A new type of coarse grain pancake machine
Patent Information
- Application Number
- CN202422085836.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2034-08-27
AI Technical Summary
[0004]本实用新型的目的在于:为解决由于手动制作的面饼速度较慢,导致在面饼需求量大时,人工制作的速度难以满足需求,从而影响面饼的销售数量的问题,本实用新型提供了一种新型杂粮面饼机
[0021]本实用新型通过挤压组件、送料组件和成型组件的设置,实现了通过第一挤压辊、第二挤压辊、固定架、传动链、驱动件、移动辊、固定环、切割环、支撑件、支撑杆和弹簧的配合,从而能够连续的对面饼进行加工,避免由于手动制作的面饼速度较慢,导致在面饼需求量大时,人工制作的速度难以满足需求,从而影响面饼的销售数量。
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Figure CN224791543U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of grain pancake processing technology, specifically to a new type of grain pancake machine. Background Technology
[0002] With the improvement of people's living standards and the continuous enhancement of health awareness, coarse grain foods are becoming increasingly popular and have become an indispensable part of our daily diet. Coarse grains can be eaten directly or further processed into coarse grain noodles.
[0003] Multigrain pancakes are a healthy and delicious snack. In the production of multigrain pancakes, the dough is usually manually squeezed into pancakes. Since the speed of manual pancake making is relatively slow, when the demand for pancakes is high, the speed of manual production is difficult to meet the demand, thus affecting the sales volume of pancakes. Therefore, a new type of multigrain pancake machine is proposed. Utility Model Content
[0004] The purpose of this invention is to solve the problem that the slow speed of manual dough making makes it difficult to meet the demand when the demand for dough is high, thus affecting the sales volume of dough. This invention provides a new type of multigrain dough making machine.
[0005] To achieve the above objectives, this utility model specifically adopts the following technical solution:
[0006] A new type of multigrain pancake machine includes:
[0007] Support bars, there are multiple support bars arranged side by side, each support bar has a fixed plate and a rotating plate on its outer side, each rotating plate has a fixing pin inside, and the fixing pin is connected to the support bar;
[0008] The extrusion assembly, located between the fixed plate and the rotating plate, is used to extrude the dough;
[0009] The feeding assembly, located on the outside of the support bar, is used to transport the dough.
[0010] A connecting component, disposed on the outside of the fixed plate, is used to connect the fixed plate and the rotating plate;
[0011] The forming component, located inside the support strip, is used for cutting the dough.
[0012] The rotating assembly, located on the outside of the fixed plate, is used to transmit power.
[0013] Furthermore, a fixing cover is provided on the outside of the fixing plate, and a locking block and a limiting pin are provided on the outside of the rotating plate respectively. A motor is provided inside one side of the fixing plate, and a blocking component is provided between the fixing plates. The blocking component includes multiple fixing rods, the axis of the fixing rods is perpendicular to the length direction of the support bar, and baffles are provided at both ends of the fixing rods. A stop block is provided on the opposite side of the baffles.
[0014] Furthermore, the connecting assembly includes a connecting block, a threaded rod, a connecting rod, a rotating rod, a fixed shaft, a limiting block, a tension spring, a support shaft, and a peeling component. The support shaft and the fixed shaft are respectively disposed between the fixed plate and the rotating plate. Both ends of the support shaft and the fixed shaft are provided with a connecting block and a rotating rod, and the connecting block and the rotating rod rotate relative to the support shaft and the fixed shaft, respectively. The threaded rod is disposed inside the connecting block, and the axis of the threaded rod is parallel to the length direction of the rotating rod. The connecting rod is connected to one end of the threaded rod. The outer side of the connecting rod is provided with a limiting block and a tension spring. Both the limiting block and the tension spring are connected to the fixed plate, and the limiting block abuts against the connecting rod.
[0015] Furthermore, the peeling member includes a counterweight block disposed on the outside of the support shaft, and the counterweight block rotates relative to the support shaft, and a fixing plate is provided on the outside of the counterweight block.
[0016] Furthermore, the extrusion assembly includes a first extrusion roller and a second extrusion roller, which are respectively disposed between the fixed plate and the rotating plate, and the center lines of the first extrusion roller and the second extrusion roller are both parallel to the center line of the support shaft.
[0017] Furthermore, the feeding assembly includes a fixed frame, which is disposed on the outside of the fixed plate. A driving member is provided between the opposite surfaces of the fixed plate, and the axis of the driving member is parallel to the axis of the support shaft. A transmission chain is provided between the driving member and the fixed frame.
[0018] Furthermore, the forming assembly includes a movable roller, inside which is a connecting shaft. The axis of the connecting shaft is parallel to the axis of the support shaft. Multiple support rings are provided on the outer side of the connecting shaft, and the support rings correspond to the support bars. Each support ring has a support member on its outer side, and each support member has a bolt inside, which is connected to the support bar. A support rod is provided between the support members, and a spring is provided on the outer side of the support rod. The other end of the spring has a pull rod, which is located between the support bars. A hook is provided on the outer side of one of the support members, and the hook is connected to a fixing pin. A fixing ring and a cutting ring are respectively provided on the outer side of the movable roller.
[0019] Furthermore, the rotating assembly includes a first gear, a second gear, a third gear, a fourth gear, and a fifth gear, all of which are disposed inside the fixed cover. The first gear and the fifth gear mesh with each other and are respectively connected to the second extrusion roller and the first extrusion roller. The fourth gear meshes with the fifth gear and is connected to the driving component. The fourth gear meshes with the third gear and is connected to the output end of the motor. The second gear meshes with the fifth gear and is connected to the connecting shaft.
[0020] The beneficial effects of this utility model are as follows:
[0021] This invention, through the arrangement of an extrusion assembly, a feeding assembly, and a forming assembly, enables continuous processing of dough cakes via the cooperation of a first extrusion roller, a second extrusion roller, a fixed frame, a transmission chain, a drive component, a moving roller, a fixed ring, a cutting ring, a support component, a support rod, and a spring. This avoids the problem that manual dough cake production is too slow, which would make it difficult to meet the demand when there is a large volume of dough cakes, thus affecting the sales volume of the dough cakes.
[0022] By setting up a fixed plate, a rotating plate, and connecting components, the movable roller can be removed for cleaning through the cooperation of the fixed plate, rotating plate, locking block, connecting block, connecting rod, rotating rod, fixed shaft, and support shaft. This avoids cleaning dead corners caused by the complex structure of the movable roller and ensures the cleaning effect. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0024] Figure 2 This is a main sectional view of the present invention;
[0025] Figure 3 This is an enlarged view of the rotating component of this utility model;
[0026] Figure 4 This is an enlarged view of the shielding component of this utility model;
[0027] Figure 5 This is an enlarged view of the extrusion assembly of this utility model;
[0028] Figure 6 This is a schematic diagram of the unfolded rotating plate of this utility model;
[0029] Figure 7 This is an enlarged view of the molded component of this utility model;
[0030] Figure 8 This is an enlarged view of the connecting shaft of this utility model;
[0031] Reference numerals: 1. Support bar; 101. Fixing plate; 102. Rotating plate; 103. Fixing cover; 104. Fixing pin; 105. Motor; 106. Clamping block; 107. Limiting pin; 2. Extrusion assembly; 201. First extrusion roller; 202. Second extrusion roller; 3. Blocking component; 301. Baffle; 302. Fixing rod; 303. Stop block; 4. Feeding assembly; 401. Fixing frame; 402. Transmission chain; 403. Driving component; 5. Connecting assembly; 501. Connecting block; 502. Threaded rod; 503. Connecting rod; 504. Rotating rod 505. Fixed shaft; 506. Limiting block; 507. Tension spring; 508. Support shaft; 6. Peeling component; 601. Counterweight; 602. Fixing plate; 7. Forming assembly; 701. Moving roller; 702. Fixing ring; 703. Cutting ring; 704. Support component; 705. Support rod; 706. Spring; 707. Pull rod; 708. Hook; 709. Support ring; 710. Connecting shaft; 8. Rotating assembly; 801. First gear; 802. Second gear; 803. Third gear; 804. Fourth gear; 805. Fifth gear. Detailed Implementation
[0032] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0033] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0034] It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. Furthermore, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0035] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that provides control.
[0036] In the description of the embodiments of this utility model, it should be noted that the terms "inner", "outer", "upper", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the utility model product is usually placed when in use. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0037] like Figures 1 to 8 As shown, a novel multigrain dough cake machine includes: multiple support bars 1 arranged side-by-side, each support bar 1 having a fixed plate 101 and a rotating plate 102 on its outer side, and each rotating plate 102 having a fixing pin 104 connected to the support bar 1; an extrusion assembly 2 disposed between the fixed plate 101 and the rotating plate 102 for extruding dough; a feeding assembly 4 disposed on the outer side of the support bars 1 for conveying the dough; a connecting assembly 5 disposed on the outer side of the fixed plate 101 for connecting the fixed plate 101 and the rotating plate 102; a forming assembly 7 disposed inside the support bars 1 for cutting the dough; and a rotating assembly 8 disposed on the outer side of the fixed plate 101 for transmitting power. Specifically, when processing the dough, the extrusion assembly 2 is first supported by the cooperation of the fixed plate 101 and the rotating plate 102, so that the extrusion assembly 2 extrudes the dough to form a sheet. The formed sheet is cut by the forming assembly 7 to form a dough cake. The formed dough cake is conveyed by the feeding assembly 4, which makes it easy for the processing personnel to collect the dough cake. During the processing, the fixed plate 101 and the rotating plate 102 are controlled by the connecting assembly 5. While ensuring the stable connection between the fixed plate 101 and the rotating plate 102, it is also easy to remove and clean the formed assembly 7 after processing. During the processing of the dough cake, the feeding assembly 4, the extrusion assembly 2 and the forming assembly 7 are connected by the rotating assembly 8 to ensure the stability of the dough cake processing process.
[0038] like Figures 1 to 8As shown, a fixing cover 103 is provided on the outer side of the fixing plate 101, and a locking block 106 and a limiting pin 107 are respectively provided on the outer side of the rotating plate 102. A motor 105 is provided inside one side of the fixing plate 101. A blocking member 3 is also provided between the fixing plates 101. The blocking member 3 includes multiple fixing rods 302. The axis of the fixing rods 302 is perpendicular to the length direction of the support bar 1. A baffle 301 is provided at both ends of the fixing rods 302. A stop block 303 is provided on the opposite side of the baffle 301. Specifically, the fixing pin 104 connects the support bar 1 and the rotating plate 102, so that the rotation Plate 102 can rotate relative to support bar 1 with fixed pin 104 as the center, which facilitates the removal and cleaning of molding component 7 after processing. There is a gap between fixed plate 101 and rotating plate 102, which facilitates the adjustment of the thickness of the dough by adjusting the position of fixed plate 101 relative to rotating plate 102 during the dough extrusion process. Baffle 301 and baffle block 303 block the dough inside the extrusion component 2, preventing the dough from entering the gap between extrusion component 2 and fixed plate 101 and rotating plate 102, and ensuring the accuracy of the dough position during the extrusion process.
[0039] like Figures 1 to 8As shown, the connecting assembly 5 includes a connecting block 501, a threaded rod 502, a connecting rod 503, a rotating rod 504, a fixed shaft 505, a limiting block 506, a tension spring 507, a support shaft 508, and a peeling member 6. The support shaft 508 and the fixed shaft 505 are respectively disposed between the fixed plate 101 and the rotating plate 102. Both ends of the support shaft 508 and the fixed shaft 505 are provided with a connecting block 501 and a rotating rod 504, and the connecting block 501 and the rotating rod 504 are respectively positioned relative to the support shaft 508 and the fixed shaft 505. 05. Rotation: The threaded rod 502 is located inside the connecting block 501, and the axis of the threaded rod 502 is parallel to the length direction of the rotating rod 504. The connecting rod 503 is connected to one end of the threaded rod 502. A limiting block 506 and a tension spring 507 are respectively provided on the outer side of the connecting rod 503. Both the limiting block 506 and the tension spring 507 are connected to the fixing plate 101, and the limiting block 506 abuts against the connecting rod 503. Specifically, one end of the connecting rod 503 is hook-shaped, and the connecting rod 503 cooperates with the locking block 106 to fix the... The fixed plate 101 is connected to the rotating plate 102 to prevent the rotating plate 102 from rotating relative to the support bar 1 during dough extrusion. The locking block 106 can be in the shape of a quadrangular prism or a cylinder. The limiting block 506 limits the connecting rod 503 to ensure the accuracy of the moving direction of the connecting rod 503. The threaded rod 502, in conjunction with the connecting block 501, drives the connecting rod 503 to move linearly. At the same time as the connecting rod 503 moves, the locking block 106 causes the rotating plate 102 to move relative to the fixed plate 101. The position is moved to control the thickness of the extruded dough. The rotating rod 504 rotates around the fixed shaft 505, so that by pressing the rotating rod 504, the connecting rod 503 and the support shaft 508 can be rotated around the fixed shaft 508, so that the connecting rod 503 separates from the locking block 106 during the rotation. The limiting pin 107 controls the rotation range of the rotating rod 504, and the tension spring 507 pulls the connecting rod 503 to ensure the stability of the connection between the connecting rod 503 and the locking block 106.
[0040] like Figures 1 to 8 As shown, the peeling component 6 includes a counterweight 601, which is disposed outside the support shaft 508 and rotates relative to the support shaft 508. A fixing piece 602 is provided on the outside of the counterweight 601. Specifically, when the dough is extruded, the counterweight 601 is first rotated so that the fixing piece 602 on the outside of the counterweight 601 separates from the first extrusion roller 201. When the dough is cut, the counterweight 601 is rotated so that the fixing piece 602 contacts the first extrusion roller 201, thereby peeling the dough cut outside the first extrusion roller 201 and allowing it to fall above the feeding component 4 for conveying.
[0041] like Figures 1 to 8As shown, the extrusion assembly 2 includes a first extrusion roller 201 and a second extrusion roller 202. The first extrusion roller 201 and the second extrusion roller 202 are respectively disposed between the fixed plate 101 and the rotating plate 102, and the axis lines of the first extrusion roller 201 and the second extrusion roller 202 are parallel to the axis line of the support shaft 508. Specifically, the first extrusion roller 201 cooperates with the second extrusion roller 202 to extrude the dough to form a dough sheet, which is convenient for the forming assembly 7 to cut the dough sheet into a flatbread. The second extrusion roller 202 adjusts its position with the rotating plate 102, so that it can cooperate with the first extrusion roller 201 to process different flatbreads according to the needs. The surface of the first extrusion roller 201 is rougher than the surface of the second extrusion roller 202, so that the extruded dough sheet can be wrapped around the outside of the first extrusion roller 201 to ensure the stability of the flatbread processing.
[0042] like Figures 1 to 8 As shown, the feeding assembly 4 includes a fixed frame 401, which is disposed on the outside of the fixed plate 101. A driving member 403 is provided between the opposite surfaces of the fixed plate 101, and the axis of the driving member 403 is parallel to the axis of the support shaft 508. A transmission chain 402 is provided between the driving member 403 and the fixed frame 401. Specifically, the fixed frame 401 cooperates with the driving member 403 to provide support for the transmission chain 402, so that the transmission chain 402 can transport the processed dough. The transmission chain 402 can be a conveyor belt or a conveyor chain, thereby transporting the dough during the dough processing.
[0043] like Figures 1 to 8As shown, the molding component 7 includes a moving roller 701, inside which is a connecting shaft 710. The axis of the connecting shaft 710 is parallel to the axis of the support shaft 508. Multiple support rings 709 are provided on the outer side of the connecting shaft 710, and the support rings 709 correspond to the support bars 1. Support members 704 are provided on the outer side of each support ring 709. Bolts are provided inside each support member 704 and are connected to the support bars 1. Support rods 705 are provided between the support members 704. Springs 706 are provided on the outer side of each support rod 705, and the other end of each spring 706 has a tension... A pull rod 707 is provided, and the pull rod 707 is located between the support bars 1. A hook 708 is provided on the outer side of one side support member 704. The hook 708 is connected to the fixing pin 104. A fixing ring 702 and a cutting ring 703 are respectively provided on the outer side of the moving roller 701. Specifically, a groove is opened on one side of the hook 708, and the groove is adapted to the fixing pin 104. Thus, in use, the hook 708 cooperates with the fixing pin 104 to limit the support member 704. The spring 706 cooperates with the pull rod 707 to pull the support rod 705 and the support member 704 with bolts. Rotating around the center, the support 704 rotates while simultaneously pushing the fixing ring 702 and cutting ring 703 on the outer side of the moving roller 701 to adhere to the first extrusion roller 201, thereby cutting the dough into a flatbread. The fixing ring 702 cuts the dough, facilitating the peeling of the cut flatbread with the fixing piece 602. During the processing of the flatbread, the dough is first placed between the first extrusion roller 201 and the second extrusion roller 202. Then, under the rotation of the first extrusion roller 201 and the second extrusion roller 202, the dough is processed into a shape wrapped around the first extrusion roller 201. The sheet on the outside of the extrusion roller 201 is then moved. The hook 708 is then moved to separate the hook 708 from the fixing pin 104, thereby releasing the limit on the support member 704. Then, the support member 704 rotates around the bolt under the pull of the spring 706. The rotation of the support member 704 pushes the fixing ring 702 and the cutting ring 703 on the outside of the moving roller 701 to fit with the first extrusion roller 201, so that the fixing ring 702 and the cutting ring 703 work together to process the sheet into a cake. The processed cake is then scooped off by the fixing piece 602 onto the surface of the transmission chain 402 for conveying.
[0044] like Figures 1 to 8As shown, the rotating assembly 8 includes a first gear 801, a second gear 802, a third gear 803, a fourth gear 804, and a fifth gear 805. All four gears are housed inside the fixed cover 103. The first gear 801 and the fifth gear 805 mesh with each other and are connected to the second extrusion roller 202 and the first extrusion roller 201, respectively. The fourth gear 804 meshes with the fifth gear 805 and is connected to the drive component 403. The fourth gear 804 also meshes with the third gear 803 and is connected to the output end of the motor 105. The second gear 802 meshes with the fifth gear 805 and is connected to the connecting shaft 710. Specifically, when processing the dough, the third gear 803 first drives the motor 105... The power is transmitted to the fourth gear 804, which drives the transmission chain 402 to rotate. At the same time, the fourth gear 804 transmits the power to the fifth gear 805 and the first gear 801. The fifth gear 805 and the first gear 801 drive the first extrusion roller 201 and the second extrusion roller 202 to rotate in opposite directions, thereby extruding the dough. When the hook 708 is connected to the fixing pin 104, the second gear 802 and the fifth gear 805 are separated to avoid cutting before the dough is formed. After the dough is formed, the hook 708 is first moved to release the limit on the support 704. Then, the spring 706 and the support 704 pull the fixing ring 702 and the cutting ring 703 to fit with the first extrusion roller 201. When the fixing ring 702 and the cutting ring 703 are fitted with the first extrusion roller 201, the second gear 802 and the fifth gear 805 mesh, thereby rotating synchronously with the first extrusion roller 201 to process the dough.
[0045] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A novel machine for making flatbreads from coarse grains, characterized in that, include: Support bar (1), there are multiple support bars (1) and the support bars (1) are arranged side by side. Each support bar (1) is provided with a fixing plate (101) and a rotating plate (102) on the outside. Each rotating plate (102) is provided with a fixing pin (104) inside and the fixing pin (104) is connected to the support bar (1). The extrusion assembly (2) is disposed between the fixed plate (101) and the rotating plate (102) for extruding the dough; The feeding assembly (4) is located on the outside of the support bar (1) and is used to feed the dough. A connecting component (5) is disposed on the outside of the fixed plate (101) for connecting the fixed plate (101) and the rotating plate (102); The forming component (7) is set inside the support strip (1) and is used to cut the dough; The rotating assembly (8) is located on the outside of the fixed plate (101) and is used to transmit power.
2. A novel machine for making coarse grain bread as claimed in claim 1, wherein, The fixed plate (101) is also provided with a fixed cover (103) on the outside. The rotating plate (102) is provided with a locking block (106) and a limiting pin (107) on the outside. A motor (105) is provided inside one side of the fixed plate (101). A shielding member (3) is also provided between the fixed plates (101). The shielding member (3) includes multiple fixed rods (302). The axis of the fixed rod (302) is perpendicular to the length direction of the support bar (1). Both ends of the fixed rod (302) are provided with baffles (301). A stop block (303) is provided on the opposite side of the baffle (301).
3. A novel machine for making coarse grain breads according to claim 2, characterized in that, The connecting assembly (5) includes a connecting block (501), a threaded rod (502), a connecting rod (503), a rotating rod (504), a fixed shaft (505), a limiting block (506), a tension spring (507), a support shaft (508), and a peeling piece (6). The support shaft (508) and the fixed shaft (505) are respectively disposed between the fixed plate (101) and the rotating plate (102). Both ends of the support shaft (508) and the fixed shaft (505) are provided with a connecting block (501) and a rotating rod (504), and the connecting block (501) and the rotating rod (504) are also provided with a connecting rod (501) and a rotating rod (504). 4) The threaded rod (502) is rotated relative to the support shaft (508) and the fixed shaft (505) respectively. The threaded rod (502) is located inside the connecting block (501), and the axis of the threaded rod (502) is parallel to the length direction of the rotating rod (504). The connecting rod (503) is connected to one end of the threaded rod (502). The connecting rod (503) is provided with a limiting block (506) and a tension spring (507) on its outer side. The limiting block (506) and the tension spring (507) are both connected to the fixed plate (101), and the limiting block (506) abuts against the connecting rod (503).
4. A novel machine for making coarse grain breads according to claim 3, characterized in that, The peeling member (6) includes a counterweight (601) disposed outside the support shaft (508) and the counterweight (601) rotates relative to the support shaft (508). A fixing piece (602) is provided on the outside of the counterweight (601).
5. A novel machine for making coarse grain bread as claimed in claim 2, wherein, The extrusion assembly (2) includes a first extrusion roller (201) and a second extrusion roller (202). The first extrusion roller (201) and the second extrusion roller (202) are respectively disposed between the fixed plate (101) and the rotating plate (102), and the axis lines of the first extrusion roller (201) and the second extrusion roller (202) are parallel to the axis line of the support shaft (508).
6. A novel machine for making coarse grain bread as claimed in claim 2, wherein, The feeding assembly (4) includes a fixed frame (401), which is disposed on the outside of the fixed plate (101). A driving member (403) is provided between the opposite surfaces of the fixed plate (101), and the axis of the driving member (403) is parallel to the axis of the support shaft (508). A transmission chain (402) is provided between the driving member (403) and the fixed frame (401).
7. A novel machine for making coarse grain bread as claimed in claim 2, wherein, The molding assembly (7) includes a movable roller (701), inside which is a connecting shaft (710). The axis of the connecting shaft (710) is parallel to the axis of the support shaft (508). Multiple support rings (709) are provided on the outside of the connecting shaft (710), and the support rings (709) correspond to the support bars (1). Each support ring (709) has a support member (704) on its outside. Each support member (704) has a bolt inside, and the bolt is connected to the support bar (1). The support members (704) are connected, and a support rod (705) is provided between them. A spring (706) is provided on the outside of the support rod (705). A pull rod (707) is provided at the other end of the spring (706). The pull rod (707) is provided between the support bars (1). A hook (708) is provided on the outside of one side of the support member (704). The hook (708) is connected to the fixing pin (104). A fixing ring (702) and a cutting ring (703) are respectively provided on the outside of the moving roller (701).
8. A novel machine for making coarse grain bread as claimed in claim 2, wherein, The rotating assembly (8) includes a first gear (801), a second gear (802), a third gear (803), a fourth gear (804), and a fifth gear (805). All five gears are disposed inside the fixed cover (103). The first gear (801) and the fifth gear (805) mesh with each other. The fourth gear (804) is connected to the second extrusion roller (202) and the first extrusion roller (201) respectively. The fourth gear (804) meshes with the fifth gear (805) and is connected to the drive unit (403). The fourth gear (804) meshes with the third gear (803) and is connected to the output end of the motor (105). The second gear (802) meshes with the fifth gear (805) and is connected to the connecting shaft (710).