An automatic noodle sheet folding machine

CN224710395UActive Publication Date: 2026-09-04ZHENGZHOU ZHUTUN RICE NOODLES FOOD CO LTD
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Patent Information

Application Number
CN202521911578.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-04
Publication Date
2026-09-04
Estimated Expiration
2035-09-04

AI Technical Summary

Technical Problem

现有的烩面片机虽然能够满足对烩面片进行叠片处理的基本需求,但加工输送机构与叠片输送机构之间的间距是固定的,而叠片输送机构在运行的过程中会带动叠放起来的面片在加工输送架构的下方往复穿过,是以会导致叠片输送机构只能对不超过叠片输送机构与加工输送机构之间固定间隔厚度的面片进行输送,因此存在着较大的局限性,并不能充分地满足人们的使用需求

Benefits of technology

[0014] Firstly, by simply turning the adjusting screw, the stacking conveyor mechanism can be moved vertically up and down under the rotational cooperation of the adjusting screw and the first fixed plate, and the insertion cooperation of the connecting plate and the connecting slot. This allows for the adjustment of the distance between the stacking conveyor mechanism and the slicing conveyor mechanism, thereby meeting the stacking requirements of sheets of various thicknesses.

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Abstract

The utility model provides a kind of automatic lamination's noodle sheet machine, including first rack, slice conveying mechanism is provided on first rack, the side end of first rack is also provided with second rack, corner of second rack is vertically provided with connecting slot, connecting plug, laminating conveying mechanism, first fixed plate, second fixed plate, vertically penetrates and is screwed with adjusting screw on second fixed plate, the upper end of adjusting screw is rotatably connected with first fixed plate. According to the automatic lamination's noodle sheet machine of the utility model, not only can satisfy the basic demand of laminating noodle sheet, but also can conveniently adjust the vertical height of laminating conveying mechanism, so as to meet the laminating demand of various thickness, and further more fully meet the use demand of people.
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Description

Technical Field

[0001] This utility model belongs to the field of braised noodle production technology, and specifically relates to an automatic noodle sheet stacking machine. Background Technology

[0002] In the production of braised noodles, the dough slices cut into oval shapes need to be stacked. While existing braised noodle stacking machines can meet the basic requirement of stacking, the distance between the processing conveyor and the stacking conveyor is fixed. Furthermore, the stacking conveyor moves the stacked dough slices back and forth under the processing conveyor structure during operation. This limits the stacking conveyor to conveying dough slices that are no thicker than the fixed interval between the stacking conveyor and the processing conveyor, thus presenting significant limitations and failing to fully meet user needs.

[0003] For example, the utility model patent with announcement number CN220235853U discloses a new type of automatic noodle stacking machine. In the technical solution of this patent document, the noodle sheets are stacked by the cooperation of the reciprocating conveying mechanism and the processing conveying mechanism. However, the vertical height of the reciprocating conveying structure and the processing conveying structure cannot be adjusted flexibly and conveniently. As a result, the stacking thickness of the noodle sheets cannot exceed the fixed interval between the stacking conveying mechanism and the processing conveying mechanism. When the thickness of the noodle sheets to be stacked is relatively thick, it is time-consuming and laborious to disassemble and reassemble the reciprocating conveying mechanism and the processing conveying mechanism. Therefore, it cannot fully meet people's needs. Utility Model Content

[0004] In view of this, this utility model addresses the shortcomings of the existing technology by providing an automatic noodle-stacking machine that not only meets the basic requirements for stacking noodle sheets, but also allows for flexible and convenient adjustment of the vertical height of the stacking conveyor mechanism to meet the stacking requirements of various thicknesses, thereby more fully satisfying people's usage needs.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: an automatic stacking noodle slicing machine, including a first frame, a slicing conveying mechanism on the first frame, a second frame on the side of the first frame, a connecting slot vertically provided at the corner of the second frame, a connecting plate provided in the connecting slot, a stacking conveying mechanism located below the slicing conveying mechanism on the connecting plate, a first fixing plate provided on the lower side of the stacking conveying mechanism, a second fixing plate provided on the second frame, an adjusting screw vertically penetrating and screwed onto the second fixing plate, and the upper end of the adjusting screw being rotatably connected to the first fixing plate.

[0006] As a further improvement of this utility model, a handle is also provided at the lower end of the adjusting screw, and the first fixing plate is rotatably connected to the upper end of the adjusting screw through a bearing.

[0007] As a further improvement of this utility model, a locking bolt is screwed onto the side wall of the connecting slot, which can abut against the outer side wall of the connecting plate to fix the connection between the connecting slot and the connecting plate.

[0008] As a further improvement of this utility model, the connecting plate is also provided with a receiving groove that is misaligned with the locking bolt, and the connecting plate is also provided with a scale line located in the receiving groove.

[0009] As a further improvement of this utility model, the bottom of the stacking conveyor mechanism is also provided with a placement plate through a vertical plate, and a receiving plate for receiving the stacked sheets is detachably provided on the placement plate.

[0010] As a further improvement of this utility model, a supporting inclined plate is also provided between the vertical plate and the placement plate. The supporting inclined plate is set between the connecting plate and the placement plate to form a triangular support structure, which makes the placement plate and the receiving plate more stable.

[0011] As a further improvement of this utility model, a placement slot is provided on the placement plate, and a placement block that engages with the placement slot is provided at the bottom of the receiving plate.

[0012] As a further improvement of this utility model, a controller is also provided on the second frame, and the controller is electrically connected to the slicing conveying mechanism and the stacking conveying mechanism.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] Firstly, by simply turning the adjusting screw, the stacking conveyor mechanism can be moved vertically up and down under the rotational cooperation of the adjusting screw and the first fixed plate, and the insertion cooperation of the connecting plate and the connecting slot. This allows for the adjustment of the distance between the stacking conveyor mechanism and the slicing conveyor mechanism, thereby meeting the stacking requirements of sheets of various thicknesses.

[0015] Secondly, after adjusting the vertical height of the stacking conveyor mechanism, the locking bolts can be tightened to fix the connection between the connecting slot and the connecting plate, thereby making the stacking conveyor mechanism more stable. When the height of the stacking conveyor mechanism needs to be adjusted again, simply loosen the locking bolts and release the fixation of the connection between the connecting slot and the connecting plate.

[0016] Thirdly, by engaging the placement block and the placement slot, the receiving plate and the placement plate can be easily and flexibly fixed, so that the receiving plate can receive the stacked sheets that slide off the stacking conveyor mechanism; and the placement plate and the receiving plate can move vertically up and down with the stacking conveyor mechanism, and the relative position of the receiving plate and the stacking conveyor mechanism can remain unchanged, so that the receiving plate can always stably receive the stacked sheets on the stacking conveyor mechanism.

[0017] Fourth, the controller is mounted on the second frame and electrically connected to the slicing conveyor and the stacking conveyor; it can realize centralized control of the entire slicing and stacking process, improving the level of automation; the controller can set operating parameters (such as speed, time, etc.) to improve production efficiency and product consistency; it can be linked with other equipment on the production line to realize intelligent production. Attached Figure Description

[0018] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0019] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the structure of the first fixing plate, the second fixing plate, the adjusting screw, the handle, and the bearing of this utility model. Figure 3 This is a schematic diagram of the receiving plate and the placing block of this utility model; Figure 4 This is a structural schematic diagram of the vertical plate, placement plate, supporting inclined plate, and placement slot of this utility model.

[0020] In the diagram: 101, First frame; 102, Slicing conveying mechanism; 103, Second frame; 104, Connecting slot; 105, Connecting insert plate; 106, Stacking conveying mechanism; 107, First fixing plate; 108, Second fixing plate; 109, Adjusting screw; 110, Tightening handle; 111, Bearing; 112, Locking bolt; 113, Slicing roller assembly; 201, Receiving groove; 202, Scale line; 301, Vertical plate; 302, Placement plate; 303, Receiving plate; 304, Supporting inclined plate; 305, Placement slot; 306, Placement block. Detailed Implementation

[0021] To better understand this utility model, the following embodiments further illustrate its content, but the scope of protection of this utility model is not limited to the embodiments described below. Numerous specific details are set forth in the following description to provide a more thorough understanding of this utility model. However, it will be apparent to those skilled in the art that this utility model can be practiced without one or more of these details.

[0022] like Figure 1 , 2 As shown, an automatic stacking noodle slicing machine includes a first frame 101, on which a slicing conveying mechanism 102 is provided. A second frame 103 is also provided on the side of the first frame 101. A connecting slot 104 is vertically provided at the corner of the second frame 103. A connecting plate 105 is provided in the connecting slot 104. A stacking conveying mechanism 106 located below the slicing conveying mechanism 102 is provided on the connecting plate 105. A first fixing plate 107 is provided on the lower side of the stacking conveying mechanism. A second fixing plate 108 is provided on the second frame 103. An adjusting screw 109 is vertically threaded through and screwed onto the second fixing plate 108. The upper end of the adjusting screw 109 is rotatably connected to the first fixing plate 107.

[0023] like Figure 1 , 2 As shown, a handle 110 is also provided at the lower end of the adjusting screw 109, and the first fixing plate 107 is rotatably connected to the upper end of the adjusting screw 109 through a bearing 111. The outer ring of the bearing 111 is fixedly connected to the bottom of the first fixing plate 107, and the inner ring of the bearing 111 is fixedly connected to the outer side wall of the upper end of the adjusting screw 109.

[0024] like Figure 1 , 2 As shown, a locking bolt 112 is also screwed onto the side wall of the connecting slot 104, which can abut against the outer side wall of the connecting insert 105 to fix the connection between the connecting slot 104 and the connecting insert 105.

[0025] like Figure 1 , 2 As shown, the connecting plate 105 is also provided with a receiving groove 201 that is misaligned with the locking bolt 112, and the connecting plate 105 is also provided with a scale line 202 located in the receiving groove 201. The scale line 202 allows for easy viewing of the position of the top of the connecting slot 104 relative to the connecting plate 105 and the scale line 202, thereby accurately adjusting the vertical height of the slice conveying mechanism 102.

[0026] Both the slicing conveyor structure and the stacking conveyor mechanism 106 are belt conveyors.

[0027] The worker first adjusts the adjusting screw 109 according to the required stacking thickness. Under the rotational cooperation of the adjusting screw 109 and the first fixed plate 107, and the insertion cooperation of the connecting plate 105 and the connecting slot 104, the stacking conveying mechanism 106 is driven to move vertically up and down, thereby adjusting the distance between the stacking conveying mechanism 106 and the slicing conveying mechanism 102. Then, the locking bolt 112 is tightened to fix the position of the connecting slot 104 and the connecting plate 105, ensuring the stability of the stacking conveying mechanism 106 and thus meeting the stacking requirements of various thicknesses of sheets.

[0028] The dough sheet to be processed is fed into the input end of the slicing conveyor 102. The slicing roller assembly 113 on the slicing conveyor 102 slices the dough sheet evenly to form oval-shaped noodle slices. The sliced ​​noodle slices are then conveyed to the output end by the slicing conveyor 102, ready to enter the stacking conveyor 106. First, the stacking conveyor 106 and the slicing conveyor 102 run forward simultaneously to receive the first row of noodle slices. The first row of noodle slices is completely conveyed onto the stacking conveyor 106 to ensure that it is fully received. When the first row of noodle slices has been completely conveyed, the slicing conveyor 102 stops running, ready for the next round of slicing.

[0029] The stacking conveyor 106 starts running in reverse to make room for receiving the next batch of slices; the slicing conveyor 102 restarts its forward operation, conveying the noodles after the second row of slices to the output end; when the second row of noodles is about to be conveyed, the stacking conveyor 106 resumes its forward operation and keeps synchronized with the slicing conveyor 102; the second row of noodles is accurately stacked on top of the first row of noodles, completing two layers of stacking; the above steps (third round, fourth round, etc.) continue to cycle, completing a new layer of stacking each time, until the preset number of stacking layers is reached; the controller controls the start, stop and direction switching of the slicing conveyor 102 and the stacking conveyor 106 according to preset parameters (such as the number of stacking layers, speed, time, etc.) to ensure that each layer of noodles can be accurately stacked.

[0030] When the number of layers of noodles accumulated on the stacking conveyor 106 reaches a preset value, the controller triggers the output process; the stacking conveyor 106 runs in the forward direction, smoothly outputting the multi-layered stacked noodles to the output receiving mechanism; after the output is completed, the stacking conveyor 106 runs in the reverse direction, returning to the initial position, ready for the next round of stacking.

[0031] According to another embodiment of the present invention, such as Figure 2 As shown, the bottom of the stacking conveyor is also provided with a placement plate 302 via a vertical plate 301, and a receiving plate 303 for receiving the stacked sheets is detachably provided on the placement plate 302.

[0032] like Figure 2 , 4As shown, a supporting inclined plate 304 is also provided between the vertical plate 301 and the placement plate 302. The supporting inclined plate 304 is provided between the connecting insert plate 105 and the placement plate 302 to form a triangular support structure, which makes the placement plate 302 and the receiving plate 303 have better stability.

[0033] like Figure 3 , 4 As shown, the placement plate 302 is provided with a placement slot 305, and the bottom of the receiving plate 303 is provided with a placement block 306 that engages with the placement slot 305.

[0034] The second frame 103 is also equipped with a controller, which is electrically connected to the slice conveying mechanism 102 and the stacking conveying mechanism 106.

[0035] Workers can easily and flexibly fix the receiving plate 303 and the placement plate 302 by engaging the placement block 306 with the placement slot 305. The receiving plate 303 can then receive the stacked sheets that slide off the stacking conveyor mechanism. Furthermore, the placement plate 302 and the receiving plate 303 can move vertically up and down with the stacking conveyor mechanism 106, and the relative position of the receiving plate 303 and the stacking conveyor mechanism 106 can remain unchanged. Therefore, the receiving plate 303 can always stably receive the stacked sheets on the stacking conveyor mechanism 106.

[0036] Because the controller is located on the second frame 103 and is electrically connected to the slicing conveyor 102 and the stacking conveyor 106, it can achieve centralized control of the entire slicing and stacking process, improving the level of automation. The controller can set operating parameters (such as speed, time, etc.) to improve production efficiency and product consistency. It can also be linked with other equipment on the production line to achieve intelligent production.

[0037] When the receiving tray 303 is full or multiple layers of noodles need to be transferred, the receiving tray 303 can be easily removed for subsequent processing. After replacing or cleaning the receiving tray 303, it can be reinstalled on the placement plate 302 for continued use.

[0038] The above are preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. An automatic noodle-stacking machine, comprising a first frame (101), characterized in that: The first frame (101) is provided with a slicing conveying mechanism (102). The first frame (101) is also provided with a second frame (103) at its side end. A connecting slot (104) is vertically provided at the corner of the second frame (103). A connecting plate (105) is provided in the connecting slot (104). A stacking conveying mechanism (106) located below the slicing conveying mechanism (102) is provided on the connecting plate (105). A first fixing plate (107) is provided on the lower side of the stacking conveying mechanism. A second fixing plate (108) is provided on the second frame (103). An adjusting screw (109) is vertically threaded through and screwed onto the second fixing plate (108). The upper end of the adjusting screw (109) is rotatably connected to the first fixing plate (107).

2. The automatic stacking noodle sheeting machine as described in claim 1, characterized in that: The lower end of the adjusting screw (109) is also provided with a handle (110), and the first fixing plate (107) is rotatably connected to the upper end of the adjusting screw (109) through a bearing (111).

3. The automatic stacking noodle sheeting machine as described in claim 2, characterized in that: A locking bolt (112) is screwed onto the side wall of the connecting slot (104) so ​​as to abut against the outer side wall of the connecting plate (105) and thus fix the connection between the connecting slot (104) and the connecting plate (105).

4. The automatic stacking noodle sheeting machine as described in claim 3, characterized in that: The connecting plate (105) is also provided with a receiving groove (201) that is misaligned with the locking bolt (112), and the connecting plate (105) is also provided with a scale line (202) located in the receiving groove (201).

5. The automatic stacking noodle sheeting machine as described in claim 4, characterized in that: The bottom of the stacking conveying mechanism is also provided with a placement plate (302) via a vertical plate (301), and a receiving plate (303) for receiving the stacked sheets is detachably provided on the placement plate (302).

6. The automatic stacking noodle sheeting machine as described in claim 5, characterized in that: A supporting inclined plate (304) is also provided between the vertical plate (301) and the placement plate (302).

7. The automatic stacking noodle sheeting machine as described in claim 6, characterized in that: The placement plate (302) is provided with a placement slot (305), and the bottom of the receiving plate (303) is provided with a placement block (306) that engages with the placement slot (305).

8. The automatic stacking noodle sheeting machine as described in claim 7, characterized in that: The second frame (103) is also equipped with a controller, which is electrically connected to the slice conveying mechanism (102) and the stacking conveying mechanism (106).

Citation Information

Patent Citations

  • Novel braised noodle slicing machine capable of automatically laminating

    CN220235853U