Continuous automatic crushing equipment for gelatin

By designing the crushing wheel and grinding protrusion structure in the cylindrical crushing chamber and combining it with the stirring mechanism, the problem of screen clogging caused by gelatin particle accumulation is solved, efficient gelatin crushing and segmented grinding are achieved, and the stability and efficiency of the equipment are improved.

CN223324668UActive Publication Date: 2025-09-12ZHEJIANG JIADELI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422506702.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-09-12
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

The existing gelatin crushing and grinding equipment is prone to gelatin particle accumulation during the crushing and grinding process, causing the screen to be blocked and reducing the crushing and grinding efficiency.

Method used

A continuous automatic gelatin crushing equipment was designed, which adopts a crushing wheel and grinding protrusion structure in a cylindrical crushing chamber. There is a continuously shrinking grinding gap between the grinding protrusion and the crushing wheel, and it is equipped with a stirring mechanism to ensure that the gelatin particles are continuously crushed and ground in sections to avoid accumulation.

Benefits of technology

The continuous and automatic crushing of gelatin particles is achieved, screen blockage is avoided, and crushing and grinding efficiency and stability are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses continuous and automatic crushing equipment for gelatin. According to the technical key points, the crusher comprises a base and a shell arranged on the base, a crushing cavity is formed in the shell, a crushing mechanism is arranged in the crushing cavity, the crushing cavity is cylindrical, the crushing mechanism comprises a crushing wheel which is rotatably arranged in the crushing cavity, a rotating shaft of the crushing wheel is coaxial with the axis of the crushing cavity, and the crushing wheel is arranged in the crushing cavity. The upper side of the crushing wheel is conical; the multiple grinding protrusions are circumferentially arranged on the inner wall of the crushing cavity at intervals, the interiors of the grinding protrusions are hollow, the lower sides of the grinding protrusions are connected with external collecting equipment, and a screen is arranged on the side, facing the crushing wheel, of each grinding protrusion; according to the crushing and grinding device, continuous and automatic crushing can be achieved, gelatin particles are prevented from being accumulated at the crushing and grinding position, the screen is prevented from being blocked, and the crushing and grinding efficiency is high.
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Description

Technical Field

[0001] The utility model relates to the field of gelatin particle crushing equipment, and more particularly to a continuous automatic gelatin crushing equipment. Background Art

[0002] During the fine processing of gelatin, the raw gelatin needs to be crushed and ground into small particles before further processing. Existing crushing and grinding equipment can cause incomplete grinding, with some gelatin particles accumulating at the bottom of the equipment, leading to screen blockage and reduced crushing and grinding efficiency. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide a continuous automatic gelatin crushing device to solve the above technical problems.

[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a gelatin continuous automatic crushing device, comprising a base and a shell arranged on the base, wherein a crushing chamber is provided in the shell, wherein a crushing mechanism is provided in the crushing chamber, wherein the crushing chamber is cylindrical, and wherein the crushing mechanism comprises:

[0005] A crushing wheel is rotatably arranged in the crushing chamber, wherein the rotating shaft of the crushing wheel is coaxial with the axis of the crushing chamber, and the upper side of the crushing wheel is conical;

[0006] There are several grinding protrusions, which are circumferentially spaced on the inner wall of the crushing chamber. The grinding protrusions are hollow inside, and the lower side of the grinding protrusions is connected to the external collecting equipment. A screen is provided on the side of the grinding protrusions facing the crushing wheel. There is a grinding gap between the grinding protrusions and the grinding wheel, and the grinding gap continuously shrinks as the crushing wheel moves forward.

[0007] As a further improvement of the present invention, abrasive grains are provided on the side of the grinding protrusion facing the crushing wheel. The grinding grains shrink continuously as the crushing wheel moves forward. The screen is adjacent to the grinding grains and is located at the position where the crushing wheel and the grinding protrusion are separated.

[0008] As a further improvement of the present invention, a stirring mechanism is provided between adjacent grinding protrusions.

[0009] As a further improvement of the present invention, the stirring mechanism includes:

[0010] A stirring motor is arranged on the top of the shell;

[0011] A stirring frame is rotatably disposed on the top of the housing and is connected to the stirring motor;

[0012] The stirring rods are fixedly arranged on the stirring frame. There are a plurality of stirring rods, each of which is located between adjacent grinding protrusions.

[0013] As a further improvement of the present invention, a conical inserting portion is provided on the side of the stirring rod facing the advancing direction of the crushing wheel.

[0014] As a further improvement of the present invention, an inclined lead-in edge is provided in the grinding protrusion, and a discharge hole is provided at the bottom of the lead-in edge, and the discharge hole is connected to an external collection device.

[0015] The beneficial effects of the utility model are that it can continuously and automatically crush, avoid gelatin particles from accumulating in the crushing and grinding area, avoid screen clogging, and have high crushing and grinding efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 is a schematic structural diagram of the internal cross section of the shell;

[0018] Figure 3 Schematic diagram of the top view of the grinding protrusion;

[0019] Figure 4 Schematic diagram of the cross-sectional structure of the grinding protrusion.

[0020] Marking instructions: 1. Base; 2. Shell; 21. Crushing chamber; 3. Crushing mechanism; 31. Crushing wheel; 32. Grinding protrusion; 321. Screen; 322. Grinding grains; 323. Inlet edge; 324. Discharge hole; 33. Grinding gap; 4. Stirring mechanism; 41. Stirring motor; 42. Stirring frame; 43. Stirring rod; 431. Insert part. DETAILED DESCRIPTION

[0021] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.

[0022] Reference Figure 1-Figure 4 As shown, the gelatin continuous automatic crushing device of this embodiment includes a base 1 and a shell 2 arranged on the base 1. The shell 2 is provided with a crushing chamber 21, and the crushing chamber 21 is provided with a crushing mechanism 3. The crushing chamber 21 is cylindrical, and the crushing mechanism 3 includes:

[0023] A crushing wheel 31 is rotatably disposed in the crushing chamber 21, wherein the rotating shaft of the crushing wheel 31 is coaxial with the axis of the crushing chamber 21, and the upper side of the crushing wheel 31 is conical;

[0024] There are several grinding protrusions 32, which are circumferentially spaced on the inner wall of the crushing chamber 21. The grinding protrusions 32 are hollow inside, and the lower side of the grinding protrusions 32 is connected to an external collecting device. A screen 321 is provided on the side of the grinding protrusions 32 facing the crushing wheel 31; there is a grinding gap 33 between the grinding protrusions 32 and the grinding wheel, and the grinding gap 33 continuously shrinks as the crushing wheel 31 moves forward.

[0025] Through the above-described technical solution, when using this device to crush gelatin particles, material is continuously loaded into the housing 2, causing the gelatin particles to enter the crushing chamber 21. The gelatin particles then follow the tapered shape of the upper surface of the crushing wheel 31 toward the edge and into the crushing area. As the crushing device operates, the crushing wheel 31 rotates, driving the gelatin particles, causing them to enter the grinding gap 33 for grinding. The ground gelatin particles then pass through the screen 321 and into the grinding projection 32, where they are then collected by an external collection device. The grinding projection 32 is tilted toward the end face of the crushing wheel 31. Once crushed to the desired size, the gelatin particles descend under the action of gravity, passing through the screen 321 and into the grinding projection 32. Some uncrushed gelatin particles move to the other side of the grinding projection 32, where they are driven by the crushing wheel 31 and continuously moved to the next grinding projection 32. This allows for continuous, automatic crushing, preventing gelatin particles from accumulating in the crushing and grinding area and clogging the screen 321, resulting in high crushing and grinding efficiency.

[0026] As an improved specific embodiment, the grinding protrusion 32 is provided with grinding particles 322 on the side facing the crushing wheel 31. The grinding particles 322 continuously shrink as the crushing wheel 31 moves forward. The screen 321 is adjacent to the grinding particles 322 and is located at the position where the crushing wheel 31 and the grinding protrusion 32 are separated.

[0027] Through the above technical solution, the grinding particles 322 are continuously reduced in size as the crushing wheel 31 moves forward, and the grinding process is gradually refined and segmented, thereby improving the grinding effect and the stability of the grinding process.

[0028] As an improved specific implementation, a stirring mechanism 4 is provided between adjacent grinding protrusions 32 .

[0029] Through the above technical solution, the stirring mechanism 4 stirs the gelatin particles between adjacent grinding protrusions 32 so that the mixed gelatin particles enter the next grinding protrusion 32 for crushing and grinding, thereby avoiding the accumulation of large particles and improving the grinding efficiency.

[0030] As an improved specific embodiment, the stirring mechanism 4 includes:

[0031] A stirring motor 41 is provided on the top of the housing 2;

[0032] A stirring frame 42 is rotatably disposed on the top of the housing 2 and is connected to the stirring motor 41;

[0033] The stirring rods 43 are fixedly mounted on the stirring frame 42 . There are a plurality of stirring rods 43 , each of which is located between adjacent grinding protrusions 32 .

[0034] Through the above technical solution, the operation process of the foot stirring mechanism 4 is as follows: the stirring motor 41 runs, driving the stirring frame 42 to rotate, and the rotation of the stirring frame 42 drives the stirring rod 43 to move. The movement trajectory of the stirring frame 42 is to rotate back and forth within a certain angle, driving the stirring rod 43 to move between adjacent grinding protrusions 32 for stirring. The structure is simple and the stability is high.

[0035] As an improved specific implementation, a conical inserting portion 431 is provided on the side of the stirring rod 43 facing the forward direction of the crushing wheel 31 .

[0036] Through the above technical solution, the tapered insert 431 can move to this side more easily, with less resistance, less power, and more energy saving. The area on the other side is large, and when the stirring rod 43 moves in the opposite direction, it can push more gelatin particles to move, and the stirring effect is good.

[0037] As an improved specific implementation, an inclined introduction edge 323 is provided in the grinding protrusion 32 , and a discharge hole 324 is provided at the bottom of the introduction edge 323 , and the discharge hole 324 is connected to an external collection device.

[0038] Through the above technical solution, the gelatin particles entering the grinding protrusion 32 move downward along the introduction edge 323, and then pass through the discharge hole 324 to be collected by an external collecting device, thereby avoiding the accumulation of gelatin particles and improving stability during use.

[0039] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, certain improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. A continuous automatic gelatin crushing device, comprising a base (1) and a housing (2) disposed on the base (1), wherein a crushing chamber (21) is disposed in the housing (2), and a crushing mechanism (3) is disposed in the crushing chamber (21), characterized in that: The crushing chamber (21) is cylindrical, and the crushing mechanism (3) comprises: A crushing wheel (31) is rotatably arranged in the crushing chamber (21), wherein the rotating shaft of the crushing wheel (31) is coaxial with the axis of the crushing chamber (21), and the upper side of the crushing wheel (31) is conical; There are a plurality of grinding protrusions (32) which are arranged at circumferential intervals on the inner wall of the crushing chamber (21). The grinding protrusions (32) are hollow inside, and the lower side of the grinding protrusions (32) is connected to an external collecting device. A screen (321) is provided on the side of the grinding protrusions (32) facing the crushing wheel (31); a grinding gap (33) is provided between the grinding protrusions (32) and the grinding wheel, and the grinding gap (33) is continuously reduced as the crushing wheel (31) moves forward.

2. The gelatin continuous automatic crushing equipment according to claim 1, characterized in that: Abrasive grains (322) are provided on the side of the grinding protrusion (32) facing the crushing wheel (31), and the grinding grains (322) are continuously reduced in size as the crushing wheel (31) moves forward. The screen (321) is adjacent to the grinding grains (322) and is located at a position where the crushing wheel (31) and the grinding protrusion (32) are separated.

3. The gelatin continuous automatic crushing device according to claim 1 or 2, characterized in that: A stirring mechanism (4) is provided between adjacent grinding protrusions (32).

4. The gelatin continuous automatic crushing equipment according to claim 3, characterized in that: The stirring mechanism (4) comprises: A stirring motor (41) is arranged on the top of the housing (2); A stirring frame (42) is rotatably arranged on the top of the housing (2), and the stirring frame (42) is connected to the stirring motor (41); The stirring rods (43) are fixedly arranged on the stirring frame (42). There are a plurality of stirring rods (43) located between adjacent grinding protrusions (32).

5. The gelatin continuous automatic crushing equipment according to claim 4, characterized in that: A conical inserting portion (431) is provided on one side of the stirring rod (43) facing the advancing direction of the crushing wheel (31).

6. The gelatin continuous automatic crushing device according to claim 1 or 2, characterized in that: An inclined introduction edge (323) is provided in the grinding protrusion (32), and a discharge hole (324) is provided at the bottom of the introduction edge (323), and the discharge hole (324) is connected to an external collection device.