Multifunctional automatic flour steaming equipment

Through the integrated design of the multi-functional automatic steaming equipment, the limitations of the single-function production and cleaning problems of the mechanized production of powdered foods have been solved, achieving efficient and safe production of powdered foods and meeting a variety of needs.

CN121890768APending Publication Date: 2026-04-21FOSHAN LONGZHI QINGSHUN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
FOSHAN LONGZHI QINGSHUN TECHNOLOGY CO LTD
Filing Date
2026-02-05
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing mechanized production of flour-based foods is limited in function, heavily reliant on manual labor, inconvenient to clean, and cannot guarantee food safety and quality.

Method used

A multifunctional automatic steaming powder equipment was designed, which integrates slurry supply, spreading, heating and molding, powder cutting and powder discharge. It is equipped with slurry detection and powder thickness adjustment components, and combined with the air wall device to achieve uniform slurry spreading. It also has automatic cleaning and production functions.

Benefits of technology

It enables continuous production, simplifies processes, saves labor, ensures food quality and machine cleanliness, has a wide range of applications, and can prepare steamed powder of different thicknesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of rice noodle steaming, in particular to multifunctional automatic rice noodle steaming equipment which comprises a machine body, the machine body is transversely provided with a conveying device capable of achieving horizontal conveying, and the conveying device comprises a rice noodle steaming conveying belt assembly and a rice noodle cutting conveying belt assembly located below the rice noodle steaming conveying belt assembly; according to the multifunctional automatic rice noodle steaming equipment, slurry supply, laying, heating forming, rice noodle cutting and rice noodle discharging are integrated, the purpose of continuous production can be achieved, the production process is simplified, the labor intensity of workers is reduced, and the quality of produced steamed rice noodles can be effectively guaranteed through mechanical time control; in addition, the purposes of automatic cleaning and automatic production and processing can be achieved by replacing liquid in the slurry supply device, one machine has multiple purposes, and cleanliness of the machine can be guaranteed while production is conducted; and the slurry detection assembly and the flour thickness adjusting assembly are arranged and matched with the ventilation wall device to uniformly spread slurry on the steamed flour conveying belt body, so that steamed flour with different thicknesses can be prepared according to the preparation requirements.
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Description

Technical Field

[0001] This invention relates to the field of steaming technology, specifically to a multifunctional automatic steaming device. Background Technology

[0002] As people's living standards continue to improve, they have higher requirements for the taste and freshness of food. As one of the most common staple foods in our lives, the production process of rice flour products directly affects their taste. In traditional steamed rice flour production, it often takes a lot of time and manpower to make fresh and delicious rice flour products.

[0003] Small noodle and rice noodle restaurants are forced to purchase pre-prepared ingredients to increase their serving rate due to high labor costs, difficulty in preparing ingredients, and the need for a lot of preparation time. However, this will lead to a significant loss of customers in the long run.

[0004] Therefore, many businesses prefer mechanized production. However, existing mechanized production of powdered foods has limited functions and cannot prepare a variety of powdered foods. In addition, it relies heavily on human labor during use. Furthermore, due to the large number of integrated parts in the mechanical devices, they are not easy to clean after use, which makes it impossible to guarantee food safety during the production process. Summary of the Invention

[0005] To address the aforementioned issues, a multifunctional automatic steaming powder equipment is provided, integrating slurry supply, spreading, heating and molding, powder cutting, and powder discharge into a single unit. This enables continuous production, simplifies the production process, and reduces manual labor intensity. Mechanized time control effectively ensures the quality of the produced steamed powder. Furthermore, by changing the liquid in the slurry supply device, automatic cleaning and automatic production processing can be achieved. This multi-functional machine ensures cleanliness during production. Equipped with a slurry detection component and a powder thickness adjustment component, along with an air wall device, the slurry is evenly spread on the steaming powder conveyor belt, allowing for the preparation of steamed powder of different thicknesses according to production requirements.

[0006] To address the problems of existing technologies, this invention provides a multifunctional automatic steaming equipment, comprising: The machine body is provided with a horizontally transportable conveying device, which includes a steaming conveyor belt assembly and a cutting conveyor belt assembly located below the steaming conveyor belt assembly. The steaming conveyor belt assembly has a conveying start end and a conveying end end. The steaming conveyor belt assembly includes a steaming conveyor belt body, and the cutting conveyor belt assembly includes a cutting conveyor belt body; The slurry supply device is located at one end of the machine body and extends longitudinally to the top of the conveying start end to form a slurry outlet. The slurry supply device includes a slurry supply component and a glass platform arranged horizontally with respect to the width direction of the conveying device. The glass platform has a channel through which the steam powder conveyor belt body passes. A slurry storage frame with its bottom in close contact is provided directly above the glass platform. The slurry storage frame has a slurry outlet on the side facing the conveying terminal, as well as a powder thickness adjustment component for adjusting the size of the slurry outlet. A slurry detection component that can be lifted and moved is provided on the other side of the slurry storage frame. An evaporation device is installed on the machine body. The evaporation device includes a steaming box that is wrapped around the outside of the conveyor device, and a temperature sensor for monitoring the internal temperature of the steaming box. The steaming box has openings at both ends for the lateral transport of the steaming powder conveyor belt body. A wind wall device that can assist in the forming of powder sheets and is connected to the machine body is provided between the steaming box and the slurry storage frame. An oil supply device that can coat the outer surface of the steaming powder conveyor belt body and is connected to the machine body is provided on the other side of the evaporation heating box. The oil supply device is also located directly above the conveying terminal of the steaming powder conveyor belt assembly. A powder cutting device is located at the end of the powder cutting conveyor belt assembly away from the steaming conveyor belt assembly and is installed on the machine body. The end of the powder cutting conveyor belt assembly away from the steaming conveyor belt assembly is also provided with a powder receiving device located directly below it. An air-cooling device for cooling the powder sheet is also provided between the powder cutting device and the steaming conveyor belt assembly.

[0007] Preferably, the conveying terminal is further provided with a powder scraper that cooperates with the powder conveyor belt body to unload powder, and the blade of the powder scraper is in contact with the outer surface of the powder conveyor belt body.

[0008] Preferably, a slurry detection sensor is provided on the side of the slurry storage frame adjacent to the conveying start end, and a sliding hinge for the slurry detection sensor to move up and down. One end of the sliding hinge is connected to the glass platform, and the other end of the sliding hinge is the liquid level detection end. The sliding hinge forms a sliding groove for the slurry detection sensor to move up and down. The slurry detection sensor and the sliding hinge together constitute the slurry detection assembly.

[0009] Preferably, the slurry storage frame is further provided with a straight groove communicating with the slurry outlet, and the straight groove has a powder thickness adjustment block that can be vertically raised and lowered along its groove wall; The slurry storage frame is rotatably installed with a vertically arranged powder thickness adjustment knob at the slurry outlet, and the powder thickness adjustment block is provided with a threaded groove that cooperates with the powder thickness adjustment knob. The slurry outlet, straight groove, powder thickness adjustment block, powder thickness adjustment knob, and threaded groove together constitute the powder thickness adjustment assembly.

[0010] Preferably, the evaporation device includes an evaporation heating box located on the body and an evaporation water inlet tank connected to the evaporation heating box. The evaporation heating box is equipped with a heating pipe for heating the internal water source and a pressure regulating component for regulating the internal pressure. A steam pipe for conveying high-temperature steam is connected between the evaporation heating box and the steaming box, and a drain pipe is connected to the bottom of the evaporation heating box.

[0011] Preferably, the top of the evaporation water inlet tank is connected to a water inlet solenoid valve and a water level probe for monitoring the water level inside the tank. A steam reflux preheating pipe for preheating the water source inside the evaporation heating box is also connected between the evaporation heating box and the evaporation water inlet box. The evaporation water inlet tank is also equipped with an observation mirror on the side away from the evaporation heating tank for observing its interior.

[0012] Preferably, the air wall device includes an air wall fan assembly connected to the machine body, the air wall fan assembly having an air outlet end, and the air outlet end being connected to a diversion pipe arranged parallel to the slurry storage frame.

[0013] Preferably, the oil supply device includes a mounting frame vertically connected to the machine body, an oil storage cup mounted on the side of the mounting frame facing the steaming conveyor belt body, and an oil dripping groove frame arranged parallel to the width direction of the steaming conveyor belt body and adjustable in vertical height, with an oil brush roller movably arranged directly below the groove opening of the oil dripping groove frame.

[0014] Preferably, the powder cutting device includes: A vertical drive assembly has a mounting section, and a cutter assembly is mounted at the output end of the vertical drive assembly, which is arranged parallel to the width direction of the powder conveyor belt body. The cutter assembly is provided with a lower limit limit switch and an upper limit limit switch on one side to control its movement path; The linear guide module has two sets, located at both ends of the cutter assembly; The linear guide module includes a track perpendicular to the powder conveyor belt body and a slider that slides vertically along the track, the slider being connected to the end of the cutter assembly; The main mounting frame is vertically mounted on the machine body and is used for mounting and fixing the linear guide module and the vertical drive assembly. The bottom end of the main mounting frame is provided with an elastic buffer for buffering the descent of the cutter assembly.

[0015] Preferably, the powder receiving device includes a reciprocating conveying mechanism, a conveying platform is mounted on the top of the reciprocating conveying mechanism, and a powder receiving tray is placed on the top of the conveying platform; The end of the machine body is also equipped with a detachable quick-connect electrical control device.

[0016] The advantages of this invention compared to the prior art are: 1. The integrated system of slurry supply, laying, heating and molding, powder cutting and powder discharge can achieve continuous production, improve production targets and save production time, simplify the production process and save manual labor intensity. Through mechanized time control, it can also effectively ensure the quality of the produced steamed powder.

[0017] 2. Furthermore, by changing the liquid in the slurry supply device, automatic cleaning and automatic production processing can be achieved. This multi-purpose machine can ensure the cleanliness of the machine while it is in production.

[0018] 3. The slurry detection component and powder thickness adjustment component are set up, and the slurry is evenly spread on the steam powder conveyor belt body in conjunction with the air wall device. Different thicknesses of steam powder can be prepared according to the production needs, and the application range is wider. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of a multi-functional automatic steaming equipment.

[0020] Figure 2 This is a schematic diagram of the slurry supply device of a multi-functional automatic steam slurry equipment.

[0021] Figure 3 This is a schematic diagram of the internal and external structure of the conveying device and air-cooling device of a multi-functional automatic steaming equipment.

[0022] Figure 4 This is a schematic diagram of the conveying device and air wall device of a multi-functional automatic steaming equipment.

[0023] Figure 5 This is a three-dimensional connection diagram of the evaporation device and the detachable quick-connect electrical control device of a multi-functional automatic evaporation equipment.

[0024] Figure 6 This is a three-dimensional structural diagram of the evaporation device of a multi-functional automatic evaporation equipment.

[0025] Figure 7 This is a schematic diagram of the internal structure of a detachable quick-connect electrical control device for a multifunctional automatic steaming powder equipment.

[0026] Figure 8 This is a three-dimensional structural diagram of the oil supply device for a multi-functional automatic steaming powder equipment.

[0027] Figure 9 This is a three-dimensional structural diagram of the powder cutting device in a multi-functional automatic steaming powder equipment.

[0028] Figure 10This is a side cross-sectional three-dimensional structural diagram of the powder cutting device in a multifunctional automatic steaming powder equipment.

[0029] Figure 11 This is a schematic diagram of the internal structure of the noodle cutting device in a multi-functional automatic steaming powder equipment.

[0030] Figure 12 This is a three-dimensional structural diagram of the powder receiving device of a multi-functional automatic powder steaming equipment.

[0031] The diagram is labeled as follows: 10. Machine body; 1. Slurry supply device; 1a. Glass platform; 1a1. Slurry detection sensor; 1a2. Sliding hinge; 1b. Slurry storage frame; 1b1. Powder thickness adjustment block; 1b2. Powder thickness adjustment knob; 2. Conveying device; 2a. Steaming conveyor belt body; 2b. Powder cutting conveyor belt body; 2c. Powder scraper; 3. Evaporation device; 3a. Evaporation heating box; 3a1. Heating tube; 3a2. Steam pipe; 3b. Evaporation water inlet tank; 3b1. Observation mirror; 3b2. Water inlet solenoid valve; 3b3. Water level probe; 3b4. Steam reflux preheating pipe; 3c. Steaming box; 3d. Temperature... 4. Degree sensor; 5. Air wall device; 6. Air wall fan assembly; 7. Diverter pipe; 8. Oil supply device; 9. Oil reservoir; 10. Oil drip tray frame; 11. Oil brush roller; 2. Air cooling device; 3. Powder cutting device; 4. Vertical drive assembly; 5. Cutter assembly; 6. Lower limit limit switch; 7. Upper limit limit switch; 8. Linear guide module; 10. Track; 11. Slider; 12. Main mounting frame; 13. Elastic buffer; 44. Powder receiving device; 5. Reciprocating conveyor mechanism; 15. Conveying platform; 16. Powder receiving tray; 75. Detachable quick-connect electrical control device. Detailed Implementation

[0032] To further understand the features, technical means, and specific objectives and functions achieved by the present invention, the present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments.

[0033] See Figure 1 , Figure 3 and Figure 4 As shown, a multi-functional automatic steaming powder device includes: The machine body 10 is provided with a horizontally arranged conveying device 2, which includes a steaming conveyor belt assembly and a cutting conveyor belt assembly located below the steaming conveyor belt assembly. The steaming conveyor belt assembly has a conveying start end and a conveying end end. The steaming conveyor belt assembly includes a steaming conveyor belt body 2a, and the cutting conveyor belt assembly includes a cutting conveyor belt body 2b.

[0034] It should be noted that conveyor device 2 is a conveyor belt device, specifically a two-stage conveyor belt system. The primary conveyor belt system is a steaming conveyor belt structure, while the secondary conveyor belt system is a cutting conveyor belt structure. This system is used for cyclic operation to facilitate the continuous operation of the steaming process, reducing waiting and downtime. It also allows for the loading of the slurry and the unloading of the solidified steamed powder during the steaming process, thus improving the efficiency of the steaming operation.

[0035] See Figure 1 and Figure 2 As shown, the slurry supply device 1 is located at one end of the machine body 10 and extends longitudinally to the top of the conveying start end to form a slurry outlet. The slurry supply device 1 includes a slurry supply component and a glass platform 1a arranged horizontally with the width direction of the conveying device 2. The glass platform 1a has a channel through which the steam powder conveyor belt body 2a passes.

[0036] It should be noted that the slurry supply device 1 also includes a slurry inlet pipe, a slurry pump, and a slurry outlet pipe. In use, the slurry pump delivers the slurry prepared by the staff to the glass platform 1a through the slurry inlet pipe and the slurry outlet pipe.

[0037] See Figure 1 and Figure 2 As shown, a slurry storage frame 1b is provided directly above the glass platform 1a, with its bottom in close contact with it. The slurry storage frame 1b has a slurry outlet on the side facing the conveying terminal, as well as a powder thickness adjustment component for adjusting the size of the slurry outlet. A slurry detection component that can be lifted and moved is provided on the other side of the slurry storage frame 1b.

[0038] It should be noted that the glass platform 1a is used in conjunction with the slurry storage frame 1b to temporarily store the slurry discharged from the slurry outlet pipe. During the temporary storage process, the slurry detection component can monitor the amount of slurry, so as to facilitate the subsequent laying of slurry on the upper surface of the steaming conveyor belt body 2a.

[0039] The slurry thickness adjustment component adjusts the size of the slurry outlet to control the thickness of the slurry.

[0040] See Figure 1 , Figure 5 and Figure 6 As shown, the evaporation device 3 is installed on the machine body 10. The evaporation device 3 includes a steam box 3c arranged in a wrap-around shape on the outside of the conveyor device 2, and a temperature sensor 3d for monitoring the internal temperature of the steam box 3c. The steam box 3c has openings at both ends for the evaporation powder conveyor belt body 2a to pass through laterally for transport.

[0041] It should be noted that the evaporation device 3 is used for high-temperature evaporation and molding of the slurry that enters the conveying device 2 during operation. The temperature sensor 3d is used to monitor the temperature inside the steaming box 3c and adjust the evaporation temperature of the evaporation device 3 in conjunction with the main control panel, so as to better control the molding temperature and time of the slurry and thus improve the efficiency of steam powder molding.

[0042] See Figure 1 and Figure 4 As shown, a wind wall device 4, which can assist in the forming of powder sheets and is connected to the machine body 10, is provided between the steaming box 3c and the slurry storage frame 1b. On the other side of the evaporation heating box 3a, an oil supply device 5, which can coat the outer surface of the steaming powder conveyor belt body 2a with oil and is connected to the machine body 10, is provided. The oil supply device 5 is also located directly above the conveying terminal of the steaming powder conveyor belt assembly.

[0043] It should be noted that the air wall device 4 is used to push the slurry evenly onto the upper surface of the steam powder conveyor belt body 2a through airflow, so as to ensure the flatness of the surface after steam powder forming.

[0044] See Figure 1 and Figure 3 As shown, the powder cutting device 7 is located at the end of the powder cutting conveyor belt assembly away from the steaming conveyor belt assembly and is installed on the machine body 10. The end of the powder cutting conveyor belt assembly away from the steaming conveyor belt assembly is also provided with a powder receiving device 8 located directly below it. A wind-cooling device 6 for cooling the powder sheet is also provided between the powder cutting device 7 and the steaming conveyor belt assembly.

[0045] It should be noted that the powder cutting device 7 is used to cut the steamed powder after it has been formed, and the powder receiving device 8 is used to receive the cut steamed powder for easy collection by the operator.

[0046] The air-cooling device 6 consists of an air-cooled fan assembly and a distribution pipe. When in operation, the air-cooled fan assembly produces cold air and guides the cold air evenly to the surface of the steamed powder through the outlet distribution pipe to cool the formed steamed powder, improve the taste of the steamed powder and facilitate the subsequent cutting process.

[0047] Furthermore, the connection and wiring of the air-cooled fan assembly and the shunt straight pipe are made using waterproof quick connectors and waterproof wiring ports, which facilitates the modular and rapid assembly and maintenance of the air-cooling device 6.

[0048] See Figure 3 As shown, the conveying terminal is also equipped with a powder scraper 2c that cooperates with the powder conveyor belt body 2a to unload powder, and the blade of the powder scraper 2c is in contact with the outer surface of the powder conveyor belt body 2a.

[0049] It should be noted that the powder scraper 2c is used to scrape the steamed powder at the end of the steamed powder conveyor belt 2a to the upper side of the powder cutting conveyor belt 2b, which facilitates the subsequent powder cutting and unloading operations.

[0050] See Figure 1 and Figure 2 As shown, a slurry detection sensor 1a1 is provided on the side of the slurry storage frame 1b adjacent to the conveying start end, and a sliding hinge 1a2 is provided for the slurry detection sensor 1a1 to move up and down. One end of the sliding hinge 1a2 is connected to the glass platform 1a, and the other end of the sliding hinge 1a2 is a liquid level detection end. The sliding hinge 1a2 forms a sliding groove for the slurry detection sensor 1a1 to move up and down. The slurry detection sensor 1a1 and the sliding hinge 1a2 together constitute the slurry detection assembly.

[0051] It should be noted that the slurry detection sensor 1a1 is used to monitor the slurry height in the slurry storage frame 1b in order to prevent excessive slurry overflow from the slurry storage frame 1b and affect the steaming operation. The sliding hinge 1a2 can provide a moving guide for the slurry detection sensor 1a1, which facilitates the subsequent cleaning of the slurry storage frame 1b; The glass platform 1a and the bottom of the slurry storage frame 1b cooperate to form a base plate at its bottom, and provide guidance and straightening for the steam powder conveyor belt body 2a to facilitate the powder spreading work.

[0052] See Figure 2 As shown, the slurry storage frame 1b is also provided with a straight groove that communicates with the slurry outlet, and the straight groove has a powder thickness adjustment block 1b1 that can be vertically raised and lowered along its groove wall; The slurry storage frame 1b has a vertically arranged powder thickness adjustment knob 1b2 rotatably installed at the slurry outlet, and the powder thickness adjustment block 1b1 has a threaded groove that mates with the powder thickness adjustment knob 1b2. The slurry outlet, straight groove, powder thickness adjustment block 1b1, powder thickness adjustment knob 1b2, and threaded groove together constitute the powder thickness adjustment assembly.

[0053] It should be noted that during use, rotating the powder thickness adjustment knob 1b2 will interact with the threaded groove of the powder thickness adjustment block 1b1, causing the powder thickness adjustment block 1b1 to rise along the straight groove, thereby adjusting the size of the slurry outlet and thus adjusting the slurry output to achieve the purpose of adjusting the powder thickness.

[0054] See Figure 5 and Figure 6As shown, the evaporation device 3 includes an evaporation heating box 3a located on the body 10, and an evaporation water inlet box 3b connected to the evaporation heating box 3a. The evaporation heating box 3a is provided with a heating pipe 3a1 for heating the internal water source, and a pressure regulating component for regulating the internal pressure. A steam pipe 3a2 for conveying high-temperature steam is connected between the evaporation heating box 3a and the steam box 3c, and a drain pipe is connected to the bottom of the evaporation heating box 3a.

[0055] It should be noted that during operation, the heating pipe 3a1 at the evaporation heating box 3a heats the water inside to generate high-temperature steam. The steam pipe 3a2 transports the high-temperature steam to the steam box 3c and sprays it out to heat and shape the slurry entering the steam box 3c, thereby producing steamed powder. Furthermore, during the heating process, the pressure regulating component adjusts the pressure inside the evaporative heating chamber 3a to balance the internal and external pressures, allowing the steam to be transported smoothly.

[0056] The pressure regulating assembly includes a pressure detection switch installed on one side of the evaporative heating chamber 3a. A pressure relief valve is located at the pressure detection switch, and the switch is connected to the evaporative heating chamber 3a via a pressure detection connecting pipe. In use, the pressure detection switch obtains the internal pressure of the evaporative heating chamber 3a through the pressure detection connecting pipe. If the pressure exceeds the set value, the pressure relief valve will open to release the pressure.

[0057] See Figure 6 As shown, the top of the evaporation water inlet tank 3b is connected to a water inlet solenoid valve 3b2 and a water level probe 3b3 for monitoring the water level inside the tank. A steam reflux preheating pipe 3b4 for preheating the water source inside the evaporation heating box 3a is also connected between the evaporation heating box 3a and the evaporation water inlet box 3b. An observation mirror 3b1 for observing the interior of the evaporation water inlet tank 3b is also provided on the side away from the evaporation heating tank 3a.

[0058] It should be noted that the water level probe 3b3 can promptly obtain the water level inside the evaporation water inlet tank 3b, facilitating water replenishment in conjunction with the water inlet solenoid valve 3b2 and preventing excessive water intake. The steam return preheating pipe 3b4 can guide excess steam to the evaporation water inlet tank 3b to preheat the water flow inside, thereby reducing the heating workload of the heating pipe 3a1 and effectively shortening its heating time.

[0059] The sight glass 3b1 allows the operator to easily observe the internal condition of the evaporative heating chamber 3a, facilitating maintenance work.

[0060] See Figure 1 and Figure 4As shown, the air wall device 4 includes an air wall fan assembly 4a connected to the body 10. The air wall fan assembly 4a has an air outlet end, and the air outlet end is connected to a diversion pipe 4a1 arranged parallel to the slurry storage frame 1b.

[0061] It should be noted that during use, the wind wall fan assembly generates airflow and guides the airflow to the diversion pipe 4a1. After being diverted through the holes at the diversion pipe 4a1, the airflow is sprayed out to blow the grout and spread it evenly, so as to achieve the effect of laying the grout.

[0062] See Figure 1 and Figure 8 As shown, the oil supply device 5 includes a mounting frame vertically connected to the machine body 10. An oil storage cup 5a is installed on the side of the mounting frame facing the steaming powder conveyor belt body 2a, and an oil dripping groove frame 5b is arranged parallel to the width direction of the steaming powder conveyor belt body 2a and can be vertically adjusted. An oil brushing roller 5c is movably arranged directly below the groove of the oil dripping groove frame 5b.

[0063] It should be noted that the bottom of the oil storage cup 5a is connected to an oil delivery pipe, and a ball valve for controlling the flow of oil is installed at the oil delivery pipe. After the ball valve is opened, the oil storage cup 5a guides the oil to the oil dripping trough frame 5b through the oil delivery pipe. The oil dripping trough frame 5b drips the oil onto the upper side of the oil brush roller 5c through the opening at the bottom. When the steaming powder conveyor belt body 2a drives the steaming powder to its bottom, the oil brush roller 5c rubs and rolls against the surface of the steaming powder, thereby achieving the effect of coating the surface of the steaming powder with oil, so as to avoid the subsequent adhesion of the steaming powder to the surface of the cutting powder conveyor belt, and also improve the toughness and ductility of the steaming powder. The oil drip tray frame 5b is equipped with adjusting bolts at both ends to adjust the distance between it and the bottom of the oil pipeline; By adjusting the height of the oil drip tray frame 5b, the pipe opening at the bottom of the oil pipeline can be brought closer to the opening at the bottom of the oil drip tray frame 5b, thereby adjusting the oil output of the oil storage cup 5a.

[0064] The mounting frame has an inverted gourd groove that matches the end of the oil brushing roller 5c, which facilitates the height adjustment of the oil brushing roller 5c when brushing steamed powder of different thicknesses and its return to the groove after brushing.

[0065] See Figures 9 to 11 As shown, the powder cutting device 7 includes: The vertical drive assembly 7a has a mounting part, and a cutter assembly 7b is mounted on the output end of the vertical drive assembly 7a, which is arranged parallel to the width direction of the powder cutting conveyor belt body 2b. The cutter assembly 7b is provided with a lower limit limit switch 7b1 and an upper limit limit switch 7b2 on one side to control its movement path; The linear guide module 7c has two sets, which are located at both ends of the cutter assembly 7b. The linear guide module 7c includes a track 7c1 that is perpendicular to the powder cutting conveyor belt body 2b, and a slider 7c2 that slides vertically along the track. The slider 7c2 is connected to the end of the cutter assembly 7b. The main mounting frame 7d is vertically mounted on the body 10 and is used for mounting and fixing the linear guide module 7c and the vertical drive assembly 7a. The bottom end of the main mounting frame 7d is provided with an elastic buffer 7e for buffering the descent of the cutter assembly 7b.

[0066] It should be noted that during use, the vertical drive component 7a drives the cutter component 7b to move vertically, and the lower limit limit switch 7b1 and the upper limit limit switch 7b2 control its movement distance, so as to achieve the purpose of cutting powder without damaging the powder cutting conveyor belt body 2b. Furthermore, while the cutter assembly 7b moves vertically, the linear guide module 7c provides movement guidance to ensure its stability during movement. The elastic buffer 7e at the main mounting frame 7d can prevent the cutter assembly 7b from experiencing a hard impact during descent, thus achieving the purpose of buffering the descent speed.

[0067] See Figure 12 As shown, the powder receiving device 8 includes a reciprocating conveying mechanism 8a, a conveying platform 8b is mounted on the top of the reciprocating conveying mechanism 8a, and a powder receiving tray 8b1 is placed on the top of the conveying platform 8b.

[0068] It should be noted that the re-conveying mechanism 81 can drive the powder receiving tray 8b1 to move back and forth, which facilitates the powder receiving and unloading work. The conveying platform 8b is set up to place the powder receiving tray 8b1.

[0069] See Figure 1 , Figure 3 and Figure 12 As shown, a detachable quick-connect electrical control device 9 is also provided at the end of the body 10.

[0070] It should be noted that the detachable quick-connect electrical control device 9 includes a microprocessor, a wireless touch screen, a waterproof quick-connect connector for the electrical box, a waterproof wiring port for the electrical box, a connection and fixing position between the electrical box and the machine, and a detachable quick-connect electrical box.

[0071] The detachable quick-connect electrical control device 9, equipped with a microprocessor and a wireless touchscreen, enables one-button start-up and allows for the selection of different production functions. It enables automatic operation and cleaning of various production processes, including rice noodles, kueh teow, Chencun rice noodles, and foam box rice noodle rolls. During automatic operation, the conveyor 2 operates at a corresponding speed. Simultaneously, the temperature sensor 3d in the evaporation device 3 collects the current temperature in real time and communicates with the microprocessor and wireless touchscreen to achieve intelligent temperature regulation. Meanwhile, the noodle-cutting device 7 cuts the noodles at a corresponding speed, thus achieving multi-functional automatic steaming. This eliminates tedious manual adjustments, and the simple and convenient operation not only saves manpower and resources but also allows for multiple uses in one machine. The detachable quick-connect electrical control device 9 achieves modular assembly in terms of operation and maintenance. It uses waterproof quick connectors and waterproof inlet and outlet ports for easy and quick maintenance.

[0072] The above embodiments only illustrate one or more implementations of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of the present invention should be determined by the appended claims.

Claims

1. A multifunctional automatic steaming powder equipment, characterized in that, include: The machine body (10) is provided with a horizontally transportable conveying device (2). The conveying device (2) includes a steaming conveyor belt assembly and a cutting conveyor belt assembly located below the steaming conveyor belt assembly. The steaming conveyor belt assembly has a conveying start end and a conveying end end. The steaming conveyor belt assembly includes a steaming conveyor belt body (2a), and the cutting conveyor belt assembly includes a cutting conveyor belt body (2b). The slurry supply device (1) is set at one end of the machine body (10) and extends longitudinally to the top of the conveying start end to form a slurry outlet. The slurry supply device (1) includes a slurry supply component and a glass platform (1a) arranged horizontally with the width direction of the conveying device (2). The glass platform (1a) has a channel through which the steam powder conveyor belt body (2a) passes. A slurry storage frame (1b) with its bottom in close contact is provided directly above the glass platform (1a). The slurry storage frame (1b) has a slurry outlet on the side facing the conveying terminal, as well as a powder thickness adjustment component for adjusting the size of the slurry outlet. A slurry detection component that can be lifted and moved is provided on the other side of the slurry storage frame (1b). An evaporation device (3) is installed on the machine body (10). The evaporation device (3) includes a steam box (3c) arranged in a wrap-around shape outside the conveyor device (2) and a temperature sensor (3d) for monitoring the internal temperature of the steam box (3c). The steam box (3c) has openings at both ends for the evaporation powder conveyor belt body (2a) to pass through laterally for transport. A wind wall device (4) is provided between the steam box (3c) and the slurry storage frame (1b) to assist in the forming of the powder sheet and is connected to the machine body (10). On the other side of the evaporation heating box (3a), an oil supply device (5) is provided to coat the outer surface of the steam powder conveyor belt body (2a) and is connected to the machine body (10). The oil supply device (5) is also located directly above the conveying terminal of the steam powder conveyor belt assembly. The powder cutting device (7) is located at the end of the powder cutting conveyor belt assembly away from the steaming conveyor belt assembly and is installed on the machine body (10). The end of the powder cutting conveyor belt assembly away from the steaming conveyor belt assembly is also provided with a powder receiving device (8) located directly below it. A wind-cooling device (6) for cooling the powder sheet is also provided between the powder cutting device (7) and the steaming conveyor belt assembly.

2. The multifunctional automatic steaming equipment according to claim 1, characterized in that, The conveying terminal is also equipped with a powder scraper (2c) that works with the powder conveyor belt body (2a) to unload powder. The blade of the powder scraper (2c) is in contact with the outer surface of the powder conveyor belt body (2a).

3. The multifunctional automatic steaming equipment according to claim 1, characterized in that, A slurry detection sensor (1a1) is provided on the side of the slurry storage frame (1b) adjacent to the conveying start end, and a sliding hinge (1a2) for the slurry detection sensor (1a1) to move up and down. One end of the sliding hinge (1a2) is connected to the glass platform (1a), and the other end of the sliding hinge (1a2) is the liquid level detection end. The sliding hinge (1a2) forms a sliding groove for the slurry detection sensor (1a1) to move up and down. The slurry detection sensor (1a1) and the sliding hinge (1a2) together constitute the slurry detection assembly.

4. The multifunctional automatic steaming equipment according to claim 3, characterized in that, The slurry storage frame (1b) is also provided with a straight groove that communicates with the slurry outlet, and the straight groove has a powder thickness adjustment block (1b1) that can be vertically raised and lowered along its groove wall. The slurry storage frame (1b) has a vertically arranged powder thickness adjustment knob (1b2) rotatably installed at the slurry outlet, and the powder thickness adjustment block (1b1) has a threaded groove that mates with the powder thickness adjustment knob (1b2). The slurry outlet, straight groove, powder thickness adjustment block (1b1), powder thickness adjustment knob (1b2), and threaded groove together constitute the powder thickness adjustment assembly.

5. The multifunctional automatic steaming equipment according to claim 1, characterized in that, The evaporation device (3) includes an evaporation heating box (3a) located on the body (10) and an evaporation water inlet box (3b) connected to the evaporation heating box (3a). The evaporation heating box (3a) is equipped with a heating pipe (3a1) for heating the internal water source and a pressure regulating component for regulating the internal pressure. A steam pipe (3a2) for conveying high-temperature steam is connected between the evaporation heating box (3a) and the steam box (3c), and a drain pipe is connected to the bottom of the evaporation heating box (3a).

6. The multifunctional automatic steaming equipment according to claim 5, characterized in that, The top of the evaporation water inlet tank (3b) is connected to a water inlet solenoid valve (3b2) and a water level probe (3b3) for monitoring the water level inside. A steam reflux preheating pipe (3b4) for preheating the water source inside the evaporation heating tank (3b) is also connected between the evaporation heating tank (3a) and the evaporation water inlet tank (3b). An observation mirror (3b1) for observing the interior of the evaporation water inlet tank (3b) is also provided on the side away from the evaporation heating tank (3a).

7. A multifunctional automatic steaming powder equipment according to claim 5, characterized in that, The air wall device (4) includes an air wall fan assembly (4a) connected to the body (10), the air wall fan assembly (4a) has an air outlet end, and the air outlet end is connected to a diversion pipe (4a1) arranged parallel to the slurry storage frame (1b).

8. A multifunctional automatic steaming powder equipment according to claim 7, characterized in that, The oil supply device (5) includes a mounting frame vertically connected to the machine body (10). An oil storage cup (5a) is installed on the side of the mounting frame facing the steaming conveyor belt body (2a), and an oil dripping groove frame (5b) is arranged parallel to the width direction of the steaming conveyor belt body (2a) and can be vertically adjusted. An oil brushing roller (5c) is movably arranged directly below the groove of the oil dripping groove frame (5b).

9. A multifunctional automatic steaming powder equipment according to claim 8, characterized in that, The powder cutting device (7) includes: The vertical drive assembly (7a) has a mounting section, and a cutter assembly (7b) is mounted at the output end of the vertical drive assembly (7a) and is arranged parallel to the width direction of the powder conveyor belt body (2b). The cutter assembly (7b) is provided with a lower limit limit switch (7b1) and an upper limit limit switch (7b2) on one side to control its movement path. The linear guide module (7c) has two sets, which are located at both ends of the cutter assembly (7b); The linear guide module (7c) includes a track (7c1) arranged perpendicular to the powder conveyor belt body (2b) and a slider (7c2) that slides vertically along the track. The slider (7c2) is connected to the end of the cutter assembly (7b). The main mounting frame (7d) is vertically mounted on the body (10) and is used for mounting and fixing the linear guide module (7c) and the vertical drive assembly (7a). The bottom end of the main mounting frame (7d) is provided with an elastic buffer (7e) for buffering the descent of the cutter assembly (7b).

10. A multifunctional automatic steaming powder equipment according to claim 9, characterized in that, The powder receiving device (8) includes a reciprocating conveying mechanism (8a), a conveying platform (8b) is mounted on the top of the reciprocating conveying mechanism (8a), and a powder receiving tray (8b1) is placed on the top of the conveying platform (8b). The end of the body (10) is also provided with a detachable quick-connect electrical control device (9).