A push-to-slice slicer

CN224630867UActive Publication Date: 2026-08-14ZHEJIANG YILIFU INTELLIGENT ECOLOGICAL AGRICULTURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0005]为了弥补以上不足,本实用新型提供了一种便于推送的切片机,旨在改善了现有技术中,在切片机使用过程中,往往需要工作人员手工将物料推向切割机,这不仅导致切片效率降低,切片的薄厚不均,也会使得工作人员容易被切割机误伤的问题

Benefits of technology

[0022]1、本实用新型中,在需要对物料进行切片时,启动电机,推板将在循环推送组件的带动下先在机体内壁上端将物料推向切割机,而后通过滑槽进入机体内部,待到重新回到初始位置时推板将再次伸出循环推送,这既提高了工作效率又防止工作人员受伤。

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Abstract

This utility model relates to the field of food processing and discloses a slicing machine that facilitates pushing. It includes a machine body with a cutter mounted on the top. A circulating pushing component is mounted on the inner wall of the machine body, including a connecting rod. A hinge block is hinged to the right side of a sliding block, and a guide rod is fixedly connected to the surface of the hinge block. A limit plate is elastically connected to the upper inner wall of the machine body via a spiral spring. A feed inlet is located on one side of the machine body, and a discharge outlet is located at the rear end. In this utility model, when slicing materials, the motor is started, and the pusher plate, driven by the circulating pushing component, first pushes the material towards the cutter on the upper inner wall of the machine body, and then it enters the machine body through a slot. When it returns to its initial position, the pusher plate extends again for circulating pushing. This improves work efficiency and prevents injury to workers.
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Description

Technical Field

[0001] This utility model relates to the field of food processing, and in particular to a slicing machine that is easy to push. Background Technology

[0002] In the food processing industry, slicers are one of the core pieces of equipment for improving production efficiency, ensuring product quality, and reducing costs. Their role extends through multiple stages from raw material processing to finished product processing, and they are indispensable, especially in standardized production and large-scale processing.

[0003] A push-slice machine is a device that cuts solid materials into uniform thin slices of a specific shape through mechanical or automated means. It achieves precise cutting of materials by using high-speed rotation or reciprocating motion of the blades in conjunction with the feeding mechanism. It is widely used in food processing and other fields.

[0004] Currently, slicers have some shortcomings. During the use of slicers, workers often need to manually push the material onto the cutting machine. This not only reduces slicing efficiency and results in uneven slice thickness, but also makes workers prone to accidental injury from the cutting machine. Therefore, a slicer that is easy to push is proposed to solve the above problems. Utility Model Content

[0005] To overcome the above shortcomings, this utility model provides a slicing machine that is easy to push, aiming to improve the existing technology where, during the use of a slicing machine, the operator often needs to manually push the material towards the cutting machine. This not only leads to reduced slicing efficiency and uneven slice thickness, but also makes it easy for the operator to be accidentally injured by the cutting machine.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a slicing machine for easy pushing, comprising a machine body, a cutting machine disposed on the top of the machine body, a circulating pushing component disposed on the inner wall of the machine body, the circulating pushing component comprising a connecting rod, a sliding rod slidably connected to the surface of the connecting rod, a sliding block slidably connected to the surface of the sliding rod, a push plate fixedly connected to the top of the sliding block, a hinge block hinged to the right side of the sliding block, a guide rod fixedly connected to the surface of the hinge block, a fixing block elastically connected to the hinge block by a spring A, the bottom end of a motor fixedly connected to the inner wall of the machine body by a bracket, a limit plate elastically connected to the upper inner wall of the machine body by a spiral spring, a feed inlet disposed on one side of the machine body, and a discharge outlet disposed at the rear end of the machine body.

[0007] As a further description of the above technical solution:

[0008] The upper inner wall of the machine body is provided with a sliding feeding assembly. The sliding feeding assembly includes a baffle. A locking block is fixedly connected to one side of the baffle. The locking block is elastically connected to a triangular limiting block through a spring B. The locking block is elastically connected to the upper inner wall of the machine body through a spring C.

[0009] As a further description of the above technical solution:

[0010] Both ends of the connecting rod are fixedly connected to the lower inner wall of the machine body, the fixing block passes through and is slidably connected to the surface of the guide rod, and the output shaft of the motor is fixedly connected to one side of the fixing block.

[0011] As a further description of the above technical solution:

[0012] One end of spring A is fixedly connected to the surface of the hinge block, and the other end of spring A is fixedly connected to the surface of the fixing block. There are two sets of spiral springs. The two sets of spiral springs are fixedly connected to the rotation center shafts on the upper and lower sides of the limit plate, respectively. The other ends of the two sets of spiral springs are fixedly connected to the upper inner wall of the machine body.

[0013] As a further description of the above technical solution:

[0014] The top of the sliding block is slidably connected to the inner wall of the machine body, and one side of the push plate is in contact with the surface of the limiting plate.

[0015] As a further description of the above technical solution:

[0016] The surface of the triangular limiting block is in contact with the surface of the top of the push plate, and the surface of the triangular limiting block is slidably connected to the inner wall of the card block.

[0017] As a further description of the above technical solution:

[0018] One end of spring B is fixedly connected to the inner wall of the locking block, and the other end of spring B is fixedly connected to the bottom of the triangular limiting block. One end of spring C is fixedly connected to the upper inner wall of the machine body, and the other end of spring C is fixedly connected to the side of the locking block.

[0019] As a further description of the above technical solution:

[0020] The surface of the baffle contacts the upper inner wall of the machine body, and the locking block is slidably connected to the upper inner wall of the machine body.

[0021] This utility model has the following beneficial effects:

[0022] 1. In this utility model, when it is necessary to slice the material, the motor is started and the pusher plate will push the material to the cutting machine at the upper end of the inner wall of the machine body under the drive of the circulating push component. Then, the material enters the machine body through the slide groove. When it returns to the initial position, the pusher plate will extend again to push the material in a circulating manner. This not only improves work efficiency but also prevents injury to workers.

[0023] 2. In this utility model, when a large amount of material needs to be sliced, the material is simply placed into the feed inlet. During the return journey after the pusher plate completes its push, it pulls the triangular limiting block to open the baffle, allowing the material to enter the slicing area. When the pusher plate pulls the baffle to its limit position, the force on the triangular limiting block will increase, causing it to be squeezed into the locking block by the pusher plate. At this time, the baffle will block the material outlet again under the restoring force of the spring C, thus enabling continuous feeding. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall three-dimensional front structure of a slicer that is easy to push, as proposed in this utility model.

[0025] Figure 2 This is a schematic diagram of the overall three-dimensional side structure of a slicer that is easy to push, as proposed in this utility model.

[0026] Figure 3 This is a schematic diagram of the limiting plate part of a slicer that is easy to push, as proposed in this utility model.

[0027] Figure 4 This is a schematic cross-sectional view of the overall structure of a cyclic pushing component for a slicer that is easy to push, as proposed in this utility model.

[0028] Figure 5 This is a schematic diagram of the overall structure of a sliding feeding assembly for a slicer that is easy to push, as proposed in this utility model.

[0029] Figure 6 This is a schematic diagram of the card block unfolding structure of a slicer that is easy to push, as proposed in this utility model.

[0030] Legend:

[0031] 1. Machine body; 2. Cutting machine; 3. Circulating push assembly; 31. Connecting rod; 32. Slide rod; 33. Sliding block; 34. Push plate; 35. Hinge block; 36. Guide rod; 37. Spring A; 38. Fixing block; 39. Motor; 4. Spiral spring; 5. Limiting plate; 6. Sliding feeding assembly; 61. Baffle; 62. Locking block; 63. Spring B; 64. Triangular limiting block; 65. Spring C; 7. Feed port; 8. Discharge port. Detailed Implementation

[0032] 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.

[0033] Reference Figure 1 - Figure 3 This utility model provides an embodiment of a slicing machine that facilitates slicing. It includes a machine body 1, a cutter 2 mounted on the top of the machine body 1, and a cutting blade inside the cutter 2 for more convenient and faster slicing of materials (this is prior art). A circulating pushing assembly 3 is mounted on the inner wall of the machine body 1. The circulating pushing assembly 3 includes a connecting rod 31, both ends of which are fixedly connected to the lower inner wall of the machine body 1. The connecting rod 31 provides support and fixation for the entire assembly and also guides the pushing action of the pusher plate 34. A sliding rod 32 is slidably connected to the surface of the connecting rod 31, and a sliding block 33 is slidably connected to the surface of the sliding rod 32. The top of the sliding block 33 penetrates and is slidably connected to the inner wall of the machine body 1. A pusher plate 34 is fixedly connected to the top of the sliding block 33. The sliding rod 32 provides guidance for the pusher plate 34, and the sliding block 33... The sliding surface drives the push plate 34 to rise and push or to fall and reset. A hinge block 35 is hinged to the right side of the sliding block 33. A guide rod 36 is fixedly connected to the surface of the hinge block 35. The hinge block 35 is elastically connected to the fixed block 38 through the spring A37. The rotation of the fixed block 38 drives the guide rod 36 to rotate around the rotation center point of the fixed block 38. The spring A37 is compressed when the guide rod 36 rotates to the vertical position, and then provides a reset force to push the whole device to continue to operate when the guide rod 36 tilts. One end of the spring A37 is fixedly connected to the surface of the hinge block 35, and the other end of the spring A37 is fixedly connected to the surface of the fixed block 38. The fixed block 38 is slidably connected to the surface of the guide rod 36. The fixed block 38 drives the guide rod 36 to rotate and also provides guidance for it. The slidable connection prevents the guide rod 36 from getting stuck when rotating.

[0034] Reference Figure 2 - Figure 3The bottom end of a motor 39 is fixedly connected to the inner wall of the machine body 1 via a bracket. The output shaft of the motor 39 is fixedly connected to one side of a fixing block 38. The motor 39 provides power for the operation of the entire assembly. A limit plate 5 is elastically connected to the upper inner wall of the machine body 1 via a spiral spring 4. One side of the push plate 34 contacts the surface of the limit plate 5. The limit plate 5 guides and limits the material to be sliced ​​when the push plate 34 pushes the material, providing a certain fixing effect. Two sets of spiral springs 4 are provided, and the two sets of spiral springs 4 are respectively fixedly connected to the... At the rotation center shafts on the upper and lower sides of the limiting plate 5, the other ends of two sets of spiral springs 4 are fixedly connected to the upper inner wall of the machine body 1. When the limiting plate 5 is squeezed, the spiral springs 4 deform. After deformation, the spiral springs 4 provide a restoring force, so that the limiting plate 5 can be reset after the push is completed, waiting for the next push to be fixed. A feed port 7 is provided on one side of the machine body 1, and a discharge port 8 is provided at the rear end of the machine body 1. The material to be sliced ​​enters the slicing area through the feed port 7, and the sliced ​​material automatically enters the discharge port 8.

[0035] Reference Figure 3 - Figure 5 A sliding feeding assembly 6 is provided on the upper inner wall of the machine body 1. The sliding feeding assembly 6 includes a baffle 61, which is used to block the material to be sliced ​​in the feed inlet 7 to prevent a large amount of material from entering the slicer and affecting its operation. The surface of the baffle 61 is in contact with the upper inner wall of the machine body 1. A locking block 62 is fixedly connected to one side of the baffle 61. The locking block 62 is slidably connected to the upper inner wall of the machine body 1. The locking block 62 fixes the baffle 61 to the inner wall of the machine body 1 and also provides guidance for the sliding of the baffle 61. The locking block 62 is elastically connected to a triangular limiting block 64 through a spring B63. One end of the spring B63 is fixedly connected to the inner wall of the locking block 62, and the other end of the spring B63 is fixedly connected to the bottom of the triangular limiting block 64. Spring B63 is used to connect the triangular limiting block 64 and the locking block 62. After the triangular limiting block 64 is squeezed into the inner wall of the locking block 62, it provides a restoring force to return it to its original position. The surface of the triangular limiting block 64 is slidably connected to the inner wall of the locking block 62. The surface of the triangular limiting block 64 is in contact with the surface of the top of the push plate 34. The locking block 62 is elastically connected to the upper inner wall of the machine body 1 by spring C65. One end of spring C65 is fixedly connected to the upper inner wall of the machine body 1, and the other end of spring C65 is fixedly connected to the side of the locking block 62. When the push plate 34 pushes forward and contacts the triangular limiting block 64, it squeezes and causes the baffle 61 to open to release the material. When it is pushed to the limit, the restoring force of spring C65 causes the baffle 61 to close again to block the material.

[0036] Working principle: When slicing materials, the materials are first placed into the feed inlet 7, and then the motor 39 is started. The motor 39 drives the fixed block 38 to rotate counterclockwise. The rotation of the fixed block 38 drives the guide rod 36 to make a circular motion along the rotation center of the fixed block 38. Since the sliding block 33 and the hinge block 35 are hinged, the fixed block 38 passes through the guide rod 36 and the two are elastically connected by the spring A37. The circular motion of the guide rod 36 will not be stuck, and the spring A37 will provide a restoring force for its movement, making it smoother. The guide rod 36 will drive the slide rod 32 to make reciprocating motion on the connecting rod 31. The bottom of the inner wall of the machine body 1 is provided with a sliding groove. The two ends of the sliding groove are provided with slots of the same size as the push plate 34. The slide rod 32 will first drive the push plate 34 to move along the guide of the sliding groove. The material to be sliced ​​is pushed towards the cutting machine 2. At the same time, the limiting plate 5 will also squeeze the material to make it stick tightly to the inner wall of the machine body 1, giving the material a fixing effect so that the slices will not be uneven due to movement during the slicing process. Meanwhile, the push plate 34 will squeeze the triangular limiting block 64. Due to the large elastic potential energy of the spring B63, the triangular limiting block 64 will not be squeezed into the jamming block 62 at first, but will move towards the cutting machine 2 together with the baffle 61. The baffle 61 is opened, and the material begins to fall into the slicing area. When the jamming block 62 is pushed to the bottom, the resistance increases, and the triangular limiting block 64 will be squeezed into the jamming block 62. At this time, the restoring force of the spring C65 will also be released, so that the baffle 61 will block the outlet again to prevent the material from continuing to enter.

[0037] After slicing is completed, the sliced ​​material will fall into the discharge port 8. The hinge block 35 slides down to the bottom of the slide bar 32 under the guidance of the slide bar 32. The push plate 34 also falls vertically into the interior of the machine body 1 along the empty groove, moves in the opposite direction and returns to its original position. At this time, it is also guided by the hinge block 35 sliding on the surface of the slide bar 32. The push plate 34 rises again and performs slicing work on the material that fell into the slicing area before.

[0038] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A slicer for easy pushing, comprising a body (1), characterized in that: A cutting machine (2) is provided on the top of the machine body (1), and a circulating push assembly (3) is provided on the inner wall of the machine body (1); The circulating push assembly (3) includes a connecting rod (31), a sliding rod (32) is slidably connected to the surface of the connecting rod (31), a sliding block (33) is slidably connected to the surface of the sliding rod (32), a push plate (34) is fixedly connected to the top of the sliding block (33), a hinge block (35) is hinged to the right side of the sliding block (33), a guide rod (36) is fixedly connected to the surface of the hinge block (35), a fixed block (38) is elastically connected to the hinge block (35) by a spring A (37), the bottom end of the motor (39) is fixedly connected to the inner wall of the machine body (1) by a bracket, a limit plate (5) is elastically connected to the upper inner wall of the machine body (1) by a spiral spring (4), a feed port (7) is provided on one side of the machine body (1), and a discharge port (8) is provided at the rear end of the machine body (1).

2. The slicer for easy pushing according to claim 1, characterized in that: The upper inner wall of the machine body (1) is provided with a sliding feeding assembly (6); The sliding feeding assembly (6) includes a baffle (61), a locking block (62) is fixedly connected to one side of the baffle (61), the locking block (62) is elastically connected to a triangular limiting block (64) by a spring B (63), and the locking block (62) is elastically connected to the upper inner wall of the machine body (1) by a spring C (65).

3. The slicer for easy pushing according to claim 1, characterized in that: Both ends of the connecting rod (31) are fixedly connected to the lower inner wall of the body (1), the fixing block (38) passes through and is slidably connected to the surface of the guide rod (36), and the output shaft of the motor (39) is fixedly connected to one side of the fixing block (38).

4. A slicer for easy pushing according to claim 1, characterized in that: One end of the spring A (37) is fixedly connected to the surface of the hinge block (35), and the other end of the spring A (37) is fixedly connected to the surface of the fixing block (38). There are two sets of spiral springs (4). The two sets of spiral springs (4) are fixedly connected to the rotation center shafts on the upper and lower sides of the limiting plate (5), and the other ends of the two sets of spiral springs (4) are fixedly connected to the upper inner wall of the machine body (1).

5. A slicer for easy pushing according to claim 1, characterized in that: The top of the sliding block (33) is slidably connected to the inner wall of the body (1), and one side of the push plate (34) is in contact with the surface of the limiting plate (5).

6. A slicer for easy pushing according to claim 2, characterized in that: The surface of the triangular limiting block (64) is in contact with the surface of the top of the push plate (34), and the surface of the triangular limiting block (64) is slidably connected to the inner wall of the card block (62).

7. A slicer for easy pushing according to claim 2, characterized in that: One end of the spring B (63) is fixedly connected to the inner wall of the locking block (62), and the other end of the spring B (63) is fixedly connected to the bottom of the triangular limiting block (64). One end of the spring C (65) is fixedly connected to the upper inner wall of the body (1), and the other end of the spring C (65) is fixedly connected to the side of the locking block (62).

8. A slicer for easy pushing according to claim 2, characterized in that: The surface of the baffle (61) is in contact with the upper inner wall of the body (1), and the locking block (62) is slidably connected to the upper inner wall of the body (1).