A full-automatic noodle pressing all-in-one machine

CN224539294UActive Publication Date: 2026-07-24SHANDONG CHAIMIDUO FOOD MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG CHAIMIDUO FOOD MASCH CO LTD
Filing Date
2025-09-08
Publication Date
2026-07-24

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Abstract

The utility model relates to a full -automatic noodle press integrated machine, including noodle press body and feed table, the top of feed table is a plane, and the whole feed table is located noodle press body's discharge port lower part, and one end of feed table corresponds with the feed inlet of noodle press body and sets up, the top of feed table is equipped with conveyer belt, the conveyer belt includes two groups of parallel distribution, and two groups of conveyer belt are separately installed on feed table respectively and drive setting through with respective corresponding connection drive mechanism, and the conveying direction of two groups of conveyer belt is same or opposite setting, the utility model discloses reasonable structure design, through setting two groups of independent operation conveyer belt, makes it can after receiving dough, complete dough's stacking, rotating direction etc. action, and then feed into noodle press body again, under the condition that the action repeats operation, thereby makes dough form better gluten network, improves the quality and quality of noodle food taste.
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Description

Technical Field

[0001] This utility model relates to the field of food machinery technology, and in particular to a fully automatic noodle pressing machine. Background Technology

[0002] In the process of pressing dough for noodle products, in order to form a network structure of gluten in the dough to support the expansion of the noodle products, it is necessary to flexibly control the kneading time, direction and force of the dough. Current noodle pressing machines can only complete the repeated kneading of the dough in one direction and cannot change the direction, resulting in poor formation of the gluten network in the dough, which affects the taste and quality of the noodle products. Summary of the Invention

[0003] In order to overcome the shortcomings of the existing technology, the purpose of this utility model is to provide a fully automatic dough pressing machine that can adjust the kneading direction of the dough during the pressing process, thereby forming a better gluten network.

[0004] The technical solution adopted by this utility model to solve its technical problem is:

[0005] A fully automatic dough pressing machine includes a dough pressing machine body, characterized in that it also includes a feeding table;

[0006] The top surface of the feeding platform is a plane, and the entire feeding platform is located below the discharge port of the dough press body. One end of the feeding platform is set corresponding to the inlet of the dough press body.

[0007] The top surface of the feeding platform is provided with a conveyor belt, which includes two sets of conveyor belts arranged in parallel. The two sets of conveyor belts are installed separately on the feeding platform and driven by a drive mechanism connected to each of them. The conveying directions of the two sets of conveyor belts are the same or opposite.

[0008] Both ends of the conveyor belt are mounted on the feeding platform via conveyor rollers. The upper layer of the conveyor belt is set close to the top surface of the feeding platform, and the lower layer of the conveyor belt is located at the bottom of the feeding platform.

[0009] The dough press machine body is provided with a support platform that is connected and fixed thereto, and the feeding platform is installed and fixed on the support platform at the end corresponding to the feed port of the dough press machine body.

[0010] The lower part of the feeding platform is provided with at least one set of support columns, and the bottom end of the support columns is provided with adjustable feet that are connected and fixed thereto.

[0011] The discharge port of the dough press machine body is also equipped with a feeding platform that is fixed to it. The feeding platform is inclined and the outer end of the feeding platform is lower than the end connected to the discharge port.

[0012] The unloading platform includes an unloading frame and several sets of rollers installed inside the unloading frame. The unloading frame is fixedly connected to the frame of the discharge port. The rollers are distributed in parallel and the ends of the rollers are rotatably connected to the unloading frame.

[0013] The beneficial effects of this utility model are: the structure is reasonably designed, and by setting two sets of independently operating conveyor belts, it can complete the stacking and rotation of the dough after receiving it, and then feed it back into the dough press body. With the repeated operation of this action, the dough can form a better gluten network, thereby improving the taste and quality of the dough-based food. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0015] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0016] Figure 2 This is a top view of the structure of this utility model.

[0017] Figure 3 This is a three-dimensional structural diagram of the present invention.

[0018] Figure 4 This is a schematic diagram of the structure of the present invention (dough stacking operation).

[0019] Figure 5 This is a three-dimensional structural diagram of the present invention (dough rotation operation).

[0020] In the diagram: 100 dough press body, 101 discharge port, 102 feeding platform, 103 support platform, 200 feeding platform, 201 support column, 202 adjustable support feet, 301 drive mechanism, 302 conveyor belt, 303 conveyor roller, 400 dough. Detailed Implementation

[0021] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification.

[0022] according to Figures 1 to 3 As shown: This embodiment provides a fully automatic dough pressing machine, including a dough pressing machine body 100 and a feeding platform 200 mounted on the dough pressing machine body 100. The feeding platform 200 has the function of conveying and rotating dough 400, so that the dough 400 can be fed into the dough pressing machine body 100 in different directions and states to simulate manual action, thereby making the dough 400 form a better gluten network and improving the taste and quality of dough-based foods.

[0023] The top surface of the feeding platform 200 is a plane. The length of the feeding platform 200 meets the requirements for conveying the dough 400 and needs to be calculated based on the volume of the dough 400 during the operation of the dough press body 100. The feeding platform 200 is horizontally distributed and is located below the discharge port 101 of the dough press body 100. One end of the feeding platform 200 is correspondingly set to the inlet of the dough press body 100. At the same time, a support platform 10 is provided on the dough press body 100 and connected and fixed thereto. 3. The feeding platform 200 and the end corresponding to the feed inlet of the dough press body 100 are installed and fixed on the support platform 103. The lower part of the feeding platform 200 is provided with a set of support columns 201. The support columns 201 are located on both sides of the feeding platform 200, thereby forming a good support effect. The bottom end of the support column 201 is provided with an adjustable support foot 202 connected and fixed thereto. The adjustable support foot 202 is used to adjust the support point height of the support column 201 to ensure that the feeding platform 200 is installed stably.

[0024] The top surface of the feeding platform 200 is provided with a conveyor belt 302, which surrounds the upper and lower parts of the feeding platform 200. The conveyor belt 302 includes two sets arranged in parallel. The two ends of the conveyor belt 302 are respectively installed on the feeding platform 200 through conveyor rollers 303. The upper layer of the conveyor belt 302 is set close to the top surface of the feeding platform 200. When the dough comes into contact with the conveyor belt 302, the dough can be supported by the feeding platform 200 without relying on the conveyor belt 302 to bear the weight of the dough. The lower layer of the conveyor belt 302 is located at the lower part of the feeding platform 200, so that the two sets of conveyor belts 302 are installed separately on the feeding platform 200. Each set of conveyor belts 302 is driven by a corresponding drive mechanism 301. The drive mechanism 301 adopts a servo motor and is installed on both sides of the outside of the feeding platform 200. The drive mechanism 301 drives the conveyor rollers 303 and the corresponding conveyor belts 302, so that the conveying directions of the two sets of conveyor belts 302 are the same or opposite.

[0025] The discharge port 101 of the dough press body 100 is also provided with a feeding platform 102 connected and fixed thereto. The feeding platform 102 is inclined and the outer end of the feeding platform 102 is lower than the end connected to the discharge port 101. The feeding platform 102 includes a feeding frame and several sets of rollers installed inside the feeding frame. The rollers are freely rotatable. The feeding frame is connected and fixed to the frame of the discharge port 101. The rollers are distributed in parallel and the ends of the rollers are rotatably connected to the feeding frame. When the dough 400 leaves the discharge port 101, the height between it and the feeding platform 200 can be reduced by the feeding platform 102, so that the dough 400 can fall smoothly onto the feeding platform 200.

[0026] according to Figure 4As shown: This embodiment provides a fully automatic dough pressing machine. During use, the key lies in the operating principle of the dough 400 after it leaves the discharge port 101 of the dough pressing machine body 100. To simulate manual dough pressing, the dough 400 needs to be stacked. Since the dough 400 is in a flat shape with a certain width after leaving the dough pressing machine body 100, it eventually falls completely onto the feeding table 200. During this process, the two sets of conveyor belts 302 first transport the dough to the side away from the dough pressing machine body 100, so that the front half of the dough 400 is distributed on the two sets of conveyor belts. The dough 400 is laid flat on the conveyor belt 302. When half of the dough 400 has fallen, the two sets of conveyor belts 302 transport it to one side of the dough press machine body 100. At this time, the dough 400 that has fallen on the conveyor belt 302 moves in the opposite direction, so that the other half of the dough 400 falls on the first half of the dough 400, thus forming a stacked state, and then enters the dough press machine body 100 again for dough pressing. In this embodiment, the stacked state can be stacked two, three or more layers according to the needs and the length of the dough 400, so as to achieve continuous and repeated stacking and meet different usage requirements.

[0027] according to Figure 5 As shown: This embodiment provides a fully automatic dough pressing machine. During use, the main principle is the operation after the dough 400 is completely placed on the feeding table 200. In order to simulate the manual dough pressing action, the dough 400 needs to be rotated. At this time, the two sets of conveyor belts 302 are conveyed in opposite directions at a speed of 0.2 m / s, so that the dough 400 rotates 90 degrees on the two sets of conveyor belts 302. At this time, the rotation action is completed. Then, the two sets of conveyor belts 302 are conveyed to one side of the dough pressing machine body 100, so that the rotated dough 400 re-enters the dough pressing machine body 100 for dough pressing action.

[0028] The above description is only a preferred embodiment of the present utility model. Any technical solution that achieves the purpose of the present utility model by essentially the same means shall fall within the protection scope of the present utility model.

Claims

1. A fully automatic dough pressing machine, comprising a dough pressing machine body, characterized in that, It also includes a feeding station; The top surface of the feeding platform is a plane, and the entire feeding platform is located below the discharge port of the dough press body. One end of the feeding platform is set corresponding to the inlet of the dough press body. The top surface of the feeding platform is provided with a conveyor belt, which includes two sets of conveyor belts arranged in parallel. The two sets of conveyor belts are installed separately on the feeding platform and driven by a drive mechanism connected to each of them. The conveying directions of the two sets of conveyor belts are the same or opposite.

2. The fully automatic noodle pressing machine according to claim 1, characterized in that: Both ends of the conveyor belt are mounted on the feeding platform via conveyor rollers. The upper layer of the conveyor belt is set close to the top surface of the feeding platform, and the lower layer of the conveyor belt is located at the bottom of the feeding platform.

3. The fully automatic dough pressing machine according to claim 1, characterized in that: The dough press machine body is provided with a support platform that is connected and fixed thereto, and the feeding platform is installed and fixed on the support platform at the end corresponding to the feed port of the dough press machine body.

4. A fully automatic noodle pressing machine according to claim 1 or 3, characterized in that: The lower part of the feeding platform is provided with at least one set of support columns, and the bottom end of the support columns is provided with adjustable feet that are connected and fixed thereto.

5. The fully automatic noodle pressing machine according to claim 1, characterized in that: The discharge port of the dough press machine body is also equipped with a feeding platform that is fixed to it. The feeding platform is inclined and the outer end of the feeding platform is lower than the end connected to the discharge port.

6. The fully automatic noodle pressing machine according to claim 5, characterized in that: The unloading platform includes an unloading frame and several sets of rollers installed inside the unloading frame. The unloading frame is fixedly connected to the frame of the discharge port. The rollers are distributed in parallel and the ends of the rollers are rotatably connected to the unloading frame.