Pipelined full-automatic lumpia making machine

By designing a fully automated rice noodle roll preparation machine in an assembly line style, and utilizing flexible steel plates and an automatic oiling system, the problems of uneven oiling and low production efficiency have been solved. This has improved the uniformity of oiling and production efficiency of rice noodle rolls, and avoided the risk of burns during manual operation.

CN119632276BActive Publication Date: 2026-05-22SHENZHEN LANGJIAN INTELLIGENT MFG TECH CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN LANGJIAN INTELLIGENT MFG TECH CO LTD
Filing Date
2024-12-31
Publication Date
2026-05-22

AI Technical Summary

Technical Problem

Existing rice noodle roll making machines suffer from low production efficiency and uneven oil coating, and manual operation can easily lead to burns.

Method used

A fully automatic rice noodle roll preparation machine with a production line was designed. It adopts a flexible steel plate with a flowing steel plate, combined with multiple brush groups and a rotating drum to realize the automatic oiling and steaming process. The rice noodle roll is formed by the flipping of the slurry and egg liquid containers. The rice noodle roll is scooped off by a shovel, which solves the problems of uneven oiling and low production efficiency.

Benefits of technology

This improved the uniformity of oil coating on rice noodle rolls, increased production efficiency, and avoided the risk of burns during manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of intestine powder preparation machine, and discloses a pipeline type full-automatic intestine powder preparation machine, which comprises a machine body, an oil brushing station is provided with an oil container containing oil liquid, a rolling shaft in a rolling mode is arranged in the oil container, a plurality of brush groups are arranged on the rolling shaft, the outer periphery of the lower part of the brush bundle is sleeved with a rubber gathering cylinder, the upper part of the brush bundle is flat, and a fan-shaped part in a fan shape is formed, metal wires are arranged in the middle part in a transverse mode, and a rotating cylinder in a rotating mode is sleeved on the metal wires; the plurality of brush groups gather the straight brush bundle by means of the gathering cylinder, so that the brush bundle will not drop hair, the structural stability is increased, the coating area and the uniformity of the oil liquid are increased by the fan-shaped part, the adjacent brush bundles are relatively fixed by the metal wires and the rotating cylinder; then the flowing steel plate supports the pulp layer poured by the pulp container and the egg liquid poured on the pulp layer by the egg liquid container, and drives the pulp to move in the steam channel to form intestine powder, and the intestine powder is scraped off the flowing steel plate by the shovel plate.
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Description

Technical Field

[0001] This invention relates to the technical field of rice noodle roll preparation machines, and more specifically, to a fully automatic rice noodle roll preparation machine in an assembly line. Background Technology

[0002] A rice noodle roll machine is a stainless steel machine used to make rice noodle rolls. The machine has a unique automatic water inlet system, a low-power energy-saving fan, and a direct heating device, which is highly efficient and energy-saving, effectively reducing production costs. The rice noodle roll machine is multi-functional, and can produce not only rice noodle rolls, but also rice noodles, rice sheets, etc.

[0003] Currently, rice noodle roll machines on the market mainly consist of a frame and several trays. The frame has a hollow structure, which forms a heating chamber with one open end. At the same time, the front surface of the frame has a tray opening that communicates with the heating chamber, allowing the tray to be inserted into the heating chamber. The tray is inserted into the frame and seals the opening end of the heating chamber.

[0004] During operation, the open end of the heating chamber of the rice noodle roll machine frame is first placed on the heater to heat the rice noodle rolls. Then, the operator uses a brush to apply oil to the tray. After brushing, the operator uses a spoon to add rice noodle roll batter from the bucket to the tray and shakes the tray to ensure the batter is evenly distributed. Next, the rice noodle roll filling is placed on the tray and spread out with a spoon. Then, the tray is placed into the heating chamber of the frame and heated until rice noodle rolls are formed on the tray. Finally, the tray is pulled out and the rice noodle rolls are removed from the tray with a scraper for consumption.

[0005] The above operation requires manual oiling, which is not only troublesome, but the oil brush is also prone to shedding bristles. Moreover, since the temperature is high when steaming rice noodle rolls, the steam can easily burn the operator. Summary of the Invention

[0006] The purpose of this invention is to provide a fully automatic rice noodle roll preparation machine in an assembly line mode, which aims to solve the problem of low production efficiency in existing rice noodle roll preparation machines.

[0007] The present invention is implemented as follows: a fully automatic rice noodle roll preparation machine of production line type includes a machine body, the machine body is provided with a steam channel filled with high temperature steam in a flowing state, the steam channel is provided with a flowing steel plate made of flexible steel plate in circulation, the upper part of the flowing steel plate forms an upper section, the lower part of the flowing steel plate forms a lower section, and the upper section is located above the lower section.

[0008] Along the flow direction of the upper section in the steam channel, the machine body has a battering station, an egg liquid station, and a steaming station; the battering station is equipped with a batter container arranged in an oscillating manner and containing batter, and the batter container pours the batter onto the upper section by inverting, forming a battering layer; the egg liquid station is equipped with an egg liquid container arranged in an oscillating manner and containing egg liquid, and the egg liquid pours the egg liquid onto the batter layer by inverting, and the egg liquid and the batter layer mix to form rice noodle rolls;

[0009] Along the flow direction of the flowing steel plate in the steam channel, the front end of the lower section is provided with an oiling station, and the rear end of the lower section is provided with a powder discharging station. The oiling station and the powder discharging station are respectively located below the lower section.

[0010] The oiling station is equipped with an oil container containing oil. The oil container contains a rolling shaft with multiple sets of bristles on the rolling shaft. Each set of bristles has multiple bristle bundles arranged at intervals and abutting against the lower section. The rolling shaft drives the multiple sets of bristle bundles to roll, and the multiple bristle bundles adhere to the oil, coating the lower section with the oil to form an oil layer. The powder dispensing station is equipped with a shovel plate that abuts against the lower section to separate the rice noodle roll from the flowing steel plate.

[0011] As the flowing steel plate moves, multiple bristle bundles form an oil layer on the plate. Then, the slurry container pours slurry onto the oil layer to form a coating layer. The egg liquid container pours egg liquid onto the coating layer to form an egg liquid layer. After the rice noodle roll is steamed at the steaming station, the spatula separates the steamed rice noodle roll from the flowing steel plate.

[0012] The lower part of the bristle bundle is fixedly connected to the rolling shaft. A rubber gathering tube is fitted around the outer periphery of the lower part of the bristle bundle. The gathering tube gathers the lower part of the bristle bundle into a straight strip. The upper part of the bristle bundle is flat and extends to both sides to form a fan-shaped section.

[0013] The outer sides of adjacent fan-shaped portions are fixedly connected to form an integral unit; there is a central gap between the gathering cylinders of adjacent bristle bundles, and a transversely arranged metal wire is provided in the central gap. The two ends of the metal wire are respectively connected to the gathering cylinder, and a rotating cylinder is sleeved on the metal wire. Multiple bristle bundles are provided on the outer periphery of the rotating cylinder; when the rolling shaft rotates, the fan-shaped portion bends and deforms against the flowing steel plate, and the bristle bundles of the rotating cylinder simultaneously adhere to the oil, and the rotating cylinder rotates synchronously.

[0014] Furthermore, the oil container extends along the width of the flowing steel plate, and the oil container has an oil cavity with a top opening for storing oil. The rolling shaft is arranged in the oil cavity, and the top opening of the oil cavity is open.

[0015] Furthermore, there is a flow gap between the upper section and the lower section, and an inclined limiting plate is arranged in the flow gap. The top and bottom of the limiting plate have vertically inclined and elastically movable limiting parts, and the two limiting parts respectively abut against the upper section and the lower section so that the flow gap is within a set width range.

[0016] Furthermore, the limiting plate includes an inclined swing plate, in which a limiting groove is provided that is inclined vertically through the plate. A transversely arranged elastic strip is provided in the middle of the limiting groove. Movable plates are inserted into the upper and lower parts of the limiting groove, and the movable plates are inclined in the same direction as the limiting groove. The elastic strip has a plurality of transversely arranged hollow grooves that guide the deformation direction of the elastic strip. The plurality of hollow grooves are spaced apart along the length of the elastic strip.

[0017] The bottom of the movable plate abuts against the elastic strip, and the top of the movable plate extends out a limiting groove to form the limiting part; during the circulation of the flowing steel plate, the limiting part is subjected to elastic compression from top to bottom by the flowing steel plate and elastic compression from bottom to top by the elastic strip, and the limiting part is in a state of up-and-down tilting elastic movement.

[0018] Furthermore, each side of the swing plate extends outward with a hinge shaft that reciprocates within a set angle range relative to the machine body. The hinge shaft is hinged to the machine body, and a torsion spring is sleeved on the hinge shaft to drive the hinge shaft to elastically return to its original position. When the swing plate is in its original unforced state, the swing plate is arranged at an angle.

[0019] Furthermore, the slurry container has a slurry chamber for storing slurry, the side of the slurry chamber is provided with a side opening, the lower part of the side opening is provided with a lower strip, the upper part of the side opening is provided with an upper strip that moves up and down relative to the lower strip, a slurry pouring interval is formed between the upper strip and the lower strip, and the slurry pouring interval is arranged in a strip shape along the width direction of the flowing steel plate.

[0020] The pouring interval is equipped with a shaped shaft, and the two ends of the shaped shaft are rotatably connected to the slurry container. When the slurry container is tilted, the slurry in the slurry chamber flows out through the pouring interval, and the shaped shaft rotates synchronously.

[0021] Furthermore, the egg liquid container has an egg liquid cavity for storing egg liquid, and the side of the egg liquid cavity is provided with a guide wall. When the egg liquid container is tilted to a set angle, the egg liquid in the egg liquid cavity flows out of the egg liquid cavity along the guide wall and falls onto the coating layer.

[0022] Along the direction of the egg liquid flowing on the guide wall, the end of the guide wall is provided with an arc-shaped arched and closed airbag strip. The inside of the airbag strip forms a closed deformation space. When the egg liquid flows over the airbag strip, the airbag strip is automatically elastically deformed and adjusted under pressure.

[0023] Furthermore, a central strip is protruding from the middle of the guide wall. Along the flow direction of the egg liquid on the guide wall, the central strip and the airbag strip are arranged at intervals to form a slow-flow area. The central strip is provided with multiple through holes, which are connected to the slow-flow area. The top of the central strip is lower than the top of the airbag strip, and the surface of the central strip is arc-shaped.

[0024] Furthermore, a vegetable feeding station is provided between the egg liquid station and the steaming station. The vegetable feeding station is equipped with a vegetable feeding device. The bottom of the vegetable feeding device is connected to a vegetable breaking channel. A rotating threaded rod is provided in the vegetable breaking channel. The upper end of the vegetable breaking channel is connected to the vegetable feeding device. The lower end of the vegetable breaking channel extends outward with two inclined vegetable dropping channels.

[0025] The bottom of the vegetable discharge channel has an open vegetable discharge port, which is located above the flowing steel plate. The vegetable discharge port extends along the length of the vegetable discharge channel and is arranged in multiple curved sections along the extension direction of the vegetable discharge port. The vegetables in the vegetable feeder enter the vegetable breaking channel, are broken by the rotation of the threaded rod, and are transported into the vegetable discharge channel. The broken vegetables flow obliquely along the vegetable discharge channel and fall onto the rice noodle rolls on the flowing steel plate through the vegetable discharge port.

[0026] Furthermore, along the flow direction of the flowing steel plate, the shovel plate is arranged at an angle away from the flow direction of the flowing steel plate, and the top of the shovel plate has a pointed powder-shoveling side, which is covered with a hard cladding made of metal material.

[0027] The bottom of the shovel plate forms a circular shaft supported by an elastic material. The circular shaft is wrapped around the bottom of the shovel plate, and multiple fixed rings are fitted around the outer periphery of the circular shaft. The fixed rings have notches, and the shovel plate passes through the notches and extends upward at an angle. When the side of the shovel plate presses against the flowing steel plate, the shovel plate automatically and elastically adjusts within a set angle range.

[0028] Compared with existing technologies ,The present invention provides a fully automatic rice noodle roll preparation machine in a production line. The machine uses multiple sets of brushes to coat oil onto a flowing steel plate. These brush sets utilize a converging cylinder to straighten the brush bristles, preventing shedding and increasing structural stability. A fan-shaped section increases the coating area and oil uniformity. Metal wires, in conjunction with a rotating cylinder, fix adjacent brush bristle bundles in place. The rotating cylinder drives multiple bristle bundles to further increase the coating area and uniformity of oil on the flowing steel plate, solving the problems of uneven oil coating and low oil coating efficiency in traditional rice noodle roll machines. The flowing steel plate receives the slurry layer poured from the slurry container and the egg liquid poured from the egg liquid container onto the slurry layer, moving them through a steam channel for steaming and forming rice noodle rolls. A shovel plate then removes the rice noodle rolls from the flowing steel plate, solving the problem of low production efficiency in traditional rice noodle roll preparation machines. Attached Figure Description

[0029] Figure 1 This is a three-dimensional schematic diagram of the fully automatic rice noodle roll preparation machine provided by the present invention;

[0030] Figure 2 This is a three-dimensional cross-sectional structural diagram of the fully automatic rice noodle roll preparation machine provided by the present invention;

[0031] Figure 3 This is a schematic diagram of the structure of the brush bristle assembly provided by the present invention;

[0032] Figure 4 This is a side view sectional view of the limiting plate provided by the present invention;

[0033] Figure 5 This is a front view structural diagram of the limiting plate provided by the present invention;

[0034] Figure 6 This is a three-dimensional schematic diagram of the slurry container provided by the present invention;

[0035] Figure 7 This is a side view sectional view of the slurry container provided by the present invention;

[0036] Figure 8 This is a side view cross-sectional structural diagram of the egg liquid container provided by the present invention;

[0037] Figure 9 This is a three-dimensional schematic diagram of the food feeder provided by the present invention;

[0038] Figure 10 This is a side view sectional structural diagram of the shovel plate provided by the present invention.

[0039] In the diagram: 10. Machine body; 20. Flowing steel plate; 30. Cooking station; 40. Slurry container; 50. Egg liquid container; 60. Oil container; 70. Vegetable feeder; 80. Shovel plate; 90. Oil recovery structure; 21. Upper section; 22. Lower section; 23. Limiting plate; 24. Restriction part; 25. Swinging plate; 26. Limiting groove; 27. Elastic strip; 28. Movable plate; 29. ​​Hollow groove; 210. Hinge shaft; 211. Torsion spring; 41. Slurry chamber; 42. Lower strip; 43. Upper strip; 44. Slurry pouring interval; 45. Irregular shaft. 5. Egg liquid cavity 51, guide wall 52, air bag strip 53, central strip 54, through hole 55, rolling shaft 61, brush bristle assembly 62, brush bristle bundle 63, fan-shaped part 64, gathering cylinder 631, metal wire 632, rotating cylinder 633, fluff bundle 634, vegetable breaking channel 71, threaded rod 72, vegetable dropping channel 73, vegetable dropping opening 74, shovel side 81, hard coating 82, circular shaft 83, fixing ring 84, notch 85, oil recovery plate 91, liquid collection box 92, concave filter plate 93. Detailed Implementation

[0040] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0041] The implementation of the present invention will be described in detail below with reference to specific embodiments.

[0042] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this invention, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this invention. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0043] Reference Figure 1-10 The image shows a preferred embodiment of the present invention.

[0044] The fully automatic rice noodle roll preparation machine includes a machine body 10. The machine body 10 is provided with a steam channel filled with high-temperature steam in a flowing state. The steam channel is provided with a circulating steel plate 20 made of flexible steel plate. The upper part of the flowing steel plate 20 forms an upper section 21, and the lower part of the flowing steel plate 20 forms a lower section 22. The upper section 21 is located above the lower section 22.

[0045] Along the flow direction of the upper section 21 in the steam channel, the machine body 10 has a battering station, an egg liquid station, and a steaming station 30; the battering station is equipped with a batter container 40 that is oscillating and contains batter, and the batter container 40 pours the batter onto the upper section 21 by flipping, forming a battering layer; the egg liquid station is equipped with an egg liquid container 50 that is oscillating and contains egg liquid, and the egg liquid container 50 pours the egg liquid onto the battering layer by flipping, and the egg liquid and the battering layer mix to form rice noodle rolls;

[0046] Along the flow direction of the flowing steel plate 20 in the steam channel, the front end of the lower section 22 is provided with an oiling station, and the rear end of the lower section 22 is provided with a powder discharging station. The oiling station and the powder discharging station are respectively located below the lower section 22.

[0047] The oiling station is equipped with an oil container 60 containing oil. The oil container 60 contains a rolling shaft 61, and the rolling shaft 61 has multiple sets of bristle groups 62. Each bristle group 62 has multiple bristle bundles 63 arranged at intervals and abutting against the lower section 22. The rolling shaft 61 drives the multiple sets of bristle groups 62 to roll, and the multiple bristle bundles 63 adhere to the oil and coat the lower section 22 with the oil to form an oil layer. The powder dispensing station is equipped with a shovel plate 80, which abuts against the lower section 22 to separate the rice noodle rolls on the flowing steel plate 20 from the flowing steel plate 20.

[0048] As the flowing steel plate 20 moves, multiple bristle bundles 63 form an oil layer on the flowing steel plate 20. The slurry container 40 pours the slurry onto the oil layer to form a coating layer. The egg liquid container 50 pours the egg liquid onto the coating layer to form an egg liquid layer. After the rice noodle roll is steamed at the steaming station 30, the shovel plate 80 separates the steamed rice noodle roll from the flowing steel plate 20.

[0049] The lower part of the bristle bundle 63 is fixedly connected to the rolling shaft 61. A rubber gathering tube 631 is sleeved on the outer periphery of the lower part of the bristle bundle 63. The gathering tube 631 gathers the lower part of the bristle bundle 63 into a straight strip. The upper part of the bristle bundle 63 is flat and extends to both sides to form a fan-shaped part 64.

[0050] The outer sides of adjacent fan-shaped portions 64 are fixedly connected to form an integral unit; there is a middle gap between the gathering cylinders 631 of adjacent bristle bundles 63, and a transversely arranged metal wire 632 is provided in the middle gap. The two ends of the metal wire 632 are respectively connected to the gathering cylinder 631. A rotating cylinder 633 is sleeved on the metal wire 632, and multiple bristle bundles 634 are provided on the outer periphery of the rotating cylinder 633; ​​when the rolling shaft rotates, the fan-shaped portion 64 bends and deforms against the flowing steel plate 20, and the bristle bundles 634 of the rotating cylinder 633 simultaneously adhere to the oil, and the rotating cylinder 633 rotates synchronously.

[0051] The aforementioned fully automatic rice noodle roll preparation machine uses multiple sets of brush groups 62 to coat oil onto a flowing steel plate 20. The multiple brush groups 62 utilize a gathering cylinder 631 to bundle straight brush bundles 63, preventing shedding and increasing structural stability. A fan-shaped section 64 increases the coating area and oil uniformity. Metal wires 632, in conjunction with a rotating cylinder 633, fix adjacent brush bundles 63 relatively. The rotating cylinder 633 drives multiple bristle bundles 634 to further increase the coating area and oil uniformity on the flowing steel plate 20, solving the problems of uneven oil coating and low oil coating efficiency in traditional rice noodle roll machines. The flowing steel plate 20 receives the slurry layer poured from the slurry container 40 and the egg liquid poured from the egg liquid container 50 onto the slurry layer, moving them through a steam channel for steaming and cooking to form rice noodle rolls. A shovel plate 80 removes the rice noodle rolls from the flowing steel plate 20, solving the problem of low production efficiency in traditional rice noodle roll preparation machines.

[0052] In this embodiment, the oil container 60 extends along the width of the flowing steel plate 20. The oil container 60 has an oil chamber with a top opening for storing oil. A rolling shaft is arranged in the oil chamber, and the top opening of the oil chamber is open. In this way, when the rolling shaft 61 drives the multiple bristle bundles 63 of the multiple sets of bristle groups 62 to adhere to the oil, and the oil is coated onto the lower section 22 through the open top opening of the oil chamber, the oil coated on the flowing steel plate 20 is more uniform.

[0053] In this embodiment, there is a flow gap between the upper section 21 and the lower section 22. An inclined limiting plate 23 is arranged in the flow gap. The top and bottom of the limiting plate 23 have vertically inclined and elastically movable limiting parts 24. The two limiting parts 24 respectively abut against the upper section 21 and the lower section 22 so that the flow gap is within a set width range.

[0054] The limiting plate 23 can elastically support the rotation and flow of the flowing steel plate 20, preventing the middle section between the upper section 21 and the lower section 22 from sinking and affecting the production efficiency of rice noodle rolls.

[0055] In this embodiment, the limiting plate 23 includes an inclined swing plate 25, in which a limiting groove 26 is provided that is inclined vertically through the swing plate 25. A horizontally arranged elastic strip 27 is provided in the middle of the limiting groove 26. Movable plates 28 are inserted into the upper and lower parts of the limiting groove 26, and the movable plates 28 are inclined in the same direction as the limiting groove 26. The elastic strip 27 is provided with a plurality of horizontally arranged hollow grooves 29 that guide the deformation direction of the elastic strip 27. The plurality of hollow grooves 29 are spaced apart along the length of the elastic strip 27.

[0056] The bottom of the movable plate 28 abuts against the elastic strip 27, and the top of the movable plate 28 extends into a limiting groove 26 to form a limiting part 24. During the circulation of the flowing steel plate 20, the limiting part 24 is subjected to elastic compression from the flowing steel plate 20 from top to bottom and elastic compression from the elastic strip 27 from bottom to top, and the limiting part 24 is in a state of elastic movement with up and down tilting.

[0057] The limiting plate 23 is inclined against the upper section 21 and the lower section 22 through the ends of the two movable plates 28, which can prevent the middle between the upper section 21 and the lower section 22 from being recessed. The limiting plate 23 uses the limiting groove 26 on the swing plate 25 to allow the movable plate 28 to be inserted to position the telescopic buffer flow of the steel plate 20 for rotational flow. The swing plate 25 allows the movable plate 28 to telescopically deform through the elastic strip 27, and the hollow groove 29 provides space for the elastic strip 27 to deform.

[0058] In this embodiment, the two sides of the swing plate 25 are respectively extended outward with hinge shafts 210 that reciprocate relative to the body 10 within a set angle range. The hinge shafts 210 are hinged to the body 10. A torsion spring 211 is sleeved on the hinge shaft 210 to drive the hinge shaft 210 to elastically return to its original position. When the swing plate 25 is in its original unforced state, the swing plate 25 is arranged at an angle.

[0059] The hinge shaft 210, in conjunction with the torsion spring 211, allows the swing plate 25 to elastically return to its original swing position, thereby increasing the stability of the flowing steel plate 20 during rotation.

[0060] In this embodiment, the slurry container 40 has a slurry chamber 41 for storing slurry. The side of the slurry chamber 41 is provided with a side opening. The lower part of the side opening is provided with a lower strip 42. The upper part of the side opening is provided with an upper strip 43 that moves up and down relative to the lower strip 42. A slurry pouring interval 44 is formed between the upper strip 43 and the lower strip 42. The slurry pouring interval 44 is arranged in a strip shape along the width direction of the flowing steel plate 20.

[0061] A shaped shaft 45 is provided in the slurry pouring interval 44. The two ends of the shaped shaft 45 are rotatably connected to the slurry container 40. When the slurry container 40 is tilted, the slurry in the slurry chamber 41 flows out through the slurry pouring interval 44, and the shaped shaft 45 rotates synchronously. In this way, by utilizing the rotation of the shaped shaft 45 in the slurry pouring interval 44, the slurry poured out of the slurry chamber 41 can be passively guided by the shaped shaft 45 to form a waterfall flow, which is then spread on the flowing steel plate 20, thereby increasing the uniformity of slurry spreading.

[0062] In this embodiment, the egg liquid container 50 has an egg liquid cavity 51 for storing egg liquid. The side of the egg liquid cavity 51 is provided with a guide wall 52. When the egg liquid container 50 is tilted to a set angle, the egg liquid in the egg liquid cavity 51 flows out of the egg liquid cavity 51 along the guide wall 52 and falls onto the coating layer.

[0063] Along the direction of the egg liquid flowing on the guide wall 52, the end of the guide wall 52 is provided with an arc-shaped arched and closed airbag strip 53. The inside of the airbag strip 53 forms a closed deformation space. When the egg liquid flows over the airbag strip 53, the airbag strip 53 is automatically elastically deformed and adjusted under pressure.

[0064] An egg liquid retention groove is formed between the airbag strip 53 and the inner wall of the egg liquid cavity 51 on the guide wall 52. The groove can intercept the egg liquid, so that after the egg liquid overflows the groove, it flows over the airbag strip 53 and out of the egg liquid cavity 51, forming a waterfall flow and spreading on the flowing steel plate 20, thereby increasing the uniformity of egg liquid spreading.

[0065] In this embodiment, a central strip 54 protrudes from the middle of the flow guide wall 52. Along the flow direction of the egg liquid in the flow guide wall 52, the central strip 54 and the airbag strip 53 are arranged at intervals to form a slow-flow area. The central strip 54 is provided with a plurality of through holes 55, which are connected to the slow-flow area. The top of the central strip 54 is lower than the top of the airbag strip 53, and the surface of the central strip 54 is arc-shaped.

[0066] The guide wall 52 intercepts and buffers the flow of egg liquid through the middle strip 54 and the through hole 55, so that the egg liquid can be evenly spread in the egg liquid cavity 51. When the egg liquid is poured out of the egg liquid cavity 51, the egg liquid will form a waterfall flow and spread on the flowing steel plate 20, thereby increasing the uniformity of egg liquid spreading.

[0067] In this embodiment, a vegetable feeding station is provided between the egg liquid station and the steaming station 30. A vegetable feeding device 70 is provided on the vegetable feeding station. The bottom of the vegetable feeding device 70 is connected to a vegetable breaking channel 71. A rotating threaded rod 72 is provided in the vegetable breaking channel 71. The upper end of the vegetable breaking channel 71 is connected to the vegetable feeding device 70. The lower end of the vegetable breaking channel 71 extends outward with two inclined vegetable dropping channels 73.

[0068] The bottom of the vegetable discharge channel 73 has an open vegetable discharge port 74, which is located above the flowing steel plate 20. The vegetable discharge port 74 extends along the length of the vegetable discharge channel 73 and is arranged in multiple curved sections along the extension direction of the vegetable discharge port 74. The vegetables in the vegetable feeder 70 enter the vegetable breaking channel 71, are broken by the rotation of the threaded rod 72, and are transferred to the vegetable discharge channel 73. The broken vegetables flow obliquely along the vegetable discharge channel 73 and fall onto the rice noodle rolls on the flowing steel plate 20 through the vegetable discharge port 74.

[0069] The threaded rod 72 breaks the vegetables that enter the breaking channel 71. The broken vegetables are scattered from the vegetable drop openings 74 in the two vegetable drop channels 73 onto the rice noodle rolls on the flowing steel plate 20. The vegetable drop openings 74 are arranged in a multi-segment curved shape, which allows the broken vegetables to be evenly scattered on the rice noodle rolls on the flowing steel plate 20.

[0070] In this embodiment, along the flow direction of the flowing steel plate 20, the shovel plate 80 is arranged at an angle away from the flow direction of the flowing steel plate 20. The top of the shovel plate 80 has a pointed powder-shoveling side 81, and the powder-shoveling side 81 is wrapped with a hard cladding 82 made of metal material.

[0071] The bottom of the shovel plate 80 forms a circular shaft 83 supported by an elastic material. The bottom of the shovel plate 80 is wrapped in the circular shaft 83. Multiple fixed rings 84 are fixedly arranged around the outer periphery of the circular shaft 83. The fixed rings 84 have notches 85. The shovel plate 80 passes through the notches 85 and extends upward at an angle. When the shovel side 81 presses against the flowing steel plate 20, the shovel plate 80 automatically and elastically adjusts within a set angle range.

[0072] The shovel plate 80 scrapes the rice noodle rolls off the flowing steel plate 20 via its shovel side 81 with a hard coating 82, which increases the scraping effect and prevents rice noodle rolls from remaining on the flowing steel plate 20. The circular shaft 83, in conjunction with the fixing ring 84, can clamp and position the shovel plate 80, allowing it to automatically and elastically adjust within a set angle range when it comes into contact with the flowing steel plate 20. This increases the flexibility of the shovel plate 80, prevents it from damaging the flowing steel plate 20, and extends the service life of the equipment.

[0073] Below the oiling station is an oil recovery station, and on the oil recovery station is an oil recovery structure 90. The oil recovery structure 90 includes an inclined oil recovery plate 91, and a collection box 92 is connected to the bottom of the oil recovery plate 91. The collection box 92 has a collection chamber with a top opening. An inverted concave filter plate 93 is placed in the collection chamber. The concave filter plate 93 is movably connected to the collection box 92, and the top of the concave filter plate 93 is located below the bottom of the oil recovery plate 91.

[0074] The oil recovery structure 90 uses an oil recovery plate 91 to receive oil and residues falling from the lower section 22. The inclined arrangement of the oil recovery plate 91 allows the oil and residues on the oil recovery plate 91 to flow to the concave filter plate 93. The concave filter plate 93 intercepts and filters the residues, and the oil is recovered, improving internal cleanliness and hygiene.

[0075] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A fully automatic rice noodle roll preparation machine in a production line, characterized in that: The device includes a body, which is provided with a steam channel filled with high-temperature steam in a flowing state. The steam channel is provided with a flowing steel plate made of flexible steel plate that circulates in the steam channel. The upper part of the flowing steel plate forms an upper section, and the lower part of the flowing steel plate forms a lower section. The upper section is located above the lower section. Along the flow direction of the upper section in the steam channel, the machine body has a battering station, an egg liquid station, and a steaming station; the battering station is equipped with a batter container arranged in an oscillating manner and containing batter, and the batter container pours the batter onto the upper section by inverting, forming a battering layer; the egg liquid station is equipped with an egg liquid container arranged in an oscillating manner and containing egg liquid, and the egg liquid pours the egg liquid onto the batter layer by inverting, and the egg liquid and the batter layer mix to form rice noodle rolls; Along the flow direction of the flowing steel plate in the steam channel, the front end of the lower section is provided with an oiling station, and the rear end of the lower section is provided with a powder discharging station. The oiling station and the powder discharging station are respectively located below the lower section. The oiling station is equipped with an oil container containing oil. The oil container contains a rolling shaft with multiple sets of bristles on the rolling shaft. Each set of bristles has multiple bristle bundles arranged at intervals and abutting against the lower section. The rolling shaft drives the multiple sets of bristle bundles to roll, and the multiple bristle bundles adhere to the oil, coating the lower section with the oil to form an oil layer. The powder dispensing station is equipped with a shovel plate that abuts against the lower section to separate the rice noodle roll from the flowing steel plate. As the flowing steel plate moves, multiple bristle bundles form an oil layer on the plate. Then, the slurry container pours slurry onto the oil layer to form a coating layer. The egg liquid container pours egg liquid onto the coating layer to form an egg liquid layer. After the rice noodle roll is steamed at the steaming station, the spatula separates the steamed rice noodle roll from the flowing steel plate. The lower part of the bristle bundle is fixedly connected to the rolling shaft. A rubber gathering tube is fitted around the outer periphery of the lower part of the bristle bundle. The gathering tube gathers the lower part of the bristle bundle into a straight strip. The upper part of the bristle bundle is flat and extends to both sides to form a fan-shaped section. The outer sides of adjacent fan-shaped portions are fixedly connected to form an integral unit; there is a central gap between the gathering cylinders of adjacent bristle bundles, and a transversely arranged metal wire is provided in the central gap. The two ends of the metal wire are respectively connected to the gathering cylinder, and a rotating cylinder is sleeved on the metal wire. Multiple bristle bundles are provided on the outer periphery of the rotating cylinder; when the rolling shaft rotates, the fan-shaped portion bends and deforms against the flowing steel plate, and the bristle bundles of the rotating cylinder simultaneously adhere to the oil, and the rotating cylinder rotates synchronously.

2. The fully automatic rice noodle roll preparation machine as described in claim 1, characterized in that, The oil container extends along the width of the flowing steel plate. The oil container has an oil cavity with a top opening for storing oil. The rolling shaft is arranged in the oil cavity, and the top opening of the oil cavity is open.

3. The fully automatic rice noodle roll preparation machine as described in claim 1, characterized in that, There is a flow gap between the upper section and the lower section. An inclined limiting plate is arranged in the flow gap. The top and bottom of the limiting plate have vertically inclined and elastically movable limiting parts. The two limiting parts respectively abut against the upper section and the lower section so that the flow gap is within a set width range.

4. The fully automatic rice noodle roll preparation machine as described in claim 3, characterized in that, The limiting plate includes an inclined swing plate, in which a limiting groove is provided that is inclined vertically through the swing plate. A horizontally arranged elastic strip is provided in the middle of the limiting groove. Movable plates are inserted into the upper and lower parts of the limiting groove, and the movable plates are inclined in the same direction as the limiting groove. The elastic strip has a plurality of horizontally arranged hollow grooves that guide the deformation direction of the elastic strip. The plurality of hollow grooves are spaced apart along the length of the elastic strip. The bottom of the movable plate abuts against the elastic strip, and the top of the movable plate extends out a limiting groove to form the limiting part; during the circulation of the flowing steel plate, the limiting part is subjected to elastic compression from top to bottom by the flowing steel plate and elastic compression from bottom to top by the elastic strip, and the limiting part is in a state of up-and-down tilting elastic movement.

5. The fully automatic rice noodle roll preparation machine as described in claim 4, characterized in that, The two sides of the swing plate extend outwards with hinge shafts that reciprocate within a set angle range relative to the machine body. The hinge shafts are hinged to the machine body. A torsion spring is sleeved on the hinge shaft to drive the hinge shaft to elastically return to its original position. When the swing plate is in its original unforced state, the swing plate is tilted.

6. The fully automatic rice noodle roll preparation machine as described in claim 1, characterized in that, The slurry container has a slurry chamber for storing slurry. The side of the slurry chamber has a side opening. The lower part of the side opening has a lower strip. The upper part of the side opening has an upper strip that moves up and down relative to the lower strip. A slurry pouring interval is formed between the upper strip and the lower strip. The slurry pouring interval is arranged in a strip shape along the width direction of the flowing steel plate. The pouring interval is equipped with a shaped shaft, and the two ends of the shaped shaft are rotatably connected to the slurry container. When the slurry container is tilted, the slurry in the slurry chamber flows out through the pouring interval, and the shaped shaft rotates synchronously.

7. The fully automatic rice noodle roll preparation machine as described in claim 1, characterized in that, The egg liquid container has an egg liquid cavity for holding the egg liquid, and the side of the egg liquid cavity is provided with a guide wall. When the egg liquid container is tilted to a set angle, the egg liquid in the egg liquid cavity flows out of the egg liquid cavity along the guide wall and falls onto the coating layer. Along the direction of the egg liquid flowing on the guide wall, the end of the guide wall is provided with an arc-shaped arched and closed airbag strip. The inside of the airbag strip forms a closed deformation space. When the egg liquid flows over the airbag strip, the airbag strip is automatically elastically deformed and adjusted under pressure.

8. The fully automatic rice noodle roll preparation machine as described in claim 7, characterized in that, The guide wall has a central strip protruding from its middle section. Along the flow direction of the egg liquid on the guide wall, the central strip and the airbag strip are arranged at intervals to form a slow-flow area. The central strip has multiple through holes that connect to the slow-flow area. The top of the central strip is lower than the top of the airbag strip, and the surface of the central strip is arc-shaped.

9. The fully automatic rice noodle roll preparation machine as described in any one of claims 1 to 8, characterized in that, A vegetable feeding station is provided between the egg liquid station and the steaming station. A vegetable feeding device is provided on the vegetable feeding station. The bottom of the vegetable feeding device is connected to a vegetable breaking channel. A rotating threaded rod is provided in the vegetable breaking channel. The upper end of the vegetable breaking channel is connected to the vegetable feeding device. The lower end of the vegetable breaking channel extends outward with two inclined vegetable dropping channels. The bottom of the vegetable discharge channel has an open vegetable discharge port, which is located above the flowing steel plate. The vegetable discharge port extends along the length of the vegetable discharge channel and is arranged in multiple curved sections along the extension direction of the vegetable discharge port. The vegetables in the vegetable feeder enter the vegetable breaking channel, are broken by the rotation of the threaded rod, and are transported into the vegetable discharge channel. The broken vegetables flow obliquely along the vegetable discharge channel and fall onto the rice noodle rolls on the flowing steel plate through the vegetable discharge port.

10. The fully automatic rice noodle roll preparation machine as described in any one of claims 1 to 8, characterized in that, Along the flow direction of the flowing steel plate, the shovel plate is arranged at an angle away from the flow direction of the flowing steel plate, and the top of the shovel plate has a pointed powder-shoveling side, which is covered with a hard cladding made of metal material. The bottom of the shovel plate forms a circular shaft supported by an elastic material. The circular shaft is wrapped around the bottom of the shovel plate, and multiple fixed rings are fitted around the outer periphery of the circular shaft. The fixed rings have notches, and the shovel plate passes through the notches and extends upward at an angle. When the side of the shovel plate presses against the flowing steel plate, the shovel plate automatically and elastically adjusts within a set angle range.