Noodle machine with automatic winding function

By linking the dispersion and recycling mechanism and adjusting the cutting mechanism, the problem of low flour spreading and cutting efficiency in noodle machines is solved, realizing automatic flour spreading and collection, and improving the automation level of noodle machines and the utilization rate of flour.

CN118489711BActive Publication Date: 2025-12-16NINGBO WANSHENG INDAL
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Patent Information

Application Number
CN202410816344.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-12-16
Estimated Expiration
2044-06-24

AI Technical Summary

Technical Problem

Existing noodle machines suffer from inefficiency in flour spreading and noodle cutting, difficulty in cleaning, and flour waste, and are difficult to automate.

Method used

It adopts a linkage dispersing mechanism, a linkage recycling mechanism, and an adjusting cutting mechanism, including a material distribution box, a feeding plate, a material collection scraper, a transmission mechanism, and a cutter, to realize the automatic spreading and collection of flour and the automatic cutting of noodles, avoiding flour sticking and cleaning difficulties.

Benefits of technology

It enables automatic flour spreading and collection, preventing dough from sticking together, reducing manual cleaning workload, and improving the efficiency of noodle cutting and flour utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to noodle machine technical field, specifically is related to a kind of noodle machine with automatic winding function, including machine body, to be used to deliver conveying material a plurality of conveying rollers being arranged on machine body, first extrusion roller is extruded to material, and to drive first extrusion roller rotation rotary driver, and to be used to the even powder of extrusion panel is scattered linkage dispersion mechanism, linkage dispersion mechanism includes material distribution plate and drive powder material plate rotation transmission mechanism, machine body is also provided with to collect excess flour on material linkage recovery mechanism and the adjusting cutting mechanism of material cutting is carried out. The present application is by being provided with material distribution tank and discharging plate and can be realized to dough automatic powdering to prevent adhesion, and it is convenient to the automatic scraping and collection of excess flour, on the one hand, prevent the problem that cake is prone to adhesion in subsequent cutting process, on the other hand, also solve the problem that spilled flour is more difficult to collect and clean.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of noodle machines, in particular to a noodle machine with automatic winding function. BACKGROUND

[0002] In the food processing industry, noodles as a traditional staple food, its production technology has been evolving to meet the high demand of consumers for food quality, taste and production efficiency. The traditional noodle making method is mostly manual or semi-mechanized operation, which not only is inefficient, but also is difficult to ensure the uniformity and taste of noodles. Therefore, with the development of science and technology and the acceleration of people's life pace, the noodle machine with automation and high efficiency has become an important direction of industry development.

[0003] Chinese patent No. CN220024014U discloses a noodle machine, which is provided with a powder scattering part on the conveying mechanism, so that when the segmented noodles are conveyed, the powder scattering part can effectively prevent the noodles from sticking together. The noodles can be conveniently conveyed for subsequent processing without manual powder scattering steps. The efficiency of noodle making is further improved.

[0004] However, the above structure in actual use, through the powder scattering mechanism, the flour is scattered on the conveying belt, and in the long-term use, the flour will gradually accumulate on the conveying belt, and when cleaning the conveying belt, it is more troublesome and laborious, and it is not convenient to cut the noodles into different widths according to the actual production needs. SUMMARY

[0005] In view of the above problems, a noodle machine with automatic winding function is provided, which solves the problems of manual cleaning of the conveying belt and inconvenient cutting of noodles into different widths by using a discharging plate and a material collecting scraper box.

[0006] To solve the problems of the prior art, the present application provides a noodle machine with automatic winding function, which comprises a machine body, a plurality of conveying rollers arranged on the machine body to convey the noodles, a first extrusion roller for extruding the noodles, a rotary driver for driving the first extrusion roller to rotate, and a linkage dispersion mechanism for uniformly scattering the powder on the extruded noodles. The linkage dispersion mechanism comprises a material distribution plate and a transmission mechanism for driving the powder distribution plate to rotate. The machine body is further provided with a linkage recovery mechanism for collecting excess flour on the noodles and an adjustable cutting mechanism for cutting the noodles.

[0007] Preferably, the linkage dispersion mechanism further comprises a material distribution box and a material distribution rotating rod: the material distribution box is arranged on the machine body; and the material distribution rod is rotatably arranged on the material distribution box.

[0008] Preferably, the linkage dispersion mechanism further comprises a discharging plate and a material distribution groove: the discharging plate is rotatably arranged in the machine body; and the powder distribution groove is formed in the discharging plate.

[0009] Preferably, the transmission mechanism comprises a first transmission belt: the first transmission belt is sleeved on the first extrusion roller, and the other end of the first transmission belt is sleeved on the material distribution rotating rod.

[0010] Preferably, the transmission mechanism further comprises a first transmission rod and a second transmission rod: the first transmission rod is rotationally arranged on the machine body; and the second transmission rod is rotationally arranged on the machine body and close to one side of the first transmission rod.

[0011] Preferably, the transmission mechanism further comprises a first rotating roller and a second rotating roller: the first rotating roller is rotationally arranged on the machine body; and the second rotating roller is rotationally arranged on the machine body and close to one side of the first rotating roller.

[0012] Preferably, the linkage recovery mechanism comprises a piston suction cylinder and a moving plate: the piston suction cylinder is arranged on the machine body and close to the material distribution box; and the moving plate is vertically slidably arranged on the piston suction cylinder.

[0013] Preferably, the linkage recovery mechanism further comprises a material collecting scraper box and a recovery pipe: the material collecting scraper box is arranged in the machine body and close to one side of the material distribution plate; and the recovery pipe is arranged on the material collecting scraper box and connected with the piston suction cylinder.

[0014] Preferably, the adjustment cutting mechanism comprises a first transmission shaft and a first adjustment rod: the first transmission shaft is arranged on the machine body; and the first adjustment rod is rotationally arranged on the machine body and sleeved outside the first transmission shaft.

[0015] Preferably, the adjustment cutting mechanism further comprises a cutter: the cutter is slidably arranged on the first transmission shaft and the first adjustment rod and has a plurality of.

[0016] The present application has the following beneficial effects compared with the prior art:

[0017] 1. The present application can automatically sprinkle flour on the dough to prevent sticking by arranging the material distribution box and the material distribution plate, and can automatically scrape and collect excess flour, which prevents the problem of sticking of the bread during the subsequent cutting process, and also solves the problem of difficult collection and cleaning of the spilled flour.

[0018] 2. The present application can scrape and collect the flour attached and accumulated on the first conveying belt by arranging the material collecting scraper box, which can maintain the cleanliness of the first conveying belt without manual cleaning.

[0019] 3. The present application can automatically suck and collect the flour by arranging the flour collecting box and the recovery pipe, which avoids waste of flour and facilitates secondary use.

[0020] 4. The present invention achieves equidistant adjustment of the cutter by setting a first drive shaft and a first adjusting rod, which facilitates the cutting of noodles of equidistant width without the need for frequent disassembly of the cutter as in the traditional method. Attached Figure Description

[0021] Figure 1 This is a first-person perspective 3D structural diagram of a noodle machine with an automatic winding function.

[0022] Figure 2 This is a second-view three-dimensional structural diagram of a noodle machine with an automatic winding function.

[0023] Figure 3 This is a front view structural diagram of a noodle machine with an automatic winding function.

[0024] Figure 4 This is a top view of a noodle machine with an automatic winding function.

[0025] Figure 5 It is a noodle machine with an automatic winding function. Figure 4 A three-dimensional structural diagram of the side view cross-section.

[0026] Figure 6 It is a noodle machine with an automatic winding function. Figure 5 Enlarged structural diagram at point A in the middle.

[0027] Figure 7 This is a three-dimensional structural diagram of the transmission mechanism of a noodle machine with an automatic winding function.

[0028] Figure 8 It is a noodle machine with an automatic winding function. Figure 7 Enlarged structural diagram at point B in the middle.

[0029] Figure 9 This is a three-dimensional structural diagram of the feeding plate and the powder separator of a noodle machine with an automatic winding function.

[0030] Figure 10 It is a noodle machine with an automatic winding function. Figure 9 Enlarged structural diagram at point C.

[0031] Figure 11 This is a three-dimensional structural diagram of the linkage recycling mechanism of a noodle machine with automatic winding function.

[0032] Figure 12 It is a noodle machine with an automatic winding function. Figure 11 Enlarged structural diagram at point D.

[0033] Figure 13 It is a noodle machine with an automatic winding function. Figure 11 Enlarged structural diagram at point E in the middle.

[0034] Figure 14 It is a side view structure diagram of noodle machine with automatic winding function.

[0035] Figure 15 It is a side view structure diagram of noodle machine with automatic winding function. Figure 14 It is an enlarged structure diagram of F in the middle.

[0036] Figure 16 It is a perspective structure diagram of scraper and first rotating shaft of noodle machine with automatic winding function.

[0037] Figure 17 It is a perspective structure diagram of noodle machine with automatic winding function. Figure 16 It is an enlarged structure diagram of G in the middle.

[0038] Figure 18 It is a side view perspective cut structure diagram of piston type dust suction cylinder of noodle machine with automatic winding function.

[0039] In the figure, the labels are: 1, machine body; 2, conveying roller; 3, first extrusion roller; 31, main gear; 32, second extrusion roller; 33, driven gear; 4, rotary driver; 5, linkage dispersion mechanism; 51, dispersion plate; 52, dispersion box; 521, discharge box; 53, dispersion rotating rod; 54, blanking plate; 541, powder isolation plate; 55, dispersion groove; 551, limiting groove; 552, contact rod; 6, transmission mechanism; 61, first transmission belt; 62, first transmission rod; 621, second transmission belt; 622, third transmission belt; 63, second transmission rod; 631, first conveying belt; 632, second conveying belt; 633, contact block; 64, first rotary roller; 641, fourth transmission belt; 65, second rotary roller; 651, third conveying belt; 652, fifth transmission belt; 7, linkage recovery mechanism; 71, piston type dust suction cylinder; 711, piston sheet; 712, piston rod; 72, moving plate; 721, return spring; 73, collection scraper box; 731, recovery box; 732, powder collection box; 733, discharge pipe; 74, recovery pipe; 8, adjustment cutting mechanism; 81, first transmission shaft; 811, straight stroke groove; 82, first adjustment rod; 821, inclined groove; 83, cutter. DETAILED DESCRIPTION

[0040] In order to further understand the features, technical means and specific purposes and functions achieved by the present application, the present application will be described in further detail below in combination with the drawings and specific embodiments.

[0041] Referring to Figure 1 , Figure 10 and Figure 11As shown, a noodle machine with automatic winding function, including machine body 1, a plurality of conveying rollers 2 arranged on the machine body 1 to convey the dough, a first extrusion roller 3 for extruding the dough, a rotary driver 4 for driving the first extrusion roller 3 to rotate, and a linkage dispersion mechanism 5 for uniformly dispersing the extruded dough, the linkage dispersion mechanism 5 including a material distribution plate 51 and a transmission mechanism 6 for driving the powder distribution plate to rotate, the machine body 1 further provided with a linkage recovery mechanism 7 for collecting excess flour on the dough and an adjustable cutting mechanism 8 for cutting the dough, the first extrusion roller 3 is provided with a main gear 31 fixed coaxially with the first extrusion roller 3, the machine body 1 is further provided with a second extrusion roller 32 located above the first extrusion roller 3, the second extrusion roller 32 is provided with a driven gear 33 engaged with the main gear 31, the machine body 1 is further provided with a winding roller for winding the cut noodles.

[0042] When the dough needs to be extruded, first place the dough on the conveying rollers 2, then set the conveying rollers 2 at an inclined angle to make the dough slide downward on the conveying rollers 2 until it slides under the first extrusion roller 3 and the second extrusion roller 32, then start the rotary driver 4 to extrude the dough, the extruded dough is in the shape of a dough cake, then the first extrusion roller 3 drives the first transmission rod 62 and the second transmission rod 63 to rotate through the first transmission belt 631, at the same time the first transmission belt 61 drives the material distribution rotating rod 53 to rotate synchronously, then the worker puts the flour into the material distribution box 52, the flour is uniformly stirred under the action of the rotation of the material distribution rotating rod 53, the stirred flour falls onto the discharging plate 54 through the avoiding hole on the material distribution box 52 and the perforations on the discharging box 521, the discharging plate 54 is uniformly shaken under the action of intermittent contact between the contact block 633 and the contact rod 552 and reciprocating upward and downward, the flour is uniformly scattered on the dough cake during the shaking, which prevents the dough cake from sticking together during the subsequent noodle cutting process, making it difficult to clean the equipment, the linkage recovery mechanism 7 can automatically collect the excess flour scattered, avoiding the problem of waste and difficult cleaning caused by the accumulation of flour in the equipment, and the worker does not need to frequently recover the noodles stuck in the equipment.

[0043] Referring to Figure 1 , Figure 2 , Figure 3 and Figure 9As shown, the linkage dispersion mechanism 5 further comprises a distribution box 52 and a distribution rotating rod 53. The distribution box 52 is arranged on the machine body 1. The distribution rotating rod 53 is arranged on the distribution box 52. The distribution rotating rod 53 is provided with a plurality of avoiding holes for uniformly passing the flour. The machine body 1 is provided with a discharge box 521 below the distribution box 52. The discharge box 521 is provided with a plurality of perforations for passing the flour. The distribution plate 51 is coaxially fixed with the distribution rotating rod 53.

[0044] When the kneaded dough needs to be extruded, the dough is first placed on the conveying rollers 2. Then the rotating driver 4 is started to rotate the first extruding roller 3, so that the dough is extruded. When the extruded dough passes below the distribution box 52, the first transmission belt 61 arranged outside the first extruding roller 3 drives the distribution rotating rod 53 to rotate. In the rotating process of the distribution rotating rod 53, the distribution plate 51 uniformly stirs the flour. The stirred flour falls onto the discharge plate 54 through the avoiding holes and the perforations of the discharge box 521.

[0045] As shown in Figure 6 , Figure 7 and Figure 8 , the linkage dispersion mechanism 5 further comprises a discharge plate 54 and a distribution groove 55. The discharge plate 54 is arranged in the machine body 1. The flour distribution groove is arranged on the discharge plate 54. The discharge plate 54 is provided with a plurality of flour separating plates 541 for intermittently stopping the flour above the discharge plate 54. The distribution groove 55 is arranged on the discharge plate 54 and has a plurality of limiting grooves 551 arranged on the machine body 1. The discharge plate 54 is provided with a plurality of contact rods 552 matched with the limiting grooves 551. The contact rods 552 are fixedly connected with the discharge plate 54.

[0046] When the flour falls on the discharge plate 54, the flour is stopped on the flour separating plates 541. In the process of stopping, the discharge plate 54 reciprocatingly rises and falls in contact with the subsequent contact blocks 633. In the process of reciprocating, the flour falls through the discharge grooves arranged on the discharge plate 54 and uniformly falls on the dough, so that the dough is automatically sprinkled with flour to avoid adhesion in the subsequent cutting process.

[0047] As shown in Figure 7 , Figure 8 and Figure 9As shown in the figure, the transmission mechanism 6 comprises a first transmission belt 61: the first transmission belt 61 is sleeved on the first extrusion roller 3, and the other end of the first transmission belt 61 is sleeved on the distribution rotating rod 53. The output end of the rotary driver 4 is connected with the first extrusion roller 3 through a shaft coupling, and a second transmission belt 621 is sleeved on the first extrusion roller 3. The other end of the second transmission belt 621 is connected with the first transmission rod 62 through sleeving.

[0048] When the knob driver is started, the first extrusion roller 3 can be driven to rotate. When the first extrusion roller 3 rotates, the rotation force can be transmitted to the driven gear 33 through the meshing of the main gear 31, and the driven gear 33 can rotate in the opposite direction of the main gear 31 under the meshing action of the main gear 31, so as to better extrude and form the dough. When the first extrusion roller 3 rotates, the rotation force can be transmitted to the distribution rotating rod 53 through the first transmission belt 61, and the distribution rotating rod 53 is driven to rotate, so that the flour in the distribution box 52 can be uniformly stirred, and the flour in the distribution box 52 is prevented from sticking.

[0049] As shown in the figure, Figure 7 、 Figure 8 、 Figure 9 、 Figure 11 and Figure 15 As shown in the figure, the transmission mechanism 6 further comprises a first transmission rod 62 and a second transmission rod 63: the first transmission rod 62 is rotatably arranged on the machine body 1, and the second transmission rod 63 is rotatably arranged on the machine body 1 and close to one side of the first transmission rod 62. The first transmission rod 62 and the second transmission rod 63 are externally sleeved with a first transmission belt 631 for conveying extruded and formed bread. The first transmission rod 62 is sleeved with a second transmission belt 632 connected with the first extrusion roller 3. The second transmission rod 63 is provided with a contact block 633 for contacting the contact rod 552. The first transmission rod 62 and the second transmission rod 63 are sleeved with a third transmission belt 622.

[0050] The second transmission belt 621 drives the first transmission rod 62 to rotate, and when the first transmission rod 62 rotates, the second transmission rod 63 can be driven to rotate through the third transmission belt 622. When the extruded bread passes through the first transmission belt 631 arranged on the first transmission rod 62 and the second transmission rod 63, the contact block 633 arranged on the second transmission rod 63 can be in contact with the contact rod 552 arranged on the blanking plate 54. When the contact block 633 is in contact, the contact rod 552 can be driven to move stably upward along the limiting groove 551 formed on the machine body 1. When the contact block 633 is not in contact with the contact rod 552, the blanking plate 54 can move downward freely along the limiting groove 551 by its own weight. Thus, the contact block 633 can intermittently contact the contact rod 552 when the second transmission rod 63 and the first transmission rod 62 rotate, and the contact rod 552 and the blanking rod can be driven to reciprocate up and down during the intermittent contact process. Thus, the flour on the blanking plate 54 can be evenly shaken and scattered, so that the flour can be evenly scattered on the extruded bread, facilitating subsequent cutting processing.

[0051] Referring to Figure 9 and Figure 16 , the transmission mechanism 6 further includes a first rotating roller 64 and a second rotating roller 65. The first rotating roller 64 is rotatably arranged on the machine body 1, and the second rotating roller 65 is rotatably arranged on the machine body 1 and close to one side of the first rotating roller 64. The fourth transmission belt 641 connected between the second transmission rod 63 is sleeved on the first rotating roller 64. The third conveying belt 651 for conveying bread is sleeved on the first rotating roller 64 and the second rotating roller 65. The fifth transmission belt 652 is sleeved between the first rotating roller 64 and the second rotating roller 65.

[0052] After the flour is evenly scattered on the bread, the first rotating roller 64 can be driven by the fourth transmission belt 641 to rotate the second rotating roller 65 through the fifth transmission belt 652, so as to drive the third conveying belt 651 arranged on the first rotating roller 64 and the second rotating roller 65 to convey the bread.

[0053] Referring to Figure 14 and Figure 18 , the linkage recovery mechanism 7 includes a piston suction cylinder 71 and a moving plate 72. The piston suction cylinder 71 is arranged on the machine body 1 and close to the material distribution box 52. The moving plate 72 is vertically slidably arranged on the piston suction cylinder 71. The piston suction cylinder 71 is provided with a piston plate 711 and a piston rod 712 extending out of the piston suction cylinder 71. The piston rod 712 is fixed to the end of the moving plate 72. The piston suction cylinder 71 is provided with a return spring 721 fixed to the end of the piston plate 711.

[0054] When the contact block 633 rotates under the drive of the second transmission rod 63, the contact block 633 can be in contact with the moving plate 72, and when the contact block 633 rotates, the piston rod 712 and the piston sheet 711 in the piston suction cylinder 71 can be moved upward, and in the process, the reset spring 721 can be compressed. When the contact block 633 continues to rotate until it is not in contact with the moving plate 72, the piston sheet 711 and the piston rod 712 in the piston suction cylinder 71 can be reset by the reset spring 721, and the moving plate 72 can be driven to return to the initial position.

[0055] Referring to Figure 18 As shown, the linkage recycling mechanism 7 further comprises a material scraping box 73 and a recycling pipe 74: the material scraping box 73 is arranged in the machine body 1 and close to one side of the discharging plate 54; the recycling pipe 74 is arranged on the material scraping box 73 and connected with the piston suction cylinder 71, the material scraping box 73 is close to one side of the first transmission belt 631, and the material scraping box 73 is used to collect the excess flour scraped off the first transmission belt 631. The piston suction cylinder 71 is further provided with a recycling box 731 fixed at the end of the recycling pipe 74, and a flour collecting box 732 extending out of the recycling box 731 is slidably arranged in the recycling box 731. The flour collecting box 732 is provided with a docking hole corresponding to the position of the recycling pipe 74. The recycling pipe 74 is provided with a one-way valve. The piston suction cylinder 71 is further provided with an exhaust pipe 733 for exhausting air in the piston suction cylinder 71. The recycling pipe 74 and the exhaust pipe 733 are both provided with one-way valves for controlling the entry and exhaust of air.

[0056] When the flour is evenly sprinkled on the bread, excess flour will fall on the first transmission belt 631. The first transmission belt 631 is in contact with the material scraping box 73 under the rotation of the first transmission rod 62 and the second transmission rod 63, and the flour accumulated or attached on the first transmission belt 631 is scraped off and collected into the material scraping box 73. Manual cleaning and flour collection of the first transmission belt 631 are not required. When the contact block 633 is in contact with the moving plate 72 and causes the moving plate 72 to move upward in the vertical direction, the one-way valve in the recycling pipe 74 fixed between the material scraping box 73 and the collecting box is opened, and the one-way valve in the exhaust pipe 733 is closed. At this time, the recycling pipe 74 is in the process of inhaling, and the flour scraped and collected in the material scraping box 73 is sucked in, and then the flour is sucked into the flour collecting box 732 slidably arranged in the recycling box 731. By pulling the flour collecting box 732, the collected flour can be recycled, avoiding waste of flour. Automatic collection of flour is achieved, and waste of flour caused by falling outside the machine body 1 is prevented. On the other hand, manual cleaning of the flour on the first transmission belt 631 is not required.

[0057] Referring to Figure 16 and Figure 17As shown, the adjusting cutting mechanism 8 comprises a first transmission shaft 81 and a first adjusting rod 82; the first transmission shaft 81 is arranged on the machine body 1; the first adjusting rod 82 is arranged in rotation on the machine body 1 and is sleeved outside the first transmission shaft 81, the first transmission shaft 81 is provided with a linear stroke groove 811 in a horizontal linear direction, and the first adjusting rod 82 is provided with a plurality of inclined grooves 821, the linear stroke groove 811 and the inclined grooves 821 are arranged in interlaced manner, the first transmission shaft 81 is fixedly arranged on the machine body 1, and the first adjusting rod 82 is provided with a rotating handle extending outside the machine body 1, which is used to control the rotating movement of the first adjusting rod 82.

[0058] When the cutting work of the pizza on the second conveying belt 632 is needed, the pizza can move towards the position of the first adjusting rod 82 under the action of the second conveying belt 632, and the cutter 83 arranged on the first adjusting rod 82 can cut the pizza during the movement, so that the pizza can be cut into noodles.

[0059] Referring to Figure 16 and Figure 17 As shown, the adjusting cutting mechanism 8 further comprises a cutter 83; the cutter 83 is arranged in sliding manner on the first transmission shaft 81 and the first adjusting rod 82 and has a plurality of, the cutter 83 is in sliding fit with the linear stroke groove 811 and the inclined grooves 821, respectively, the linear stroke groove 811 is used to limit the sliding of the cutter 83 in a horizontal linear direction, and the inclined grooves 821 are arranged to limit the synchronous interval displacement sliding adjustment of the plurality of cutters 83 along the inclined grooves 821.

[0060] When the pizza needs to be cut into noodles with different widths, the rotating handle arranged on the first adjusting rod 82 is rotated, so that the first adjusting rod 82 is driven to rotate, and when the first adjusting rod 82 rotates, the cutter slides along the inclined grooves 821 arranged on the first adjusting rod 82 and the linear stroke groove 811 arranged on the first rotating shaft, so that the plurality of cutters can be adjusted with the same interval, and the pizza can be cut into noodles with different widths according to different actual production needs, and the adjustment of the cutting width can be realized without frequent disassembly of the cutter.

[0061] The above embodiments only express one or several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as a limitation on the scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. A noodle machine with an automatic winding function, comprising a machine body (1), a plurality of conveying rollers (2) disposed on the machine body (1) for conveying and transporting fabric, a first extrusion roller (3) for extruding and shaping the fabric, a rotary driver (4) for driving the first extrusion roller (3) to rotate, and a linkage dispersing mechanism (5) for uniformly dispersing powder onto the extrusion panel; characterized in that, The linkage dispersing mechanism (5) includes a material distribution plate (51) and a transmission mechanism (6) for driving the material distribution plate to rotate. The machine body (1) is also equipped with a linkage recycling mechanism (7) for collecting excess flour on the fabric and an adjustment cutting mechanism (8) for cutting the fabric. The linkage dispersing mechanism (5) also includes a material distribution box (52) and a material distribution rotating rod (53). The material distribution box (52) is mounted on the machine body (1), and the material distribution rotating rod (53) is rotatably mounted on the material distribution box (52). The linkage dispersing mechanism (5) also includes a feeding plate (54) and a distributing trough (55). The feeding plate (54) is rotatably disposed inside the machine body (1), and the distributing trough (55) is opened on the feeding plate (54). The transmission mechanism (6) includes a first transmission belt (61), which is sleeved on the first extrusion roller (3), and the other end of the first transmission belt (61) is sleeved on the material distribution rotating rod (53); The transmission mechanism (6) also includes a first transmission rod (62) and a second transmission rod (63). The first transmission rod (62) is rotatably mounted on the machine body (1), and the second transmission rod (63) is rotatably mounted on the machine body (1) and close to the side of the first transmission rod (62). The transmission mechanism (6) also includes a first rotating roller (64) and a second rotating roller (65). The first rotating roller (64) is rotatably mounted on the machine body (1), and the second rotating roller (65) is rotatably mounted on the machine body (1) and close to one side of the first rotating roller (64). The linkage recycling mechanism (7) includes a piston-type dust collection cylinder (71) and a moving plate (72). The piston-type dust collection cylinder (71) is set on the machine body (1) and close to the material distribution box (52). The moving plate (72) is slidably set on the piston-type dust collection cylinder (71) in the vertical direction. The linkage recycling mechanism (7) also includes a scraper box (73) and a recycling pipe (74). The scraper box (73) is located inside the machine body (1) and close to the side of the feed plate (54). The recycling pipe (74) is located on the scraper box (73) and connected to the piston-type dust collection cylinder (71). The adjusting cutting mechanism (8) includes a first drive shaft (81) and a first adjusting rod (82); the first drive shaft (81) is mounted on the machine body (1); the first adjusting rod (82) is rotatably mounted on the machine body (1) and sleeved on the outside of the first drive shaft (81); The adjusting cutting mechanism (8) also includes a cutter (83); the cutter (83) is slidably disposed on the first drive shaft (81) and the first adjusting rod (82) and has several; A first conveyor belt (631) for conveying extruded dough is sleeved on the outside of the first transmission rod (62) and the second transmission rod (63). A second conveyor belt (632) connected to the first extrusion roller (3) is sleeved on the first transmission rod (62). A contact block (633) is provided on the second transmission rod (63) for contacting the contact rod (552). A third transmission belt (622) is sleeved between the first transmission rod (62) and the second transmission rod (63). When the second transmission belt (621) drives the first transmission rod (62) to rotate, the first transmission rod (62) rotates through the third transmission belt (622) to drive the second transmission rod (63) to rotate. When the extruded dough passes on the first transmission belt (631) set on the first transmission rod (62) and the second transmission rod (63), the contact block (633) set on the second transmission rod (63) can contact the contact rod (552) set on the feeding plate (54). When in contact, the contact block (633) can drive the contact rod (552) to move along the limiting groove (551) set on the machine body (1). When the contact block (633) does not contact the contact rod (552), the feeding plate (54) can move freely downward along the limiting groove (551) by its own weight. This allows the second transmission rod (63) and the first transmission rod (62) to intermittently contact the contact rod (552) through the contact block (633) when they rotate. During the intermittent contact, the contact rod (552) and the feeding rod can be driven to shake up and down. This allows the flour on the feeding plate (54) to be shaken and sprinkled evenly, so that the flour is evenly sprinkled on the extruded dough, which is convenient for subsequent cutting and processing.

Citation Information

Patent Citations

  • Noodle maker

    CN220024014U

  • Dough band forming device with cutting attachment

    AT521636A1

  • Multifunctional automatic noodle maker

    CA3108340A1