Peeling machine with protection mechanism

By combining fixed protection and dynamic adjustment design on the peeling machine, and using a combination of feed cover, longitudinal guard rod and movable guard rod, the problem of the inflexible adjustment of the protective device of the traditional peeling machine is solved, and the unity of safety and operation convenience is achieved, which can adapt to the processing needs of different materials.

CN223994353UActive Publication Date: 2026-03-17CHANGZHOU YOUDE MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The existing protective devices of peeling machines cannot be flexibly adjusted, making it difficult to meet the safety protection requirements of different working conditions. They are also inconvenient to operate, cannot effectively isolate dangerous areas, and can easily lead to personnel coming into contact with high-speed rotating parts.

Method used

The design combines fixed protection with dynamic adjustment. The feed cover is tightly connected to the protective box, and a stable frame is formed by longitudinal protective rods and transverse short rods. Combined with the adjustable slide rails and movable protective rods, the protection can be flexibly adjusted to meet different safety protection needs.

Benefits of technology

It improves the safety and versatility of the peeling machine, prevents material splashing and personnel from coming into contact with high-speed components, adapts to the processing needs of materials of different volumes, avoids operational inconvenience, and enhances the flexibility and adaptability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The peeling machine with the protection mechanism comprises a protection box, a feeding cover and a peeling machine body, the feeding cover is arranged on the periphery of the top of the protection box and connected with the protection box through bolts, and a feeding opening is formed in the periphery, close to the left end, of the top of the feeding cover. A peeling machine body is arranged at the bottom of the protection box and connected with the protection box through bolts, a protection opening is formed in the periphery of the top end of the protection box, a first adjusting sliding rail is arranged at the position, close to the right end, of the rear side of the protection opening, and a second adjusting sliding rail is arranged at the position, close to the right end, of the front side of the protection opening. The huller combines fixing and dynamic protection, a feeding cover is connected with a protection box, materials are prevented from splashing, personnel are prevented from making contact with dangerous parts, a triangular frame on the left side of a protection opening isolates a dangerous area, a right side adjusting sliding rail and five sets of movable protection rods can transversely slide, an operator can flexibly adjust according to working conditions, and the safety protection requirement is met; and materials with different volumes can be treated more conveniently.
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Description

Technical Field

[0001] This utility model relates to the technical field of protective devices for peeling machines, specifically a peeling machine with a protective mechanism. Background Technology

[0002] A peeling machine is a device used to remove the outer skin of materials. It is widely used in food processing, agriculture, and other fields. As a key piece of equipment for removing the outer skin of materials, peeling machines play an important role in many industries. In the food processing industry, they can efficiently remove the outer skin of grains, nuts, etc., improving the taste and quality of food. In the agricultural field, they can peel various seeds to facilitate subsequent sowing and storage. Their working principle usually uses mechanical force and friction to separate the outer skin from the inner body of the material. Modern peeling machine designs increasingly emphasize efficiency, precision, and versatility to adapt to the peeling needs of different materials, providing strong support for industrial development.

[0003] In the existing technology, the protective devices of peeling machines are mostly fixed, which has obvious shortcomings. They cannot be flexibly adjusted, making it difficult to meet the safety protection needs of different working conditions. They are inconvenient to operate and cannot effectively isolate dangerous areas, which can easily lead to personnel coming into contact with high-speed rotating parts. They are also inconvenient when handling materials of different volumes. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a peeling machine with a protective mechanism. By combining fixed protection with dynamic adjustment, the feed cover at the top of the protective box is tightly connected to the protective box, preventing material splashing and personnel from contacting high-speed rotating parts. The longitudinal protective rod and the transverse short rod on the left side of the protective opening form a stable triangular frame, isolating the dangerous area and reducing safety accidents. The right side of the protective opening is equipped with an adjusting slide rail and five sets of movable protective rods, which can slide laterally. Operators can flexibly adjust them according to working conditions to meet different safety protection needs and avoid operational inconvenience. The multi-rod linkage is independent and controllable, making it convenient to adjust when processing materials of different volumes and improving the versatility of the peeling machine.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model is implemented through the following technical solution: a peeling machine with a protective mechanism, comprising a protective box, a feed cover, and a peeling machine body. A feed cover is provided around the top of the protective box and connected by bolts. A feed inlet is provided around the top of the feed cover near the left end. The peeling machine body is provided at the bottom of the protective box and connected by bolts. A protective opening is provided around the top of the protective box. An adjusting slide rail one is provided at the rear side of the protective opening near the right end, and an adjusting slide rail two is provided at the front side of the protective opening near the right end.

[0008] Preferably, a longitudinal protective rod one is welded to the middle of the protective opening, a longitudinal protective rod two is provided near the left end of the protective opening, and three horizontal short rods are welded to the front and back of the longitudinal protective rod two and are evenly distributed. The right end of each horizontal short rod is welded to the longitudinal protective rod one, and the left end of each horizontal short rod is welded to the protective opening.

[0009] Preferably, the top of the first adjusting slide rail is provided with slider mover 1, slider mover 2, slider mover 3, slider mover 4 and slider mover 5 in sequence from left to right. The top of the second adjusting slide rail is provided with auxiliary slider 1, auxiliary slider 2, auxiliary slider 3, auxiliary slider 4 and auxiliary slider 5 in sequence from left to right. The front end of slider mover 1 is connected to a movable protective rod 1 by bolts. The front end of movable protective rod 1 is connected to auxiliary slider 1 by bolts.

[0010] Preferably, the front end of the second slider mover is bolted to a second movable protective rod, and the front end of the second movable protective rod is bolted to an second auxiliary slider.

[0011] Preferably, the front end of the slider mover three is bolted to a movable protective rod three, and the front end of the movable protective rod three is bolted to an auxiliary slider three.

[0012] Preferably, the front end of the slider mover is bolted to a movable protective rod, and the front end of the movable protective rod is bolted to an auxiliary slider.

[0013] Preferably, the front end of the slider mover five is bolted to a movable protective rod five, and the front end of the movable protective rod five is bolted to an auxiliary slider five.

[0014] (III) Beneficial Effects

[0015] This utility model provides a peeling machine with a protective mechanism. It has the following beneficial effects:

[0016] (1) This peeling machine with a protective mechanism has a safety protection system through an innovative design that combines fixed protection with dynamic adjustment. It eliminates potential dangers in the operation of the peeling machine from a structural perspective. First, the feed cover at the top of the protective box is tightly connected to the protective box with bolts to form a closed top protective space. This not only prevents material from splashing out, but also prevents operators from accidentally contacting the high-speed rotating parts of the peeling machine body, reducing the probability of safety accidents from the source. The longitudinal protective rod 1, longitudinal protective rod 2 and horizontal short rod set at the protective opening form a fixed protective frame. The longitudinal protective rod 2 is welded to the longitudinal protective rod 1 by three horizontal short rods that are equally distributed to form a stable triangular support structure. It can withstand accidental impact and maintain protective strength, effectively isolating the area on the left side of the protective opening and preventing personnel's hands or foreign objects from entering the dangerous area from the side.

[0017] (2) This peeling machine with a protective mechanism differs from the limitations of traditional fixed protective devices. This invention innovatively sets up two adjustable slide rails on the right side of the protective opening, and configures five sets of movable protective rods. Each set of movable protective rods is connected to the front and rear slide rails via a slider mover and an auxiliary slider, forming a dynamic, laterally sliding protection. Operators can flexibly adjust the position of the movable protective rods according to the actual working state of the peeling machine, such as the material type and processing volume. When adding material or performing maintenance, the protective rods can be slid to the right to expand the operating space. When the equipment is running at high speed, the protective rods can be slid to the left to reduce the open area of ​​the protective opening, forming a tight protective barrier. This on-demand adjustment design not only meets the safety protection needs under different working conditions but also avoids the limitations of fixed protective devices. The fixed opening of the protective device causes operational inconvenience, making it particularly suitable for scenarios requiring frequent adjustments to the material feeding angle or observation of the peeling process. It truly achieves an organic unity of safety protection and operational convenience. The independent adjustment function of the five sets of movable protective rods gives the equipment a strong adaptability to working conditions. When processing small materials, multiple protective rods can be slid to the left to reduce the opening range of the protective opening and enhance the blocking effect on high-speed splashing particles. When processing larger materials, the protective rods can be slid to the right to expand the inlet space, making it easier for materials to enter the peeling machine body smoothly. The multi-rod linkage and independent controllable design breaks through the single protection mode of traditional protective devices, enabling the equipment to flexibly adapt to the peeling needs of different types and specifications of materials, significantly improving the versatility of the peeling machine. Attached Figure Description

[0018] Figure 1 This is a structural diagram of the present utility model;

[0019] Figure 2 This is a diagram showing the feed cover of this utility model in its removed state;

[0020] Figure 3 This is a schematic diagram showing the multiple sets of movable protective rods of this utility model moving to the right to widen the gap;

[0021] Figure 4 This is a schematic diagram showing the right end of the multiple movable protective rods protruding from the protective opening of this utility model.

[0022] In the diagram: 1. Protective box; 2. Feed cover; 3. Feed inlet; 4. Main body of peeling machine; 5. Protective opening; 6. Adjusting slide rail one; 7. Adjusting slide rail two; 8. Longitudinal protective rod one; 9. Longitudinal protective rod two; 10. Horizontal short rod; 11. Slider mover one; 12. Auxiliary slider one; 13. Movable protective rod one; 14. Slider mover two; 15. Auxiliary slider two; 16. Movable protective rod two; 17. Slider mover three; 18. Auxiliary slider three; 19. Movable protective rod three; 20. Slider mover four; 21. Auxiliary slider four; 22. Movable protective rod four; 23. Slider mover five; 24. Auxiliary slider five; 25. Movable protective rod five. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figure 1-4This utility model provides a technical solution: a peeling machine with a protective mechanism, including a protective box 1, a feed cover 2, and a peeling machine body 4. The feed cover 2 is arranged around the top of the protective box 1 and connected by bolts. The feed cover 2 is tightly connected to the protective box 1 by bolts to form a closed top protective space, which can prevent material from splashing and overflowing, and also prevent operators from accidentally contacting the high-speed rotating parts of the peeling machine body 4, reducing the probability of safety accidents from the source. The feed inlet 3 is arranged around the top of the feed cover 2 near the left end. The feed inlet 3 is located at the top left end of the feed cover 2. Its position is designed to facilitate the safe feeding of materials from above, avoiding the hands from approaching the dynamic area on the right side of the protective opening 5. The peeling machine body 4 is arranged at the bottom of the protective box 1 and connected by bolts. The protective opening 5 is arranged around the top of the protective box 1. An adjusting slide rail 6 is provided on the rear side near the right end, and an adjusting slide rail 7 is provided on the front side near the right end of the protective opening 5. A longitudinal protective rod 8 is welded to the middle of the protective opening 5, and a longitudinal protective rod 9 is provided near the left end of the protective opening 5. Three horizontal short rods 10 are welded to the front and rear of the longitudinal protective rod 9 and are evenly spaced. The right end of each horizontal short rod 10 is welded to the longitudinal protective rod 8, and the left end of each horizontal short rod 10 is welded to the protective opening 5. The longitudinal protective rod 8, the longitudinal protective rod 9, and the horizontal short rods 10 constitute a fixed protective frame. The longitudinal protective rod 9 is welded to the longitudinal protective rod 8 through the three equally spaced horizontal short rods 10, forming a stable triangular support structure that can withstand accidental impacts and maintain protective strength. It effectively isolates the left side area of ​​the protective opening 5, preventing personnel's hands or foreign objects from entering the danger zone from the side, forming a permanent protective area.

[0025] The top of the adjusting slide rail 6 is provided with slider movers 11, 14, 17, 20, and 23 from left to right. The top of the adjusting slide rail 7 is provided with auxiliary sliders 12, 15, 18, 21, and 24 from left to right. The front end of slider mover 11 is connected to a movable guard rod 13 by bolts. The front end of movable guard rod 13 is connected to auxiliary slider 12 by bolts. Unlike traditional fixed protective devices, the adjusting slide rail 6, adjusting slide rail 7, and five sets of movable guard rods constitute a dynamic protective structure. Each set of movable guard rods is connected to the front and rear slide rails respectively through slider movers and auxiliary sliders, forming a dynamic protection that can slide laterally. The operator can flexibly adjust the position of the movable guard rods according to the actual working status of the peeling machine, such as the type of material and the processing volume.

[0026] The front end of the second slider mover 14 is bolted to a movable protective rod 16, and the front end of the movable protective rod 16 is bolted to an auxiliary slider 15. The front end of the third slider mover 17 is bolted to a movable protective rod 19, and the front end of the movable protective rod 19 is bolted to an auxiliary slider 18. The front end of the fourth slider mover 20 is bolted to a movable protective rod 22, and the front end of the movable protective rod 22 is bolted to an auxiliary slider 21. The front end of the fifth slider mover 23 is bolted to a movable protective rod 25. The front end of the movable protective rod 25... The auxiliary slider 524 is connected to the end by bolts. The five sets of movable protective rods have independent adjustment functions. When processing small materials, multiple protective rods can be slid to the left to reduce the opening range of the protective opening 5 and enhance the blocking effect on high-speed splashing particles. When processing large materials, the protective rods can be slid to the right to expand the inlet space, making it easier for materials to enter the peeling machine body 4 smoothly. This realizes a flexible protection mode with multi-rod linkage and independent control. The slider mover is equipped with a self-locking structure, which is a common type on the market. After adjustment, the position of the movable protective rods can be fixed to ensure that the protective rods are stable and do not shift during equipment operation, thus ensuring the reliability of the dynamic protection structure.

[0027] Working Principle: Operators need to pre-adjust the protective mechanism according to the type of material to be processed, such as particle size, hardness, and processing volume. The feed cover 2, connected by bolts, can be completely disassembled for initial inspection and cleaning of the interior of the protective box 1 and the peeling machine body 4. For the movable protective rod assembly on the right side of the protective opening 5, operators drive five sets of movable protective rods—movable protective rod 13, movable protective rod 26, movable protective rod 39, movable protective rod 42, and movable protective rod 525—to slide laterally by sliding the multiple slider movers and auxiliary sliders on the sliding adjustment rail 16 and adjusting rail 27. For smaller materials, enhanced splash protection is required; the movable protective rods can be... Slide the guard bar to the left to reduce the open area of ​​the guard opening 5, thereby reducing the distance between adjacent guard bars and forming a dense protective barrier. If a large material is being processed, the material inlet space needs to be expanded. In this case, slide the movable guard bar to the right to increase the open range of the guard opening 5, ensuring that the material can smoothly enter the peeling machine body 4. After adjustment, the slider mover is fixed in position by its own locking structure. All slider movers on the market have their own locking structure to ensure that the guard bar is stable and does not shift during operation. The fixed protective frame on the left side of the guard opening 5, the longitudinal guard bar 1 8, the longitudinal guard bar 2 9 and the transverse short bar 10 do not need to be adjusted. Their triangular welded structure has formed a permanent protective area, isolating the dangerous space on the left side of the guard opening 5.

[0028] Material is fed in through the feed inlet 3 at the top of the feed cover 2. The position of the feed inlet 3 is designed to allow operators to safely feed the material from above, avoiding their hands from approaching the dynamic area to the right of the protective opening 5. The feed cover 2 and the protective box 1 are tightly connected by bolts to form a closed top space, preventing material from splashing to the outside of the equipment and blocking personnel from contacting the high-speed rotating parts of the peeling machine body 4 from above. The material falls through the inside of the protective box 1 to the bottom of the peeling machine body 4. The peeling machine body 4 is driven by a motor to rotate the internal grinding parts at high speed, peeling off the surface of the material. The left longitudinal protective rod 2 9 is connected to the longitudinal protective rod 1 8 by three equidistant horizontal short rods 10, forming a rigid support frame to withstand accidental impacts and prevent personnel from reaching into the protective opening 5 from the left. The five sets of movable protective rods on the right side form a continuous horizontal protective array according to the pre-adjusted position, blocking debris or material particles splashed during the peeling process. When the equipment is running at high speed, the dense spacing of the protective rods can effectively intercept small particles from splashing.

[0029] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0030] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A peeling machine having a protection mechanism, characterized by: Including the protective box (1), feed cover (2) and peeling machine body (4), the top of the protective box (1) is provided with feed cover (2) and is connected by bolt, the top of the feed cover (2) is provided with feed port (3) near the left end, the bottom of the protective box (1) is provided with peeling machine body (4) and is connected by bolt, the top of the protective box (1) is provided with protective port (5), the rear side of the protective port (5) is provided with adjusting slide rail one (6) near the right end, the front side of the protective port (5) is provided with adjusting slide rail two (7) near the right end.

2. The peeling machine with a protection mechanism according to claim 1, characterized in that: The middle end of the protective port (5) is welded with longitudinal protection rod one (8), the left end of the protective port (5) is provided with longitudinal protection rod two (9), the front and back of the longitudinal protection rod two (9) are welded with three transverse short rods (10) and are distributed at equal intervals, the right end of the transverse short rod (10) is welded with longitudinal protection rod one (8), and the left end of the transverse short rod (10) is welded with protective port (5).

3. The peeling machine with a protection mechanism according to claim 1, characterized in that: The top of the adjusting slide rail one (6) is sequentially provided with slide block mover one (11), slide block mover two (14), slide block mover three (17), slide block mover four (20) and slide block mover five (23) from left to right, the top of the adjusting slide rail two (7) is sequentially provided with auxiliary slide block one (12), auxiliary slide block two (15), auxiliary slide block three (18), auxiliary slide block four (21) and auxiliary slide block five (24) from left to right, the front end of the slide block mover one (11) is connected with movable protection rod one (13) through bolt, and the front end of the movable protection rod one (13) is connected with auxiliary slide block one (12) through bolt.

4. The peeling machine with a protection mechanism according to claim 3, characterized in that: The front end of the slide block mover two (14) is connected with movable protection rod two (16) through bolt, and the front end of the movable protection rod two (16) is connected with auxiliary slide block two (15) through bolt.

5. The peeling machine with a protection mechanism according to claim 3, characterized in that: The front end of the slide block mover three (17) is connected with movable protection rod three (19) through bolt, and the front end of the movable protection rod three (19) is connected with auxiliary slide block three (18) through bolt.

6. The peeling machine with a protection mechanism according to claim 3, characterized in that: The front end of the slide block mover four (20) is connected with movable protection rod four (22) through bolt, and the front end of the movable protection rod four (22) is connected with auxiliary slide block four (21) through bolt.

7. The peeler with a protection mechanism according to claim 3, characterized in that: The front end of the slide block mover five (23) is connected with movable protection rod five (25) through bolt, and the front end of the movable protection rod five (25) is connected with auxiliary slide block five (24) through bolt.