Drying device for shiitake mushroom processing
By designing a drying device for mushroom processing, and using the cooperation of the sliding partition and the support rod, the problem of difficulty in removing due to the high temperature in the cavity after the mushroom is dried is solved, and the efficiency of mushroom drying is achieved.
Patent Information
- Application Number
- CN202421882502.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2034-08-06
AI Technical Summary
During the drying process of mushrooms, the temperature in the cavity after drying is high, which is inconvenient to quickly remove the dried mushrooms, and affects the drying and processing efficiency of large batches of mushrooms.
A drying device for processing shiitake mushrooms is designed, including a drying box, a fan, a feed frame and a discharge frame. Through the cooperation of the sliding partition and the support rod, the rapid removal of shiitake mushrooms and the rapid placement of new batches of shiitake mushrooms are achieved.
The device can quickly remove dried mushrooms under high temperature environment and quickly place new batches of mushrooms, thereby improving the efficiency of drying treatment of multiple batches of mushrooms.
Smart Images

Figure CN222885201U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of lentinula edodes processing, and particularly relates to a drying device for lentinula edodes processing. Background Technique
[0002] Drying lentinula edodes is to heat fresh lentinula edodes through hot air or other heat sources to remove the moisture in the lentinula edodes, extend its storage time, and reduce its weight, so as to facilitate storage and transportation. When drying lentinula edodes, hot air continuously heats the lentinula edodes in the cavity, dries the lentinula edodes, and cooperates with circulating air to promote heat conduction and moisture discharge, thereby improving the heat dissipation efficiency of the lentinula edodes. When taking out the dried lentinula edodes, it is necessary to push out the shelf that supports the lentinula edodes. After opening the cavity, the hot air is in the cavity and the temperature is relatively high, which is not convenient for the staff to quickly take out the shelf and quickly put the lentinula edodes on the new batch of shelves into the cavity, thus affecting the drying and processing efficiency of a large batch of lentinula edodes. Content of the Utility Model
[0003] The utility model provides a drying device for lentinula edodes processing, which has the characteristics of solving the problem that it is not convenient to quickly take out the dried lentinula edodes and put in new lentinula edodes for drying due to the high temperature in the cavity after drying.
[0004] The utility model provides the following technical solutions: including a drying box body and a fan, both ends of the drying box body are respectively fixedly connected with a feeding frame and a discharging frame, the drying box body, the feeding frame and the discharging frame are matched with each other, three partitions are slidably connected to the inner wall of the feeding frame, two supporting frames are arranged between two of the connecting grooves, connecting grooves and docking grooves are respectively arranged on both sides of the partition, the docking groove and the connecting groove are connected by a support rod, a rhombic hole is rotatably connected between the connecting groove and the docking groove, a rhombic rod is inserted between the rhombic holes, and a groove body matching with the rhombic rod is arranged at one end of the support rod.
[0005] Wherein, fans are installed at both ends of the drying box body, air outlets communicating with the inner cavity of the drying box body are arranged on the fans, and an exhaust port is installed on the other side of the drying box body.
[0006] Wherein, a lower limit block matching with the sliding groove is fixedly connected to the bottom end of the partition, a sliding groove communicating with each other is arranged on the inner walls of the feeding frame, the drying box body and the discharging frame, and a positioning block matching with the sliding groove is fixedly connected to the bottom end of the supporting frame.
[0007] Wherein, a connecting head matching with the inner wall of the connecting groove is arranged at one end of the support rod, and a pull plate is fixedly connected to one end of the rhombic rod.
[0008] Among them, the inner walls of the drying box body, the feeding frame, and the discharging frame are provided with connected card slots, and upper limit blocks matching the card slots are fixedly connected to the outer walls of the partition plates.
[0009] The beneficial effects of the present utility model are as follows: The feeding frame and the discharging frame are used to put in and take out the support frame. Three partition plates are used to block the support frame. The distance between the partition plates is controlled by the support rods, so that the device can directly take out the dried mushrooms by adding new mushrooms, avoiding the need to wait for cooling in a high-temperature environment before it is convenient to take out the mushrooms from the device and put in new mushrooms, thereby improving the efficiency of drying and processing multiple batches of mushrooms.
[0010] Parts not involved in this device are the same as or can be implemented using existing technologies. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0012] Figure 2 is a three-dimensional sectional structural schematic diagram of the present utility model;
[0013] Figure 3 is a three-dimensional structural schematic diagram of the partition plate in the present utility model;
[0014] Figure 4 is a three-dimensional structural schematic diagram of the partition plate in the present utility model.
[0015] In the figure: 1, drying box body; 11, fan; 12, air outlet; 13, exhaust port; 2, feeding frame; 21, discharging frame; 22, partition plate; 23, upper limit block; 24, lower limit block; 241, card slot; 242, sliding slot; 25, support frame; 251, positioning block; 3, connecting groove; 31, docking groove; 32, rhombic hole; 33, support rod; 331, connecting head; 34, pull plate; 341, rhombic rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0016] Please refer to Figures 1-4 , the present utility model provides the following technical solutions: including a drying box body 1 and a fan 11. The two ends of the drying box body 1 are respectively fixedly connected with a feeding frame 2 and a discharging frame 21. The drying box body 1, the feeding frame 2, and the discharging frame 21 are matched with each other. Three partition plates 22 are slidably connected to the inner wall of the feeding frame 2. Two support frames 25 are arranged between two of the partition plates 22. Connecting grooves 3 and docking grooves 31 are respectively opened on both sides of the partition plates 22. The docking grooves 31 and the connecting grooves 3 are connected by support rods 33. A rhombic hole 32 is rotatably connected between the connecting grooves 3 and the docking grooves 31. A rhombic rod 341 is inserted between the rhombic holes 32. A groove body matching the rhombic rod 341 is opened at one end of the support rod 33.
[0017] In this implementation plan: The drying box body 1 is a cavity for drying and processing shiitake mushrooms. It is connected to hot air through a blower 11, and the hot air is introduced into the drying box body 1 to raise the temperature of the environment where the shiitake mushrooms are located. The feeding frame 2 and the discharging frame 21 on both sides of the drying box body 1 are respectively used to put new shiitake mushrooms into the feeding frame 2, and the discharging frame 21 is used to take out the shiitake mushrooms that have been in the inner cavity of the drying box body 1. A support frame 25 is used to support the shiitake mushrooms. The shiitake mushroom tray is laid on the support frame 25 to place the shiitake mushrooms, so that the shiitake mushrooms can be evenly placed in the drying box body 1 through the tray and the shiitake mushrooms can be dried. Before the support frame 25 needs to be put into the drying box body 1, a partition plate 22 is first inserted into the feeding frame 2. By making the partition plate 22 fit with the inner wall of the feeding frame 2, it can slide on the inner wall of the feeding frame 2. After the partition plate 22 is placed in the feeding frame 2 in advance, one end of the support rod 33 is threadedly connected and fixed to the docking groove 31 opened on the partition plate 22, so that the support rod 33 is connected and fixed at the center position of the partition plate 22. Then, the two support frames 25 for supporting the shiitake mushrooms are misaligned and pushed into the feeding frame 2, on both sides of the support rod 33. After the support frame 25 is pushed into the feeding frame 2, the second partition plate 22 is pushed into the feeding frame 2 to close both sides of the support frame 25. By installing the support rod 33 on the second partition plate 22 and pushing it, the support frame 25 is pushed to a position corresponding to the inner cavity of the drying box body 1, so that the support frame 25 is blocked by the partition plate 22, ensuring that the shiitake mushrooms on the support frame 25 can be heated and dried by the hot air, avoiding the loss of hot air and affecting the drying efficiency of the shiitake mushrooms. After the support frame 25 in the drying box body 1 has been dried, when a new support frame 25 with shiitake mushrooms needs to be pushed into the drying box body 1, at this time, the new support frame 25 can be pushed into the feeding frame 2. By pushing the second group of support frames 25, the first group of support frames 25 including the partition plate 22 are pushed to the position of the discharging frame 21. At this time, the first partition plate 22 is outside the discharging frame 21. After it can be removed, the rear side of the second group of support frames 25 can be installed. Thus, at this time, the rhombic rod 341 can pass through the rhombic hole 32 and be connected to the groove opened at one end of the support rod 33, so that the rhombic rod 341 can rotate with the rhombic hole 32, and the support rod 33 can rotate, so that one end of it is separated from the connection groove 3, the first partition plate 22 is removed, and then it is pushed into the feeding frame 2, and the docking groove 31 opened on it is connected to the tail end of the support rod 33 for connection and limitation, ensuring its isolation of the support frame 25. Thus, when adding new shiitake mushrooms, the device can push the already dried shiitake mushrooms out of the device, quickly take out the shiitake mushrooms in the high-temperature environment, and at the same time, new shiitake mushrooms can be put in, thus avoiding waiting for cooling in the high-temperature environment before it is convenient to take out the shiitake mushrooms from the device and put in new shiitake mushrooms, thereby improving the drying efficiency of multiple batches of shiitake mushrooms.
[0018] At both ends of the drying box body 1, a blower 11 is installed. An air outlet 12 communicating with the inner cavity of the drying box body 1 is provided on the blower 11, and an exhaust port 13 is installed on the other side of the drying box body 1. The blowers 11 installed at both ends of the drying box body 1 transfer hot air through the provided air outlets 12, enabling it to enter the drying box body 1. At the same time, in cooperation with the exhaust port 13, the wet air is discharged to ensure the drying efficiency of the shiitake mushrooms.
[0019] A lower limit block 24 matching the sliding groove 242 is fixedly connected to the bottom end of the partition plate 22. The inner walls of the feeding frame 2, the drying box body 1, and the discharging frame 21 are provided with interconnected sliding grooves 242. A positioning block 251 matching the sliding groove 242 is fixedly connected to the bottom end of the support frame 25. The lower limit block 24 fixedly connected to the bottom end of the upper limit block 23 is used to connect with the sliding groove 242 opened at the bottom of the inner walls of the feeding frame 2, the drying box body 1, and the discharging frame 21. In cooperation with the upper limit block 23 fixedly connected to the partition plate 22 being limited in the clamping groove 241, it ensures that it slides horizontally within the drying box body 1, the feeding frame 2, and the discharging frame 21. The positioning block 251 fixedly connected to the bottom of the support frame 25 also slides within the sliding groove 242, enabling the support frame 25 to be limited and slide under the limitation of the sliding groove 242, ensuring that the support rod 33 does not limit its displacement.
[0020] A connecting head 331 matching the inner wall of the connecting groove 3 is provided at one end of the support rod 33, and a pulling plate 34 is fixedly connected to one end of the rhombic rod 341. The connecting head 331 provided at one end of the support rod 33 is used for threaded connection with the inner wall of the connecting groove 3. The pulling plate 34 fixedly connected to one end of the rhombic rod 341 is used to facilitate the rotation of the rhombic hole 32 and the support rod 33 after the rhombic rod 341 is inserted through one end of the support rod 33 and the rhombic hole 32, so as to separate the partition plate 22.
[0021] The inner walls of the drying box body 1, the feeding frame 2, and the discharging frame 21 are provided with interconnected clamping grooves 241. An upper limit block 23 matching the clamping groove 241 is fixedly connected to the outer wall of the partition plate 22. The clamping groove 241 is used to limit the upper limit block 23 to ensure that the partition plate 22 fits with the inner walls of the feeding frame 2, the discharging frame 21, and the drying box body 1, enabling the partition plate 22 to displace horizontally and ensuring the enclosure of the inner cavity of the drying box body 1 by the partition plate 22.
[0022] Working principle and usage process of the utility model: Before the support frame 25 needs to be placed into the drying box body 1, the partition plate 22 slides on the inner wall of the feeding frame 2, the support rod 33 is installed in the partition plate 22, then the first group of support frames 25 are slid into the feeding frame 2, and then the second partition plate 22 is pushed into the feeding frame 2 to close both sides of the support frame 25. By installing the support rod 33 on the second partition plate 22 and pushing it, the support frame 25 is pushed to a position corresponding to the inner cavity of the drying box body 1, ensuring that the mushrooms on the support frame 25 can be heated and dried by hot air, avoiding the loss of hot air and affecting the drying efficiency of the mushrooms. After the support frame 25 in the drying box body 1 has been dried, when a new support frame 25 with mushrooms needs to be pushed into the drying box body 1, the new support frame 25 is pushed into the feeding frame 2. By pushing the second group of support frames 25, the first group of support frames 25 including the partition plate 22 are pushed to the position of the discharge frame 21. After the rhombic rod 341 passes through the rhombic hole 32 on the first partition plate 22 and is connected to the support rod 33, the rhombic hole 32 and the support rod 33 are rotated to separate the partition plate 22, and it is installed at the rear side of the second group. Thus, when adding new mushrooms, the device can push the already dried mushrooms out of the device, quickly take out the mushrooms in the high-temperature environment, and at the same time, new mushrooms can be put in, thereby avoiding the need to wait for cooling before it is convenient to take out the mushrooms from the device and put in new mushrooms in the high-temperature environment, and improving the drying efficiency of multiple batches of mushrooms.
Claims
1. A drying device for processing shiitake mushrooms, comprising a drying box (1) and a fan (11), characterized in that: The two ends of the drying box (1) are respectively fixedly connected with a feed frame (2) and a discharge frame (21); the drying box (1), the feed frame (2) and the discharge frame (21) match each other; the inner wall of the feed frame (2) is slidably connected with three partitions (22), wherein two support frames (25) are arranged between two of the partitions (22); a connecting groove (3) and a docking groove (31) are respectively arranged on both sides of the partition (22); the docking groove (31) and the connecting groove (3) are connected by a support rod (33); a prismatic hole (32) is rotatably connected between the connecting groove (3) and the docking groove (31); a prismatic rod (341) is inserted between the prismatic holes (32); and a groove body matching the prismatic rod (341) is arranged at one end of the support rod (33).
2. A drying device for processing shiitake mushrooms according to claim 1, characterized in that: Fans (11) are installed at both ends of the drying box (1), and an air outlet (12) connected to the inner cavity of the drying box (1) is provided on the fan (11). An exhaust port (13) is installed on the other side of the drying box (1).
3. A drying device for processing shiitake mushrooms according to claim 1, characterized in that: The drying box body (1), the feeding frame (2) and the discharging frame (21) are provided with interconnected slide grooves (242); the bottom end of the partition plate (22) is fixedly connected with a lower limit block (24) matching the slide groove (242); the inner walls of the feeding frame (2), the drying box body (1) and the discharging frame (21) are provided with interconnected slide grooves (242); the bottom end of the support frame (25) is fixedly connected with a positioning block (251) matching the slide groove (242).
4. A drying device for processing shiitake mushrooms according to claim 1, characterized in that: One end of the support rod (33) is provided with a connector (331) matching the inner wall of the connection groove (3), and one end of the prismatic rod (341) is fixedly connected to a pull plate (34).
5. A drying device for processing shiitake mushrooms according to claim 1, characterized in that: The inner walls of the drying box (1), the feeding frame (2) and the discharging frame (21) are provided with interconnected slots (241), and the outer wall of the partition (22) is fixedly connected with an upper limit block (23) matching the slots (241).