Multi-station mold pressing device for chicken nugget forming

By designing a multi-station pressing device, which utilizes a hydraulic cylinder and a motor-driven multi-station pressing molding and locking ejector mechanism, the problem of inconvenient continuous processing and material removal after chicken nugget molding is solved, thus improving work efficiency and convenience.

CN224069598UActive Publication Date: 2026-04-03YANTAI TAIYUAN FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing molding equipment is not convenient for continuous processing and recycling of chicken nuggets after molding, which affects work efficiency.

Method used

Design a multi-station pressing device that uses a hydraulic cylinder to drive the mounting base and the pressing die to move down for forming, and uses a motor to drive the worktable to rotate to achieve continuous pressing of multiple chicken pieces. At the same time, a locking mechanism and an ejector mechanism are used to limit and remove the chicken pieces.

Benefits of technology

This technology enables continuous processing and forming of chicken nuggets, improves work efficiency, facilitates the removal and recycling of formed chicken nuggets, and avoids the impact of workbench shaking on the pressing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of die pressing devices, and particularly relates to a multi-station die pressing device for chicken nugget forming, which comprises a bottom plate, a support is fixedly connected to the upper end of the bottom plate, a hydraulic cylinder is fixedly mounted at the top of the support, and the output end of the hydraulic cylinder is slidably connected with the support. And the lower end of the output end of the hydraulic cylinder is fixedly connected with a mounting seat. Through the design of the hydraulic cylinder, the output end of the hydraulic cylinder can drive the mounting base and the lower pressing die to move downwards, the pressing die can press and form materials stored in the workbench, the workbench can be rotated under the action of the motor, the materials placed at different positions can be converted to the lower portion of the pressing die to be pressed and formed, and the working efficiency is improved. According to the chicken nugget press-fit forming device, continuous press-fit forming of a plurality of chicken nuggets can be achieved, the working efficiency is improved, the static workbench can be limited under insertion fit of the clamping balls and the grooves, and the situation that the press-fit forming effect is affected by shaking of the workbench is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of molding device technology, specifically a multi-station molding device for forming chicken nuggets. Background Technology

[0002] The molding device for chicken nuggets is a key piece of equipment in the food processing industry for achieving standardized production of chicken nuggets. It can precisely shape raw chicken meat and quickly and efficiently produce various types of chicken nuggets with regular shapes and uniform sizes, such as common square and round chicken nuggets. This meets the needs of fast food chains, frozen food companies, and other enterprises for standardized and mass production of chicken nuggets, improves production efficiency and product quality, and helps enterprises achieve standardized operations.

[0003] The current molding equipment requires removing the molded material after each molding process and adding raw materials for further processing. This is inconvenient for continuous processing of chicken nuggets, affecting work efficiency, and also makes it difficult to collect and recycle the molded chicken nuggets. Therefore, improvements are needed. Utility Model Content

[0004] The purpose of this invention is to provide a multi-station molding device for chicken nugget forming, which solves the problem of inconvenient continuous processing and forming of chicken nuggets, and also solves the problem of inconvenient material removal and recycling of the formed chicken nuggets.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a multi-station pressing device for chicken nugget forming, comprising a base plate, a bracket fixedly connected to the upper end of the base plate, a hydraulic cylinder fixedly mounted on the top of the bracket, the output end of the hydraulic cylinder being slidably connected to the bracket, a mounting seat fixedly connected to the lower end of the hydraulic cylinder output end, a pressing mold fixedly mounted on the lower end of the mounting seat, a worktable rotatably connected to the upper end of the base plate, a motor fixedly mounted on the upper end of the base plate and inside the worktable, a rotating seat fixedly connected to the upper end of the motor output end, the rotating seat being fixedly connected to the worktable, a locking mechanism being provided on the worktable, and a material ejection mechanism being provided on the worktable.

[0006] Preferably, the locking mechanism includes a groove. The worktable has a groove inside, and a retaining ball is movably fitted inside the groove. A fixed seat is movably fitted outside the retaining ball. The fixed seat is rotatably connected to the worktable and fixedly connected to the base plate. A slider is movably fitted outside the retaining ball and slidably connected to the fixed seat. A sliding rod is fixedly connected to the bottom of the slider and slidably connected to the fixed seat. A first spring is provided on the outside of the sliding rod. This locking mechanism facilitates the limiting and locking of the worktable.

[0007] Preferably, there are multiple grooves, which are arranged in a ring shape and evenly distributed inside the worktable. By designing multiple grooves, the ball can roll into the grooves at different positions.

[0008] Preferably, one end of the first spring is fixedly connected to the slider, and the other end of the first spring is fixedly connected to the fixed base. By designing the first spring, the force of the first spring can be applied to the slider.

[0009] Preferably, the ejector mechanism includes a connecting plate, and multiple evenly distributed connecting plates are slidably connected inside the worktable. A connecting rod is fixedly connected to the lower end of each connecting plate, and the connecting rod is slidably connected to the worktable. A connecting sleeve is slidably sleeved on the outer side of the connecting rod, and the connecting sleeve is fixedly connected to the worktable. A guide rod is fixedly connected inside the connecting sleeve, and the guide rod is slidably connected to the connecting rod. A second spring is provided on the outer side of the guide rod, and a ball bearing is movably sleeved inside the connecting rod, and the ball bearing is slidably connected to the connecting sleeve. This ejector mechanism facilitates the removal of the molded product.

[0010] Preferably, one end of the second spring is fixedly connected to the connecting rod, and the other end of the second spring is fixedly connected to the connecting sleeve. By designing the second spring, its force can be applied to the connecting rod.

[0011] Preferably, the connecting sleeve has a groove inside, and a ball bearing is slidably connected inside the groove. By designing the groove, the ball bearing can slide inside the groove.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model utilizes the design of a hydraulic cylinder. The output end of the hydraulic cylinder can drive the mounting base and the lower die to move downwards. The die can press and shape the material stored inside the worktable. Under the action of the motor, the worktable can be rotated, allowing materials placed in different positions to be transferred to the lower part of the die for pressing and shaping. This enables continuous pressing and shaping of multiple chicken pieces, improving work efficiency. Furthermore, with the insertion and cooperation of the ball and the groove, the stationary worktable can be limited, preventing the shaking of the worktable from affecting the pressing and shaping effect.

[0014] 2. By designing the connecting plate, this utility model will press down when the chicken pieces are pressed into shape. After the chicken pieces are pressed into shape, when the mold separates from the material, the connecting plate will be pushed upward by the elasticity of the first spring, which can lift the formed chicken pieces and facilitate the removal and recycling of the formed chicken pieces. Attached Figure Description

[0015] Figure 1 This is a three-dimensional view of the overall structure of this utility model;

[0016] Figure 2 This utility model Figure 1 A partial three-dimensional sectional view of the structure;

[0017] Figure 3 This utility model Figure 2 Enlarged view of point A;

[0018] Figure 4 This utility model Figure 2 The front sectional view of the connecting sleeve.

[0019] In the diagram: 1. Base plate; 2. Bracket; 3. Hydraulic cylinder; 4. Mounting seat; 5. Press mold; 6. Worktable; 7. Motor; 8. Locking mechanism; 9. Ejection mechanism; 10. Rotating seat; 81. Groove; 82. Ball catcher; 83. Fixed seat; 84. Slider; 85. Sliding rod; 86. First spring; 91. Connecting plate; 92. Connecting rod; 93. Connecting sleeve; 94. Guide rod; 95. Second spring; 96. Ball bearing; 97. Slide groove. Detailed Implementation

[0020] 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.

[0021] Please see Figure 1 , Figure 2 A multi-station pressing device for forming chicken nuggets includes a base plate 1, a bracket 2 fixedly connected to the upper end of the base plate 1, a hydraulic cylinder 3 fixedly installed on the top of the bracket 2, the output end of the hydraulic cylinder 3 being slidably connected to the bracket 2, a mounting base 4 fixedly connected to the lower end of the output end of the hydraulic cylinder 3, a pressing mold 5 fixedly installed on the lower end of the mounting base 4, a worktable 6 rotatably connected to the upper end of the base plate 1, a motor 7 fixedly installed on the upper end of the base plate 1 and located inside the worktable 6, a rotating seat 10 fixedly connected to the upper end of the output end of the motor 7, the rotating seat 10 being fixedly connected to the worktable 6, a locking mechanism 8 being provided on the worktable 6, and a material ejection mechanism 9 being provided on the worktable 6.

[0022] Please see Figure 1 , Figure 2 , Figure 3The locking mechanism 8 includes a groove 81. The worktable 6 has a groove 81 inside, and a retaining ball 82 is movably fitted inside the groove 81. There are multiple grooves 81, which are arranged in a ring and evenly distributed inside the worktable 6. By designing multiple grooves 81, the retaining ball 82 can roll into the grooves 81 at different positions. A fixed seat 83 is movably fitted on the outside of the retaining ball 82. The fixed seat 83 is rotatably connected to the worktable 6 and fixedly connected to the base plate 1. A slider 84 is movably fitted on the outside of the retaining ball 82. The slider 84 is slidably connected to the fixed seat 83. A sliding rod 85 is fixedly connected to the bottom of the slider 84 and is slidably connected to the fixed seat 83. A first spring 86 is provided on the outside of the sliding rod 85. One end of the first spring 86 is fixedly connected to the slider 84, and the other end of the first spring 86 is fixedly connected to the fixed seat 83. By designing the first spring 86, the force of the first spring 86 can act on the slider 84. By designing the locking mechanism 8, it is convenient to limit and lock the worktable 6.

[0023] Please see Figure 1 , Figure 2 , Figure 4 The top-loading mechanism 9 includes a connecting plate 91. Multiple evenly distributed connecting plates 91 are slidably connected inside the worktable 6. A connecting rod 92 is fixedly connected to the lower end of each connecting plate 91. The connecting rod 92 is slidably connected to the worktable 6. A connecting sleeve 93 is slidably sleeved on the outer side of the connecting rod 92. The connecting sleeve 93 is fixedly connected to the worktable 6. A guide rod 94 is fixedly connected inside the connecting sleeve 93. The guide rod 94 is slidably connected to the connecting rod 92. A second spring 95 is provided on the outer side of the guide rod 94. One end of the second spring 95 is connected to the connecting rod 92. 2. Fixed connection: The other end of the second spring 95 is fixedly connected to the connecting sleeve 93. By designing the second spring 95, the force of the second spring 95 can be applied to the connecting rod 92. A ball bearing 96 is movably sleeved inside the connecting rod 92. The ball bearing 96 is slidably connected to the connecting sleeve 93. A groove 97 is opened inside the connecting sleeve 93. The ball bearing 96 is slidably connected inside the groove 97. By designing the groove 97, the ball bearing 96 can slide inside the groove 97. By designing the ejector mechanism 9, it is convenient to remove the molded product.

[0024] The specific implementation process of this utility model is as follows: When in use, the raw materials are first placed inside the workbench 6, and then the hydraulic cylinder 3 is started. The output end of the hydraulic cylinder 3 can drive the mounting base 4 and the pressing mold 5 to move down. The pressing mold 5 can press down the material inside the workbench 6, thereby forming the chicken pieces.

[0025] Once the initial molding is complete, the motor 7 is started. The output of the motor 7 drives the worktable 6 to rotate. The worktable 6 will rotate the material from another position to the bottom of the mold 5, which can realize the continuous pressing and molding of multiple chicken pieces, thus improving work efficiency.

[0026] When the worktable 6 rotates, it slides relative to the fixed seat 83. The arc surface of the groove 81 inside the worktable 6 will squeeze and push the ball 82. The ball 82 will drive the slider 84 and the slide rod 85 to move down. The slider 84 will squeeze the first spring 86, which can separate the ball 82 from the groove 81. When the worktable 6 finishes rotating, it will remain stationary. Under the elastic action of the first spring 86, it will give the slider 84 an upward counter-force, which can push the ball 82 into the groove 81 in another position. At this time, the stationary worktable 6 can be limited to avoid the shaking of the worktable 6 from affecting the pressing and molding effect.

[0027] During the process of the material being pressed and formed, the material will drive the connecting plate 91 to move down, and the connecting plate 91 will drive the connecting rod 92 to move down. The connecting rod 92 will slide along the connecting sleeve 93 and the guide rod 94. The connecting rod 92 will squeeze the second spring 95. When the chicken pieces are formed, the mold 5 will move up and separate from the material. At this time, under the elastic action of the second spring 95, it will give the connecting rod 92 an upward push, which can lift the formed chicken pieces from the inside of the workbench 6, making it convenient for the removal and recycling of the formed chicken pieces.

[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A multi-station press die apparatus for chicken nugget forming comprising a base plate (1) characterised in that: The upper end of the bottom plate (1) is fixedly connected with a support (2), the top of the support (2) is fixedly installed with a hydraulic cylinder (3), the output end of the hydraulic cylinder (3) is slidably connected with the support (2), the lower end of the output end of the hydraulic cylinder (3) is fixedly connected with a mounting seat (4), the lower end of the mounting seat (4) is fixedly installed with a pressing die (5), the upper end of the bottom plate (1) is rotatably connected with a workbench (6), the upper end of the bottom plate (1) and the inner side of the workbench (6) are fixedly installed with a motor (7), the upper end of the output end of the motor (7) is fixedly connected with a rotating seat (10), the rotating seat (10) is fixedly connected with the workbench (6), the workbench (6) is provided with a locking mechanism (8), and the workbench (6) is provided with a material ejecting mechanism (9).

2. A multi-station compression molding apparatus for chicken nugget forming according to claim 1, wherein: The locking mechanism (8) comprises a groove (81), the inner side of the workbench (6) is provided with the groove (81), the inner side of the groove (81) movably sleeved with a clamping ball (82), the outer side of the clamping ball (82) movably sleeved with a fixed seat (83), the fixed seat (83) rotatably connected with the workbench (6), the fixed seat (83) fixedly connected with the bottom plate (1), the outer side of the clamping ball (82) movably sleeved with a sliding block (84), the sliding block (84) slidably connected with the fixed seat (83), the bottom of the sliding block (84) fixedly connected with a sliding rod (85), the sliding rod (85) slidably connected with the fixed seat (83), and the outer side of the sliding rod (85) provided with a first spring (86).

3. A multi-station compression molding apparatus for chicken nugget forming according to claim 2, wherein: The number of the grooves (81) is multiple, and the multiple grooves (81) are annularly and uniformly distributed in the inner side of the workbench (6).

4. A multi-station compression molding apparatus for nugget forming according to claim 2, wherein: One end of the first spring (86) is fixedly connected with the sliding block (84), and the other end of the first spring (86) is fixedly connected with the fixed seat (83).

5. A multi-station compression molding apparatus for chicken nugget forming according to claim 1, wherein: The material ejecting mechanism (9) comprises a connecting plate (91), a plurality of connecting plates (91) are slidably connected in the inner side of the workbench (6) and are uniformly distributed, the lower end of the connecting plate (91) is fixedly connected with a connecting rod (92), the connecting rod (92) is slidably connected with the workbench (6), the outer side of the connecting rod (92) is slidably sleeved with a connecting sleeve (93), the connecting sleeve (93) is fixedly connected with the workbench (6), the inner side of the connecting sleeve (93) is fixedly connected with a guide rod (94), the guide rod (94) is slidably connected with the connecting rod (92), the outer side of the guide rod (94) is provided with a second spring (95), the inner side of the connecting rod (92) movably sleeved with a ball (96), and the ball (96) is slidably connected with the connecting sleeve (93).

6. A multi-station compression molding apparatus for nugget forming according to claim 5, wherein: One end of the second spring (95) is fixedly connected with the connecting rod (92), and the other end of the second spring (95) is fixedly connected with the connecting sleeve (93).

7. A multi-station compression molding apparatus for nugget forming according to claim 5, wherein: The inner side of the connecting sleeve (93) is provided with a sliding groove (97), and the inner side of the sliding groove (97) is slidably connected with the ball (96).