A noodle machine's material collection tray

CN224627478UActive Publication Date: 2026-08-14TANGHE OUKE ELECTRIC APPLIANCE MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于提供一种面条机的集料盘,通过设置收集箱、振动电机、转辊、集料辊、下料盘、集料输送机、微型气缸、往复辊,解决了面条收集时其表面粘附的面粉无法充分筛下、面条无法进行整齐的堆叠式收集的问题

Benefits of technology

1、本实用新型通过设置收集箱、振动电机、转辊、集料辊、下料盘,解决了面条收集时其表面粘附的面粉无法充分筛下的问题;在面饼面皮等切面形成面条后,从下料盘上的斜面上滑下,随后接触旋转的转辊外的集料辊,分铺在集料辊上并被集料辊带动运行,直至从收集箱的斜板上方开口处掉落,被导向辊辅助后穿过往复辊进入集料输送机上,在面条位于转辊及集料辊的外周时,利用振动电机的工作,传递震动给收集箱,并配合、安装板、耳板一将震动直接传递至转辊上,使集料辊也随之震动,从而将接触集料辊的面条震动,使其表面的面粉快速的抖落、震动下来,这样的震动传导方式更加直接,比通过收集箱传导更加快速。

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Abstract

This utility model discloses a collection tray for a noodle machine, relating to the field of food processing technology. The utility model includes a collection box, rotating rollers, micro-cylinders, reciprocating rollers, and a collection conveyor. An inclined plate is fixed to one end of the collection box. Four collection rollers are arranged in a circular array around the rotating roller, and each collection roller has corrugated grooves on its outer circumference. A connecting rod is fixed to both ends of each collection roller, with the end of the connecting rod furthest from the collection roller connected to the rotating roller. A mounting plate is fixed to one outer wall of the collection box, and a vibrating motor is fixed to the bottom of the mounting plate. Micro-cylinders are fixed to both sides of the collection box adjacent to the inclined plate. Two reciprocating rollers are arranged below the inclined plate, and a collection conveyor is arranged below the two reciprocating rollers. This utility model, by incorporating a collection box, vibrating motor, rotating rollers, collection rollers, a discharge tray, a collection conveyor, micro-cylinders, and reciprocating rollers, solves the problems of insufficient sifting of flour adhering to the surface of noodles and the inability to neatly stack and collect noodles during noodle collection.
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Description

Technical Field

[0001] This utility model belongs to the field of food processing technology, and in particular relates to a material collection tray for a noodle machine. Background Technology

[0002] A noodle machine is a device that uses rotating rollers to mix flour, creating the necessary elasticity and moisture, and then extrudes it into noodles. The working principle is that flour is extruded through rotating rollers to form dough sheets, which are then cut into strips by a cutting blade at the front of the machine, thus forming noodles. The shape of the noodles depends on the size of the cutting blade. All models can be equipped with different sizes of cutting blades, so one machine can produce noodles of various sizes by changing the blades. After the noodles are formed, they are discharged and require collection trays or other equipment for assistance. However, the following drawbacks still exist in the actual collection process: 1. As disclosed in the utility model patent with publication number CN219515100U, a material collection tray for a noodle machine is described. It describes that by suspending the noodles rolled out by the noodle machine on a guide rod and separating the noodles to create a certain gap between them, small pieces of dough and flour falling from the noodle machine are less likely to fall onto the noodles, saving the labor of the workers. Moreover, the dough pieces and flour can be collected separately for easy recycling. However, as is well known, when cutting noodles, a large amount of flour needs to be sprinkled to reduce friction. Although the above method can screen out some of the excess flour, the noodles do not move much, and the flour remaining on their surface is not screened off in large quantities. Therefore, the processing of flour in noodles is not efficient enough. 2. Secondly, the noodles after cutting are usually very long and cannot be collected directly in long strips because that would take up too much space and the noodles are easy to break. Usually, the noodles need to be slightly rolled into balls or rolled into pancakes for collection, so as to facilitate subsequent processing and handling. However, most collection trays do not have this function. Utility Model Content

[0003] The purpose of this utility model is to provide a material collection tray for a noodle machine. By setting up a collection box, a vibrating motor, a rotating roller, a material collection roller, a feeding tray, a material collection conveyor, a miniature cylinder, and a reciprocating roller, it solves the problem that the flour adhering to the surface of the noodles cannot be fully sieved off and the noodles cannot be neatly stacked and collected during the noodle collection process.

[0004] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: This utility model is a material collection tray for a noodle machine, including a collection box, a rotating roller, a micro cylinder, a reciprocating roller, and a material collection conveyor. One end of the collection box is fixed with an inclined plate, and two ear plates are fixed on both sides of the top of the collection box. The rotating roller is rotatably connected between the two ear plates. Four material collection rollers are arranged in a circular array outside the rotating roller, and the outer circumference of the material collection roller is provided with a corrugated groove. A connecting rod is fixed to both ends of each material collection roller, and the end of the connecting rod away from the material collection roller is connected to the rotating roller. An installation plate is fixed to one outer wall of the collection box, and a vibration motor is fixed to the bottom of the installation plate; Miniature cylinders are fixed on both sides of the collection box adjacent to the inclined plate. Two reciprocating rollers are arranged below the inclined plate, and a material collection conveyor is arranged below the two reciprocating rollers.

[0005] Furthermore, an inclined platform is fixed inside the collection box at a position away from the inclined plate. A triangular prism-shaped feeding tray is provided above the collection box above the inclined platform, and the inclined surface of the feeding tray faces the direction of the rotating roller. The bottom surface of the feeding tray is parallel to the top surface of the collection box. Two support plates are fixed at both ends of the feeding tray, and the bottom ends of the two support plates are fixed to the top of the collection box.

[0006] Furthermore, the end of the collection box above the inclined plate is provided with an opening, and the top of the inclined plate is lower than the top of the collection box. Two rotating guide rollers are provided outside the end of the collection box outside the opening. A discharge channel is connected through the bottom of the collection box between the lower end of the inclined plate and the lower end of the inclined platform.

[0007] Furthermore, an ear plate is fixed to the upper end of the mounting plate, and the end of the rotating roller near the mounting plate is rotatably connected to the ear plate; a material collecting motor is fixed to the outside of an ear plate two away from the ear plate, and the output shaft of the material collecting motor is connected to the end of the rotating roller near it.

[0008] Furthermore, the two reciprocating rollers are connected to a common end plate at their adjacent ends, and the reciprocating rollers are rotatably connected to the end plate. The piston rod at the output end of the micro cylinder is fixedly connected to its adjacent end.

[0009] Furthermore, the material conveyor includes two frames, with a conveying roller rotatably connected between the adjacent ends of the two frames. A conveyor belt is driven around the two conveying rollers, and a conveying motor is fixed outside any one of the frames. The output shaft of the conveying motor is drivenly connected to the end of the conveying roller adjacent to it. Two symmetrically distributed support legs are fixed at the bottom of the frame.

[0010] This utility model has the following beneficial effects: 1. This utility model solves the problem of insufficient sifting of flour adhering to the surface of noodles during collection by setting up a collection box, a vibrating motor, a rotating roller, a collecting roller, and a feeding tray. After the noodles are cut from the dough or other parts of the dough, they slide down the inclined surface of the feeding tray, then come into contact with the collecting roller outside the rotating roller, spread out on the collecting roller, and are driven by the collecting roller until they fall from the opening above the inclined plate of the collection box. With the assistance of the guide roller, they pass through the reciprocating roller and enter the collecting conveyor. When the noodles are on the outer periphery of the rotating roller and the collecting roller, the vibrating motor transmits vibration to the collection box, and together with the mounting plate and ear plate, the vibration is directly transmitted to the rotating roller, causing the collecting roller to vibrate as well. This vibrates the noodles that come into contact with the collecting roller, causing the flour on their surface to be shaken off quickly. This vibration transmission method is more direct and faster than transmission through the collection box.

[0011] 2. This utility model solves the problem of noodles not being able to be neatly stacked and collected by setting up a material collection conveyor, a micro cylinder, and reciprocating rollers. When the noodles pass through the two reciprocating rollers and enter the conveyor belt of the material collection conveyor, the micro cylinder works, driving the two reciprocating rollers to run back and forth, so that the noodles passing through the two reciprocating rollers move in an uninterrupted S-shaped wave until they are all stacked on the material collection conveyor. Then the material collection conveyor can be started to transport the stacked noodles out. Attached Figure Description

[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0013] Figure 1 A perspective view of the material collection tray of a noodle machine; Figure 2 for Figure 1 A bottom view; Figure 3 This is a connection diagram of the rotating roller and the collecting roller; Figure 4 This is a sectional view of the material collection conveyor; Figure 5 This is a structural diagram of the collection box; Figure 6 for Figure 5 A structural diagram from another perspective.

[0014] Figure label: 1. Collection box; 101. Feeding tray; 1011. Support plate; 102. Mounting plate; 1021. Ear plate one; 103. Vibrating motor; 104. Guide roller; 105. Feeding trough; 106. Inclined platform; 107. Ear plate two; 108. Inclined plate; 2. Rotating roller; 201. Connecting rod; 202. Collecting roller; 2021. Corrugated groove; 3. Collecting motor; 4. Miniature cylinder; 5. Reciprocating roller; 501. End plate; 6. Collecting conveyor; 601. Frame; 6011. Support leg; 602. Conveying roller; 603. Conveying belt; 604. Conveying motor. Detailed Implementation

[0015] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0016] Please see Figure 1-6 As shown, this utility model is a material collection tray for a noodle machine, including a collection box 1, a rotating roller 2, a micro cylinder 4, a reciprocating roller 5, and a material collection conveyor 6. One end of the collection box 1 is fixed with an inclined plate 108. Two ear plates 107 are fixed on both sides of the top of the collection box 1. The rotating roller 2 is rotatably connected between the two ear plates 107. Four material collection rollers 202 are arranged in a ring array outside the rotating roller 2. Corrugated grooves 2021 are provided on the outer periphery of the material collection rollers 202. A connecting rod 201 is fixed to both ends of each material collection roller 202. The end of the connecting rod 201 away from the material collection roller 202 is connected to the rotating roller 2. The collection box 1 is used for flour falling from the noodles. Its sloping design provides space below for placing corresponding components, facilitating its use in conjunction with the collection box 1. The rotating roller 2 can rotate between the two ear plates 107. It is connected to the collecting roller 202 via the connecting rod 201, allowing the collecting roller 202 to rotate synchronously. After contacting the noodles, the collecting roller 202 moves towards the sloping plate 108. Figure 1 (As indicated by the arrow), guide the noodles to the outside of the inclined plate 108; A mounting plate 102 is fixed on one outer wall of the collection box 1, and a vibration motor 103 is fixed on the bottom of the mounting plate 102; The vibration motor 103 is installed using the mounting plate 102. When the vibration motor 103 is working, it transmits vibration to the collection box 1 and also to the rotating roller 2, causing the rotating roller 2 and the collecting roller 202 to vibrate, causing the noodles on their surface to vibrate and shaking off the flour and other substances adhering to the noodles, making it easier to separate the noodles from the flour. Miniature cylinders 4 are fixed on both sides of the collection box 1 adjacent to the inclined plate 108. Two reciprocating rollers 5 are set below the inclined plate 108, and a material collection conveyor 6 is set below the two reciprocating rollers 5. When the noodles pass through the two reciprocating rollers 5 and enter the conveyor belt 603 in the collecting conveyor 6, the miniature cylinder 4 works, driving the two reciprocating rollers 5 to run back and forth, so that the noodles passing through the two reciprocating rollers 5 move in an uninterrupted S-shaped wave motion until they are all stacked on the collecting conveyor 6. Then the collecting conveyor 6 can be started to transport the stacked noodles out.

[0017] Inside the collection box 1, at a position away from the inclined plate 108, there is a fixed inclined platform 106. Above the collection box 1 above the inclined platform 106, there is a triangular prism-shaped feeding plate 101. The inclined surface of the feeding plate 101 faces the direction of the rotating roller 2. The bottom surface of the feeding plate 101 is parallel to the top surface of the collection box 1. Two support plates 1011 are fixed at both ends of the feeding plate 101, and the bottom ends of the two support plates 1011 are fixed to the top of the collection box 1. The inclined plate 106 is used to guide the scattered flour down and prevent it from accumulating in the collection box 1. After the dough is cut into noodles, it slides down the inclined plate on the feeding plate 101 and then contacts the collecting roller 202 outside the rotating roller 2. The feeding plate 101 is supported on the top of the collection box 1 by the support plate 1011.

[0018] An opening is provided at the end of the collection box 1 above the inclined plate 108, and the top of the inclined plate 108 is lower than the top of the collection box 1. Two rotating guide rollers 104 are provided outside the end of the collection box 1 outside the opening. A discharge channel 105 is connected through the bottom of the collection box 1 between the lower end of the inclined plate 108 and the lower end of the inclined platform 106. The opening is designed to facilitate the operation of the collecting roller 202. When the noodles fall from the opening, they are guided out by the guide roller 104 so that they do not come into contact with the inclined plate 108. The inclined plate 108 cooperates with the inclined platform 106 to concentrate the shaken flour and slide it into the discharge channel 105 for discharge and collection.

[0019] The upper end of the mounting plate 102 is fixed with a first ear plate 1021, and the end of the rotating roller 2 near the mounting plate 102 is rotatably connected to the first ear plate 1021; a second ear plate 107 away from the first ear plate 1021 is fixed with a material collecting motor 3, and the output shaft of the material collecting motor 3 is connected to the end of the rotating roller 2 near it. The additional design of the ear plate 1021 allows the ear plate 1021 to be connected to the rotating roller 2, so that the vibration of the vibrating motor 103 can be transmitted to the rotating roller 2 more quickly, causing the rotating roller 2 to vibrate, which in turn causes the collecting roller 202 to vibrate, quickly shaking off the flour and other substances on the noodles.

[0020] Two reciprocating rollers 5 are connected to an end plate 501 at their close ends, and the reciprocating rollers 5 and the end plate 501 are rotatably connected. The piston rod at the output end of the micro cylinder 4 is fixedly connected to its close end. The fitting installation of the end plate 501 integrates the two reciprocating rollers 5 into one unit. The micro cylinder 4 drives the end plate 501 to move, thereby causing the two reciprocating rollers 5 to move back and forth. The noodles passing through the two reciprocating rollers 5 exhibit a continuous S-shaped wave motion.

[0021] The material conveyor 6 includes two frames 601. A conveyor roller 602 is rotatably connected between the adjacent ends of the two frames 601. A conveyor belt 603 is driven sleeved on the outside of the two conveyor rollers 602. A conveyor motor 604 is fixed to the outside of any one of the frames 601. The output shaft of the conveyor motor 604 is drivenly connected to the end of the adjacent conveyor roller 602. Two symmetrically distributed support legs 6011 are fixed at the bottom of the frame 601. The conveyor roller 602 is installed on the frame 601. The conveyor roller 602 is covered with a conveyor belt 603 for transmission and conveying. When the noodles accumulate on the conveyor belt 603, the conveyor motor 604 works to drive the conveyor roller 602 to rotate, so that the conveyor belt 603 carries the noodles out.

[0022] The specific working principle of this utility model is as follows: First, after the dough is cut into noodles, the noodles slide down the inclined surface on the feeding tray 101. The collecting motor 3 works, driving the rotating roller 2 to rotate. Then, the noodles come into contact with the collecting roller 202 outside the rotating roller 2, spread on the collecting roller 202, and are driven by the collecting roller 202 until they fall from the opening above the inclined plate 108 of the collecting box 1. When the noodles fall from the opening, they are guided by the guide roller 104 so that they do not come into contact with the inclined plate 108. During this process, the working of the vibration motor 103 transmits vibration to the collecting box 1, and in conjunction with the mounting plate 102 and the ear plate 1021, the vibration is directly transmitted to the rotating roller 2, so that the collecting roller 202 also vibrates. The movement of the noodle contacting the collecting roller 202 causes the flour on its surface to shake off and fall quickly. The inclined plate 108 and the inclined platform 106 cooperate to make the shaken flour fall into the discharge trough 105 for collection. After being assisted by the guide roller 104, the noodle passes through the reciprocating roller 5 and enters the collecting conveyor 6, and then enters the conveyor belt 603 in the collecting conveyor 6. At this time, the micro cylinder 4 works, driving the two reciprocating rollers 5 to run back and forth, so that the noodles passing through the two reciprocating rollers 5 move in a continuous S-shaped wave motion until they are all piled up on the collecting conveyor 6. Then the conveyor motor 604 works, driving the conveyor roller 602 to rotate, so that the conveyor belt 603 carries the noodles out.

[0023] The above are merely preferred embodiments of the present utility model and do not limit the present utility model. Any modifications, equivalent substitutions, or improvements made to the technical solutions described in the foregoing embodiments, or to some of the technical features, shall fall within the protection scope of the present utility model.

Claims

1. A collecting tray of noodle machine, comprising a collecting box (1), a rotating roller (2), a micro-cylinder (4), a reciprocating roller (5) and a collecting conveyor (6), characterized in that: One end of the collection box (1) is fixed with an inclined plate (108). Two ear plates (107) are fixed on both sides of the top of the collection box (1). A rotating roller (2) is rotatably connected between the two ear plates (107). Four collecting rollers (202) are arranged in a ring array outside the rotating roller (2). Corrugated grooves (2021) are provided on the outer periphery of the collecting rollers (202). A connecting rod (201) is fixed at both ends of each collecting roller (202). The end of the connecting rod (201) away from the collecting roller (202) is connected to the rotating roller (2). An installation plate (102) is fixed on one outer wall of the collection box (1), and a vibration motor (103) is fixed on the bottom of the installation plate (102). Miniature cylinders (4) are fixed on both sides of the collection box (1) adjacent to the inclined plate (108). Two reciprocating rollers (5) are arranged below the inclined plate (108), and a material collection conveyor (6) is arranged below the two reciprocating rollers (5).

2. The material collection tray of a noodle machine according to claim 1, characterized in that: An inclined platform (106) is fixed inside the collection box (1) at a position away from the inclined plate (108). A triangular prism-shaped feeding tray (101) is set above the collection box (1) above the inclined platform (106), and the inclined surface of the feeding tray (101) faces the direction of the rotating roller (2). The bottom surface of the feeding tray (101) is parallel to the top surface of the collection box (1). Two support plates (1011) are fixed at both ends of the feeding tray (101), and the bottom ends of the two support plates (1011) are fixed to the top of the collection box (1).

3. The collection tray of claim 2, wherein: The collection box (1) above the inclined plate (108) has an opening at its end, and the top of the inclined plate (108) is lower than the top of the collection box (1). Two rotating guide rollers (104) are provided outside the end of the collection box (1) outside the opening. The bottom of the collection box (1) between the lower end of the inclined plate (108) and the lower end of the inclined platform (106) is connected by a discharge channel (105).

4. The collecting disc of the noodle maker according to claim 1, wherein: The upper end of the mounting plate (102) is fixed with a first ear plate (1021), and the end of the roller (2) near the mounting plate (102) is rotatably connected to the first ear plate (1021); a second ear plate (107) away from the first ear plate (1021) is fixed with a material collecting motor (3), and the output shaft of the material collecting motor (3) is connected to the end of the roller (2) near it.

5. The collecting disc of the noodle maker according to claim 1, wherein: The two reciprocating rollers (5) are connected to a common end plate (501) at their adjacent ends, and the reciprocating rollers (5) and the end plate (501) are rotatably connected. The piston rod of the output end of the micro cylinder (4) is fixedly connected to its adjacent end.

6. The collection tray of claim 1, wherein: The material conveyor (6) includes two frames (601). A conveyor roller (602) is rotatably connected between the adjacent ends of the two frames (601). A conveyor belt (603) is driven around the two conveyor rollers (602). A conveyor motor (604) is fixed outside any one of the frames (601). The output shaft of the conveyor motor (604) is drivenly connected to the end of the adjacent conveyor roller (602). Two symmetrically distributed support legs (6011) are fixed at the bottom of the frame (601).

Citation Information

Patent Citations

  • Material collecting disc for noodle maker

    CN219515100U