Home Multifunctional Noodle Maker
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YONGKANG ZHENGFA MACHINERY CO LTD
- Filing Date
- 2025-07-04
- Publication Date
- 2026-05-26
AI Technical Summary
[0002]家用多功能面条机是一种面向家庭场景的面食加工设备,通过集成压面、分条等模块化功能,实现从面团到成品面条的自动化制作,随着健康饮食观念的普及,家庭自制面食因无需添加剂、口感新鲜等优势逐渐成为消费趋势,用户对制面设备的功能性、便捷性提出了更高需求,传统单一功能的面条机已无法满足多样化制面需求,而具备功能切换能力的设备可减少重复购买成本,同时节省厨房空间,因此市场亟需一种既能灵活实现不同面食形态制作,又便于日常维护的家用设备
[0014] Compared with the prior art, this utility model provides a multi-functional noodle maker for home use, which has the following beneficial effects:
Smart Images

Figure CN224268060U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of noodle machine technology, specifically a household multi-functional noodle machine. Background Technology
[0002] A household multi-functional noodle maker is a type of noodle processing equipment designed for home use. By integrating modular functions such as dough pressing and noodle slicing, it automates the production of noodles from dough. With the popularization of healthy eating concepts, homemade noodles are gradually becoming a consumer trend due to their advantages such as no additives and fresh taste. Users have put forward higher demands for the functionality and convenience of noodle-making equipment. Traditional single-function noodle makers can no longer meet diverse noodle-making needs, while equipment with function switching capabilities can reduce repeated purchase costs and save kitchen space. Therefore, the market urgently needs a household device that can flexibly produce different noodle forms and is easy to maintain.
[0003] However, traditional household noodle makers generally suffer from problems such as limited functionality and cumbersome cleaning. On the one hand, most devices only support single functions such as pressing or slitting dough, requiring users to purchase multiple devices to meet different noodle-making needs, resulting in resource waste. On the other hand, their structural design often lacks disassembly, with core components such as pressing rollers and slitting rollers fixed to the machine body, making it easy for dough residue to hide in the gaps. Cleaning requires the use of tools to forcibly disassemble the machine, which is not only time-consuming and laborious but may also damage the equipment due to improper operation. In addition, the roller spacing adjustment method of traditional devices is complicated, making it difficult to accurately control the noodle thickness and affecting the quality of the finished product. These defects limit the experience of homemade noodles for home users. Therefore, we have proposed a multi-functional household noodle maker. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] In view of the shortcomings of the existing technology, this utility model provides a household multi-functional noodle maker, which solves the above-mentioned problems.
[0006] (II) Technical Solution
[0007] To achieve the above-mentioned objectives, this utility model provides the following technical solution: a household multi-functional noodle machine, comprising a multi-functional noodle machine, wherein the top right end of the multi-functional noodle machine is provided with replaceable process one and process two, wherein process one and process two include a noodle making component, a first drive shaft, a second drive shaft and a connecting plate, process one also includes a pressing roller, and process two also includes a slitting roller, wherein the first drive shaft and the second drive shaft are respectively provided inside the noodle making component, wherein the first drive shaft and the second drive shaft are symmetrically distributed, the right end of the noodle making component is fixed to the connecting plate by bolts, the right ends of the first drive shaft and the second drive shaft extend into the interior of the connecting plate, the interior of the connecting plate is provided with a fixing component, a sliding plate is slidably sleeved on the cylindrical surface of the fixing component, a fixing plate is provided on the cylindrical surface of the fixing component, a compression spring is provided between the fixing plate and the sliding plate, the end of the fixing component is inserted into the interior of the right end of the second drive shaft, the second drive shaft is limited and fixed by the fixing component, wherein the first drive shaft and the second drive shaft are respectively sleeved with replaceable pressing roller and slitting roller, and the surface of the slitting roller is provided with teeth.
[0008] Preferably, the multi-functional noodle machine has an on / off switch at the front end, a connecting ring at the top right end of the multi-functional noodle machine, a micro motor output shaft inside the connecting ring, and a connecting block at the left end of the noodle making part. The connecting block is inserted into the inside of the connecting ring and fixed by sliding snap-fit.
[0009] Preferably, a movable cavity is provided inside the left end of the noodle making component, the left end of the first drive shaft extends through the left end of the noodle making component to the interior of the connecting block, and the left end of the first drive shaft is connected to the output shaft of the micro motor. A friction pad is provided on the cylindrical surface of the left end of the first drive shaft, and the friction pad is in close contact with the left end surface inside the noodle making component for frictional engagement. A noodle making cavity is provided inside the noodle making component.
[0010] Preferably, the left end of the second drive shaft is provided with a movable block, which is slidably installed inside the movable cavity. The back of the movable block is provided with mutually symmetrical return springs. The cylindrical surface of the first drive shaft is provided with four central axis symmetrical insertion positioning blocks. The inside of the pressing roller and the slitting roller is provided with four central axis symmetrical positioning grooves. Replaceable pressing rollers and slitting rollers are respectively sleeved on the first drive shaft and the second drive shaft. The second drive shaft rotates in cooperation with the pressing roller and the slitting roller.
[0011] Preferably, a connecting plate is fixedly installed on the right end of the noodle making component by bolts, and a rectangular sliding cavity is opened inside the connecting plate. Multiple positioning cylinders are provided at equal intervals at the front end of the sliding cavity.
[0012] Preferably, the end cylindrical surface of the fixing member is provided with a rectangular fixing plate, the back of the fixing plate is provided with mutually symmetrical fixing ends, a sliding plate is slidably sleeved on the cylindrical surface of the fixing member, and mutually symmetrical compression springs are provided between the sliding plate and the fixing plate. The sliding plate and the fixing plate are slidably installed inside the sliding cavity, and the end of the fixing member is inserted into the right end of the second drive shaft. The fixing ends are limited and fixed by the positioning cylinder.
[0013] (III) Beneficial Effects
[0014] Compared with the prior art, this utility model provides a multi-functional noodle maker for home use, which has the following beneficial effects:
[0015] 1. This household multi-functional noodle machine features two interchangeable processes on the top right end: Process 1 and Process 2, which allow for quick switching between dough pressing and slitting functions. The dough pressing roller in Process 1 and the slitting roller in Process 2 are engaged with the roller positioning groove via insertion positioning blocks on the first and second drive shafts, respectively. Power is transmitted through the micro motor output shaft and connecting block to ensure synchronous rotation of the two rollers. During dough pressing, the moving block and return spring automatically adjust the roller spacing to accommodate different dough thicknesses. During slitting, the slitting roller's teeth precisely cut the dough pieces. Combined with the sliding adjustment of the fixing parts inside the connecting plate, and the cooperation of the compression spring and positioning cylinder, the thickness of the noodles can be flexibly switched.
[0016] 2. This household multi-functional noodle maker features a convenient disassembly structure. The noodle-making components and connecting plates are fixed with bolts, and disassembly can be achieved simply by unscrewing the bolts. The pressing roller and sliding roller can be directly removed from the drive shaft, and any residual dough can be rinsed directly with water. The connecting block and connecting ring slide and engage, allowing for easy removal and cleaning. Independent modules such as the fixing parts and sliding plates can be disassembled individually, ensuring no blind spots in cleaning. All parts that come into contact with the dough are washable, allowing users to complete the disassembly and cleaning of all components in a short time without the need for tools. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 This is a schematic diagram showing the structural breakdown of this utility model;
[0019] Figure 3 This is a cross-sectional view of the structure of process one of the present invention;
[0020] Figure 4 This is a cross-sectional view of the structure of process two of this utility model;
[0021] Figure 5 This is a schematic diagram of the drive shaft structure of this utility model;
[0022] Figure 6 This is a cross-sectional view of the structure of the noodle-making component of this utility model;
[0023] Figure 7 This is a cross-sectional view of the connecting plate structure of this utility model;
[0024] Figure 8 This is a schematic diagram of the fastener structure of this utility model.
[0025] In the diagram: 1. Multifunctional noodle machine; 2. Process 1; 3. Process 2; 4. Connecting ring; 5. Micro motor output shaft; 6. Connecting block; 7. Noodle making component; 8. First drive shaft; 9. Second drive shaft; 10. Moving block; 11. Return spring; 12. Pressing roller; 13. Sliding roller; 14. Connecting plate; 15. Fixing component; 16. Sliding plate; 17. Compression spring; 18. Friction pad; 19. Insertion positioning block; 20. Moving cavity; 21. Noodle making cavity; 22. Sliding cavity; 23. Positioning cylinder; 24. Fixing plate; 25. Fixing end. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-8 A household multi-functional noodle machine includes a multi-functional noodle machine 1. The top right end of the multi-functional noodle machine 1 has replaceable process one 2 and process two 3. Process one 2 and process two 3 include a noodle-making component 7, a first drive shaft 8, a second drive shaft 9, and a connecting plate 14. Process one 2 also includes a dough pressing roller 12, and process two 3 also includes a strip-splitting roller 13. The first drive shaft 8 and the second drive shaft 9 are symmetrically distributed inside the noodle-making component 7. The right end of the noodle-making component 7 is fixed to the connecting plate 14 by bolts. The first drive shaft 8... The right end of the second drive shaft 9 extends into the interior of the connecting plate 14. A fixing member 15 is provided inside the connecting plate 14. A sliding plate 16 is slidably sleeved on the cylindrical surface of the fixing member 15. A fixing plate 24 is provided on the cylindrical surface of the fixing member 15. A compression spring 17 is provided between the fixing plate 24 and the sliding plate 16. The end of the fixing member 15 is inserted into the interior of the right end of the second drive shaft 9. The second drive shaft 9 is limited and fixed by the fixing member 15. Replaceable pressing rollers 12 and slitting rollers 13 are respectively sleeved on the first drive shaft 8 and the second drive shaft 9. The surface of the slitting roller 13 is provided with teeth.
[0028] Furthermore, the multi-functional noodle machine 1 has an on / off switch at the front end, a connecting ring 4 at the top right end of the multi-functional noodle machine 1, a micro motor output shaft 5 inside the connecting ring 4, and a connecting block 6 at the left end of the noodle making component 7. The connecting block 6 is inserted into the inside of the connecting ring 4 and fixed by sliding snap-fit, so as to realize the mechanical connection and functional control of the power input end.
[0029] Furthermore, a movable cavity 20 is provided inside the left end of the noodle making component 7. The left end of the first drive shaft 8 extends through the left end of the noodle making component 7 into the interior of the connecting block 6. The left end of the first drive shaft 8 is connected to the output shaft 5 of the micro motor. A friction pad 18 is provided on the cylindrical surface of the left end of the first drive shaft 8. The friction pad 18 is in close contact with the left end surface inside the noodle making component 7 for frictional engagement. A noodle making cavity 21 is provided inside the noodle making component 7 to ensure stable power transmission to the drive shaft and to form a dough processing space.
[0030] Furthermore, a movable block 10 is provided at the left end of the second drive shaft 9. The movable block 10 is slidably installed inside the movable cavity 20. A symmetrical return spring 11 is provided on the back of the movable block 10. The cylindrical surface of the first drive shaft 8 is provided with four symmetrically inserted positioning blocks 19. The interior of the pressing roller 12 and the slitting roller 13 is provided with four symmetrically positioned grooves. Replaceable pressing rollers 12 and slitting rollers 13 are respectively sleeved on the first drive shaft 8 and the second drive shaft 9. The second drive shaft 9 rotates with the pressing roller 12 and the slitting roller 13 to realize the detachable connection between the drive shaft and the pressing roller 12 and the slitting roller 13 and the elastic adjustment of the distance between the two rollers.
[0031] Furthermore, a connecting plate 14 is fixedly installed on the right end of the noodle making component 7 by bolts. The connecting plate 14 has a rectangular sliding cavity 22 inside. Multiple equidistant positioning cylinders 23 are provided at the front end of the sliding cavity 22, providing an installation carrier and positioning foundation for the core component of function switching.
[0032] Furthermore, a rectangular fixing plate 24 is provided on the cylindrical surface of the end of the fixing member 15. The back of the fixing plate 24 is provided with mutually symmetrical fixing ends 25. A sliding plate 16 is slidably sleeved on the cylindrical surface of the fixing member 15. A mutually symmetrical compression spring 17 is provided between the sliding plate 16 and the fixing plate 24. The sliding plate 16 and the fixing plate 24 are slidably installed inside the sliding cavity 22. The end of the fixing member 15 is inserted into the right end of the second drive shaft 9. The fixing end 25 is fixed in place by corresponding positioning cylinder 23. By utilizing the elasticity of the spring and cooperating with the positioning cylinder 23, the second drive shaft 9 can be quickly fixed in place and the functional modules can be easily switched.
[0033] Structural Description:
[0034] Multifunctional noodle machine 1: Household noodle processing equipment, with replaceable process 1 2 and process 2 3 on the top right end, and an on / off switch at the front end to realize the functions of pressing and splitting noodles;
[0035] Process 1, Part 2: Includes noodle-making components 7, equipped with 12 dough-pressing rollers, which extrude dough into sheets through double rollers with adjustable spacing;
[0036] Process 2, step 3: Includes noodle-making components 7, equipped with 13 slitting rollers with toothed texture, to cut dough pieces into noodles, supporting specification switching;
[0037] Connecting ring 4: Located at the top right end of the machine body, it contains a micro motor output shaft 5, which slides and connects with the left end connecting block 6 of the noodle making component 7 to transmit power.
[0038] Micro motor output shaft 5: Located inside the connecting ring 4, it is connected to the left end of the first drive shaft 8 and transmits power to drive the double rollers to rotate;
[0039] Connecting block 6: The left end structure of the noodle-making component 7, which is inserted into the connecting ring 4 and slidably engaged to achieve power transmission and component fixation;
[0040] Noodle making component 7: It carries components such as the drive shaft, and has a moving cavity 20 and a noodle making cavity 21 inside. The left end is connected to the power source and the right end is connected to the connecting plate 14.
[0041] First drive shaft 8: Symmetrically arranged inside noodle making component 7, with left end connected to micro motor output shaft 5, cylindrical surface with insertion positioning block 19, and roller rotation;
[0042] Second drive shaft 9: Symmetrical to the first drive shaft 8, its right end is limited by the fixing part 15, and its left end is connected to the moving block 10, which cooperates with the rotation of the roller.
[0043] Moving block 10: Located at the left end of the second drive shaft 9, it slides into the moving cavity 20, and is connected to the back of the return spring 11 to adjust the distance between the two rollers;
[0044] Reset spring 11: Symmetrically mounted on the back of the movable block 10, providing elastic support and automatically adjusting the roller spacing to adapt to the dough thickness;
[0045] Pressing roller 12: Sleeve onto the drive shaft, with a smooth surface, the double rollers extrude dough into uniform sheets, and engage with the shaft through a positioning groove;
[0046] Slitting roller 13: Sleeves onto the drive shaft, has toothed surface, cuts the surface into noodles, engages with the shaft through a positioning groove, and is replaceable;
[0047] Connecting plate 14: Bolted to the right end of noodle making part 7, and has a sliding cavity 22, a positioning cylinder 23, and mounting fasteners 15 and other components inside;
[0048] Fixing component 15: The end is inserted into the right end of the second drive shaft 9, and a fixing plate 24 and a sliding sleeve sliding plate 16 are provided on the cylindrical surface to limit and fix the drive shaft;
[0049] Sliding plate 16: It slides on the cylindrical surface of the fixing member 15 and has a compression spring 17 between it and the fixing plate 24. Pulling it can switch the function modules.
[0050] Compression spring 17: Symmetrically arranged between sliding plate 16 and fixed plate 24, providing restoring force and assisting fixed end 25 in engaging positioning cylinder 23;
[0051] Friction pad 18: Located on the cylindrical surface at the left end of the first drive shaft 8, closely attached to the inner wall of the noodle-making part 7, to stably transmit power;
[0052] Insertion positioning block 19: Four centrally symmetrically arranged on the cylindrical surface of the first drive shaft 8, which engage with the positioning groove inside the roller body to transmit torque;
[0053] Moving cavity 20: The inner cavity at the left end of the noodle making part 7, for the moving block 10 to slide, so as to realize the dynamic adjustment of the distance between the two rollers;
[0054] Noodle making chamber 21: The internal space of noodle making component 7, where dough enters and is squeezed or cut into noodles by double rollers;
[0055] Sliding cavity 22: A rectangular cavity inside the connecting plate 14, for the fixing component 15, sliding plate 16, etc. to slide and realize function switching;
[0056] Positioning cylinders 23: Multiple cylinders are equidistantly arranged at the front end of the sliding cavity 22, which cooperate with the fixed end 25 to limit and fix the position of the drive shaft;
[0057] Fixed plate 24: Rectangular in shape, located at the end of the fixed member 15, with a fixed end 25 on the back, which cooperates with the sliding plate 16 and the spring 17 for fixation;
[0058] Fixed end 25: Symmetrically located on the back of fixed plate 24, it is inserted into positioning cylinder 23 for limiting and fixing the position of second drive shaft 9.
[0059] Working Principle: The working principle of the household multi-functional noodle machine 1 revolves around the replaceable process 1 (2) and process 2 (3). These two processes utilize a clever mechanical structure to switch between dough pressing and noodle slicing functions. Both process 1 (2) and process 2 (3) at the top right end include a noodle-making component 7, a first drive shaft 8, a second drive shaft 9, and a connecting plate 14. Process 1 (2) uses a dough pressing roller 12 to press the dough, while process 2 (3) uses a slicing roller 13 to cut the noodles. When the front-end switch is activated, the micro-motor output shaft 5 begins to rotate. Its power is transmitted through the connecting block 6 within the connecting ring 4 to the first drive shaft 8 within the noodle-making component 7. The friction pad 18 on the cylindrical surface of the left end of the first drive shaft 8 frictionally engages with the left end surface inside the noodle-making component 7, ensuring stable power transmission. Four symmetrically positioned insertion blocks 19 on the cylindrical surface precisely engage with the four positioning grooves inside the pressing roller 12 or the slitting roller 13, allowing the fitted components to rotate synchronously with the shaft. Taking the pressing function as an example, when installing the pressing roller 12 in step 2, the first drive shaft 8 drives the pressing roller 12 to rotate, while the pressing roller 12 on the second drive shaft 9 rotates in coordination. The two symmetrically distributed pressing rollers 12 form an extrusion channel. After the dough is placed into the noodle-making chamber 21, it is pressed into a uniform sheet under the rotational extrusion of the two rollers. During this process, the moving block 10 at the left end of the second drive shaft 9 slides within the moving chamber 20, and the return spring 11 on the back provides elastic support. The distance between the two pressing rollers 12 is adjusted by sliding the fixing piece 15 to both sides, thereby adjusting the thickness of the dough. Further adjustments are made to ensure uniform pressing force. When switching to the slitting function, the slitting roller 13 of process two (3) is replaced. Its working principle is similar: the first drive shaft 8 drives the slitting roller 13 to rotate, and the slitting roller 13 on the second drive shaft 9 rotates in coordination. The teeth on the surface of the slitting roller 13 cut the pressed dough into noodles of uniform thickness. The fixing part 15 inside the connecting plate 14 is the key structure for width switching. Its end is inserted into the right end of the second drive shaft 9. A compression spring 17 is provided between the fixing plate 24 and the sliding plate 16 on the cylindrical surface. When the width needs to be adjusted, the fixing part 15 is pulled outward, and the compression spring 17 between the sliding plate 16 and the fixing plate 24 is compressed. The fixed end 25 is fixed to the positioning cylinder 23, so the width of the dough can be adjusted. After the fixing part 15 is opened, the compression spring 17 returns to its original position, and the fixing end 25 is inserted into the positioning cylinder 23 in the new position to complete the fixation. The noodle making part 7 is fixed to the connecting plate 14 by bolts. During disassembly, simply unscrew the bolts to separate the noodle making part 7 from the connecting plate 14. The pressing roller 12 and the slitting roller 13 are connected to the drive shaft through the positioning groove and can be removed by gently pulling them outward. Residual dough can be directly rinsed with water. The sliding plate 16, fixing part 15 and other components in the connecting plate 14 are all independent modules. The open structure of the sliding cavity 22 and the positioning cylinder 23 makes it easy to clean flour residue with a soft brush. The connecting block 6 and the connecting ring 4 are slidably engaged and can be separated by pulling them out, avoiding the accumulation of dough in the gaps that is difficult to clean. During the entire operation, the power of the micro motor is transmitted through the first drive shaft 8.Then, the limiting action of the fixing component 15 drives the second drive shaft 9 to rotate synchronously. Combined with the elastic adjustment of the return spring 11 and the compression spring 17, this achieves flexible switching and stable operation of the dough pressing and slitting functions, allowing the household multi-functional noodle maker to efficiently produce noodles of different specifications.
[0060] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A household multi-functional noodle maker, comprising a multi-functional noodle maker (1), characterized in that: The multi-functional noodle machine (1) has replaceable process one (2) and process two (3) at the top right end. Process one (2) and process two (3) include a noodle making component (7), a first drive shaft (8), a second drive shaft (9), and a connecting plate (14). Process one (2) also includes a dough pressing roller (12), and process two (3) also includes a strip separating roller (13). The noodle making component (7) is equipped with a first drive shaft (8) and a second drive shaft (9) respectively. The first drive shaft (8) and the second drive shaft (9) are symmetrically distributed. The connecting plate (14) is fixed to the right end of the noodle making component (7) by bolts. The right end of the first drive shaft (8) extends into the interior of the connecting plate (14). A fixing member (15) is provided inside the connecting plate (14). A sliding plate (16) is slidably sleeved on the cylindrical surface of the fixing member (15). A fixing plate (24) is provided on the cylindrical surface of the fixing member (15). A compression spring (17) is provided between the fixing plate (24) and the sliding plate (16). The end of the fixing member (15) is inserted into the right end of the second drive shaft (9). The second drive shaft (9) is limited and fixed by the fixing member (15). Replaceable pressing rollers (12) and slitting rollers (13) are respectively sleeved on the first drive shaft (8) and the second drive shaft (9). The surface of the slitting roller (13) is provided with teeth.
2. The household multi-functional noodle maker according to claim 1, characterized in that: The multi-functional noodle machine (1) has an on / off switch at the front end and a connecting ring (4) at the top right end. The connecting ring (4) has a micro motor output shaft (5) inside. The noodle making part (7) has a connecting block (6) at the left end. The connecting block (6) is inserted into the connecting ring (4) and fixed by sliding snap-fit.
3. The household multi-functional noodle maker according to claim 1, characterized in that: The left end of the noodle making component (7) has a movable cavity (20). The left end of the first drive shaft (8) extends through the left end of the noodle making component (7) to the inside of the connecting block (6). The left end of the first drive shaft (8) is connected to the output shaft (5) of the micro motor. The cylindrical surface of the left end of the first drive shaft (8) is provided with a friction pad (18). The friction pad (18) is in close contact with the left end surface inside the noodle making component (7) for frictional cooperation. The inside of the noodle making component (7) has a noodle making cavity (21).
4. The household multi-functional noodle maker according to claim 3, characterized in that: The left end of the second drive shaft (9) is provided with a moving block (10), which is slidably installed inside the moving cavity (20). The back of the moving block (10) is provided with mutually symmetrical return springs (11). The cylindrical surface of the first drive shaft (8) is provided with four central axis symmetrical insertion positioning blocks (19). The inside of the pressing roller (12) and the slitting roller (13) is provided with four central axis symmetrical positioning grooves. The first drive shaft (8) and the second drive shaft (9) are respectively fitted with replaceable pressing roller (12) and slitting roller (13). The second drive shaft (9) is rotatably engaged with the pressing roller (12) and the slitting roller (13).
5. The household multi-functional noodle maker according to claim 4, characterized in that: The right end of the noodle making component (7) is fixedly installed with a connecting plate (14) by bolts. The interior of the connecting plate (14) is provided with a rectangular sliding cavity (22), and the front end of the sliding cavity (22) is provided with multiple equidistant positioning cylinders (23).
6. The household multi-functional noodle maker according to claim 5, characterized in that: The end cylindrical surface of the fixing member (15) is provided with a rectangular fixing plate (24), and the back of the fixing plate (24) is provided with mutually symmetrical fixing ends (25). A sliding plate (16) is slidably sleeved on the cylindrical surface of the fixing member (15). A mutually symmetrical compression spring (17) is provided between the sliding plate (16) and the fixing plate (24). The sliding plate (16) and the fixing plate (24) are slidably installed inside the sliding cavity (22), and the end of the fixing member (15) is inserted into the right end of the second drive shaft (9). The fixing ends (25) are fixed and limited by the positioning cylinder (23).