A turnover drive type food processing hammering mechanism
By using the lifting power mechanism and synchronous control components of the flip-driven pounding mechanism, automatic intelligent pounding and efficient cleaning of food processing are achieved, solving the problem of difficult cleaning of traditional pounding mechanisms and making it suitable for industrial food processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGSU YOUSHUANG FOOD CO LTD
- Filing Date
- 2025-04-14
- Publication Date
- 2026-04-10
AI Technical Summary
The cleaning of existing pounding mechanisms in food processing is cumbersome and inefficient, making it difficult to achieve automated intelligent operation and mass industrial processing.
A flip-driven pounding mechanism for food processing is designed. It uses a lifting power mechanism to drive the lifting frame and intelligent pounding components. Automatic pounding is achieved by flipping the rotating columns and pounding blocks, and water spray head is used for cleaning. Combined with a synchronous control component, multiple rotating columns can work together.
It enables automated and intelligent operation of food processing, improves cleaning efficiency, reduces manpower requirements, is suitable for large-scale industrial production, and has a more compact structural design for easy assembly and transportation.
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Figure CN120036362B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the field of food industrial processing and intelligent manufacturing equipment, and particularly relates to a turnover driving type food processing beating mechanism. BACKGROUND
[0002] At present, the types of food processing are relatively wide, with the improvement of people's living quality and business needs, food processing into semi-finished products can save people's life or business cooking time, and ensure the taste of food. Among them, the meatloaf as a meat food can be processed into a semi-finished product before being fried or marinated, so as to make the marinating more uniform, ensure the marinating, and reduce the marinating time or loosen the meat quality. Therefore, beating processing is needed. Manual operation is time-consuming and laborious, and the operation efficiency is low. It is difficult to carry out industrial processing and intelligent manufacturing of food. Therefore, an automatic beating mechanism is needed to process food. Generally, the beating operation can be carried out by the up-and-down floating plate body. The pressing block is arranged on the lower side of the plate body. The plate body reciprocatingly drives the pressing block to beat the food. In this way, efficient automatic beating operation can be carried out. However, it is difficult to clean the multiple pressing blocks on the lower side of the plate body after beating. Generally, manual cleaning is used, which is relatively cumbersome and low in efficiency. Therefore, a matching structure needs to be developed to achieve efficient cleaning, high-efficiency operation, automatic intelligent operation, and batch industrial operation processing mode. SUMMARY
[0003] In view of the above problems of the prior art, the present application solves the problem of providing a turnover driving type food processing beating mechanism which can efficiently operate, automatically and intelligently operate, and batch industrially operate.
[0004] To solve the above problems, the technical scheme adopted by the present application is as follows:
[0005] A turnover driving type food processing beating mechanism, comprising a beating pool, a lifting power mechanism, a lifting frame, an intelligent beating assembly, and a water pipe; the lifting power mechanism is installed above the beating pool; the lifting frame is connected below the lifting power mechanism, and the lifting power mechanism drives the lifting frame to move up and down; the intelligent beating assembly is installed on the lifting frame; the intelligent beating assembly comprises a rotating column, a beating block, and a driving unit; a plurality of rotating columns are uniformly installed from front to back on the bottom of the lifting frame; a plurality of beating blocks are uniformly installed from left to right on the lower side of the rotating column; the driving unit is installed on the rear side of the lifting frame, and the driving unit drives the plurality of rotating columns to rotate and makes the beating block to turn over from bottom to top; the water pipe is installed inside the lifting frame; a plurality of water spray heads are uniformly arranged on the bottom of the water pipe, and the beating block is cleaned by the water spray heads after turning over from bottom to top.
[0006] Further, the water passing assembly comprises a positioning pipe, a water pump, a longitudinal floating pipe and a penetrating pipe; the positioning pipe is fixedly installed on one side of the upper end of the beating pool; the water pump is installed on the positioning pipe; one end of the water pipe is connected with the penetrating pipe, and the outer end of the penetrating pipe extends to the outside of one side of the lifting frame; the longitudinal floating pipe is installed between the inner end of the positioning pipe and the outer end of the penetrating pipe.
[0007] Further, the synchronous control assembly comprises side rotating rods, chain wheel sleeves, power gears and transmission chain wheels; the two ends of the rotating column are respectively provided with a side rotating rod, and the outer ends of the two side rotating rods are rotatably connected to the lifting frame; the side rotating rod at one end of the rotating column is provided with a chain wheel sleeve; the driving unit is a motor, the inner side of the driving unit is provided with a power gear through a rotating shaft, and the power gear and the plurality of chain wheel sleeves are engaged and connected through a transmission chain wheel.
[0008] Further, the longitudinal section of the lifting frame is in an inverted U-shaped structure.
[0009] Further, the two sides of the upper part of the beating pool are respectively provided with positioning columns, and the upper ends of the two positioning columns are jointly provided with a positioning horizontal plate; the positioning horizontal plate is fixedly installed with a lifting power mechanism.
[0010] Further, the upper part of the lifting frame is connected with a mounting plate; the lower part of the lifting power mechanism is connected with a floating plate; the mounting plate and the floating plate are connected; the lifting power mechanism drives the floating plate and the mounting plate to reciprocate up and down.
[0011] Further, the inner side of the positioning column is provided with a moving clamping groove; the two ends of the floating plate are respectively slidably clamped in the moving clamping groove.
[0012] Further, the lifting power mechanism is a driving air cylinder.
[0013] Further, the upper ends of the two sides of the water pipe are connected to the inner upper part of the lifting frame through positioning blocks.
[0014] The beneficial effects of the present application are as follows:
[0015] 1. The present application can drive the lifting frame to move up and down reciprocatingly through the lifting power mechanism, thereby driving the entire intelligent beating assembly to move up and down, thus driving the rotating column and the beating block in the intelligent beating assembly to move downward, and beating the food through the beating block, achieving automatic intelligent operation, and realizing large-scale food industrial processing. The present application changes the traditional structure of connecting the beating block to the lower side of the plate body, installs multiple rotatable rotating columns on the lower side of the lifting frame, installs multiple beating blocks on the lower side of the rotating column, drives the multiple rotating columns to rotate through the driving unit, makes the beating block flip up and down, sprays water through the multiple water spray heads on the lower side of the water pipe, realizes fast and efficient intelligent operation, and does not need manual cleaning. After cleaning, the multiple rotating columns are driven to rotate through the driving unit, the beating block is reset downward for subsequent beating. Therefore, the present application splits the traditional integrated plate body structure into multiple rotating column structures, which can be conveniently flipped. When an entire plate body is flipped up and down, sufficient space is needed above and below, which increases the unnecessary longitudinal space and volume of the entire device, especially for the plate body with large width and area, which is inconvenient to drive. Therefore, the present application designs a multiple rotating column rotating operation mode, which does not need to increase the longitudinal space above and below, and the entire structure is more compact, facilitating assembly, transportation, and use.
[0016] 2. The water passing assembly of the present application comprises a positioning pipe, a water pump, a longitudinal floating pipe, and a penetrating pipe. The penetrating pipe is fixedly penetrated with the water pipe and floats up and down with the water pipe. The positioning pipe is fixedly installed on the upper end of one side of the beating pool. The longitudinal floating pipe is installed between the inner end of the positioning pipe and the outer end of the penetrating pipe. When the penetrating pipe floats up and down with the water pipe, the longitudinal floating pipe can keep the channel through the extension and contraction, without affecting the water passing and without subsequent connection, facilitating operation.
[0017] 3. The present application designs a structure that can synchronously drive multiple rotating columns to rotate. The driving unit can drive the power gear to rotate, and the power gear can drive multiple chain wheel sleeves to rotate through the transmission of the transmission sprocket, and the chain wheel sleeves drive each rotating column to rotate respectively, thereby realizing synchronous and collaborative operation, and the structure design is exquisite. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The figure is a structural schematic diagram of the present application.
[0019] Figure 2 The figure is a structural schematic diagram of the intelligent beating assembly, the water pipe, and the water passing assembly in the present application. Figure 1
[0020] The figure is a structural schematic diagram of the multiple rotating columns rotating and driving the beating block to flip upward in the present application. Figure 3 Figure 2 The figure is a structural schematic diagram of the multiple rotating columns rotating and driving the beating block to flip upward in the present application.
[0021] Figure 4 It is the enlarged structure schematic view of the intelligent beating assembly of the application.
[0022] Figure 5 It is the top structure schematic view of the synchronous control assembly. DETAILED DESCRIPTION
[0023] The application will be further described in detail with reference to the accompanying drawings.
[0024] As Figures 1 to 5 shown, a turnover driven food processing beating mechanism, comprising a beating pool 1, a lifting power mechanism 2, a lifting frame 3, an intelligent beating assembly 4, and a water pipe 5; the lifting power mechanism 2 is installed above the beating pool 1; the lifting frame 3 is connected below the lifting power mechanism 2, and the lifting power mechanism 2 drives the lifting frame 3 to move up and down; the intelligent beating assembly 4 is installed on the lifting frame 3; the intelligent beating assembly 4 comprises a rotating column 41, a beating block 42, and a driving unit 43; a plurality of rotating columns 41 are evenly installed from front to back at the bottom of the lifting frame 3; a plurality of beating blocks 42 are evenly installed from left to right at the lower side of the rotating column 41; the driving unit 43 is installed at the rear side of the lifting frame 3, and drives the plurality of rotating columns 41 to rotate and makes the beating block 42 to turn over from bottom to top; the water pipe 5 is installed inside and above the lifting frame 3; a plurality of water spraying heads 51 are evenly arranged at the bottom of the water pipe 5, and the beating block 42 is cleaned by the plurality of water spraying heads 51 after turning over from bottom to top.
[0025] As Figures 1 to 5 shown, in order to keep the sealing of the water pipe, without subsequent connection, further comprising a water pipe assembly 6; the water pipe assembly 6 comprises a positioning pipe 61, a water pump 62, a longitudinal floating pipe 63, and a penetrating pipe 64; the positioning pipe 61 is fixedly installed at one side of the upper end of the beating pool 1; the water pump 62 is installed on the positioning pipe 61; one end of the water pipe 5 is connected to the penetrating pipe 64, and the outer end of the penetrating pipe 64 extends to the outside of one side of the lifting frame 3; the longitudinal floating pipe 63 is installed between the inner end of the positioning pipe 61 and the outer end of the penetrating pipe 64. The longitudinal floating pipe 63 is made of a telescopic bellows.
[0026] As Figures 1 to 5As shown, in order to rotate control multiple rotating column 41, further, it also includes synchronous control assembly 7; the synchronous control assembly 7 includes side rotating rod 71, sprocket cover 72, power gear 73, transmission sprocket 74; the two ends of rotating column 41 are installed with a side rotating rod 71 respectively, the outer end of two side rotating rods 71 are rotatably connected to the lifting frame 3, the side rotating rod 71 on one end of rotating column 41 is installed with a sprocket cover 72; the driving unit 43 is a motor, the inside of driving unit 43 is installed with power gear 73 through rotating shaft 431, power gear 73 and multiple sprocket cover 72 are engaged and connected through transmission sprocket 74. So driving unit 43 can drive power gear 73 to rotate, power gear 73 can drive multiple sprocket cover 72 to rotate through transmission sprocket 74, sprocket cover 72 drives each rotating column 41 to rotate respectively, so as to realize synchronous cooperative operation.
[0027] As shown, in order to rotate control multiple rotating column 41, further, it also includes synchronous control assembly 7; the synchronous control assembly 7 includes side rotating rod 71, sprocket cover 72, power gear 73, transmission sprocket 74; the two ends of rotating column 41 are installed with a side rotating rod 71 respectively, the outer end of two side rotating rods 71 are rotatably connected to the lifting frame 3, the side rotating rod 71 on one end of rotating column 41 is installed with a sprocket cover 72; the driving unit 43 is a motor, the inside of driving unit 43 is installed with power gear 73 through rotating shaft 431, power gear 73 and multiple sprocket cover 72 are engaged and connected through transmission sprocket 74. So driving unit 43 can drive power gear 73 to rotate, power gear 73 can drive multiple sprocket cover 72 to rotate through transmission sprocket 74, sprocket cover 72 drives each rotating column 41 to rotate respectively, so as to realize synchronous cooperative operation. Figures 1 to 5 As shown, in order to structure matching and stable assembly, further, the longitudinal section of lifting frame 3 is inverted U-shaped structure. Further, the upper side of beating pool 1 is installed with positioning column 8 respectively, the upper end of two positioning columns 8 is commonly installed with positioning cross plate 9, positioning cross plate 9 is fixedly installed with lifting power mechanism 2 in the middle. Further, the upper side of lifting frame 3 is connected with mounting plate 31; the lower side of lifting power mechanism 2 is connected with floating plate 21; the mounting plate 31 and floating plate 21 are connected; the lifting power mechanism 2 drives floating plate 21 and mounting plate 31 to move up and down reciprocatingly. Further, the inner side of positioning column 8 is provided with a moving clamping groove 81; the two ends of floating plate 21 are respectively up and down slidingly clamped in moving clamping groove 81. Further, the lifting power mechanism 2 is driving air cylinder. Further, the upper end of water pipe 5 is connected to the inner upper side of lifting frame 3 through positioning block 52.
[0028] The application can drive the lifting frame 3 to move up and down reciprocatingly through the lifting power mechanism 2, and then can drive the whole intelligent beating assembly 4 to move up and down, so as to drive the rotating column 41 and the beating block 42 in the intelligent beating assembly 4 to move downward, and the beating block 42 can beat the food, so as to achieve automatic intelligent operation, and large-scale food industrial processing can be realized. The application changes the structure of the traditional plate body connected with the beating block 42 on the lower side, and a plurality of rotating rotating columns 41 are installed on the lower side of the lifting frame 3, so that a plurality of beating blocks 42 are installed on the lower side of the rotating column 41, so that the driving unit 43 can drive the plurality of rotating columns 41 to rotate, so that the beating block 42 is flipped downward, so that the plurality of water spray heads 51 on the lower side of the water pipe 5 can be used for water spraying and cleaning, so that fast and efficient intelligent operation is realized, and manual cleaning is not needed. After cleaning, the driving unit 43 drives the plurality of rotating columns 41 to rotate, so that the beating block 42 is reset downward for subsequent beating. Therefore, the application splits the traditional integrated plate body structure into a plurality of rotating column 41 structures, so that the flipping is facilitated. When an integral plate body is flipped up and down, sufficient space is needed above and below, so that unnecessary longitudinal space and volume of the whole device are increased. Especially for the plate body with large width and area, it is inconvenient to drive. Therefore, the application designs a plurality of rotating column 41 rotating operation modes, so that the longitudinal space above and below is not needed, the whole structure is more compact, and assembly, transportation and use are facilitated.
[0029] The water passing assembly 6 of the application comprises a positioning pipe 61, a water pump 62, a longitudinal floating pipe 63 and a penetrating pipe 64. The penetrating pipe 64 is fixedly penetrated with the water pipe 5 and floats up and down with the water pipe 5. The positioning pipe 61 is fixedly installed on the upper end of one side of the beating pool 1. The longitudinal floating pipe 63 is installed between the inner end of the lower side of the positioning pipe 61 and the outer end of the upper side of the penetrating pipe 64. When the penetrating pipe 64 floats up and down with the water pipe 5, the longitudinal floating pipe 63 can keep the channel through the extension and contraction, and does not affect the water passing, and does not need subsequent connection, and the operation is convenient.
[0030] The application designs a structure that can synchronously drive a plurality of rotating columns 41 to rotate. The driving unit 43 can drive the power gear 73 to rotate. The power gear 73 can drive a plurality of sprocket sleeves 72 to rotate through the transmission of the transmission sprocket 74. The sprocket sleeve 72 drives each rotating column 41 to rotate respectively, so that synchronous and collaborative operation is realized, and the structure design is exquisite.
[0031] The above only describes the preferred embodiments of the application and is not used to limit the application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the application shall be included in the protection scope of the application.
Claims
1. A flip-driven pounding mechanism for food processing, characterized in that, The utility model provides a kind of intelligent fish pond cleaning device, including beating pool, lifting power mechanism, lifting frame, intelligent beating assembly, water pipe;Lifting power mechanism is installed above the beating pool;Lifting frame is connected below the lifting power mechanism, and lifting power mechanism drives lifting frame to move up and down;Intelligent beating assembly is installed on the lifting frame;Intelligent beating assembly includes rotating column, beating block, drive unit;The bottom of lifting frame is evenly installed with multiple rotating columns from front to back;Multiple beating blocks are evenly installed on the lower side of rotating column from left to right;Drive unit is installed on the rear side of lifting frame, and drive unit drives multiple rotating columns to rotate, and makes beating block overturn from bottom to top;Water pipe is installed inside the upper side of lifting frame;Multiple water jet heads are evenly provided in the bottom of water pipe, and beating block is washed by multiple water jet heads after overturning from bottom to top;It further includes water passing assembly;Water passing assembly includes positioning pipe, water pump, longitudinal floating pipe, through pipe;Positioning pipe is fixedly installed on the upper end of one side of beating pool;Water pump is installed on the positioning pipe;One end of water pipe is connected with through pipe, and the outer end of through pipe extends to the outside of one side of lifting frame;Longitudinal floating pipe is installed between the inner end of the lower side of positioning pipe and the outer end of through pipe.
2. The turnover drive type food processing hammering mechanism according to claim 1, characterized by It further includes synchronous control assembly;Synchronous control assembly includes side rotating rod, sprocket cover, power gear, transmission sprocket;Rotating column is installed with one side rotating rod at both ends respectively, and the outer end of two side rotating rods is rotatably connected to lifting frame, and one sprocket cover is installed on the side rotating rod of one end of rotating column;Drive unit is motor, and power gear is installed in the inner side of drive unit by rotating shaft, and power gear and multiple sprocket covers are engaged and connected by transmission sprocket.
3. The turnover drive type food processing hammering mechanism according to claim 1, characterized by The longitudinal section of the lifting frame is in inverted U-shaped structure.
4. The turnover drive type food processing hammering mechanism according to claim 1, characterized by The upper side of the beating pool is installed with positioning column respectively, and one positioning cross plate is jointly installed between the upper end of two positioning columns, and one lifting power mechanism is fixedly installed in the middle of the positioning cross plate.
5. The turnover drive type food processing hammering mechanism according to claim 4, characterized by The upper side of the lifting frame is connected with mounting plate, and the lower side of the lifting power mechanism is connected with floating plate, and the mounting plate and the floating plate are connected, and the lifting power mechanism drives the floating plate and the mounting plate to move up and down reciprocatingly.
6. The turnover drive type food processing hammering mechanism according to claim 5, characterized by The inner side of the positioning column is provided with one moving clamping groove, and the both ends of the floating plate are respectively up and down slidingly clamped in the moving clamping groove.
7. The turnover drive type food processing hammering mechanism according to claim 1, characterized by The lifting power mechanism is drive cylinder.
8. The turnover drive type food processing hammering mechanism according to claim 1, characterized by The upper end of the water pipe is connected to the inside upper side of the lifting frame by positioning block.
Citation Information
Patent Citations
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