Slice clamping device for fire-clamped dairy cake
By designing a slice clamping device for hot milk cakes, the automatic slice of ham meat and the automatic clipping of milk cakes is realized, which solves the problem of low efficiency of traditional manual slice and clamping, improves production efficiency and product quality consistency, and reduces manual operation time and food contamination risks.
Patent Information
- Application Number
- CN202422104723.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The production process of traditional hot-clipping milk cakes requires manual slice and clamping, which increases the labor intensity of staff and reduces processing efficiency, making them not suitable for large-scale production.
A slice clamping device for hot milk cake clamping is designed, including a frame, a column, a support plate, a conveying mechanism, a drive mechanism, a slice mechanism, a milk cake cutting mechanism, a sensor and a controller. The driving gear and the driven gear drive the slice mechanism to reciprocate up and down, and the sensor controls the milk cake cutting mechanism to realize automatic stacking and clamping of meat slices and milk cakes.
It significantly improves production efficiency, reduces manual operation time and labor costs, achieves the unity of product size and quality, reduces the risk of food pollution, and improves processing efficiency and hygiene safety.
Smart Images

Figure CN223053781U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fire-clamped milk cake processing, and particularly relates to a slicing and clamping device for fire-clamped milk cake. Background Art
[0002] Fire-clamped milk cake is a famous dish in Yunnan. The characteristics of fire-clamped milk cake are fragrant and fresh taste, soft texture, and refreshing without greasiness. Its main raw materials include milk cake and ham. Among them, milk cake is a local specialty, containing fat, protein, vitamins, etc. During the production process, the ham needs to be sliced, and the ham slices and milk cakes are arranged alternately one by one, placed in a buckled bowl, and then steamed in a steamer.
[0003] The traditional production process of fire-clamped milk cake includes steps such as slicing, clamping, and steaming. During this process, it is necessary to manually slice the milk cake and ham into thin slices, arrange them in a buckled bowl in a certain order, and then steam them, which increases the labor intensity of workers, reduces the processing efficiency, and is not suitable for the processing of a large number of ham milk cakes. Summary of the Invention
[0004] In order to overcome the problems in the traditional production of fire-clamped milk cake that it is necessary to manually slice the milk cake and ham into thin slices, arrange them in a buckled bowl in a certain order, and then steam them, which increases the labor intensity of workers, reduces the processing efficiency, and is not suitable for the processing of a large number of ham milk cakes, the utility model provides a slicing and clamping device for fire-clamped milk cake; place the meat to be cut on the conveying mechanism, convey it through the conveying mechanism, the motor drives the rotation of the driving shaft and the driving gear, and then drives the rotation of the driven gear and the driven shaft to realize the up-and-down reciprocating slicing of the slicing mechanism. When the meat slices are conveyed to directly below the milk cake feeding mechanism by the conveying mechanism, the milk cake falls onto the meat slices to achieve stacking, and the clamping of one meat slice and one milk cake is completed, which can significantly improve the production efficiency, reduce the time and labor cost of manual operation, and realize the unity of product size and quality.
[0005] To achieve the above-mentioned purpose, the utility model is realized through the following technical scheme: a slicing clamping device for fire clamped milk cake mainly comprises a frame, a column, a support plate, a conveying mechanism, a driving mechanism, a slicing mechanism, a milk cake unloading mechanism, a sensor, and a controller. The column is installed on the top of the frame, the support plate is installed on the column, the conveying mechanism is installed on the support plate, the driving mechanism is installed on the frame, the driving mechanism comprises a vertical plate, a driving shaft, a driven shaft, a motor, a driving gear, and a driven gear. Two groups of vertical plates are installed on the frame, the driving shaft and the driven shaft are rotatably installed between the vertical plates, the motor is installed on the frame, the driving shaft is transmission-connected with the output end of the motor, the driving gear and the driven gear are respectively installed on the driving shaft and the driven shaft, the driving gear and the driven gear are meshed and connected, the slicing mechanism is installed on the frame and the support plate, the slicing mechanism is transmission-connected with the driven shaft, the milk cake unloading mechanism is installed on the support plate, located directly above the conveying mechanism, the sensor is installed on the milk cake unloading mechanism, and the controller is installed on the top of the support plate.
[0006] The conveying mechanism includes a connecting plate, a driving roller, a driven roller, a belt, and a driving motor. The connecting plate is installed on both sides of the supporting plate. The driving roller and the driven roller are rotatably installed between the connecting plates. The belt is wound around the driving roller and the driven roller. The driving motor is installed at the end of the connecting plate. The driving roller is connected to the driving motor by transmission.
[0007] The conveying mechanism includes a connecting plate, an active roller, a driven roller, a belt, and a driving motor. The connecting plate is installed on both sides of the supporting plate. The active roller and the driven roller are rotatably installed between the connecting plates. The belt is wound around the active roller and the driven roller. The driving motor is installed at the end of the connecting plate, and the active roller is connected to the driving motor by transmission.
[0008] The slicing mechanism includes a crank rocker mechanism, a guide rod, a sleeve, a connecting rod, and a cutter. The crank rocker mechanism is connected to the driven shaft in a transmission manner. The guide rod passes through the frame, the support plate is installed on the top of the crank rocker mechanism, the sleeve is installed on the top of two groups of guide rods, a rectangular groove is opened on the sleeve, the connecting rod passes through the rectangular groove and is installed between the guide rods, and the cutter is installed at the bottom of the connecting rod.
[0009] The described milk cake unloading mechanism comprises a supporting column, a material storage trough, a limiting plate, a sliding plate, and an electric push rod. The supporting column is installed on the top of the supporting plate, the material storage trough is installed on the top of the supporting column, the limiting plate is installed on the material storage trough, a sliding groove is opened at the bottom of the material storage trough, the sliding plate can be slidably installed inside the sliding groove, the electric push rod is installed at the end of the material storage trough, and the sliding plate is connected to the electric push rod.
[0010] The motor, sensor, drive motor, electric push rod and controller are electrically connected.
[0011] Beneficial effects of the utility model:
[0012] Place the meat to be cut on the conveying mechanism and convey it through the conveying mechanism. The motor drives the rotation of the driving shaft and the driving gear, and then drives the rotation of the driven gear and the driven shaft, realizing the reciprocating slicing of the slicing mechanism up and down. The sliced meat has a uniform thickness. When the sliced meat is conveyed to directly below the milk cake feeding mechanism by the conveying mechanism, the milk cake falls onto the sliced meat to achieve stacking, completing the clamping of one slice of meat and one slice of milk cake. By cutting and clamping the milk cake through a semi-automatic process, the production efficiency can be significantly improved, the time and labor costs of manual operation can be reduced, and the unity of product size and quality can be achieved. Brief Description of the Drawings
[0013] Figure 1 is an isometric schematic diagram of the present utility model.
[0014] Figure 2 is Figure 1 a partial enlarged view of part A in
[0015] Figure 3 is a three-dimensional schematic of the present utility model Figure 1 .
[0016] Figure 4 is a three-dimensional schematic of the present utility model Figure 2 .
[0017] Figure 5 is a three-dimensional schematic of the present utility model Figure 3 . Detailed Embodiment
[0018] In order to make the purpose, technical solution and beneficial effects of the present utility model clearer, the preferred embodiments of the present utility model will be described in detail below in conjunction with the drawings for the convenience of those skilled in the art to understand.
[0019] The utility model discloses a slicing and clamping device for fire-clamped milk cakes. The slicing and clamping device for fire-clamped milk cakes mainly comprises a frame 1, a column 2, a support plate 3, a conveying mechanism 4, a driving mechanism 5, a slicing mechanism 6, a milk cake unloading mechanism 7, a sensor 8, and a controller 9. The column 2 is mounted on the top of the frame 1, the support plate 3 is mounted on the column 2, the conveying mechanism 4 is mounted on the support plate 3, the driving mechanism 5 is mounted on the frame 1, the driving mechanism 5 comprises a vertical plate 51, a driving shaft 52, a driven shaft 53, a motor 54, a driving gear 55, and a driven gear 56. Two sets of vertical plates 51 are mounted on the frame On the frame 1, the driving shaft 52 and the driven shaft 53 are rotatably installed between the vertical plates 51, the motor 54 is installed on the frame 1, the driving shaft 52 is transmission-connected with the output end of the motor 54, the driving gear 55 and the driven gear 56 are respectively installed on the driving shaft 52 and the driven shaft 53, the driving gear 55 and the driven gear 56 are meshingly connected, the slicing mechanism 6 is installed on the frame 1 and the support plate 3, the slicing mechanism 6 is transmission-connected with the driven shaft 53, the milk cake unloading mechanism 7 is installed on the support plate 3, and is located directly above the conveying mechanism 4, the sensor 8 is installed on the milk cake unloading mechanism 7, and the controller 9 is installed on the top of the support plate 3.
[0020] The staff controls the motor 54 and the drive motor 45 by adjusting the controller 9, and places the ham meat to be cut on the belt 44. The drive motor 45 drives the active roller 42 to rotate, and then drives the transmission roller 43 to rotate, so that the belt 44 conveys the meat. When the ham meat is conveyed to the bottom of the cutter 65, the motor 54 drives the active shaft 52 and the active gear 55 to rotate, and then drives the driven gear 56 and the driven shaft 53 to rotate. The rotation of the driven shaft 53 drives the crank rocker mechanism 61 to rotate, and then drives the guide rod 62. The ham slices are cut by the cutter 65 by moving up and down to slice the ham meat reciprocatingly. The sliced meat slices are of uniform thickness. When the meat slices are transported to the bottom of the storage tank 72 by the belt 44, the sensor 8 transmits the sensed signal to the controller 9. The controller 9 controls the electric push rod 75 to start. The electric push rod 75 drives the sliding plate 74 to move in the slide groove 721. The milk cake in the storage tank 72 falls above the meat slices, completing the clamping of a milk cake and a meat slice. The clamped milk cakes are then transported to the next process for processing by the belt 44.
[0021] like Figure 1 , Figure 4 As shown, the conveying mechanism 4 includes a connecting plate 41, an active roller 42, a driven roller 43, a belt 44, and a driving motor 45. The connecting plate 41 is installed on both sides of the support plate 3, the active roller 42 and the driven roller 43 are rotatably installed between the connecting plates 41, the belt 44 is wound around the active roller 42 and the driven roller 43, the driving motor 45 is installed at the end of the connecting plate 41, and the active roller 42 is connected to the driving motor 45 in transmission; the driving motor 45 drives the active roller 42 to rotate, and then drives the driving roller 43 to rotate, so that the belt 44 conveys the meat pieces.
[0022] like Figure 1 , Figure 3 , Figure 5 As shown, the slicing mechanism 6 includes a crank rocker mechanism 61, a guide rod 62, a sleeve 63, a connecting rod 64, and a cutter 65. The crank rocker mechanism 61 is connected to the driven shaft 53 in transmission connection. The guide rod 62 passes through the frame 1, and the support plate 3 is installed on the top of the crank rocker mechanism 61. The sleeve 63 is installed on the top of the two groups of guide rods 62. A rectangular groove 631 is opened on the sleeve 63. The connecting rod 64 passes through the rectangular groove 631 and is installed between the guide rods 62. The cutter 65 is installed at the bottom of the connecting rod 64; the motor 54 drives the driving shaft 52 and the driving gear 55 to rotate, thereby driving the driven gear 56 and the driven shaft 53 to rotate. The rotation of the driven shaft 53 drives the crank rocker mechanism 61 to rotate, thereby driving the guide rod 62 to move up and down, so as to realize the up and down reciprocating slicing of the cutter 65, and the thickness of the cut meat slices is uniform.
[0023] like Figure 2 , Figure 3 As shown, the milk cake unloading mechanism 7 includes a support column 71, a material storage groove 72, a limit plate 73, a sliding plate 74, and an electric push rod 75. The support column 71 is installed at the top of the support plate 3, the material storage groove 72 is installed at the top of the support column 71, the limit plate 73 is installed on the material storage groove 72, and a slide groove 721 is opened at the bottom of the material storage groove 72. The sliding plate 74 can be slidably installed in the slide groove 721. The electric push rod 75 is installed at the end of the material storage groove 72. The sliding plate 74 and the electric push rod 75 is connected; when the meat slices are conveyed to the bottom of the storage trough 72 through the belt 44, the sensor 8 transmits the sensed signal to the controller 9, and the controller 9 controls the electric push rod 75 to start, and the electric push rod 75 drives the sliding plate 74 to move in the sliding groove 721, and the milk cakes in the storage trough 72 fall above the meat slices, completing the clamping of a milk cake and a meat slice. After a milk cake falls, the electric push rod 75 is immediately reset, thereby driving the sliding plate 74 to reset and limit the milk cakes in the storage trough 72.
[0024] The motor 54 , the sensor 8 , the drive motor 45 , the electric push rod 75 and the controller 9 are electrically connected.
[0025] Working process:
[0026] Before processing the fire-caught milk cake, the staff first places the milk cake inside the storage tank 72, and then controls the motor 54 and the drive motor 45 to start by adjusting the controller 9, and places the ham meat to be cut on the belt 44. The drive motor 45 drives the active roller 42 to rotate, and then drives the transmission roller 43 to rotate, so that the belt 44 conveys the meat block. When the ham meat is conveyed to the bottom of the cutter 65, the motor 54 drives the active shaft 52 and the active gear 55 to rotate, and then drives the driven gear 56 and the driven shaft 53 to rotate. The rotation of the driven shaft 53 drives the crank rocker mechanism 61 to rotate, and then drives the guide rod 62 to move up and down, so that the cutter 65 slices the ham meat up and down reciprocatingly, and the cut meat slices are uniform in thickness and the meat slices pass through the skin. When the belt 44 is transported to the bottom of the storage trough 72, the sensor 8 transmits the sensed signal to the controller 9, and the controller 9 controls the electric push rod 75 to start, and the electric push rod 75 drives the sliding plate 74 to move in the slide trough 721, and the curd in the storage trough 72 falls above the meat slice, completing the clamping of a piece of curd and a piece of meat slice. After clamping, the fire-clamped curd is then transported to the next process for processing by the belt 44. Cutting and clamping the curd through a semi-automated process can significantly improve production efficiency, reduce manual operation time and labor costs, and achieve uniformity of product size and quality. Automated equipment can reduce the chance of manual contact with food, help reduce the risk of food contamination, and improve the hygiene and safety level of food production.
[0027] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of the utility model rather than to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the utility model.
Claims
1. A slicing clamping device for fire clip milk cakes, characterized in that: The described slicing clamping device for fire clamp milk cakes includes a frame (1), columns (2), a support plate (3), a conveying mechanism (4), a driving mechanism (5), a slicing mechanism (6), a milk cake feeding mechanism (7), a sensor (8), and a controller (9). The columns (2) are installed at the top of the frame (1), the support plate (3) is installed on the columns (2), the conveying mechanism (4) is installed on the support plate (3), the driving mechanism (5) is installed on the frame (1), and the driving mechanism (5) includes vertical plates (51), a driving shaft (52), a driven shaft (53), a motor (54), a driving gear (55), and a driven gear (56). Two groups of vertical plates (51) are installed on the frame (1), the driving shaft (52) and the driven shaft (53) are rotatably installed between the vertical plates (51), the motor (54) is installed on the frame (1), the driving shaft (52) is in transmission connection with the output end of the motor (54), the driving gear (55) and the driven gear (56) are respectively installed on the driving shaft (52) and the driven shaft (53), and the driving gear (55) and the driven gear (56) are meshed and connected. The slicing mechanism (6) is installed on the frame (1) and the support plate (3), and the slicing mechanism (6) is in transmission connection with the driven shaft (53). The milk cake feeding mechanism (7) is installed on the support plate (3) and is located directly above the conveying mechanism (4). The sensor (8) is installed on the milk cake feeding mechanism (7), and the controller (9) is installed at the top of the support plate (3).
2. The slicing clamping device for fire clamp milk cakes according to claim 1, characterized in that: The described conveying mechanism (4) includes a connecting plate (41), a driving roller (42), a driven roller (43), a belt (44), and a driving motor (45). The connecting plate (41) is installed on both sides of the support plate (3), the driving roller (42) and the driven roller (43) are rotatably installed between the connecting plates (41), the belt (44) is wound around the driving roller (42) and the driven roller (43), the driving motor (45) is installed at the end of the connecting plate (41), and the driving roller (42) is in transmission connection with the driving motor (45).
3. A slicing clamping device for fire clip milk cakes according to claim 1 or 2, characterized in that: The described slicing mechanism (6) includes a crank-rocker mechanism (61), a guide rod (62), a sleeve (63), a connecting rod (64), and a cutter (65). The crank-rocker mechanism (61) is in transmission connection with the driven shaft (53), the guide rod (62) passes through the frame (1) and the support plate (3) and is installed at the top of the crank-rocker mechanism (61), the sleeve (63) is installed at the top of two groups of guide rods (62), a rectangular groove (631) is opened on the sleeve (63), the connecting rod (64) passes through the rectangular groove (631) and is installed between the guide rods (62), and the cutter (65) is installed at the bottom of the connecting rod (64).
4. The slicing clamping device for fire clip milk cakes according to claim 2, wherein: The described milk cake feeding mechanism (7) includes a support column (71), a storage tank (72), a limit plate (73), a sliding plate (74), and an electric push rod (75). The support column (71) is installed at the top of the support plate (3), the storage tank (72) is installed at the top of the support column (71), the limit plate (73) is installed on the storage tank (72), a chute (721) is opened at the bottom end of the storage tank (72), the sliding plate (74) is slidably installed inside the chute (721), the electric push rod (75) is installed at the end of the storage tank (72), and the sliding plate (74) is connected to the electric push rod (75).
5. The slicing clamping device for fire clip milk cakes according to claim 4, characterized in that: The described motor (54), sensor (8), drive motor (45), and electric push rod (75) are electrically connected to the controller (9).