Roller opening mechanism

By designing a roller slitting mechanism and utilizing a roller and pressure roller transmission system with equal diameters but different rotation speeds, the problems of long proofing time, high equipment cost, and low automation in hand-pulled noodle production have been solved, achieving efficient gluten network formation and automated optimization of the production line.

CN118120779BActive Publication Date: 2025-10-21QINGDAO HAIKEJIA ELECTRONCE EQUIP MFG +1
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202410434162.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-11
Publication Date
2025-10-21
Estimated Expiration
2044-04-11

AI Technical Summary

Technical Problem

Existing hand-pulled dough production processes require a long proofing time, have high equipment costs, require a large factory area, and have a low degree of automation in the production line.

Method used

The machine adopts a roller sizing mechanism, which includes a base, a frame, a roller, and a sizing section. The frame is adjusted by an angle adjustment mechanism. The machine utilizes rollers of equal diameter but different speeds and a pressure roller transmission system to achieve rolling, shaping, and stretching of the dough, replacing the traditional roller extrusion and ensuring the integrity of the gluten network.

Benefits of technology

It shortens the dough proofing time, reduces equipment costs and floor space, improves the automation level of the production line, and ensures the integrity of the gluten network.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118120779B_ABST
    Figure CN118120779B_ABST
Patent Text Reader

Abstract

The invention relates to a roller opening mechanism, which comprises a base part, a frame part, a roller part and an opening part installed on the base part, the base part is movable, the frame part is arranged above the base part, and the angle between the frame part and the base part is adjusted by an angle adjusting mechanism. The advantages of the invention are: the dough is rolled by the rotation of the rollers with equal diameter and different rotating speed, which can arrange the dough appearance regularly and stretch the dough surface, and the function of manual kneading is simulated; the traditional pressing method of strong extrusion of opposite rollers is replaced, and the integrity of gluten network is better ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to a roller strip-cutting mechanism and belongs to the field of hand-rolled noodle processing equipment. Background Art

[0002] With the improvement of living standards, consumers' pursuit of taste has also increased; compared with traditional dried noodles, instant noodles and other staple foods that are easy to store and easy to eat, hand-rolled noodles are deeply loved by people for their unique craftsmanship, smooth taste and super strong chewiness, and are gradually becoming one of people's main staple foods.

[0003] The current method for producing hand-rolled noodles on the market involves simply shaping the large dough kneaded by the dough mixer and placing it on a conveyor belt to rise. The dough is then squeezed through multiple pairs of rollers (gradually shrinking and rolling) to form a relatively narrow, thin dough strip. The strip is then cut into multiple continuous cylindrical shapes for subsequent processing. The disadvantages of this production method are that the large dough requires a longer proofing time, and the subsequent equipment and production costs for the gradual shrinking and rolling of the entire dough are relatively high, and the factory space required is relatively large.

[0004] At present, the domestic market for hand-rolled noodles is huge, and the production process of hand-rolled noodles urgently needs to be optimized and innovated. The automated processing equipment production line that matches the production process of hand-rolled noodles urgently needs to be innovated and improved. Summary of the Invention

[0005] In order to overcome the defects of the prior art, the present invention provides a roller stripping mechanism, and the technical solution of the present invention is:

[0006] A roller stripping mechanism comprises a base portion (D) and a frame portion (J), a roller portion (G) and a stripping portion (K) mounted on the base portion (D); the base portion (D) is movable, the frame portion (J) is arranged above the base portion (D), and the angle between the frame portion (J) and the base portion (D) is adjusted by an angle adjustment mechanism; the roller portion (G) is arranged in the middle of the frame portion (J); the stripping portion (K) is arranged on one side of the frame portion (J); the base portion (D) comprises a machine base front plate (1), a machine base right plate (101) and a machine base left plate (102); the machine base right plate (101) and the machine base left plate (102) are symmetrically mounted at both ends of the machine base front plate (1); the middle and rear portions between the machine base right plate (101) and the machine base left plate (102) are A machine base support shaft (103) is connected; two support bearings (4) are rotatably installed on the outer sides of the machine base right plate (101) and the machine base left plate (102), and a limit rod (5) is installed on the upper part between the two support bearings (4) arranged at equal height intervals; a universal front wheel (2) is connected to both ends of the bottom of the machine base front plate (1); a rear wheel shaft (1) passes through between the machine base right plate (101) and the machine base left plate (102) on the side away from the machine base front plate (1), and a rear wheel (3) is installed on the rear wheel shaft (1) on both sides of the machine base right plate (101) and the rear wheel shaft (1) on both sides of the machine base left plate (102), respectively, and the bottoms of the universal front wheel (2) and the rear wheel (3) are in the same horizontal plane; the outer side surface of the front part of the machine base right plate (101) is connected to an adjustment support (104).

[0007] The frame portion J comprises a right wall panel (7), a left inner wall panel (8) and a left outer wall panel (9), wherein the right wall panel (7), the left inner wall panel (8) and the left outer wall panel (9) are parallel to each other and form a spacing, and a plurality of supports (12) are connected between the left inner wall panel (8) and the left outer wall panel (9), a motor fixing plate (13) is installed at the top between the left inner wall panel (8) and the left outer wall panel (9), and a reducer fixing plate (14) is connected at the bottom; an upper support (10) is connected to the rear end of the upper portion between the right wall panel (7) and the left inner wall panel (8), and two lower supports (11) arranged parallel to each other are installed at the lower portion; each of the lower supports (11) ) is installed at the bottom of the right wall panel (7), and each of the adjusting arc tubes (1101) corresponds to the two support bearings (4) on the same side and is supported by the two support bearings (4); a rotating support shaft (17) is rotatably installed at the rear end of the top of the outer side of the right wall panel (7); one end of the screw shaft (15) is rotatably mounted on the end of the adjusting support shaft (104), and the other end is threadedly connected to one end of the sleeve (16), and the other end of the sleeve (16) is passed through the rotating support shaft (17) and is installed with a hand wheel (18), and the angle of the frame part (J) relative to the base part (D) can be adjusted by rotating the hand wheel (18).

[0008] A limiting rod (5) for limiting the position of the adjusting arc tube (1101) is installed on the right plate (101) and the left plate (102) of the machine base.

[0009] The roller section (G) includes several rollers (19), a small roller sprocket (61), a large roller sprocket (62) and a roller chain (63). Several of the rollers (19) are rotatably installed between the right wall panel (7) and the left inner wall panel (8). The rollers (19) are distributed in an arc shape as a whole. One end of the central axis of the first roller, the third roller, the fifth roller and the seventh roller (19) passes through the right wall panel (7) and is keyed to a large roller sprocket (62). The third roller, the fifth roller and the seventh roller (19) are respectively connected to a large roller sprocket (62). The other ends of the central axes of the roller and the seventh roller (19) pass through the left inner wall panel (8) and are respectively connected to a small roller sprocket (61) by a key; one end of the central axis of the second roller, the fourth roller, the sixth roller and the eighth roller (19) pass through the right wall panel (7) and are respectively connected to a small roller sprocket (61) by a key, and the other ends pass through the left inner wall panel (8) and are respectively connected to a large roller sprocket (56) by a key; the small roller sprocket (51) and the large roller sprocket (52) are connected to each other by a roller chain (63) for transmission.

[0010] The specific structure of the strip opening portion is: a first rotating shaft (20), a second rotating shaft (22), a third rotating shaft (24), a fourth rotating shaft (26), a fifth rotating shaft (28), a sixth rotating shaft (30), a seventh rotating shaft (32) and an eighth transmission shaft (34); the first rotating shaft (20), the second rotating shaft (22), the third rotating shaft (24), the fourth rotating shaft (26), the fifth rotating shaft (28), the sixth rotating shaft (30), the seventh rotating shaft (32) and the eighth transmission shaft (34) are all rotatably mounted on the left inner wall panel (8) and the left outer wall panel (9); one end of the first transmission shaft (20) is located inside the left inner wall panel (8) and is equipped with the first pressure roller (21) The other end of the first transmission shaft (20) is located outside the left inner wall panel (8) and is provided with a first A sprocket 36 and a first B sprocket 37 in sequence at a position away from the left inner wall panel (8); the first A sprocket (36) is in transmission connection with a large roller sprocket (62) installed on the eighth roller; one end of the second transmission shaft (22) is located inside the left inner wall panel (8) and is provided with the second pressing roller (23); the other end of the second transmission shaft (22) is located outside the left inner wall panel (8) and is provided with a second A sprocket (38) and a second B sprocket (39) in sequence at a position away from the left inner wall panel (8); the second B sprocket (39) is in transmission connection with the first B sprocket (37); the third transmission One end of the shaft (24) is located inside the left inner wall panel (8) and is installed with the third pressure roller (25); the other end of the third transmission shaft (24) is located outside the left inner wall panel (8) and is sequentially installed with a third A sprocket (40), a third B sprocket (41), a third gear (42) and a third C sprocket (43) at a position away from the left inner wall panel (8); the third A sprocket (40) is correspondingly connected to the second A sprocket (38); the third C sprocket (43) is connected to the output sprocket (53) installed at the output end of the right-angle reducer (52); the right-angle reducer (52) is installed on the reducer fixing plate (14), and the input end of the right-angle reducer (52) is connected to the output end of the motor fixing plate The output shaft of the motor 54 on (13) is connected to the transmission through the driving pulley (55), the driven pulley (56) and the transmission belt (57); one end of the fourth transmission shaft (26) is located inside the left inner wall panel (8) and is installed with the fourth pressure roller (27), and the other end of the fourth transmission shaft (26) is located outside the left inner wall panel (8) and is installed with the fourth sprocket (44); the fourth sprocket (44) is connected to the third B sprocket (41); one end of the fifth transmission shaft (28) is located inside the left inner wall panel (8) and is installed with the fifth pressure roller (29), and the other end of the fifth transmission shaft (28) is located outside the left inner wall panel (8) and is installed with the fifth sprocket (45);One end of the sixth transmission shaft (30) is located inside the left inner wall panel (8) and is installed with the sixth pressure roller (31); the other end of the sixth transmission shaft (30) is located outside the left inner wall panel (8) and is installed with the sixth A sprocket 46 and the sixth B sprocket (47) in sequence at a position away from the left inner wall panel (8); the sixth A sprocket (46) is connected to the fifth sprocket (45) in a corresponding transmission manner; one end of the seventh transmission shaft (32) is located inside the left inner wall panel (8) and is installed with the seventh pressure roller (33); the seventh transmission shaft (32) is located inside the left inner wall panel (8) and is installed with the seventh pressure roller (33). The other end of the shaft (32) is located outside the left inner wall panel (8) and is provided with a seventh A sprocket (48), a seventh B sprocket (49) and a seventh gear (50) in sequence at a position away from the left inner wall panel (8); the seventh B sprocket (49) is connected to the sixth B sprocket (47) in a transmission manner; the seventh gear (50) is connected to the third gear (42) in a transmission manner; one end of the eighth transmission shaft (34) is located inside the left inner wall panel (8) and is provided with the eighth pressure roller (35); the other end of the eighth transmission shaft (34) is connected to the eighth pressure roller (35) An eighth sprocket (51) is installed on the outside of the left inner wall panel (8); the eighth sprocket (51) is connected to the seventh A sprocket (48) in a corresponding transmission manner; a first cutting flange (2101) is provided on the side of the first pressing roller (21) away from the left inner wall panel (8); a sixth cutting flange (3101) is provided on the side of the sixth pressing roller (31) away from the left inner wall panel (8), the outer side of the sixth cutting flange (3101) being in contact with the inner side of the first cutting flange (2101) to cut the cylindrical dough into strips; the seventh pressing roller (33) A seventh guide flange (3301) is provided on the side away from the left inner wall plate (8), and the seventh guide flange (3301) has a guiding and limiting effect on the cut strip of noodles; a fourth limiting flange (2701) is provided on the side away from the left inner wall plate (8) of the fourth pressing roller (27); an eighth limiting flange (3501) is provided on the side away from the left inner wall plate (8), and the inner side of the eighth limiting flange (3501) is in contact with the outer side of the fourth limiting flange (2701) to jointly limit the width of the cut strip of noodles.

[0011] The advantages of the present invention are: the dough is driven to roll by the rotation of rollers of equal diameter and different speeds, the dough appearance is regularized and the dough surface is stretched at the same time, which plays the role of imitating manual kneading of dough; it can replace the traditional calendering method of strong extrusion of rollers, and better ensure the integrity of the gluten network. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the main structure of the present invention.

[0013] Figure 2 yes Figure 1Schematic diagram of the structure of the middle base.

[0014] Figure 3 yes Figure 1 Schematic diagram of the connection relationship between the middle base part and the frame part.

[0015] Figure 4 yes Figure 1 Schematic diagram of the distribution of the middle roller and the pressure roller.

[0016] Figure 5 yes Figure 1 Schematic diagram of the roller drive on the outer side of the middle right wall panel.

[0017] Figure 6 yes Figure 1 Schematic diagram of the outer roller and pressure roller transmission of the center left inner wall panel.

[0018] Figure 7 yes Figure 1 Schematic diagram of the outer roller and pressure roller transmission of the center left inner wall panel.

[0019] Figure 8 yes Figure 1 Structural diagram of each flange schematic diagram. DETAILED DESCRIPTION

[0020] The present invention will be further described below with reference to specific embodiments, and the advantages and features of the present invention will become clearer as the description proceeds. However, these embodiments are merely exemplary and do not constitute any limitation to the scope of the present invention. It should be understood by those skilled in the art that the details and forms of the technical solutions of the present invention may be modified or replaced without departing from the spirit and scope of the present invention, and such modifications and replacements fall within the scope of protection of the present invention.

[0021] See also Figures 1 to 8The present invention relates to a roller stripping mechanism, comprising a base portion D and a frame portion J, a roller portion G and a stripping portion K installed on the base portion D. The base portion D is movable, and the frame portion J is arranged above the base portion D. The angle between the frame portion J and the base portion D is adjusted by an angle adjustment mechanism; the roller portion G is arranged in the middle of the frame portion J; the stripping portion K is arranged on one side of the frame portion J; the base portion D comprises a machine base front plate 1, a machine base right plate 101 and a machine base left plate 102, and the machine base right plate 101 and the machine base left plate 102 are symmetrically installed at both ends of the machine base front plate 1; in the middle and rear between the machine base right plate 101 and the machine base left plate 102 Both are connected to a machine base support shaft 103; two support bearings 4 are rotatably installed on the outer sides of the machine base right plate 101 and the machine base left plate 102, and a limit rod 5 is installed on the upper part between the two support bearings 4 arranged at equal height intervals; a universal front wheel 2 is connected to the two ends of the bottom of the machine base front plate 1; a rear wheel axle 6 runs through the machine base right plate 101 and the machine base left plate 102 on the side away from the machine base front plate 1, and a rear wheel 3 is installed on the rear wheel axle 6 on both sides of the machine base right plate 101 and the rear wheel axle 6 on both sides of the machine base left plate 102, respectively. The bottoms of the universal front wheel 2 and the rear wheel 3 are in the same horizontal plane; the outer side surface of the front part of the machine base right plate 101 is connected to an adjustment support 104.

[0022] The base portion D is movable, and the angle between the frame portion J and the base portion D can be adjusted by an angle adjustment mechanism. This design makes the entire mechanism flexible, and the angle and position can be adjusted as needed to adapt to different work requirements.

[0023] The structure of the base portion D includes components such as the machine base front plate 1, the machine base right plate 101 and the machine base left plate 102. These components are connected by support shafts 103 and support bearings 4, providing stable support and structural support, which helps to ensure the stability of the mechanism during operation.

[0024] The bottom of the base D is connected to a universal front wheel 2 and a rear wheel 3, which makes the entire mechanism easy to move. This design allows the mechanism to be easily moved to different working locations or sites, improving work efficiency and flexibility.

[0025] The outer side surface of the front part of the right plate 101 of the machine base is connected with an adjustment support 104. This design facilitates the maintenance personnel to adjust and maintain the mechanism, ensuring the stability and reliability of the mechanism during long-term operation.

[0026] The frame portion J includes a right wall panel 7, a left inner wall panel 8 and a left outer wall panel 9. The right wall panel 7, the left inner wall panel 8 and the left outer wall panel 9 are parallel to each other and form a gap. Several supports 12 are connected between the left inner wall panel 8 and the left outer wall panel 9. A motor fixing plate 13 is installed on the top between the left inner wall panel 8 and the left outer wall panel 9, and a reducer fixing plate 14 is connected to the bottom. The rear end of the upper part between the right wall panel 7 and the left inner wall panel 8 is connected to an upper support 10, and two lower supports 11 arranged parallel to each other are installed at the lower part. The bottom of each lower support 11 is connected to the lower end of the lower support 11. An adjusting arc tube 1101 is installed on the part, each of the adjusting arc tubes 1101 corresponds to the two support bearings 4 on the same side, and is supported by the two support bearings 4; a rotating support shaft 17 is rotatably installed on the rear end of the top of the outer side of the right wall panel 7; one end of the screw shaft 15 is rotated to the top of the end of the adjusting support shaft 104, and the other end is threadedly connected to one end of the sleeve 16, and the other end of the sleeve 16 is passed through the rotating support shaft 17 and is installed with a hand wheel 18, and the angle of the frame part J relative to the base part D can be adjusted by rotating the hand wheel 18.

[0027] A limiting rod 5 for limiting the adjustment arc tube 1101 is installed on the right plate 101 and the left plate 102 of the machine base.

[0028] The roller part G includes several rollers 19, a small roller sprocket 61, a large roller sprocket 62 and a roller chain 63. Several of the rollers 19 are rotatably installed between the right wall panel 7 and the left inner wall panel 8. The rollers 19 are distributed in an arc shape as a whole, wherein one end of the central axis of the first roller, the third roller, the fifth roller and the seventh roller 19 passes through the right wall panel 7 and is respectively keyed to a large roller sprocket 62, and the other end of the central axis of the third roller, the fifth roller and the seventh roller 19 passes through the left inner wall panel 8 and is respectively keyed to a small roller sprocket 61; one end of the central axis of the second roller, the fourth roller, the sixth roller and the eighth roller 19 passes through the right wall panel 7 and is respectively keyed to a small roller sprocket 61, and the other end passes through the left inner wall panel 8 and is respectively keyed to a large roller sprocket 56; the small roller sprocket 51 and the large roller sprocket 52 are transmission connected through the roller chain 63. After the motor is started, the first to eighth rollers 19 all rotate clockwise, and the speed of the roller 19 increases according to a certain rule as the serial number increases. After the motor is started, the first pressure roller 21, the second pressure roller 23, the third pressure roller 25 and the fourth pressure roller 27 rotate clockwise through the action of the transmission parts, and the fifth pressure roller 29, the sixth pressure roller 31, the seventh pressure roller 33 and the eighth pressure roller 35 rotate counterclockwise.

[0029] The specific structure of the opening part is: a first rotating shaft 20, a second rotating shaft 22, a third rotating shaft 24, a fourth rotating shaft 26, a fifth rotating shaft 28, a sixth rotating shaft 30, a seventh rotating shaft 32 and an eighth transmission shaft 34. The first rotating shaft 20, the second rotating shaft 22, the third rotating shaft 24, the fourth rotating shaft 26, the fifth rotating shaft 28, the sixth rotating shaft 30, the seventh rotating shaft 32 and the eighth transmission shaft 34 are all rotatably mounted on the left inner wall panel 8 and the left outer wall panel 9. One end of the first transmission shaft 20 is located inside the left inner wall panel 8 and is installed with the first pressure roller 21. The other end of the first transmission shaft 20 is located outside the left inner wall panel 8 and is outwardly away from the left inner wall panel 8. The first A sprocket 36 and the first B sprocket 37 are installed in sequence at the position of the left inner wall panel 8; the first A sprocket 36 is transmission-connected to the large roller sprocket 62 installed on the eighth roller; one end of the second transmission shaft 22 is located inside the left inner wall panel 8, and is installed with the second pressure roller 23, the other end of the second transmission shaft 22 is located outside the left inner wall panel 8 and is sequentially installed with the second A sprocket 38 and the second B sprocket 39 at the position away from the left inner wall panel 8; the second B sprocket 39 is transmission-connected to the first B sprocket 37; one end of the third transmission shaft 24 is located inside the left inner wall panel 8, and is installed with the third pressure roller 25, the other end of the third transmission shaft 24 is located outside the left inner wall panel 8 The third A sprocket 40, the third B sprocket 41, the third gear 42 and the third C sprocket 43 are installed in sequence on the outside of the left inner wall panel 8 and outwardly away from the left inner wall panel 8; the third A sprocket 40 is correspondingly connected to the second A sprocket 38; the third C sprocket 43 is connected to the output sprocket 53 installed at the output end of the right-angle reducer 52; the right-angle reducer 52 is installed on the reducer fixing plate 14, and the input end of the right-angle reducer 52 is connected to the output shaft of the motor 54 installed on the motor fixing plate 13 through a driving pulley 55, a driven pulley 56 and a transmission belt 57; one end of the fourth transmission shaft 26 is located inside the left inner wall panel 8 and is installed with the third The fourth pressure roller 27, the other end of the fourth transmission shaft 26 is located outside the left inner wall panel 8 and is equipped with a fourth sprocket 44; the fourth sprocket 44 is in transmission connection with the third sprocket B 41; one end of the fifth transmission shaft 28 is located inside the left inner wall panel 8 and is equipped with the fifth pressure roller 29, the other end of the fifth transmission shaft 28 is located outside the left inner wall panel 8 and is equipped with a fifth sprocket 45; one end of the sixth transmission shaft 30 is located inside the left inner wall panel 8 and is equipped with the sixth pressure roller 31, the other end of the sixth transmission shaft 30 is located outside the left inner wall panel 8 and is equipped with a sixth sprocket A 46 and a sixth sprocket B 47 in sequence at a position outwardly away from the left inner wall panel 8;The sixth A sprocket 46 is correspondingly connected to the fifth sprocket 45 in transmission connection; one end of the seventh transmission shaft 32 is located inside the left inner wall panel 8 and is installed with the seventh pressure roller 33, the other end of the seventh transmission shaft 32 is located outside the left inner wall panel 8 and is sequentially installed with the seventh A sprocket 48, the seventh B sprocket 49 and the seventh gear 50 at a position away from the left inner wall panel 8; the seventh B sprocket 49 is correspondingly connected to the sixth B sprocket 47 in transmission connection; the seventh gear 50 is correspondingly connected to the third gear 42 in transmission connection; one end of the eighth transmission shaft 34 is located inside the left inner wall panel 8 and is installed with the eighth pressure roller 35, the other end of the eighth transmission shaft 34 is located outside the left inner wall panel 8 and is installed with the eighth sprocket 51; the eighth sprocket 51 is correspondingly connected to the seventh A sprocket 48 in transmission connection; the The first pressing roller 21 is provided with a first cutting flange 2101 on the side away from the left inner wall panel 8; the sixth pressing roller 31 is provided with a sixth cutting flange (3101) on the side away from the left inner wall panel 8, the outer side of the sixth cutting flange 3101 being in contact with the inner side of the first cutting flange 2101 to cut the cylindrical dough into strips; the seventh pressing roller 33 is provided with a seventh guide flange 3301 on the side away from the left inner wall panel 8, the seventh guide flange 3301 having a guiding and limiting function for the cut dough strips; the fourth pressing roller 27 is provided with a fourth limiting flange 2701 on the side away from the left inner wall panel 8; the eighth pressing roller 35 is provided with an eighth limiting flange 3501 on the side away from the left inner wall panel 8, the inner side of the eighth limiting flange 3501 being in contact with the outer side of the fourth limiting flange 2701 to jointly limit the width of the cut dough strips.

[0030] The working principle of the present invention is:

[0031] Start the motor, and through the action of various transmission parts, make each roller 19 in the roller section G rotate at different speeds and all the pressing rollers in the strip-cutting section K rotate according to their respective directions;

[0032] Adjust the hand wheel 18 so that one side of the hand wheel 18 is slightly lower than the other side by a certain height. Place the dough that has been kneaded with a high amount of water in the arc groove formed by multiple rollers 19. Due to the rotation of multiple rollers 19 with equal diameters and different rotation speeds, the irregular dough is rotated and gradually formed into a regular cylindrical shape. During the rotation process, the rollers 19 with different rotation speeds have a stretching effect on the surface of the dough, which can replace the traditional roller extrusion and calendering method to ensure that the gluten network is fully formed and not damaged.

[0033] After the dough has been rotated for a specified time, the hand wheel 18 is adjusted so that one side of the hand wheel 18 is slightly higher than the other side by a certain height, and the dough gradually moves toward the opening part K. After slight extrusion and shaping by the rollers of the opening part K and the flange cutting and guiding limiting effect at the ends of the relevant rollers, the regular cylindrical dough is processed into long noodle strips of equal width and thickness for the next noodle making process.

[0034] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A roller strip opening mechanism, characterized in that: The invention comprises a base portion (D) and a frame portion (J), a roller portion (G) and a stripping portion (K) mounted on the base portion (D); the base portion (D) is movable, the frame portion (J) is arranged above the base portion (D), and further comprises an angle adjustment mechanism, the angle adjustment mechanism comprises a screw shaft (15), a sleeve (16) and a rotating support shaft (17); the roller portion (G) is arranged in the middle of the frame portion (J); the stripping portion (K) is arranged on one side of the frame portion (J); the base portion (D) comprises a machine base front plate (1), a machine base right plate (101) and a machine base left plate (102); the machine base right plate (101) and the machine base left plate (102) are symmetrically mounted at both ends of the machine base front plate (1); A base support shaft (103) is connected to the middle and rear of the base right plate (101) and the base left plate (102); two support bearings (4) are rotatably installed on the outer sides of the base right plate (101) and the base left plate (102), and a limit rod (5) is installed on the upper part between the two support bearings (4) arranged at equal height intervals; a universal front wheel (2) is connected to both ends of the bottom of the base front plate (1); a rear wheel shaft (6) runs through between the base right plate (101) and the base left plate (102) on the side away from the base front plate (1), and a rear wheel (3) is installed on the rear wheel shaft (6) on both sides of the base right plate (101) and the rear wheel shaft (6) on both sides of the base left plate (102). The bottoms of the universal front wheel (2) and the rear wheel (3) are in the same horizontal plane; the outer side surface of the front part of the right plate (101) of the machine base is connected to an adjustment support (104); the frame part (J) includes a right wall panel (7), a left inner wall panel (8) and a left outer wall panel (9); the right wall panel (7), the left inner wall panel (8) and the left outer wall panel (9) are parallel to each other and form a spacing; a plurality of supports (12) are connected between the left inner wall panel (8) and the left outer wall panel (9); a motor fixing plate (13) is installed at the top between the left inner wall panel (8) and the left outer wall panel (9), and a reducer fixing plate (14) is connected at the bottom; the rear end of the upper part between the right wall panel (7) and the left inner wall panel (8) is connected to an upper support (10), and the lower part Two lower supports (11) are installed and arranged parallel to each other; an adjusting arc tube (1101) is installed at the bottom of each lower support (11), and each adjusting arc tube (1101) corresponds to two support bearings (4) on the same side and is supported by the two support bearings (4); a rotating support shaft (17) is rotatably installed at the rear end of the top of the outer side of the right wall panel (7); one end of the screw shaft (15) is rotatably arranged at the end of the adjusting support (104), and the other end is threadedly connected to one end of the sleeve (16), and the other end of the sleeve (16) is passed through the rotating support shaft (17) and is installed with a hand wheel (18), and the angle of the frame part (J) relative to the base part (D) can be adjusted by rotating the hand wheel (18).

2. The roller strip opening mechanism according to claim 1, characterized in that: A limiting rod (5) for limiting the position of the adjusting arc tube (1101) is installed on the right plate (101) and the left plate (102) of the machine base.

3. The roller strip opening mechanism according to claim 2, characterized in that: The roller portion (G) includes a plurality of rollers (19), a small roller sprocket (61), a large roller sprocket (62) and a roller chain (63). The plurality of rollers (19) are rotatably mounted between the right wall panel (7) and the left inner wall panel (8). The plurality of rollers (19) are distributed in an arc shape as a whole. The plurality of rollers (19) include a first roller, a second roller, a third roller, a fourth roller, a fifth roller, a sixth roller, a seventh roller and an eighth roller. One end of the central axis of the first roller, the third roller, the fifth roller and the seventh roller passes through the right wall panel (7). The central axes of the third roller, the fifth roller and the seventh roller are respectively connected to a roller sprocket (62) by a key, and the other ends of the central axes of the third roller, the fifth roller and the seventh roller are respectively connected to a roller sprocket (61) by a key after passing through the left inner wall panel (8); the central axes of the second roller, the fourth roller, the sixth roller and the eighth roller are respectively connected to a roller sprocket (61) by a key after passing through the right wall panel (7), and the other ends are respectively connected to a roller sprocket (62) by a key after passing through the left inner wall panel (8); the roller sprocket (61) and the roller sprocket (62) are connected to each other by a roller chain (63) for transmission.

4. The roller strip opening mechanism according to claim 3, characterized in that: The specific structure of the strip opening portion is: a first rotating shaft (20), a second rotating shaft (22), a third rotating shaft (24), a fourth rotating shaft (26), a fifth rotating shaft (28), a sixth rotating shaft (30), a seventh rotating shaft (32) and an eighth transmission shaft (34). The first rotating shaft (20), the second rotating shaft (22), the third rotating shaft (24), the fourth rotating shaft (26), the fifth rotating shaft (28), the sixth rotating shaft (30), the seventh rotating shaft (32) and the eighth transmission shaft (34) are all rotatably mounted on the left inner wall panel (8) and the left outer wall panel (9). One end of the first rotating shaft (20) is located inside the left inner wall panel (8) and is provided with a first pressing roller (21). The other end of the first rotating shaft (20) is located outside the left inner wall panel (8) and is provided with a first A sprocket (36) and a first B sprocket (37) in sequence at a position away from the left inner wall panel (8); the first A sprocket (36) is in transmission connection with a large roller sprocket (62) installed on the eighth roller; one end of the second rotating shaft (22) is located inside the left inner wall panel (8) and is provided with a second pressing roller (23); the other end of the second rotating shaft (22) is located outside the left inner wall panel (8) and is provided with a second A sprocket (38) and a second B sprocket (39) in sequence at a position away from the left inner wall panel (8); the second B sprocket (39) is in transmission connection with the first B sprocket (37); the second One end of the three rotating shafts (24) is located inside the left inner wall panel (8) and is installed with a third pressure roller (25); the other end of the third rotating shaft (24) is located outside the left inner wall panel (8) and is sequentially installed with a third A sprocket (40), a third B sprocket (41), a third gear (42) and a third C sprocket (43) at a position away from the left inner wall panel (8); the third A sprocket (40) is correspondingly connected to the second A sprocket (38); the third C sprocket (43) is connected to the output sprocket (53) installed at the output end of the right-angle reducer (52); the right-angle reducer (52) is installed on the reducer fixing plate (14), and the input end of the right-angle reducer (52) is connected to the gear wheel installed on the motor fixing plate (14). The output shaft of the motor (54) on the fixed plate (13) is connected to the drive through a driving pulley (55), a driven pulley (56) and a transmission belt (57); one end of the fourth rotating shaft (26) is located inside the left inner wall panel (8) and is installed with a fourth pressure roller (27); the other end of the fourth rotating shaft (26) is located outside the left inner wall panel (8) and is installed with a fourth sprocket (44); the fourth sprocket (44) is connected to the third B sprocket (41); one end of the fifth rotating shaft (28) is located inside the left inner wall panel (8) and is installed with a fifth pressure roller (29); the other end of the fifth rotating shaft (28) is located outside the left inner wall panel (8) and is installed with a fifth sprocket (45);One end of the sixth rotating shaft (30) is located inside the left inner wall panel (8) and is installed with a sixth pressure roller (31); the other end of the sixth rotating shaft (30) is located outside the left inner wall panel (8) and is installed with a sixth A sprocket (46) and a sixth B sprocket (47) in sequence at a position away from the left inner wall panel (8); the sixth A sprocket (46) is connected to the fifth sprocket (45) in a transmission manner; one end of the seventh rotating shaft (32) is located inside the left inner wall panel (8) and is installed with a seventh pressure roller (33); the seventh rotating shaft ( The other end of the eighth transmission shaft (32) is located outside the left inner wall panel (8) and is installed with a seventh A sprocket (48), a seventh B sprocket (49) and a seventh gear (50) in sequence at a position away from the left inner wall panel (8); the seventh B sprocket (49) is correspondingly connected to the sixth B sprocket (47); the seventh gear (50) is correspondingly connected to the third gear (42); one end of the eighth transmission shaft (34) is located inside the left inner wall panel (8) and is installed with an eighth pressure roller (35); the other end of the eighth transmission shaft (34) is located inside the left inner wall panel (8) and is installed with an eighth pressure roller (35); the other end of the eighth transmission shaft (34) is located The left inner wall panel (8) is provided with an eighth sprocket (51) installed on the outside; the eighth sprocket (51) is connected to the seventh A sprocket (48) in a corresponding transmission manner; the first pressing roller (21) is provided with a first cutting flange (2101) on the side away from the left inner wall panel (8); the sixth pressing roller (31) is provided with a sixth cutting flange (3101) on the side away from the left inner wall panel (8), and the outer side of the sixth cutting flange (3101) is fitted with the inner side of the first cutting flange (2101) to cut the cylindrical dough into strips; the seventh pressing roller (3 3) A seventh guide flange (3301) is provided on the side away from the left inner wall plate (8), and the seventh guide flange (3301) has a guiding and limiting effect on the cut strip of noodles; a fourth limiting flange (2701) is provided on the side of the fourth pressing roller (27) away from the left inner wall plate (8); an eighth limiting flange (3501) is provided on the side of the eighth pressing roller (35) away from the left inner wall plate (8), and the inner side of the eighth limiting flange (3501) is in contact with the outer side of the fourth limiting flange (2701) to jointly limit the width of the cut strip of noodles.

Citation Information

Patent Citations

  • Udon noodle machine

    CN114946905A