Noodle press with double-plate alternate movement noodle wadding pounding and conveying mechanism

By designing a double-plate alternating surface floc pounding and feeding mechanism in the dough press, the problems of poor feeding of surface flocs and safety hazards are solved, and the uniform and stable feeding of surface flocs are achieved.

CN222885194UActive Publication Date: 2025-05-20HENAN UNIVERSITY OF TECHNOLOGY +1
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Patent Information

Application Number
CN202421948532.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-05-20
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

During the feeding process of the existing noodle press, there are problems such as poor feeding, easy agglomeration, arching, and manual operation.

Method used

A surface flocculation feeding mechanism with alternating movement of double plates is designed. The surface flocculation is rubbed down through alternately moving up and down through two surface vertical plates and evenly pounded into the surface pressing roller to prevent surface flocculation from leaving the working area.

Benefits of technology

The uniform feeding of the floe is achieved, avoiding the problems of the floe aggloe and disengagement of the floe, and improving the stability and safety of the feed.

✦ Generated by Eureka AI based on patent content.

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Abstract

A noodle press with a double-plate alternate movement noodle wadding pounding and conveying mechanism comprises a rack, two noodle pressing rollers are rotationally arranged on the rack, a noodle pressing space is formed between the two noodle pressing rollers, a noodle conveying inclined plate is arranged on the rack and located above the noodle pressing rollers, and the noodle wadding pounding and conveying mechanism is arranged on the rack. The noodle wadding pounding mechanism comprises a main shaft, a driving motor and two noodle pounding vertical plates; the main shaft is rotationally arranged on the rack and parallel to the dough pressing roller, eccentric connecting rods are symmetrically hinged to the two ends of the main shaft respectively, one end of each eccentric connecting rod is connected with the main shaft through a hinge piece, and the other end of each eccentric connecting rod is hinged to a lifting seat arranged on the top of the rack; the noodle smashing vertical plates are respectively fixed between the two corresponding lifting seats and are suspended right above the noodle pressing space side by side; an output shaft of the driving motor is connected with the eccentric connecting rod through a rocker assembly. According to the utility model, the two dough smashing vertical plates which alternately move up and down are used for rubbing down dough and uniformly smashing the dough into the dough pressing space, so that the situation that the dough is taken away from a working area is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of noodle floc feeding of a noodle press, in particular to a noodle press with a noodle floc ramming and feeding mechanism with double-plate alternating movement. Background Art

[0002] In the food industry, the manufacturing processes of noodle products such as dried noodles, instant noodles, and sour soup noodle leaves are generally as follows: flour is mixed with water to form noodle flocs. First, the noodle flocs are fed to the first noodle pressing roller on the noodle press for center rolling to obtain a noodle sheet, and then the noodle sheet is successively fed to the subsequent noodle pressing rollers for gradual rolling into a noodle strip with specified indexes. During this rolling process, the thickness of the noodle sheet becomes thinner and thinner, and finally it is cut into noodle products. In the above process, since the incoming material between the first noodle pressing rollers is noodle flocs, which are in granular and small sheet forms and are not easily fed into the working area of the first pair of noodle pressing rollers, and the noodle flocs are prone to caking and arching, resulting in unsmooth feeding. In the prior art, usually a special device is used to dial the noodle flocs into the center of the first pair of noodle pressing rollers. The special device is a radially extending branched rod operated by a worker or a flat steel plate moving up and down arranged on the machine. However, when manually ramming and feeding the noodle flocs with a branched rod, the noodle flocs may adhere to the flow plates on both sides of the upper feeding trough and still need to be manually cleaned, posing certain safety hazards. When feeding the noodles by machine ramming, a flat steel plate is arranged at the feeding port of the first noodle pressing roller. The plate is distributed within the entire length range of the noodle pressing roller. Depending on the up and down movement of the plate, the noodle flocs are fed into the working area of the first noodle pressing roller. When the flat plate moves downward, the noodle flocs can be fed into the working area, while when the flat plate moves upward, it has no effect of pressing the noodle flocs into the working area. In severe cases, it will even carry the noodle flocs away from the working area and cannot achieve uniform feeding. Content of the Utility Model

[0003] The utility model aims to provide a noodle press with a noodle floc ramming and feeding mechanism with double-plate alternating movement, which can rub off the noodle flocs and evenly ram them into two noodle pressing rollers through the alternating up and down movement of two ramming vertical plates and will not carry away the noodle flocs and the like from the working area.

[0004] To solve the above technical problems, the specific solution adopted by the utility model is a noodle press with a noodle floc ramming and feeding mechanism with double-plate alternating movement, including a frame. Two noodle pressing rollers are rotatably arranged on the frame. A noodle pressing space is formed between the two noodle pressing rollers. A noodle feeding inclined plate for guiding noodle flocs into the noodle pressing space is arranged above the noodle pressing rollers on the frame.

[0005] A dough fluff ramming and feeding mechanism is arranged on the frame. The dough fluff ramming and feeding mechanism includes a main shaft, a driving motor, and two dough ramming vertical plates. The main shaft is rotatably arranged on the frame and is parallel to the noodle pressing roller. Eccentric connecting rods are symmetrically hinged to both ends of the main shaft. One end of each eccentric connecting rod is connected to the main shaft through a hinge, and the other end is hingedly connected to a lifting seat at a corresponding position on the top of the frame. The two dough ramming vertical plates are respectively fixed between the corresponding two lifting seats and are suspended side by side directly above the noodle pressing space. The output shaft of the driving motor is connected to the eccentric connecting rod through a rocker assembly to drive the two dough ramming vertical plates to move up and down alternately.

[0006] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: mounting frames are respectively installed on the upper sides of the two dough ramming vertical plates, and the two dough ramming vertical plates are respectively connected to the corresponding lifting seats on both sides through the mounting frames.

[0007] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: The lifting seat includes a sleeve fixedly arranged on the frame. The sleeve is a linear bearing with balls inside. A sliding column is slidably arranged in the sleeve. A connecting block with an L-shaped cross-section is arranged at the top of the sliding column. The short side of the L-shaped connecting block is fixed on the sliding column, and the long side of the L-shaped connecting block is clamped inside the corresponding mounting frame.

[0008] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: A rotating shaft is arranged on the side of the short side of the L-shaped connecting block opposite to its long side, and a rotating ring for sleeving on the rotating shaft is arranged at the end of the eccentric connecting rod.

[0009] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: Horizontal swing frames are respectively installed at both ends of the main shaft, and the hinge parts are respectively arranged on the outer side surfaces at both ends of the corresponding horizontal swing frames.

[0010] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: The hinge part includes a horizontal rotating column rotatably arranged at the end of the horizontal swing frame and a rotating block fixedly installed on the horizontal rotating column. The eccentric connecting rod is fixed to the corresponding rotating block.

[0011] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: The rocker assembly includes an eccentric disc installed at the end of the output shaft of the driving motor. An eccentric connecting column is fixed on the eccentric disc. A rocker is sleeved at the end of the eccentric connecting column away from the eccentric disc. The end of the rocker away from the eccentric connecting column is eccentrically rotatably connected to the main shaft.

[0012] As another optimized solution of the noodle press with a dough fluff ramming and feeding mechanism having double plates moving alternately: Axle seats are respectively arranged in the middle of the two cross beams at the bottom of the frame, and the eccentric connecting rods pass through the two axle seats.

[0013] As another optimization solution of the above-mentioned noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately: a noodle feeding inclined plate is respectively arranged on both sides of the noodle tamping vertical plate between the two frames, and the noodle feeding inclined plate is bent toward one side of the frame to form a fixed flange.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] The dough tamping and feeding mechanism in the utility model is arranged on a frame, and two dough pressing rollers are arranged side by side at the upper end of the frame, and a dough pressing space is formed between the dough pressing rollers. A dough feeding inclined plate is arranged above the dough pressing rollers, and the dough flocs are introduced into the dough pressing space through the dough pressing inclined plate. The main shaft in the dough tamping and feeding mechanism is rotatably arranged at the bottom of the frame, which lowers the center of gravity of the entire equipment. A lifting seat is arranged at the top of the frame, and the two dough tamping vertical plates in the dough tamping and feeding mechanism are arranged side by side directly above the dough pressing space through the corresponding lifting seats, and the two ends of the main shaft are respectively hingedly connected to the corresponding lifting seats through eccentric connecting rods. The driving motor is hingedly connected to the main shaft through a rocker assembly arranged at the end of its output shaft, so that the main shaft can reciprocate under the drive of the driving motor and drive the two dough tamping vertical plates to move up and down alternately through the eccentric connecting rod to rub the dough flocs down and evenly tamp them into the dough pressing space, so as to keep the dough tamping feeding pressure stable, realize uniform feeding, and avoid the problem that the dough flocs are taken away from the dough pressing work area when the existing single plate is retracted. Brief Description of the Figures

[0016] Figure 1 is a schematic diagram of the main structure of the utility model;

[0017] Figure 2 is a left-side structural schematic diagram of the utility model;

[0018] Figure 3 is a right view structural diagram of the utility model;

[0019] Figure 4 is a schematic diagram of the top view of the structure of the utility model;

[0020] References: 1, frame, 101, shaft seat, 102, crossbeam, 2, main shaft, 201, horizontal swing frame, 202, hinge, 2021, horizontal rotating column, 2022, rotating block, 3, driving motor, 4, rocker assembly, 401, eccentric disc, 402, eccentric connecting column, 403, rocker, 5, eccentric connecting rod, 501, rotating ring, 502, rotating shaft, 6, adjusting hand wheel, 7, lifting seat, 701, connecting block, 702, sliding column, 703, sleeve, 8, noodle feeding inclined plate, 9, noodle tamping vertical plate, 901, installation frame, 10, noodle pressing space, 11, noodle pressing roller. Specific implementation method

[0021] The technical solution of the utility model is further elaborated in detail below in conjunction with specific embodiments. Parts of the utility model that are not described in detail in the following embodiments, such as the output shaft of the driving motor driving the main shaft to reciprocate through the rocker assembly hinged to the main shaft, and the rotating adjustment hand wheel set on the frame can adjust the spacing between the two pressing rollers, etc., should be immediately known to those skilled in the art, or should be known to the prior art.

[0022] If Figures 1-4 As shown, a dough pressing machine with a dough tamping and feeding mechanism with two plates moving alternately comprises a frame 1 and a dough tamping and feeding mechanism arranged on the frame 1. The frame 1 comprises a rectangular bottom frame and two supporting plates, the rectangular bottom frame is arranged on the ground, and the two supporting plates are respectively arranged on the wide sides of the rectangular bottom frame in the vertical direction. Two dough pressing rollers 11 arranged side by side are arranged between the two supporting plates, and a dough pressing space 10 for pressing the dough into dough skin is formed between the two dough pressing rollers 11.

[0023] The side walls of the two support plates are provided with bearings for the corresponding noodle pressing rollers 11 to pass through and rotate, and a fixed gear is installed at the end of one of the noodle pressing rollers 11 passing through the corresponding bearing. A slide groove is provided on the support plate on one side of the fixed gear, and a slider is installed in the slide groove, and bearings are respectively provided on the two sliders. The end of the other noodle pressing roller 11 passes through the bearings on the corresponding sliders and is installed with a movable gear, which can mesh with the fixed gear.

[0024] Block bars are installed at the slots of the two support plates, and an adjustment hand wheel 6 is installed on the block bars. The adjustment hand wheel 6 includes a hand wheel and a threaded rod passing through the block bar and resting on the slider. The block bar is provided with a threaded hole for threaded connection with the threaded rod. The hand wheel can be turned to push the slider to drive the corresponding noodle pressing roller 11 to move closer to or away from the other noodle pressing roller 11 to adjust the distance between the two noodle pressing rollers 11, so as to produce noodle products with different thickness requirements.

[0025] A noodle-feeding inclined plate 8 is respectively arranged above the corresponding noodle-pressing roller 11 between the two support plates. The wide sides of the two noodle-feeding inclined plates 8 are bent 90° to form fixed flanges, and the noodle-feeding inclined plates 8 are fixed to the frame 1 by bolts passing through the fixed flanges. The noodle-feeding inclined plates 8 are gradually inclined outward from bottom to top, and the upper side of the noodle-feeding inclined plates 8 exceeds the support plate setting, so that the noodle flocs can be introduced into the noodle-pressing space 10 through the noodle-feeding inclined plates 8, and the noodle flocs can be prevented from escaping from the noodle-pressing space 10.

[0026] The dough pounding and feeding mechanism includes a driving motor 3, a main shaft 2, two dough pounding vertical plates 9 and four eccentric connecting rods 5. The main shaft 2 is rotatably arranged on two cross beams 102 of the rectangular bottom frame of the frame 1. Axle seats 101 are respectively fixed to the upper sides of the middle parts of the two cross beams 102. The main shaft 2 passes through the axle seats 101. The main shaft 2 is arranged at the bottom of the frame 1 to lower the center of gravity of the equipment.

[0027] At both ends of the main shaft 2, a horizontal swing frame 201 is respectively fixed. The horizontal swing frame 201 is a long plate, and a circular hole is provided in the middle of the horizontal swing frame 201. Then, the horizontal swing frame 201 is sleeved on the end of the main shaft 2 through the circular hole. At both ends of each horizontal swing frame 201, a hinge member 202 is provided. The two ends of the horizontal swing frame 201 are respectively connected to an eccentric connecting rod 5 through the hinge member 202.

[0028] The hinge member 202 includes a horizontal rotating column 2021 and a rotating block 2022 sleeved on the horizontal rotating column 2021. The horizontal rotating column 2021 is fixed on the outer side walls at both ends of the horizontal swing frame 201, and one end of the horizontal rotating shaft 502 is rotatably arranged at the end of the horizontal swing frame 201, and the other end is arranged towards the outside. The lower end of the rotating block 2022 is in rotational cooperation with the horizontal rotating column 2021. A U-shaped groove is provided in the upper end of the rotating block 2022. Then, the lower end of the corresponding eccentric connecting rod 5 is clamped in the U-shaped groove of the corresponding rotating block 2022. At the upper ends of the eccentric connecting rods 5 far from the rotating block 2022, rotating rings 501 are provided.

[0029] Two dough-pounding vertical plates 9 are arranged directly above the dough-pressing space 10. Mounting frames 901 are respectively provided on the two dough-pounding vertical plates 9. The mounting frames 901 are distributed along the length direction of the corresponding dough-pounding vertical plates 9. The openings of the mounting frames 901 all face one side, and their lower sides are fixedly connected to the upper sides of the corresponding dough-pounding vertical plates 9.

[0030] The upper sides of the dough-pounding vertical plates 9 are fixed to the lower sides of the mounting frames 901. On the outer side walls of the tops of each support plate, two lifting seats 7 are provided. Then, the two dough-pounding vertical plates 9 are respectively connected to the corresponding lifting seats 7 through the mounting frames 901, so as to be suspended directly above the dough-pressing space 10 between the two dough-feeding inclined plates 8.

[0031] The two lifting seats 7 on the support plate are suspended side by side directly above the dough-pressing space 10. The lifting seat 7 includes a sleeve 703 fixed to the support plate. The sleeve 703 is a linear bearing with balls provided on the inner wall of the cylinder. A sliding column 702 sliding in the vertical direction is inserted into the sleeve 703. A top of the sliding column 702 is fixed with an L-shaped connecting block 701. The short side of the L-shaped connecting block 701 is fixed to the sliding column 702. The long side of the L-shaped connecting block 701 is respectively clamped in the frame of the mounting frame 901 with its opening facing one side. And a rotating shaft 502 is provided on one side of the short side of the L-shaped connecting block 701 opposite to its long side. The eccentric connecting rod 5 is sleeved on the rotating shaft 502 of the connecting block 701 through the rotating ring 501 provided at its upper end.

[0032] A mounting bracket is provided at the bottom of the driving motor 3, and the driving motor 3 is eccentrically and rotationally connected to the main shaft 2 through a rocker assembly 4 provided at the end of its output shaft. The rocker assembly 4 includes an eccentric disc 401 mounted at the end of the output shaft of the driving motor 3. A plurality of circular holes are evenly distributed on the eccentric disc 401, and an eccentric connecting column 402 is fixed in one of the circular holes. One end of the eccentric connecting column 402 is fixed in the circular hole, and a ring is sleeved on the other end. A square block is fixed on the side of the ring facing the main shaft 2, and a rocker 403 is connected to the end of the square block away from the eccentric disc 401.

[0033] A hinge plate is fixed at the end of the rocker 403 close to the main shaft 2. The hinge plate is arranged facing the main shaft 2. An articulated convex plate is hoop-mounted around the middle of the main shaft 2. An articulated shaft is passed through between the articulated convex plate and the hinge plate, so that the output shaft of the driving motor 3 rotates and drives the main shaft 2 to reciprocate through the rocker 403. The reciprocating main shaft 2 drives the two dough-beating vertical plates 9 to alternately move up and down through the eccentric connecting rod 5. The two alternately moving dough-beating vertical plates 9 can prevent the dough-beating vertical plates 9 from pounding the dough flocs into the dough-pressing space 10. In addition, the two alternately moving dough-beating vertical plates 9 can prevent one of the dough-beating vertical plates 9 from taking the dough flocs and other materials away from the dough-pressing space 10 when it rises. In addition, the eccentric variable diameter of the main shaft 2 can be adjusted by changing the position of the eccentric connecting column 402 mounted on the eccentric disc 401, so as to adjust the stroke of the dough-beating vertical plate 9 moving up and down in the vertical direction.

[0034] The specific implementation manner of the present utility model is as follows: First, pour the dough flocs and the like between the two dough-pressing rollers 11, and start the driving motor 3. The output shaft of the driving motor 3 rotates to pull the rocker 403 to move reciprocally and drive the main shaft 2 to rotate reciprocally. The horizontal swing frame 201 rotates with the rotation of the main shaft 2. The rotating main shaft 2 drives the two dough-beating vertical plates 9 to alternately move up and down through the eccentric connecting rod 5, and the dough flocs and the like between the two dough-pressing rollers 11 can be pounded into the dough-pressing space 10.

Claims

1. A noodle pressing machine with a noodle tamping and feeding mechanism with two plates that move alternately, comprising a frame (1), two noodle pressing rollers (11) are rotatably arranged on the frame (1), a noodle pressing space (10) is formed between the two noodle pressing rollers (11), and a noodle feeding inclined plate (8) is arranged above the noodle pressing rollers (11) on the frame (1) for guiding noodle wadding into the noodle pressing space (10), characterized in that: The frame (1) is provided with a dough tamping and conveying mechanism, which comprises a main shaft (2), a driving motor (3) and two dough tamping vertical plates (9); the main shaft (2) is rotatably arranged on the frame (1) and is parallel to the dough pressing roller (11); the two ends of the main shaft (2) are symmetrically hinged with eccentric connecting rods (5); one end of the eccentric connecting rod (5) is connected to the main shaft (2) through a hinge (202), and the other end is hingedly connected to a lifting seat (7) arranged at a corresponding position on the top of the frame (1); the two dough tamping vertical plates (9) are respectively fixed between the two corresponding lifting seats (7), and are suspended side by side just above the dough pressing space (10); The output shaft of the driving motor (3) is connected to the eccentric connecting rod (5) through a rocker assembly (4) so ​​as to drive the two ramming vertical plates (9) to move up and down alternately.

2. A noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 1, characterized in that: The upper sides of the two ramming surface vertical plates (9) are respectively installed with mounting frames (901), and the two ramming surface vertical plates (9) are respectively connected to the lifting seats (7) on the corresponding two sides through the mounting frames (901).

3. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 2, characterized in that: The lifting seat (7) comprises a sleeve (703) fixedly arranged on the frame (1), wherein the sleeve (703) is a linear bearing with a ball inside; a sliding column (702) is slidably arranged inside the sleeve (703), and a connecting block (701) with an L-shaped cross-section is arranged on the top of the sliding column (702), the short side of the L-shaped connecting block (701) is fixed on the sliding column (702), and the long side of the L-shaped connecting block (701) is clamped in the frame of the corresponding installation frame (901).

4. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 3, characterized in that: A rotating shaft (502) is arranged on one side of the short side of the L-shaped connecting block (701) opposite to the long side thereof, and a rotating ring (501) for sleeved on the rotating shaft (502) is arranged at the end of the eccentric connecting rod (5).

5. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 1, characterized in that: Horizontal swing frames (201) are respectively installed at both ends of the main shaft (2), and hinged parts (202) are respectively arranged on the outer side surfaces of the two ends of the corresponding horizontal swing frames (201).

6. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 5, characterized in that: The hinged member (202) comprises a horizontal rotating column (2021) rotatably arranged at the end of the horizontal swing frame (201) and a rotating block (2022) fixedly installed on the horizontal rotating column (2021), and the eccentric connecting rod (5) is fixed on the corresponding rotating block (2022).

7. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 1, characterized in that: The rocker assembly (4) comprises an eccentric disc (401) mounted on the end of the output shaft of the driving motor (3); an eccentric connecting column (402) is fixed on the eccentric disc (401); a rocker (403) is sleeved on one end of the eccentric connecting column (402) away from the eccentric disc (401); and one end of the rocker (403) away from the eccentric connecting column (402) is eccentrically rotatably connected to the main shaft (2).

8. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 1, characterized in that: Axle seats (101) are respectively arranged in the middle of two cross beams (102) at the bottom of the frame (1), and the eccentric connecting rod (5) passes through the two axle seats (101).

9. The noodle pressing machine with a noodle tamping and feeding mechanism with two plates moving alternately according to claim 1, characterized in that: A surface-feeding inclined plate (8) is respectively arranged on both sides of the surface-beating vertical plate (9) between the two frames (1), and the surface-feeding inclined plate (8) is bent toward one side of the frame (1) to form a fixed flange.