Grouting machine for food processing
By using independent control of multiple pumps and a stainless steel conveyor belt design, the problems of low efficiency and inconvenient cleaning of traditional grouting machines have been solved, achieving high-efficiency production and simplified cleaning, and adapting to various food processing needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI SHENGYI MASCH EQUIP CO LTD
- Filing Date
- 2025-06-23
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional grouting machines have low production efficiency and are inconvenient to clean. The pump body limits production efficiency, and grout residue requires the machine to be stopped for cleaning.
It adopts independent control of multiple pumps, combined with stainless steel filling conveyor belt and electrical control box, to realize the coordinated work of the power mechanism of slurry mixing device, pump body and conveyor belt. It is equipped with height adjustment mechanism and nozzle to adapt to different mold shapes, and multiple pumps are individually controlled and driven.
It improves production efficiency and precision, simplifies the cleaning process, avoids downtime for cleaning, and adapts to different food processing needs.
Smart Images

Figure CN224125249U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a grouting machine for food processing, belonging to the field of food processing technology. Background Technology
[0002] Grouting machines are one of the commonly used pieces of equipment in the food processing industry. In traditional grouting machines, a single pump drives multiple grout outlet pipes during the grouting process, and the production efficiency depends entirely on the pump, resulting in low production efficiency. Moreover, the grout residue left on the grouting machine is not easy to clean, and the machine often needs to be stopped for deep cleaning, which further reduces production efficiency. Utility Model Content
[0003] This invention overcomes the shortcomings of existing technologies and provides a grouting machine for food processing. It features independent control of multiple pumps, greatly improving production efficiency and precision. Cleaning is simple and requires no downtime.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a slurry mixing device, multiple pump bodies, a frame, a filling rack, a filling pipe, and a stainless steel filling conveyor belt. The stainless steel filling conveyor belt is horizontally arranged on the frame. The slurry mixing device is fixedly arranged above the stainless steel filling conveyor belt. The slurry mixing device has multiple discharge ports. The inlets of the multiple pump bodies are connected to the discharge ports of the slurry mixing device one by one. The discharge ports of the pump bodies are connected through the filling pipe. The filling rack spans across the stainless steel filling conveyor belt. The discharge end of the filling pipe is fixed on the filling rack and arranged in a row perpendicular to the stainless steel filling conveyor belt. An electrical control box is arranged on the frame below the stainless steel filling conveyor belt. The electrical control box controls the operation of the power mechanisms of the slurry mixing device, pump bodies, and stainless steel filling conveyor belt.
[0005] Furthermore, the filling rack is equipped with a height adjustment mechanism, which is connected to the end of the filling tube and is used to adjust the filling distance between the filling tube outlet and the stainless steel filling conveyor belt.
[0006] Furthermore, the filling rack is a U-shaped frame inverted above the stainless steel filling conveyor belt. Vertical guide grooves are fixedly provided at both ends of the filling rack, and the two vertical guide grooves are arranged opposite each other. Adjusting plates are matched and movably engaged in the two vertical guide grooves. A screw adjustment mechanism is provided at the upper middle part of the adjusting plate. The lower end of the screw adjustment mechanism is fixedly connected to the adjusting plate, and the upper end of the screw adjustment mechanism is fixedly provided at the top of the filling rack. Guide rods are provided on both sides of the screw adjustment mechanism. The lower ends of the guide rods are fixedly provided on the adjusting plate, and the upper ends of the guide rods are movably inserted through the filling rack.
[0007] Furthermore, the lead screw adjustment mechanism may be manually adjustable or motor-driven.
[0008] Furthermore, the slurry mixing device includes a U-shaped barrel, which is a trough-shaped structure with an open top. A mixing cage is horizontally arranged inside the U-shaped barrel along its length. Multiple discharge ports are provided at the bottom of the U-shaped barrel. A mixing motor is provided on the outer side of one end of the U-shaped barrel, and the mixing motor drives the mixing cage to rotate for mixing.
[0009] Furthermore, a nozzle is installed on the outlet of the filling tube, and the nozzle is fixedly mounted on the adjusting plate.
[0010] Furthermore, the upper end of the nozzle is provided with an air hole for discharging gas from the slurry foam.
[0011] Compared with the prior art, the advantages of this utility model are as follows: In this utility model, the stirring cage is driven by a stirring motor to stir the slurry in the U-shaped bucket to prevent solidification. Multiple pumps pull out the U-shaped bucket and fill it into the mold or container placed on the stainless steel filling conveyor belt below through the filling pipe and nozzle. The stainless steel filling conveyor belt can be directly rinsed with water after being coated with slurry, which is convenient for cleaning. The nozzle can be adjusted in height for different molds or containers to meet the processing of different types of food. Multiple pumps are individually controlled and driven, ensuring accurate feeding and high production efficiency. Attached Figure Description
[0012] The present invention will be further described below with reference to the accompanying drawings.
[0013] Figure 1 This is a schematic diagram of the structure of this utility model.
[0014] Figure 2 This is a schematic diagram of the structure of the leaking pump body of this utility model.
[0015] Figure 3 This is a three-dimensional structural diagram of the present invention.
[0016] In the diagram: 1 is the slurry mixing device, 11 is the U-shaped bucket, 12 is the mixing cage, 13 is the mixing motor, 2 is the pump body, 3 is the frame, 4 is the filling rack, 5 is the filling pipe, 6 is the stainless steel filling conveyor belt, 7 is the electrical control box, 8 is the height adjustment mechanism, 81 is the vertical guide groove, 82 is the adjustment plate, 83 is the screw adjustment mechanism, 84 is the guide rod, 9 is the nozzle, and 10 is the air hole. Detailed Implementation
[0017] The present invention will be further described below with reference to specific embodiments.
[0018] like Figure 1 , Figure 2 and Figure 3 As shown, this utility model discloses a slurry injection machine for food processing, comprising a slurry stirring device 1, multiple pump bodies 2, a frame 3, a filling rack 4, a filling pipe 5, and a stainless steel filling conveyor belt 6. The stainless steel filling conveyor belt 6 is horizontally arranged on the frame 3. The slurry stirring device 1 is fixedly arranged above the stainless steel filling conveyor belt 6. The slurry stirring device 1 includes a U-shaped barrel 11, which is a trough-shaped structure with an open top. A stirring cage 12 is horizontally arranged inside the U-shaped barrel 11 along its length. Multiple discharge ports are provided at the bottom of the U-shaped barrel 11. A stirring motor 1 is provided on the outer side of one end of the U-shaped barrel 11. 3. The stirring motor 13 drives the stirring cage 12 to rotate for stirring. The slurry stirring device 1 is provided with multiple discharge ports. The inlets of multiple pump bodies 2 are connected to the discharge ports of the slurry stirring device 1. The discharge ports of the pump bodies 2 are connected through the filling pipe 5. The filling frame 4 spans across the stainless steel filling conveyor belt 6. The discharge end of the filling pipe 5 is fixed on the filling frame 4 and arranged in a row perpendicular to the stainless steel filling conveyor belt 6. An electrical control box 7 is provided on the frame 3 below the stainless steel filling conveyor belt 6. The electrical control box 7 controls the operation of the power mechanism of the slurry stirring device 1, the pump bodies 2 and the stainless steel filling conveyor belt 6.
[0019] The filling rack 4 is a U-shaped frame inverted above the stainless steel filling conveyor belt 6. Vertical guide grooves 81 are fixedly installed at both ends of the filling rack 4, with the two vertical guide grooves 81 facing each other. Adjusting plates 82 are movably engaged within the two vertical guide grooves 81. A screw adjustment mechanism 83 is installed at the upper middle part of the adjusting plate 82, with the lower end of the screw adjustment mechanism 83 fixedly connected to the adjusting plate 82. The upper end of the screw adjustment mechanism 83 is fixedly installed at the top of the filling rack 4. Guide rods 84 are installed on both sides of the screw adjustment mechanism 83, with the lower end of the guide rods 84 fixedly installed on the adjusting plate 82 and the upper end of the guide rods 84 movably penetrating through the filling rack 4. The screw adjustment mechanism 83 can be manually adjusted or driven by a motor. A nozzle 9 is installed at the outlet of the filling tube 5, and the nozzle 9 is fixedly installed on the adjusting plate 82. An air hole 10 is provided at the upper end of the nozzle 9 to discharge gas from the slurry foam.
[0020] In this invention, the stirring cage 12 is driven by the stirring motor 13 to stir the slurry in the U-shaped bucket 11 to prevent solidification. Multiple pumps 2 pull out the U-shaped bucket 11 and fill it into the mold or container placed on the stainless steel filling conveyor belt 6 below it through the filling pipe 5 and the nozzle 9. The stainless steel filling conveyor belt 6 can be directly rinsed with water after being coated with slurry, which is convenient for cleaning. The nozzle 9 can be adjusted in height for different molds or containers to meet the processing of different types of food. Multiple pumps 2 are individually controlled and driven, which ensures accurate feeding and high production efficiency.
[0021] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A food processing stuffer machine characterized by, The system includes a slurry mixing device (1), multiple pump bodies (2), a frame (3), a filling rack (4), a filling pipe (5), and a stainless steel filling conveyor belt (6). The stainless steel filling conveyor belt (6) is horizontally arranged on the frame (3). The slurry mixing device (1) is fixedly arranged above the stainless steel filling conveyor belt (6). The slurry mixing device (1) has multiple discharge ports. The inlets of the multiple pump bodies (2) are connected to the discharge ports of the slurry mixing device (1) one by one. The discharge port of the body (2) is connected through the filling pipe (5). The filling rack (4) spans across the stainless steel filling conveyor belt (6). The discharge port end of the filling pipe (5) is fixed on the filling rack (4) and arranged in a row perpendicular to the stainless steel filling conveyor belt (6). An electrical control box (7) is installed on the frame (3) below the stainless steel filling conveyor belt (6). The electrical control box (7) controls the operation of the power mechanism of the slurry stirring device (1), the pump body (2) and the stainless steel filling conveyor belt (6).
2. A food processing stuffer according to claim 1, wherein The filling rack (4) is provided with a height adjustment mechanism (8), which is connected to the end of the filling tube (5) and is used to adjust the filling distance between the outlet of the filling tube (5) and the stainless steel filling conveyor belt (6).
3. A food processing stuffer according to claim 2, wherein The filling rack (4) is a U-shaped frame that is upside down on the stainless steel filling conveyor belt (6). Vertical guide grooves (81) are fixedly provided at both ends of the filling rack (4). The two vertical guide grooves (81) are arranged opposite to each other. Adjusting plates (82) are matched and movably connected in the two vertical guide grooves (81). A screw adjustment mechanism (83) is provided at the upper middle part of the adjusting plate (82). The lower end of the screw adjustment mechanism (83) is fixedly connected to the adjusting plate (82). The upper end of the screw adjustment mechanism (83) is fixedly provided at the top of the filling rack (4). Guide rods (84) are provided on both sides of the screw adjustment mechanism (83). The lower end of the guide rod (84) is fixedly provided on the adjusting plate (82). The upper end of the guide rod (84) is movably connected through the filling rack (4).
4. A food processing stuffer according to claim 3, wherein The lead screw adjustment mechanism (83) can be manually adjusted or driven by a motor.
5. A food processing grouting machine according to claim 1, characterized in that, The slurry mixing device (1) includes a U-shaped bucket (11), which is a trough-shaped structure with an open top. A mixing cage (12) is horizontally arranged inside the U-shaped bucket (11) along the length direction of the U-shaped bucket (11). Multiple discharge ports are provided at the bottom of the U-shaped bucket (11). A mixing motor (13) is provided on the outer side of one end of the U-shaped bucket (11). The mixing motor (13) drives the mixing cage (12) to rotate for mixing.
6. A meat emulsion injection machine as defined in claim 3 wherein, A nozzle (9) is installed on the outlet of the filling tube (5), and the nozzle (9) is fixedly mounted on the adjusting plate (82).
7. A meat emulsion injection machine according to claim 6 wherein, The nozzle (9) is provided with an air hole (10) at its upper end for discharging gas from the slurry foam.