Automatic rice noodle roll machine

By designing the steam box, conveying module, material receiving module and other components of the automatic rice noodle roll machine, automatic steaming, sorting and cutting of rice noodle rolls are achieved, solving the problem of inconvenience in eating rice noodle rolls and improving production efficiency and convenience.

CN118476630BActive Publication Date: 2025-09-30FOSHAN JIYONGCHUANG AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202410782208.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-09-30
Estimated Expiration
2044-06-18

AI Technical Summary

Technical Problem

Existing automatic rice noodle roll machines cannot automatically fold and cut the rice noodle rolls, causing inconvenience in eating.

Method used

An automatic rice noodle roll machine is designed, which includes components such as a steam box, a conveying module, a material receiving module, and a material feeding module. It can realize the automatic steaming, sorting, cutting and material feeding processes of rice noodle rolls. The rice noodle rolls are formed by steam heating and sorted into appropriate sizes. It is equipped with a material feeding module and a slurry adding module to realize automatic addition of materials and slurry.

Benefits of technology

The automatic production process of rice noodle rolls is realized, including automatic pulp addition, steam heating, cutting and feeding, which solves the problem of inconvenience in eating rice noodle rolls and improves production efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an automatic rice noodle roll machine, comprising: a frame; a steam box, which is arranged on the frame, a holding space for holding water formed inside the steam box, and a heating module is arranged at the bottom of the steam box, for heating the water in the holding space to form water vapor; a conveying module, which is arranged on the frame and is used to convey rice slurry to the top of the steam box so as to steam the rice slurry with the water vapor and remove the freshly steamed rice noodle rolls obtained after the steaming is completed from the top of the steam box; a material receiving module, which is used to receive the freshly steamed rice noodle rolls conveyed by the conveying module and arrange the rice noodle rolls into a size that can be placed on a dinner plate; and a material unloading module, which is used to transport the dinner plate to receive the arranged rice noodle rolls in the material receiving module.
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Description

Technical Field

[0001] The present invention relates to the field of catering equipment, in particular to an automatic rice noodle roll machine. Background Art

[0002] Patent application CN115644482A discloses an automatic rice noodle roll machine that automatically loads meat, vegetables, eggs, and rice milk, and heats the rolls with steam. However, as anyone who has eaten rice noodle rolls knows, they are too long to be placed directly on a plate and need to be folded. Furthermore, for easier eating, they typically need to be cut into multiple sections, neither of which can be achieved in the patent document. Summary of the Invention

[0003] The main purpose of the present invention is to provide an automatic rice noodle roll machine, which can realize the automatic production of rice noodle rolls.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: an automatic rice noodle roll machine, comprising:

[0005] frame;

[0006] A steam box is provided on the frame, wherein a holding space for holding water is formed inside the steam box, and a heating module is provided at the bottom of the steam box for heating the water in the holding space to form water vapor;

[0007] A conveying module is provided on the frame, and is used to convey the rice slurry to the top of the steam box so as to steam the rice slurry with the steam and remove the steamed rice noodle rolls obtained after the steaming is completed from the top of the steam box;

[0008] A receiving module is used to receive the freshly steamed rice noodle rolls delivered by the delivery module and arrange the rice noodle rolls into a size that can be placed on a plate;

[0009] The unloading module is used to transport the dinner tray to receive the arranged rice noodle rolls in the receiving module.

[0010] Preferably, the delivery module comprises:

[0011] a bracket, supported on the frame and located in the positive direction of the steam box;

[0012] an active roller rotatably disposed at one end of the bracket along the second direction;

[0013] A driven roller is rotatably disposed at the other end of the bracket along the second direction, wherein the axes of the driving roller and the driven roller both extend along the first direction;

[0014] The rice noodle roll cloth connects the active roller and the driven roller, and the active roller can drive the rice noodle roll cloth to rotate. When viewed from above, the steam box is located between the active roller and the driven roller in the second direction.

[0015] Preferably, a cover plate is supported on the bracket, and the cover plate is located above the rice noodle roll cloth and directly above the steam box. In the first direction, the cover plate covers the rice noodle roll cloth, and the rice noodle roll cloth can move to directly below the cover plate with the rice slurry.

[0016] Preferably, steam outlet holes are provided on both sides of the steam box along the first direction, and water vapor in the steam box escapes from the steam outlet holes; each steam outlet hole extends a certain length along the second direction; the first direction and the second direction are perpendicular to each other and both horizontal; the second direction is parallel to the conveying direction of the conveying module;

[0017] Steam hoods are respectively provided on both sides of the cover plate along the first direction, and the steam hoods and the bracket form a steam inlet. The steam inlet is connected to the steam space between the rice noodle roll cloth on the upper layer and the rice noodle roll cloth on the lower layer. The steam inlet is connected to the steam outlet. The steam coming out of the steam box passes through the steam outlet and the steam inlet and enters between the two layers of rice noodle roll cloth.

[0018] Preferably, it further comprises a pulping module, the pulping module comprising:

[0019] A pulp discharging block is provided on the frame, the pulp discharging block extends along the first direction, a pulp discharging slit is provided on the pulp discharging block, the pulp discharging slit extends along the first direction and the size of the pulp discharging slit in the first direction is equal to or slightly smaller than the size of the rice noodle roll cloth; and / or,

[0020] The pulp discharge block can swing between a first position and a second position, and its swing axis is parallel to the first direction. When the pulp discharge block is in the first position, the pulp discharge slot is tilted downward, and when the pulp discharge block is in the second position, the pulp discharge slot is tilted upward.

[0021] Preferably, the rice noodle roll machine further comprises a feeding module, which is disposed on the cover plate and is used to add additives to the rice noodle rolls located below the cover plate; the feeding module comprises:

[0022] A feeding box, arranged on the cover plate;

[0023] A plurality of drawers are arranged up and down, capable of being taken out of or put into the feeding box along a first direction, and used for placing the added materials;

[0024] A push plate, one for each drawer, disposed in the feeding box and capable of moving back and forth along a second direction; a detachable rear box plate is disposed on a side of the feeding box opposite to an initial position of the push plate, and when the drawer is inserted into the feeding box, the drawer is spaced a certain distance from the rear box plate in the second direction;

[0025] A drop opening is provided on the cover plate, and the drop opening corresponds to the feeding box. The added material dropped from the drawer can pass through the drop opening and fall onto the rice noodle roll cloth.

[0026] Preferably, in the second direction, the pulp discharge block is located on the same side as the driven roller relative to the cover plate, and a separation roller is provided on the same side of the bracket as the active roller. The separation roller is rotatably provided on the bracket, and its axis is parallel to the axis of the active roller, and the diameter of the separation roller is equal to the diameter of the active roller; when viewed from above and in the second direction, the axis of the separation roller is farther away from the driven roller than the axis of the active roller; in the up and down directions, the highest point of the separation roller is lower than the highest point of the active roller and higher than the axis of the active roller, and when viewed along the first direction, the separation roller partially overlaps in the up and down directions; the separation roller has a certain gap with the rice noodle cloth, and the separation roller and the active roller have the same rotation direction and the same rotation speed.

[0027] Preferably, it further comprises a receiving module for receiving the rice noodle rolls separated by the separation roller, and the receiving module comprises:

[0028] A mounting plate is provided on the frame, wherein the mounting plate can move back and forth relative to the frame along a second direction;

[0029] a flip plate, flipably disposed on the mounting plate, with a flip axis extending along the first direction;

[0030] The lifting mechanism is a plurality of lifting mechanisms, and the lifting mechanism comprises a lifting mechanism, and the lifting mechanism comprises a lifting mechanism, and the lifting mechanism comprises a lifting mechanism, and a lifting mechanism is a lifting mechanism.

[0031] Preferably, the material splicing module also includes a shearing module, which includes at least one scissors, the number of scissors is one less than that of the blanking module, and the shearing module is arranged between adjacent blanking modules for interrupting the rice noodle rolls; the plane where the scissors are located is perpendicular to the first direction, and each scissors includes a fixed blade and a movable blade, the blade of the fixed blade faces upward and the height of the upper end face of the blade is equal to or slightly lower than the height of the upper surface of the splicing cloth, the movable blade can be opened upward, and the angle at which the movable blade is opened relative to the fixed blade is equal to or greater than 90°.

[0032] Preferably, a blanking module is further included, and the blanking module includes:

[0033] The tray placement bin is where the trays to be used are stacked. A lifting module is provided at the bottom of the tray placement bin 81 to enable the trays to be lifted and lowered.

[0034] A suction cup is provided directly above the dining plate placement bin, and the suction cup can move up and down and can move back and forth along the second direction;

[0035] a transfer plate, disposed on one side of the plate placement bin along the second direction, capable of moving back and forth along the first direction; when viewed along the first direction, the transfer plate is lower than the height of the splicing cloth, and by moving the mounting plate, the transfer plate can be aligned with the portion between the fixing bar and the flip plate in the vertical direction;

[0036] a conveying mechanism disposed on the frame, the conveying mechanism comprising a conveyor belt, wherein when viewed along the first direction, the conveyor belt is located on a side opposite to the suction cup relative to the transfer plate, and the conveyor belt conveys along the second direction;

[0037] A push plate is located between the suction cup and the transfer plate, and the push plate moves synchronously with the suction cup;

[0038] The cutting mechanism is arranged on the frame and at one end of the conveyor belt close to the transfer plate. The cutting mechanism includes a plurality of cutters arranged along a first direction. The blade of each cutter faces downward and extends along a second direction, and is used to cut the rice noodle rolls in the plate.

[0039] Compared with the prior art, the present invention has the following beneficial effects:

[0040] The invention can realize the entire rice noodle roll production process including automatic slurry adding, steam heating, cutting, and material feeding. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 and Figure 2 is a perspective view of the present invention;

[0042] Figure 3 and Figure 4It is a structural diagram of the steam box of the present invention;

[0043] Figure 5 and Figure 6 It is the structural diagram of the conveying module, feeding module and slurry adding module;

[0044] Figure 7 It is an exploded view of the conveying module;

[0045] Figure 8 It is the structural diagram of the slurry adding module;

[0046] Figure 9 This is the structural diagram of the egg adding module;

[0047] Figure 10 is a cross-sectional view of the conveying module;

[0048] Figure 11 It is the structural diagram of the feeding module;

[0049] Figure 12 It is the structural diagram of the fuel injection mechanism;

[0050] Figure 13 and Figure 14 It is the structural diagram of the receiving module and the unloading module;

[0051] Figure 15 It is the structural diagram of the shear module;

[0052] Figure 16 This is the installation structure diagram of the flip plate;

[0053] Figure 17 and Figure 18 This is a schematic diagram of the changes in rice noodle rolls before and after flipping;

[0054] Figure 19 It is an enlarged view of point A;

[0055] Figure 20 It is the structural diagram of the blanking module. DETAILED DESCRIPTION

[0056] The following description is intended to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are merely examples, and those skilled in the art may conceive of other obvious variations.

[0057] like Figure 1-20As shown, an automatic rice noodle roll machine includes a frame 1 and a steam box 3 mounted on the frame 1. A water storage space is formed within the steam box 3. A heating module 31 is disposed at the bottom of the steam box 3 to heat the water in the storage space to form steam. The heating module 31 can utilize existing technology. Steam outlets 32 are disposed on either side of the steam box 3 along a first direction, through which steam in the steam box 3 escapes. Each steam outlet 32 ​​extends a predetermined length along a second direction. The first and second directions are perpendicular to each other and both are horizontal.

[0058] The automatic rice noodle roll machine also includes a conveying module 5, which is used to convey rice slurry and freshly steamed rice noodle rolls along the second direction. The conveying module 5 includes a bracket 51 supported on the frame 1 and located in the positive direction of the steam box 3, an active roller 52 rotatably arranged at one end of the bracket 51 along the second direction, a driven roller 53 rotatably arranged at the other end of the bracket 51 along the second direction, and a rice noodle roll cloth 55 that drives the active roller 52 and the driven roller 53. The axes of the active roller 52 and the driven roller 53 both extend along the first direction, and when the active roller 52 rotates, the rice noodle roll cloth 55 can be rotated. When viewed from above, the steam box 3 is located between the active roller 52 and the driven roller 53 in the second direction, that is, the rice noodle roll cloth 55 spans the steam box 3 in the second direction, which is convenient for operation.

[0059] A cover plate 58 is supported on the bracket 51. The cover plate 58 is located above the rice noodle roll cloth 55 and directly above the steam box 3. In the first direction, the cover plate 58 covers the rice noodle roll cloth 55, allowing the rice noodle roll cloth 55 to move with the rice slurry to directly below the cover plate 58. Steam hoods 521 are provided on both sides of the cover plate 58 along the first direction. The steam hoods 521 and the bracket 51 form a steam inlet 52. The steam inlet 52 communicates with the steam space between the upper and lower rice noodle roll cloths 55. The steam inlet 52 communicates with the steam outlet 32. Steam from the steam box 3 passes through the steam outlet 32 ​​and the steam inlet 52, enters between the two layers of rice noodle roll cloth 55, and then passes through the upper rice noodle roll cloth 55 to steam-heat the rice slurry, thereby producing rice noodle rolls.

[0060] Blocking plates 59 are provided on both sides of the cover plate 58 along the second direction to seal the gap between the cover plate 58 and the upper rice noodle wrap 55, thereby reducing the escape of steam from both sides of the cover plate 58 along the second direction. The blocking plates 59 are fixed to the cover plate 58 by hinges and can be pushed open by an electric push rod 510. The blocking plates 59 can close automatically under the action of their own weight.

[0061] The automatic rice noodle roll machine also includes a slurry adding module 4, which includes a slurry discharging block 44 provided on the frame 1. The slurry discharging block 44 extends along the first direction. A slurry discharging slit 441 is provided on the slurry discharging block 44. The slurry discharging slit 441 extends along the first direction and has a size in the first direction equal to or slightly smaller than the size of the rice noodle roll cloth 55, so as to ensure that the slurry can be spread as evenly and as thinly as possible. Furthermore, the slurry discharging block 44 can swing between a first position and a second position, with its swing axis parallel to the first direction. When the slurry discharging block 44 is in the first position, the slurry discharging slit 441 is tilted downward to facilitate spraying the slurry onto the rice noodle roll cloth 55. When the slurry discharging block 44 is in the second position, the slurry discharging slit 441 is tilted upward to prevent a small amount of slurry from dripping onto the rice noodle roll cloth 55 when slurry is not needed. Preferably, the swing of the slurry discharging block 44 is driven by a first electric push rod 442.

[0062] The slurry adding module 4 also includes a slurry barrel 41 for holding rice slurry, a pump 42, and a reversing valve 43. The pump 42 is arranged on the side of the slurry barrel 41 and close to the bottom of the barrel. The inlet of the pump 42 is connected to the interior of the slurry barrel 41. The reversing valve 43 has a slurry inlet 431 and a slurry outlet 432. The slurry inlet 431 is connected to the outlet of the pump 42 through a pipeline, and the slurry outlet 432 is connected to the inlet of the slurry outlet block 44 through a pipeline. By operating the reversing valve 43 to connect the slurry inlet 431 with the slurry outlet 432, the pump 42 works and can send the rice slurry in the slurry barrel 41 into the slurry outlet block 44 and spray it out from the slurry outlet gap 441. Preferably, the reversing valve 43 also has a reflux port 433, which is connected to the slurry barrel 41 through a pipeline. After completing one slurry discharge, if the slurry in the pipeline is not returned to the slurry barrel 41, the slurry will produce a certain amount of sedimentation in the pipeline. At least a part of the slurry can be returned to the slurry barrel 41 through the reflux port 433.

[0063] Preferably, the rice noodle roll machine further includes a feeding module 6 , which is disposed on the cover plate 58 and is used to add meat and other additives to the rice noodle rolls located below the cover plate 58 .

[0064] The feeding module 6 includes a feeding box 61 and multiple drawers 63. The drawers 63 are arranged vertically and can be loaded into and removed from the feeding box 61 along a first direction. The drawers 63 are used to hold the additives. The feeding module 6 also includes a pusher plate 65, one for each drawer 63. Each pusher plate 65 is positioned within the feeding box 61 and can move back and forth along a second direction. The pusher plates 65 are driven by a drive mechanism consisting of a motor and a screw, with each pusher plate 65 corresponding to a set of drive mechanisms and independently controlled. The motor is positioned outside the feeding box 61 and to one side of the feeding box 61 in the second direction. The feeding box 61 is provided with a removable rear panel 64 on the side opposite the motor. When the drawers 63 are inserted into the feeding box 61, they are spaced a certain distance from the rear panel 64 in the second direction, enabling the pusher plates 65 to push the additives toward the rear panel 64 and, after the additives are pushed out of the drawer, fall out of the drawer. Preferably, a drop opening 510 is provided on the cover plate 58 , and the drop opening 510 corresponds to the feeding box 61 , so that the added materials dropped from the drawer 63 can pass through the drop opening 510 and fall onto the rice noodle roll cloth 55 .

[0065] Preferably, the rice noodle roll machine also includes an egg adding module 9, which includes two transmission shafts 91, a connecting cylinder 92, and two egg adding containers 93. The two transmission shafts 91 extend along the first direction and the axes of the two transmission shafts 91 are on the same straight line. The ends of the two transmission shafts 91 that are away from each other are rotatably supported on the bracket 51, and the ends that are close to each other are rotatably supported on the same connecting cylinder 92. The two egg adding containers 93 are respectively arranged on the two transmission shafts 91, and the two transmission shafts 91 are independently controlled by two motors. When eggs are not needed, the two egg adding containers 93 are opened upward. When eggs are needed, the corresponding motor controls the transmission shaft 91 to rotate, so that one of the egg adding containers 93 is tilted, and the egg liquid is poured on the rice slurry.

[0066] Furthermore, in the second direction, the pulp discharge block 44 is located on the same side of the cover plate 58 as the driven roller 53. In the second direction, a separator roller 57 is provided on the same side of the bracket 51 as the driving roller 52. The separator roller 57 is rotatably mounted on the bracket 51, with its axis parallel to the axis of the driving roller 52 and a diameter equal to that of the driving roller 52. When viewed from above and in the second direction, the axis of the separator roller 57 is farther from the driven roller 53 than the axis of the driving roller 52. In the vertical direction, the highest point of the separator roller 57 is lower than the highest point of the driving roller 52 and higher than the axis of the driving roller 52. When viewed along the first direction, the separator roller 57 partially overlaps in the vertical direction. There is a certain gap between the separating roller 57 and the rice noodle roll cloth 55. When the steamed rice noodle rolls move to the position of the active roller 52 and start to move downward, the rice noodle rolls will fall onto the separating roller 57. The separating roller 57 and the active roller 52 rotate in the same direction and at the same speed. Therefore, on the side where the separating roller 57 and the active roller 52 are close to each other, the active roller 52 moves downward and the separating roller 57 moves upward, so that the separating roller 57 can catch the rice noodle rolls falling from the rice noodle roll cloth 55. The separating roller 57 and the active roller 52 can be driven by the same motor.

[0067] The frame 1 is also provided with an oil spraying mechanism 571 for spraying oil toward the separation roller 57. The oil spraying mechanism 571 is directed toward the separation roller 57, effectively preventing the rice noodle rolls from sticking to the separation roller 57. Furthermore, a separation strip 572 is provided on the frame 1 near the separation roller 57. The separation strip 572 extends along a first direction and contacts or is very close to the separation roller 57, and is used to scrape the rice noodle rolls off the separation roller 57.

[0068] The rice noodle roll machine also includes a receiving module 7 for receiving the rice noodle rolls separated by the separating roller 57. The receiving module 7 includes a mounting plate 74 disposed on the frame 1. The mounting plate 74 is movable relative to the frame 1 in the second direction. The receiving module 7 also includes a flip plate 71 disposed on the mounting plate 74 and a blanking module. The flip plate 71 is flippably mounted on the mounting plate 74, with its flip axis extending along the first direction. The blanking module is disposed on the side of the flip plate 71 facing away from the separating roller 57. There are multiple blanking modules, and the multiple blanking and receiving modules are arranged along the first direction. When the cam 72 is in the second position, the cam 72 is moved away from the turning plate 71 and the distance between the cam 72 and the turning plate 71 is the second predetermined distance, which should be sufficient to prevent the rice noodle rolls on the cam 72 from falling off.

[0069] After the freshly steamed rice rolls are separated by the separating rollers 57, the turning plate 71 is placed horizontally, all the blanking modules are in the first position, and the mounting plate 74 moves to a predetermined position to prepare for receiving the rolls. When the freshly steamed rice rolls reach the receiving cloth 72, the mounting plate 74 simultaneously retreats, evenly placing the rice rolls on the receiving cloth 72 and the turning plate 71. After receiving all the rice rolls, the turning plate 71 flips over, flipping the rice rolls on the turning plate 71 onto the receiving cloth 72, where they are stacked together with the rice rolls already on the receiving cloth 72.

[0070] The splicing module 7 also includes a shearing module, which includes at least one scissors 76. The number of scissors 76 is equal to the number of blanking modules minus one, that is, one less than the blanking module. The shearing module is arranged between adjacent blanking modules to interrupt the rice noodle rolls. The plane where the scissors 76 are located is perpendicular to the first direction. Each scissors 76 includes a fixed blade 761 and a movable blade 762. The blade of the fixed blade 761 faces upward and the height of the upper end surface of the blade is equal to or slightly lower than the height of the upper surface of the splicing cloth 72. The movable blade 762 can be opened upward. The angle at which the movable blade 762 opens relative to the fixed blade 761 is equal to or greater than 90° to ensure that the rice noodle rolls falling onto the splicing cloth 72 are not blocked.

[0071] The rice noodle roll machine also includes a feeding module 8, which includes a plate placement bin 81. The plates 100 to be used are stacked in the plate placement bin 81. A lifting module is provided at the bottom of the plate placement bin 81, which can drive the plates 100 to rise and fall.

[0072] The unloading module 8 also includes a suction cup 82 positioned directly above the tray placement bin 81. The suction cup 82 is movable up and down and can also move back and forth along the second direction. A transfer plate 83 is provided on one side of the tray placement bin 81 along the second direction. The transfer plate 83 can move back and forth along the first direction. When viewed from the first direction, the height of the transfer plate 83 is lower than the height of the splicing cloth 72. By moving the mounting plate 74, the transfer plate 83 can be aligned vertically with the portion between the fixed bar 73 and the flip plate 71. When the mounting block 75 moves from the first position to the second position, the rice noodle rolls on the splicing cloth 72 will fall onto the tray 100 positioned on the transfer plate 83. The transfer plate 83 is driven by a linear module.

[0073] After sucking the tray 100, the suction cup 82 moves upward for a distance, then moves in a second direction toward the transfer plate 83. The transfer plate 83 is pre-positioned. After the suction cup 82 carries the tray 100 onto the transfer plate 83, the tray 100 is lowered. The transfer plate 83, carrying the tray 100, moves to the bottom of different receiving cloths 72 to receive the materials in sequence. This essentially divides the rice noodle rolls into several sections and stacks them on the tray 100.

[0074] The unloading module 8 also includes a conveying mechanism 84 disposed on the frame 1. The conveying mechanism 84 includes a conveyor belt 841. When viewed along the first direction, the conveyor belt 84 is located on the opposite side of the transfer plate 83 from the suction cup 82, and the conveyor belt 841 conveys along the second direction. When the food tray 100 on the transfer plate 83 is finished receiving food and moves to a predetermined position, the suction cup 82 drives the next food tray 100 toward the transfer plate 83. The unloading module 8 also includes a push plate 85. The push plate 85 is located between the suction cup 82 and the transfer plate 83 and moves synchronously with the suction cup 82. When the suction cup 82 moves the next food tray 100 toward the transfer plate 83, the push plate 85 pushes the food tray 100 on the transfer plate 83 onto the conveyor belt 841.

[0075] The unloading module 8 also includes a slitting mechanism 86 mounted on the frame 1. This slitting mechanism 86 is located at one end of the conveyor belt 841 near the transfer plate 83. The slitting mechanism 86 includes multiple cutters 861 arranged along a first direction, with the blade of each cutter 861 facing downward and extending along a second direction. The slitting mechanism 86 is used to cut the rice noodle rolls from the plate 100 for easier consumption. After cutting, the conveyor belt 841 moves a distance along the conveying direction.

[0076] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions merely illustrate the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic rice noodle roll machine, characterized in that: include: frame; A steam box is provided on the frame, wherein a holding space for holding water is formed inside the steam box, and a heating module is provided at the bottom of the steam box for heating the water in the holding space to form water vapor; A conveying module is provided on the frame, and is used to convey the rice slurry to the top of the steam box so as to steam the rice slurry with the steam and remove the steamed rice rolls obtained after the steaming is completed from the top of the steam box; A receiving module is used to receive the freshly steamed rice noodle rolls delivered by the delivery module and arrange the rice noodle rolls into a size that can be placed on a plate; A material unloading module is used to transport the meal tray to receive the prepared rice noodle rolls from the material receiving module; The conveying module comprises: a bracket, supported on the frame and located in the positive direction of the steam box; an active roller rotatably disposed at one end of the bracket along the second direction; A driven roller is rotatably disposed at the other end of the bracket along the second direction, wherein the axes of the driving roller and the driven roller both extend along the first direction; The rice noodle roll cloth is connected to the driving roller and the driven roller, and the driving roller can drive the rice noodle roll cloth to rotate. When viewed from above, the steam box is located between the driving roller and the driven roller in the second direction; In the second direction, a separation roller is provided on the same side of the bracket as the active roller. The separation roller is rotatably provided on the bracket, and its axis is parallel to the axis of the active roller. The diameter of the separation roller is equal to the diameter of the active roller. When viewed from above and in the second direction, the axis of the separation roller is farther away from the driven roller than the axis of the active roller. In the vertical direction, the highest point of the separation roller is lower than the highest point of the active roller and higher than the axis of the active roller. When viewed along the first direction, the separation rollers partially overlap in the vertical direction. There is a certain gap between the separation roller and the rice noodle roll cloth. The separation roller and the active roller have the same rotation direction and the same rotation speed. The receiving module is used to receive the rice noodle rolls separated by the separation roller, and the receiving module includes: A mounting plate is provided on the frame, wherein the mounting plate can move back and forth relative to the frame along a second direction; a flip plate, flipably disposed on the mounting plate, with a flip axis extending along the first direction; and a control panel that is formed on a pair of opposite sides of the present invention and on which the pick-up plate is mounted, wherein the pair is mounted on a pair of opposite sides of the present invention and the control panel is configured to monitor the movement of the pick-up plate when the pick-up plate is in the forward direction and the reverse direction. The material splicing module also includes a shearing module, which includes at least one scissors, and the number of scissors is one less than that of the blanking module. The shearing module is arranged between adjacent blanking modules for cutting the rice noodle rolls; the plane where the scissors are located is perpendicular to the first direction, and each scissors includes a fixed blade and a movable blade. The blade of the fixed blade faces upward and the height of the upper end surface of the blade is equal to or slightly lower than the height of the upper surface of the splicing cloth. The movable blade can be opened upward, and the angle at which the movable blade is opened relative to the fixed blade is equal to or greater than 90°.

2. The automatic rice noodle roll machine according to claim 1, characterized in that: A cover plate is supported on the bracket, and the cover plate is located above the rice noodle roll cloth and directly above the steam box. In a first direction, the cover plate covers the rice noodle roll cloth, and the rice noodle roll cloth can move to directly below the cover plate with the rice slurry.

3. The automatic rice noodle roll machine according to claim 2, characterized in that: Steam outlet holes are respectively provided on both sides of the steam box along the first direction, and water vapor in the steam box escapes from the steam outlet holes; each steam outlet hole extends a certain length along the second direction; the first direction and the second direction are perpendicular to each other and both horizontal; the second direction is parallel to the conveying direction of the conveying module; Steam hoods are respectively provided on both sides of the cover plate along the first direction, and the steam hoods and the bracket form a steam inlet. The steam inlet is connected to the steam space between the rice noodle roll cloth on the upper layer and the rice noodle roll cloth on the lower layer. The steam inlet is connected to the steam outlet. The steam coming out of the steam box passes through the steam outlet and the steam inlet and enters between the two layers of rice noodle roll cloth.

4. The automatic rice noodle roll machine according to claim 2, characterized in that: It also includes a pulping module, which includes: A pulp discharging block is provided on the frame, the pulp discharging block extends along the first direction, a pulp discharging slit is provided on the pulp discharging block, the pulp discharging slit extends along the first direction and the size of the pulp discharging slit in the first direction is equal to or slightly smaller than the size of the rice noodle roll cloth; The pulp discharging block can swing between a first position and a second position, with its swing axis parallel to the first direction. When the pulp discharging block is in the first position, the pulp discharging slit is tilted downward, and when the pulp discharging block is in the second position, the pulp discharging slit is tilted upward. In the second direction, the pulp discharge block is located on the same side as the driven roller relative to the cover plate.

5. The automatic rice noodle roll machine according to claim 2, characterized in that: The rice noodle roll machine further includes a feeding module, which is disposed on the cover plate and is used to add additives to the rice noodle rolls located below the cover plate; the feeding module includes: A feeding box, arranged on the cover plate; A plurality of drawers are arranged up and down, capable of being taken out of or put into the feeding box along a first direction, and used for placing the added materials; A push plate, one for each drawer, disposed in the feeding box and capable of moving back and forth along a second direction; a detachable rear box plate is disposed on a side of the feeding box opposite to an initial position of the push plate, and when the drawer is inserted into the feeding box, the drawer is spaced a certain distance from the rear box plate in the second direction; A drop opening is provided on the cover plate, and the drop opening corresponds to the feeding box. The added material dropped from the drawer can pass through the drop opening and fall onto the rice noodle roll cloth.

6. The automatic rice noodle roll machine according to claim 1, characterized in that: The blanking module includes: A tray storage bin is provided in which trays to be used are stacked. A lifting module is provided at the bottom of the tray storage bin to drive the trays to rise and fall. A suction cup is provided directly above the dining plate placement bin, and the suction cup can move up and down and can move back and forth along the second direction; a transfer plate, disposed on one side of the plate placement bin along the second direction, capable of moving back and forth along the first direction; when viewed along the first direction, the transfer plate is lower than the height of the splicing cloth, and by moving the mounting plate, the transfer plate can be aligned with the portion between the fixing bar and the flip plate in the vertical direction; a conveying mechanism disposed on the frame, the conveying mechanism comprising a conveyor belt, wherein when viewed along the first direction, the conveyor belt is located on a side opposite to the suction cup relative to the transfer plate, and the conveyor belt conveys along the second direction; A push plate is located between the suction cup and the transfer plate, and the push plate moves synchronously with the suction cup; The cutting mechanism is arranged on the frame and at one end of the conveyor belt close to the transfer plate. The cutting mechanism includes a plurality of cutters arranged along a first direction. The blade of each cutter faces downward and extends along a second direction, and is used to cut the rice noodle rolls in the plate.