Adjustable poria cocos dicing mold

By designing an adjustable diced mold for Poria cocos and using vertical pressing and cutting mesh structures, the problems of splashing and uneven cutting of Poria cocos raw materials in the prior art are solved, and stable and efficient diced processing is achieved.

CN222920631UActive Publication Date: 2025-05-30LULIANG UNIV
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Patent Information

Application Number
CN202422438545.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-05-30
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

In the existing diced Poria cocos processing technology, the cutting method causes the raw materials of Poria cocos to splash, the utilization rate is low, and the cutting is uneven, which affects the processing efficiency.

Method used

Design an adjustable diced mold for Poria cocos, using vertical pressing and cutting mesh structure, cut the raw materials of Poria cocos into long strips, and then cut them into blocks through the bottom cutting blade to achieve the diced effect.

Benefits of technology

It improves the cutting and processing stability of Poria raw materials, avoids splashing of raw materials, improves the dicing efficiency, and ensures the uniformity of cutting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable tuckahoe dicing die in the field of dicing dies, which comprises a base and a collecting hopper connected to the top of the base, a feeding plate connected to the top of the base, a supporting bracket connected to the top of the base, a transmission part connected to the side face of the supporting bracket, and the feeding plate obliquely faces the direction of the transmission part. According to the poria cocos raw material cutting device, the cutting stability of poria cocos raw materials can be effectively improved, the problem that the poria cocos raw materials splash in the cutting process is solved, and the poria cocos raw materials can be cut into long strips through the vertical pressing and cutting net structure of the poria cocos raw material cutting device; and the long-strip-shaped raw materials are cut into blocks through the cutting blade at the bottom.
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Description

Technical Field

[0001] The utility model relates to the technical field of dicing molds, in particular to an adjustable Poria cocos dicing mold. Background Art

[0002] Poria cocos is an irregularly shaped medicinal material. After being picked, it needs to be peeled first, then sliced, and then diced. Most of the existing Poria cocos processing is to slice the peeled Poria cocos in batches, convey the slices on a conveyor belt, and set a cutter that cuts up and down regularly above the conveyor belt to realize the successive diagonal cutting of Poria cocos slices to form Poria cocos dices. However, although the above cutting method of Poria cocos dices can realize the continuous processing and production of Poria cocos dices, the conveying efficiency of Poria cocos slices after slicing and the dicing efficiency of two separate cuts both greatly affect the processing efficiency of Poria cocos dicing. Therefore, an adjustable Poria cocos dicing mold is proposed to solve the above problems.

[0003] Chinese Patent with publication number CN216732032U discloses an adjustable Poria cocos dicing mold, which solves the problem that the dicing efficiency of Poria cocos in the prior art needs to be improved. An adjustable Poria cocos dicing mold includes: a fixed frame, a positioning plate that moves vertically and elastically is arranged below the fixed frame, and a cutting disc that moves vertically and is limited is arranged on the lower end surface of the positioning plate. By setting the positioning plate that moves vertically and elastically, the utility model can improve the automatic adjustment of the dicing device for Poria cocos blocks of different heights and be positioned under the limitation of the positioning rod. By setting the movable plate that can move vertically and be limited, it can be adjusted according to the thickness of different Poria cocos blocks to realize the multi-layer slicing operation of the corresponding Poria cocos blocks, and realize a mold mechanism for quickly slicing and dicing Poria cocos blocks at one time. It can adjust and position Poria cocos blocks with different shapes, has strong applicability, is convenient to use, has stable operation, and high dicing efficiency.

[0004] However, the above disclosed solution has the following deficiencies: The above device uses multiple cutting knives to cut and process Poria cocos raw materials. During the cutting process, the vertically moving cutting knives are likely to cause the Poria cocos raw materials to splash, resulting in a reduction in the utilization rate of the raw materials. At the same time, the above device will cause uneven cutting due to the uneven distribution of Poria cocos raw materials. Summary of the Utility Model

[0005] The purpose of this part is to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this part, as well as in the abstract and the title of the utility model of the present application, to avoid obscuring the purpose of this part, the abstract, and the title of the utility model. However, such simplifications or omissions shall not be used to limit the scope of the utility model.

[0006] The purpose of the utility model is to address the technical problems existing in the background technology. The utility model proposes an adjustable Poria cocos dicing mold. The utility model can effectively improve the cutting and processing stability of the Poria cocos raw material through the device, and avoid the problem of splashing of the Poria cocos raw material during the cutting process. Through the vertical pressing and cutting net structure of the device, the Poria cocos raw material can be cut into long strips first, and then the long strips of raw material can be cut into blocks through the cutting blade at the bottom.

[0007] The utility model proposes an adjustable Poria cocos dicing mold, comprising a base and a collecting bucket connected to the top thereof, a feed plate connected to the top of the base, a support bracket connected to the top of the base, a transmission component connected to the side of the support bracket, and the feed plate tilted toward the direction of the transmission component.

[0008] By adopting the above technical solution, this solution can facilitate the cutting and collection of Poria cocos raw materials through the combination of the transmission component and the collection bucket.

[0009] Preferably, the transmission component includes a motor bracket connected to the side of the support bracket, the motor bracket is connected to a rotating motor, the bottom output end of the rotating motor is connected to an inclined turntable, and the side of the support bracket is connected to a fixing plate.

[0010] By adopting the above technical solution, the present solution can effectively improve the control effect of multiple sliding rods by tilting the turntable, thereby reducing the operating difficulty of the present device, and the sliding rods that slide down in turn can achieve the effect of feeding in turn of the present device.

[0011] Preferably, the fixed plate is provided with four through holes, and the inner walls of the through holes are slidably connected to a sliding rod. The bottom of the tilting turntable is provided with an annular groove, the side of the annular groove is provided with a notch, the inside of the notch is provided with an arc-shaped blocking member, the arc-shaped blocking member is threadedly connected to the side of the tilting turntable, and the top of the sliding rod is provided with a transmission member, which is slidably connected to the inner wall of the annular groove.

[0012] By adopting the above technical solution, the present solution can divide the space inside the subject by using the partition plate, thereby improving the structural stability of the cutting net.

[0013] Preferably, the supporting bracket is connected to a shell on the side, the sliding rod faces the inside of the shell, a partition plate is connected to the inside of the shell, a plurality of cutting nets are provided in the shell, the plurality of cutting nets are distributed on the side of the partition plate, the plurality of cutting nets correspond to a plurality of the sliding rods, and the cutting nets are connected to the inner wall of the shell.

[0014] By adopting the above technical solution, the present solution enables the raw material to pass through the inside of the cutting net and be cut into long strips by pressing down the sliding rod.

[0015] Preferably, the partition board is in a cross shape, a high-speed motor is arranged at the bottom of the partition board, the output end of the bottom of the high-speed motor is connected with a cutting blade, the cutting blade is located directly below a plurality of the cutting meshes, and the cutting blade is located directly above the collecting hopper.

[0016] By adopting the above technical solution, in this solution, the long raw materials can be further cut into block-shaped raw materials by the rotation of the cutting blade, so as to achieve the dicing effect of this device.

[0017] Preferably, an inclined surface is arranged at the top of the feeding plate, side baffles are arranged on the inclined surface at the top of the feeding plate, the side baffles are inclined towards the direction of the housing, an annular blocking member is arranged on the part of the feeding plate above the housing, a through hole is arranged inside the annular blocking member, and the diameter of the through hole is the same as the inner diameter of the housing.

[0018] By adopting the above technical solution, in this solution, the annular blocking member can facilitate the improvement of the feeding stability of the raw materials of this device and avoid the splashing of the raw materials during feeding.

[0019] Preferably, the four sliding rods are distributed in a staggered manner inside the housing. When the sliding rods are at the highest position, they are separated from the top of the housing. When the sliding rods are at the lowest position, there is a gap between the sliding rods and the top of the cutting mesh, and the height of the cutting mesh is lower than the height of the partition board.

[0020] By adopting the above technical solution, in this solution, the lower cutting mesh structure can ensure that the raw materials enter the inside of the housing and then are squeezed and cut, improving the cutting stability.

[0021] Preferably, the width of the collecting hopper is greater than the width of the housing.

[0022] By adopting the above technical solution, in this solution, the collecting hopper can improve the material collection stability of this device.

[0023] In summary, the present utility model includes at least one of the following beneficial effects:

[0024] Through this device, the stable cutting and processing effect of Poria cocos raw materials can be achieved. The combination of the inclined turntable and the multiple sliding rods can squeeze the Poria cocos raw materials entering the inside of the housing downward, so that the Poria cocos passes through the inside of the cutting mesh, thereby cutting the Poria cocos. At the same time, when the sliding rods slide to the upper part, it is convenient for the feeding plate to drop the raw materials into the housing. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0026] Figure 1 The front view of an embodiment of an adjustable tuckahoe dicing mold of the present utility model;

[0027] Figure 2 The structural schematic diagram of the collection hopper in the embodiment of the present utility model;

[0028] Figure 3 The structural schematic diagram of the housing in the embodiment of the present utility model;

[0029] Figure 4 The structural schematic diagram of the cutting blade in the embodiment of the present utility model;

[0030] Reference numerals: 1, base; 2, collection hopper; 3, feed plate; 4, support bracket; 5, transmission component; 501, motor bracket; 502, rotating motor; 503, inclined turntable; 504, fixing plate; 505, sliding rod; 506, housing; 507, cutting mesh; 508, partition plate; 509, cutting blade. Detailed implementation manners

[0031] The following further elaborates on the present utility model in conjunction with the attached Figures 1-4 drawings.

[0032] Embodiment 1, as Figures 1-4 shown, in order to solve the existing problems in this embodiment, the present utility model discloses an adjustable tuckahoe dicing mold, which includes a base 1 and a collection hopper 2 connected to the top thereof. A feed plate 3 is connected to the top of the base 1, a support bracket 4 is connected to the top of the base 1, a transmission component 5 is connected to the side of the support bracket 4, and the feed plate 3 is inclined towards the direction of the transmission component 5.

[0033] The transmission component 5 includes a motor bracket 501 connected to the side of the support bracket 4. The motor bracket 501 is connected with a rotating motor 502, the bottom output end of the rotating motor 502 is connected with an inclined turntable 503, and a fixing plate 504 is connected to the side of the support bracket 4.

[0034] The fixing plate 504 is provided with four through holes, the inner wall of the through holes is slidably connected with a sliding rod 505, the bottom of the inclined turntable 503 is provided with an annular groove, and the top of the sliding rod 505 is provided with a transmission part, and the transmission part is slidably connected with the inner wall of the annular groove.

[0035] A housing 506 is connected to the side of the support bracket 4. The sliding rod 505 faces the inside of the housing 506. A partition plate 508 is connected inside the housing 506. A plurality of cutting meshes 507 are arranged inside the housing 506. The plurality of cutting meshes 507 are distributed on the side of the partition plate 508. The plurality of cutting meshes 507 correspond to the plurality of sliding rods 505, and the cutting meshes 507 are connected to the inner wall of the housing 506.

[0036] The partition plate 508 is in a cross shape. A high-speed motor is provided at the bottom of the partition plate 508. The output end at the bottom of the high-speed motor is connected to a cutting blade 509. The cutting blade 509 is located directly below a plurality of the cutting meshes 507, and the cutting blade 509 is located directly above the collecting hopper 2.

[0037] The top of the feeding plate 3 is provided with an inclined surface. Side baffles are provided on the inclined surface at the top of the feeding plate 3, and the side baffles are inclined towards the direction of the housing 506. A ring-shaped blocking member is provided on the part of the feeding plate 3 above the housing 506. A through hole is provided inside the ring-shaped blocking member, and the diameter of the through hole is the same as the inner diameter of the housing 506.

[0038] The specific working principle is as follows: Through the structure of the inclined turntable 503, the device can achieve the effect of vertically driving a plurality of sliding rods 505, so as to achieve the effect of alternately extruding the raw materials inside the housing 506.

[0039] When the raw materials enter above the housing 506 through the feeding plate 3, when the sliding rod 505 slides upward to the topmost position, at this time the raw materials can fall into the housing 506. By driving the sliding rod 505 to press down through the rotation of the inclined turntable 503, the effect of downward extrusion on the raw materials is achieved, so that the raw materials pass through the cutting mesh 507. The raw materials after passing through the cutting mesh 507 are in a strip shape, and the effect of dicing can be achieved through the cutting blade 509 rotating at the bottom, and finally fall into the collecting hopper 2.

[0040] Embodiment 2, as Figures 1-4 shown, in this embodiment, in order to solve the existing problems, based on the same concept as the above-mentioned Embodiment 1, the adjustable Poria cocos dicing mold further includes: four of the sliding rods 505 are distributed in a staggered manner inside the housing 506. When the sliding rod 505 is at the highest position, it is separated from the top of the housing 506. When the sliding rod 505 is at the lowest position, there is a gap between the sliding rod 505 and the top of the cutting mesh 507. The height of the cutting mesh 507 is lower than the height of the partition plate 508, and the width of the collecting hopper 2 is greater than the width of the housing 506.

[0041] Through the transmission member structure at the top of the sliding rod 505, it can be ensured that the sliding rod 505 is always in contact with the inclined turntable 503 during the vertical reciprocating sliding process, thereby ensuring the transmission stability of the device.

[0042] The above are all the preferred embodiments of the present invention. The protection scope of the present invention is not limited by this. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.

Claims

1. An adjustable Poria cocos dicing mold, comprising a base (1) and a collecting hopper (2) connected to the top of the base (1), a feed plate (3) connected to the top of the base (1), characterized in that: The top of the base (1) is connected to a support bracket (4), the side of the support bracket (4) is connected to a transmission component (5), and the feed plate (3) is inclined toward the transmission component (5).

2. The adjustable Poria cocos dicing mold according to claim 1, characterized in that: The transmission component (5) comprises a motor support (501) connected to the side of the support support (4), the motor support (501) is connected to a rotating motor (502), the bottom output end of the rotating motor (502) is connected to a tilting turntable (503), and the side of the support support (4) is connected to a fixing plate (504).

3. The adjustable Poria cocos dicing mold according to claim 2, characterized in that: The fixing plate (504) is provided with four through holes, the inner walls of the through holes are slidably connected to sliding rods (505), the bottom of the tilting turntable (503) is provided with an annular groove, the top of the sliding rod (505) is provided with a transmission member, and the transmission member is slidably connected to the inner wall of the annular groove.

4. The adjustable Poria cocos dicing mold according to claim 3, characterized in that: The supporting bracket (4) is connected to a shell (506) on its side, the sliding rod (505) faces the inside of the shell (506), a partition plate (508) is connected to the inside of the shell (506), a plurality of cutting nets (507) are arranged in the shell (506), the plurality of cutting nets (507) are distributed on the side of the partition plate (508), the plurality of cutting nets (507) correspond to the plurality of sliding rods (505), and the cutting nets (507) are connected to the inner wall of the shell (506).

5. The adjustable Poria cocos dicing mold according to claim 4, characterized in that: The partition plate (508) is in a cross shape. A high-speed motor is provided at the bottom of the partition plate (508). A cutting blade (509) is connected to the output end at the bottom of the high-speed motor. The cutting blade (509) is located directly below the plurality of cutting nets (507). The cutting blade (509) is located directly above the collecting bucket (2).

6. The adjustable Poria cocos dicing mold according to claim 5, characterized in that: The feed plate (3) is provided with an inclined surface at the top, and a side baffle is provided on the inclined surface at the top of the feed plate (3), the side baffle is inclined toward the shell (506), and the portion of the feed plate (3) located above the shell (506) is provided with an annular blocking member, and a through hole is provided inside the annular blocking member, and the through hole has the same inner diameter as the shell (506).

7. The adjustable Poria cocos dicing mold according to claim 5, characterized in that: The four sliding rods (505) are staggered and distributed inside the shell (506); when the sliding rod (505) is at the highest point, it is separated from the top of the shell (506); when the sliding rod (505) is at the lowest point, there is a gap between it and the top of the cutting net (507); the height of the cutting net (507) is lower than the height of the partition plate (508).

8. The adjustable Poria cocos dicing mold according to claim 5, characterized in that: The width of the collecting bucket (2) is greater than the width of the shell (506).

Citation Information

Patent Citations

  • Adjustable poria cocos dicing mold

    CN216732032U