Adjustable edible fungus cultivation frame

By introducing a movable frame and positioning mechanism into the edible mushroom cultivation rack, and utilizing the design of adjusting rods, ropes, and positioning columns, the problem of cumbersome multi-person collaborative adjustment in existing technologies is solved, enabling a single person to quickly and easily adjust the height.

CN223639836UActive Publication Date: 2025-12-09LUDONG UNIVERSITY
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520010563.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-12-09
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

The existing edible mushroom cultivation racks require multiple staff members to work together to adjust the height of the cultivation boxes, which is cumbersome and inefficient.

Method used

Employing a movable frame and positioning mechanism, and with the design of adjusting rods, adjusting ropes, and positioning columns, operators only need to pull the adjusting handle to unlock and lock the height of the placement plate. Springs and guide components provide a tactile feedback for adjustment, simplifying single-person operation.

Benefits of technology

It enables a single person to easily adjust the height of the placement board, reducing the difficulty and burden of operation, improving adjustment efficiency, and eliminating the need for multiple people to work together.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223639836U_ABST
    Figure CN223639836U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of edible fungus cultivation, in particular to an adjustable edible fungus cultivation frame which comprises a movable frame and a positioning mechanism, the two ends of the movable frame are provided with evenly-distributed insertion holes, the surface of the movable frame is connected with a containing plate in a sliding mode, and the surface of the containing plate is provided with an installation cavity communicated with the insertion holes; a worker can unlock the placing plate only by pulling the adjusting handle outwards, at the moment, the worker can easily adjust the height of the placing plate, and locking can be completed only by loosening the adjusting handle when the placing plate is locked, so that the adjusting burden of the worker is effectively reduced, and the working efficiency is improved. And multiple workers do not need to cooperate for adjustment, so that the adjustment efficiency of the placement plate is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of edible fungi cultivation technology, and in particular to an adjustable edible fungi cultivation rack. Background Technology

[0002] Mushrooms are a type of fungus with large fruiting bodies. There are many varieties of mushrooms, including but not limited to shiitake mushrooms, oyster mushrooms, enoki mushrooms, king oyster mushrooms, morels, white jade mushrooms, tea tree mushrooms, flower mushrooms, cordyceps flowers, and deer antler mushrooms. Currently, edible mushrooms are mostly cultivated in large quantities on cultivation racks.

[0003] A Chinese patent discloses a mushroom cultivation rack (authorization announcement number CN221901726U). By setting vertical support columns, multiple cultivation boxes can be placed inside the two vertical support columns according to the cultivation quantity. Loosen the fixing bolts, remove the handle and two mounting blocks from the mounting slot, and then put the two adjusting blocks into the two vertical support columns respectively. After finding the appropriate installation adjustment holes, use the adjusting bolts to fix the two adjusting blocks. This completes the addition of cultivation boxes, and the distance between the two cultivation boxes can be adjusted arbitrarily for better mushroom cultivation.

[0004] Since the height of the above-mentioned culture box needs to be adjusted by unscrewing the fixing bolts on both sides, it is difficult for one worker to unlock the two fixing bolts separately, then fix the culture box at the corresponding height and tighten the two fixing bolts separately. This requires multiple workers to cooperate in the adjustment, which is quite cumbersome.

[0005] Therefore, an adjustable edible mushroom cultivation rack is proposed to solve the above problems. Utility Model Content

[0006] The purpose of this utility model is to provide an adjustable edible mushroom cultivation rack to solve the above-mentioned problems, thereby improving the problem that the adjustment of the adjustable edible mushroom cultivation rack is relatively cumbersome.

[0007] This utility model achieves the above-mentioned objective through the following technical solution: an adjustable edible fungus cultivation rack, comprising: a movable rack and a positioning mechanism, wherein both ends of the movable rack are provided with evenly distributed insertion holes, a placement plate is slidably connected to the surface of the movable rack, and the surface of the placement plate is provided with an installation cavity communicating with the insertion holes.

[0008] Preferably, the positioning mechanism includes an adjusting rod inserted into the mounting cavity. The surface of the adjusting rod is provided with an adjusting rope. Both ends of the adjusting rope are fixedly connected to positioning posts that are slidably connected to the mounting cavity. One end of the positioning post extends through the mounting cavity and is inserted into an adjacent insertion hole. A first spring in a compressed state is fixedly connected between the positioning post and the mounting cavity. The operator only needs to pull the adjusting handle to unlock the placement plate, at which point the operator can easily adjust the height of the placement plate. When locking the placement plate, the operator only needs to release the adjusting handle to lock it. This effectively reduces the adjustment burden on the operator and eliminates the need for multiple operators to cooperate in the adjustment, thereby improving the adjustment efficiency of the placement plate.

[0009] Preferably, the placement plate has a positioning cavity communicating with the mounting cavity, and the surface of the adjusting rod is fixedly connected to a positioning frame that is slidably connected to the positioning cavity. The diameter of the positioning frame is larger than the inner diameter of the mounting cavity. This can limit the movement trajectory of the adjusting rod, which can not only reduce the probability of the adjusting rod completely dislodging from the mounting cavity, but also limit the effective adjustment range of the positioning column, so as to ensure that the guiding component can perform guiding operations normally.

[0010] Preferably, both ends of the adjusting rod are provided with reserved slots, and both ends of the adjusting rope pass through two reserved slots respectively. The height of the reserved slots is greater than the diameter of the adjusting rope. This can reduce the probability of the bent adjusting rope getting stuck between the adjusting rod and the mounting cavity, so as to ensure that the adjusting rod and the adjusting rope can operate normally.

[0011] Preferably, an adjustment handle is fixedly connected to one end of the adjustment rod that extends out of the mounting cavity. The cross-sectional shape of the adjustment handle is a hollow capsule, which reduces the difficulty for the operator to move the adjustment rod and thus reduces the adjustment burden on the operator.

[0012] Preferably, the first spring is sleeved on the surface of the adjusting rope, and the inner diameter of the first spring is larger than the diameter of the adjusting rope. This can limit the running trajectory of the first spring and reduce the probability of the first spring bending and misaligning.

[0013] Preferably, each of the two positioning posts has a placement cavity at its opposite ends. The positioning mechanism also includes two guide components. Each guide component includes a slide rod slidably connected inside the placement cavity. One end of the slide rod extends through the placement cavity, and a guide block is fixedly connected to one end of the slide rod. The guide block is semi-circular in shape. A second spring is provided between the slide rod and the placement cavity. The guide components can transmit the different resistances generated when entering and exiting the insertion hole to the body contact part of the worker who is in contact with the placement plate. At this time, the worker can effectively feel the jolt to judge whether the installation cavity is aligned with the insertion hole. This can reduce the difficulty for the worker to insert the positioning post into the insertion hole and make the worker's locking operation of the placement plate easier.

[0014] Preferably, the horizontal cross-sectional shape of the placement cavity is convex, the horizontal cross-sectional shape of the slide rod is T-shaped, and the maximum diameter of the slide rod inside the placement cavity is greater than the maximum diameter of the slide rod outside the placement cavity. This can reduce the probability that the slide rod will completely pull the guide block out of the placement cavity, so as to ensure that the guide assembly as a whole can operate normally.

[0015] The beneficial effects of this utility model are:

[0016] The staff only needs to pull the adjustment handle to unlock the placement plate, and can then easily adjust the height of the placement plate. To lock the placement plate, simply release the adjustment handle. This effectively reduces the adjustment burden on the staff and eliminates the need for multiple staff members to adjust, thereby improving the adjustment efficiency of the placement plate.

[0017] The guide component can transmit the different resistances generated when entering and exiting the socket to the body contact parts of the worker who is in contact with the placement plate. At this time, the worker can effectively feel the jolt to judge whether the installation cavity is aligned with the socket. This can reduce the difficulty for the worker to insert the positioning pin into the socket and make the worker's locking operation of the placement plate easier. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a cross-sectional view of the present invention;

[0020] Figure 3 for Figure 2 Enlarged view of A in the middle;

[0021] Figure 4 for Figure 2 Enlarged view of B in the middle;

[0022] Figure 5 This is a partial exploded view of the positioning mechanism of this utility model.

[0023] In the diagram: 100, movable frame; 110, insertion hole; 200, placement plate; 210, mounting cavity; 220, positioning cavity; 300, positioning mechanism; 310, adjusting rod; 311, reserved slot; 320, adjusting rope; 330, positioning post; 331, placement cavity; 340, first spring; 350, positioning frame; 360, adjusting handle; 370, guide assembly; 371, slide rod; 372, guide block; 373, second spring. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] In practical implementation: such as Figure 1-5 As shown, an adjustable edible mushroom cultivation rack includes: a movable rack 100 and a positioning mechanism 300. Both ends of the movable rack 100 are provided with evenly distributed insertion holes 110. A placement plate 200 is slidably connected to the surface of the movable rack 100. The surface of the placement plate 200 is provided with an installation cavity 210 communicating with the insertion holes 110.

[0026] like Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the positioning mechanism 300 includes an adjusting rod 310 inserted into the mounting cavity 210. An adjusting rope 320 is provided on the surface of the adjusting rod 310. Both ends of the adjusting rope 320 are fixedly connected to positioning posts 330 that are slidably connected to the mounting cavity 210. One end of the positioning post 330 extends through the mounting cavity 210 and is inserted into an adjacent insertion hole 110. A first spring 340 in a compressed state is fixedly connected between the positioning post 330 and the mounting cavity 210. The placement plate 200 has a positioning cavity 220 communicating with the mounting cavity 210. A positioning rod 310 is fixedly connected to a positioning post 340 that is slidably connected to the mounting cavity 210. The positioning cavity 220 is slidably connected to the positioning frame 350, the diameter of which is larger than the inner diameter of the mounting cavity 210; both ends of the adjusting rod 310 are provided with reserved slots 311, and both ends of the adjusting rope 320 pass through the two reserved slots 311 respectively, the height of which is larger than the diameter of the adjusting rope 320; one end of the adjusting rod 310 that passes through the mounting cavity 210 is fixedly connected to an adjusting handle 360, the cross-sectional shape of which is a hollow capsule; the first spring 340 is sleeved on the surface of the adjusting rope 320, and the inner diameter of the first spring 340 is larger than the diameter of the adjusting rope 320.

[0027] like Figure 4 and Figure 5As shown, each of the two positioning posts 330 has a placement cavity 331 at its opposite ends. The positioning mechanism 300 also includes two guide components 370. Each guide component 370 includes a slide rod 371 slidably connected inside the placement cavity 331. One end of the slide rod 371 extends through the placement cavity 331, and a guide block 372 is fixedly connected to one end of the slide rod 371. The guide block 372 is semi-circular in shape. A second spring 373 is provided between the slide rod 371 and the placement cavity 331. The horizontal cross-sectional shape of the placement cavity 331 is convex, and the horizontal cross-sectional shape of the slide rod 371 is T-shaped. The maximum diameter of the slide rod 371 inside the placement cavity 331 is greater than the maximum diameter of the slide rod 371 outside the placement cavity 331.

[0028] When the positioning frame 350 abuts against the positioning cavity 220, the arc surface of the guide block 372 is still in the insertion hole 110. During the lifting and lowering of the placement plate 200, the placement plate 200 drives the guide block 372 to continuously rise and fall through the mounting cavity 210, the positioning post 330 and the slide rod 371. At this time, the operator can effectively feel the jerking sensation produced by the guide block 372 and the second spring 373 entering and exiting the insertion hole 110 to judge whether the mounting cavity 210 is aligned with the insertion hole 110. This can reduce the difficulty for the operator to insert the positioning post 330 into the insertion hole 110, making the locking operation of the placement plate 200 easier.

[0029] In this invention, when the height of the placement plate 200 needs to be adjusted, the operator only needs to pull the corresponding adjustment handle 360 ​​outward. The adjustment handle 360 ​​drives the adjustment rod 310 outward, and the adjustment rod 310 pulls the adjustment rope 320. At this time, the adjustment rope 320 bends along the mounting cavity 210 and pulls the two positioning posts 330 into the mounting cavity 210 simultaneously. When the positioning frame 350 abuts against the positioning cavity 220, the positioning posts 330 return completely to the mounting cavity 210. At this time, the placement plate 200 is no longer obstructed, and the operator can then lift and lower the placement plate 200. When the placement plate 200 is adjusted to the corresponding height... After the mounting cavity 210 is aligned with the socket 110, the operator only needs to release the adjustment handle 360. The first spring 340 quickly pushes back the positioning post 330, so that the positioning post 330 is inserted into the corresponding socket 110, and the placement plate 200 is firmly locked at the corresponding height. During this process, the operator only needs to pull the adjustment handle 360 ​​to unlock the placement plate 200. When locking the placement plate 200, the operator only needs to release the adjustment handle 360 ​​to complete the locking. This effectively reduces the adjustment burden on the operator and improves the adjustment efficiency of the placement plate 200.

[0030] It should be noted that the movable frame 100 mentioned above is a device with relatively mature existing technology. The specific model can be selected according to actual needs, and will not be elaborated here.

[0031] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An adjustable edible mushroom cultivation rack, characterized in that, include: A movable frame (100) has evenly distributed insertion holes (110) at both ends. A placement plate (200) is slidably connected to the surface of the movable frame (100). An installation cavity (210) communicating with the insertion holes (110) is opened on the surface of the placement plate (200). The positioning mechanism (300) includes an adjusting rod (310) inserted into the mounting cavity (210). The surface of the adjusting rod (310) is provided with an adjusting rope (320). Both ends of the adjusting rope (320) are fixedly connected to a positioning post (330) that is slidably connected to the mounting cavity (210). One end of the positioning post (330) extends out of the mounting cavity (210) and is inserted into the adjacent insertion hole (110). A first spring (340) in a compressed state is fixedly connected between the positioning post (330) and the mounting cavity (210).

2. The adjustable edible mushroom cultivation rack according to claim 1, characterized in that: The placement plate (200) has a positioning cavity (220) that communicates with the mounting cavity (210) inside. The surface of the adjusting rod (310) is fixedly connected to a positioning frame (350) that is slidably connected to the positioning cavity (220). The diameter of the positioning frame (350) is larger than the inner diameter of the mounting cavity (210).

3. The adjustable edible mushroom cultivation rack according to claim 1, characterized in that: Both ends of the adjusting rod (310) are provided with reserved slots (311), and both ends of the adjusting rope (320) pass through the two reserved slots (311). The height of the reserved slots (311) is greater than the diameter of the adjusting rope (320).

4. The adjustable edible mushroom cultivation rack according to claim 1, characterized in that: The adjusting rod (310) has an adjusting handle (360) fixedly connected to one end of the mounting cavity (210), and the cross-sectional shape of the adjusting handle (360) is a hollow capsule.

5. The adjustable edible mushroom cultivation rack according to claim 1, characterized in that: The first spring (340) is sleeved on the surface of the adjusting rope (320), and the inner diameter of the first spring (340) is larger than the diameter of the adjusting rope (320).

6. The adjustable edible mushroom cultivation rack according to claim 1, characterized in that: Each of the two positioning posts (330) has a placement cavity (331) at its opposite ends. The positioning mechanism (300) also includes two guide components (370). Each guide component (370) includes a slide rod (371) slidably connected inside the placement cavity (331). One end of the slide rod (371) extends through the placement cavity (331). A guide block (372) is fixedly connected to one end of the slide rod (371). The guide block (372) is semi-circular in shape. A second spring (373) is provided between the slide rod (371) and the placement cavity (331).

7. An adjustable edible mushroom cultivation rack according to claim 6, characterized in that: The horizontal cross-sectional shape of the placement cavity (331) is convex, and the horizontal cross-sectional shape of the slide rod (371) is T-shaped. The maximum diameter of the slide rod (371) inside the placement cavity (331) is greater than the maximum diameter of the slide rod (371) outside the placement cavity (331).

Citation Information

Patent Citations

  • Mushroom cultivation frame

    CN221901726U