Five-roller noodle press

By adopting a combination design of track, slider, tie rod and eccentric wheel in the five-roller dough press, the independent adjustment of the roller mechanism is realized, which solves the problem of the non-adjustable distance between the dough press rollers and improves the flexibility and maintenance convenience of the equipment.

CN121058703APending Publication Date: 2025-12-05ZHONGLI (XIANGHE) FOOD EQUIP CO LTD
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Patent Information

Application Number
CN202511326438.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-12-05

AI Technical Summary

Technical Problem

The distance between the two corresponding pressing rollers on the existing pressing mechanism cannot be adjusted individually, which limits the flexibility of the equipment.

Method used

By adopting a combination design of track, slider, tie rod and eccentric wheel, the independent position adjustment of the movable roller in each set of roller mechanism is realized, and the coordinated work of roller mechanism is realized by synchronous belt and motor drive.

Benefits of technology

It enhances the flexibility of the equipment, facilitates inspection and maintenance, and improves the production efficiency and adaptability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a five-roller noodle press which comprises a box body and a rack, a plurality of double-roller mechanisms are vertically arranged between the box body, each double-roller mechanism comprises a movable roller and a fixed roller, the fixed rollers are rotatably arranged on the side wall of the box body, a track is arranged on the side wall of the box body, and the movable rollers and the fixed rollers are arranged on the rack. A sliding block used for installing a movable roller is arranged on the rail, a first pull rod is hinged to the sliding block, an eccentric wheel is rotatably arranged at the end, away from the sliding block, of the first pull rod, and a rotating handle connected with a shaft body of the eccentric wheel is arranged at the position, penetrating through the outer side of the box body, of a shaft body of the eccentric wheel; the machine frame is arranged below the box body, and a first conveying belt is arranged on the machine frame. The five-roller noodle press is ingenious in design, practical in function and high in equipment flexibility, and the problem that the distance between two corresponding noodle pressing rollers on an existing noodle pressing mechanism cannot be independently adjusted, and the equipment flexibility is limited is effectively solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of food machinery, in particular to a five-roller dough sheeter. BACKGROUND

[0002] Toast is the transliteration of English toast, Cantonese (Guangdong) called toast, which is actually a square with or without cover toasting production of bread. With cover toasting bread after slicing square, sandwiched into ham or vegetables is a sandwich. With no cover toasting bread for long round top, similar to square bread. In the industrial production process of toast needs to use dough sheeter. Dough sheeter through the dough to the dough, rolling, cutting forming steps to make toast bread and baguette.

[0003] But the distance between the two corresponding dough rollers of the existing dough sheeter cannot be adjusted alone, which limits the flexibility of the equipment. Therefore, how to develop a new five-roller dough sheeter has become a problem to be solved by the technical personnel in the field. SUMMARY

[0004] The purpose of the present application is to provide a five-roller dough sheeter, which solves the problem that the distance between the two corresponding dough rollers of the existing dough sheeter cannot be adjusted alone, which limits the flexibility of the equipment.

[0005] To solve the above technical problems, the present application adopts the following technical scheme:

[0006] The five-roller dough sheeter of the present application comprises a box body and a rack, a plurality of roller pairs are vertically arranged between the box bodies, the roller pairs comprise movable rollers and fixed rollers, the fixed rollers are rotatably arranged on the side walls of the box bodies, tracks are arranged on the side walls of the box bodies, sliding blocks for mounting the movable rollers are arranged on the tracks, first pull rods are hingedly arranged on the sliding blocks, eccentric wheels are rotatably arranged at the ends of the first pull rods away from the sliding blocks, shaft bodies of the eccentric wheels pass through the outer sides of the box bodies and are provided with rotating handles connected with the shaft bodies of the eccentric wheels; the rack is arranged below the box body, and a first conveying belt is arranged on the rack.

[0007] Further, an inlet mechanism is arranged at the upper part of the rear end of the box body, the inlet mechanism comprises a second conveying belt and an inlet roller, the second conveying belt is fixedly arranged on the box body through a support, a first optical axis is arranged above the second conveying belt through a first stand, a mounting block is slidably arranged on the first optical axis, the inlet roller is rotatably arranged on the lower surface of the mounting block, and a motor for driving the inlet roller is arranged at the upper end of the mounting block.

[0008] Further, the first conveying belt is provided with a first rolling mechanism above, the first rolling mechanism comprises a third conveying belt and a first net chain, the left end of the first net chain is hung on the support of the third conveying belt, and the right end of the third conveying belt is detachably matched with the hanging groove of the adjusting plate on the third conveying belt frame; a plurality of hanging grooves with different heights are arranged on the adjusting plate.

[0009] Further, the second conveying belt is driven by the fixed roller of the first group of roller pairs at the uppermost end.

[0010] Further, five groups of roller pairs are arranged in the box from top to bottom, the left end of the five groups of roller pairs is provided with a synchronous belt, the synchronous belt is matched with the pulley at the left end of the movable roller and the fixed roller; a first motor is arranged in the rack, and the first motor is matched with the pulley at the right end of the driving roller of the third conveying belt and the fixed roller of the fifth group of roller pairs at the lowermost end through a belt.

[0011] Further, the box is provided with a scraper matched with the movable roller and the fixed roller through a spring pull rod; a scale is arranged on the rotating handle.

[0012] Further, the lower end of the rack is provided with a supporting leg, and the frontmost end of the rack is provided with a second motor for driving the first conveying belt; the second rolling mechanism, the slicing mechanism and the folding mechanism are arranged in the rack from rear to front in sequence.

[0013] Further, the second rolling mechanism comprises a first rolling plate, a first turnover frame and a third stand, the upper surface of the first rolling plate matched with the dough is fixedly arranged on the first turnover frame, and the first turnover frame is hingedly arranged on the third stand at the right end of the rack; a second optical axis is arranged on the rack through a second stand, and a limiting strip matched with the first rolling plate is movably arranged on the second optical axis.

[0014] Further, the slicing mechanism comprises a second rolling plate, a second turnover frame, a fourth stand and a cutter, the upper surface of the second rolling plate matched with the dough is fixedly arranged on the second turnover frame, and the second turnover frame is hingedly arranged on the fourth stand at the right end of the rack; the cutter matched with the dough is detachably arranged on the second turnover frame, and the number of the cutter is three.

[0015] Further, the folding mechanism comprises a first folding roller, a folding disc, a second folding roller and a fifth stand, the first folding roller, the folding disc and the second folding roller are sequentially arranged on the fifth stand, and the fifth stand is arranged in front of the first conveying belt; the axial direction of the first folding roller and the second folding roller is perpendicular to the first conveying belt, and the axial direction of the folding disc is parallel to the first conveying belt.

[0016] Compared with the prior art, the present application has the beneficial technical effects:

[0017] The five-roller dough pressing machine realizes independent position adjustment of the movable roller in each set of roller pair mechanism through the track, the sliding block, the pull rod and the eccentric wheel, effectively enhancing the flexibility of the equipment; the second rolling mechanism of the five-roller dough pressing machine is arranged on the first turnover frame, so that the second rolling mechanism can be turned over as a whole relative to the first conveying belt, enhancing the flexibility of the equipment and facilitating maintenance and maintenance; the cutting mechanism of the five-roller dough pressing machine is arranged on the second turnover frame, so that the cutting mechanism can be turned over as a whole relative to the first conveying belt, further enhancing the flexibility and maintainability of the equipment. In general, the five-roller dough pressing machine is ingenious in design, practical in function, high in equipment flexibility, and effectively solves the problem that the distance between the two corresponding dough pressing rollers on the existing dough pressing mechanism cannot be adjusted independently, limiting the flexibility of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0018] The present application will be further described below in conjunction with the drawings:

[0019] Figure 1 It is a five-roller dough pressing machine axial view of the present application;

[0020] Figure 2 It is a five-roller dough pressing machine plan view of the present application;

[0021] Figure 3 It is a five-roller dough pressing machine front view of the present application;

[0022] Figure 4 It is a five-roller dough pressing machine right view of the present application;

[0023] Figure 5 It is a box internal structure schematic view;

[0024] Figure 6 It is a structure schematic view of eccentric wheel, first pull rod, sliding block and track;

[0025] Figure 7 It is a structure schematic view of roller pair mechanism;

[0026] Figure 8 It is a box structure schematic view;

[0027] Figure 9 It is a five-roller dough pressing machine axial view of the present application;

[0028] Figure 10 This is an isometric view of the second winding mechanism;

[0029] Figure 11 Axonometric drawings of the slitting and folding mechanisms;

[0030] Figure 12 This is a front view of the slitting mechanism and the folding mechanism;

[0031] Figure 13 This is a top view of the limit bar and the second optical axis.

[0032] Explanation of reference numerals in the attached drawings: 1. Housing; 101. Roller mechanism; 102. Movable roller; 103. Fixed roller; 104. Synchronous belt; 105. Rotating handle; 106. Scale; 107. Eccentric wheel; 108. First pull rod; 109. Slider; 110. Track; 111. Scraper; 2. Frame; 201. Support leg; 202. First conveyor belt; 203. First motor; 204. Second motor; 3. Feeding mechanism; 301. Second conveyor belt; 302. First upright; 303. First optical shaft; 304. Mounting block; 305. Feeding... 4. Material roller; 5. First winding mechanism; 6. Third conveyor belt; 7. Mesh chain; 8. Adjusting plate; 9. Second winding mechanism; 10. First winding plate; 20. First turning frame; 30. Third upright frame; 40. Limiting strip; 50. Second upright frame; 60. Second optical axis; 7. Cutting mechanism; 10. Second winding plate; 20. Second turning frame; 30. Fourth upright frame; 40. Cutting knife; 5. Folding mechanism; 11. First folding roller; 12. Folding disc; 13. Second folding roller; 14. Fifth upright frame. Detailed Implementation

[0033] like Figures 1 to 13 As shown, a five-roller dough press includes a housing 1 and a frame 2, with the housing 1 positioned above the frame 2.

[0034] Several roller mechanisms 101 are vertically arranged between the boxes 1. Each roller mechanism 101 includes a movable roller 102 and a fixed roller 103, which rotate in opposite directions.

[0035] The fixed roller 103 is rotatably disposed between the left and right side walls of the housing 1, and the front and rear faces of the housing 1 are both detachable transparent panels.

[0036] The side wall of the box 1 is provided with a track 110, the track 110 is provided with a sliding block 109 for mounting the movable roller 102, the first pull rod 108 is hingedly arranged on the sliding block 109, the end of the first pull rod 108 away from the sliding block 109 is rotatably provided with an eccentric wheel 107, the shaft body on the eccentric wheel 107 is provided with a rotating handle 105 connected with the shaft body of the eccentric wheel 107 through the outside of the box 1; The rotating handle 105 is provided with a scale 106. The position of the movable roller 102 can be adjusted by rotating the handle 105. The five-roller bread machine realizes independent position adjustment of the movable roller 102 in each group of roller pairs 101 through the track 110, the sliding block 109, the first pull rod 108 and the eccentric wheel 107, and effectively enhances the flexibility of the equipment.

[0037] The box 1 is provided with a scraper 111 matched with the movable roller 102 and the fixed roller 103 through a spring pull rod, which prevents the dough from sticking to the roller body.

[0038] The box 1 is provided with five groups of roller pairs 101 from top to bottom, the left end of the five groups of roller pairs 101 is provided with a synchronous belt 104, the synchronous belt 104 is matched with the pulley at the left end of the movable roller 102 and the fixed roller 103; The left side wall of the box 1 is provided with a tension pulley matched with the synchronous belt 104.

[0039] The first motor 203 is arranged in the rack 2, and the first motor 203 is matched with the driving roller of the third conveying belt 401 and the pulley at the right end of the fixed roller 103 of the fifth group of roller pairs 101 at the lowermost end through a belt.

[0040] The rack 2 is arranged below the box 1, and the first conveying belt 202 is arranged on the rack 2. The lower end of the rack 2 is provided with a supporting leg 201, and the frontmost end of the rack 2 is provided with a second motor 204 for driving the first conveying belt 202; The second rolling mechanism 5, the bread cutting mechanism 6 and the folding mechanism 7 are sequentially arranged from back to front above the rack 2.

[0041] The rear end of the box 1 is provided with a feeding mechanism 3, the feeding mechanism 3 comprises a second conveying belt 301 and a feeding roller 305, the second conveying belt 301 is fixedly arranged on the box 1 through a support, and the second conveying belt 301 is driven by the fixed roller 103 of the first group of roller pairs 101 at the uppermost end. That is, the second conveying belt 301 and the first group of roller pairs 101 share a fixed roller 103, which reduces the production cost and improves the smoothness of the equipment feeding.

[0042] The upper side of the second conveying belt 301 is provided with a first optical axis 303 through a first vertical support 302, and the number of the first optical axis 303 is two. The first optical axis 303 is provided with a mounting block 304 which can slide left and right, and the mounting block 304 is provided with a top screw which cooperates with the first optical axis 303. The number of the mounting block 304 is two. The lower surface of the mounting block 304 is rotatably provided with the feeding roller 305, and the axial direction of the feeding roller 305 is perpendicular to the second conveying belt 301. The upper end of the mounting block 304 is provided with a motor for driving the feeding roller 305. Two feeding rollers 305 are respectively matched with the left and right sides of the biscuit, and the two feeding rollers 305 are oppositely rotated.

[0043] The upper side of the first conveying belt 202 is provided with a first rolling mechanism 4, and the first rolling mechanism 4 comprises a third conveying belt 401 and a first chain 402. The left end of the first chain 402 is hung on the support of the third conveying belt 401, and the right end of the third conveying belt 401 is detachably matched with the hanging groove of the adjusting plate 403 on the frame of the third conveying belt 401. A plurality of hanging grooves with different heights are arranged on the adjusting plate 403. By selecting the hanging grooves with different heights, the adjustment of the sagging height of the chain 402 can be realized, so that the adjustment of the rolling effect can be realized.

[0044] The second rolling mechanism 5 comprises a first rolling plate 501, a first turnover frame 502 and a third vertical support 503. The upper side of the first conveying belt 202 is provided with the first rolling plate 501 which cooperates with the biscuit. The lower surface of the first rolling plate 501 is in contact with the biscuit, and the upper surface of the first rolling plate 501 is fixedly arranged on the first turnover frame 502. The first turnover frame 502 is hingedly arranged on the third vertical support 503 at the right end of the rack 2. The third vertical support 503 is provided with a pneumatic support rod which cooperates with the first turnover frame 502, so as to facilitate labor saving during turnover.

[0045] The second rolling mechanism 5 of the five-roller dough machine is arranged on the first turnover frame 502, so that the second rolling mechanism 5 can be turned over as a whole relative to the first conveying belt 202, thereby enhancing the flexibility of the equipment and facilitating maintenance and maintenance.

[0046] The rack 2 is provided with a second optical axis 506 through a second vertical support 505, and the number of the second vertical support 505 and the second optical axis 506 is two. The second optical axis 506 is provided with a limiting strip 504 which cooperates with the first rolling plate 501 and can move left and right. The number of the limiting strip 504 is two, and the limiting strip 504 is matched with the left and right ends of the biscuit. The second optical axis 506 is provided with a scale and a top screw structure which cooperates with the limiting strip 504.

[0047] The section mechanism 6 comprises a second rolling plate 601, a second turnover frame 602, a fourth stand 603 and a cutter 604, the upper side of the first conveying belt 202 is provided with the second rolling plate 601 matched with the dough, the upper surface of the second rolling plate 601 is fixedly arranged on the second turnover frame 602, and the second turnover frame 602 is hingedly arranged on the fourth stand 603 at the right end of the rack 2. The fourth stand 603 is provided with the air cylinder matched with the second turnover frame 602.

[0048] The cutter 604 matched with the dough is detachably arranged on the second turnover frame 602, and the number of the cutter 604 is three. The three cutters 604 are transversely arranged above the first conveying belt 202.

[0049] The folding mechanism 7 comprises a first folding roller 701, a folding disc 702, a second folding roller 703 and a fifth stand 704, the first folding roller 701, the folding disc 702 and the second folding roller 703 are sequentially arranged on the fifth stand 704, the fifth stand 704 is arranged in front of the first conveying belt 202, the fifth stand 704 can adjust the distance between the first folding roller 701, the folding disc 702, the second folding roller 703 and the first conveying belt 202, the axial direction of the first folding roller 701 and the second folding roller 703 is perpendicular to the first conveying belt 202, and the axial direction of the folding disc 702 is parallel to the first conveying belt 202.

[0050] The working process of the present application is as follows:

[0051] Step one, the dough enters the box 1 under the guidance of the second conveying belt 301 and the feeding roller 305 on the feeding mechanism 3;

[0052] Step two, the dough reaches the first rolling mechanism 4 after being rolled by the five groups of roller mechanisms 101 in the box 1;

[0053] Step three, the dough continuously contacts the net chain 402 and is rolled during the process of passing through the third conveying belt 401 from back to front, and then falls onto the first conveying belt 202;

[0054] Step four, the dough continuously contacts the first rolling plate 501 and is rolled during the process of passing through the first conveying belt 202 from back to front;

[0055] Step five, the dough continuously contacts the second rolling plate 601 and is rolled during the process of passing through the first conveying belt 202 from back to front;

[0056] Step six, the dough contacts the cutter 604 on the second turnover frame 602 during the process of passing through the first conveying belt 202 from back to front, and the three cutters 604 cut three folding grooves on the dough.

[0057] In step seven, the dough blank falls from the first conveying belt 202 and contacts the folding mechanism 7, the left end of the dough blank contacts the first folding roller 701, the folding groove in the middle of the dough blank cooperates with the folding disc 702, and the right end of the dough blank contacts the second folding roller 703, so as to fold the dough blank into a "W" shape.

[0058] The above-described embodiments are only used to describe the preferred modes of the present application, and are not used to limit the scope of the present application. Without departing from the design spirit of the present application, various modifications and improvements to the technical solutions of the present application made by those skilled in the art shall fall within the protection scope of the present application defined by the claims.

Claims

1. A five-roller pasta press, characterized in that: The utility model provides a kind of vertical rolling machine, including box (1) and rack (2), the box (1) between vertically be provided with several pairs of roller mechanisms (101), the pair of roller mechanisms (101) include movable roller (102) and fixed roller (103), the fixed roller (103) rotatably be provided on the side wall of the box (1), the side wall of the box (1) is provided with track (110), the track (110) is provided with slider (109) for installing movable roller (102), the slider (109) is hingedly provided with first pull rod (108), the first pull rod (108) is rotatably provided with eccentric wheel (107) away from the end of slider (109), the shaft body on the eccentric wheel (107) is provided with rotating handle (105) connected with the shaft body of the eccentric wheel (107) through the outside of the box (1);The rack (2) is arranged below the box (1), and the first conveying belt (202) is arranged on the rack (2).

2. Five-roller pasta machine according to claim 1, characterized in that: The rear end of the box (1) is provided with a feeding mechanism (3), the feeding mechanism (3) includes a second conveying belt (301) and a feeding roller (305), the second conveying belt (301) is fixedly arranged on the box (1) by a support, a first optical axis (303) is arranged above the second conveying belt (301) by a first stand (302), a mounting block (304) is slidably arranged on the first optical axis (303), the feeding roller (305) is rotatably arranged on the lower surface of the mounting block (304), and a motor is arranged on the upper end of the mounting block (304) to drive the feeding roller (305).

3. The five-high planetary mill according to claim 1, characterized in that: A first rolling mechanism (4) is arranged above the first conveying belt (202), the first rolling mechanism (4) includes a third conveying belt (401) and a first net chain (402), the left end of the first net chain (402) is hung on the support of the third conveying belt (401), and the right end of the third conveying belt (401) is detachably connected with the hanging groove of the adjusting plate (403) on the frame of the third conveying belt (401); the adjusting plate (403) is provided with a plurality of hanging grooves with different heights.

4. The five-high planetary mill according to claim 2, characterized in that: The second conveying belt (301) is driven by the fixed roller (103) of the first group of pairs of roller mechanisms (101) at the uppermost end.

5. The five-high planetary mill according to claim 1, characterized in that: Five groups of pairs of roller mechanisms (101) are arranged in the box (1) from top to bottom, the left end of the five groups of pairs of roller mechanisms (101) is provided with a synchronous belt (104), the synchronous belt (104) is connected with the pulley at the left end of the movable roller (102) and the fixed roller (103); a first motor (203) is arranged in the rack (2), and the first motor (203) is connected with the driving roller of the third conveying belt (401) and the pulley at the right end of the fixed roller (103) of the fifth group of pairs of roller mechanisms (101) at the lowermost end through a belt.

6. The five-high planetary mill according to claim 1, characterized in that: A scraper (111) is arranged in the box (1) through a spring pull rod and connected with the movable roller (102) and the fixed roller (103); a scale (106) is arranged on the rotating handle (105).

7. The five-high planetary mill according to claim 1, characterized in that: The lower end of the rack (2) is provided with a support leg (201), and the front end of the rack (2) is provided with a second motor (204) for driving the first conveying belt (202); the upper part of the rack (2) is sequentially provided from back to front with a second rolling mechanism (5), a sectioning mechanism (6) and a folding mechanism (7).

8. Five-roller pasta machine according to claim 7, characterized in that: The second rolling mechanism (5) comprises a first rolling plate (501), a first turnover frame (502) and a third vertical frame (503), the upper part of the first conveying belt (202) is provided with the first rolling plate (501) matched with the dough, the upper surface of the first rolling plate (501) is fixedly arranged on the first turnover frame (502), and the first turnover frame (502) is hingedly arranged on the third vertical frame (503) at the right end of the rack (2); the second optical axis (506) is arranged on the rack (2) through a second vertical frame (505), and the limiting strip (504) matched with the first rolling plate (501) is movably arranged on the second optical axis (506).

9. The five-high planetary mill according to claim 7, characterized in that: The sectioning mechanism (6) comprises a second rolling plate (601), a second turnover frame (602), a fourth vertical frame (603) and a cutter (604), the upper part of the first conveying belt (202) is provided with the second rolling plate (601) matched with the dough, the upper surface of the second rolling plate (601) is fixedly arranged on the second turnover frame (602), and the second turnover frame (602) is hingedly arranged on the fourth vertical frame (603) at the right end of the rack (2); the cutter (604) matched with the dough is detachably arranged on the second turnover frame (602), and the number of the cutter (604) is three.

10. The five-high planetary mill according to claim 7, characterized in that: The folding mechanism (7) comprises a first folding roller (701), a folding disc (702), a second folding roller (703) and a fifth vertical frame (704), the first folding roller (701), the folding disc (702) and the second folding roller (703) are sequentially arranged on the fifth vertical frame (704), and the fifth vertical frame (704) is arranged in front of the first conveying belt (202); the axial direction of the first folding roller (701) and the second folding roller (703) is perpendicular to the first conveying belt (202), and the axial direction of the folding disc (702) is parallel to the first conveying belt (202).

Citation Information

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