Fungus stick two-end oxygen release jack device
By designing an oxygen-releasing hole device at both ends of the mushroom stick, the problem of insufficient oxygen supply at both ends of the mushroom stick was solved, realizing automated hole piercing, reducing labor intensity, and ensuring the oxygen supply for the growth environment of edible fungi.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- PINGQUAN XICAIYINGYONGJUN TECH DEV CO LTD
- Filing Date
- 2025-05-15
- Publication Date
- 2026-04-21
AI Technical Summary
Existing mushroom stick piercing equipment cannot meet the oxygen supply requirements at both ends of the mushroom stick, which affects the growth of edible fungi at both ends of the mushroom stick. In addition, manual operation is cumbersome and labor-intensive.
An oxygen-releasing insertion device for both ends of a mushroom log was designed, including an operating table, a baffle, and a top plate. By setting sliding rods and elastic elements at both ends of the V-groove of the operating table, automated piercing is achieved, reducing manual operation.
The automated piercing of both ends of the mushroom sticks has been achieved, which has improved operational efficiency, reduced labor intensity, and ensured the oxygen supply needs of all parts of the mushroom sticks.
Smart Images

Figure CN224139761U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of edible fungi cultivation technology, specifically relating to an oxygen-releasing insertion device at both ends of a mushroom stick. Background Technology
[0002] Edible fungi require sufficient oxygen to grow rapidly and stably. To ensure adequate oxygen supply, aeration holes are typically made in the substrate to guarantee sufficient oxygen levels. However, current aeration devices only puncture the circumference of the substrate, leaving the ends prone to insufficient oxygen supply and hindering fungal growth. To ensure adequate oxygen for all parts of the substrate, aeration holes must be made at both ends. Current devices cannot accommodate these ends, requiring manual puncture, which is labor-intensive and wastes manpower. Utility Model Content
[0003] This utility model provides an oxygen-releasing insertion device at both ends of a mushroom stick, which aims to solve the problem of cumbersome manual operation and high labor intensity when piercing the ends of the mushroom stick in the prior art.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is: to provide an oxygen release hole device at both ends of a mushroom stick, comprising:
[0005] The operating table has a V-shaped groove on its top for placing mushroom sticks, and the length direction of the V-shaped groove is defined as the first direction.
[0006] A baffle is installed at one end of the V-groove, and a first insert rod is slidably disposed on the baffle along a first direction. A first pusher for driving the first insert rod to move is installed on the operating table.
[0007] A top plate is installed at the other end of the V-groove. An elastic element is installed on the operating table to push the top plate to move closer to the V-groove. A second insert rod is slidably arranged on the top plate, and a second pusher is installed on the operating table to push the second insert rod to move.
[0008] In one possible implementation, at least two guide rods are fixedly installed on the baffle, the length direction of the two guide rods is set along a first direction, and a connecting plate is slidably arranged on the two guide rods, and the first insert rod is fixedly installed on the connecting plate.
[0009] In one possible implementation, a guide sleeve for guiding the movement of the first insertion rod is fixedly installed on the baffle, and the first insertion rod is slidably disposed inside the guide sleeve.
[0010] In one possible implementation, a sliding seat is mounted on the operating table, the top plate and the second pusher are both mounted on the sliding seat, and the position of the sliding seat on the operating table has a degree of freedom to be adjusted along a first direction.
[0011] In one possible implementation, a guide rail is fixedly mounted on the operating table, and a slider that is slidably mounted on the guide rail is fixedly mounted on the sliding seat. A clamping member for abutting against the side wall of the guide rail is threadedly connected to the side wall of the slider.
[0012] In one possible implementation, a mounting bracket is slidably disposed on the sliding seat along a first direction, the top plate is fixedly mounted on the mounting bracket, and the second insert rod is slidably disposed on the mounting bracket, with the elastic element installed between the mounting bracket and the sliding seat.
[0013] In one possible implementation, a plurality of support rods arranged along a first direction in length are fixedly mounted on the mounting bracket, and a connecting plate is slidably mounted on the support rod, with the second insertion rod fixedly mounted on the connecting plate.
[0014] In one possible implementation, a plurality of guide posts are fixedly mounted on the mounting bracket, the guide posts are slidably disposed on the sliding seat, and the elastic element is fitted onto the outside of the guide posts.
[0015] The solution shown in this application embodiment, compared with the prior art, features an operating table with a V-shaped groove in the middle. A baffle and a top plate are respectively positioned at both ends of the V-shaped groove. A first insert and a second insert are slidably mounted on the baffle and top plate, respectively. The top plate can move closer to the baffle via an elastic element. When drilling holes at both ends of the mushroom stick, the mushroom stick can be placed inside the V-shaped groove, with one end of the stick abutting against the baffle, and the top plate abutting against the other end of the stick under the action of the elastic element. The first and second pushers respectively push the first and second inserts to move, completing the drilling operation at both ends of the mushroom stick. Furthermore, the baffle and top plate limit the movement of the mushroom stick, improving the stability of the stick's position during drilling. This enables automated drilling, reducing manual operation and lowering the labor intensity of operators. Attached Figure Description
[0016] Figure 1 A schematic diagram of the oxygen-releasing insertion hole device at both ends of the mushroom stick provided in this embodiment of the utility model;
[0017] Figure 2 A schematic diagram of the installation structure of the first insertion rod provided in an embodiment of this utility model;
[0018] Figure 3 A schematic diagram of the installation structure of the second insertion rod provided in an embodiment of this utility model.
[0019] Explanation of reference numerals in the attached figures:
[0020] 1. Operating platform; 2. Baffle; 21. Guide rod; 22. Connecting plate; 23. Guide sleeve; 3. First insert rod; 4. First pusher; 5. Top plate; 51. Elastic element; 6. Second insert rod; 7. Second pusher; 8. Sliding seat; 81. Guide rail; 82. Slider; 83. Tightening element; 84. Mounting bracket; 841. Support rod; 842. Guide column; 85. Connecting plate. Detailed Implementation
[0021] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0022] Please refer to the following: Figures 1 to 3 The oxygen-releasing insertion device at both ends of the mushroom stick provided by this utility model will now be described. The oxygen-releasing insertion device at both ends of the mushroom stick includes an operating table 1, a baffle 2, and a top plate 5. The top of the operating table 1 is provided with a V-shaped groove for placing the mushroom stick, and the length direction of the V-shaped groove is defined as the first direction; the baffle 2 is installed at one end of the V-shaped groove, and a first insertion rod 3 is slidably arranged on the baffle 2 along the first direction, and a first pushing member 4 for driving the first insertion rod 3 to move is installed on the operating table 1; the top plate 5 is installed at the other end of the V-shaped groove, and an elastic member 51 for pushing the top plate 5 to move closer to the V-shaped groove is installed on the operating table 1, a second insertion rod 6 is slidably arranged on the top plate 5, and a second pushing member 7 for pushing the second insertion rod 6 to move is installed on the operating table 1.
[0023] The aeration and insertion device at both ends of the mushroom stick provided in this embodiment, compared with the prior art, features an operating platform 1 with a V-shaped groove in the middle. A baffle 2 and a top plate 5 are respectively installed at both ends of the V-shaped groove. A first insertion rod 3 and a second insertion rod 6 are slidably mounted on the baffle 2 and top plate 5, respectively. The top plate 5 can move closer to the baffle 2 via the drive of an elastic member 51. When drilling holes at both ends of the mushroom stick, the mushroom stick can be placed inside the V-shaped groove, with one end of the stick abutting against the baffle 2. The top plate 5 abuts against the other end of the stick under the action of the elastic member 51. The first and second insertion rods 3 and 6 are moved by the first and second pushing members 4 and 7, respectively, to complete the drilling operation at both ends of the mushroom stick. Furthermore, the baffle 2 and top plate 5 prevent the mushroom stick from moving, improving the stability of the mushroom stick's position during drilling. This allows for automatic drilling, reducing manual operation and lowering the labor intensity of operators.
[0024] In some embodiments, the baffle 2 may be adopted as follows: Figure 1 , Figure 2 The structure shown. See also... Figure 1 , Figure 2 At least two guide rods 21 are fixedly installed on the baffle 2. The length direction of both guide rods 21 is set along a first direction, and a connecting plate 22 is slidably arranged on the two guide rods 21. The first insertion rod 3 is fixedly installed on the connecting plate 22. One end of the guide rod 21 is fixedly installed on the guide plate, and the other end of the guide rod 21 extends away from the baffle 2. The connecting plate 22 is slidably arranged between the two guide rods 21. A flange is fixedly installed at the end of the first insertion rod 3. A through hole is provided in the middle of the connecting plate 22 to slide with the first insertion rod 3. The first insertion rod 3 passes through the through hole and can be fixed to the connecting plate 22 by the flange. On the other side of the flange, a sleeve for installing the driving end of the first pusher 4 is provided. The driving end of the first pusher 4 is installed inside the sleeve, and a bolt for abutting against the driving end of the first pusher 4 is threaded on the side wall of the sleeve. This connects the driving end of the first pusher 4 to the first insert rod 3, and guides the movement direction of the first insert rod 3 through the guide rod 21 guiding the connecting plate 22.
[0025] In some embodiments, the baffle 2 may be adopted as follows: Figure 2 The structure shown. See also Figure 2 A guide sleeve 23 for guiding the movement of the first insertion rod 3 is fixedly installed on the baffle 2. The first insertion rod 3 is slidably disposed inside the guide sleeve 23. The guide sleeve 23 is fixedly installed on the side of the baffle 2 away from the V-groove. The first insertion rod 3 is slidably disposed inside the guide sleeve 23. The guide sleeve 23 guides the movement direction of the first insertion rod 3, preventing the first insertion rod 3 from being bent or twisted under force, which would affect subsequent use.
[0026] In some embodiments, the aforementioned control panel 1 may employ, for example... Figure 1 , Figure 3 The structure shown. See also... Figure 1 , Figure 3 A sliding seat 8 is installed on the operating table 1. The top plate 5 and the second pushing member 7 are both mounted on the sliding seat 8, and the position of the sliding seat 8 on the operating table 1 has a degree of freedom for adjustment along a first direction. The sliding seat 8 is designed so that its position can be freely adjusted according to the length of the mushroom stick, allowing the top plate 5 to effectively abut against the end of the mushroom stick. When placing the mushroom stick, the top plate 5 can be pushed away from the V-groove first. After the mushroom stick is placed inside the V-groove, the top plate 5 is released, allowing it to abut against the end of the mushroom stick under the action of the elastic member 51. The operation is simple and convenient, facilitating the picking up and placing of mushroom sticks.
[0027] In some embodiments, the aforementioned sliding seat 8 may be adopted as follows: Figure 1 , Figure 3 The structure shown. See also... Figure 1 , Figure 3 Two guide rails 81 are fixedly installed on the top of the operating table 1. A slider 82, which is slidably mounted on the guide rails 81, is fixedly installed on the bottom of the sliding seat 8. A threaded hole for mounting a clamping member 83 is provided on the side wall of the slider 82. The threaded hole penetrates the side wall of the slider 82. The clamping member 83 is located inside the threaded hole and can abut against the side wall of the guide rail 81, thereby fixing the slider 82 on the guide rail 81. When it is necessary to adjust the position of the sliding seat 8, the clamping member 83 can be loosened and the sliding seat 8 can be pushed to move on the guide rail 81. After moving to the appropriate position, the slider 82 can be fixed on the guide rail 81 by rotating the clamping member 83, thereby fixing the position of the sliding seat 8 on the operating table 1.
[0028] In some embodiments, the aforementioned sliding seat 8 may be adopted as follows: Figure 1 , Figure 3 The structure shown. See also... Figure 1 , Figure 3 A mounting bracket 84 is slidably mounted on the sliding seat 8 along a first direction. A top plate 5 is fixedly mounted on the mounting bracket 84, and a second insertion rod 6 is slidably mounted on the mounting bracket 84. An elastic element 51 is installed between the mounting bracket 84 and the sliding seat 8. The mounting bracket 84 is mounted on the side of the sliding seat 8 near the V-groove, and a top plate 5 is fixedly mounted on the end of the mounting bracket 84 away from the sliding seat 8. The elastic element 51 is located between the mounting bracket 84 and the sliding seat 8, thereby allowing the mounting bracket 84 to move towards the V-groove. The second insertion rod 6 is slidably mounted on the mounting bracket 84 along the first direction. When the top plate 5 is pressed against the end of the mushroom stick, the second insertion rod 6 can move relative to the mounting bracket 84 along the first direction, thereby realizing the operation of inserting the mushroom stick into the end hole.
[0029] In some embodiments, the mounting bracket 84 may be adopted as follows: Figure 1 , Figure 3 The structure shown. See also... Figure 1 , Figure 3 Multiple support rods 841, arranged along a first direction in the length direction, are fixedly mounted on the mounting bracket 84. A connecting plate 85 is slidably mounted on the support rods 841, and the second insertion rod 6 is fixedly mounted on the connecting plate 85. The second insertion rod 6 is fixedly mounted on the side of the connecting plate 85 near the V-groove, and the other side of the connecting plate 85 is fixedly connected to the driving end of the second pusher 7. When the second insertion rod 6 moves along the first direction, the stability of the second insertion rod 6 during movement is ensured by the guide between the connecting plate 85 and the support rods 841.
[0030] Preferably, in this embodiment, both ends of the support rod 841 are fixed between the mounting bracket 84 and the top plate 5, respectively. A flange is fixedly installed at the end of the second insert rod 6, the second insert rod 6 passes through the connecting plate 85 and the flange abuts against the side of the connecting plate 85, and is fixedly installed on the connecting plate 85 by bolts. A mounting sleeve for connecting to the driving end of the second pusher 7 is also provided on the flange, and bolts for fixing the driving end of the second pusher 7 inside the mounting sleeve are threaded onto the side wall of the mounting sleeve.
[0031] In some embodiments, the mounting bracket 84 may be adopted as follows: Figure 3 The structure shown. See also Figure 3 Multiple guide posts 842 are fixedly mounted on the mounting bracket 84. The guide posts 842 are slidably mounted on the sliding seat 8, and elastic elements 51 are fitted onto the outer side of the guide posts 842. Two guide posts 842 are fixedly mounted on the side of the mounting bracket 84 away from the V-groove. A guide sleeve for mounting the guide posts 842 is provided on the sliding seat 8. The elastic element 51 is a spring, fitted onto the outer side of the guide posts 842, and its two ends abut against the sliding seat 8 and the mounting bracket 84, respectively. It can guide the movement of the mounting bracket 84.
[0032] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A device for oxygen insertion at both ends of a bacterial rod, characterized by, include: Operating table (1), the top of the operating table (1) is provided with a V-shaped groove for placing mushroom sticks, and the length direction of the V-shaped groove is defined as the first direction; A baffle (2) is installed at one end of the V-groove. A first insert rod (3) is slidably provided on the baffle (2) along the first direction. A first pusher (4) for driving the first insert rod (3) to move is installed on the operating table (1). A top plate (5) is installed at the other end of the V-groove. An elastic element (51) for pushing the top plate (5) to move closer to the V-groove is installed on the operating table (1). A second insert rod (6) is slidably arranged on the top plate (5), and a second pusher (7) for pushing the second insert rod (6) to move is installed on the operating table (1).
2. The device of claim 1, wherein the oxygen releasing plug is made of a material selected from the group consisting of: a metal, a metal alloy, a ceramic, a glass, a plastic, a polymer, a composite, and a combination thereof. At least two guide rods (21) are fixedly installed on the baffle (2). The length direction of the two guide rods (21) is set along the first direction, and a connecting plate (22) is slidably arranged on the two guide rods (21). The first insert rod (3) is fixedly installed on the connecting plate (22).
3. The oxygen release port device at both ends of the mushroom stick as described in claim 1, characterized in that, A guide sleeve (23) for guiding the first insertion rod (3) to move is fixedly installed on the baffle (2), and the first insertion rod (3) is slidably disposed inside the guide sleeve (23).
4. The device of claim 1, wherein the oxygen releasing plug is made of a material selected from the group consisting of: a metal, a metal alloy, a ceramic, a glass, a plastic, a polymer, a composite, and a combination thereof. A sliding seat (8) is installed on the operating table (1). The top plate (5) and the second pusher (7) are both installed on the sliding seat (8), and the position of the sliding seat (8) on the operating table (1) has a degree of freedom to be adjusted along the first direction.
5. The device of claim 4, wherein the oxygen releasing plug is made of a material selected from the group consisting of: a metal, a metal alloy, a ceramic, a glass, a plastic, a polymer, a composite, and a combination thereof. The operating table (1) is fixedly installed with a guide rail (81), and the sliding seat (8) is fixedly installed with a slider (82) that is slidably disposed on the guide rail (81). The side wall of the slider (82) is threadedly connected with a clamping member (83) for abutting against the side wall of the guide rail (81).
6. The device of claim 4, wherein the oxygen releasing plug is made of a material selected from the group consisting of: a metal, a metal alloy, a ceramic, a glass, a plastic, a polymer, a composite, and a combination thereof. A mounting bracket (84) is slidably disposed on the sliding seat (8) along the first direction. The top plate (5) is fixedly mounted on the mounting bracket (84), and the second insert rod (6) is slidably disposed on the mounting bracket (84). The elastic element (51) is installed between the mounting bracket (84) and the sliding seat (8).
7. The device of claim 6, wherein the oxygen releasing plug is made of a material selected from the group consisting of: a metal, a metal alloy, a ceramic, a glass, a plastic, a polymer, a composite, and a combination thereof. The mounting bracket (84) is fixedly mounted with a plurality of support rods (841) arranged along the first direction in the length direction. A connecting plate (85) is slidably arranged on the support rod (841), and the second insert rod (6) is fixedly mounted on the connecting plate (85).
8. The oxygen release port device at both ends of the mushroom stick as described in claim 6, characterized in that, Multiple guide posts (842) are fixedly installed on the mounting bracket (84). The guide posts (842) are slidably disposed on the sliding seat (8), and the elastic element (51) is fitted on the outside of the guide posts (842).