Anti-sticking mushroom slicing machine
By designing an anti-stick mushroom slicer, utilizing structures such as an 'L' frame, inclined plate, and sliding plate, the sticking problem during the slicing process of king oyster mushrooms was solved, achieving uniform slicing and stable product quality, and improving processing safety.
Patent Information
- Application Number
- CN202423251273.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-27
AI Technical Summary
King oyster mushrooms are prone to sticking to the blade during slicing, resulting in inconsistent slice thickness and cross-contamination, which affects product quality and safety.
A non-stick mushroom slicer was designed, which adopts an L-shaped support rod, inclined plate, sliding plate, cutter, semi-ring support plate and scraper. By tilting and sliding the slice, it prevents king oyster mushrooms from sticking to the cutter. The cooperation of the scraper and the relief ring ensures that the sliced king oyster mushrooms can be completely removed from the cutter.
This method achieves uniformity in king oyster mushroom slices and stability in product quality, prevents inconsistencies and cross-contamination caused by adhesion, and improves the safety and consistency of processing.
Smart Images

Figure CN223573325U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mushroom processing technical field, concretely relates to a kind of anti-sticking mushroom slicer. BACKGROUND
[0002] As a kind of mushroom food material, Pleurotus eryngii is one of the processing objects of mushroom slicer, and Pleurotus eryngii has high moisture content. During slicing, the moisture in Pleurotus eryngii can easily cause the sliced pieces to adhere to the blade. When the Pleurotus eryngii pieces adhere to the blade, the thickness of the subsequent sliced pieces will be inconsistent. Some sliced pieces may be thinned due to the adhesion of Pleurotus eryngii pieces, while others may be thickened due to the accumulation on the blade, which seriously affects the uniformity of the product specifications. In addition, different batches or different types of Pleurotus eryngii may adhere when using the same slicer, which may cause cross-contamination and affect the quality and safety of the product. SUMMARY
[0003] The utility model provides a kind of anti-sticking mushroom slicer, with the characteristics of solving the adhesion of Pleurotus eryngii to the blade during slicing, which affects the processing quality and safety of Pleurotus eryngii.
[0004] The utility model provides the following technical scheme: an "L" frame rod, a centralized box and a slicing box are included. The "L" frame rod is fixedly connected with an inclined plate on one side. A sliding plate is slidably connected to the inner wall of the slicing box. A plurality of support plates are fixedly connected to one side of the sliding plate. A cutting knife is fixedly connected to one end of each of the plurality of support plates. An installation bracket is fixedly connected to the inner wall of the slicing box. Four half-ring supporting plates corresponding to the cutting knives are snap-fitted to the inner wall of the slicing box. A plurality of clearance rings corresponding to the half-ring supporting plates are slidably connected to the inner wall of the installation bracket. The clearance rings are connected by a horizontal plate. A connecting groove for providing clearance for the horizontal plate is formed in the slicing box. A positioning plate for limiting the connecting groove is fixedly connected to one end of the slicing box. A plurality of scraping plates matching the cutting knives are fixedly connected to the inner wall of the slicing box.
[0005] The centralized box and the slicing box are snap-fitted to the "L" frame rod.
[0006] The centralized box is provided with a discharge port on one side. A top plate is detachably connected to the top of the slicing box. A plurality of feeding pipes corresponding to the half-ring supporting plates are installed on the top plate.
[0007] A sliding block is fixedly connected to the connection between the sliding plate and the inner wall of the slicing box. A slide matching the sliding block is formed in the inner wall of the slicing box.
[0008] The inner wall of the slice box is fixedly connected with a plurality of shelf plates corresponding to the half-ring supporting plates, and the outer wall of the half-ring supporting plate is provided with clamping grooves clamped with one end of the shelf plate.
[0009] The mounting frame and the connecting groove are provided with limiting grooves matched with the connecting groove.
[0010] The inner wall of the mounting frame and the positioning plate is fixedly connected with a sliding rod, and the sliding rod is slidably connected with one end of the horizontal plate.
[0011] The "L" frame rod and the inclined plate can support the concentrate box and the slice box, and the apron can be attached between every two cutters after the cutters are reset, so that the cut apricot mushroom can be blocked, and the position of the horizontal plate and the yielding ring can be adjusted, so that the device can prevent the apricot mushroom from adhering to the cutter, affect the complete separation of the sliced apricot mushroom, and affect the slicing operation of the cutter on the next batch of apricot mushroom.
[0012] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0014] Figure 2 It is a three-dimensional split structure schematic diagram of the utility model;
[0015] Figure 3 It is a three-dimensional structure schematic diagram of the slice box in the utility model;
[0016] Figure 4 It is a three-dimensional structure schematic diagram of the mounting frame in the utility model;
[0017] Figure 5 It is a three-dimensional structure schematic diagram of the utility model Figure 4 It is an enlarged schematic diagram of A in the utility model.
[0018] In the figure: 1, "L" frame rod; 11, inclined plate; 2, concentrate box; 21, discharge port; 3, slice box; 31, sliding plate; 311, slide; 312, sliding block; 32, support plate; 33, cutter; 34, half-ring supporting plate; 35, apron; 36, shelf plate; 361, clamping groove; 4, mounting frame; 41, horizontal plate; 411, connecting groove; 412, fixed plate; 42, yielding ring; 43, positioning plate; 431, sliding rod; 44, limiting groove; 441, limiting block; 5, top plate; 51, feeding pipe. Detailed Implementation
[0019] Please see Figures 1-5 The present invention provides the following technical solution: including an "L"-shaped frame rod 1, a central box 2, and a slicing box 3. An inclined plate 11 is fixedly connected to one side of the "L"-shaped frame rod 1. A sliding plate 31 is slidably connected to the inner wall of the slicing box 3. Several support plates 32 are fixedly connected to one side of the sliding plate 31. A cutter 33 is fixedly connected to one end of each of the support plates 32. An installation frame 4 is fixedly connected to the inner wall of the slicing box 3. Four semi-circular support plates 34 corresponding to the cutter 33 are engaged with the inner wall of the slicing box 3. Several clearance rings 42 corresponding to the semi-circular support plates 34 are slidably connected to the inner wall of the installation frame 4. The clearance rings 42 are connected to each other by a horizontal plate 41. A connecting groove 411 for clearance of the horizontal plate 41 is provided on the slicing box 3. A positioning plate 43 for limiting the connecting groove 411 is fixedly connected to one end of the slicing box 3. Several scrapers 35 that fit against the cutter 33 are fixedly connected to the inner wall of the slicing box 3.
[0020] In the embodiment, the "L" frame rod 1 is the carrier of the bearing device, and the two inclined plates 11 fixedly connected on one side of the "L" frame rod 1 can support and bear the concentrating box 2 and the slicing box 3, so that the inclined plates 11 can be supported on the work plate, and the concentrating box 2 and the slicing box 3 are supported by the "L" frame rod 1. At this time, the concentrating box 2 is connected with the slicing box 3 in an up-down manner, the sliding plate 31 slidably connected on the inner wall of the slicing box 3 can adjust its position in the slicing box 3, the four equal supporting plates 32 fixedly connected on one side of the sliding plate 31 can correspond to the mounting frame 4 fixedly arranged on the bottom of the slicing box 3, and the several horizontal plates 41 slidably connected on the inner wall of the mounting frame 4 can slide to the position corresponding to the cutter 33, and the semi-ring supporting plate 34 clampedly connected on the inner wall of the slicing box 3 can correspond to the cutter 33 at this time. At this time, the semi-ring supporting plate 34, the slicing box 3 and the concentrating box 2 are all on the "L" frame rod 1, and the concentrating box 2 and the slicing box 3 are supported by the inclined plates 11 and the "L" frame rod 1, so that they have a certain angle, so that the semi-ring supporting plate 34 can place the pleurotus eryngii, and the pleurotus eryngii is supported in the inner wall of the semi-ring supporting plate 34 in an inclined manner, and the cutter 33 corresponds to the semi-ring supporting plate 34 in a horizontal manner. At this time, the sliding plate 31 can be pushed by the electric push rod, so that the sliding plate 31 can slide in the inner wall of the slicing box 3, so that the cutter 33 is displaced towards the semi-ring supporting plate 34, and one end of the cutter 33 is matched with the inner wall of the cutter 33, so that the cutter 33 can be attached to the inner wall of the semi-ring supporting plate 34. When the cutter 33 is displaced by the sliding plate 31, the cutter 33 can slice the pleurotus eryngii. After the cutter 33 cuts the pleurotus eryngii in the semi-ring supporting plate 34, the pleurotus eryngii is supported in the semi-ring supporting plate 34 in an inclined manner. When the cutter 33 is reset, the pleurotus eryngii and the cutter 33 have a certain frictional force, so that they are adhered to each other. When the cutter 33 is reset, it is separated from the semi-ring supporting plate 34 at the same time. Then the scraper 35 is arranged between each adjacent cutter 33, so that the cutter 33 can block the cut pleurotus eryngii when the cutter 33 is reset, so as to prevent the cut pleurotus eryngii from being separated from the semi-ring supporting plate 34. After slicing, the horizontal plate 41 and the yielding ring 42 can slide as a whole, so that the horizontal plate 41 is dislocated from the semi-ring supporting plate 34 at this time, the yielding ring 42 corresponds to the semi-ring supporting plate 34, and the pleurotus eryngii can pass through the yielding ring 42 and fall into the concentrating box 2 for concentration treatment. Thus, when the device cuts the pleurotus eryngii, it can ensure that the pleurotus eryngii is uniformly sliced, and can prevent the pleurotus eryngii from adhering to the cutter 33, affecting the complete separation of the sliced pleurotus eryngii and affecting the slicing of the next batch of pleurotus eryngii by the cutter 33. When the horizontal plate 41 slides, the positioning plate 43 can limit the sliding range of the horizontal plate 41, so that when the horizontal plate 41 slides in the positioning plate 43, the horizontal plate 41 and the yielding ring 42 are replaced, and the sliced pleurotus eryngii is discharged downward.
[0021] The concentrated box 2 and the slicing box 3 are engaged with the "L" frame rod 1, and the concentrated box 2 and the slicing box 3 are engaged; the concentrated box 2 and the slicing box 3 are connected up and down, so that the sliced Pleurotus eryngii in the slicing box 3 can enter the concentrated box 2 for storage after cutting; the concentrated box 2 and the slicing box 3 are engaged, so that they can be separated to facilitate cleaning of the inner cavity of the device.
[0022] The concentrated box 2 is provided with a discharge port 21 on one side, and the slicing box 3 is detachably connected with a top plate 5 on the top, and a plurality of feeding pipes 51 corresponding to the half-ring supporting plates 34 are arranged on the top plate 5; the discharge port 21 arranged on one side of the concentrated box 2 can open the inner cavity of the concentrated box 2, so that the Pleurotus eryngii collected in the inner cavity of the concentrated box 2 can be separated after the discharge port 21 is opened, and the feeding pipes 51 arranged on the top plate 5 correspond to the half-ring supporting plates 34, so that the Pleurotus eryngii can be put into the slicing box 3 through the feeding pipes 51 and supported on the inner wall of the half-ring supporting plates 34, and the cutter 33 can perform slicing operation on the Pleurotus eryngii.
[0023] The sliding plate 31 is fixedly connected with a sliding block 312 at the connection with the inner wall of the slicing box 3, and the inner wall of the slicing box 3 is provided with a sliding groove 311 matched with the sliding block 312; the sliding plate 31 is slidingly limited in the sliding groove 311 of the inner wall of the slicing box 3 at the connection with the inner wall of the slicing box 3 through the sliding block 312, so that the sliding plate 31 can slide horizontally in the inner wall of the slicing box 3 when driven by an external driving member, and the cutter 33 can perform slicing operation on the Pleurotus eryngii.
[0024] A plurality of rack plates 36 corresponding to the half-ring supporting plates 34 are fixedly connected to the inner wall of the slicing box 3, and the outer wall of the half-ring supporting plate 34 is provided with a clamping groove 361 engaged with one end of the rack plate 36; the rack plate 36 fixedly connected to the inner wall of the slicing box 3 can correspond to the half-ring supporting plate 34, so that one end of the rack plate 36 can be engaged in the clamping groove 361 provided on the outer wall of the half-ring supporting plate 34, and the half-ring supporting plate 34 can slide up and down at the one end position of the rack plate 36, so that the half-ring supporting plate 34 can be separated from the rack plate 36 to facilitate cleaning of the inner wall of the half-ring supporting plate 34 after long-term use, and ensure the sanitary use of the device.
[0025] The mounting frame 4 and the inner wall of the slicing box 3 are connected through the fixed plate 412, one of the horizontal plates 41 is fixedly connected with a limiting block 441 at the connection with the mounting frame 4 and the connecting groove 411, and the mounting frame 4 and the connecting groove 411 are provided with a limiting groove 44 matched with the connecting groove 411; the mounting frame 4 and the inner wall of the slicing box 3 are connected through the fixed plate 412, so that the mounting frame 4 is fixedly arranged at the bottom position of the inner wall of the slicing box 3, and the limiting block 441 is used to limit the horizontal plate 41 in the inner wall of the limiting groove 44 when the horizontal plate 41 slides on the mounting frame 4 and the slicing box 3, so as to ensure the horizontal sliding.
[0026] The slide rod 431 is fixedly connected to the inner wall of the positioning plate 43 and is slidably connected to one end of the horizontal plate 41; the slide rod 431 can support one end of the horizontal plate 41; when the horizontal plate 41 supports the connecting and supporting of the let-in ring 42, the horizontal plate 41 and the let-in ring 42 can slide horizontally, and the position of the let-in ring 42 can be adjusted.
[0027] The working principle and use process of the device are as follows: the concentrating box 2 and the slicing box 3 are erected on the "L" frame rod 1 supported by the inclined plate 11, so that the pleurotus eryngii is obliquely supported in the inner wall of the half-ring supporting plate 34; the slide plate 31 is pushed by the installed electric push rod, so that the slide plate 31 can slide in the inner wall of the slicing box 3; when the slide plate 31 is pushed and displaced, the cutter 33 can perform slicing operation on the pleurotus eryngii; after the cutter 33 cuts the pleurotus eryngii in the half-ring supporting plate 34, the pleurotus eryngii is obliquely supported in the half-ring supporting plate 34 again; the scraper 35 is arranged between every two adjacent cutters 33, so that the cutters 33 can be reset and the cut pleurotus eryngii can be blocked to prevent it from separating from the half-ring supporting plate 34; after slicing, the horizontal plate 41 and the let-in ring 42 can slide as a whole, so that the horizontal plate 41 is dislocated from the half-ring supporting plate 34, the let-in ring 42 corresponds to the half-ring supporting plate 34, the pleurotus eryngii can pass through the let-in ring 42 and fall into the concentrating box 2 for concentration treatment, so that the device can ensure uniform slicing of the pleurotus eryngii and prevent the pleurotus eryngii from adhering to the cutter 33 when cutting the pleurotus eryngii, which affects the complete separation of the sliced pleurotus eryngii and the slicing operation of the cutter 33 on the next batch of pleurotus eryngii.
Claims
1. A mushroom slicer with anti-sticking comprising a "L" bracket lever (1), a concentration box (2) and a slicing box (3), characterized in that: The "L" frame rod (1) one side fixedly connected with the inclined plate (11), the slide plate (31) is connected in the slide plate (31) inner wall of the slice box (3), the slide plate (31) one side fixedly connected with several support plate (32), several support plate (32) one end is fixedly connected with cutter (33), the slide plate (31) inner wall fixedly connected with the mounting bracket (4) of the slice box (3), the slide plate (31) inner wall is connected with four half ring supporting plate (34) corresponding with the cutter (33), the mounting bracket (4) inner wall is connected with several corresponding with the half ring supporting plate (34) of the slice box (3) let go of ring (42), the let go of ring (42) is connected through the transverse plate (41), the slice box (3) is opened with the connecting groove (411) for the let go of the transverse plate (41), the slice box (3) one end fixedly connected with the positioning plate (43) for the connecting groove (411) is limited, the slide plate (31) inner wall fixedly connected with several with the cutter (33) of the slice box (3) is pasted with the scraper (35).
2. A mushroom slicer according to claim 1, wherein: The centralized box (2) and the slice box (3) are engaged with the "L" frame rod (1), and the centralized box (2) and the slice box (3) are engaged.
3. A stick-resistant mushroom slicer as defined in claim 1, wherein: The centralized box (2) one side is installed with the discharge port (21), the slice box (3) top is detachably connected with the top plate (5), and the top plate (5) is installed with a plurality of inlet pipes (51) corresponding to the half ring supporting plate (34).
4. A mushroom slicer according to claim 1 wherein: The slide plate (31) is fixedly connected with a sliding block (312) at the connection with the inner wall of the slice box (3), and the inner wall of the slice box (3) is provided with a slide (311) matched with the sliding block (312).
5. A stick-resistant mushroom slicer as defined in claim 1, wherein: The inner wall of the slice box (3) is fixedly connected with a plurality of rack plates (36) corresponding to the half ring supporting plate (34), and the outer wall of the half ring supporting plate (34) is provided with a clamping groove (361) engaged with one end of the rack plate (36).
6. A mushroom slicer according to claim 1 wherein: The mounting bracket (4) and the inner wall of the slice box (3) are connected through a fixed plate (412), one of the transverse plates (41) is fixedly connected with a limiting block (441) at the connection with the mounting bracket (4) and the connecting groove (411), and the mounting bracket (4) and the connecting groove (411) are provided with a limiting groove (44) matched with the connecting groove (411).
7. A mushroom slicer according to claim 1 wherein: The inner wall of the mounting bracket (4) and the positioning plate (43) is fixedly connected with a sliding rod (431), and the sliding rod (431) is slidably connected with one end of the transverse plate (41).