Commercial ramen machine

By designing a commercial ramen machine containing kneading, calendering and forming parts, the existing ramen machine has solved the problems of poor toughness and difficulty in commercialization, and achieved efficient and automated production and good taste ramen.

CN115918692BActive Publication Date: 2025-07-11QINGDAO HAIKE YONGJIA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202211208145.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-30
Publication Date
2025-07-11
Estimated Expiration
2042-09-30

AI Technical Summary

Technical Problem

The existing ramen machines lack repeated kneading and drawing processes, resulting in poor toughness, poor taste, and difficulty in achieving commercial production, and low manual production efficiency.

Method used

A commercial ramen machine is designed, including a face, a calender and a molding part. The face sheet molding, floccoming or a face sheet composite are realized through a pair of face rolls, and the guide part and a control panel are equipped to realize automated production.

Benefits of technology

It improves the efficiency of ramen making, ensures the toughness and taste of ramen, realizes the commercialization of ramen machines, reduces the equipment footprint and is convenient to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a commercial ramen machine, which includes a frame and a dough kneading part, a hopper part, a rolling part and a forming part installed on the frame. The dough kneading part is used for forming dough; the hopper part is used for placing dough; the rolling part is used for rolling the dough, and sheet forming, sheet flocculation compounding or sheet compounding can be realized through a pair of dough rollers; the forming part is used for outputting the sheet; a guiding part is arranged between the rolling part and the forming part, and this guiding part is used to realize the mutual independence between rolling and forming; the dough kneading part, the rolling part and the forming part are all connected to a control panel. The advantages of the present invention are: 1. The noodle-making functions such as dough kneading, rolling and forming are integrally designed; the operation is convenient and the floor area of the equipment is reduced. 2. Sheet forming, sheet flocculation compounding and sheet compounding can be manually realized; the rolling times and compound rolling forms can be manually adjusted independently according to process requirements. 3. Automatic cutting, and the ramen length specification within one meter can be arbitrarily adjusted.
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Description

Technical Field

[0001] The present invention relates to a commercial ramen machine, belonging to the technical field of food machinery. Background Art

[0002] Ramen is a traditional pasta with unique local flavor in urban and rural areas of China, and is deeply loved by the general public. However, making ramen requires strong technical skills. To make good ramen, correct techniques must be mastered, that is, preventing dehydration during dough kneading, ensuring uniform shaking of the noodle strip, and making the noodle strip uniform, round and smooth.

[0003] Existing ramen machines use forms such as strong extrusion or screw extrusion to extrude dough from a mold to make ramen. The Chinese invention patent with the publication number CN211458684U discloses a "ramen machine". Its dough kneading part kneads dough through the settings of a dough barrel, a kneading rod and a stirring rod, and the kneaded dough is extruded again and conveyed to the noodle pulling part through the setting of a transmission part. As the kneaded dough is continuously conveyed, the kneaded dough can be discharged through the noodle outlet groove of the inner barrel and the noodle outlet holes of the outer barrel in sequence; although this method improves the noodle making efficiency, it lacks the process of repeated kneading and pulling, and strong extrusion of the dough will damage the gluten network inside the dough, resulting in poor toughness and taste of the made ramen. In addition, cleaning the mold is also quite troublesome, and the problem of commercialization of the ramen machine cannot be solved.

[0004] At present, most ramen restaurants in China still make ramen manually to ensure the taste of ramen. The efficiency is extremely low, the waiting time for customers is long, and the production capacity is also greatly limited; there are also ramen restaurants that purchase ready-made noodles and store them refrigerated to ensure the timeliness of serving, but this will affect the taste of the noodles, and the problems of freshness preservation of the ready-made noodles and losses in case of poor sales need to be considered.

[0005] Therefore, there is an urgent need to develop a device that can realize mechanized production of ramen, which can not only improve the production efficiency of ramen, but also ensure the toughness and taste of ramen, and realize the commercialization of the ramen machine. Summary of the Invention

[0006] To overcome the defects of the prior art, the present invention provides a commercial ramen machine. The technical solution of the present invention is as follows:

[0007] A commercial ramen machine includes a frame and a dough kneading part, a material storage part, a rolling part and a forming part installed on the frame. The dough kneading part is used for forming noodle flocs; the material storage part is used for placing noodle flocs or noodle sheets; the rolling part is used for rolling noodle flocs or noodle sheets, and a pair of noodle pressing rollers can be used to realize the formation of noodle sheets, the compounding of noodle sheets and flocs or the compounding of noodle sheets; the forming part is used for outputting long strip-shaped noodle products; a guiding part is arranged between the rolling part and the forming part, and this guiding part is used to realize the mutual independence of rolling and forming; the dough kneading part, the rolling part and the forming part are all connected to a control panel.

[0008] The described dough mixing part includes a pot body, a left side plate, a right side plate and a bottom plate. The bottom plate is arranged in a U shape. The left side plate and the right side plate are respectively arranged on both sides of the bottom plate. The left side plate, the right side plate and the bottom plate form a U-shaped frame. A vertical plate is arranged at the rear end of the top of the U-shaped frame, and a dough trough is slidably installed on the vertical plate. A stirring shaft transversely passes through the pot body. The stirring shaft is rotatably installed on the left side plate and the right side plate through bearings. Several radial stirring rods are installed on the stirring shaft in the pot body. One end of the stirring shaft extends out of the pot body and is installed with a dough mixing driven sprocket. A dough mixing motor is installed under the bottom plate. A dough mixing driving sprocket is installed on the output shaft of the dough mixing motor. The dough mixing driving sprocket is connected with the dough mixing driven sprocket through a dough mixing chain.

[0009] The described material storage part includes a front storage plate, a rear storage plate, a guide plate, a connecting plate and a vertical baffle. A distance is formed between the front storage plate and the rear storage plate and they are arranged parallel to each other. One side between the front storage plate and the rear storage plate is connected together through the connecting plate, and a guide plate is installed on the other side. The guide plate is arranged to incline obliquely downward. The vertical baffle is installed on the connecting plate. Short roller grooves and tall roller grooves are sequentially arranged on both the front storage plate and the rear storage plate. The two short roller grooves correspond to each other, and a medium dough rolling roller is rotatably installed on the two short roller grooves. The two tall roller grooves correspond to each other, and a rear dough rolling roller is rotatably installed on the two tall roller grooves. A side baffle is installed at the lower part of both the front storage plate and the rear storage plate. The side baffle is far away from the guide plate. The two side baffles, the guide plate and the vertical baffle enclose a blanking port corresponding to the rolling part.

[0010] The calendering section includes a base frame, a front wall panel and a rear wall panel, the front wall panel and the rear wall panel are installed on the base frame, the rear wall panel and the front wall panel are parallel to each other and form a gap, a fixed pressing roller and an adjustable pressing roller are rotatably installed on the top of the front wall panel and the rear wall panel, the adjustable pressing roller is arranged adjacent to the fixed pressing roller; a calendering gear is installed on one end of the fixed pressing roller after passing through the front wall panel, and a calendering driven sprocket is installed on the other end after passing through the rear wall panel, a calendering motor is installed on the base frame, a main sprocket is installed on the output shaft of the calendering motor, and a calendering gear is installed on the other end of the fixed pressing roller after passing through the rear wall panel. The rear part of the rear wall panel is provided with a forming sprocket connected to the end of the transition shaft rotatably supported between the front wall panel and the rear wall panel, and the calendering driven sprocket, the main sprocket and the forming sprocket are connected through a calendering chain transmission; a slider bearing is rotatably installed at both ends of the adjusting pressing roller, and each slider bearing is respectively embedded in the boss of the front wall panel and the rear wall panel; a calendering adjusting gear meshing with the calendering gear is installed after one end of the adjusting pressing roller passes through the front wall panel, and an adjusting unit is fixedly connected to each of the slider bearings; the front wall panel and the rear wall panel at the lower end of the fixed pressing roller are connected to each other. The scraping unit is arranged between the front wall plate and the rear wall plate at the lower end of the adjustable noodle pressing roller, and the two scraping units are arranged in a staggered manner; a partition plate is arranged between the two scraping units, and the partition plate is rotatably installed between the front wall plate and the rear wall plate, and a handle is installed after one end of the partition plate passes through the front wall plate, and by toggling the handle, the tip of the partition plate is reciprocated between the scraping plate under the adjustable noodle pressing roller and the scraping plate under the fixed noodle pressing roller; a partition shaft is rotatably arranged on the partition plate, and the partition shaft rotates between the front wall plate and the rear wall plate on one side of the partition shaft A transition roller and a slide shaft are installed, the slide shaft is located below the transition roller, a straight slide is installed on the slide shaft, and a right-angle slide is installed on the straight slide; a roller bracket is installed on the side of the front wall panel and the rear wall panel away from the silo part, a V-shaped groove for placing the front rolling roller is formed between the roller bracket and the front wall panel and the rear wall panel, and a mounting groove for placing the spare rolling roller is provided on the top of the roller bracket; a space for the dough belt to pass through is formed between the front rolling roller and the fixed pressing roller, and when the fixed pressing roller rotates, the front rolling roller is driven to rotate through the dough belt.

[0011] Each of the adjustment units includes an adjustment seat and an adjustment screw, a threaded hole is provided on the adjustment seat, the adjustment screw is arranged in a horizontal direction, one end of the adjustment screw is connected to the threaded hole, and the other end is installed at the output hole of the reducer, and a reducer is installed on the front wall panel and the rear wall panel; the input shafts of the two reducers are rigidly connected together; wherein, an adjustment hand wheel is also installed on the input shaft of the reducer located on the front wall panel, and the movement of the pressing roller is driven by the rotation of the adjustment hand wheel.

[0012] Each of the scraping units includes a scraping shaft, a scraping connecting plate and a scraping panel. The scraping shaft is rotatably installed between the front wall panel and the rear wall panel. The scraping panel is installed on the scraping shaft through the scraping connecting plate. The scraping panel of one scraping unit is in contact with the fixed pressing roller; the scraping panel of the other scraping unit is in contact with the adjustable pressing roller; each of the side guard plates is tightly fitted with the fixed pressing roller and the adjustable pressing roller.

[0013] The forming part includes an anvil shaft, a cutting knife shaft and a cutting knife. The anvil shaft and the cutting knife shaft are rotatably installed between the front wall plate and the rear wall plate below the dividing shaft. The cutting knife is installed on the cutting knife shaft, and the blade of the cutting knife contacts the anvil shaft. After one end of the cutting knife shaft passes through the rear wall plate, a cutting driven sprocket and a cutting driving gear are installed in sequence. The cutting driven sprocket is connected to the cutting main sprocket of the output shaft of the cutting motor through a cutting chain transmission, and the cutting motor is installed on the rear wall plate. The cutting driving gear is meshed with the cutting driven gear, and the cutting driven gear is installed on the anvil shaft. A forming knife is installed between the front wall plate and the rear wall plate at the lower part of the anvil shaft. The power of the forming knife is provided by a forming slave gear, and the forming slave gear is meshed with the forming main gear, and the forming driving gear is installed on the transition shaft. The transition shaft is rotatably installed between the front wall plate and the rear wall plate. A gathering shaft is also arranged between the front wall plate and the rear wall plate, and a gathering plate is installed on the gathering shaft.

[0014] The advantages of the present invention are:

[0015] 1. The dough making functions such as dough kneading, calendering and forming are integrated into one design; it is easy to operate and reduces the floor space occupied by the equipment.

[0016] 2. It can manually realize dough sheet forming, sheet-wadding compounding, and dough sheet compounding; the calendering times and compound calendering forms can be manually adjusted according to the process requirements.

[0017] 3. Automatic cutting, the length of noodles can be adjusted within one meter. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the main structure of the present invention.

[0019] Figure 2 yes Figure 1 Schematic diagram of the structure of the neutral face.

[0020] Figure 3 yes Figure 1 Neutral top view of the face.

[0021] Figure 4 yes Figure 1 Schematic diagram of the structure of the middle silo.

[0022] Figure 5 is Figure 1 Schematic diagram of the connection relationship between the medium calendering section and the forming section.

[0023] Figure 6 is Figure 5 Rear view.

[0024] Figure 7 Schematic diagram of the sheet dough calendering and forming of the present invention.

[0025] Figure 8 Schematic diagram of the sheet floc composite calendering of the present invention.

[0026] Figure 9 Schematic diagram of the sheet dough composite calendering of the present invention.

[0027] Figure 10 Schematic diagram of the formation of filamentous pulled noodles of the present invention. Specific embodiments

[0028] The present invention will be further described below in conjunction with specific embodiments, and the advantages and features of the present invention will become clearer as the description progresses. However, these embodiments are exemplary only and do not constitute any limitation to the scope of the present invention. Those skilled in the art should understand that the details and forms of the technical solutions of the present invention can be modified or replaced without departing from the spirit and scope of the present invention, but such modifications and replacements all fall within the protection scope of the present invention.

[0029] See Figures 1 to 10 , the present invention relates to a commercial noodle pulling machine, including a frame and a dough mixing section, a hopper section, a calendering section and a forming section installed on the frame. The dough mixing section is used for the formation of dough flocs; the hopper section is used for placing dough flocs or sheet dough; the calendering section is used for calendering dough flocs or sheet dough, and sheet dough formation, sheet floc composite or sheet dough composite can be realized through a pair of dough rollers; the forming section is used for the output of long strip-shaped noodle products; a guiding section is arranged between the calendering section and the forming section, and this guiding section is used to realize the mutual independence of calendering and forming; the dough mixing section, the calendering section and the forming section are all connected to a control panel.

[0030] The kneading portion includes a pot body 1, a left side plate 7, a right side plate 8 and a bottom plate 11. The bottom plate 11 is U-shaped, and a left side plate 7 and a right side plate 8 are respectively arranged on both sides of the bottom plate 11. The left side plate 7, the right side plate 8 and the bottom plate 11 form a U-shaped frame; a vertical plate 9 is arranged at the top and rear end of the U-shaped frame, and a dough floc trough 10 is slidably installed on the vertical plate 9. A stirring shaft 2 passes horizontally through the pot body 1, and the stirring shaft 2 is rotatably installed on the left side plate 7 and the right side plate 8 through bearings. Several radial stirring rods 201 are installed on the stirring shaft 2 in the pot body 1, and a dough driven sprocket 3 is installed after one end of the stirring shaft 2 extends out of the pot body 1. A dough motor 6 is installed at the lower part of the bottom plate 11, and a dough driving sprocket 5 is installed on the output shaft of the dough motor 6. The dough driving sprocket 5 is connected to the dough driven sprocket 3 through a dough chain 4.

[0031] The silo part includes a front silo plate 12, a rear silo plate 13, a guide plate 14, a connecting plate 15 and a vertical baffle plate 16. A gap is formed between the front silo plate 12 and the rear silo plate 13, and they are arranged parallel to each other. One side of the front silo plate 12 and the rear silo plate 13 are connected together by a connecting plate 15, and a guide plate 14 is installed on the other side. The guide plate 14 is inclined downward. The vertical baffle plate 16 is installed on the connecting plate 15. The short roller groove 1 is sequentially arranged on the front silo plate 12 and the rear silo plate 13. 7 and a high roller groove 18, the two short roller grooves 17 correspond to each other, and a middle roll roller 19 is rotatably installed on the two short roller grooves 17; the two high roller grooves 18 correspond to each other, and a rear roll roller 191 is rotatably installed on the two high roller grooves 18; a side baffle 20 is installed at the lower part of the front warehouse plate 13 and the rear warehouse plate 13, and the side baffle 20 is away from the guide plate 14, and the two side baffles 20, the guide plate 14 and the vertical baffle 16 surround a feed port corresponding to the calendering part.

[0032] The calendering section includes a base frame 25, a front wall panel 21 and a rear wall panel 22. The front wall panel 21 and the rear wall panel 22 are installed on the base frame 25. The rear wall panel 22 is parallel to the front wall panel 21 and forms a gap between them. A fixed pressing roller 23 and an adjustable pressing roller 24 are rotatably installed on the top of the front wall panel 21 and the rear wall panel 22. The adjustable pressing roller 24 is arranged adjacent to the fixed pressing roller 23. One end of the fixed pressing roller 23 passes through the front wall panel 21 and is installed with a calendering gear 25, and the other end passes through the rear wall panel 22 and is installed with a calendering driven sprocket 26. A calendering motor 36 is installed on the base frame 35, and a main sprocket 28 is installed on the output shaft of the calendering motor 36. A forming sprocket 27 is provided at the rear of the rear wall panel 22, which is connected to the end of the transition shaft 60 rotatably supported between the front wall panel and the rear wall panel. The calendering driven sprocket 26, the main sprocket 28 and the forming sprocket 27 are connected by a calendering chain 29; a slider bearing 30 is rotatably installed at both ends of the adjusting pressing roller 24, and each slider bearing 30 is respectively embedded in the boss of the front wall panel 21 and the rear wall panel 22; a calendering adjusting gear 38 meshing with the calendering gear 25 is installed after one end of the adjusting pressing roller 24 passes through the front wall panel 21, and each slider bearing 30 is fixedly connected with an adjusting unit; the front wall panel and the rear wall panel 2 at the lower end of the fixed pressing roller 23 are connected to each other. 2, and between the front wall panel 21 and the rear wall panel 22 at the lower end of the adjusting noodle pressing roller 24, the scraping unit is arranged, and the two scraping units are arranged in a staggered manner; a partition plate 43 is arranged between the two scraping units, and the partition plate 43 is rotatably installed between the front wall panel 21 and the rear wall panel 22, and a handle 48 is installed after one end of the partition plate 43 passes through the front wall panel 21, and the handle 48 is turned to make the tip of the partition plate 43 reciprocate between the scraping panel 41 under the adjusting noodle pressing roller 24 and the scraping panel 41 under the fixed noodle pressing roller 23; a partition shaft is rotatably arranged on the partition plate, and a partition plate is rotatably installed between the front wall panel 21 and the rear wall panel 22 on one side of the partition shaft 42 A transition roller 47 and a slide shaft 44, wherein the slide shaft 44 is located below the transition roller 47, a straight slide 45 is installed on the slide shaft 44, and a right-angle slide 46 is installed on the straight slide 45; a roller bracket 63 is installed on the side of the front wall panel 21 and the rear wall panel 22 away from the silo portion, a V-shaped groove for placing the front rolling roller 192 is formed between the roller bracket 63 and the front wall panel 21 and the rear wall panel 22, and a mounting groove for placing the spare rolling roller 193 is provided on the top of the roller bracket 63; a space for the dough belt to pass through is formed between the front rolling roller 192 and the fixed pressing roller 23, and when the fixed pressing roller 23 rotates, the front rolling roller 19 is driven to rotate through the dough belt.

[0033] Each of the adjustment units includes an adjustment seat 31 and an adjustment screw 32. A threaded hole is provided on the adjustment seat 31. The adjustment screw 32 is arranged in the horizontal direction. One end of the adjustment screw 32 is connected to the threaded hole, and the other end is installed at the output hole of the reducer 34. A reducer 34 is installed on the front wall panel 21 and the rear wall panel 22; the input shafts of the two reducers 34 are rigidly connected together; wherein, an adjustment hand wheel 37 is also installed on the input shaft of the reducer 34 located on the front wall panel 21, and the movement of the pressing roller 24 is driven by the rotation of the adjustment hand wheel 37.

[0034] Each of the scraping units includes a scraping shaft 39, a scraping connecting plate 40 and a scraping panel 41. The scraping shaft 39 is rotatably installed between the front wall panel 21 and the rear wall panel 22. The scraping panel 41 is installed on the scraping shaft 39 through the scraping connecting plate 40. The scraping panel 41 of one scraping unit is in contact with the fixed pressing roller 23; the scraping panel 41 of the other scraping unit is in contact with the adjustable pressing roller 24; each of the side baffles 20 is tightly fitted with the fixed pressing roller 23 and the adjustable pressing roller 24.

[0035] The forming part includes an anvil shaft 51, a cutter shaft 49 and a cutter 50. The anvil shaft 51 and the cutter shaft 49 are rotatably installed between the front wall panel 21 and the rear wall panel 22 below the dividing shaft 42. The cutter 50 is installed on the cutter shaft 49, and the blade of the cutter 50 is in contact with the anvil shaft 51; one end of the cutter shaft 49 passes through the rear wall panel 22 and is successively installed with a cutting driven sprocket 52 and a cutting driving gear 56. The cutting driven sprocket 52 is connected to the cutting main sprocket 54 of the output shaft of the cutting motor 55 through a cutting chain 53. The cutting motor 55 is installed on the rear wall panel 22. ; The cutting active gear 56 is meshed with the cutting driven gear 57, and the cutting driven gear 57 is installed on the anvil shaft 51. A forming knife is installed between the front wall panel 21 and the rear wall panel 22 at the lower part of the anvil shaft 51. The power of the forming knife is provided by a forming slave gear 62. The forming slave gear 62 is meshed with the forming main gear 61, and the forming active gear 61 is installed on the transition shaft 60; the transition shaft 60 is rotatably installed between the front wall panel 21 and the rear wall panel 22; a collection shaft 58 is also arranged between the front wall panel 21 and the rear wall panel 22, and a collection plate 59 is installed on the collection shaft 58.

[0036] The working principle of the present invention is:

[0037] Mixing process: Place the pot body 1 with its mouth facing upwards, pour an appropriate amount of flour, start the mixing motor 6, and drive the stirring shaft 2 to rotate at a preset speed through the transmission of the main mixing sprocket 5, mixing chain 4, and driven mixing sprocket 3. During the rotation, add an appropriate amount of water as needed to evenly mix the flour and water. After the mixing is completed, rotate the pot body 1 to an angle suitable for removing the dough flakes, and manually remove the mixed dough flakes and place them in the dough flake trough 10. Slide the left end opening of the dough flake trough 10 to the inside of the U-shaped frame composed of the front bin plate 12, rear bin plate 13, and guide plate 14 for the next step of noodle making process.

[0038] Rolling process: Rotate the adjusting handwheel 37 to adjust the pressure rollers 23 and adjustable pressure roller 24 to an appropriate distance; move the handle 48 to position A; manually push the mixed dough flakes in the dough flake trough 10 to the hopper section so that its discharge opening is always filled with dough flakes; start the rolling motor 36, and through the action of chain drive, gear drive, etc., make the pressure roller 23 ( Figure 7 clockwise), adjustable pressure roller 24 ( Figure 7 counterclockwise) rotate in opposite directions, and the dough rolling roller at the V-shaped angle rotates counterclockwise ( Figure 7 ). When the dough flakes are pressed into a sheet and slide down from the left side of the partition plate 43, manually pull the sheet around the transition roller 47, pass through the dough rolling roller 19 and the pressure roller 23, and wind it counterclockwise around the dough rolling roller for one circle and then let go to form the sheet.

[0039] Place the rolled sheet at the low groove roller 17 station ( Figure 8 ), and perform sheet-flake compounding according to the above steps. When operating, pay attention to rotating the adjusting handwheel 37 in advance to adjust to the required sheet thickness.

[0040] Place the rolled sheets at the low groove roller 17 station and high groove roller 18 station respectively ( Figure 9 ), and perform sheet compounding according to the above steps. When operating, pay attention to rotating the adjusting handwheel 37 in advance to adjust to the required sheet thickness.

[0041] Place the rolled sheet at the high groove roller 18 station ( Figure 10 ); move the handle 48 to position B; start the rolling motor 36, and through the action of chain drive, gear drive, etc., make the pressure roller 23 ( Figure 7 clockwise), adjustable pressure roller 24 ( Figure 7 counterclockwise) rotate in opposite directions; start the cutting motor 55, and through the action of chain drive, gear drive, etc., make the cutting board shaft 51 ( Figure 10 clockwise), cutter 50 ( Figure 10 counterclockwise) rotate in opposite directions; adjust the speed of the cutting motor 55 to obtain the required length specification. When the sheet slides down from the right side of the partition plate 43 to the right side of the cutting board shaft 51, the sheet cut by the cutter 50 in each revolution enters the forming knife to form long strip-shaped noodle products and slides down to the aggregate plate 59 for manual collection.

[0042] As described above, it is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes should be covered within the protection scope of the present invention.

Claims

1. A commercial ramen machine, characterized in that, It includes a frame and components installed on the frame, namely a dough mixing part, a hopper part, a rolling part and a forming part. The dough mixing part is used for forming dough flocs; the hopper part is used for placing dough flocs or dough sheets; the rolling part is used for rolling dough flocs or dough sheets, and dough sheet forming, sheet floc composite or dough sheet composite can be realized through a pair of dough pressing rollers; the forming part is used for outputting long strip-shaped flour products; a guiding part is arranged between the rolling part and the forming part, and this guiding part is used to make the rolling and forming independent of each other; the dough mixing part, the rolling part and the forming part are all connected to the control panel; The dough mixing part includes a pot body, a left side plate, a right side plate and a bottom plate. The bottom plate is arranged in a U shape, and the left side plate and the right side plate are respectively arranged on both sides of the bottom plate. The left side plate, the right side plate and the bottom plate form a U-shaped frame; a vertical plate is arranged at the rear end of the top of the U-shaped frame, and a dough floc groove is slidably installed on the vertical plate; a stirring shaft horizontally passes through the pot body, and the stirring shaft is rotatably installed on the left side plate and the right side plate through bearings. Several radial stirring rods are installed on the stirring shaft in the pot body. One end of the stirring shaft extends out of the pot body and is installed with a driven sprocket for dough mixing. A dough mixing motor is installed under the bottom plate, and a driving sprocket for dough mixing is installed on the output shaft of the dough mixing motor. The driving sprocket for dough mixing and the driven sprocket for dough mixing are connected by a dough mixing chain; The hopper part includes a front hopper plate, a rear hopper plate, a guide plate, a connecting plate and a vertical baffle. A space is formed between the front hopper plate and the rear hopper plate and they are arranged parallel to each other; one side between the front hopper plate and the rear hopper plate is connected together by the connecting plate, and a guide plate is installed on the other side, and the guide plate is inclined obliquely downward; the vertical baffle is installed on the connecting plate; short roller grooves and high roller grooves are sequentially arranged on both the front hopper plate and the rear hopper plate. The two short roller grooves correspond to each other, and a middle rolling surface roller is rotatably installed on the two short roller grooves; the two high roller grooves correspond to each other, and a rear rolling surface roller is rotatably installed on the two high roller grooves; side baffles are installed at the lower parts of the front hopper plate and the rear hopper plate respectively. The side baffles are far away from the guide plate, and the two side baffles, the guide plate and the vertical baffle enclose a blanking port corresponding to the rolling part.

2. The commercial ramen machine according to claim 1, characterized in that, The calendering part includes a base frame, a front wall panel and a rear wall panel, the front wall panel and the rear wall panel are installed on the base frame, the rear wall panel and the front wall panel are parallel to each other and form a gap, a fixed pressing roller and an adjustable pressing roller are rotatably installed on the top of the front wall panel and the rear wall panel, the adjustable pressing roller is arranged adjacent to the fixed pressing roller; a calendering gear is installed on one end of the fixed pressing roller after passing through the front wall panel, and a calendering driven sprocket is installed on the other end after passing through the rear wall panel, a calendering motor is installed on the base frame, and a main sprocket is installed on the output shaft of the calendering motor. The rear part of the rear wall panel is provided with a forming sprocket connected to the end of the transition shaft rotatably supported between the front wall panel and the rear wall panel, and the calendering driven sprocket, the main sprocket and the forming sprocket are connected through a calendering chain transmission; a slider bearing is rotatably installed at both ends of the adjusting pressing roller, and each slider bearing is respectively embedded in the boss of the front wall panel and the rear wall panel; a calendering adjusting gear meshing with the calendering gear is installed after one end of the adjusting pressing roller passes through the front wall panel, and an adjusting unit is fixedly connected to each of the slider bearings; the front wall panel and the rear wall panel at the lower end of the fixed pressing roller A scraping unit is arranged between the front wall plate and the rear wall plate at the lower end of the adjustable noodle pressing roller, and the two scraping units are arranged in a staggered manner; a partition plate is arranged between the two scraping units, and the partition plate is rotatably installed between the front wall plate and the rear wall plate, and a handle is installed after one end of the partition plate passes through the front wall plate, and by toggling the handle, the tip of the partition plate is reciprocated between the scraping plate under the adjustable noodle pressing roller and the scraping plate under the fixed noodle pressing roller; a partition shaft is rotatably arranged on the partition plate, and a partition plate is rotatably installed between the front wall plate and the rear wall plate on one side of the partition shaft A transition roller and a slide shaft are installed, the slide shaft is located below the transition roller, a straight slide is installed on the slide shaft, and a right-angle slide is installed on the straight slide; a roller bracket is installed on the side of the front wall panel and the rear wall panel away from the silo part, a V-shaped groove for placing the front noodle roller is formed between the roller bracket and the front wall panel and the rear wall panel, and a mounting groove for placing the spare noodle roller is provided on the top of the roller bracket; a space for the noodle belt to pass is formed between the front noodle roller and the fixed noodle pressing roller, and when the fixed noodle pressing roller rotates, the front noodle roller is driven to rotate through the noodle belt.

3. The commercial ramen machine according to claim 2, characterized in that, Each of the adjustment units includes an adjustment seat and an adjustment screw, a threaded hole is provided on the adjustment seat, the adjustment screw is arranged in a horizontal direction, one end of the adjustment screw is connected to the threaded hole, and the other end is installed at the output hole of the reducer, and a reducer is installed on the front wall panel and the rear wall panel; the input shafts of the two reducers are rigidly connected together; wherein, an adjustment hand wheel is also installed on the input shaft of the reducer located on the front wall panel, and the movement of the pressing roller is driven by the rotation of the adjustment hand wheel.

4. The commercial ramen machine according to claim 2, wherein, Each of the scraping units includes a scraping shaft, a scraping connecting plate and a scraping panel. The scraping shaft is rotatably installed between the front wall panel and the rear wall panel. The scraping panel is installed on the scraping shaft through the scraping connecting plate. The scraping panel of one scraping unit is in contact with the fixed pressing roller; the scraping panel of the other scraping unit is in contact with the adjustable pressing roller; each of the side guard plates is tightly fitted with the fixed pressing roller and the adjustable pressing roller.

5. The commercial ramen machine according to claim 3 or 4, characterized in that, The forming part includes an anvil shaft, a cutting knife shaft and a cutting knife. The anvil shaft and the cutting knife shaft are rotatably installed between the front wall plate and the rear wall plate below the dividing shaft. The cutting knife is installed on the cutting knife shaft, and the blade of the cutting knife contacts the anvil shaft. After one end of the cutting knife shaft passes through the rear wall plate, a cutting driven sprocket and a cutting driving gear are installed in sequence. The cutting driven sprocket is connected to the cutting main sprocket of the output shaft of the cutting motor through a cutting chain transmission. The cutting motor is installed on the rear wall plate. The cutting driving gear is meshed with the cutting driven gear, and the cutting driven gear is installed on the anvil shaft. A forming knife is installed between the front wall plate and the rear wall plate at the lower part of the anvil shaft. The power of the forming knife is provided by a forming slave gear, and the forming slave gear is meshed with the forming main gear, and the forming main gear is installed on the transition shaft. The transition shaft is rotatably installed between the front wall plate and the rear wall plate. A gathering shaft is also arranged between the front wall plate and the rear wall plate, and a gathering plate is installed on the gathering shaft.

Citation Information

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