Noodle maker
By using a kneading rod with eccentric kneading leaves in the noodle machine, the problem of insufficient noodle squeeze capacity of the existing noodle machine is solved, and a higher dough input flow and noodle squeeze capacity are achieved.
Patent Information
- Application Number
- CN202421733145.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The existing noodle machine with a noodle extrusion cylinder structure has insufficient extrusion capability, mainly because the dough input flow of the traditional noodle stirring components is low, resulting in the incoming flow of the noodle extrusion flow that cannot be greatly improved.
The kneading rod with eccentric kneading leaves is used. The kneading rod has a better kneading effect in the dough cavity, which can effectively improve the input flow of the dough and improve the noodle squeeze ability of the noodles machine.
By improving the structure of the kneading rod, a special avoidance gap is set to make it suitable for noodle machines with a noodle cylinder insertion structure, it can withstand higher noodle pressure and improve the noodle squeeze capability of the noodle machine.
Smart Images

Figure CN222853052U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of food cooking machines, in particular to a noodle machine, in particular to a noodle machine with a noodle extruding cylinder structure. Background Art
[0002] The noodle machine can automatically mix flour and water and extrude them into noodles, which is very popular among consumers.
[0003] For example, Chinese patent document No. CN 205756922U discloses a new type of noodle machine, including a noodle holding cavity provided with a rotating shaft hole and a noodle extrusion tube, a noodle stirring mechanism and a noodle extrusion mechanism are provided between the rotating shaft hole and the noodle extrusion tube, and the noodle extrusion mechanism includes an noodle extrusion tube, a fixing nut and a noodle exit die head; the noodle extrusion tube is in the shape of a hollow cylinder, which is laterally inserted into the noodle extrusion tube, and the tail end extends into the holding cavity, the head end opening is assembled with the noodle extrusion tube, and a feed port is provided at the top of the tail end of the noodle extrusion tube; the noodle exit die head is installed on the front end opening of the noodle extrusion tube and the head end opening of the noodle extrusion tube, and the fixing nut is screwed with the noodle extrusion tube through a thread and fixes the noodle extrusion tube and the noodle exit die head on the noodle extrusion tube. The noodle extrusion tube can be firmly installed in the noodle extrusion tube by plugging, and the noodle extrusion pressure on the noodle extrusion tube can be evenly dispersed in the noodle holding cavity through the noodle extrusion tube, so that it can withstand a large noodle extrusion pressure, and it is safer and more reliable to use.
[0004] Chinese patent document number CN220936523U discloses a noodle stirring and extruding assembly, including a dough kneading rod and a dough extruding rod, wherein the dough kneading rod includes a first rotating shaft and an eccentric dough kneading blade, the eccentric dough kneading blade is formed by spirally extending from one side of the first rotating shaft in the circumferential direction, and the dough extruding rod includes a second rotating shaft and an extruding rod, and the second rotating shaft is drivingly connected to the first rotating shaft. The noodle stirring and extruding assembly is improved, especially the dough kneading rod is newly improved, the dough kneading rod has an eccentric dough kneading blade, the eccentric dough kneading blade is spirally arranged on one side of the first rotating shaft, when the dough kneading rod is working, it can knead flour and water into a large dough, and the dough kneading effect is equivalent to that of a dough mixer, and the eccentric dough kneading blade can also send the dough cavity of the kneaded large dough to the extruding rod to extrude the pasta.
[0005] In the noodle stirring and extruding assembly disclosed in Chinese patent document No. CN220936523U, the eccentric dough kneading blade of the dough kneading rod is provided with a raised dough guide blade at the end of the dough extruding tube corresponding to the dough extruding tube, so that the noodle stirring and extruding assembly cannot be directly applied to a noodle machine with a dough extruding tube structure (the raised dough guide blade will interfere with the dough extruding cylinder extending into the dough accommodating cavity). Therefore, although the noodle machine with the dough extruding cylinder structure can withstand a greater dough extrusion pressure, it can only use ordinary dough stirring mechanism and dough extruding mechanism, resulting in that its dough extruding capacity cannot be greatly improved (mainly because the dough input flow rate of the traditional dough stirring assembly is low, resulting in that the dough extrusion flow rate cannot be greatly improved), and further improvement is needed. Utility Model Content
[0006] The utility model aims to overcome the deficiencies of the prior art and to provide a noodle machine which adopts a kneading rod with eccentric kneading blades, thereby effectively increasing the input flow of dough and improving the noodle extrusion capacity of the noodle machine.
[0007] The purpose of the utility model is achieved in this way:
[0008] A noodle machine comprises a noodle holding barrel, which is provided with a noodle holding cavity, a noodle extruding tube and a rotating shaft hole. A noodle kneading mechanism and a noodle extruding mechanism are arranged between the rotating shaft hole and the noodle extruding tube. The noodle extruding mechanism comprises a noodle extruding cylinder, which is in the shape of a hollow cylinder and is laterally inserted into the noodle extruding tube, and its rear end extends into the noodle holding cavity, and its head end opening is assembled with the noodle extruding tube. A feeding port is arranged on the top of the rear end of the noodle extruding cylinder, and the noodle kneading mechanism comprises a noodle kneading rod, which comprises a rotating shaft and an eccentric noodle kneading blade. The eccentric noodle kneading blade is spirally extended from one side of the noodle holding cavity where the rotating shaft hole is located to the other side of the noodle holding cavity where the noodle extruding tube is located, and is spirally extended only on one side of the rotating shaft. The eccentric noodle kneading blade is provided with an avoidance gap corresponding to the position where the noodle extruding cylinder is inserted into the noodle holding cavity and the feeding port.
[0009] The end of the eccentric dough kneading blade is upwardly provided with a dough guiding blade close to the side wall of the dough containing cavity where the dough extrusion tube is located.
[0010] A connecting cone is provided on the side wall of the noodle receiving cavity where the noodle extrusion tube is located, and the radial dimension of the connecting cone gradually decreases from the noodle receiving cavity to the noodle extrusion tube.
[0011] The eccentric dough kneading blade and the connecting cone surface form a dough entry gap.
[0012] The connecting cone surface is convexly provided with scraping teeth above the feed inlet.
[0013] The noodle extrusion mechanism also includes a fixing nut, a noodle exit die head and a noodle extrusion screw; the noodle exit die head is installed on the front end opening of the noodle extrusion tube and the head end opening of the noodle extrusion cylinder, and the fixing nut is screwed tightly with the noodle extrusion tube through a thread and fixes the noodle extrusion cylinder and the noodle exit die head on the noodle extrusion tube.
[0014] The noodle extrusion screw is rotatably connected to the noodle exit die head and the noodle extrusion tube, and passes through the noodle extrusion tube and is transmission-connected to the rotating shaft.
[0015] The inner end surface of the noodle extrusion tube is provided with a first wear-resistant sheet corresponding to the end of the noodle extrusion screw, and the end of the noodle extrusion screw is provided with a second wear-resistant sheet, and the first wear-resistant sheet and the second wear-resistant sheet abut against each other.
[0016] The beneficial effects of the utility model are as follows
[0017] The dough kneading mechanism of the utility model adopts a dough kneading rod with eccentric dough kneading blades. The dough kneading rod has a better dough kneading effect in the dough holding cavity, can knead the flour into dough and output it to the dough extruding mechanism. The characteristics of the dough kneading rod can effectively increase the input flow of the dough, which helps to improve the dough extruding capacity of the noodle machine. The structure of the dough kneading rod is improved, and a special avoidance notch is provided so that it can be suitable for a noodle machine with a noodle extrusion cylinder insertion structure. The noodle machine with this structure can withstand a higher noodle extrusion pressure. Therefore, its adaptation with the dough kneading rod can better improve the noodle extrusion capacity of the noodle machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is an assembly diagram (cross-sectional view) of a noodle holding barrel, a noodle kneading mechanism and a noodle squeezing mechanism according to a first embodiment of the utility model.
[0019] Figure 2 This is the decomposition of the first embodiment of the noodle storage barrel, the noodle kneading mechanism and the noodle extruding mechanism of the utility model Figure 1 .
[0020] Figure 3 This is the decomposition of the first embodiment of the noodle storage barrel, the noodle kneading mechanism and the noodle extruding mechanism of the utility model Figure 2 . DETAILED DESCRIPTION
[0021] The utility model is further described below in conjunction with the accompanying drawings and embodiments.
[0022] First embodiment:
[0023] See also Figure 1-Figure 3The noodle making machine comprises a noodle holding barrel 1, which is provided with a noodle holding cavity 10, a noodle extruding tube 11 and a rotating shaft hole 12. A noodle kneading mechanism and a noodle extruding mechanism are provided between the rotating shaft hole 12 and the noodle extruding tube 11. The noodle extruding mechanism comprises a noodle extruding cylinder 2, which is in the shape of a hollow cylinder and is laterally inserted into the noodle extruding tube 11, and its tail end extends into the noodle holding cavity 10, and its head end opening is assembled with the noodle extruding tube 11. A feeding port 21 is provided at the top of the tail end of the noodle extruding cylinder 2. The noodle kneading mechanism comprises a noodle kneading rod 6, and the noodle kneading rod 6 comprises a rotating shaft 61 and an eccentric noodle kneading blade 62. The eccentric noodle kneading blade 62 is spirally extended from one side of the noodle holding cavity 10 where the rotating shaft hole 12 is located to the other side of the noodle holding cavity 10 where the noodle extruding tube 11 is located along the axial direction of the rotating shaft 61, and is spirally extended only on one side of the rotating shaft 61. The eccentric noodle kneading blade 62 is provided with an avoidance notch 621 corresponding to the position where the noodle extruding cylinder 2 is inserted into the noodle holding cavity 10 and the feeding port 21. The avoidance notch 621 can avoid interference between the kneading rod 6 and the noodle extrusion cylinder 2, so that the kneading rod 6 with the above-mentioned structure can be suitable for the noodle machine with the noodle extrusion cylinder 2 structure. The noodle machine with this structure can withstand higher noodle extrusion pressure, and the kneading rod 6 with eccentric kneading leaves 62 has a better kneading effect in the noodle holding cavity 10, and can knead the flour into dough and output it to the noodle extrusion mechanism. The characteristics of the kneading rod 6 can effectively increase the input flow rate of the dough. Therefore, the adaptation of the noodle machine with the above-mentioned structure and the kneading rod 6 can better improve the noodle extrusion ability of the noodle machine.
[0024] Furthermore, the end of the eccentric dough kneading blade 62 is upwardly provided with a dough guide blade 622 close to the side wall of the dough receiving cavity 10 where the dough extrusion tube 11 is located. The dough guide blade 622 can guide the kneaded dough to the dough extrusion cylinder 2 (i.e., the feed port 21), thereby forming the input of the dough to the dough extrusion cylinder 2.
[0025] Furthermore, a connecting conical surface 100 is provided on the side wall of the noodle receiving cavity 10 where the noodle extrusion tube 11 is located, and the radial dimension of the connecting conical surface 100 gradually decreases from the noodle receiving cavity 10 to the noodle extrusion tube 11. The connecting conical surface 100 can improve the mechanical strength of the side wall of the noodle receiving cavity 10 and achieve the technical effect of better guiding the dough to the noodle extrusion tube 2.
[0026] Furthermore, the eccentric dough kneading blade 62 and the connecting conical surface 100 form a dough entry gap H, and the gap H also has the technical effect of better guiding the dough to the dough extrusion cylinder 2.
[0027] Furthermore, a scraping tooth 101 is protrudingly provided above the connecting cone surface 100 corresponding to the feed port 21. When the dough is input into the noodle extrusion cylinder 2, the scraping tooth 101 can scrape the dough off, and the scraped dough can fall into the feed port 21 from top to bottom.
[0028] Furthermore, the noodle extrusion mechanism also includes a fixing nut 3, a noodle outlet die head 4 and a noodle extrusion screw 5; the noodle outlet die head 4 is installed on the front end opening of the noodle extrusion tube 11 and the head end opening of the noodle extrusion cylinder 2, the fixing nut 3 is screwed with the noodle extrusion tube 11 through a thread and fixes the noodle extrusion cylinder 2 and the noodle outlet die head 4 on the noodle extrusion tube 11, the noodle extrusion screw 5 is rotatably connected to the noodle outlet die head 4 and the noodle extrusion tube 11, and passes through the noodle extrusion tube 11 and is transmission-connected to the rotating shaft 61, which can be understood by technicians in this field.
[0029] Furthermore, a first wear-resistant sheet 71 is provided on the inner end face of the noodle extrusion tube 11 corresponding to the end of the noodle extrusion screw 5, and a second wear-resistant sheet 72 is provided on the end of the noodle extrusion screw 5. The first wear-resistant sheet 71 and the second wear-resistant sheet 72 abut against each other. The first and second wear-resistant sheets can be made of wear-resistant plastic or wear-resistant metal or a combination thereof to prevent wear between the noodle extrusion tube 11 and the noodle extrusion screw 5.
[0030] The above is a preferred embodiment of the utility model, which shows and describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only for explaining the principle of the utility model. The utility model may have various changes and improvements without departing from the spirit and scope of the utility model, and these changes and improvements fall within the scope of the utility model to be protected. The scope of protection of the utility model is defined by the attached claims and their equivalents.
Claims
1. A noodle machine, comprising a noodle holding barrel (1), on which a noodle holding cavity (10), a noodle extruding tube (11) and a rotating shaft hole (12) are provided, a noodle kneading mechanism and a noodle extruding mechanism are provided between the rotating shaft hole (12) and the noodle extruding tube (11), the noodle extruding mechanism comprising a noodle extruding cylinder (2), the noodle extruding cylinder (2) being in the shape of a hollow cylinder, being laterally inserted into the noodle extruding tube (11), and having a rear end extending into the noodle holding cavity (10), a head end opening being assembled with the noodle extruding tube (11), a feed port (21) being provided at the top of the rear end of the noodle extruding cylinder (2), characterized in that: The dough kneading mechanism comprises a dough kneading rod (6), the dough kneading rod (6) comprising a rotating shaft (61) and an eccentric dough kneading blade (62), the eccentric dough kneading blade (62) spirally extending along the axial direction of the rotating shaft (61) from one side of the dough receiving cavity (10) where the rotating shaft hole (12) is located to the other side of the dough receiving cavity (10) where the noodle extrusion tube (11) is located, and spirally extending only on one side of the rotating shaft (61), and the eccentric dough kneading blade (62) is provided with an avoidance notch (621) corresponding to the position where the noodle extrusion tube (2) is inserted into the dough receiving cavity (10) and the feed port (21).
2. The noodle machine according to claim 1, characterized in that: The end of the eccentric dough kneading blade (62) is provided with a dough guide blade (622) which is close to the side wall of the dough receiving cavity (10) where the dough extrusion tube (11) is located.
3. The noodle machine according to claim 1, characterized in that: A connecting conical surface (100) is provided on the side wall of the noodle receiving cavity (10) where the noodle extrusion tube (11) is located, and the radial dimension of the connecting conical surface (100) gradually decreases from the noodle receiving cavity (10) to the noodle extrusion tube (11).
4. The noodle machine according to claim 3, characterized in that: The eccentric dough kneading blade (62) and the connecting conical surface (100) form a dough feeding gap (H).
5. The noodle machine according to claim 3, characterized in that: A scraping tooth (101) is protrudingly provided above the connecting conical surface (100) corresponding to the feed opening (21).
6. The noodle machine according to any one of claims 1 to 5, characterized in that: The noodle extrusion mechanism further comprises a fixing nut (3), a noodle outlet die head (4) and a noodle extrusion screw (5); the noodle outlet die head (4) is mounted on the front end opening of the noodle extrusion tube (11) and the head end opening of the noodle extrusion cylinder (2); the fixing nut (3) is screwed onto the noodle extrusion tube (11) via a thread and fixes the noodle extrusion cylinder (2) and the noodle outlet die head (4) onto the noodle extrusion tube (11).
7. The noodle machine according to claim 6, characterized in that: The noodle extrusion screw (5) is rotatably connected to the noodle exit die head (4) and the noodle extrusion tube (11), and passes through the noodle extrusion tube (11) to be transmission-connected to the rotating shaft (61).
8. The noodle machine according to claim 7, characterized in that: A first wear-resistant sheet (71) is provided on the inner end surface of the noodle extrusion tube (11) corresponding to the end of the noodle extrusion screw (5), and a second wear-resistant sheet (72) is provided on the end of the noodle extrusion screw (5), and the first wear-resistant sheet (71) and the second wear-resistant sheet (72) abut against each other.
Citation Information
Patent Citations
Novel noodle machine
CN205756922U
Noodle stirring and extruding component and noodle machine
CN220936523U