An automatic feeding system for processing food compound seasoning

Through the design of the rotating structure and storage control barrel, the independent transportation of multiple raw materials and the flexible adjustment of the output direction are realized, which solves the problems of the existing equipment's inability to independently measure and the cumbersome adjustment of the output direction, and improves the flexibility of the production line and the stability of product quality.

CN120423325BActive Publication Date: 2025-09-19WIZIMEI (JIANGSU) FOOD CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202510946994.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-10
Publication Date
2025-09-19
Estimated Expiration
2045-07-10

AI Technical Summary

Technical Problem

Existing automatic loading equipment cannot achieve independent metering and separate delivery of multiple raw materials, and the output direction adjustment is cumbersome, affecting production flexibility and product quality stability.

Method used

The rotating structure and material storage control barrel are matched with the positioning mounting frame, combined with the conveying air duct and height adjustment structure to achieve independent conveying of multiple raw materials and flexible adjustment of the output direction.

Benefits of technology

It improves the flexibility and accuracy of raw material transportation, reduces the complexity and space requirements of equipment adjustment, and enhances the flexibility of the production line.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120423325B_ABST
    Figure CN120423325B_ABST
Patent Text Reader

Abstract

The present invention specifically relates to an automatic feeding system for processing food compound seasonings, which belongs to the technical field of feeding devices, including a positioning mounting frame, a rotating structure rotatably installed on the upper end of the positioning mounting frame, a collecting funnel is provided on one side of the positioning mounting frame, a connecting hose is fixedly installed on the lower end of the collecting funnel, and the other end of the connecting hose is fixedly connected to a conveying air duct, fixed-point rails are designed on both sides of the conveying air duct, a lower support frame is installed on one end of the fixed-point rail, and a height adjustment structure is provided on the other end of the fixed-point rail. The rotating structure is combined with multiple storage control barrels to enable the device to transport a variety of materials in sequence, thereby improving the convenience of material preparation and the flexibility and diversity of material transportation. At the same time, the connecting hose and multiple adjustment structures are used to facilitate users to flexibly adjust the use position of the conveying air duct, increase the convenience and efficiency of the device structure adjustment, and at the same time reduce the environmental requirements for the use of the device and the external force strength required for adjustment.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of food processing equipment, in particular to an automatic feeding system for processing food compound seasonings, and more particularly to an automatic feeding device capable of independently conveying multiple raw materials and having adjustable output directions. Background Art

[0002] In the production of modern food compound seasonings, automatic feeding systems are crucial for achieving precise raw material proportioning and continuous production. Their technical performance directly impacts product quality stability and production efficiency. Existing technologies require that a variety of different ingredients, such as spices, meat extracts, and seasoning salts, be delivered to subsequent equipment such as mixers and reactors according to specific formula ratios. This places higher demands on the independence, accuracy, and flexibility of raw material delivery.

[0003] Automatic feeding equipment currently available on the market, such as an automatic feeding machine for seasoning production with application number CN202323380611.7, solves the problems of raw material transportation waste and equipment mobility to a certain extent by installing a conveying and stirring device, a flow limiting plate assembly, and a lifting assembly, and facilitates equipment cleaning and maintenance. However, this type of equipment still has significant drawbacks in actual application: First, its conveying system often adopts a mixed conveying mode, which cannot achieve independent metering and separate conveying of multiple raw materials. This makes it difficult to meet the process requirements of complex formulas where different raw materials need to be accurately fed in a specific order and at different rates, which can easily lead to deviations in the raw material ratio and affect the flavor stability of the product. Second, the output direction adjustment of existing equipment depends on the position movement of the entire device. When the production line layout requires changing the raw material conveying path or docking processing equipment in different locations, the entire equipment needs to be stopped and adjusted. This is not only cumbersome, time-consuming and labor-intensive, but also places high demands on the spatial layout of the production workshop and the installation location of the equipment, seriously restricting the flexible production capacity of the production line.

[0004] As the food industry develops towards intelligence and refinement, developing an automatic feeding system that can independently control the delivery of multiple raw materials and flexibly adjust the output direction to adapt to different production layouts has become an urgent need to solve existing technical bottlenecks and improve the level of automation in compound seasoning production. Summary of the Invention

[0005] The purpose of the present invention is to address the deficiencies of the prior art and provide an automatic feeding system for processing food compound seasonings, so as to facilitate the separate feeding of multiple types of materials and flexibly adjust the feeding position of the device.

[0006] The present invention achieves the above-mentioned purpose through the following technical scheme: an automatic feeding system for processing food compound seasonings, comprising a positioning mounting frame, a rotating structure rotatably mounted on the upper end of the positioning mounting frame, storage control barrels evenly mounted inside the rotating structure, a collecting funnel is provided on one side of the positioning mounting frame, a connecting hose is fixedly mounted on the lower end of the collecting funnel, the other end of the connecting hose is fixedly connected to a conveying air duct, fixed-point rails are designed on both sides of the conveying air duct, a lower support frame is mounted on one end of the fixed-point rail, and a height adjustment structure is provided on the other end of the fixed-point rail.

[0007] Preferably, in order to provide structural support, the positioning mounting frame includes a rotating mounting ring, fixed legs are evenly welded around the rotating mounting ring, an output fixing plate is fixedly installed between the fixed legs, and a rotating mounting groove is opened on the inner side of the rotating mounting ring.

[0008] Preferably, in order to control and adjust the position of the material storage control barrel, the rotating structure includes a rotating mounting disk, which is rotatably clamped in the interior of the rotating mounting groove, and a rotating gear ring is fixedly sleeved on the outer side of the rotating mounting disk, and a rotating motor is fixedly installed on one side of the rotating mounting ring, and a driving gear is fixedly installed on the output end of the rotating motor, and the driving gear and the rotating gear ring are meshed with each other, and positioning mounting holes are evenly opened inside the rotating mounting disk.

[0009] Preferably, in order to control the output of raw materials inside the device, the material storage control barrel is embedded in the inside of the positioning mounting hole, an input funnel is fixedly installed on the upper end of the material storage control barrel, an output funnel is fixedly welded on the lower end of the material storage control barrel, and an intelligent output control valve is installed at the output end of the output funnel.

[0010] Preferably, in order to improve the material conveying efficiency, air inlets are opened on one side of both ends of the conveying air duct, air inlet pipes are fixedly welded on the outside of the air inlets, a powerful fan is fixedly installed inside the air inlet pipes, and a dustproof net is provided on the outside of the air inlet.

[0011] Preferably, in order to support and adjust the conveying air duct, the fixed-point track includes a connecting slide rail, both ends of the connecting slide rail are fixedly installed with fixed-point electric screws, and both ends of the connecting slide rail are slidably installed with positioning sliders, and a movable threaded hole is opened inside the positioning slider, and the movable threaded hole and the fixed-point electric screw are threadedly connected to each other, and a rotating connecting shaft is designed on the outside of the positioning slider.

[0012] Preferably, in order to support and position the lower end of the conveying air duct, the lower support frame includes a triangular support rod, a support connection hole is opened at the center position of the triangular support rod, the support connection hole and the rotating connection shaft are rotatably connected to each other, and the lower end of the triangular support rod is fixedly welded with an anti-slip support frame.

[0013] Preferably, in order to control and adjust the angle of the conveying air duct, the height adjustment structure includes a positioning adapter block, a positioning adapter hole is opened inside the positioning adapter block, the positioning adapter hole and the rotating connecting shaft are rotatably connected to each other, the lower end of the positioning rotating block is rotatably clamped with an electric telescopic rod, the lower end of the electric telescopic rod is fixedly installed with a Forma wheel, the inner side of the electric telescopic rod is fixedly welded with a distance-adjusting slide rail, the interior of the distance-adjusting slide rail is fixedly installed with a distance-adjusting electric screw, the interior of the distance-adjusting slide rail is slidably clamped with a distance-adjusting slider, the distance-adjusting slider and the distance-adjusting electric screw are threadedly connected to each other, and a fixed connecting rod is rotatably connected between the distance-adjusting sliders.

[0014] The beneficial effects of the present invention are: the use of a rotating structure in conjunction with multiple storage control barrels allows the device to transport a variety of materials in sequence, improving the convenience of material preparation and the flexibility and diversity of material transportation. At the same time, the use of connecting hoses and multiple adjustment structures allows users to flexibly adjust the use position of the conveying air duct, increasing the convenience and efficiency of the device structure adjustment, while reducing the environmental requirements for the use of the device and the external force strength required for adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the main structure of the present invention;

[0016] Figure 2 It is a rear view structural schematic diagram of the present invention;

[0017] Figure 3 It is a side cross-sectional structural schematic diagram of the present invention;

[0018] Figure 4 This is a schematic structural diagram of the material storage control barrel portion of the present invention;

[0019] Figure 5 It is a structural schematic diagram of the positioning mounting frame part of the present invention;

[0020] Figure 6 It is a structural schematic diagram of the air delivery duct part of the present invention;

[0021] Figure 7 Schematic diagram of the structure of the lower support frame part of the present invention;

[0022] Figure 8 It is a structural schematic diagram of the height-adjusting structural part in the present invention.

[0023] Figure: 1, positioning mounting frame; 101, rotating mounting ring; 102, fixed support leg; 103, output fixing plate; 2, rotating structure; 201, rotating mounting plate; 202, rotating gear ring; 203, rotating motor; 3, storage control barrel; 301, input funnel; 302, output funnel; 303, intelligent output control valve; 4, collecting funnel; 5, connecting hose; 6, conveying air duct; 601, air inlet duct; 602, powerful fan; 6 03. Dustproof net; 7. Fixed-point track; 701. Connecting slide rail; 702. Fixed-point electric screw; 703. Positioning slider; 704. Rotating connecting shaft; 8. Lower support frame; 801. Triangular support rod; 802. Anti-slip support frame; 9. Height adjustment structure; 901. Positioning adapter block; 902. Electric telescopic rod; 903. Fomar wheel; 904. Distance-adjusting slide rail; 905. Distance-adjusting electric screw; 906. Distance-adjusting slider; 907. Fixed connecting rod. DETAILED DESCRIPTION

[0024] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0025] See also Figures 1-8As shown, an automatic feeding system for processing food compound seasonings includes a positioning mounting frame 1, which serves as the supporting basic structure of the entire automatic feeding system, provides a stable installation position for components such as a rotating structure 2, ensures that each component can operate normally and orderly, and ensures the stability of the entire system during the processing. The upper end of the positioning mounting frame 1 is rotatably mounted with a rotating structure 2, which can rotate each storage control barrel 3 to a suitable position through the rotating action, so as to facilitate the operation of food compound seasonings in different storage control barrels 3, realize the sequential loading or switching of different raw materials, and improve the flexibility and automation of the feeding process. Storage control barrels 3 are evenly installed inside the rotating structure 2, which can store different types or batches of raw materials according to actual processing needs. A collecting funnel 4 is provided on one side of the positioning mounting frame 1, which is used to collect the food compound seasonings released from the storage control barrel 3. A connecting hose 5 is fixedly installed at the lower end of the collecting funnel 4 to connect the collecting funnel The function of the bucket 4 and the conveying duct 6 is to enable the raw materials to smoothly enter the conveying duct 6 from the collecting funnel 4. At the same time, it has a certain flexibility and can adapt to the relative position changes between the various components of the system to ensure the continuity of the conveying process. The other end of the connecting hose 5 is fixedly connected to the conveying duct 6, and the raw materials are conveyed from the connecting hose 5 to the subsequent processing equipment by wind power and other power methods. Fixed-point rails 7 are designed on both sides of the conveying duct 6 to provide support and guidance for the conveying duct 6. A lower support frame 8 is installed at one end of the fixed-point rail 7 to support the conveying duct 6 and the fixed-point rail 7 to provide a stable support foundation for the entire conveying system, ensuring that the conveying duct 6 will not sink or deform due to factors such as gravity during operation, thereby ensuring the smooth progress of the conveying process. A height adjustment structure 9 is provided at the other end of the fixed-point rail 7. By adjusting the structure 9, it can adapt to subsequent processing equipment with different height requirements, so that the raw materials can be accurately conveyed to the designated position, thereby improving the adaptability and flexibility of the entire automatic feeding system.

[0026] The positioning mounting frame 1 includes a rotating mounting ring 101, which provides a direct and stable mounting position for the rotating structure 2. Fixed legs 102 are evenly welded around the rotating mounting ring 101 to provide stable support for the rotating mounting ring 101 from multiple directions, and the entire positioning mounting frame 1 is firmly fixed to the ground or other work platform to prevent the system from being displaced or tipped over during operation, thereby ensuring the safety and reliability of the feeding system. An output fixing plate 103 is fixedly installed between the fixed legs 102. Through the output fixing plate 103, these devices can be reasonably integrated into the positioning mounting frame 1 to realize the integrated design of the system, which is convenient for the installation, debugging and maintenance of the equipment. A rotating mounting groove is provided on the inner side of the rotating mounting ring 101. The rotating structure 2 can be accurately mounted on the rotating mounting ring 101 by cooperating with the rotating mounting groove and realize smooth rotation.

[0027] The rotating structure 2 includes a rotating mounting plate 201, which provides a mounting platform for components such as the storage control barrel 3, and can bear the weight of the storage control barrel 3 and the food compound seasoning inside, ensuring that these components remain stable during rotation and will not fall off or be damaged due to factors such as gravity. The rotating mounting plate 201 is rotatably connected to the inside of the rotating mounting groove, and a rotating gear ring 202 is fixedly sleeved on the outer side of the rotating mounting plate 201. The rotating gear ring 202 transmits the power output by the rotating motor 203 to the rotating mounting plate 201, so that the rotating mounting plate 201 can rotate at a set speed and direction, thereby driving the storage control barrel 3 to move to the appropriate position for loading in turn, and one side of the rotating mounting ring 101 is fixed A rotating motor 203 is installed to provide power for the rotation of the rotating structure 2. The rotating motor 203 drives the driving gear to rotate through the output end, and then drives the rotating gear ring 202 and the rotating mounting disk 201 to rotate. It is the core power component of the entire automatic loading system to realize automatic loading. The output end of the rotating motor 203 is fixedly installed with a driving gear, and the driving gear and the rotating gear ring 202 are engaged with each other. Positioning mounting holes are evenly opened inside the rotating mounting disk 201. The position and size of the positioning mounting holes are precisely designed to ensure that the installation position of the storage control barrel 3 on the rotating mounting disk 201 is accurate, and to ensure that different storage control barrels 3 can accurately reach the loading position in sequence during the rotation process.

[0028] The storage control barrel 3 is embedded in the inside of the positioning mounting hole, and an input funnel 301 is fixedly installed on the upper end of the storage control barrel 3. Its larger opening design makes it convenient for the operator to quickly and accurately pour the food compound seasoning into the storage control barrel 3, thereby improving the efficiency and convenience of adding materials and reducing the spillage of raw materials during the adding process. An output funnel 302 is fixedly welded on the lower end of the storage control barrel 3 to concentrate the raw materials in the storage control barrel 3 into a smaller outlet, which is convenient for controlling the outflow direction and flow of the raw materials, so that the raw materials can accurately fall into the collecting funnel 4, thereby improving the accuracy of feeding. An intelligent output control valve 303 is installed at the output end of the output funnel 302 to accurately control the output flow of the food compound seasoning. By adjusting the opening of the control valve, the output speed of the raw materials can be adjusted in real time according to production needs, thereby ensuring the accuracy and stability of the feeding amount and meeting the requirements of different production processes for raw material usage.

[0029] The conveying air duct 6 serves as the main channel for conveying food compound seasonings, providing a stable path for the raw materials from the collecting funnel 4 to the subsequent processing equipment, ensuring that the raw materials can be conveyed in the predetermined direction and route, and ensuring the continuity of the entire automatic feeding system. Air inlets are provided on both ends and one side of the conveying air duct 6, which are the key parts for the external air flow to enter the conveying air duct 6. Its position and size are carefully designed to ensure that sufficient air volume can be introduced efficiently to meet the power requirements for raw material transportation. The outer side of the air inlet is fixedly welded with an air inlet duct 601. The diameter and length of the air inlet duct 601 are designed according to the requirements of air volume and wind speed to reduce air flow. The energy loss of the flow during the transportation process is guaranteed to ensure that the airflow entering the air duct has sufficient power. A powerful fan 602 is fixedly installed inside the air inlet duct 601. It is the core equipment for generating airflow in the conveying air duct 6. The powerful fan 602 generates a strong airflow through high-speed rotating blades, which provides power for the transportation of food compound seasoning in the conveying air duct 6, ensuring that the raw materials can overcome gravity and friction and smoothly reach the subsequent processing equipment. A dustproof net 603 is set on the outside of the air inlet, which can effectively block dust and debris in the outside air from entering the conveying air duct 6, preventing these impurities from contaminating the food compound seasoning, and ensuring the purity and quality safety of the raw materials.

[0030] The fixed track 7 includes a connecting rail 701, which provides support and guidance for the movement of the positioning slider 703. Its length and shape are designed according to the actual application scenario and equipment layout to ensure that the positioning slider 703 can slide smoothly on the predetermined path to meet the needs of different position adjustments. Fixed electric screws 702 are fixedly installed at both ends of the connecting rail 701. By rotating with power, electrical energy is converted into mechanical energy to provide power for the movement of the positioning slider 703. The speed and direction of the fixed electric screw 702 can be precisely controlled by the control system, thereby achieving fixed The positioning slider 703 moves in different directions and speeds, and positioning sliders 703 are slidably installed inside both ends of the connecting slide rail 701. The design of the positioning slider 703 ensures its stability and flexibility during the sliding process, and can withstand a certain load, while reducing the friction between the connecting slide rail 701 and improving the movement efficiency. A moving threaded hole is opened inside the positioning slider 703, and the moving threaded hole and the fixed-point electric screw 702 are threadedly connected to each other. A rotating connecting shaft 704 is designed on the outside of the positioning slider 703 for connecting with other equipment or components.

[0031] The lower support frame 8 includes a triangular support rod 801, which can withstand greater pressure and load, effectively preventing deformation or shaking due to uneven force during equipment operation, ensuring stable connection with the fixed-point track 7 and other components above, and ensuring the stability of the entire automatic feeding system during operation. A support connection hole is provided at the center of the triangular support rod 801, and the support connection hole and the rotating connection shaft 704 are rotated and clamped with each other. This connection method enables the triangular support rod 801 to achieve relative rotation with the equipment connected to the upper part through the rotating connection shaft 704, meeting the adjustment requirements of the equipment at different angles and directions, and increasing the flexibility and adaptability of the system. The lower end of the triangular support rod 801 is fixedly welded with an anti-slip support frame 802 to increase the friction with the ground. During equipment operation, the anti-slip support frame 802 can effectively prevent the lower support frame 8 from sliding on the ground, avoiding safety accidents and equipment damage caused by equipment movement.

[0032] The height adjustment structure 9 includes a positioning adapter block 901, which is a key component for connecting the height adjustment structure 9 with other components. The positioning adapter block 901 is rotatably connected to the rotating connecting shaft 704 through the positioning adapter hole opened inside, so as to realize the flexible connection between the height adjustment structure 9 and the upper component, so that the height adjustment structure 9 can be rotated relative to the upper component to adapt to different angle adjustment requirements. The positioning adapter block 901 is provided with a positioning adapter hole inside, and the positioning adapter hole and the rotating connecting shaft 704 are rotatably connected to each other. The size and shape of the positioning adapter block 901 are precisely matched with the rotating connecting shaft 704 to ensure smooth rotation connection, reduce friction and wear, and prevent the occurrence of rotation. The electric telescopic rod 902 is electrically driven to perform telescopic movements, thereby changing the overall height of the height adjustment structure 9, meeting the use scenarios with different height requirements and improving the adaptability and flexibility of the equipment. The lower end of the electric telescopic rod 902 is fixedly installed with a Forma wheel 903. When the equipment needs to be moved, the Forma wheel 903 can be easily rolled, so that the equipment can be easily transferred between different positions. When the equipment reaches the designated position, the locking device of the Forma wheel 903 can be operated to fix it on the ground to prevent the equipment from moving. To ensure the stability of the equipment during operation, the inner side of the electric telescopic rod 902 is fixedly welded with a pitch-adjusting slide rail 904. The design of the pitch-adjusting slide rail 904 ensures that the pitch-adjusting slider 906 can slide smoothly along the predetermined direction, reducing the friction and resistance during the sliding process, and improving the accuracy and efficiency of the pitch adjustment. The interior of the pitch-adjusting slide rail 904 is fixedly installed with a pitch-adjusting electric screw 905. By rotating it with power, the pitch-adjusting electric screw 905 converts electrical energy into mechanical energy, driving the pitch-adjusting slider 906 to slide in the pitch-adjusting slide rail 904 to achieve the pitch adjustment function. The speed and direction of the pitch-adjusting electric screw 905 can be precisely controlled by the control system, thereby achieving The precise movement of the distance-adjusting slider 906 is realized, and the internal sliding card of the distance-adjusting slide rail 904 is connected with the distance-adjusting slider 906. The design of the distance-adjusting slider 906 ensures its stability and flexibility during the sliding process, and can withstand a certain load, while reducing the friction between the distance-adjusting slide rail 904, thereby improving the distance-adjusting efficiency. The distance-adjusting slider 906 and the distance-adjusting electric screw 905 are threadedly connected to each other, and the distance-adjusting slider 906 is rotatably connected with a fixed connecting rod 907. The existence of the fixed connecting rod 907 increases the overall stability of the height-adjusting structure 9, prevents the distance-adjusting slider 906 from deflecting or shaking during movement, and ensures the accuracy and reliability of the distance-adjusting process.

[0033] When using this device, first load different types of food compound seasonings into the respective storage control barrels 3 to ensure that the raw materials in each storage control barrel 3 are sufficient and meet production requirements. Then check whether all components of the entire automatic feeding system are firmly installed, whether the connecting hoses 5 and conveying air ducts 6 are unobstructed, and whether the height adjustment mechanism 9 is in the appropriate position.

[0034] Start the rotating structure 2 and make it start rotating, and rotate the storage control barrel 3 containing the food compound seasoning that needs to be loaded to the position corresponding to the collecting funnel 4. During the rotation process, ensure that the rotation is smooth to avoid spilling of raw materials due to shaking. When the storage control barrel 3 is rotated to the appropriate position, open the discharge port of the storage control barrel 3 to allow the food compound seasoning to fall into the collecting funnel 4. The collecting funnel 4 collects the scattered raw materials and transports them to the conveying duct 6 through the connecting hose 5. Start the conveying power system of the conveying duct 6, and use wind power to transport the food compound seasoning along the conveying duct 6 to the subsequent processing equipment. During the conveying process, pay close attention to the operation of the conveying duct 6 to ensure smooth raw material transportation and no blockage. If the height of the subsequent processing equipment changes, the height of the conveying duct 6 can be adjusted by adjusting the structure 9 so that the discharge port of the conveying duct 6 is accurately connected with the feed port of the subsequent processing equipment to ensure that the raw materials can enter the subsequent processing equipment smoothly. To change the type of food compound seasoning being loaded, the rotating mechanism 2 is activated again, and the next storage control barrel 3 containing a different ingredient is rotated to the position corresponding to the collection hopper 4. The above operation is repeated to load the different ingredients in sequence. When the loading process is complete, the rotating mechanism 2, the discharge port of the storage control barrel 3, and the conveying power system of the conveying duct 6 are closed. The residual ingredients in the collection hopper 4, the connecting hose 5, and the conveying duct 6 are cleared to prepare for the next loading process.

[0035] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0036] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An automatic feeding system for processing food compound seasonings, comprising a positioning mounting frame (1), characterized in that: The positioning mounting frame (1) comprises a rotating mounting ring (101), fixed legs (102) are uniformly welded around the rotating mounting ring (101), an output fixing plate (103) is fixedly mounted between the fixed legs (102), a rotating mounting groove is provided on the inner side of the rotating mounting ring (101), a rotating structure (2) is rotatably mounted on the upper end of the positioning mounting frame (1), the rotating structure (2) comprises a rotating mounting disk (201), the rotating mounting disk (201) is rotatably engaged with the inside of the rotating mounting groove, and the rotating mounting The outer side of the mounting plate (201) is fixedly provided with a rotating gear ring (202), one side of the rotating mounting ring (101) is fixedly provided with a rotating motor (203), the output end of the rotating motor (203) is fixedly provided with a driving gear, the driving gear and the rotating gear ring (202) are meshed with each other, the interior of the rotating mounting plate (201) is uniformly provided with positioning mounting holes, the interior of the rotating structure (2) is uniformly provided with storage control barrels (3), one side of the positioning mounting frame (1) is provided with a collecting funnel (4), the collecting funnel The lower end of (4) is fixedly installed with a connecting hose (5), and the other end of the connecting hose (5) is fixedly connected to a conveying air duct (6). An air inlet is opened on one side of both ends of the conveying air duct (6), and an air inlet duct (601) is fixedly welded on the outside of the air inlet. A powerful fan (602) is fixedly installed inside the air inlet duct (601), and a dustproof net (603) is provided on the outside of the air inlet. Fixed rails (7) are designed on both sides of the conveying air duct (6), and the fixed rails (7) include connecting slide rails (701). Both ends of the connecting slide rail (701) are fixedly installed with fixed-point electric screws (702), and both ends of the connecting slide rail (701) are slidably installed with positioning sliders (703), and a movable threaded hole is opened inside the positioning slider (703), and the movable threaded hole and the fixed-point electric screw (702) are threadedly connected to each other. A rotating connecting shaft (704) is designed on the outside of the positioning slider (703), and a lower support frame (8) is installed at one end of the fixed-point rail (7), and a height adjustment structure (9) is provided at the other end of the fixed-point rail (7).

2. The automatic feeding system for processing food compound seasonings according to claim 1, characterized in that: The material storage control barrel (3) is embedded in the interior of the positioning installation hole, an input funnel (301) is fixedly installed on the upper end of the material storage control barrel (3), an output funnel (302) is fixedly welded on the lower end of the material storage control barrel (3), and an intelligent output control valve (303) is installed on the output end of the output funnel (302).

3. The automatic feeding system for processing food compound seasonings according to claim 1, characterized in that: The lower support frame (8) comprises a triangular support rod (801), a support connection hole is provided at the center of the triangular support rod (801), the support connection hole and the rotation connection shaft (704) are rotatably engaged with each other, and an anti-slip support frame (802) is fixedly welded to the lower end of the triangular support rod (801).

4. The automatic feeding system for processing food compound seasonings according to claim 3, characterized in that: The height adjustment structure (9) comprises a positioning adapter block (901), a positioning adapter hole is provided inside the positioning adapter block (901), the positioning adapter hole and the rotating connecting shaft (704) are rotatably connected to each other, the lower end of the positioning rotating block is rotatably connected to an electric telescopic rod (902), the lower end of the electric telescopic rod (902) is fixedly installed with a Forma wheel (903), the inner side of the electric telescopic rod (902) is fixedly welded with a pitch-adjusting slide rail (904), the interior of the pitch-adjusting slide rail (904) is fixedly installed with a pitch-adjusting electric screw (905), the interior of the pitch-adjusting slide rail (904) is slidably connected to a pitch-adjusting slider (906), the pitch-adjusting slider (906) and the pitch-adjusting electric screw (905) are threadedly connected to each other, and a fixed connecting rod (907) is rotatably connected between the pitch-adjusting sliders (906).

Citation Information

Patent Citations

  • Automatic feeding machine for seasoning production

    CN221499616U

  • Pouring equipment for environment-friendly high-strength durable composite materials

    CN112919137A

  • Powder mixes system of disposition all

    CN208135474U