Noodle device
By connecting the two ends of the stirring member with the positioning connection part of the noodle machine and the power connection part of the driving assembly, the problem of low concentricity of the stirring shaft during the assembly process of the existing noodle machine is solved, and the stability and assembly efficiency of the stirring member are improved.
Patent Information
- Application Number
- CN202422185076.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-09-05
AI Technical Summary
During the assembly process, the existing noodle machines have a slight deviation from the theoretical center of the stirring shaft due to the slight deviation of multiple independent components, which affects the stability and concentricity of the stirring shaft, and thus affects the quality of noodles and the service life of the equipment.
By connecting both ends of the stirring member with the positioning connection part of the machine body and the power connection part of the driving assembly, the low concentricity caused by component manufacturing tolerances and assembly tolerances is reduced.
It improves the stability and concentricity of the stirring parts when rotating at high speed, reduces the failure rate, ensures the consistency and stability of the stirring effect, and simplifies the assembly process and improves the assembly efficiency.
Smart Images

Figure CN222967795U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing, in particular to a noodle device. Background Art
[0002] With the improvement of people's living standards, food processors are increasingly favored by consumers, and noodle machines, as one of them, are also increasingly loved by consumers.
[0003] Existing noodle machines generally include a machine base and a mixing cup connected to the machine base. A motor and a circuit board for controlling the operation of the motor are provided inside the machine base. A mixing component and a noodle extrusion component are provided inside the mixing cup. Among them, the mixing shaft in the mixing component is rotatably connected in the mixing cavity. When the motor operates, it drives the mixing shaft to rotate to achieve the mixing of flour and water in the mixing cup.
[0004] However, for the convenience of users to clean, the mixing shaft is detachably connected to the mixing cup to reduce the disassembly difficulty of the mixing shaft. During assembly, it is necessary to first positionally connect the mixing shaft to the mixing cup, and then positionally connect the mixing cup to the machine base. Since the assembly process depends on multiple independent components, the cumulative effect of small deviations between multiple positioning components may affect the deviation degree of the rotation center of the mixing shaft from the theoretical center, thereby affecting the stability and concentricity of the mixing shaft during high-speed rotation. Low concentricity will not only affect the quality and efficiency of noodle making, but also may accelerate the wear of the equipment, shorten the service life, and even cause safety problems.
[0005] Therefore, there is an urgent need for a noodle device to overcome the above-mentioned defects. Summary of the Utility Model
[0006] In order to overcome at least one of the above-mentioned defects of the prior art, the purpose of the utility model is to provide a noodle device, which can reduce the low concentricity when the mixing part rotates due to component manufacturing tolerances and assembly tolerances by connecting the two ends of the mixing part to the positioning connection part of the machine body and the power connection part of the driving component respectively.
[0007] The technical solution adopted by the utility model to solve its problems is:
[0008] A noodle device includes:
[0009] A machine body, which is provided with an installation cavity, and the installation cavity is provided with a positioning connection part;
[0010] A driving component, installed on the machine body, and the driving component has a power connection part;
[0011] The stirring assembly includes a stirring barrel and a stirring member. The stirring barrel is installed in the installation cavity, and the stirring member is installed in the stirring barrel. The stirring barrel has a first end and a second end. One end of the stirring member extends out from the first end and is connected to the power connection part, and the other end of the stirring member extends out from the second end and is connected to the positioning connection part.
[0012] Further, the first end has an end wall, and a first through hole is provided on the end wall. One end of the stirring member extends out from the first through hole and is connected to the power connection part. A sealing member is provided between the first through hole and the stirring member.
[0013] Further, the stirring assembly includes a positioning cover. The second end has an installation port, and the positioning cover is detachably installed on the installation port. A second through hole is provided on the positioning cover, and the other end of the stirring member extends out from the second through hole and is connected to the positioning connection part.
[0014] Further, the machine body includes an installation shell and a machine base. The installation shell is detachably connected to the machine base. The installation cavity is located inside the installation shell.
[0015] Further, the installation cavity has an installation wall facing the second end. The positioning connection part is located on the installation wall. A support part is also provided on the installation wall, and the support part is used to abut against the outer wall of the stirring barrel when the stirring barrel is installed in the installation cavity.
[0016] Further, the positioning connection part includes a positioning hole, and the end of the stirring member is inserted into the positioning hole.
[0017] Further, the support part includes a positioning groove. The positioning hole is provided in the positioning groove, and the positioning hole and the positioning groove are concentrically arranged. The groove wall of the positioning groove abuts against the outer wall of the stirring barrel.
[0018] Further, the machine base includes a base and a main body housing. The main body housing is connected to the base, and the drive assembly is installed inside the main body housing. A first connection part is provided on the installation shell, and a second connection part is provided on the main body housing. The first connection part and the second connection part are detachably connected.
[0019] A limiting groove is provided at the bottom of the installation shell, and a limiting pin is provided inside the main body housing. The limiting pin is connected to the base through an elastic member. The elastic member is used to provide an elastic force to drive the limiting pin to insert into the limiting groove when the first connection part and the second connection part are connected, and the limiting pin is used to withdraw from the limiting groove under external pressure.
[0020] Further, the stirring member includes a rotating shaft and stirring blades, and the stirring blades are connected to the rotating shaft; both ends of the rotating shaft extend from the first end and the second end respectively, and are respectively connected to the power connection part and the positioning connection part.
[0021] Further, the driving assembly includes a motor and a transmission gear, and the transmission gear is in transmission connection with the motor; the power connection part includes a transmission hole, and the transmission hole is arranged in the middle of the transmission gear; one end of the stirring member is in limit connection with the transmission hole.
[0022] In summary, a noodle device provided by the present invention has the following technical effects:
[0023] 1) Since both ends of the stirring member extend from the first end and the second end respectively, and are respectively connected to the positioning connection part of the machine body and the power connection part of the driving assembly, there is no direct assembly relationship between the stirring member and the stirring barrel, which can reduce the low concentricity when the stirring member rotates due to factors such as component manufacturing tolerances and assembly tolerances.
[0024] 2) The positioning connection part on the machine body and the power connection part on the driving assembly are concentrically arranged, that is, the central axis of the positioning connection part coincides with the central axis of the power connection part. After firm assembly, the concentricity of both ends of the stirring member is high, making the stirring member more stable and reliable during high-speed rotation, reducing the failure rate caused by vibration or deviation, and ensuring the consistency and stability of the stirring effect.
[0025] 3) Since there is no direct assembly relationship between the stirring member and the stirring barrel after assembly, the assembly precision between the stirring member and the stirring barrel can be reduced, and it is no longer necessary to precisely adjust the positional relationship between the stirring member and the stirring barrel. Therefore, the assembly efficiency can be significantly improved and the assembly time can be shortened. Description of the Drawings
[0026] Figure 1 is a schematic diagram of the overall structure of the noodle device according to an embodiment of the present invention;
[0027] Figure 2 is a schematic longitudinal sectional view of the noodle device according to an embodiment of the present invention;
[0028] Figure 3 is a schematic diagram of the structure of the noodle device according to an embodiment of the present invention when the main machine housing is hidden;
[0029] Figure 4 is a schematic diagram of the structure of the installation shell according to an embodiment of the present invention;
[0030] Figure 5 is Figure 4 a schematic diagram of the structure from another perspective;
[0031] Figure 6 Schematic structural diagram of the stirring assembly according to an embodiment of the present utility model;
[0032] Figure 7 Longitudinal sectional schematic diagram of the disassembled stirring assembly according to an embodiment of the present utility model;
[0033] Figure 8 Longitudinal sectional schematic diagram of the assembled stirring assembly according to an embodiment of the present utility model.
[0034] Among them, the meanings of the reference numerals are as follows:
[0035] 1, body; 11, installation cavity; 111, installation wall; 12, positioning connection part; 13, installation shell; 133, first connection part; 14, main machine shell; 141, button; 15, base; 16, support part; 18, limit pin; 19, limit groove; 2, motor; 21, power connection part; 22, transmission gear; 23, accommodating shell; 3, stirring assembly; 31, stirring barrel; 311, feeding port; 312, end wall; 313, first through hole; 32, stirring member; 321, rotating shaft; 322, stirring blade; 33, positioning cover; 331, second through hole; 34, seal; 35, installation port. Detailed implementation manners
[0036] For better understanding and implementation, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present utility model.
[0037] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present utility model 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, and therefore should not be construed as a limitation to the present utility model.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model.
[0039] Refer to Figure 1 and Figure 2 , the present utility model discloses a noodle device, which includes a body 1, a driving assembly and a stirring assembly 3. Specifically, the body 1 is provided with an installation cavity 11, refer to Figure 5, the installation cavity 11 is provided with a positioning and connecting portion 12; the driving assembly is installed on the machine body 1, and the driving assembly has a power connecting portion 21. Refer to Figure 6 , the stirring assembly 3 includes a stirring barrel 31 and a stirring member 32. Among them, the stirring barrel 31 is installed in the installation cavity 11, the stirring member 32 is installed in the stirring barrel 31, and the stirring barrel 31 has a first end and a second end; specifically, one end of the stirring member 32 extends out from the first end and is connected to the power connecting portion 21, and the other end of the stirring member 32 extends out from the second end and is connected to the positioning and connecting portion 12.
[0040] On the basis of this structure, when using the noodle device of the present utility model, during assembly, the stirring member 32 can be inserted into the stirring barrel 31, and its position can be adjusted so that one end of the stirring member 32 extends out from the first end of the stirring barrel 31. At the same time, the other end of the stirring member 32 extends out from the second end of the stirring barrel 31. Then, the stirring barrel 31 is installed into the installation cavity 11, and at the same time, the two ends of the stirring member 32 extending outside the stirring barrel 31 are respectively connected to the power connecting portion 21 of the driving assembly and the positioning and connecting portion 12 of the machine body 1.
[0041] During use, materials such as flour and water can be put into the stirring barrel 31 through the feeding port 311 on the stirring barrel 31, and then the driving assembly can drive the stirring member 32 to rotate at a high speed through the power connecting portion 21 to mix and stir the materials such as flour and water in the stirring barrel 31 into dough. Among them, the first end and the second end of the stirring barrel are the two ends of the stirring barrel 31 along the rotation axis. Since the two ends of the stirring member 32 extend out from the first end and the second end respectively, and are respectively connected to the positioning and connecting portion 12 of the machine body 1 and the power connecting portion 21 of the driving assembly, there is no direct assembly relationship between the stirring member 32 and the stirring barrel 31, but the stirring member 32 is directly assembled with the machine body 1 and the driving assembly, and the stirring member 32 only partially passes through the inside of the stirring barrel 31.
[0042] It should be noted that in the conventional setting, positioning portions are usually provided at both ends of the stirring barrel 31, and the two ends of the stirring member 32 are positioned and matched through the positioning portions on the stirring barrel 31, and then positioning portions are provided in the installation cavity 11 to position the stirring barrel 31, so as to ensure the concentricity of the stirring member 32. However, there are manufacturing tolerances in the manufacturing of components such as the stirring member 32 or the stirring barrel 31, and there are assembly tolerances when the stirring member 32 is assembled with the stirring barrel 31 and the stirring barrel 31 is assembled with the installation cavity 11; since the assembly process depends on the sequential positioning of multiple independent components, the small deviations between multiple positioning components may accumulate, which may increase the deviation degree between the rotation center of the stirring member 32 and the theoretical center, thereby reducing the concentricity of the stirring member 32.
[0043] Thus, by directly connecting the connecting parts provided on the machine body 1 and the driving assembly to both ends of the stirring member 32, the utility model can reduce the low concentricity when the stirring member 32 rotates due to factors such as component manufacturing tolerances and assembly tolerances. Among them, the positioning connecting part 12 on the machine body 1 and the power connecting part 21 on the driving assembly are concentrically arranged, that is, the central axis of the positioning connecting part 12 coincides with the central axis of the power connecting part 21. After firm assembly, the concentricity of both ends of the stirring member 32 is high, making the stirring member 32 more stable and reliable during high-speed rotation, reducing the failure rate caused by vibration or deviation, and ensuring the consistency and stability of the stirring effect.
[0044] At the same time, since there is no direct assembly relationship between the stirring member 32 and the stirring barrel 31 after assembly, the assembly precision between the stirring member 32 and the stirring barrel 31 can be reduced, and it is no longer necessary to precisely adjust the positional relationship between the stirring member 32 and the stirring barrel 31. Therefore, the assembly efficiency can be significantly improved and the assembly time can be shortened.
[0045] Furthermore, referring to Figure 2 and Figure 7 , the first end has an end wall 312. Specifically, a first through hole 313 is provided on the end wall 312, and one end of the stirring member 32 extends out through the first through hole 313 and is connected to the power connecting part 21. Among them, a sealing member 34 is provided between the first through hole 313 and the stirring member 32.
[0046] On the basis of this structure, during assembly, the sealing member 34 can be sleeved on the stirring member 32, and when the stirring member 32 passes through the first through hole 313, the sealing member 34 can be closely attached to the periphery of the first through hole 313. One end of the stirring member 32 passes through the sealing member 34 and the first through hole 313, and then is connected to the power connecting part 21.
[0047] It should be noted that the power connecting part 21 can be a drive shaft or a transmission hole. Specifically, the driving assembly includes a motor 2 and a drive shaft, and the motor 2 can directly drive the drive shaft to rotate. In addition, the driving assembly can also include a transmission member. Referring to Figure 3 , the transmission member is installed in the accommodating shell 23, the motor 2 can drive the transmission member to rotate, and the rotation is output by the transmission gear 22 of the transmission member. The transmission gear 22 can be connected to the stirring member 32 through the transmission hole. Thus, the drive shaft or the transmission hole on the transmission gear 22 can drive the stirring member 32 to rotate.
[0048] Among them, the connection method between the stirring member 32 and the power connection portion 21 can be threaded connection, limit plugging, etc. Specifically, threads (which can be internal threads or external threads) can be provided at the end of the stirring member 32, and external threads can be provided on the outer periphery of the drive shaft, or internal threads can be provided in the transmission hole. The stirring member 32 and the power connection portion 21 are connected through the thread structure, which can improve the connection stability and concentricity between the stirring member 32 and the power connection portion 21.
[0049] In addition, the seal 34 can be a rubber sealing ring, sealing packing, etc. The presence of the seal 34 effectively prevents the material from leaking out from the first through hole 313 during the stirring process, maintaining the material purity and cleanliness in the stirring barrel 31.
[0050] In addition, in a traditional stirring device, if the stirring member 32 is directly assembled with the stirring barrel 31, then the size, shape, and position of the first through hole 313 need to be very precise to ensure the correct installation and stable operation of the stirring member 32. However, in this application, since the stirring member 32 is not directly assembled on the stirring barrel 31, the first through hole 313 only needs to meet the basic requirement that the stirring member 32 can pass through smoothly and be connected to the power connection portion 21, without excessive precision.
[0051] Further, referring to Figure 7 and Figure 8 , the stirring assembly 3 includes a positioning cover 33. Specifically, the second end has an installation opening 35, and the positioning cover 33 is detachably installed in the installation opening 35. Among them, a second through hole 331 is provided on the positioning cover 33, and the other end of the stirring member 32 extends out through the second through hole 331 and is connected to the positioning connection portion 12.
[0052] On the basis of this structure, during assembly, the stirring member 32 can be first extended into the stirring barrel 31 through the installation opening 35, and then the positioning cover 33 is installed in the installation opening 35. At the same time, both ends of the stirring member 32 extend out of the stirring barrel 31 through the first through hole 313 and the second through hole 331 respectively, and both ends of the stirring member 32 are respectively connected to the positioning connection portion 12 on the machine body 1 and the power connection portion 21 on the drive assembly.
[0053] Among them, due to the detachability of the positioning cover 33, the stirring member 32 can be disassembled for cleaning after use. Specifically, the positioning cover 33 and the installation opening 35 can be detachably disassembled through threaded connection, snap connection, etc.
[0054] In this application, by directly assembling both ends of the stirring member 32 to the body 1 and the drive assembly, the direct assembly relationship between the stirring member 32 and the stirring barrel 31 is avoided. Thus, the structure of the stirring barrel 31 can be simplified, its design requirements are reduced, and the manufacturing and processing of the stirring barrel 31 become easier and more flexible. Accordingly, a positioning cover 33 can be provided on the stirring barrel 31, reducing the difficulty of disassembling the stirring member 32. At the same time, the assembly tolerance between the positioning cover 33 and the stirring barrel 31 does not affect the concentricity of the stirring member 32.
[0055] Furthermore, the body 1 includes a mounting shell 13 and a machine base. Among them, the mounting shell 13 is detachably connected to the machine base. Refer to Figure 4 , and the above-mentioned mounting cavity 11 is located inside the mounting shell 13.
[0056] Thus, the stirring barrel 31 can be first installed on the mounting shell 13, and then the mounting shell 13 is connected to the machine base. The detachable connection between the mounting shell 13 and the machine base makes the cleaning and maintenance of the noodle machine more modular. When it is necessary to clean the stirring assembly 3, the user only needs to simply disassemble the mounting shell 13. At the same time, after the mounting shell 13 is detached, internal components inside the machine base can be replaced and repaired without disassembling the entire body 1.
[0057] Furthermore, refer to Figure 5 , the mounting cavity 11 has a mounting wall 111 facing the second end, and the above-mentioned positioning connection portion 12 is located on the mounting wall 111. In addition, a support portion 16 is also provided on the mounting wall 111, and the support portion 16 is used to abut against the outer wall of the stirring barrel 31 when the stirring barrel 31 is installed in the mounting cavity 11.
[0058] On the basis of this structure, the mounting cavity 11 has a mounting opening, and the mounting opening is disposed opposite to the mounting wall 111. During assembly, first orient the second end of the stirring barrel 31 towards the mounting wall 111, and slowly push it into the mounting opening of the mounting cavity 11 until the outer wall of the stirring barrel 31 contacts the support portion 16 inside the mounting cavity 11; at the same time, positionally connect the end of the stirring member 32 at the second end to the positioning connection portion 12 on the mounting wall 111. Then install the mounting shell 13 onto the machine base, and at the same time connect the end of the stirring member 32 at the first end to the power connection portion 21 of the drive assembly on the machine base. During use, the drive assembly drives the stirring member 32 to rotate inside the stirring barrel 31 through the power connection portion 21, and at the same time the end of the stirring member 32 connected to the positioning connection portion 12 also rotates relative to the positioning connection portion 12.
[0059] Among them, the positioning connection portion 12 on the mounting wall 111 provides precise positioning and support for the other end of the stirring member 32; through close cooperation with the positioning connection portion 12, the stirring member 32 can maintain the correct position and posture, and during the stirring process, the shaking and deviation of the stirring member 32 are reduced.
[0060] In addition, the support portion 16 on the installation wall 111 provides a stable support platform for the mixing barrel 31, enabling the mixing barrel 31 to maintain a stable posture when the dough rotates inside the mixing barrel 31, ensuring the consistency of the mixing effect.
[0061] Furthermore, the positioning connection portion 12 includes a positioning hole, and the end of the mixing member 32 is inserted into the positioning hole.
[0062] Thus, the positioning hole serves as the connection point between the mixing member 32 and the machine body 1. By precisely setting both its position and size, the concentricity between the positioning hole and the power connection portion 21 on the drive assembly is improved. After the end of the mixing member 32 is inserted into the positioning hole and the power connection portion 21, the concentricity of the mixing member 32 is ensured.
[0063] Meanwhile, the positioning hole is a round hole, which does not affect the rotation of the mixing member 32. It also makes the disassembly and installation of the mixing member 32 simpler and faster; when it is necessary to clean the mixing member 32 or replace the mixing member 32 with different specifications, the mixing member 32 can be simply pulled out or inserted into the positioning hole, without complex operations or tools.
[0064] Furthermore, the support portion 16 includes a positioning groove, and the positioning hole is provided in the positioning groove, wherein the positioning hole and the positioning groove are concentrically arranged. In addition, the groove wall of the positioning groove abuts against the outer wall of the mixing barrel 31.
[0065] On this structural basis, a boss is provided on the outer end wall of the second end of the mixing barrel 31, the installation opening is located in the middle of the boss, and the positioning cover 33 is installed in the installation opening. During assembly, first orient the second end of the mixing barrel 31 towards the installation wall 111, and slowly push it into the installation opening of the installation cavity 11. The outer wall of the boss of the mixing barrel 31 will gradually come into contact with the groove wall of the positioning groove and slide along its inner wall until it reaches the predetermined position.
[0066] Among them, the positioning hole and the positioning groove are concentrically arranged, so that during the connection of the outer wall of the mixing barrel 31 with the positioning groove, the mixing member 32 is also inserted into the positioning hole at the same time, and the axis of the positioning hole will automatically align with the axis of the positioning groove. It can effectively reduce the eccentric error generated during the rotation of the mixing member 32; even if there are slight deviations in the manufacturing or installation process of the mixing member 32, the positioning hole and the positioning groove can correct these deviations through their precise dimensional and positional relationships, improving the concentricity of the mixing member 32.
[0067] Furthermore, refer to Figure 1 and Figure 3 , the machine base includes a base 15 and a main machine housing 14, wherein the main machine housing 14 is connected to the base 15, and the drive assembly is installed inside the main machine housing 14. Refer to Figure 5, a first connection portion 133 is provided on the mounting shell 13. Correspondingly, a second connection portion is provided on the main body housing 14, and the first connection portion 133 is detachably connected to the second connection portion.
[0068] Refer to Figure 2 , a limiting groove 19 is provided at the bottom of the mounting shell 13, a limiting pin 18 is provided inside the main body housing 14, and the limiting pin 18 is connected to the base 15 through an elastic member. The elastic member is used to provide an elastic force to drive the limiting pin 18 to insert into the limiting groove 19 when the first connection portion 133 is connected to the second connection portion, and the limiting pin 18 is used to withdraw from the limiting groove 19 under an external pressing force.
[0069] On the basis of this structure, the first connection portion 133 and the second connection portion are connected in the horizontal direction, and a guiding inclined surface is further provided on one side of the limiting groove 19. When assembling the mounting shell 13 with the machine base, first place the mounting shell 13 on the machine base from top to bottom, then align the first connection portion 133 on the mounting shell 13 with the second connection portion on the main body housing 14, and push the mounting shell 13 in the horizontal direction to make the first connection portion 133 approach and connect with the second connection portion. At the same time, the end of the stirring member 32 far from the mounting wall 111 approaches the driving assembly inside the main body housing 14 and is connected to the power connection portion 21.
[0070] In this process, the limiting pin 18 at the bottom of the mounting shell 13 is pushed upward under the action of the elastic member and slides into the limiting groove 19 along the guiding inclined surface, and after entering the limiting groove 19, it abuts against one side of the guiding inclined surface in the horizontal direction. Thus, after the mounting shell 13 and the main body housing 14 are installed, the movement of the mounting shell 13 in the horizontal direction is limited by the limiting pin 18, and the movement of the mounting shell 13 in the vertical direction is limited by the connection between the first connection portion 133 and the second connection portion.
[0071] When it is necessary to disassemble the mounting shell 13, refer to Figure 1 and Figure 2 , a key 141 is provided on the outer side of the machine body 1. The key 141 extends from the inside of the main body housing 14 to the outside of the machine body 1, and the key 141 is synchronously connected to the limiting pin 18. In this way, when the key 141 is pressed downward by an external force, it can drive the limiting pin 18 to move downward and withdraw from the limiting groove 19; at this time, the mounting shell 13 can be pushed in the horizontal direction to make the first connection portion 133 and the second connection portion disengage from each other, and then the mounting shell 13 can be removed from bottom to top.
[0072] Among them, the elastic member can be a spring. The first connection portion 133 can be a buckle / groove, and correspondingly, the second connection portion is a groove / buckle. And the positioning connection between the first connection portion 133 and the second connection portion can make the positioning connection between the stirring member 32 and the power connection portion 21 on the main body housing 14 more convenient.
[0073] In addition, through the locking effect of the limit pin 18 and the limit groove 19, the connection between the mounting shell 13 and the machine body 1 is more precise and stable, which can improve the concentricity between the positioning connection part 12 on the mounting shell 13 and the power connection part 21 of the drive component in the machine body 1, thereby improving the concentricity of the stirring member 32; at the same time, ensuring the assembly stability of the machine body 1 and preventing it from shaking during the noodle-making process.
[0074] Furthermore, the stirring member 32 includes a rotating shaft 321 and stirring blades 322, and the stirring blades 322 are connected to the rotating shaft 321. The two ends of the rotating shaft 321 extend from the first end and the second end respectively, and are connected to the power connection part 21 and the positioning connection part 12 respectively.
[0075] Among them, the rotating shaft 321 is the core component of the stirring member 32, and its main function is to transmit power. When the motor 2 or other power sources drive the rotating shaft 321 to rotate through the power connection part 21, the rotating shaft 321 transmits this rotational motion to the stirring blades 322, enabling the stirring blades 322 to perform the tasks of stirring and mixing materials.
[0076] Therefore, the two ends of the rotating shaft 321 are respectively connected to the power connection part 21 and the positioning connection part 12, avoiding a direct assembly relationship between the stirring shaft and the stirring barrel 31. The rotating shaft 321 not only receives power input but also can be stably supported, maintaining a high concentricity and rotational accuracy.
[0077] Furthermore, referring to Figure 2 and Figure 3 , the drive component includes a motor 2 and a transmission gear 22, and the transmission gear 22 is in transmission connection with the motor 2. Among them, the power connection part 21 includes a transmission hole, and the transmission hole is arranged in the middle of the transmission gear 22; one end of the stirring member 32 is in limit connection with the transmission hole.
[0078] On the basis of this structure, the inner circumference of the transmission hole can be set as a polygonal structure. Correspondingly, the shape of the outer circumference of the end of the stirring member 32 connected to the transmission hole is adapted to the shape of the transmission hole. During assembly, one end of the stirring member 32 can be axially inserted into the transmission hole. During use, the motor 2 drives the transmission gear 22 to rotate, and during the rotation of the transmission gear 22, the transmission hole drives the stirring member 32 to rotate.
[0079] Therefore, by axially inserting one end of the stirring member 32 into the transmission hole, the concentricity between the stirring member 32 and the transmission hole can be improved, and further the concentricity of both ends of the stirring member 32 can be ensured. At the same time, the stirring member 32 is in circumferential limit connection with the transmission hole, which can prevent slippage between the transmission gear 22 and the stirring member 32 when the transmission gear 22 drives the stirring member 32 to rotate, ensuring the rotational accuracy of the stirring member 32.
[0080] The technical means disclosed by the solution of the utility model are not limited to those disclosed by the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that for those of ordinary skill in the art, without departing from the principle of the utility model, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the utility model.
Claims
1. A noodle making device, characterized in that: include, A machine body, wherein the machine body is provided with a mounting cavity, and the mounting cavity is provided with a positioning connection portion; A driving assembly is mounted on the machine body, and the driving assembly has a power connection portion; The stirring assembly includes a stirring barrel and a stirring member, wherein the stirring barrel is installed in the installation cavity, and the stirring member is installed in the stirring barrel. The stirring barrel has a first end and a second end; one end of the stirring member extends from the first end and is connected to the power connecting part, and the other end of the stirring member extends from the second end and is connected to the positioning connecting part.
2. The noodle device according to claim 1, characterized in that: The first end has an end wall, and a first through hole is provided on the end wall. One end of the stirring member extends out from the first through hole and is connected to the power connection part; a sealing member is provided between the first through hole and the stirring member.
3. The noodle making device according to claim 1 or 2, characterized in that: The stirring assembly includes a positioning cover, the second end of which has a mounting opening, and the positioning cover is detachably mounted on the mounting opening; a second through hole is provided on the positioning cover, and the other end of the stirring member extends out from the second through hole and is connected to the positioning connection portion.
4. The noodle making device according to claim 3, characterized in that: The machine body comprises a mounting shell and a machine base, wherein the mounting shell is detachably connected to the machine base; and the mounting cavity is located in the mounting shell.
5. The noodle making device according to claim 4, characterized in that: The installation cavity has an installation wall facing the second end, and the positioning connection portion is located on the installation wall; a support portion is also provided on the installation wall, and the support portion is used to abut against the outer wall of the mixing barrel when the mixing barrel is installed in the installation cavity.
6. The noodle making device according to claim 5, characterized in that: The positioning connection portion comprises a positioning hole, and the end of the stirring member is inserted into the positioning hole.
7. The noodle device according to claim 6, characterized in that: The support portion comprises a positioning groove, the positioning hole is arranged in the positioning groove, and the positioning hole is arranged concentrically with the positioning groove; the groove wall of the positioning groove abuts against the outer wall of the mixing barrel.
8. The noodle making device according to claim 4, characterized in that: The base comprises a base and a host shell, the host shell is connected to the base, and the drive assembly is installed in the host shell; a first connecting portion is provided on the mounting shell, and a second connecting portion is provided on the host shell, and the first connecting portion and the second connecting portion are detachably connected; A limit groove is provided at the bottom of the mounting shell, a limit pin is provided in the main housing, and the limit pin is connected to the base through an elastic member, the elastic member is used to provide an elastic force to drive the limit pin to insert into the limit groove when the first connecting part is connected to the second connecting part, and the limit pin is used to withdraw from the limit groove under external force.
9. The noodle making device according to claim 1, characterized in that: The stirring member comprises a rotating shaft and a stirring blade, wherein the stirring blade is connected to the rotating shaft; two ends of the rotating shaft extend from the first end and the second end respectively, and are connected to the power connecting part and the positioning connecting part respectively.
10. The noodle making device according to claim 1, characterized in that: The driving assembly includes a motor and a transmission gear, and the transmission gear is connected to the motor in a transmission manner; the power connecting part includes a transmission hole, and the transmission hole is arranged in the middle of the transmission gear; one end of the stirring member is limitedly connected to the transmission hole.