Meat ball dish product processing and forming equipment
The automated operation of the motor-driven mixing frame solves the problem of unstable manual operation, achieves uniformity and efficient processing of meatball products, and improves the quality consistency of meatball dishes and the working efficiency of the beater.
Patent Information
- Application Number
- CN202423139935.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-12-19
AI Technical Summary
During the processing of meatball dishes, the effect of manually operating the stirring frame to exhaust air and clean the inner wall of the barrel is unstable, which affects the processing consistency of the meatball products and the working efficiency of the beater.
The beater is assisted by a motor-driven mixing frame, which moves up and down and rotates in the barrel to automatically exhaust air and scrape off the adhering minced meat, thereby realizing the automated operation of the mixing frame.
The quality uniformity and fluidity of the meat slurry are improved, the processing consistency of each batch of meatball products is ensured, and the working efficiency of the beater is improved.
Smart Images

Figure CN223322858U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of meatball processing, in particular to a meatball dish product processing and forming equipment. Background Art
[0002] In the processing of meatball dishes, beating is a crucial step. The beater mainly relies on the high-speed rotation of the beater blade in the barrel to stir and cut the minced meat, thereby breaking the meat into a pulp. As the beater blade continuously stirs and cuts the minced meat, the minced meat will inevitably come into full contact with air, and some air will be drawn into it, causing the beater blade to stop rotating, seriously affecting the normal working efficiency of the beater. Therefore, manual operation is used to use the up and down movement of the stirring frame in the barrel and appropriate scraping action to expel air and prevent excessive minced meat from sticking to the inner wall of the barrel for a long time. The strength and frequency of manual operation are difficult to standardize, and the operating methods of different operators may vary greatly. This makes the stirring frame's effect of expelling air and cleaning the inner wall of the barrel less stable and uniform, which is not conducive to ensuring the consistency of each batch of meatball products. Utility Model Content
[0003] In view of the above problems and / or the problems existing in the existing meatball dish product processing and forming equipment, the present utility model is proposed.
[0004] Therefore, the problem to be solved by the present invention is that the operation is inconvenient when using a mixing frame to assist the beater to beat meat.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a meatball dish product processing and forming device, comprising a main body assembly, including a barrel, a beating knife, a workbench and a stirring frame, wherein the beating knife is located at the bottom of the barrel, the workbench is arranged below the barrel, and the stirring frame is located inside the barrel;
[0006] An auxiliary component is arranged on one side of the barrel and includes an auxiliary part. The auxiliary part includes a motor, a reciprocating roller, a moving block, a first clamping block, a moving plate, a sleeve and a connecting column. The motor is fixed on the workbench, the reciprocating roller is arranged on one side of the motor, the moving block is provided with a through slot, the reciprocating roller is inserted into the through slot, the first clamping block is fixed on the moving block, the moving plate is arranged above the barrel, the sleeve is fixed to the bottom of the moving plate, and the connecting column is fixed on the stirring frame.
[0007] As a preferred solution of the meatball dish processing and forming equipment described in the utility model, the auxiliary component also includes a mounting part, which is arranged on one side of the movable block and includes a slider and a locking block. The slider is fixed to one side of the movable plate. A sliding groove is provided on the movable block, and the slider can slide in the sliding groove. A movable groove is provided on the movable block, and the locking block slides in the movable groove. A locking groove is provided on the slider, and the locking block can engage with the locking groove.
[0008] As a preferred solution of the meatball dish processing and forming equipment of the present invention, a fixing column is fixed on the workbench, and the fixing column is inserted into the through groove.
[0009] As a preferred solution of the meatball dish processing and forming equipment of the present invention, the fixed column is provided with a guide groove, a guide block is fixed in the movable block, and the guide groove is engaged with the guide block.
[0010] As a preferred solution of the meatball dish processing and forming equipment of the present invention, the number of the moving blocks is two, and the number of the sliding blocks and the locking blocks is the same as and corresponds to the number of the moving blocks.
[0011] As a preferred solution of the meatball dish processing and forming equipment of the present invention, a spiral groove is provided in the sleeve, a second clamping block is fixed outside the connecting column, and the second clamping block slides in the spiral groove.
[0012] As a preferred solution of the meatball dish processing and forming equipment of the present invention, a spring is fixed to one end of the locking block, and the other end of the spring is fixed to the inner wall of the movable groove.
[0013] As a preferred solution of the meatball dish processing and forming equipment of the present invention, a pull plate is fixed to one end of the locking block.
[0014] As a preferred solution of the meatball dish processing and forming equipment of the present invention, one end of the locking block is inclined, and the locking groove has a corresponding shape.
[0015] As a preferred solution of the meatball dish processing and forming equipment of the present invention, the main body component also includes a cooling cylinder and a support block, the cooling cylinder is sleeved outside the material barrel, and the support block is fixed to the inner wall of the cooling cylinder.
[0016] The beneficial effects of the utility model are as follows: a motor is used to drive the stirring frame to move up and down, and the stirring frame can rotate in the barrel when it contacts the bottom of the barrel, thereby replacing manual labor and realizing the automation of the stirring frame operation, so that the air can be discharged more evenly and stably, and the minced meat stuck to the inner wall of the barrel can be scraped off, so that the minced meat material in the barrel always maintains good fluidity and uniformity, thereby improving the quality of the meat slurry. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without inventive work. Among them:
[0018] Figure 1 This is the overall structure diagram of the equipment for processing and forming meatball dishes.
[0019] Figure 2 For the processing and forming of meatball dishes Figure 1 A partial enlarged structural diagram of point A in the middle.
[0020] Figure 3 This is a diagram of the mixing frame structure of the equipment for processing and forming meatball dishes.
[0021] Figure 4 This is a cross-sectional structural diagram of the locking block of a meatball-like dish processing and molding equipment.
[0022] Figure 5 This is a cross-sectional structural diagram of the first clamping block of the meatball dish processing and forming equipment.
[0023] Figure 6 This is a cross-sectional structural diagram of the second clamping block of the meatball dish processing and forming equipment.
[0024] In the figure: 100 main component; 101 barrel; 102 beating knife; 103 workbench; 104 stirring frame; 200 auxiliary component; 201 auxiliary part; 201a motor; 201b reciprocating roller; 201c moving block; 201d first clamping block; 201f moving plate; 201g sleeve; 201h connecting column; 201c-1 through groove; 202 mounting part; 202a slider; 202b locking block; 201c-2 slide groove; 201c-3 moving groove; 202a-1 locking groove; 201i fixed column; 201i-1 guide groove; 201j guide block; 201g-1 spiral groove; 201k second clamping block; 202c spring; 202d pulling plate; 105 cooling barrel; 106 support block. DETAILED DESCRIPTION
[0025] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below with reference to the accompanying drawings.
[0026] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0027] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive with other embodiments.
[0028] Example 1
[0029] Reference Figures 1-6 , is the first embodiment of the present invention, which provides a meatball dish product processing and molding equipment. The meatball dish product processing and molding equipment includes a main body component 100, including a barrel 101, a beating knife 102, a workbench 103 and a stirring frame 104. The beating knife 102 is located at the bottom of the barrel 101, the workbench 103 is arranged below the barrel 101, and the stirring frame 104 is located inside the barrel 101.
[0030] The barrel 101 contains the meat raw materials to be processed and other auxiliary materials that may be added, providing a relatively closed and stable space environment for the beating process. The beating knife 102 is a key component for processing the block or strip meat raw materials into meat pulp. Driven by the motor, it rotates at high speed and uses its sharp blade to cut and chop the meat entering the barrel. The stirring frame 104 can break the "air cushion" formed by air accumulation by moving up and down in the barrel 101 and rotating when in contact with the bottom of the barrel 101, so that the air can be The air can be discharged from the barrel 101, maintaining the normal and stable state of the air pressure in the barrel 101, ensuring that the beating knife 102 can smoothly perform the rotating beating operation, avoiding equipment failure or low beating efficiency due to air pressure problems. At the same time, during the movement of the stirring frame 104, its edge or surface will produce appropriate scraping contact with the inner wall of the barrel 101, which can scrape off the minced meat attached to the inner wall in time to ensure full utilization of the material. This is the existing technology, and this solution will not be elaborated in detail, and those skilled in the art can clearly understand the working principle.
[0031] The auxiliary component 200 is arranged on one side of the barrel 101 and includes an auxiliary part 201. The auxiliary part 201 includes a motor 201a, a reciprocating roller 201b, a moving block 201c, a first clamping block 201d, a moving plate 201f, a sleeve 201g and a connecting column 201h. The motor 201a is fixed on the workbench 103, the reciprocating roller 201b is arranged on one side of the motor 201a, the moving block 201c is provided with a through groove 201c-1, the reciprocating roller 201b is inserted into the through groove 201c-1, the first clamping block 201d is fixed on the moving block 201c, the moving plate 201f is arranged above the barrel 101, the sleeve 201g is fixed to the bottom of the moving plate 201f, and the connecting column 201h is fixed on the stirring frame 104.
[0032] The auxiliary component 201 is provided to drive the stirring frame 104 to move, so as to ensure that the beating knife 102 can smoothly perform the rotating beating operation.
[0033] The reciprocating roller 201b is connected to the rotating shaft in the motor 201a. Starting the motor 201a will drive the reciprocating roller 201b to rotate. Two spiral grooves with opposite rotation directions are provided on the reciprocating roller 201b, and the first clamping block 201d slides therein. Through the cooperation between the reciprocating roller 201b and the first clamping block 201d, when the reciprocating roller 201b rotates, it will drive the moving block 201c to move vertically along the reciprocating roller 201b. This is the existing technology and will not be elaborated in this solution. Those skilled in the art can clearly understand the working principle.
[0034] One end of the connecting column 201h is inserted into the sleeve 201g. When the moving block 201c moves, it drives the moving plate 201f to move synchronously, and then drives the sleeve 201g and the connecting column 201h to move, so that the stirring frame 104 can move vertically.
[0035] Example 2
[0036] Reference Figures 1-6 , which is the second embodiment of the present utility model, and this embodiment is based on the previous embodiment.
[0037] Specifically, the auxiliary component 200 also includes a mounting member 202, which is arranged on one side of the moving block 201c, and includes a slider 202a and a locking block 202b. The slider 202a is fixed to one side of the moving plate 201f. A sliding groove 201c-2 is provided on the moving block 201c, and the slider 202a can slide in the sliding groove 201c-2. A moving groove 201c-3 is provided on the moving block 201c, and the locking block 202b slides in the moving groove 201c-3. A locking groove 202a-1 is provided on the slider 202a, and the locking block 202b can engage with the locking groove 202a-1.
[0038] By providing the mounting member 202 , the movable plate 201 f and the movable block 201 c can be quickly assembled and disassembled, making it easy to clean the stirring frame 104 .
[0039] One end of the slide groove 201c-2 is opened to the end face of the moving block 201c, and the slider 202a slides from the end face into the slide groove 201c-2 until the slider 202a is completely fitted with the inner wall of the other side of the slide groove 201c-2. Through the cooperation of the slider 202a and the slide groove 201c-2, the moving block 201c is connected to the moving plate 201f. The locking block 202b is used to lock the position of the slider 202a to prevent the position of the slider 202a from changing during the stirring process, causing the position of the stirring frame 104 to shift, making it impossible to discharge air from the barrel 101, thereby affecting the beating efficiency.
[0040] When the locking block 202b is engaged with the locking groove 202a-1, the position of the slider 202a is locked and cannot move in the slide groove 201c-2. At this time, the moving block 201c is firmly connected to the moving plate 201f. When the locking block 202b is separated from the locking groove 202a-1, the slider 202a is unlocked and can move freely in the slide groove 201c-2. At this time, the moving block 201c can be separated from the moving plate 201f.
[0041] Specifically, a fixing column 201i is fixed on the workbench 103, and the fixing column 201i is inserted into the through slot 201c-1.
[0042] There are two moving blocks 201c, and the through groove 201c-1 in one of the moving blocks 201c cooperates with the fixed column 201i. The setting of the fixed column 201i is used to ensure that the moving plate 201f can move stably in the vertical direction. The moving plate 201f is relatively long. After the motor 201a is started, the moving block 201c on the reciprocating roller 201b will drive one end of the moving plate 201f to move. Since the other end of the moving plate 201f is mounted outside the fixed column 201i, it can be ensured that both ends of the moving plate 201f always remain horizontal and move vertically, thereby ensuring that the stirring frame 104 can move smoothly.
[0043] Specifically, the fixed column 201i is provided with a guide groove 201i-1, and the guide block 201j is fixed in the movable block 201c, and the guide groove 201i-1 is engaged with the guide block 201j.
[0044] By cooperating with the guide block 201j and the guide groove 201i-1, it is ensured that the moving block 201c will not rotate on the fixed column 201i, so that the moving plate 201f will not rotate, and the moving block 201c located on the reciprocating roller 201b will not rotate, ensuring that when the reciprocating roller 201b rotates, the moving block 201c can move vertically along the direction of the reciprocating roller 201b.
[0045] Specifically, there are two moving blocks 201 c , and the number of the sliding blocks 202 a and the locking blocks 202 b is the same as and corresponds to the number of the moving blocks 201 c .
[0046] Specifically, a spiral groove 201g-1 is defined in the sleeve 201g, and a second clamping block 201k is fixed to the outside of the connecting column 201h, and the second clamping block 201k slides in the spiral groove 201g-1.
[0047] The end face of the spiral groove 201g-1 is not consistent with the end face of the sleeve 201g, thereby ensuring that when the second block 201k slides in the spiral groove 201g-1, it will not separate from the sleeve 201g, thereby ensuring that the sleeve 201g and the connecting column 201h will not separate. Since the movable plate 201f will not rotate, the sleeve 201g will not rotate. When the movable plate 201f drives the sleeve 201g to move downward, if the bottom of the stirring frame 104 contacts the bottom of the barrel 101, the connecting column 201h will no longer be able to move downward. At this time, the sleeve 201g will continue to descend, causing the second block 201k to slide in the spiral groove 201g-1, thereby driving the connecting column 201h to rotate, and the connecting column 201h will drive the stirring frame 104 to rotate.
[0048] Example 3
[0049] Reference Figures 1-6 , which is the third embodiment of the present utility model, and is based on the first two embodiments.
[0050] Specifically, a spring 202c is fixed to one end of the locking block 202b, and the other end of the spring 202c is fixed to the inner wall of the movable groove 201c-3.
[0051] The spring 202c applies a continuous pushing force to the locking block 202b to ensure that the locking block 202b can be engaged with the locking groove 202a-1.
[0052] Specifically, a pull plate 202d is fixed to one end of the locking block 202b.
[0053] The pull plate 202d is used to unlock the engagement between the locking block 202b and the locking groove 202a-1. When the movable plate 201f needs to be disassembled, the pull plate 202d is pulled to compress the spring 202c, and the locking block 202b will move along the movable groove 201c-3 in the direction away from the slider 202a, thereby separating the locking block 202b from the locking groove 202a-1, so that the slider 202a can move arbitrarily in the slide groove 201c-2.
[0054] Specifically, one end of the locking block 202b is inclined, and the locking groove 202a-1 has a corresponding shape.
[0055] By tilting the slider 202a, when it enters the slide groove 201c-2 from the outside, the end face of the slider 202a is pressed against the inclined surface of the locking block 202b, and the locking block 202b will move along the movable groove 201c-3 in the direction away from the slider 202a. When the slider 202a drives the locking groove 202a-1 to move to a coaxial position with the locking block 202b, the locking block 202b engages with the locking groove 202a-1, thereby ensuring that the slider 202a will not move at will.
[0056] Specifically, the main assembly 100 further includes a cooling cylinder 105 and a support block 106 . The cooling cylinder 105 is sleeved outside the barrel 101 , and the support block 106 is fixed to the inner wall of the cooling cylinder 105 .
[0057] Since the meat will generate excessive heat due to friction during the beating process, affecting the taste, ice cubes or circulating cooling medium are placed in the cooling cylinder 105 to reduce the temperature of the barrel 101. There are multiple support blocks 106 to ensure that the barrel 101 can be stably placed in the cooling cylinder 105.
[0058] During use, in the initial state, the moving block 201c on the reciprocating roller 201b is at the highest position. The moving plate 201f is lifted and the slider 202a is aligned with the slide groove 201c-2. At the same time, the moving block 201c on the fixed column 201i is moved so that it is level with the moving plate 201f, and the slider 202a is pushed into the slide groove 201c-2 until the inner wall of the slide groove 201c-2 is completely in contact with the slider 202a. At this time, the locking block 202b is engaged with the locking groove 202a-1, completing the installation of the moving plate 201f and the stirring frame 104.
[0059] When stirring is required, the motor 201a is started to drive the reciprocating roller 201b to rotate, so that the moving block 201c moves vertically along the reciprocating roller 201b, thereby driving the stirring frame 104 to move up and down. At the same time, when the bottom of the stirring frame 104 contacts the bottom of the barrel 101, the sleeve 201g will continue to descend, so that the second block 201k slides in the spiral groove 201g-1, and then drives the connecting column 201h to rotate. The connecting column 201h will drive the stirring frame 104 to rotate. The stirring frame 104 moves up and down in the barrel 101 and rotates when it contacts the bottom of the barrel 101, breaking the "air cushion" formed by the accumulation of air, allowing the air to be discharged from the barrel 101, maintaining the normal and stable state of the air pressure in the barrel 101, and ensuring that the beating knife can smoothly perform the rotating beating operation.
[0060] When disassembling the mixing frame 104, the moving block 201c on the reciprocating roller 201b is located at the highest position, and the pull plate 202d is pulled to compress the spring 202c. The locking block 202b will move along the moving groove 201c-3 in the direction away from the slider 202a, thereby separating the locking block 202b from the locking groove 202a-1, and moving the slider 202a out of the slide groove 201c-2 to disassemble the mixing frame 104.
[0061] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.
Claims
1. A meatball dish product processing and forming equipment, characterized by: include, A main body component (100) comprises a barrel (101), a beating knife (102), a workbench (103) and a stirring frame (104), wherein the beating knife (102) is located at the bottom of the barrel (101), the workbench (103) is arranged below the barrel (101), and the stirring frame (104) is located inside the barrel (101); The auxiliary component (200) is arranged on one side of the barrel (101), and includes an auxiliary part (201). The auxiliary part (201) includes a motor (201a), a reciprocating roller (201b), a moving block (201c), a first clamping block (201d), a moving plate (201f), a sleeve (201g) and a connecting column (201h). The motor (201a) is fixed on the workbench (103), and the reciprocating roller (201b) is arranged on the motor (201 a) On one side, the movable block (201c) is provided with a through slot (201c-1), the reciprocating roller (201b) is inserted into the through slot (201c-1), the first clamping block (201d) is fixed on the movable block (201c), the movable plate (201f) is arranged above the barrel (101), the sleeve (201g) is fixed to the bottom of the movable plate (201f), and the connecting column (201h) is fixed on the stirring frame (104).
2. The meatball dish product processing and forming equipment according to claim 1, characterized in that: The auxiliary component (200) further includes a mounting member (202), the mounting member (202) being arranged on one side of the moving block (201c) and including a slider (202a) and a locking block (202b), the slider (202a) being fixed to one side of the moving plate (201f), the moving block (201c) being provided with a sliding groove (201c-2), the slider (202a) being capable of sliding in the sliding groove (201c-2), the moving block (201c) being provided with a moving groove (201c-3), the locking block (202b) being capable of sliding in the moving groove (201c-3), the slider (202a) being provided with a locking groove (202a-1), and the locking block (202b) being capable of engaging with the locking groove (202a-1).
3. The meatball dish product processing and forming equipment according to claim 2, characterized in that: A fixing column (201i) is fixed on the workbench (103), and the fixing column (201i) is inserted into the through slot (201c-1).
4. The meatball dish processing and forming equipment according to claim 3, characterized in that: The fixed column (201i) is provided with a guide groove (201i-1), a guide block (201j) is fixed in the movable block (201c), and the guide groove (201i-1) is engaged with the guide block (201j).
5. The meatball dish processing and forming equipment according to claim 3 or 4, characterized in that: There are two moving blocks (201c), and the numbers of the sliding blocks (202a) and the locking blocks (202b) are the same as and correspond to the moving blocks (201c).
6. The meatball dish processing and forming equipment according to claim 5, characterized in that: A spiral groove (201g-1) is provided in the sleeve (201g), a second clamping block (201k) is fixed outside the connecting column (201h), and the second clamping block (201k) slides in the spiral groove (201g-1).
7. The meatball dish processing and forming equipment according to claim 6, characterized in that: A spring (202c) is fixed to one end of the locking block (202b), and the other end of the spring (202c) is fixed to the inner wall of the movable groove (201c-3).
8. The meatball dish processing and forming equipment according to claim 6 or 7, characterized in that: A pull plate (202d) is fixed to one end of the locking block (202b).
9. The meatball dish processing and forming equipment according to claim 8, characterized in that: One end of the locking block (202b) is inclined, and the locking groove (202a-1) has a corresponding shape.
10. The meatball dish processing and forming equipment according to claim 9, characterized in that: The main body component (100) further includes a cooling cylinder (105) and a support block (106), wherein the cooling cylinder (105) is sleeved outside the barrel (101), and the support block (106) is fixed to the inner wall of the cooling cylinder (105).