A matsutake mushroom slicing device
Patent Information
- Application Number
- CN202522146262.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-10-11
AI Technical Summary
[0005]为解决现有的设备多为单片切片,切片厚度往往难以保持一致的技术问题,本实用新型提供一种松茸切片装置
本实用新型提供一种松茸切片装置:
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Figure CN224702090U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of matsutake mushroom processing technology, and in particular to a matsutake mushroom slicing device. Background Technology
[0002] Matsutake mushrooms, scientifically known as Tricholoma matsutake, are ectomycorrhizal fungi that grow on trees such as pine and oak. They are known as the "king of fungi" and have a unique, rich aroma. They have a smooth and refreshing taste like abalone and are rich in nutrients such as vitamin E. They are believed to have various health benefits, including improving brain function, tonifying the kidneys and strengthening sperm, and fighting cancer.
[0003] During the processing of matsutake mushrooms, they need to be sliced. However, most existing equipment slices only one slice, making it difficult to maintain a consistent slice thickness, which affects product quality.
[0004] Therefore, it is necessary to provide a matsutake mushroom slicing device to solve the above-mentioned technical problems. Utility Model Content
[0005] To address the technical problem that existing equipment often slices only a single piece, resulting in inconsistent slice thickness, this invention provides a matsutake mushroom slicing device.
[0006] The matsutake mushroom slicing device provided by this utility model includes: a workbench with two placement plates hinged to it, each placement plate having a placement groove for placing matsutake mushrooms; a mounting frame fixedly mounted on the workbench; a slicing mechanism mounted on the mounting frame for slicing matsutake mushrooms; and a sieving mechanism mounted on the workbench for grading the sliced matsutake mushrooms by size.
[0007] Preferably, the slicing mechanism includes a hydraulic rod, a fixing plate, and multiple blades. The hydraulic rod is fixedly mounted on the mounting frame, the fixing plate is disposed on the output rod of the hydraulic rod, and the multiple blades are disposed on the fixing plate.
[0008] Preferably, the screening mechanism includes a collection box, a screening box, two guide rods, a drive motor, a cam, and a wheel. The collection box is fixedly installed at the bottom of the workbench, the screening box is located inside the collection box, the two guide rods are respectively located on both sides of the screening box and slide through the collection box, the drive motor is fixedly installed on one side of the collection box, the cam is connected to the output shaft of the drive motor through a coupling, and the wheel is rotatably installed at one end of the guide rod and contacts the cam.
[0009] Preferably, two fixed columns are fixedly installed on the top of the workbench, and electric telescopic rods are hinged to both fixed columns. The output rods of the two electric telescopic rods are respectively hinged to the two placement plates.
[0010] Preferably, the top of the collection box is provided with a receiving hopper, which corresponds to the two placement plates.
[0011] Preferably, the guide rod is fitted with a return spring, and the two ends of the return spring are fixedly connected to the inner wall of the collection box and one side of the screening box, respectively.
[0012] Preferably, a support cylinder is fixedly mounted on the mounting bracket, and a support rod is slidably mounted on the support cylinder, with the bottom end of the support rod connected to the fixed plate.
[0013] Compared with related technologies, the matsutake mushroom slicing device provided by this utility model has the following beneficial effects: This utility model provides a matsutake mushroom slicing device: The matsutake slices are automatically discharged after cutting via two hinged mounting plates, while the placement groove provides a place for the matsutake to avoid rolling, ensuring stability during cutting and improving the stability and consistency of the slice quality. This makes the quality of the matsutake better guaranteed during subsequent processing or cooking. Multiple blades can slice the matsutake simultaneously in one pressing motion, which greatly improves the speed and efficiency of slicing compared to cutting one slice at a time. It can complete the slicing of a large number of matsutake in a shorter time. Furthermore, driven uniformly by a hydraulic rod, the movement trajectory and downward pressure of each blade are basically consistent during the cutting process, which makes the thickness of the cut matsutake slices more uniform and improves the quality and consistency of the slices. The drive motor rotates the cam, which in turn causes the sieving box to vibrate back and forth, enabling rapid and continuous sieving of matsutake slices. Compared with manual sieving, this greatly improves the efficiency and accuracy of sieving and can complete the grading of a large number of matsutake slices in a short time. The tilt angle of the placement plate can be adjusted by extending and retracting the electric telescopic rod output rod, and the matsutake is automatically placed into the collection box after sieving, improving sieving efficiency. The receiving hopper ensures that the matsutake slices sliding off the placement plate fall into the collection box, preventing the slices from scattering outside the equipment, reducing loss and waste during the slice collection process, and improving the accuracy and integrity of slice collection. The return spring not only assists the return movement of the sieving box, but also buffers vibration to a certain extent, reduces equipment wear, and extends the service life of the equipment. The support cylinder and support rod provide additional support for the fixed plate, which can share some of the force when the hydraulic rod drives the fixed plate and blade to perform slicing operations, making the fixed plate more stable during up and down movement. Attached Figure Description
[0014] Figure 1 A front view schematic diagram of a preferred embodiment of the matsutake mushroom slicing device provided by this utility model; Figure 2 A schematic diagram of the front cross-sectional structure of a preferred embodiment of the matsutake mushroom slicing device provided by this utility model; Figure 3 for Figure 2 The diagram shows an enlarged view of part A.
[0015] The following are the labels in the diagram: 1. Workbench; 2. Placement plate; 3. Placement slot; 4. Mounting frame; 5. Hydraulic rod; 6. Fixing plate; 7. Blade; 8. Collection box; 9. Screening box; 10. Guide rod; 11. Drive motor; 12. Cam; 13. Wheel; 14. Fixing column; 15. Electric telescopic rod; 16. Receiving hopper; 17. Return spring; 18. Support cylinder; 19. Support rod. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0017] Please refer to the following: Figures 1-3 ,in, Figure 1 A front view schematic diagram of a preferred embodiment of the matsutake mushroom slicing device provided by this utility model; Figure 2 A schematic diagram of the front cross-sectional structure of a preferred embodiment of the matsutake mushroom slicing device provided by this utility model; Figure 3 for Figure 2 The diagram shows an enlarged view of part A.
[0018] The matsutake mushroom slicing device includes: a workbench 1, on which two placement plates 2 are hingedly mounted, each of which has a placement groove 3 for placing matsutake mushrooms; a mounting frame 4, which is fixedly mounted on the workbench 1; a slicing mechanism, which is mounted on the mounting frame 4 and is used to slice the matsutake mushrooms; and a sieving mechanism, which is mounted on the workbench 1 and is used to grade the sliced matsutake mushrooms by size. The two hinged placement plates 2 allow the matsutake slices to be automatically discharged after cutting, while the placement grooves 3 provide a placement position for the matsutake mushrooms, preventing them from rolling, ensuring stability during cutting, and improving the stability and consistency of the slicing quality, thus guaranteeing the quality of the matsutake mushrooms during subsequent processing or cooking.
[0019] The slicing mechanism includes a hydraulic rod 5, a fixing plate 6, and multiple blades 7. The hydraulic rod 5 is fixedly mounted on the mounting frame 4, and the fixing plate 6 is located on the output rod of the hydraulic rod 5. The multiple blades 7 are all located on the fixing plate 6. By using multiple blades 7, matsutake mushrooms can be sliced simultaneously during a single pressing process. Compared with cutting one slice at a time, this greatly improves the slicing speed and efficiency, and can complete the slicing of a large number of matsutake mushrooms in a shorter time. Furthermore, driven uniformly by the hydraulic rod 5, the movement trajectory and downward pressure of each blade 7 are basically consistent during the cutting process, which makes the thickness of the sliced matsutake mushrooms more uniform and improves the quality and consistency of the slices.
[0020] The sieving mechanism includes a collection box 8, a sieving box 9, two guide rods 10, a drive motor 11, a cam 12, and a wheel 13. The collection box 8 is fixedly installed at the bottom of the workbench 1. The sieving box 9 is located inside the collection box 8. The two guide rods 10 are respectively located on both sides of the sieving box 9 and slide through the collection box 8. The drive motor 11 is fixedly installed on one side of the collection box 8. The cam 12 is connected to the output shaft of the drive motor 11 through a coupling. The wheel 13 is rotatably installed at one end of the guide rod 10 and contacts the cam 12. The drive motor 11 drives the cam 12 to rotate, thereby causing the sieving box 9 to reciprocate and vibrate. This allows for rapid and continuous sieving of matsutake mushroom slices. Compared with manual sieving, this greatly improves the efficiency and accuracy of sieving and can complete the grading of a large number of matsutake mushroom slices in a short time.
[0021] Two fixed columns 14 are fixedly installed on the top of the workbench 1. Each of the two fixed columns 14 is hinged with an electric telescopic rod 15. The output rods of the two electric telescopic rods 15 are respectively hinged to the two placement plates 2. By extending and retracting the output rods of the electric telescopic rods 15, the tilt angle of the placement plates 2 can be adjusted. After slicing, the matsutake mushrooms are automatically placed into the collection box 8, thereby improving slicing efficiency.
[0022] The top of the collection box 8 is provided with a receiving hopper 16, which corresponds to the two placement plates 2. The receiving hopper 16 ensures that the matsutake slices sliding off the placement plates 2 can fall into the collection box 8, preventing the slices from scattering outside the equipment, reducing loss and waste during the slice collection process, and improving the accuracy and integrity of slice collection.
[0023] The guide rod 10 is fitted with a return spring 17. The two ends of the return spring 17 are fixedly connected to the inner wall of the collection box 8 and one side of the screening box 9, respectively. The return spring 17 not only assists the return movement of the screening box 9, but also buffers vibration to a certain extent, reduces equipment wear, and extends the service life of the equipment.
[0024] A support cylinder 18 is fixedly installed on the mounting bracket 4, and a support rod 19 is slidably installed on the support cylinder 18. The bottom end of the support rod 19 is connected to the fixed plate 6. The support cylinder 18 and the support rod 19 provide additional support for the fixed plate 6. When the hydraulic rod 5 drives the fixed plate 6 and the blade 7 to perform slicing operations, it can share some of the force, making the fixed plate 6 more stable during up and down movement.
[0025] It is worth noting that the circuits, electronic components, and modules involved in this utility model are all existing technologies, which can be fully implemented by those skilled in the art, and need not be elaborated upon. The content protected by this utility model does not involve any improvement to the software and methods.
[0026] The working principle of the matsutake mushroom slicing device provided by this utility model is as follows: This solution also includes an electrical control cabinet, which is installed on the equipment. During use, each piece of electrical equipment can be started and operated separately through the electrical control cabinet. The power connection method of each piece of electrical equipment is an existing mature technology and is well known to those in the field, so it will not be described in detail here. When in use, place the matsutake mushroom to be sliced in the placement groove 3. The placement groove 3 provides a stable placement position for the matsutake mushroom, ensuring that it will not move randomly during the slicing process. When slicing the matsutake mushroom, the hydraulic rod 5 is activated, and the output rod of the hydraulic rod 5 begins to extend and retract. The fixed plate 6 will move up and down with the extension and retraction of the output rod. When the fixed plate 6 moves downward, multiple blades 7 will move downward simultaneously to cut the matsutake mushroom placed in the placement groove 3 of the placement plate 2 on the worktable 1. After the cutting is completed, the output rod of the hydraulic rod 5 retracts upward, driving the fixed plate 6 and the blades 7 to lift upward, completing one slicing action. This operation can be repeated for continuous slicing. After the matsutake mushrooms are sliced, the electric telescopic rod 15 is controlled to retract, causing the placement plate 2 to rotate around the hinge point. The two placement plates 2 move downwards synchronously, forming a bucket-shaped opening. The sliced matsutake mushrooms enter the sieving box 9 inside the collection box 8 through the opening. The drive motor 11 is then started, and its output shaft drives the cam 12 to rotate via a coupling. Since the wheel 13 is rotatably mounted on one end of the guide rod 10 and contacts the cam 12, the contours of the cam 12 at different positions during rotation push the wheel 13, thereby causing the guide rod 10 to slide on the collection box 8. When the cam 12 pushes the wheel 13 and guide rod 10 to move the sieve box 9 to one side, the return spring 17 is compressed. When the cam 12 rotates to a certain position and no longer applies a pushing force to the wheel 13, the elastic force of the return spring 17 will cause the sieve box 9 and guide rod 10 to return to their original positions. This process is repeated to achieve continuous reciprocating vibration of the sieve box 9. Under the reciprocating vibration of the sieve box 9, matsutake slices of different sizes will be separated according to their own size through the sieve holes on the sieve box 9. Smaller slices will fall into the lower area of the collection box 8, while larger slices will remain in the sieve box 9, thereby achieving the size grading of matsutake slices.
[0027] Compared with related technologies, the matsutake mushroom slicing device provided by this utility model has the following beneficial effects: This invention provides a matsutake mushroom slicing device. Two hinged placement plates 2 automatically discharge matsutake slices after cutting, while a placement groove 3 provides a placement position for the matsutake, preventing rolling and ensuring stability during cutting. This improves the stability and consistency of the slice quality, guaranteeing better quality during subsequent processing or cooking. Multiple blades 7 can slice the matsutake simultaneously in a single pressing motion, significantly increasing slicing speed and efficiency compared to cutting one slice at a time. This allows for slicing a large number of matsutake mushrooms in a shorter time. Driven uniformly by a hydraulic rod 5, the movement trajectory and downward pressure of each blade 7 are essentially consistent during cutting, resulting in more uniform slice thickness and improved quality and consistency. A drive motor 11 rotates a cam 12, causing the sieving box 9 to reciprocate, enabling rapid and continuous sieving of the matsutake slices. Compared to manual sieving, this method significantly improves sieving efficiency and accuracy, enabling the grading of large quantities of matsutake slices in a short time. The tilt angle of the placement plate 2 can be adjusted by extending and retracting the output rod of the electric telescopic rod 15, automatically placing the matsutake slices into the collection box 8 after sieving, thus improving sieving efficiency. The receiving hopper 16 ensures that matsutake slices sliding off the placement plate 2 fall into the collection box 8, preventing slices from scattering outside the equipment, reducing loss and waste during slice collection, and improving the accuracy and integrity of slice collection. The return spring 17 not only assists in the return movement of the sieving box 9 but also buffers vibration to a certain extent, reducing equipment wear and extending its service life. The support cylinder 18 and support rod 19 provide additional support for the fixed plate 6, sharing some of the force when the hydraulic rod 5 drives the fixed plate 6 and blade 7 for sieving, making the fixed plate 6 more stable during its up-and-down movement.
[0028] It should be noted that the device structure and accompanying drawings of this utility model mainly describe the principle of this utility model. In terms of the technical aspects of this design principle, the setting of the power mechanism, power supply system and control system of the device is not fully described. However, those skilled in the art who understand the principle of the above utility model can clearly understand the specific details of its power mechanism, power supply system and control system.
[0029] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A device for slicing Tricholoma matsutake, characterized by comprising: The utility model relates to a pine mushroom slicing and screening device, including: a workbench, two placing plates are hingedly installed on the workbench, and placing grooves for placing pine mushrooms are arranged on the two placing plates; a mounting frame is fixedly installed on the workbench; a slicing mechanism is arranged on the mounting frame and is used for slicing pine mushrooms; a screening mechanism is arranged on the workbench and is used for grading sliced pine mushrooms by size.
2. The device according to claim 1, wherein, The slicing mechanism includes a hydraulic rod, a fixed plate, and a plurality of blades, the hydraulic rod is fixedly installed on the mounting frame, the fixed plate is arranged on the output rod of the hydraulic rod, and the plurality of blades are arranged on the fixed plate.
3. The device according to claim 1, wherein, The screening mechanism includes a collecting box, a screening box, two guide rods, a driving motor, a cam, and a circular wheel, the collecting box is fixedly installed at the bottom of the workbench, the screening box is arranged in the collecting box, the two guide rods are respectively arranged on the two sides of the screening box and slide through the collecting box, the driving motor is fixedly installed on one side of the collecting box, the cam is connected with the output shaft of the driving motor through a shaft coupling, and the circular wheel is rotatably installed at one end of the guide rod and is in contact with the cam.
4. The device according to claim 1, wherein, Two fixed columns are fixedly installed on the top of the workbench, an electric telescopic rod is hingedly installed on each fixed column, and the output rods of the two electric telescopic rods are respectively hingedly connected with the two placing plates.
5. The device according to claim 3, wherein A receiving hopper is arranged on the top of the collecting box and corresponds to the two placing plates.
6. The device according to claim 3, wherein, A return spring is arranged on the guide rod, and the two ends of the return spring are fixedly connected with the inner wall of the collecting box and one side of the screening box.
7. The device according to claim 2, wherein A supporting cylinder is fixedly installed on the mounting frame, a supporting rod is slidingly installed on the supporting cylinder, and the bottom end of the supporting rod is connected with the fixed plate.