Food processor

The food processor driven by a dual output shaft motor drives the dough assembly and the noodle extrusion assembly respectively, which solves the problem of flour failing to effectively molten, and achieves the improvement of dough effect and compact structure.

CN223142764UActive Publication Date: 2025-07-25ZHONGSHAN SHANSHIFU ELECTRIC CO LTD
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Patent Information

Application Number
CN202422321195.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-25
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

During the kneading process of existing noodles machines, some flour fails to knead effectively, resulting in poor kneading effect and unable to meet user needs.

Method used

The food processor driven by a dual output shaft motor is driven by the first and second transmission elements and the noodle assembly to achieve independent operation, ensuring that the flour is uniformly dredged in the noodle assembly and avoiding waste.

Benefits of technology

It has achieved improvements in the kneading effect and the extrusion effect, and the structure is compact, avoiding flour waste and secondary kneading, and meeting user needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

A food processor comprises a driving motor arranged in a machine body, the driving motor is a double-output-shaft motor, a first transmission element and a second transmission element are rotationally arranged on the machine body, the first transmission element is located on one side of the machine body, and the second transmission element is located on the other side of the machine body. A first output shaft of the double-output-shaft motor is in transmission connection with the first transmission element, and a second output shaft of the double-output-shaft motor is in transmission connection with the second transmission element. The dough kneading machine further comprises a dough kneading assembly and a noodle extruding assembly, the dough kneading assembly and the noodle extruding assembly are detachably installed on the machine body, the first transmission element is in transmission connection with the noodle extruding assembly, and the second transmission element is in transmission connection with the dough kneading assembly. A first connecting cavity is formed in the machine body, and the noodle extruding assembly comprises a noodle extruding cylinder. The dough kneading and extruding device has the characteristics of better dough kneading effect and dough extruding effect and compact structure.
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Description

Technical Field

[0001] The utility model relates to the technical field of food processors, and particularly relates to a food processor. Background Art

[0002] Chinese Patent Document No. CN 207491961U discloses a noodle machine capable of extruding various noodles on June 15, 2018, which includes a dough kneading bucket and an extrusion assembly. The extrusion assembly includes a screw, a die head and an extrusion barrel. The extrusion barrel has an outlet part, and the die head is connected to the outlet part. The extrusion barrel is communicated with the dough kneading bucket. The die head is of a cylindrical structure, and at least two forming areas are provided on the cylindrical die head. A plurality of through holes are provided on each forming area, and the through holes on any one forming area are different from those on other forming areas. Such a noodle machine can realize that the dough enters the extrusion barrel from the dough kneading bucket through the mutually communicated extrusion barrel and the dough kneading bucket, and then under the action of the screw, drive the dough to be extruded from the die head to form dough. During the dough kneading process, a part of the flour will fall into the extrusion barrel, and this part of the flour cannot be effectively kneaded and cannot form dough, which cannot meet the user's usage requirements, so it needs to be improved. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a food processor with good dough kneading effect and noodle extrusion effect and compact structure to overcome the deficiencies in the prior art.

[0004] A food processor designed according to this purpose includes a drive motor arranged in the machine body. It is characterized in that the drive motor is a double-output shaft motor. A first transmission element and a second transmission element are respectively rotatably arranged on the machine body. The first transmission element is located on one side of the machine body, and the second transmission element is located on the other side of the machine body. The first output shaft of the double-output shaft motor is in transmission connection with the first transmission element, and the second output shaft of the double-output shaft motor is in transmission connection with the second transmission element.

[0005] Furthermore, the food processor also includes a dough kneading assembly and a noodle extrusion assembly. The dough kneading assembly and the noodle extrusion assembly are respectively detachably installed on the machine body. The first transmission element is in transmission connection with the noodle extrusion assembly, and the second transmission element is in transmission connection with the dough kneading assembly.

[0006] Furthermore, a first connection cavity is provided on the machine body. The noodle extrusion assembly includes a noodle extrusion cylinder, and a noodle inlet cylinder is communicated with the noodle extrusion cylinder. One end of the noodle extrusion cylinder is detachably connected to the first connection cavity, and the other end of the noodle extrusion cylinder is connected with a noodle extrusion die head. A noodle extrusion screw is rotatably arranged in the noodle inlet cylinder. A first transmission head is arranged at one end of the noodle extrusion screw close to the first connection cavity. The first transmission element is rotatably arranged in the first connection cavity, and the first transmission head and the first transmission element are inserted into each other to realize coupling transmission.

[0007] Furthermore, a first transmission assembly for connecting the first output shaft and the first transmission element is arranged in the machine body. The first transmission assembly includes a worm gear connected to the first transmission element. A worm is connected to the first output shaft, and the worm and the worm gear are meshed with each other.

[0008] Furthermore, a second transmission assembly for connecting the second output shaft and the second transmission element is arranged in the machine body. The second transmission assembly includes a first transmission shaft connected to the second transmission element. A first synchronous pulley is connected to the first transmission shaft. A second transmission shaft is installed on the machine body on one side of the first synchronous pulley. A second synchronous pulley and a third synchronous pulley are respectively installed on the second transmission shaft. A fourth synchronous pulley is installed on the second output shaft. A first synchronous belt is sleeved on the first synchronous pulley and the second synchronous pulley. A second synchronous belt is sleeved on the third synchronous pulley and the fourth synchronous pulley.

[0009] Furthermore, the machine body includes a first mounting seat and a second mounting seat which are connected to each other. The dough kneading assembly is detachably installed on the first mounting seat, and the noodle extrusion assembly is detachably installed on the second mounting seat. The first transmission element is rotatably arranged on the second mounting seat, and the second transmission element is rotatably arranged on the first mounting seat.

[0010] Furthermore, the dough kneading assembly includes a dough kneading pot. The dough kneading pot is open at the upper end. A dough kneading cover is detachably connected to the dough kneading pot. A third transmission shaft is arranged at the bottom of the dough kneading pot. A dough kneading knife is installed on the third transmission shaft. A second transmission head is arranged at the lower end of the third transmission shaft. The second transmission head and the second transmission element are inserted into each other to realize coupling transmission.

[0011] Furthermore, a joint cavity is arranged at the bottom surface of the dough kneading pot. The second transmission head is located in the joint cavity. A connecting ring is arranged on the machine body. The second transmission element is located in the connecting ring. The connecting ring is detachably connected to the joint cavity.

[0012] The utility model is provided with a double-output shaft motor inside the machine body. A first transmission element and a second transmission element are respectively rotatably arranged on the machine body. The first transmission element is located on one side of the machine body, and the second transmission element is located on the other side of the machine body. The first output shaft of the double-output shaft motor is in transmission connection with the first transmission element, and the second output shaft of the double-output shaft motor is in transmission connection with the second transmission element. The whole product structure is compact.

[0013] The utility model adopts a double-output motor to respectively drive the dough mixing component and the noodle extrusion component, so as to realize that the dough mixing component and the noodle extrusion component can operate independently without affecting each other. Therefore, when kneading dough, the flour in the dough mixing component can be effectively kneaded, and the kneading effect is improved.

[0014] To sum up, the utility model has the characteristics of good dough kneading effect and noodle extrusion effect and compact structure. Brief Description of the Drawings

[0015] Figure 1 It is a schematic structural diagram of the assembled state of the machine body and the dough mixing component in the utility model.

[0016] Figure 2 It is a schematic structural diagram of the assembled state of the machine body and the noodle extrusion component.

[0017] Figure 3 It is a three-dimensional structural diagram of the machine body.

[0018] Figure 4 It is one of the schematic sectional structural diagrams of the machine body and the dough mixing component.

[0019] Figure 5 It is the second of the schematic sectional structural diagrams of the machine body and the dough mixing component.

[0020] Figure 6 It is one of the schematic sectional structural diagrams of the machine body and the noodle extrusion component.

[0021] Figure 7 It is the second of the schematic sectional structural diagrams of the machine body and the noodle extrusion component.

[0022] Figure 8 It is one of the schematic exploded structural diagrams of the machine body and the dough mixing component.

[0023] Figure 9 It is the second of the schematic exploded structural diagrams of the machine body and the dough mixing component.

[0024] In the figure: 10 is the body, 110 is the first mounting base, 111 is the connecting ring, 120 is the second mounting base, 130 is the first connecting cavity, 20 is the dough kneading assembly, 220 is the dough kneading cover, 210 is the dough kneading pot, 211 is the engaging cavity, 220 is the dough kneading knife, 230 is the third transmission shaft, 240 is the second transmission head, 30 is the noodle extrusion assembly, 310 is the noodle extrusion cylinder, 320 is the noodle extrusion die head, 330 is the noodle extrusion screw, 331 is the first transmission head, 340 is the dough inlet cylinder, 410 is the first transmission element, 420 is the second transmission element, 50 is the dual-output motor, 510 is the first output shaft, 520 is the second output shaft, 60 is the second transmission assembly, 610 is the third synchronous pulley, 620 is the third synchronous pulley, 630 is the second synchronous belt, 640 is the second synchronous pulley, 650 is the second transmission shaft, 660 is the first synchronous pulley, 670 is the first synchronous belt, 680 is the first transmission shaft, 70 is the first transmission assembly, 710 is the worm gear, 720 is the worm. Detailed implementation mode

[0025] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0026] Refer to Figures 1-9 , a food processor, comprising a drive motor disposed in the body 10, the drive motor being a dual-output shaft motor 50, the body 10 is respectively rotatably provided with a first transmission element 410 and a second transmission element 420, the first transmission element 410 is located on one side of the body 10, the second transmission element 420 is located on the other side of the body 10, the first output shaft 510 of the dual-output shaft motor 50 is in transmission connection with the first transmission element 410, and the second output shaft 520 of the dual-output shaft motor 50 is in transmission connection with the second transmission element 420.

[0027] In this embodiment, it further includes a dough kneading assembly 20 and a noodle extrusion assembly 30, the dough kneading assembly 20 and the noodle extrusion assembly 30 are respectively detachably mounted on the body 10, the first transmission element 410 is in transmission connection with the noodle extrusion assembly 30, and the second transmission element 420 is in transmission connection with the dough kneading assembly 20.

[0028] When kneading dough, connect the dough kneading assembly 20 to the body 10, add the materials required for kneading dough into the dough kneading assembly 20, and then start the dual-output shaft motor 50. Under the combined transmission of the second output shaft 520 and the second transmission element 420, it drives the dough kneading assembly 20 to perform dough kneading work.

[0029] When extruding noodles, connect the noodle extrusion assembly 30 to the body 10, add the dough into the noodle extrusion assembly 30, and then start the dual-output shaft motor 50. Under the combined transmission of the first output shaft 510 and the first transmission element 410, it drives the noodle extrusion assembly 30 to perform noodle extrusion work.

[0030] The utility model adopts a dual-output motor to drive the dough-kneading component and the noodle-extruding component respectively, so as to realize the independent operation of the dough-kneading component and the noodle-extruding component without mutual influence. Therefore, when kneading dough, the flour in the dough-kneading component can be effectively kneaded, avoiding waste or the need for secondary kneading and meeting the usage requirements.

[0031] See Figure 7 , a first connection cavity 130 is provided on the machine body 10. The noodle-extruding component 30 includes a noodle-extruding cylinder 310. A feed cylinder 340 is communicated with the noodle-extruding cylinder 310. One end of the noodle-extruding cylinder 310 is detachably connected to the first connection cavity 130. The other end of the noodle-extruding cylinder 310 is connected with a noodle-extruding die head 320. A noodle-extruding screw 330 is rotatably arranged in the feed cylinder 340. A first transmission head 331 is arranged at one end of the noodle-extruding screw 330 close to the first connection cavity 130. The first transmission element 410 is rotatably arranged in the first connection cavity 130. The first transmission head 331 and the first transmission element 410 are inserted into each other to realize coupling transmission. During actual use, the dough is put into the feed cylinder 340, and the dough drops down along the feed cylinder 340 to the connection part between the feed cylinder 340 and the noodle-extruding cylinder 310. At this time, under the combined drive of the first output shaft 510 and the first transmission element 410, it can drive the noodle-extruding screw 330 to drive the dough to move towards the noodle-extruding die head 320 until the dough is extruded from the holes of the noodle-extruding die head 320 to form noodles.

[0032] Furthermore, the noodle-extruding cylinder 310 and the first connection cavity 130 are detachably connected by an existing screw structure or snap fastener. The detachable connection is convenient for disassembly, maintenance or cleaning.

[0033] See Figure 6 , a first transmission assembly 70 for connecting the first output shaft 510 and the first transmission element 410 is arranged in the machine body 10. The first transmission assembly 70 includes a worm gear 710 connected to the first transmission element 410. The first output shaft 510 is connected with a worm 720. The worm 720 and the worm gear 710 are meshed with each other. When the drive motor 50 is started, it drives the first output shaft 510 to rotate, thereby driving the worm 720 to drive the worm gear 710 to rotate, so as to drive the first transmission element 410 to drive the noodle-extruding screw 330 to rotate for noodle-extruding work.

[0034] See Figure 4 and Figure 5, a second transmission assembly 60 for connecting the second output shaft 520 and the second transmission element 420 is provided inside the machine body 10. The second transmission assembly 60 includes a first transmission shaft 680 connected to the second transmission element 420, the first transmission shaft 680 is connected with a first synchronous pulley 660, a second transmission shaft 650 is installed on the machine body 10 on one side of the first synchronous pulley 660, a second synchronous pulley 640 and a third synchronous pulley 620 are respectively installed on the second transmission shaft 650, a fourth synchronous pulley 610 is installed on the second output shaft 520, a first synchronous belt 670 is sleeved on the first synchronous pulley 660 and the second synchronous pulley 640, and a second synchronous belt 630 is sleeved on the third synchronous pulley 620 and the fourth synchronous pulley 610. In this embodiment, when the drive motor 50 is started, it drives the fourth synchronous pulley 610 to rotate. Under the action of the second synchronous belt 630, it drives the third synchronous pulley 620 and the second transmission shaft 650 to rotate, so as to drive the second synchronous pulley 640 to rotate. Under the action of the first synchronous belt 670, the second synchronous pulley 640 drives the first synchronous pulley 660 to rotate, so as to drive the first transmission shaft 680 to drive the second transmission element 420 to rotate, thereby driving the dough mixing assembly 20 to operate through the second transmission element 420.

[0035] See Figure 4 and Figure 5 , the dough mixing assembly 20 includes a dough mixing pot 210, the dough mixing pot 210 is provided with an open upper end, a dough mixing cover 200 is detachably connected to the dough mixing pot 210, a third transmission shaft 230 is provided at the bottom of the dough mixing pot 210, a dough mixing knife 220 is installed on the third transmission shaft 230, a second transmission head 240 is provided at the lower end of the third transmission shaft 230, and the second transmission head 240 is inserted into the second transmission element 420 to realize coupling transmission. During actual operation, the second transmission element 420 drives the second transmission head 240 to rotate, thereby driving the third transmission shaft 230 to rotate and driving the dough mixing knife 220 to mix the dough.

[0036] See Figure 8 and Figure 9 , a joint cavity 211 is provided on the bottom surface of the dough mixing pot 210, the second transmission head 240 is located in the joint cavity 211, a connecting ring 111 is provided on the machine body 10, the second transmission element 420 is located in the connecting ring 111, and the connecting ring 111 is detachably connected to the joint cavity 211.

[0037] Furthermore, the connecting ring 111 and the joint cavity 211 are detachably connected by an existing snap structure or snap. The detachable connection is convenient for disassembly, maintenance or cleaning.

[0038] See Figures 1 to 3, the machine body 10 includes a first mounting seat 110 and a second mounting seat 120 which are connected to each other. The dough kneading assembly 20 is detachably mounted on the first mounting seat 110, and the noodle extruding assembly 30 is detachably mounted on the second mounting seat 120. The first transmission element 410 is rotatably arranged on the second mounting seat 120, and the second transmission element 420 is rotatably arranged on the first mounting seat 110.

[0039] Furthermore, the rotation axes of the first transmission element 410 and the second transmission element 420 are perpendicularly arranged with respect to each other.

[0040] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention. The terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features.

[0041] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A food processor, comprising a drive motor disposed within a body (10), characterized in that The drive motor is a dual-output shaft motor (50). A first transmission element (410) and a second transmission element (420) are respectively rotatably arranged on the machine body (10). The first transmission element (410) is located on one side of the machine body (10), and the second transmission element (420) is located on the other side of the machine body (10). The first output shaft (510) of the dual-output shaft motor (50) is in driving connection with the first transmission element (410), and the second output shaft (520) of the dual-output shaft motor (50) is in driving connection with the second transmission element (420).

2. The food processor according to claim 1, characterized in that It further includes a dough kneading assembly (20) and a noodle extrusion assembly (30). The dough kneading assembly (20) and the noodle extrusion assembly (30) are respectively detachably installed on the machine body (10). The first transmission element (410) is in driving connection with the noodle extrusion assembly (30), and the second transmission element (420) is in driving connection with the dough kneading assembly (20).

3. The food processor according to claim 2, characterized in that A first connection cavity (130) is provided on the machine body (10). The noodle extrusion assembly (30) includes a noodle extrusion cylinder (310). A feed noodle cylinder (340) is communicated with the noodle extrusion cylinder (310). One end of the noodle extrusion cylinder (310) is detachably connected to the first connection cavity (130), and the other end of the noodle extrusion cylinder (310) is connected with a noodle extrusion die head (320). A noodle extrusion screw (330) is rotatably arranged in the feed noodle cylinder (340). A first transmission head (331) is provided at one end of the noodle extrusion screw (330) close to the first connection cavity (130). The first transmission element (410) is rotatably arranged in the first connection cavity (130), and the first transmission head (331) and the first transmission element (410) are inserted into each other to realize coupling transmission.

4. A food processor according to claim 2, characterized in that A first transmission assembly (70) for connecting the first output shaft (510) and the first transmission element (410) is arranged in the machine body (10). The first transmission assembly (70) includes a worm gear (710) connected to the first transmission element (410). The first output shaft (510) is connected with a worm (720), and the worm (720) meshes with the worm gear (710).

5. A food processor according to claim 2, characterized in that A second transmission assembly (60) for connecting the second output shaft (520) and the second transmission element (420) is provided inside the machine body (10). The second transmission assembly (60) includes a first transmission shaft (680) connected to the second transmission element (420), a first synchronous pulley (660) connected to the first transmission shaft (680), a second transmission shaft (650) installed on the machine body (10) on one side of the first synchronous pulley (660), a second synchronous pulley (640) and a third synchronous pulley (620) respectively installed on the second transmission shaft (650), a fourth synchronous pulley (610) installed on the second output shaft (520), a first synchronous belt (670) sleeved on the first synchronous pulley (660) and the second synchronous pulley (640), and a second synchronous belt (630) sleeved on the third synchronous pulley (620) and the fourth synchronous pulley (610).

6. The food processor according to claim 2, characterized in that The machine body (10) includes a first mounting seat (110) and a second mounting seat (120) connected to each other. The dough mixing assembly (20) is detachably installed on the first mounting seat (110), the noodle extrusion assembly (30) is detachably installed on the second mounting seat (120), the first transmission element (410) is rotatably arranged on the second mounting seat (120), and the second transmission element (420) is rotatably arranged on the first mounting seat (110).

7. A food processor according to claim 2, characterized in that The dough mixing assembly (20) includes a dough mixing pot (210) with an open upper end. A dough mixing cover (200) is detachably connected to the dough mixing pot (210). A third transmission shaft (230) is provided at the bottom of the dough mixing pot (210), a dough mixing knife (220) is installed on the third transmission shaft (230), a second transmission head (240) is provided at the lower end of the third transmission shaft (230), and the second transmission head (240) is inserted into the second transmission element (420) to achieve coupling transmission.

8. The food processor according to claim 7, characterized in that A joint cavity (211) is provided on the bottom surface of the dough mixing pot (210). The second transmission head (240) is located inside the joint cavity (211). A connecting ring (111) is provided on the machine body (10). The second transmission element (420) is located inside the connecting ring (111), and the connecting ring (111) is detachably connected to the joint cavity (211).

9. A food processor according to any one of claims 1 to 8, characterized in that The rotation axes of the first transmission element (410) and the second transmission element (420) are perpendicular to each other.

Citation Information

Patent Citations

  • Can extrude noodle of various noodless

    CN207491961U