Mushroom rinsing device

By designing the rinsing hole frame and dispersed rinsing assembly of the mushroom rinsing device, the problem of uneven rinsing of mushrooms is solved, and multi-directional cleaning and efficient rinsing effects are achieved.

CN223125785UActive Publication Date: 2025-07-22HENAN FUNIU MOUNTAIN BAIJUNYUAN MUSHROOM IND CO LTD
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Patent Information

Application Number
CN202422312582.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-22
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

In the prior art, mushrooms cannot be effectively dispersed during the rinsing process, resulting in poor rinsing effect and the inability to clean various areas of the mushroom surface from multiple directions.

Method used

A mushroom rinsing device is designed, including a rinsing hole frame, side panel, baffle, positioning butt assembly and dispersing flush assembly. The mushroom storage component is stably positioned in the rinsing pool through the positioning butt assembly, and the dispersing flush assembly releases flushing from multiple directions to clean the surface of the mushroom.

Benefits of technology

Effective cleaning of various areas of the surface of shiitake mushrooms is achieved, rinsing effect and working efficiency are improved, mushroom accumulation is avoided, and cleaning effect is improved.

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Abstract

The utility model belongs to the technical field of shiitake mushroom processing, and particularly relates to a shiitake mushroom rinsing device which comprises a shiitake mushroom storage assembly, the shiitake mushroom storage assembly comprises a rinsing hole frame, a side plate and a baffle, the side plate and the baffle are symmetrically fixed on the inner side of the rinsing hole frame, a positioning butt joint assembly is arranged on the outer side of the shiitake mushroom storage assembly, and the shiitake mushroom storage assembly is provided with a positioning butt joint assembly. According to the shiitake mushroom rinsing pool, the rinsing hole frame and shiitake mushrooms stored in the rinsing hole frame are stably sunk into water in the rinsing pool together, the inner space of the rinsing hole frame is separated by the multiple dispersion flushing assemblies clamped in the rinsing hole frame, the shiitake mushrooms are separated in the multiple storage spaces, and therefore the shiitake mushrooms can be placed in the multiple storage spaces. The shiitake mushrooms are prevented from being stacked in a designated area, the transfer box connected with an external water source guides and releases flushing water into the flushing pore plate and the flushing top plate, the flushing water directly impacts and cleans all the areas of the surfaces of the shiitake mushrooms from multiple directions, and all the areas of the surfaces of the shiitake mushrooms are effectively cleaned.
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Description

Technical Field

[0001] The utility model belongs to the technical field of lentinula edodes processing, and particularly relates to a lentinula edodes rinsing device. Background Art

[0002] Before processing and eating lentinula edodes, it is necessary to rinse the lentinula edodes to remove impurities and dirt on the surface of the lentinula edodes. At present, the lentinula edodes are directly put into the rinsing pool of the cleaning machine, and the rinsing operation of the lentinula edodes is carried out in the rinsing pool. The directly put lentinula edodes are stacked in the rinsing pool, and it is impossible to effectively complete the rinsing operation of the lentinula edodes in each area of the rinsing pool. At the same time, the water flushing points in the rinsing pool are fixed, and it is impossible to effectively clean different areas on the surface of the lentinula edodes in each area from multiple directions, which affects the rinsing and cleaning effect of the lentinula edodes. Content of the Utility Model

[0003] The utility model provides a lentinula edodes rinsing device, which has the characteristic of improving the rinsing and cleaning effect of lentinula edodes.

[0004] The utility model provides the following technical scheme: it includes a lentinula edodes storage component, and the lentinula edodes storage component includes a rinsing hole frame, side plates and a baffle. The side plates and the baffle are symmetrically fixed inside the rinsing hole frame. A positioning and docking component is arranged outside the lentinula edodes storage component. The positioning and docking component includes an outer frame and columns. The number of the columns is four, and the four columns are positioned outside the lentinula edodes storage component through the outer frame. The lentinula edodes storage component is positioned inside the rinsing pool through the positioning and docking component. A plurality of dispersion flushing components distributed along the side of the rinsing hole frame are arranged inside the rinsing hole frame. The dispersion flushing components include a flushing hole plate, a flushing top plate and transfer boxes. The number of the transfer boxes is two. The flushing hole plate and the flushing top plate are clamped and positioned inside the rinsing hole frame through the two transfer boxes. The transfer boxes are connected to an external water source to release flushing water to the inside of the rinsing hole frame through the flushing hole plate and the flushing top plate, so that the flushing water directly impacts and cleans different areas on the surface of the lentinula edodes in each area from multiple directions.

[0005] Wherein, the sides of the side plates and the baffle are fixedly connected to the corresponding inner walls of the rinsing hole frame, and a buffer space is formed between the baffle, the rinsing hole frame and the dispersion flushing component close to the baffle.

[0006] Wherein, the four columns are respectively fixedly connected to the four corners outside the outer frame, and the outer frame is snap-connected to the outside of the side plates and the baffle.

[0007] Wherein, the flushing hole plate is fixedly connected between the two transfer boxes, the bottom of the flushing hole plate contacts the inner wall of the rinsing hole frame, and the transfer boxes are snap-connected between the rinsing hole frame and the outer frame.

[0008] Among them, the flushing top plate is rotatably connected to the top end of the flushing orifice plate, the flushing top plate communicates with the flushing orifice plate, and a flushing water pipe is fixedly connected to the top of the transfer box.

[0009] Among them, a plurality of card slots corresponding to the flushing orifice plate are formed on the side of the rinsing orifice frame, and both ends of the flushing orifice plate are respectively clamped and connected inside the corresponding two card slots.

[0010] Among them, a connecting rope is arranged above the dispersive flushing assembly, a plurality of docking ropes corresponding to the dispersive flushing assembly are fixedly connected to the connecting rope, and the other ends of the docking ropes are fixedly connected to the top of the corresponding flushing top plate.

[0011] The beneficial effects of the present utility model are as follows:

[0012] By setting the positioning and docking assembly, the present utility model positions and fastens the mushroom storage assembly, and installs the mushroom storage assembly together with the positioning into the rinsing pool. The rinsing orifice frame and the mushrooms stored inside sink stably into the water in the rinsing pool together. A plurality of dispersive flushing assemblies clamped in the rinsing orifice frame divide the internal space of the rinsing orifice frame, so as to divide the mushrooms in multiple storage spaces, achieving the effect of dispersively separating the mushrooms and avoiding the mushrooms from piling up in a designated area. The transfer box connected to an external water source guides and releases the flushing water into the flushing orifice plate and the flushing top plate, and directly releases the flushing water from the flushing orifice plate and the flushing top plate into the corresponding mushroom storage space on the inner side of the rinsing orifice frame, enabling the flushing water to directly impact and clean the surfaces of the mushrooms in each area from multiple directions, so as to effectively complete the rinsing and cleaning of the mushrooms, effectively clean each area of the mushroom surface, improve the rinsing and cleaning effect of the mushrooms, and improve the operation efficiency.

[0013] Parts not involved in this device are the same as the prior art or can be implemented using the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic structural diagram of the present utility model;

[0015] Figure 2 is Figure 1 a schematic structural diagram from another perspective;

[0016] Figure 3 is a schematic cross-sectional structural diagram of the present utility model;

[0017] Figure 4 is a schematic structural diagram of a partial separation of the present utility model.

[0018] In the figure: 1. Mushroom storage component; 11. Rinsing hole frame; 111. Card slot; 12. Side plate; 13. Baffle; 14. Buffer space; 2. Positioning and docking component; 21. Outer frame; 22. Column; 3. Dispersion flushing component; 31. Flushing hole plate; 32. Flushing top plate; 33. Transfer box; 34. Flushing water pipe; 4. Connecting rope; 41. Docking rope. Detailed implementation mode

[0019] Please refer to Figures 1-4 , the present utility model provides the following technical solutions: including a mushroom storage component 1, the mushroom storage component 1 includes a rinsing hole frame 11, a side plate 12 and a baffle 13, the side plate 12 and the baffle 13 are symmetrically fixed inside the rinsing hole frame 11, a positioning and docking component 2 is arranged outside the mushroom storage component 1, the positioning and docking component 2 includes an outer frame 21 and a column 22, the number of columns 22 is four, and the four columns 22 are positioned outside the mushroom storage component 1 through the outer frame 21. The mushroom storage component 1 is positioned inside the rinsing tank through the positioning and docking component 2. A plurality of dispersion flushing components 3 distributed along the side of the rinsing hole frame 11 are arranged inside the rinsing hole frame 11. The dispersion flushing component 3 includes a flushing hole plate 31, a flushing top plate 32 and a transfer box 33. The number of transfer boxes 33 is two. The flushing hole plate 31 and the flushing top plate 32 are clamped and positioned inside the rinsing hole frame 11 through the two transfer boxes 33. The transfer box 33 is connected to an external water source to release flushing water through the flushing hole plate 31 and the flushing top plate 32 to the inside of the rinsing hole frame 11, so that the flushing water directly impacts and cleans the surfaces of mushrooms in each area from multiple directions.

[0020] In this implementation scheme: the mushroom storage component 1 is used to store mushrooms. The mushroom storage component 1 is composed of a rinsing hole frame 11, a side plate 12 and a baffle 13. The side plate 12 and the baffle 13 are symmetrically fixed inside the rinsing hole frame 11. The sides of the side plate 12 and the baffle 13 are fixedly connected to the corresponding inner walls of the rinsing hole frame 11, stably combining the rinsing hole frame 11, the side plate 12 and the baffle 13. A mushroom storage space is formed between the rinsing hole frame 11, the side plate 12 and the baffle 13 to store mushrooms to be rinsed.

[0021] A positioning and docking component 2 is arranged outside the mushroom storage component 1. The positioning and docking component 2 is composed of an outer frame 21 and a column 22. The number of columns 22 is four. The four columns 22 are respectively fixedly connected to the four corners outside the outer frame 21. The outer frame 21 is snap-connected to the outside of the side plate 12 and the baffle 13. The four columns 22 are positioned outside the mushroom storage component 1 through the outer frame 21. The positioning and docking component 2 can bring the mushroom storage component 1 into the rinsing tank together. The column 22 is inserted and positioned in a specified area in the rinsing tank, so that the mushroom storage component 1 can be stably positioned in the specified area in the rinsing tank through the positioning and docking component 2 to effectively perform subsequent mushroom rinsing operations.

[0022] Inside the rinsing hole frame 11, several dispersive flushing components 3 are arranged along the side of the rinsing hole frame 11. The dispersive flushing component 3 is composed of a flushing hole plate 31, a flushing top plate 32 and a transfer box 33. The number of transfer boxes 33 is two. The flushing hole plate 31 is fixedly connected between the two transfer boxes 33. The bottom of the flushing hole plate 31 contacts the inner wall of the rinsing hole frame 11. The transfer box 33 is snap-connected between the rinsing hole frame 11 and the outer frame 21, so that the flushing hole plate 31 and the flushing top plate 32 are clamped and positioned inside the rinsing hole frame 11 through the two transfer boxes 33. A number of clamping grooves 111 corresponding to the flushing hole plate 31 are provided on the side of the rinsing hole frame 11. The two ends of the flushing hole plate 31 are respectively snap-connected inside the corresponding two clamping grooves 111, which can perform alignment when the dispersive flushing component 3 is placed inside the rinsing hole frame 11 and reinforcement after clamping placement, improving the stability of the dispersive flushing component 3 during use. The flushing top plate 32 is rotatably connected to the top of the flushing hole plate 31, and the flushing top plate 32 can rotate on the top of the flushing hole plate 31, facilitating the adjustment of the position and state of the flushing top plate 32. The flushing top plate 32 communicates with the flushing hole plate 31. A flushing water pipe 34 is fixedly connected to the top of the transfer box 33. The transfer box 33 is connected to an external water source, and can release flushing water to the inside of the rinsing hole frame 11 through the flushing hole plate 31 and the flushing top plate 32, so that the flushing water directly impacts and cleans the surfaces of various regions of the mushrooms in each region from multiple directions. A buffer space 14 is formed between the baffle 13, the rinsing hole frame 11 and the dispersive flushing component 3 close to the baffle 13, to ensure the smooth operation of the dispersive flushing component 3 close to the baffle 13.

[0023] The positioning and docking component 2 positions and fastens the mushroom storage component 1, and installs the mushroom storage component 1 together with the positioning into the rinsing pool, so that the rinsing hole frame 11 and the mushrooms stored inside sink stably into the water in the rinsing pool together, to effectively perform the mushroom rinsing operation. Multiple dispersive flushing components 3 clamped in the rinsing hole frame 11 divide the internal space of the rinsing hole frame 11, so as to divide the mushrooms into multiple storage spaces, achieving the effect of dispersively separating the mushrooms and preventing the mushrooms from accumulating in the designated area. The transfer box 33 connected to the external water source guides and releases flushing water into the flushing hole plate 31 and the flushing top plate 32, and directly releases the flushing water into the corresponding mushroom storage space inside the rinsing hole frame 11 through the flushing hole plate 31 and the flushing top plate 32, which can directly impact and clean the surfaces of various regions of the mushrooms in each region from multiple directions, to effectively complete the rinsing and cleaning of the mushrooms, effectively clean the surfaces of various regions of the mushrooms, improve the rinsing and cleaning effect of the mushrooms, and improve the operation efficiency.

[0024] Above the dispersive flushing assembly 3, there is a connecting rope 4. A number of docking ropes 41 corresponding to the dispersive flushing assembly 3 are fixedly connected to the connecting rope 4. The other ends of the docking ropes 41 are fixedly connected to the tops of the corresponding flushing top plates 32. By operating the connecting rope 4, the flushing top plate 32 can be rotated on the flushing orifice plate 31 through the pulling of a number of docking ropes 41 to expose the inner mushroom storage space, facilitating the removal of the mushrooms after the rinsing operation.

Claims

1. An Lentinula edodes rinsing device, characterized in that: It includes a shiitake mushroom storage component (1), and the shiitake mushroom storage component (1) includes a rinsing hole frame (11), side plates (12) and a baffle (13). The side plates (12) and the baffle (13) are symmetrically fixed inside the rinsing hole frame (11). A positioning and docking component (2) is provided outside the shiitake mushroom storage component (1). The positioning and docking component (2) includes an outer frame (21) and columns (22). The number of the columns (22) is four, and the four columns (22) are positioned outside the shiitake mushroom storage component (1) through the outer frame (21). The shiitake mushroom storage component (1) is positioned inside a rinsing pool through the positioning and docking component (2). A number of dispersion rinsing components (3) distributed along the side of the rinsing hole frame (11) are provided inside the rinsing hole frame (11). The dispersion rinsing component (3) includes a rinsing hole plate (31), a rinsing top plate (32) and a transfer box (33). The number of the transfer boxes (33) is two. The rinsing hole plate (31) and the rinsing top plate (32) are clamped and positioned inside the rinsing hole frame (11) through the two transfer boxes (33). The transfer box (33) is connected to an external water source to release flushing water to the inside of the rinsing hole frame (11) through the rinsing hole plate (31) and the rinsing top plate (32), so that the flushing water directly impacts and cleans the surfaces of the shiitake mushrooms in each area from multiple directions.

2. The shiitake mushroom rinsing device according to claim 1, wherein: The sides of the side plates (12) and the baffle (13) are fixedly connected to the corresponding inner walls of the rinsing hole frame (11). A buffer space (14) is formed between the baffle (13), the rinsing hole frame (11) and the dispersion rinsing component (3) close to the baffle (13).

3. The shiitake mushroom rinsing device according to claim 1, characterized in that: The four columns (22) are respectively fixedly connected to the four corners outside the outer frame (21), and the outer frame (21) is snap-connected to the outside of the side plates (12) and the baffle (13).

4. A shiitake mushroom rinsing device according to claim 1, characterized in that: The rinsing hole plate (31) is fixedly connected between the two transfer boxes (33). The bottom of the rinsing hole plate (31) contacts the inner wall of the rinsing hole frame (11), and the transfer box (33) is snap-connected between the rinsing hole frame (11) and the outer frame (21).

5. The shiitake mushroom rinsing device according to claim 1, wherein: The rinsing top plate (32) is rotatably connected to the top of the rinsing hole plate (31). The rinsing top plate (32) communicates with the rinsing hole plate (31), and a flushing water pipe (34) is fixedly connected to the top of the transfer box (33).

6. The shiitake mushroom rinsing device according to claim 1, wherein: A number of card slots (111) corresponding to the rinsing hole plate (31) are provided on the side of the rinsing hole frame (11), and both ends of the rinsing hole plate (31) are respectively snap-connected inside the corresponding two card slots (111).

7. The shiitake mushroom rinsing device according to claim 1, characterized in that: A connecting rope (4) is provided above the dispersion rinsing component (3). A number of docking ropes (41) corresponding to the dispersion rinsing component (3) are fixedly connected to the connecting rope (4), and the other ends of the docking ropes (41) are fixedly connected to the tops of the corresponding rinsing top plates (32).