Rice noodle roll receiving device and rice noodle roll machine having the same

By designing the scraper plate and water-guiding components of the rice noodle roll receiving device, the problem of water droplets dripping in the rice noodle roll machine affecting the taste is solved, the separation of rice noodle rolls and water and the oil spraying treatment are achieved, which improves the eating experience of rice noodle rolls.

CN119366657BActive Publication Date: 2025-09-30GUANGDONG RONGCHUANG KITCHEN EQUIP CO LTD
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Patent Information

Application Number
CN202411427062.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-09-30
Estimated Expiration
2044-10-14

AI Technical Summary

Technical Problem

During the steam heating process of the existing rice noodle roll machine, water droplets on the conveyor belt are scraped onto the receiving tray, affecting the taste of the rice noodle roll.

Method used

A rice noodle roll receiving device is designed, which includes a scraper plate and a water guide component to achieve solid-liquid separation between the conveyor belt and the rice noodle roll. The rice noodle roll is scraped away by the scraper plate and the water guide component is used to guide water droplets to prevent them from dripping into the receiving tray.

Benefits of technology

The effective separation of rice noodle rolls and water is achieved, the edible taste of rice noodle rolls is improved, and the taste of rice noodle rolls is increased through the oil spraying mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a rice noodle roll receiving device and a rice noodle roll machine having the same, comprising a frame, a conveyor belt, and a scraping mechanism. The conveyor belt is provided on the frame and is used to convey rice noodle rolls. The scraping mechanism is provided at the output end of the conveyor belt and comprises: a mounting frame, a scraping plate, and a water diversion assembly. The mounting frame is provided on the frame. The scraping plate is provided on the mounting frame, and its upper end abuts the conveyor belt to scrape the rice noodle rolls off the conveyor belt. The water diversion assembly comprises a water diversion plate and a water receiving plate. The upper surface of the water diversion plate is provided in contact with the lower surface of the scraping plate to drain water from the scraping plate. The water receiving plate is provided below the water diversion plate and is located at the rear side of the upper end of the scraping plate to receive water and avoid rice noodle rolls. The rice noodle roll receiving device of the present application can achieve solid-liquid separation at the rice noodle roll output end of the conveyor belt, thereby improving the edible taste of the rice noodle rolls.
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Description

Technical Field

[0001] The present application relates to the field of rice noodle roll production and processing, and in particular to a rice noodle roll receiving device and a rice noodle roll machine having the same. Background Art

[0002] In the related art, a rice noodle roll machine is an automated device for producing rice noodle rolls. It features a conveyor belt that transports the raw materials for making rice noodle rolls into a steam chamber for heating, thereby producing the rice noodle rolls. A scraper is installed at the end of the conveyor belt to scrape off the rice noodle rolls.

[0003] However, since steam is used to heat the rice noodle rolls during the processing, a large amount of water droplets are contained on the conveyor belt and the rice noodle rolls. When the scraper scrapes the rice noodle rolls off the conveyor belt, the water droplets on the conveyor belt will also be scraped off. These water droplets will drip along the scraper into the rice noodle roll receiving tray, thus affecting the taste of the rice noodle rolls. Summary of the Invention

[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present application proposes a rice noodle roll receiving device that can achieve solid-liquid separation at the rice noodle roll output end of the conveyor belt, thereby improving the edible taste of the rice noodle roll.

[0005] The present invention also provides a rice noodle roll machine having the rice noodle roll receiving device.

[0006] According to the first aspect of the present invention, the rice noodle receiving device includes a frame, a conveyor belt and a scraping mechanism. The conveyor belt is arranged on the frame and is used to convey the rice noodle rolls. The scraping mechanism is arranged at the output end of the conveyor belt and includes: a mounting frame, a scraper plate and a water diversion assembly; the mounting frame is arranged on the frame; the scraper plate is arranged on the mounting frame, and the upper end abuts the conveyor belt to scrape the rice noodle rolls off the conveyor belt; the water diversion assembly includes a water diversion plate and a water receiving plate, the upper surface of the water diversion plate is arranged to fit the lower surface of the scraper plate to drain water from the scraper plate, and the water receiving plate is arranged below the water diversion plate and at the rear side of the upper end of the scraper plate to receive water and avoid the rice noodle rolls.

[0007] The rice noodle roll receiving device according to the embodiment of the present invention has at least the following beneficial effects: the rice noodle roll receiving device comprises a frame, and a conveyor belt and a scraping mechanism respectively arranged on the frame, the conveyor belt is used to convey the rice noodle rolls, the scraping mechanism is located at the output end of the conveyor belt and comprises a mounting frame, a scraping plate and a water diversion assembly, the scraping plate is arranged on the mounting frame and is used to scrape the rice noodle rolls off the conveyor belt, the water diversion assembly is arranged on the frame and is used to guide the water on the conveyor belt and the rice noodle rolls away, thereby realizing solid-liquid separation of the rice noodle rolls and water; specifically, the upper end of the scraping plate abuts against the conveyor belt, so that as the conveyor belt rotates, the rice noodle rolls on the conveyor belt can be scraped away. The rice noodle is scraped off the conveyor belt, and the water diversion assembly includes a water diversion plate and a water receiving plate. The upper end of the water diversion plate is in contact with the lower plate surface of the scraper plate, and the water receiving plate is located at the lower rear side of the upper end of the scraper plate. In this way, when the scraper plate abuts the conveyor belt to scrape the material, the water diversion plate can receive the water on the scraper plate and guide the water to slide onto the water receiving plate. Since the water receiving plate is located at the lower rear side of the upper end of the scraper plate, the water receiving plate can avoid the rice noodle scraped off by the scraper plate and receive the water. Therefore, the rice noodle receiving device of the present application can realize the solid-liquid separation at the rice noodle output end of the conveyor belt, thereby improving the edible taste of the rice noodle.

[0008] According to some embodiments of the present invention, the water diversion assembly also includes a water guide plate, which is located below the water diversion plate. The end of the water guide plate close to the water diversion plate is inclined downward and connected to the lower plate surface of the water diversion plate. A water guide groove is formed between the water guide plate and the water diversion plate. The side of the water guide plate close to the water diversion plate is provided with a plurality of water holes arranged in sequence along its own length direction, and the end of the water guide plate away from the water diversion plate is connected to the upper end of the water receiving plate.

[0009] According to some embodiments of the present invention, the rice noodle receiving device also includes an elastic component, the mounting frame is rotatably connected to the frame, the elastic component connects the frame and the mounting frame, and is used to provide an elastic force to make the scraper plate abut against the conveyor belt; wherein, under the action of external force, the mounting frame can be rotated to make the scraper plate move away from the conveyor belt.

[0010] According to some embodiments of the present invention, the frame is further provided with a water receiving tray and a material receiving tray. The water receiving plate is tilted backward from top to bottom, and the middle part is bent backward to receive water from the lower end of the water receiving plate. The water receiving tray is located below the water receiving plate and is arranged on the rear side, and is used to receive water from the water receiving plate. The material receiving tray is arranged directly below the upper end of the scraper plate to receive rice noodle rolls. The material receiving tray is located in front of the water receiving tray.

[0011] According to some embodiments of the present invention, an oil spraying mechanism is also included, which includes an oil barrel and a first driving mechanism. The oil barrel includes a barrel body for containing oil and an oil cover provided on the barrel body. The oil cover is provided with a nozzle and a pressure rod. One end of the pressure rod is hinged to the oil cover. The first driving mechanism includes a first driving member and an eccentric assembly. The eccentric assembly is connected to the output end of the first driving member and can rotate under the drive of the first driving member to periodically press the other end of the pressure rod to make the nozzle spray oil. The nozzle is arranged toward the output end of the conveyor belt and the receiving tray to spray oil onto the falling rice noodle rolls.

[0012] The rice noodle roll machine according to the second embodiment of the present invention includes the rice noodle roll receiving device of the first embodiment of the present invention, and also includes a slurry discharge mechanism and a slurry scraper. The slurry discharge mechanism includes a first three-way pipe, the first joint of the first three-way pipe is used to connect the rice slurry, the second joint of the first three-way pipe is used to connect the egg slurry, and the third joint of the first three-way pipe is arranged toward the input end of the conveyor belt to spray a mixture of rice slurry and egg slurry onto the conveyor belt. The scraper is arranged on the front side of the first three-way pipe and above the input end of the conveyor belt. The scraper is used to scrape the mixed slurry on the conveyor belt.

[0013] The rice noodle roll machine according to the embodiment of the present invention has at least the following beneficial effects: the rice noodle roll machine includes the rice noodle roll receiving device in the embodiment of the first aspect, and also includes a slurry discharging mechanism and a slurry scraping frame. The slurry scraping frame is arranged on the frame and is located above the input end of the conveyor belt. The slurry discharging mechanism includes a first three-way pipe arranged on the rear side of the slurry scraping frame. Two of the joints of the first three-way pipe are used to respectively connect the egg slurry and the rice slurry, and the other joint is aligned with the conveyor belt to be used for spraying the mixed slurry of the egg slurry and the rice slurry mixed evenly in the first three-way pipe onto the conveyor belt, and the slurry scraping frame is used to smooth the mixed slurry on the conveyor belt, so that the rice noodle rolls that come out not only have the rice slurry and the egg slurry mixed evenly, but also have a uniform thickness, thereby improving the taste.

[0014] According to some embodiments of the present invention, the scraper frame includes a frame body, and a scraper plate, side blocks, a first adjustment mechanism and a second adjustment mechanism respectively arranged on the frame body. The frame body is arranged on the frame. The first adjustment mechanism connects the scraper plate and the frame body, and is used to adjust the height of the scraper plate on the conveyor belt. The side blocks are located on both sides of the scraper plate to limit the width of the rice noodle rolls. The second adjustment mechanism connects the side blocks and the frame body, and is used to adjust the distance between the two side blocks.

[0015] According to some embodiments of the present invention, a steam generator and a steam isolation assembly are further included. The steam isolation assembly includes a workbench, a steam baffle and a steam cover. The middle part of the workbench is concave to accommodate the passage of the conveyor belt. The steam baffle is located between the upper conveyor belt and the lower conveyor belt and is used to support the upper conveyor belt. Both sides of the steam baffle are laid on the workbench so that the steam baffle and the workbench together form a first steam chamber with an opening facing upward to align with the upper conveyor belt. The steam cover is arranged on the workbench and located above the upper conveyor belt so that the steam cover and the workbench form a second steam chamber with an opening facing downward to align with the upper conveyor belt. Both sides of the workbench are used to install a first steam injection mechanism located in the first steam chamber and a second steam injection mechanism located in the second steam chamber. The first steam injection mechanism and the second steam injection mechanism are respectively connected to the steam port of the steam generator.

[0016] According to some embodiments of the present invention, a feeding device is also included. The feeding device is arranged above the input end of the conveyor belt and is located on the rear side of the steam isolation assembly, with an exhaust position left between the feeding device and the steam isolation assembly. The feeding device is used to add meat and vegetable materials to the mixed slurry on the conveyor belt. An exhaust fan is provided inside the feeding device, and an air hole is provided at the bottom of the feeding device, so that the airflow generated by the exhaust fan can pass through the air hole and the exhaust position to blow away the steam in the steam isolation assembly.

[0017] According to some embodiments of the present invention, a belt pressing assembly and a driving roller are also included. The belt pressing assembly includes a fixed plate and a pressure wheel rotatably connected to the fixed plate. The conveyor belt is sleeved on the driving roller and is transmission-connected to the driving roller. The pressure wheel is pressed on the side of the conveyor belt away from the driving roller and is used to cooperate with the driving roller to clamp the conveyor belt.

[0018] Additional aspects and advantages of the present application will be given in part in the description below, and in part will become obvious from the description below, or will be learned through practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments, in which:

[0020] Figure 1 A schematic diagram of the overall structure of one embodiment of a rice noodle roll machine according to the second aspect of the present invention;

[0021] Figure 2 for Figure 1 The schematic diagram of the structure of the rice noodle roll machine shown in the figure hides some panels;

[0022] Figure 3 This is a schematic structural diagram of the rice noodle receiving device in the first embodiment of the present invention, with the conveyor belt and part of the frame hidden;

[0023] Figure 4 for Figure 3A schematic structural diagram of another perspective of the rice noodle receiving device with the frame hidden behind it;

[0024] Figure 5 Schematic diagram of the structure of the conveying mechanism in the rice noodle intestinal receiving device according to the first embodiment of the present invention;

[0025] Figure 6 for Figure 5 A partial enlarged view of point A shown in FIG;

[0026] Figure 7 This is a schematic structural diagram of a scraping frame in a rice noodle roll machine according to a second embodiment of the present invention;

[0027] Figure 8 A schematic structural diagram of a steam generator in a rice noodle roll machine according to a second embodiment of the present invention;

[0028] Figure 9 A cross-sectional view of a steam generator in a rice noodle roll machine according to a second embodiment of the present invention;

[0029] Figure 10 for Figure 9 A partial enlarged view of point B shown in FIG;

[0030] Figure 11 A schematic structural diagram of a conveying mechanism and a steam isolation assembly in a rice noodle roll machine according to a second embodiment of the present invention;

[0031] Figure 12 A cross-sectional view of a conveying mechanism and a steam isolation assembly in a rice noodle roll machine according to a second embodiment of the present invention;

[0032] Figure 13 A schematic structural diagram of a steam baffle of a steam isolation assembly in a rice noodle roll machine according to a second embodiment of the present invention;

[0033] Figure 14 A schematic structural diagram of a feeding device in a rice noodle roll machine according to a second aspect of the present invention;

[0034] Figure 15 This is a cross-sectional view of the feeding device in the rice noodle roll machine according to the second embodiment of the present invention.

[0035] Reference numerals:

[0036] Frame 100; arcuate groove 101; exhaust position 102; water receiving tray 110; material receiving tray 120; scraper mechanism 200; mounting frame 210; scraper plate 220; water guide assembly 230; water guide plate 231; water receiving plate 232; water guide plate 233; water hole 234; elastic component 240; conveying mechanism 300; conveyor belt 310; ridge 311; driving roller 320; guide groove 321; belt pressing assembly 330; fixed plate 331; pressing roller 332; oil spraying mechanism 400; oil barrel 410; spray head 411; pressure rod 412; first driving mechanism 420; first driving member 421; eccentric assembly 422; scraper frame 500; first three-way pipe 510; frame body 520; scraper plate 530; side Baffle 540; first regulating mechanism 541; second regulating mechanism 542; steam generator 600; water storage tank 610; auxiliary water tank 620; partition structure 630; baffle 631; through hole 6311; corrugated plate 632; heating tube 640; dry-burning tube 650; steam isolation assembly 700; workbench 710; steam baffle 720; bottom plate 721; baffle 722; support frame 723; steam cover 730; first steam chamber 701; second steam chamber 702; feeding device 800; meat feeding device 810; blanking mechanism 811; pushing mechanism 812; second three-way pipe 813; beating mechanism 814; vegetable feeding device 820; fifth driving member 821; second screw 822; fan 823. DETAILED DESCRIPTION

[0037] The following describes in detail embodiments of the present application. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application and are not to be construed as limiting the present application.

[0038] In the description of this application, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on this application.

[0039] In the description of this application, "several" means more than one, "plurality" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The use of "first" and "second" in the description is solely for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.

[0040] In the description of this application, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in this application based on the specific content of the technical solution.

[0041] In the description of this application, reference to the terms "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of this application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples.

[0042] Reference below Figures 1 to 15 The present invention describes a rice noodle roll receiving device and a rice noodle roll machine having the same according to an embodiment of the present invention.

[0043] like Figures 2 to 4 As shown, the rice noodle receiving device according to the first embodiment of the present invention includes a frame 100, a conveyor belt 310 and a scraper mechanism 200. The conveyor belt 310 is arranged on the frame 100 and is used to convey rice noodle rolls. The scraper mechanism 200 is arranged at the output end of the conveyor belt 310 and includes: a mounting frame 210, a scraper plate 220 and a water diversion assembly 230; the mounting frame 210 is arranged on the frame 100; the scraper plate 220 is arranged on the mounting frame 210, and the upper end abuts the conveyor belt 310, so as to scrape the rice noodle rolls off the conveyor belt 310; the water diversion assembly 230 includes a water diversion plate 231 and a water receiving plate 232, the upper plate surface of the water diversion plate 231 is arranged to fit the lower plate surface of the scraper plate 220, so as to drain water from the scraper plate 220, and the water receiving plate 232 is arranged below the water diversion plate 231, and is located on the rear side of the upper end of the scraper plate 220, so as to receive water and avoid rice noodle rolls.

[0044] It can be understood that this rice noodle roll receiving device includes a frame 100, and a conveyor belt 310 and a scraper mechanism 200 respectively arranged on the frame 100. The conveyor belt 310 is used to convey rice noodle rolls. The scraper mechanism 200 is located at the output end of the conveyor belt 310 and includes a mounting frame 210, a scraper plate 220 and a water diversion component 230. The scraper plate 220 is arranged on the mounting frame 210 and is used to scrape the rice noodle rolls off the conveyor belt 310. The water diversion component 230 is arranged on the frame 100 and is used to guide the water on the conveyor belt 310 and the rice noodle rolls out to achieve solid-liquid separation of the rice noodle rolls and water; specifically, the upper end of the scraper plate 220 abuts against the conveyor belt 310, so that as the conveyor belt 310 rotates, the rice noodle rolls on the conveyor belt 310 can be scraped off the conveyor belt 310 10. The water diversion assembly 230 includes a water diversion plate 231 and a water receiving plate 232. The upper end of the water diversion plate 231 is in contact with the lower surface of the scraper plate 220, and the water receiving plate 232 is located at the lower rear side of the upper end of the scraper plate 220. In this way, when the scraper plate 220 abuts against the conveyor belt 310 to scrape the material, the water diversion plate 231 can receive the water on the scraper plate 220 and guide the water to slide onto the water receiving plate 232. Since the water receiving plate 232 is located at the lower rear side of the upper end of the scraper plate 220, the water receiving plate 232 can avoid the rice noodle rolls scraped off by the scraper plate 220 and receive the water. Therefore, the rice noodle roll receiving device of the present application can realize the solid-liquid separation at the rice noodle roll output end of the conveyor belt 310, thereby improving the edible taste of the rice noodle rolls.

[0045] Among them, the scraper plate 220 can be set vertically or inclined, and the upper end abuts the conveyor belt 310, so that the water on the conveyor belt 310 or the rice noodle rolls can be guided down along the scraper plate 220, and the upper surface of the water guide plate 231 is in contact with the lower surface of the scraper plate 220, so that the water guided down from the scraper plate 220 can continue to be guided along the water guide plate 231 until it slides down to the water receiving plate 232.

[0046] It is understood that the water guide assembly 230 further includes a water guide plate 233, which is located below the water guide plate 231. The end of the water guide plate 233 close to the water guide plate 231 is tilted downward and connected to the lower plate surface of the water guide plate 231. A water guide groove is formed between the water guide plate 233 and the water guide plate 231. The side of the water guide plate 233 close to the water guide plate 231 is provided with a plurality of water holes 234 arranged in sequence along its length direction. The end of the water guide plate 233 away from the water guide plate 231 is connected to the upper end of the water receiving plate 232. For example, Figures 3 and 4As shown, in this embodiment, the water diversion assembly 230 also includes a water guide plate 233 connecting the water diversion plate 231 and the water receiving plate 232. The water guide plate 233 is inclined downward from one end connected to the water receiving plate 232 to the end connected to the water diversion plate 231, and a water guide groove is formed at the connection between the water guide plate 233 and the water receiving plate 232. The connection between the water guide plate 233 and the water diversion plate 231 is provided with a plurality of water holes 234 along its own length direction. Therefore, whether it is water flowing into the water guide groove along the water receiving plate 232 or water directly dripping onto the water guide plate 233 on the water receiving plate 232, it can flow out from the water hole 234 of the water guide groove. The water hole 234 is located at the lower rear side of the upper end of the scraper plate 220, thereby realizing the separation of the scraped rice noodle rolls and water.

[0047] It is understood that the rice noodle roll receiving device further includes an elastic component 240, the mounting frame 210 is rotatably connected to the frame 100, the elastic component 240 connects the frame 100 and the mounting frame 210, and is used to provide an elastic force to make the scraper plate 220 abut against the conveyor belt 310; wherein, under the action of an external force, the mounting frame 210 can rotate to make the scraper plate 220 away from the conveyor belt 310. For example, Figures 3 and 4 As shown, in this embodiment, an elastic component 240 is further provided between the mounting frame 210 and the frame 100. In the absence of external force, the mounting frame 210 can make the upper end of the scraper plate 220 abut against the conveyor belt 310 under the elastic force of the elastic component 240. Under the action of external force, the mounting frame 210 can be rotated along the frame 100, so that the scraper plate 220 is away from the conveyor belt 310, thereby facilitating the cleaning of the inside of the scraper mechanism 200. At this time, the elastic component 240 will also undergo elastic deformation as the mounting frame 210 rotates.

[0048] Specifically, the middle portion of the mounting frame 210 is hinged to the frame 100, the upper end of the mounting frame 210 abuts the conveyor belt 310, and the lower end of the mounting frame 210 is connected to the frame 100 via an elastic component 240. The frame 100 is provided with an arcuate groove 101, and the lower end of the mounting frame 210 can slide along the arcuate groove 101. During use, in the absence of external force, the lower end of the mounting frame 210 can be tightened by the elastic force of the elastic component 240 until the upper end of the scraper plate 220 abuts the conveyor belt 310. Under the action of external force, the mounting frame 210 is rotated, which can move the upper end of the scraper plate 220 away from the conveyor belt 310. At the same time, the lower end of the mounting frame 210 rotates along the arcuate groove 101, and the elastic component 240 is also deformed, thereby creating a certain distance between the scraper mechanism 200 and the conveyor belt 310, making it easier for users to clean the interior of the scraper mechanism 200, thereby maintaining the hygiene and safety of the rice noodle roll receiving device.

[0049] It is understood that the frame 100 is further provided with a water receiving tray 110 and a material receiving tray 120. The water receiving plate 232 is tilted backward from top to bottom, and the middle portion is bent backward to receive water from the lower end of the water receiving plate 232. The water receiving tray 110 is located below the water receiving plate 232 and is arranged on the rear side thereof, and is used to receive water from the water receiving plate 232. The material receiving tray 120 is located directly below the upper end of the scraping plate 220 to receive rice noodle rolls. The material receiving tray 120 is located in front of the water receiving tray 110. For example, Figures 3 and 4 As shown, in this embodiment, a receiving tray 120 is provided directly below the upper end of the scraper plate 220, so as to receive the rice noodle rolls scraped off by the scraper plate 220, and a water receiving tray 110 is provided on the rear side of the lower end of the water receiving plate 232, so as to receive the water received by the scraping mechanism 200. The water receiving tray 110 is located on the rear side of the receiving tray 120, so as to realize the separate reception of rice noodle rolls and water, avoid interference, and realize solid-liquid separation.

[0050] Specifically, the water receiving tray 110 is inclined from front to back, and a through hole is provided on the rear side of the material receiving tray 120 so that the water received by the water receiving tray 110 can flow backward and then flow down along the through hole.

[0051] It is understandable that it also includes an oil spraying mechanism 400, which includes an oil barrel 410 and a first driving mechanism 420. The oil barrel 410 includes a barrel body for containing oil and an oil cover provided on the barrel body. The oil cover is provided with a spray head 411 and a pressure rod 412. One end of the pressure rod 412 is hinged to the oil cover. The first driving mechanism 420 includes a first driving member 421 and an eccentric assembly 422. The eccentric assembly 422 is connected to the output end of the first driving member 421 and can rotate under the drive of the first driving member 421 to periodically press the other end of the pressure rod 412 to make the spray head 411 spray oil. The spray head 411 is set toward the output end of the conveyor belt 310 and the receiving tray 120 to spray oil to the falling rice noodle rolls. For example, Figures 3 and 4 As shown, in this embodiment, the oil injection mechanism 400 includes an oil barrel 410 and a first driving mechanism 420. When in use, the first driving member 421 in the first driving mechanism 420 drives the eccentric assembly 422 to rotate, and the eccentric member in the eccentric assembly 422 intermittently presses the pressure rod 412 on the oil cover of the oil barrel 410 during the rotation. After one end of the pressure rod 412 is pressed down, the gas presses the oil in the barrel out of the nozzle, and the nozzle sprays the oil evenly on the rice noodle rolls. The nozzle is aligned with the bottom of the output end of the conveyor belt 310, so that the nozzle can spray the oil evenly on the falling rice noodle rolls. The rice noodle rolls after oil spraying fall onto the receiving tray 120, thereby avoiding adhesion between the rice noodle rolls and improving the taste of the rice noodle rolls.

[0052] Specifically, the eccentric assembly 422 includes a connecting member, an eccentric member and a roller. The connecting member is connected to the output end of the first driving member 421, the eccentric member is connected to the connecting member, and the eccentric member is rotated and connected to the roller at one end deviating from the connecting member. Therefore, during the rotation of the eccentric assembly 422, while the roller presses the pressure rod 412, there is rolling friction between the roller and the pressure rod 412, thereby reducing the wear on the pressure rod 412 and reducing energy consumption.

[0053] like Figure 1 、 Figure 5-Figure 15 As shown, the rice noodle roll machine according to the second embodiment of the present invention includes the rice noodle roll receiving device as in the above-mentioned first embodiment, and also includes a slurry discharge mechanism and a scraper frame 500. The slurry discharge mechanism includes a first three-way pipe 510. The first joint of the first three-way pipe 510 is used to connect the rice slurry, and the second joint of the first three-way pipe 510 is used to connect the egg slurry. The third joint of the first three-way pipe 510 is arranged toward the input end of the conveyor belt 310 to spray a mixture of rice slurry and egg slurry onto the conveyor belt 310. The scraper frame 500 is arranged on the front side of the first three-way pipe 510 and is located above the input end of the conveyor belt 310. The scraper frame 500 is used to scrape the mixed slurry on the conveyor belt 310.

[0054] It is understood that, for example, Figure 7 As shown, in this embodiment, this rice noodle roll machine includes the rice noodle roll receiving device in the first aspect embodiment, and also includes a slurry discharging mechanism and a scraper frame 500. The scraper frame 500 is arranged on the frame 100 and is located above the input end of the conveyor belt 310. The slurry discharging mechanism includes a first three-way pipe 510 arranged on the rear side of the scraper frame 500. Two of the joints of the first three-way pipe 510 are used to respectively connect the egg slurry and the rice slurry, and the other joint is aligned with the conveyor belt 310 to be used for spraying the mixed slurry of the egg slurry and the rice slurry mixed evenly in the first three-way pipe 510 onto the conveyor belt 310, and the scraper frame 500 is used to smooth the mixed slurry on the conveyor belt 310, so that the rice noodle rolls that come out are not only evenly mixed with the rice slurry and the egg slurry, but also have a uniform thickness, thereby improving the taste.

[0055] It is understood that the scraper frame 500 includes a frame body 520, and a scraper plate 530, a side block 540, a first adjustment mechanism 541, and a second adjustment mechanism 542 respectively provided on the frame body 520. The frame body 520 is provided on the frame 100. The first adjustment mechanism 541 connects the scraper plate 530 and the frame body 520 and is used to adjust the height of the scraper plate 530 on the conveyor belt 310. The side blocks 540 are located on both sides of the scraper plate 530 to limit the width of the rice noodle rolls. The second adjustment mechanism 542 connects the side blocks 540 and the frame body 520 and is used to adjust the distance between the two side blocks 540. For example, Figure 7As shown, in this embodiment, the mixed slurry is leveled by the scraper plate 530, and the side blocks 540 located on both sides of the scraper plate 530 are located above the conveyor belt 310 to limit the width direction of the mixed slurry. The first adjustment mechanism 541 provided between the scraper plate 530 and the frame 520 can adjust the height of the scraper plate 530, thereby adjusting the distance between the scraper plate 530 and the conveyor belt 310, and then adjusting the thickness of the rice noodle rolls, and the second adjustment mechanism 542 provided between the side block 540 and the scraper frame 500 can adjust the distance between the two side blocks 540, thereby adjusting the width of the rice noodle rolls; therefore, the scraper plate of the present application can flexibly adjust the thickness and width of the processed rice noodle rolls, thereby improving the flexibility of the use of the scraper frame 500 and meeting the diversified needs of production and processing.

[0056] Specifically, the first adjustment mechanism 541 includes a gantry structure, a first fastener and a second fastener. The gantry structure includes a horizontal member and two vertical members. The bottoms of the two vertical members are respectively fixed to the frame 520. The horizontal member connects the tops of the two vertical members and is located above the frame 520. The scraper plate 530 is provided with a connecting portion, which is loosely fitted on the two vertical members and is located between the horizontal member and the frame 520. The second fastener is fixed to the scraper plate 530 and is provided with an internal thread. The first fastener passes through the horizontal member and the top is limited above the horizontal member. The bottom of the first fastener is threadedly connected to the second fastener.

[0057] When adjusting the height of the scraper plate 530, it can be regarded as that the gantry structure is fixed on the frame body 520, that is, the height difference between the horizontal member and the frame body 520 remains unchanged, and when the first fastener is rotated toward the second fastener, the top of the first fastener is limited to the upper end face of the horizontal member, so the height of the first fastener remains unchanged, and the second fastener will move upward, and the connection part fixed to the second fastener will also move upward, thereby increasing the height of the scraper plate 530; conversely, when the height of the scraper plate 530 needs to be lowered, the first fastener needs to be rotated in the direction away from the second fastener.

[0058] It is understandable that the first adjustment mechanism 541 further includes an elastic member, which is sleeved on the vertical member and located between the horizontal member and the connecting portion, and is used to provide an elastic force that causes the horizontal member and the connecting portion to move away from each other, so that the top of the first fastener is always pressed against the horizontal member. The connecting portion is sleeved on the two vertical members and can slide vertically along the two vertical members. Therefore, by arranging the elastic member between the connecting portion and the horizontal member, and the elastic member is sleeved on the vertical member, not only can the horizontal member always be abutted against the top of the first fastener, but the flexibility of the scraper 530 can also be improved. When the scraper 530 encounters a slightly raised rice slurry or egg slurry, it can be appropriately lifted flexibly, thereby improving the flexibility of the entire device and avoiding damage to the scraper 530.

[0059] It can be understood that the steam generator 600 and the steam isolation assembly 700 are also included. The steam isolation assembly 700 includes a workbench 710, a steam baffle 720 and a steam cover 730. The middle of the workbench 710 is concave to accommodate the conveyor belt 310 passing through. The steam baffle 720 is located between the upper conveyor belt 310 and the lower conveyor belt 310 and is used to support the upper conveyor belt 310. Both sides of the steam baffle 720 are set on the workbench 710 so that the steam baffle 720 and the workbench 710 together constitute The first steam chamber 701 with an opening facing upwards to align with the upper conveyor belt 310 is covered with a steam cover 730 and is located above the upper conveyor belt 310, so that the steam cover 730 and the workbench 710 form a second steam chamber 702 with an opening facing downwards to align with the upper conveyor belt 310. The two sides of the workbench 710 are used to install a first steam spray mechanism located in the first steam chamber 701 and a second steam spray mechanism located in the second steam chamber 702. The first steam spray mechanism and the second steam spray mechanism are respectively connected to the steam port of the steam generator 600. For example, Figures 11 to 13 As shown, in this embodiment, the steam isolation assembly 700 includes the steam baffle 720 in the above-mentioned first embodiment, the workbench 710, and the steam cover 730. A first steam spray mechanism and a second steam spray mechanism for spraying high-temperature steam are provided on both sides of the workbench 710. The first steam spray mechanism and the second steam spray mechanism are respectively connected to the steam port of the steam generator 600. The steam cover 730 is covered on the workbench 710 and cooperates with the workbench 710 to form a second steam chamber 702 located above the upper conveyor belt 310, so that the second steam spray mechanism can steam the rice rolls on the upper conveyor belt 310 from above; and the steam baffle 720 and the workbench 710 can form a first steam chamber 701 located between the upper conveyor belt 310 and the lower conveyor belt 310, so that the first steam spray mechanism can perform high-temperature steam heating on the bottom of the upper conveyor belt 310 from below to assist in steaming the rice rolls, thereby not only improving the efficiency of steaming the rice rolls, but also improving the taste of the rice rolls.

[0060] Specifically, the steam baffle 720 includes: a bottom plate 721, a partition 722 and a support frame 723. The bottom plate 721 is used to prevent the steam from diffusing to the lower conveyor belt 310; the partitions 722 are respectively arranged at the front and rear ends of the bottom plate 721 to prevent the steam from diffusing to the two ends of the conveyor belt 310; the support frame 723 is arranged on the bottom plate 721, and the support frame 723 extends in the front and rear directions and is located between the front and rear partitions 722 to support the upper conveyor belt 310, thereby avoiding the middle part of the conveyor belt 310 from completely collapsing, affecting the uniformity and taste of the rice slurry.

[0061] Among them, the top surface of the bottom plate 721 is composed of inclined surfaces that are inclined downward to both sides. This allows the water droplets formed by steam on the bottom plate 721 to slide down to both sides along the inclined plates, thereby facilitating centralized drainage. Water guide grooves connecting the inclined surfaces are provided on both sides of the bottom plate 721. The water guide grooves extend along the front-to-back direction of the bottom plate 721 and are open at both ends. A first sealing strip is provided on the top of the partition 722 for abutting the bottom of the upper conveyor belt 310, and a second sealing strip is provided on both sides of the partition 722 for abutting the two sides of the rice noodle roll machine workbench 710. The first sealing strip is provided with a guide groove for guiding the rotation of the conveyor belt 310.

[0062] Specifically, the steam cover 730 includes a cover body and flexible rubber plates attached to the front and rear ends of the cover body. The cover body, rubber plates, and both sides of the workbench 710 together form the second steam chamber 702. One side of the steam cover 730 is hinged to the workbench 710, and the other side has a handle on the upper end.

[0063] Specifically, the workbench 710 includes a bottom partition 722 and two convex structures located on either side of the bottom partition 722, creating a concave center portion of the workbench 710 to accommodate the conveyor belt 310. The two convex structures are used to mount a first steam injection mechanism and a second steam injection mechanism, respectively. The top surfaces of the two convex structures are each provided with a first boss on the side facing away from each other, forming a supporting surface on the side facing toward each other. A third sealing strip is provided on either side of the bottom of the steam cover 730. One side of the steam cover 730 is hinged to the first boss, and the third sealing strip abuts the supporting surface. A second boss is provided on the two sides facing away from each other of the bottom partition 722, and the second boss is used to support the steam baffle 720.

[0064] It is understandable that if Figure 8-10 As shown, steam generator 600 includes a water tank 610 and a secondary water tank 620. The water tank 610 is provided with a plurality of heating tubes 640, a baffle assembly, and a plurality of dry-burning tubes 650, arranged from bottom to top. The bottom of the water tank 610 is provided with a plurality of water inlets, and the top of the water tank 610 is provided with a steam outlet. The baffle assembly includes a baffle structure 630 that allows only water vapor to pass through and blocks water. The secondary water tank 620 is connected to the water tank 610 through the water inlets and is used to connect to an external water source. The baffle assembly includes a baffle 631 and a plurality of corrugated plates 632 arranged side by side on the baffle 631. The baffle 631 is provided with a plurality of through-holes 6311. The corrugated plates 632 are arranged vertically, and gaps are formed between adjacent corrugated plates 632 to allow only water vapor to pass through.

[0065] It is understandable that a feeding device 800 is also included. The feeding device 800 is located above the input end of the conveyor belt 310 and at the rear side of the steam isolation assembly 700, with an exhaust position 102 left between the feeding device 800 and the steam isolation assembly 700. The feeding device 800 is used to add meat and vegetable materials to the mixed slurry on the conveyor belt 310. An exhaust fan is provided inside the feeding device 800, and an air hole is provided at the bottom of the feeding device 800 so that the air flow generated by the exhaust fan can pass through the air hole and the exhaust position 102 and blow away the steam in the steam isolation assembly 700. For example, Figures 14 and 15 As shown, in this embodiment, the feeding device 800 is used to add meat and vegetable materials to the mixed slurry on the conveyor belt 310, and an exhaust position 102 is left between the feeding device 800 and the steam isolation component 700, so that the exhaust fan in the feeding device 800 can blow the air flow through the air hole and the exhaust position 102 to the steam isolation component 700, thereby preventing the high-temperature steam generated by the steam isolation component 700 from affecting the feeding device 800, and avoiding the high temperature from affecting the quality of the meat and vegetable materials.

[0066] Specifically, the feeding device 800 includes at least one meat feeding device 810 and at least one vegetable feeding device 820 disposed to the side of the meat feeding device 810. The meat feeding device 810 includes a blanking mechanism 811, a pushing mechanism 812, a second three-way pipe 813, and a beating mechanism 814. The blanking mechanism 811 includes a feeding barrel and a scraping assembly. The scraping assembly includes a second driving member and a scraping module connected to the output end of the second driving member. The scraping assembly includes at least one scraper, which includes a connecting rod and a pressure plate connected to the end of the connecting rod away from the second driving member. The second driving member is disposed at the feed inlet at the upper end of the feeding barrel. The connecting rod extends along the depth direction of the feeding barrel. The pressure plate is inclined, with one side abutting the inner wall of the feeding barrel to scrape and press the meat material downward. The feeding barrel includes an upper barrel portion and a lower barrel portion connected to the bottom of the upper barrel portion. The inner diameter of the upper barrel portion is consistent from top to bottom, while the inner diameter of the lower barrel portion gradually decreases from top to bottom. The scraper assembly includes a first scraper, a second scraper and a third scraper with increasing lengths. The first scraper and the second scraper respectively abut against different heights of the inner wall of the upper barrel, and the third scraper abuts against the inner wall of the lower barrel.

[0067] The pushing mechanism 812 includes a third driving member and a first screw. The first interface of the second three-way pipe 813 is connected to the discharge port. The pushing mechanism 812 is installed through the second interface of the second three-way pipe 813. The first screw can be driven by the third driving member to push the meat in the second three-way pipe 813 out of the third interface of the second three-way pipe 813. The beating mechanism 814 includes a fourth driving member and a scraper. The side of the scraper is located near the third interface of the second three-way pipe 813. The output end of the fourth driving member is connected to the scraper and is used to drive the scraper to rotate to knock the meat out of the third interface of the second three-way pipe 813.

[0068] It should be understood that the vegetable supply device 820 includes a vegetable supply box, a discharging mechanism and a fan 823. The upper and lower ends of the vegetable supply box are respectively formed with an inlet and a discharge port. The discharging mechanism includes a fifth driving member 821 and a second screw 822. The second screw 822 is inserted into the vegetable supply box. The output end of the fifth driving member 821 is connected to the second screw 822 and is used to drive the second screw 822 to rotate to push out the vegetables. The size of the interior of the vegetable supply box gradually decreases from top to bottom and is provided with at least one inclined surface. The fan 823 is provided at the top of the vegetable supply box and is arranged toward the inclined surface to assist in blowing off the vegetables.

[0069] It is understood that it also includes a belt pressing assembly 330 and a driving roller 320. The belt pressing assembly 330 includes a fixed plate 331 and a pressing wheel 332 rotatably connected to the fixed plate 331. The conveyor belt 310 is sleeved on the driving roller 320 and is in transmission connection with the driving roller 320. The pressing wheel 332 is pressed on the side of the conveyor belt 310 away from the driving roller 320 and is used to cooperate with the driving roller 320 to clamp the conveyor belt 310. For example, Figures 5 and 6 As shown, in this embodiment, the rice noodle roll machine includes a conveying mechanism 300, which includes a conveyor belt 310, a driving roller 320 and a belt pressing assembly 330. The pressure wheel 332 of the belt pressing assembly 330 cooperates with the driving roller 320 to clamp the conveyor belt 310, thereby reducing the slippage of the conveyor belt 310 and improving the continuity of the rice noodle roll conveying by the conveying mechanism 300.

[0070] Specifically, the inner circle of the conveyor belt 310 is provided with a ridge 311 for guidance, and the driving roller 320 is provided with a guide groove 321 along the outer periphery. The ridge 311 is adapted to the guide groove 321, thereby reducing the risk of the conveyor belt 310 running off the track and improving the effectiveness of the conveyor belt 310 in conveying rice noodle rolls.

[0071] The embodiments of the present application have been described in detail above with reference to the accompanying drawings. However, the present application is not limited to the above embodiments. Various modifications can be made within the scope of knowledge possessed by ordinary technicians in the relevant technical field without departing from the purpose of the present application. In addition, the embodiments of the present application and the features of the embodiments can be combined with each other unless there is a conflict.

Claims

1. A rice noodle roll receiving device, characterized in that: The machine comprises a frame, a conveyor belt and a scraping mechanism. The conveyor belt is provided on the frame and is used to convey rice noodle rolls. The scraping mechanism is provided at the output end of the conveyor belt and comprises: A mounting frame, provided on the frame; a scraper plate, provided on the mounting frame, with its upper end abutting against the conveyor belt, for scraping off the rice noodle rolls on the conveyor belt; The water diversion assembly includes a water diversion plate and a water receiving plate. The upper surface of the water diversion plate is arranged in contact with the lower surface of the scraper plate to divert water from the scraper plate. The water receiving plate is arranged below the water diversion plate and at the rear side of the upper end of the scraper plate to receive water and avoid the rice noodle rolls. The water diversion assembly further includes a water guide plate, the water guide plate being located below the water diversion plate, the end of the water guide plate close to the water diversion plate being inclined downward and connected to the lower plate surface of the water diversion plate, a water guide groove being formed between the water guide plate and the water diversion plate, a side of the water guide plate close to the water diversion plate being provided with a plurality of water holes sequentially arranged along its length direction, and an end of the water guide plate away from the water diversion plate being connected to the upper end of the water receiving plate; The frame is also provided with a water receiving tray and a material receiving tray. The water receiving plate is tilted backward from top to bottom, and the middle part is bent backward to receive water from the lower end of the water receiving plate. The water receiving tray is located below the water receiving plate and is arranged on the rear side to receive water from the water receiving plate. The material receiving tray is arranged directly below the upper end of the scraper plate to receive rice noodle rolls. The material receiving tray is located in front of the water receiving tray.

2. The rice noodle roll receiving device according to claim 1, characterized in that: It also includes an elastic component, the mounting bracket is rotatably connected to the frame, the elastic component connects the frame and the mounting bracket, and is used to provide an elastic force to make the scraper plate abut against the conveyor belt; wherein, under the action of external force, the mounting bracket can be rotated to make the scraper plate move away from the conveyor belt.

3. The rice noodle roll receiving device according to claim 1, characterized in that: It also includes an oil spraying mechanism, which includes an oil barrel and a first driving mechanism. The oil barrel includes a barrel body for containing oil and an oil cover provided on the barrel body. The oil cover is provided with a nozzle and a pressure rod. One end of the pressure rod is hinged to the oil cover. The first driving mechanism includes a first driving member and an eccentric assembly. The eccentric assembly is connected to the output end of the first driving member and can rotate under the drive of the first driving member to periodically press the other end of the pressure rod to make the nozzle spray oil. The nozzle is arranged toward the output end of the conveyor belt and the receiving tray to spray oil onto the falling rice noodle rolls.

4. A rice noodle roll machine, characterized in that: It includes a rice noodle receiving device as described in any one of claims 1 to 3 above, and also includes a slurry discharging mechanism and a slurry scraping frame, the slurry discharging mechanism includes a first tee, the first joint of the first tee is used to connect the rice slurry, the second joint of the first tee is used to connect the egg slurry, the third joint of the first tee is arranged toward the input end of the conveyor belt, so as to spray a mixture of rice slurry and egg slurry onto the conveyor belt, the scraping frame is arranged on the front side of the first tee, and is located above the input end of the conveyor belt, and the scraping frame is used to scrape the mixed slurry on the conveyor belt.

5. The rice noodle roll machine according to claim 4, characterized in that: The scraper frame includes a frame body, and a scraper plate, side blocks, a first adjustment mechanism and a second adjustment mechanism respectively arranged on the frame body. The frame body is arranged on the machine frame. The first adjustment mechanism connects the scraper plate and the frame body, and is used to adjust the height of the scraper plate on the conveyor belt. The side blocks are located on both sides of the scraper plate to limit the width of the rice noodle rolls. The second adjustment mechanism connects the side blocks and the frame body, and is used to adjust the distance between the two side blocks.

6. The rice noodle roll machine according to claim 4, characterized in that: It also includes a steam generator and a steam isolation assembly, which includes a workbench, a steam baffle and a steam cover. The middle part of the workbench is concave to accommodate the conveyor belt passing through. The steam baffle is located between the upper conveyor belt and the lower conveyor belt and is used to support the upper conveyor belt. Both sides of the steam baffle are laid on the workbench so that the steam baffle and the workbench together form a first steam chamber with an opening facing upward to align with the upper conveyor belt. The steam cover is provided on the workbench and located above the upper conveyor belt so that the steam cover and the workbench form a second steam chamber with an opening facing downward to align with the upper conveyor belt. Both sides of the workbench are used to install a first steam spray mechanism located in the first steam chamber and a second steam spray mechanism located in the second steam chamber. The first steam spray mechanism and the second steam spray mechanism are respectively connected to the steam port of the steam generator.

7. The rice noodle roll machine according to claim 6, characterized in that: It also includes a feeding device, which is arranged above the input end of the conveyor belt and on the rear side of the steam isolation component, with an exhaust position left between the feeding device and the steam isolation component. The feeding device is used to add meat and vegetable materials to the mixed slurry on the conveyor belt. An exhaust fan is provided inside the feeding device, and an air hole is provided at the bottom of the feeding device so that the airflow generated by the exhaust fan can pass through the air hole and the exhaust position to blow away the steam in the steam isolation component.

8. The rice noodle roll machine according to claim 4, characterized in that: It also includes a belt pressing assembly and a driving roller. The belt pressing assembly includes a fixed plate and a pressing wheel rotatably connected to the fixed plate. The conveyor belt is sleeved on the driving roller and is transmission-connected to the driving roller. The pressing wheel is pressed on the side of the conveyor belt away from the driving roller and is used to cooperate with the driving roller to clamp the conveyor belt.

Citation Information

Patent Citations

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