Edible mushroom culture shelf combined connecting rail

By designing guide rails and fastening components on the edible mushroom cultivation rack, and utilizing transmission and movement components, the problem of difficult harvesting caused by the high cultivation rack was solved, enabling convenient and safe handling of edible mushrooms.

CN223503501UActive Publication Date: 2025-11-04JILIN AGRICULTURAL UNIV
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Patent Information

Application Number
CN202423103693.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-04
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

The tall cultivation racks make harvesting edible fungi difficult and pose safety hazards.

Method used

A combination rail for edible mushroom cultivation racks was designed. By setting guide rail grooves and fastening components on the load-bearing components, and utilizing transmission and moving components, the cultivation components can be easily picked up and put down. The design includes sliding installation and fastening structures to ensure the stability and safety of the cultivation components.

Benefits of technology

This technology enables convenient access to edible mushroom cultivation components, improves operational safety and efficiency, ensures the stability of the cultivation rack, and reduces harvesting difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a combined connecting rail of an edible mushroom culture frame, and relates to the technical field of planting culture devices. An auxiliary groove and a guide rail groove are formed in a bearing plate of the bearing assembly, a transmission assembly is slidably installed in the auxiliary groove, a moving assembly is directly arranged at the position close to the bearing assembly, the guide rail groove is formed in the bearing plate of the bearing assembly, and the culture assembly can be slidably installed at the guide rail groove. A receiving assembly on the moving assembly is lifted to the height corresponding to the culture assembly, a guide rail groove of the receiving assembly corresponds to a guide rail groove of the bearing plate, the receiving assembly makes contact with the transmission assembly, the transmission assembly releases the culture assembly through the fastening assembly, and therefore the effect that the receiving assembly receives the culture assembly is achieved; according to the edible mushroom picking and placing device, the effect of conveniently picking and placing the culture assembly is achieved, and the problems that due to a high culture frame, operation is difficult when edible mushrooms are picked and placed, and unnecessary potential safety hazards are inevitably caused are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of planting culture device technical field, especially a kind of edible fungus culture shelf combination joint. BACKGROUND

[0002] With the continuous development of science and technology, people's life quality is also improving, people have improved their diet, start to choose to eat some higher nutrition food, such as ginseng sea cucumber, but this kind of food cannot be eaten for a long time, which will cause excessive nutrient supplementation to human body, and some fungus food has better nutritional value than ordinary food, and will not cause excessive nourishing to human body.

[0003] Generally, for fungus cultivation, specified culture medium is used, and after placing raw materials on the culture shelf, the cultivation of edible fungus is realized. In order to increase the cultivation of edible fungus, the overall height of the culture shelf is increased. The high culture shelf will cause difficulty in picking and placing edible fungus, and will inevitably cause unnecessary safety hazards. UTILITY MODEL CONTENT

[0004] The edible fungus culture shelf combination joint of the embodiment of the present disclosure is provided. A moving assembly is directly arranged at the position close to the bearing assembly. A guide rail groove is arranged at the bearing plate of the bearing assembly. The culture assembly can be slidably installed at the guide rail groove. The pickup assembly on the moving assembly is raised to the height corresponding to the culture assembly. The guide rail groove of the pickup assembly corresponds to the guide rail groove of the bearing plate. The pickup assembly is in contact with the transmission assembly. The transmission assembly releases the culture assembly through the fastening assembly. The culture assembly is picked up by the pickup assembly. The culture assembly is conveniently picked up.

[0005] In the first aspect of the present disclosure, an edible fungus culture shelf combination joint is provided. Specifically, it comprises: a bearing assembly; an auxiliary groove and a guide rail groove are arranged at the bearing plate of the bearing assembly. A transmission assembly is slidably installed in the auxiliary groove. A fastening assembly is embedded and installed between the guide rail groove of the bearing plate and the auxiliary groove. A culture assembly is slidably installed at the guide rail groove of the bearing plate. The fastening assembly is in contact with the culture assembly. A moving assembly is arranged at one side of the bearing assembly. A pickup assembly is slidably installed on the moving assembly.

[0006] In at least some embodiments, a connecting rod is connected and installed between the bearing frames of the bearing assembly. The bearing frame and the connecting rod are connected to each other to form a frame structure. The bearing assembly is provided as six groups of interval frames. The bearing plate is arranged at the corner position of each group of intervals.

[0007] In at least some embodiments, the culture shelf of the culture assembly is provided as a frame structure. Outer sliding rails are arranged at the left and right outer grooves of the culture shelf. Notches are arranged on the outer sliding rails. First, the culture shelf is arranged to bear raw fungus. Reinforcing ribs are arranged at the corner positions of the culture shelf.

[0008] In at least some embodiments, the transmission rod of the transmission assembly is arranged in a long rod structure, the transmission rod is arranged in two groups of front and rear symmetrical auxiliary grooves, the transmission rod is provided with an outer cutting groove, the transmission rod is in sliding contact with each other through the outer cutting groove, and the transmission rod is provided with a protruding block.

[0009] In at least some embodiments, the top pressing pin of the fastening assembly is arranged between the auxiliary groove and the guide rail groove in the bearing plate, a spring is arranged at the inner end of the top pressing pin, the outer end of the top pressing pin is arranged in a spherical structure, two groups of adjacent top pressing pins are arranged in a circular center symmetrical arrangement structure, and the two groups of top pressing pins are connected through a synchronous rod.

[0010] In at least some embodiments, the moving frame of the moving assembly is provided with wheels at the corner positions of the bottom of the moving frame, four groups of vertical sliding rods are arranged on the moving frame, and the moving frame is arranged at the top positions of the sliding rods and arranged in a cross structure.

[0011] In at least some embodiments, the taking plate of the taking assembly is arranged in a frame structure, the taking plate is slidably arranged on the sliding rod, the inner side of the taking plate is provided with a guide rail groove, and a fixed knob is screw-connectedly arranged at the middle position of the outer end of the taking plate.

[0012] The utility model provides a kind of edible fungus culture shelf combination rail, with following beneficial effects:

[0013] In the utility model, the bearing assembly is provided with multiple frames spaced by bearing plate and connecting rod, the inner end of the bearing plate and the inner end of the taking plate of the taking assembly are provided with guide rail groove, and the culture assembly is slidably arranged on the guide rail groove by outer slide rail, to realize the function of placing raw material fungus by culture assembly on bearing assembly. When taking and placing raw material fungus, the taking assembly of moving assembly is lifted to a certain height after moving assembly slides to specified position of bearing assembly, to keep the guide rail groove of taking assembly concentric with the guide rail groove of corresponding bearing plate, to make the outer end of taking plate contact with the transmission assembly installed on culture assembly, to drive transmission assembly to control fastening assembly, to release reinforcing rib of culture assembly by fastening assembly, to make culture assembly slide towards taking assembly, to realize the effect of taking and placing culture assembly, to achieve the effect of taking and placing raw material fungus after guide rail groove is connected.

[0014] In addition, the outer slide rail arranged at the left and right side positions of culture shelf can stably slide in guide rail groove, and the notch of outer end of outer slide rail can make fastening assembly of guide rail groove abut on the notch of outer slide rail after outer slide rail slides into guide rail groove of bearing plate, to realize the effect of fixing the position of culture assembly. The reinforcing rib arranged at the corner position of culture shelf can reinforce the whole culture shelf, to ensure the stability of culture shelf during use.

[0015] In addition, the transmission rod is arranged in a front-rear symmetrical structure and slides in the auxiliary groove, the two groups of transmission rods are in contact with each other through the outer cutting groove, the convex block arranged on the transmission rod triggers the fastening assembly when sliding, the transmission assembly drives and controls the fastening assembly, the transmission rod is arranged in a front-rear symmetrical structure, the driving control of the fastening assembly is realized after one group of transmission rods, the two groups of jacking pins are pushed out through the spring, the outer end of the jacking pin is arranged in a spherical structure, the outer end of the jacking pin is easily pressed and triggered through the spherical structure, the two groups of jacking pins are connected through the synchronous rod, the other group of jacking pins is driven through the synchronous rod after the outer end of the jacking pin is triggered, the transmission assembly drives the fastening assembly, and the fastening and release effects of the fastening assembly on the outer slide rail are achieved.

[0016] In addition, the mobile assembly is arranged in a separate structure, the wheels installed on the bottom of the mobile frame have the effect of facilitating the movement of the mobile assembly as a whole, the sliding rod on the mobile frame can conveniently slide and install the component, and the mobile frame vertically arranged in a cross-shaped structure at the top of the sliding rod can assist in achieving the auxiliary reinforcement effect of the mobile assembly as a whole.

[0017] In addition, the pickup plate is arranged to slide and install on the sliding rod, the pickup plate can be slid and lifted to a specified position, the guide groove arranged on the pickup plate can correspond to the guide groove of the bearing plate, the culture assembly can be stably taken out, the culture assembly can be stably fixed on the pickup assembly by directly rotating the fixing knob after the culture assembly is slid onto the pickup assembly, and the picking operation of the raw material bacteria on the culture assembly can be conveniently performed subsequently. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings described below only relate to some embodiments of the present application, and are not limited to the present application.

[0020] In the drawings:

[0021] Figure 1 The overall structure schematic diagram of the present application is shown;

[0022] Figure 2 The schematic diagram of the bearing assembly structure of the present application is shown;

[0023] Figure 3 The schematic diagram of the mobile assembly structure of the present application is shown;

[0024] Figure 4 The schematic diagram of the fastening assembly structure of the present application is shown;

[0025] Figure 5 A schematic diagram of the transmission assembly structure of the present application is shown;

[0026] Figure 6 A schematic diagram of the transmission assembly structure of the present application is shown; Figure 4 A schematic diagram of the transmission assembly structure of the present application is shown;

[0027] List of reference signs

[0028] Carrying assembly; 101, carrying frame; 102, carrying plate; 103, connecting rod;

[0029] Culture assembly; 201, culture frame; 202, outer slide rail; 203, reinforcing rib;

[0030] Transmission assembly; 301, transmission rod; 302, outer cutting groove; 303, protruding block;

[0031] Fastening assembly; 401, top-tight pin; 402, synchronous rod;

[0032] Moving assembly; 501, moving frame; 502, wheel; 503, sliding rod;

[0033] Taking assembly; 601, taking plate; 602, fixed knob;

[0034] Auxiliary groove;

[0035] Guide rail groove. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. Embodiment 1

[0037] Please refer to Figures 1 to 6 :

[0038] The utility model provides a kind of edible fungus culture shelf combination joint, comprising: bearing assembly 1;The bearing plate 102 of bearing assembly 1 is provided with auxiliary groove 7 and guide rail groove 8, transmission assembly 3 is slidably installed in auxiliary groove 7, fastening assembly 4 is embeddedly installed between the guide rail groove 8 of bearing plate 102 and auxiliary groove 7, culture assembly 2 is slidably installed at the guide rail groove 8 of bearing plate 102, fastening assembly 4 is in contact with culture assembly 2, bearing assembly 1 whole side is provided with moving assembly 5, and pickup assembly 6 is slidably installed on moving assembly 5.

[0039] As shown in the embodiment of the present disclosure, Figure 2 Connecting rod 103 is connected and installed between the bearing frame 101 of bearing assembly 1, and the bearing frame 101 and the connecting rod 103 are connected to each other to form a frame structure, and the bearing assembly 1 is provided as six groups of spacing frames, and the corner positions of each group of spacing frames are provided with bearing plates 102, so as to better increase the culture amount of raw material bacteria, directly connect the bearing frame 101 with the connecting rod 103 to increase the culture height and range of raw material bacteria, and the corner positions of the bearing frame 101 and the connecting rod 103 are provided with bearing plates 102, so that the culture assembly 2 can be stably installed on the bearing plate 102.

[0040] As shown in the embodiment of the present disclosure, Figure 4 The culture shelf 201 of culture assembly 2 is provided as a frame structure, and the outer slide rails 202 are provided at the left and right outer groove positions of the culture shelf 201, and the outer slide rails 202 are provided with notches, the culture shelf 201 is provided for bearing raw material bacteria, the outer slide rails 202 provided at the left and right side positions of the culture shelf 201 can stably slide in the guide rail groove 8, and the notches at the outer ends of the outer slide rails 202 can make the fastening assembly 4 at the guide rail groove 8 abut against the notches of the outer slide rails 202 after the outer slide rails 202 slide into the guide rail groove 8 of the bearing plate 102, so as to fix the position of the culture assembly 2, the reinforcing ribs 203 are additionally provided at the corner positions of the culture shelf 201, the reinforcing ribs 203 provided at the corner positions of the culture shelf 201 can reinforce the culture shelf 201 as a whole, so as to ensure the stability of the culture shelf 201 during use.

[0041] As shown in the embodiment of the present disclosure, Figure 5As shown, the transmission rod 301 of the transmission assembly 3 is provided in a long rod shape, the transmission rod 301 is provided in two groups of front and rear symmetrical structures which are slidingly installed in the auxiliary groove 7, the transmission rod 301 is provided with an outer cutting groove 302, the transmission rod 301 slidingly contacts each other through the outer cutting groove 302, the transmission rod 301 is provided with a protruding block 303, first, the transmission rod 301 is provided in a front and rear symmetrical structure which is slidingly installed in the auxiliary groove 7, so that the two groups of transmission rods 301 form a sliding contact with each other through the outer cutting groove 302, and the protruding block 303 provided on the transmission rod 301 can trigger the fastening assembly 4 when sliding, so as to realize the driving control of the fastening assembly 4 by the transmission assembly 3, and the transmission rod 301 is provided in a front and rear symmetrical structure, so that the driving control effect of the fastening assembly 4 can be realized by one group of transmission rods 301.

[0042] In the embodiments of the present disclosure, as shown in Figure 6 As shown, the tightening pin 401 of the fastening assembly 4 is installed between the auxiliary groove 7 and the guide rail groove 8 in the bearing plate 102, a spring is installed at the inner end of the tightening pin 401, and the outer end of the tightening pin 401 is provided in a spherical structure, two groups of adjacent tightening pins 401 are provided in a circularly symmetrical arrangement structure, the two groups of tightening pins 401 are connected through a synchronous rod 402, and the two groups of tightening pins 401 will be pushed out towards the outer end through the spring, and the outer end of the tightening pin 401 is provided in a spherical structure, so as to facilitate the extrusion and triggering of the outer end of the tightening pin 401 through the spherical structure, and the tightening pins 401 are connected through the synchronous rod 402, so that after the outer end of the tightening pin 401 is triggered, the other group of tightening pins 401 is driven through the synchronous rod 402, the driving of the fastening assembly 4 by the transmission assembly 3 is realized, and the fastening and release effect of the outer sliding rail 202 by the fastening assembly 4 is achieved. Embodiment 2

[0043] On the basis of embodiment one, as shown in Figure 3 As shown, the moving frame 501 of the moving assembly 5 is installed with wheels 502 at the bottom corner positions, four groups of vertical sliding rods 503 are installed on the moving frame 501, the moving frame 501 is provided at the top positions of the sliding rods 503, the moving frame 501 is provided in a cross-shaped structure, the whole moving assembly 5 is provided in a separate structure, the wheels 502 installed at the bottom of the moving frame 501 have the effect of facilitating the movement of the whole moving assembly 5, the sliding rods 503 on the moving frame 501 can conveniently receive the sliding installation of the assembly 6, and the moving frame 501 provided at the top positions of the sliding rods 503 is vertically provided in a cross-shaped structure, so as to assist in achieving the auxiliary reinforcement effect of the whole moving assembly 5.

[0044] In the embodiments of the present disclosure, as shown in Figure 3As shown, the access plate 601 of the access assembly 6 is provided in a frame-shaped structure, the access plate 601 is slidingly installed on the sliding rod 503, the inner side of the access plate 601 is provided with a guide groove 8, and the outer end of the access plate 601 is provided with a fixed knob 602 which is screw-connected, the access plate 601 is slidingly installed on the sliding rod 503, the access plate 601 can be slidingly lifted to a specified position, the guide groove 8 is arranged on the access plate 601, the guide groove 8 of the access plate 601 can be corresponded with the guide groove 8 of the bearing plate 102, the culture assembly 2 can be stably taken out by sliding, after the culture assembly 2 is slidingly taken onto the access assembly 6, the culture assembly 2 is stably fixed on the access assembly 6 by rotating the fixed knob 602, and the subsequent picking operation of the raw material bacteria on the culture assembly 2 is facilitated.

[0045] The working principle of the embodiment is as follows: after the raw material bacteria on the culture assembly 2 grow to a specified result, the raw material bacteria need to be picked, at this time, the position of the culture assembly 2 to be picked is selected, the moving assembly 5 is moved through the wheels 502, the access assembly 6 is lifted on the sliding rod 503, the guide groove 8 of the access plate 601 is aligned with the guide groove 8 of the bearing plate 102, at the same time, the position of the access plate 601 close to the culture assembly 2 directly contacts the outer end of the transmission assembly 3 installed in the auxiliary groove 7 of the bearing plate 102, the access plate 601 triggers the transmission assembly 3 inwardly, the transmission assembly 3 contacts the fastening assembly 4, the fastening assembly 4 is separated from the outer slide rail 202 of the bearing plate 102, the outer slide rail 202 of the culture assembly 2 can slide on the bearing plate 102, after the culture assembly 2 is slidingly moved to the guide groove 8 of the access plate 601, the fixed knob 602 of the access plate 601 is manually tightened, the fixed knob 602 fastens the outer slide rail 202, and then the moving assembly 5 can be moved outwardly to realize the picking effect of the raw material bacteria on the culture assembly 2.

[0046] When the culture assembly 2 is installed again, the reverse operation is sequentially performed, the culture assembly 2 with the raw material bacteria is fixed on the access assembly 6, the access assembly 6 is moved from the moving assembly 5 to a specified position, the transmission assembly 3 of the access assembly 6 is triggered again, the fixed knob 602 of the access assembly 6 is loosened, the culture assembly 2 is slidingly moved to the bearing plate 102, the culture assembly 2 is slidingly moved to a position, the access assembly 6 is separated from the transmission assembly 3, the transmission assembly 3 is reset with the internal fastening assembly 4, and the fastening assembly 4 can clamp the culture assembly 2 to complete the installation of the culture assembly 2.

[0047] In this paper, the following points need to be noted:

[0048] 1. The drawings of the embodiment of the disclosure only relate to the structures involved in the embodiment of the disclosure, and other structures can be referred to the general design.

[0049] 2. Embodiments of the present disclosure and features in embodiments can be combined with each other to obtain new embodiments in the case of no conflict.

[0050] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A combination connection for an edible mushroom cultivation rack, comprising: The carrier component (1) is provided with an auxiliary groove (7) and a guide rail groove (8) on the carrier plate (102) of the carrier component (1). The auxiliary groove (7) is slidably installed with a transmission component (3), and a fastening component (4) is embedded between the guide rail groove (8) and the auxiliary groove (7) of the carrier plate (102). A culture component (2) is slidably installed on the guide rail groove (8) of the carrier plate (102). The fastening component (4) is in contact with the culture component (2). A moving component (5) is provided on one side of the carrier component (1), and a receiving component (6) is slidably installed on the moving component (5).

2. The edible mushroom cultivation rack assembly rail according to claim 1, characterized in that, The support frame (1) of the support component (1) is connected and installed with connecting rods (103). The support frame (101) and the connecting rods (103) are connected to each other to form a frame structure. The support component (1) is set as six sets of spaced frames, and a support plate (102) is set at the corner position of each set of spaced frames.

3. The edible mushroom cultivation rack assembly rail according to claim 1, characterized in that, The culture rack (201) of the culture component (2) is configured as a frame structure. The outer slide rail (202) is provided at the left and right outer groove positions of the culture rack (201). The outer slide rail (202) has a notch. First, the culture rack (201) is configured to carry the raw material bacteria. The corner position of the culture rack (201) is equipped with a reinforcing rib (203).

4. The edible mushroom cultivation rack assembly rail according to claim 1, characterized in that, The transmission rod (301) of the transmission assembly (3) is configured as a long rod-shaped structure. The transmission rod (301) is configured to be slidably installed in two symmetrical sets at the front and rear of the auxiliary groove (7). The transmission rod (301) is provided with an outer groove (302). The transmission rod (301) slides in contact with each other through the outer groove (302). The transmission rod (301) is provided with a protrusion (303).

5. The edible mushroom cultivation rack assembly rail according to claim 1, characterized in that, The top-clamping pin (401) of the fastening assembly (4) is installed between the auxiliary groove (7) and the guide rail groove (8) in the bearing plate (102). A spring is installed at the inner end of the top-clamping pin (401), and the outer end of the top-clamping pin (401) is set as a spherical structure. Two sets of adjacent top-clamping pins (401) are arranged in a symmetrical circular arrangement. The two sets of top-clamping pins (401) are connected by a synchronizing rod (402).

6. The edible mushroom cultivation rack assembly rail according to claim 1, characterized in that, The movable component (5) has wheels (502) installed at the bottom corner of the movable frame (501), and four sets of vertical sliding rods (503) installed on the movable frame (501). The movable frame (501) is set at the top of the sliding rods (503), and the movable frame (501) is set in a cross structure.

7. The edible mushroom cultivation rack assembly rail according to claim 1, characterized in that, The receiving plate (601) of the receiving component (6) is configured as a frame structure. The receiving plate (601) is slidably mounted on the sliding rod (503). The inner side of the receiving plate (601) is provided with a guide rail groove (8). A fixing knob (602) is screwed onto the middle position of the outer end of the receiving plate (601).