four convex blocks are distributed at equal angles on the outside of the rotating shaft 61.

[0043] The control body 62 includes a rotating handle 621, an engaging ring 622, fixed teeth 623 and a connecting cylinder 624;

[0044] The connecting cylinder 624 is sleeved on the outside of the rotating shaft 61, and it moves on the outside of the rotating shaft 61, and the four convex blocks on the outside of the rotating shaft 61 are engaged with the four grooves on the inner wall of the connecting cylinder 624;

[0045] The top of the connecting cylinder 624 is coaxially installed with a rotating handle 621, and an annular engaging ring 622 is arranged on the inner side of the rotating handle 621, and fixed teeth 623 are distributed at equal angles on the outer wall of the engaging ring 622;

[0046] The engaging ring 622 is arranged at the outer top position of the connecting cylinder 624.

[0047] The engaging mechanism 63 includes a reserved card slot 631 and a limiting tooth 632. The reserved card slot 631 is embedded on the outer wall of the fixed rod 1, and its position corresponds to the position of the engaging ring 622;

[0048] Above the inner wall of the reserved card slot 631, there are also equally-angularly distributed limiting teeth 632, which are engaged with the fixed teeth 623;

[0049] Specifically, when working, the staff needs to first pull the control body 62 outward, so that the rotary handle 621 drives the connecting cylinder 624 inside it to slide outside the rotary shaft 61. At this time, the engaging ring 622 inside the rotary handle 621 is separated from the reserved card slot 631. Therefore, the fixed teeth 623 and the limiting teeth 632 are not limited. At this time, rotating the rotary handle 621 will cause the connecting cylinder 624 to rotate. Due to the engagement between the convex block and the groove, the rotary shaft 61 will also rotate, thereby driving the rotary gear 5 at its top to rotate. Thus, the other meshing rotary gear 5 rotates, and the effect of controlling the limiting secondary rod 4 to rotate can be achieved;

[0050] After rotating to the appropriate angle, at this time, compress the rotary handle 621 so that it drives the engaging ring 622 to engage inside the reserved card slot 631, completing the engagement between the limiting teeth 632 and the fixed teeth 623, and thus completing the angle fixing work after rotation.

[0051] As a further preference of this embodiment, in order to adjust the position where the limiting secondary rod 4 is limited, according to Figure 5 As shown, the connecting mechanism 7 includes a movable cylinder 71 and a telescopic cylinder 72. Both the movable cylinder 71 and the telescopic cylinder 72 are in an "L"-shaped cylindrical structure;

[0052] The vertical cylinder of the movable cylinder 71 is engaged with the vertical cylinder of the telescopic cylinder 72, and the two are fastened by bolts;

[0053] Specifically, during the entire use of the cultivation rack, according to the different growth heights of the pitayas, the operator can also adjust the height of the connecting mechanism 7. Just control the bottom of the movable cylinder 71 to move inside the telescopic cylinder 72. After moving to the appropriate position, fix it with bolts. At this time, the distance that the entire rotary gear 5 drives the connecting mechanism 7 to rotate can be changed, and thus the effect of adjusting the position where the limiting secondary rod 4 rotates can be achieved. The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0054] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A pitaya cultivation rack, comprising: Two fixed rods (1) are arranged in a rectangular columnar structure, the bottom of which is fixed on the ground and is used for supporting work; A mounting seat (2) integrally mounted on the top end of the fixing rod (1); Two limiting main rods (3) are connected in the middle of the mounting seats (2) at the top ends of the two fixing rods (1) and are used for limiting the support of the branches and trunks of the grown pitaya; Features: Also includes; An auxiliary limiting mechanism, which is symmetrically arranged between the two fixed rods (1) and is used to perform limiting work at different heights according to the growth of the dragon fruit; The auxiliary limiting mechanism comprises a limiting auxiliary rod (4), a rotating gear (5), a control mechanism (6) and a connecting mechanism (7); two limiting auxiliary rods (4) are provided, and the rotating gears (5) provided at the top ends of the connecting mechanisms (7) at the bottoms of the two limiting auxiliary rods (4) are meshed with each other; the outer side of the rotating gear (5) outside the connecting mechanism (7) is controlled to rotate by the control mechanism (6), so as to achieve the effect of rotating and controlling the height and position of the limiting auxiliary rod (4), thereby achieving the effect of supporting and limiting the dragon fruit seedlings of different heights.

2. A pitaya cultivation rack according to claim 1, characterized in that: The two limiting main rods (3) are both arranged in a cylindrical structure, and two of them are symmetrically arranged about the horizontal center axis of the mounting seat (2).

3. A pitaya cultivation rack according to claim 1, characterized in that: The control mechanism (6) comprises a rotating shaft (61), a control body (62) and a locking mechanism (63); the top end of the rotating shaft (61) is coaxially connected to the rotating gear (5); the rotating shaft (61) is controlled to rotate by the control body (62), and the control body (62) performs a limit locking operation inside the locking mechanism (63); Four protrusions are distributed at equal angles on the outside of the rotating shaft (61).

4. A pitaya cultivation rack according to claim 3, characterized in that: The control body (62) comprises a rotating handle (621), a snap ring (622), fixed teeth (623) and a connecting tube (624); The connecting tube (624) is sleeved on the outside of the rotating shaft (61) and moves outside the rotating shaft (61), and four protrusions on the outside of the rotating shaft (61) and four grooves on the inner wall of the connecting tube (624) are engaged with each other; A rotating handle (621) is coaxially mounted on the top of the connecting tube (624), and a circular clamping ring (622) is arranged on the inner side of the rotating handle (621), and fixed teeth (623) are distributed at equal angles on the outer wall of the clamping ring (622); The snap ring (622) is arranged at the top end of the outer side of the connecting tube (624).

5. A pitaya cultivation rack according to claim 4, characterized in that: The locking mechanism (63) comprises a reserved locking groove (631) and a limiting tooth (632); the reserved locking groove (631) is embedded in the outer wall of the fixing rod (1), and its position corresponds to the position of the locking ring (622); Limiting teeth (632) are distributed at equal angles on the inner wall of the reserved slot (631), and are engaged with the fixing teeth (623).

6. A pitaya cultivation rack according to claim 1, characterized in that: The connecting mechanism (7) comprises a movable cylinder (71) and a telescopic cylinder (72), wherein the movable cylinder (71) and the telescopic cylinder (72) are both L-shaped cylindrical structures; The vertical cylinder of the movable cylinder (71) and the vertical cylinder of the telescopic cylinder (72) are engaged with each other and are fastened by bolts.