Cover body structure of stirring barrel of noodle maker

By introducing a flow channel communicating with the water inlet into the lid structure of the noodle machine mixing barrel, the problem of inconvenience of user operation is solved, and the function of adding liquid raw materials without removing the drip cup and lid is realized, which improves the convenience of operation and flow speed.

CN222898169UActive Publication Date: 2025-05-27ZHONGSHAN XIAOLAN TOWN WEIDE ELECTRIC CO LTD
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Patent Information

Application Number
CN202421948030.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-05-27
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

When using the existing noodles machine, the drip cup blocks the sink. Users need to remove the drip cup and lid before adding raw materials such as eggs or vegetable juice, which is inconvenient to operate.

Method used

A lid structure of a noodle machine mixing barrel is designed, including a flow guide groove in communication with the water inlet tank. The user can pour it directly into the flow guide groove, and the liquid raw material flows to the water inlet tank through the flow guide groove and flows into the stirring barrel through the water drop hole.

Benefits of technology

Liquid raw materials are added without removing the drip cup and lid, making the operation more convenient and quicker, reducing the risk of overflow and increasing the flow rate of raw materials.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222898169U_ABST
    Figure CN222898169U_ABST
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Abstract

The utility model discloses a cover body structure of a stirring barrel of a noodle maker, which comprises a barrel cover body, the barrel cover body is provided with a strip-shaped liquid inlet groove with an open upper end, the liquid inlet groove comprises a water inlet groove and a diversion groove which is communicated with the water inlet groove and is not shielded by a dripping cup, the bottom surface of the water inlet groove is provided with a water falling hole, and the water falling hole is communicated with the diversion groove. The cover body structure is provided with the flow guide groove communicated with the water inlet groove, when liquid raw materials such as eggs or vegetable juice or fruit juice need to be added into the stirring barrel, the liquid raw materials can be directly poured into the flow guide groove, flow into the water inlet groove and flow into the stirring barrel through the water falling hole, and therefore the water dripping cup and the cover body do not need to be taken down, and convenience and rapidness are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of noodle machines, in particular to a cover structure of a stirring barrel of a noodle machine. Background Art

[0002] A household noodle machine is a small household product made by modern technology based on traditional manual noodle rolling, noodle cutting and other processes.

[0003] The patent with the publication number CN217771276U is a patent previously applied by the applicant. The specification of this patent mentions a noodle machine, which includes a main body, a stirring barrel and a drip cup arranged on the main body. A barrel cover is arranged at the upper port of the stirring barrel. An inlet water groove is arranged on the barrel cover, and a water receiving hole is arranged in the inlet water groove. The drip hole of the drip cup is located above the inlet water groove. After the water in the drip cup drops into the inlet water groove, it drops into the stirring barrel through the water receiving hole for dough kneading. The amount of water added is controlled by weighing the difference between the weight before water injection and the weight after water injection of the drip cup. When the amount of water added meets the requirements, the valve on the drip cup will close immediately to achieve accurate and quantitative water addition.

[0004] Such a noodle machine also has the following problems. After the noodle machine is installed, the drip cup will block the inlet water groove. When raw materials such as eggs, vegetable juice or fruit juice need to be added to the stirring barrel to make some special noodles, the user needs to remove the drip cup and the lid to pour in the eggs, vegetable juice or fruit juice and other raw materials, and the operation is very inconvenient.

[0005] The present utility model is made based on the above situation. Summary of the Utility Model

[0006] In view of this, the purpose of the present utility model is to provide a cover structure of a stirring barrel of a noodle machine. A diversion groove communicated with the inlet water groove is arranged on the cover structure. When liquid raw materials such as eggs, vegetable juice or fruit juice need to be added to the stirring barrel, they can be directly poured into the diversion groove and flow into the inlet water groove and then flow into the stirring barrel through the water falling hole, so there is no need to remove the drip cup and the cover body, which is very convenient and fast.

[0007] The present utility model is realized by the following technical solutions:

[0008] A cover structure of a stirring barrel of a noodle machine includes a barrel cover body. A strip-shaped liquid inlet groove with an open upper end is arranged on the barrel cover body. The liquid inlet groove includes an inlet water groove and a diversion groove communicated with the inlet water groove and not blocked by the drip cup. A water falling hole is arranged on the bottom surface of the inlet water groove.

[0009] A cover structure of a stirring barrel of a noodle machine as described above, wherein a force - relieving block protruding upward is provided on the bottom surface of the liquid inlet groove. There are water - passing channels for water flow to pass through between the force - relieving block and the inner walls on both sides of the liquid inlet groove. The force - relieving block is arranged at the connection of the water inlet groove and the diversion groove, and the bottom surface of the diversion groove is not lower than the upper port of the water - falling hole.

[0010] A cover structure of a stirring barrel of a noodle machine as described above, wherein the water - falling hole is circular or rectangular. When the water - falling hole is circular, the diameter of the water - falling hole is 8 mm to 60 mm; when the water - falling hole is rectangular, the length of the water - falling hole is 8 mm to 60 mm.

[0011] A cover structure of a stirring barrel of a noodle machine as described above, wherein the force - relieving block is in an ellipsoidal cylindrical shape, and the diameter of the force - relieving block in the front - to - back direction is greater than its diameter in the left - to - right direction.

[0012] A cover structure of a stirring barrel of a noodle machine as described above, wherein the force - relieving block is a structure formed by the upward bulging of the barrel cover body. An accommodation groove with an opening downward is formed inside the force - relieving block, and a bushing for installing the main shaft in the stirring barrel is installed in the accommodation groove.

[0013] A cover structure of a stirring barrel of a noodle machine as described above, wherein the bottom surface of the diversion groove is an inclined surface that gradually rises from front to back.

[0014] A cover structure of a stirring barrel of a noodle machine as described above, wherein the bottom surface of the water inlet groove between the force - relieving block and the water - falling hole is a V - shaped surface that gradually rises from the middle to both left and right sides.

[0015] A cover structure of a stirring barrel of a noodle machine as described above, wherein a first enclosing plate and a second enclosing plate are provided on the upper surface of the barrel cover body. The first enclosing plate is the outer wall of the diversion groove, and the second enclosing plate is the outer wall of the water inlet groove. The first enclosing plate and the second enclosing plate jointly enclose the liquid inlet groove.

[0016] A cover structure of a stirring barrel of a noodle machine as described above, wherein the height of the first enclosing plate is 3 mm to 150 mm, and the height of the second enclosing plate is 3 mm to 10 mm.

[0017] Compared with the prior art, the present utility model has the following advantages:

[0018] 1. The cover structure is provided with a diversion groove communicated with the water inlet groove. When adding liquid raw materials such as eggs, vegetable juice, or fruit juice to the stirring barrel, it can be directly poured into the diversion groove, flow into the water inlet groove, and then flow into the stirring barrel through the water - falling hole, so that there is no need to remove the dripping cup and the cover, which is very convenient and fast.

[0019] 2. When pouring the liquid raw material into the diversion trough, since it is manually poured, it is difficult to control the flow rate of the liquid raw material during pouring. Generally speaking, when the liquid raw material is poured, there will be a large impact force, so there is a risk of overflow. The bottom surface of the liquid inlet trough is provided with a force-dissipating block protruding upward. When the liquid raw material flows from the diversion trough to the water inlet trough, the force-dissipating block can disperse the liquid raw material and remove most of the impact force, so that its flow rate is greatly reduced, thereby reducing the risk of overflow from the water inlet trough.

[0020] 3. The water drainage hole is circular or elongated. When the water drainage hole is circular, its diameter is 8 mm to 60 mm; when the water drainage hole is elongated, its length is 8 mm to 60 mm, so as to ensure that the liquid raw material can quickly pass through the water drainage hole, reduce its residence time in the water inlet trough, and prevent the liquid raw material from stagnating and overflowing.

[0021] 4. The bottom surface of the diversion trough is an inclined surface that gradually rises from front to back, so as to facilitate the liquid raw material to flow from the diversion trough into the water inlet trough.

[0022] 5. The bottom surface of the water inlet trough between the force-dissipating block and the water drainage hole is a V-shaped surface that gradually rises from the middle to the left and right sides, which is convenient for the liquid raw material to converge at the water drainage hole. Description of the Drawings

[0023] The following further details the specific embodiments of the present invention with reference to the drawings, where:

[0024] Figure 1 is the right view of the noodle machine;

[0025] Figure 2 is the cross-sectional view of the mixing barrel with the barrel cover body installed;

[0026] Figure 3 is the three-dimensional view of the barrel cover body;

[0027] Figure 4 is the top view of the barrel cover body. Detailed Description of the Specific Embodiment

[0028] The following further describes the present invention with reference to the drawings:

[0029] As Figures 1 to 4 shown, a cover body structure of a mixing barrel of a noodle machine includes a barrel cover body 4. A long and strip-shaped liquid inlet trough 41 with an open upper end is provided on the barrel cover body 4. The liquid inlet trough 41 includes a water inlet trough 412 and a diversion trough 411 that is communicated with the water inlet trough 412 and is not blocked by the drip cup. A water drainage hole 401 is provided on the bottom surface of the water inlet trough 412.

[0030] When it is necessary to add liquid raw materials such as eggs, vegetable juice, or fruit juice to the mixing bucket, they can be directly poured into the diversion trough 411, flow into the water inlet trough 412, and then flow into the mixing bucket through the water dropping holes 401, so that there is no need to remove the drip cup and the bucket lid, which is very convenient and fast.

[0031] In some embodiments, a force-relieving block 402 protruding upward is provided on the bottom surface of the liquid inlet trough 41. There are water passing channels 403 for water flow between the force-relieving block 402 and the inner walls on both sides of the liquid inlet trough 41. The force-relieving block 402 is arranged at the connection between the water inlet trough 412 and the diversion trough 411, and the bottom surface of the diversion trough 411 is not lower than the upper port of the water dropping hole 401.

[0032] When pouring the liquid raw material into the diversion trough 411, since it is manually poured, it is difficult to control the flow rate of the liquid raw material when pouring. Generally, there will be a large impact force when the liquid raw material is poured, so there is a risk of overflow. When the liquid raw material flows from the diversion trough 411 to the water inlet trough 412, the force-relieving block 402 can disperse the liquid raw material and remove most of the impact force, greatly reducing its flow rate, thereby reducing the risk of overflow from the water inlet trough 412.

[0033] Furthermore, the force-relieving block 402 is a structure formed by the upward bulge of the bucket lid body 4. The force-relieving block 402 is integrally formed with the bucket lid body 4. An accommodation groove 404 with an opening downward is formed inside the force-relieving block 402, and a bushing 6 for installing the main shaft 5 in the mixing bucket 2 is installed in the accommodation groove 404. With such a design, the force-relieving block 402 also has the function of installing the main shaft 5, serving two purposes with one object, which is beneficial to streamlining the structure and reducing costs.

[0034] In some solutions of the present utility model, the above-mentioned force-relieving block 402 can also adopt other structural forms, such as cylindrical, semi-elliptical cylindrical, triangular prism-shaped, quadrangular prism-shaped with a rhombus cross-section, etc., and is not limited thereto.

[0035] In some embodiments, the water dropping holes 401 are circular or elongated. When the water dropping holes 401 are circular, the diameter of the water dropping holes 401 is 8 mm to 60 mm; when the water dropping holes 401 are elongated, the length of the water dropping holes 401 is 8 mm to 60 mm, so as to ensure that the liquid raw material can quickly pass through the water dropping holes 401, reduce its residence time in the water inlet trough 412, and prevent the liquid raw material from stagnating and overflowing. Of course, the water dropping holes 401 can also be other regular figures.

[0036] In some embodiments, the bottom surface of the diversion trough 411 is an inclined surface that gradually rises from front to back. The bottom surface of the water inlet trough 412 between the force-relieving block 402 and the water dropping holes 401 is a V-shaped surface that gradually rises from the middle to the left and right sides. It is convenient for the liquid raw material to converge at the water dropping holes 401, accelerate its speed of falling into the mixing bucket, prevent the liquid raw material from stagnating and overflowing, or reduce the residue of the raw material.

[0037] In some embodiments, a first shroud 42 and a second shroud 420 are provided on the upper surface of the bucket cover body 4. The first shroud 42 is the outer wall of the diversion groove 411, and the second shroud 420 is the outer wall of the water inlet groove 412. The first shroud 42 and the second shroud 420 together enclose a liquid inlet groove 41. The first shroud 42 can serve as a handle. The user can grasp the outer walls on the left and right sides of the first shroud 42 to rotate the bucket cover body 4 or lift the bucket cover body 4 upward.

[0038] Further, the height of the first shroud 42 is 3 mm to 150 mm to ensure that the liquid raw material does not overflow from this place, and the height of the second shroud 420 is 3 mm to 10 mm, so as to fit the shape of the drip cup, with a compact structure and facilitating the removal of the bucket cover body 4 without removing the drip cup.

Claims

1. A cover structure of a mixing barrel of a noodle machine, characterized in that: The invention comprises a barrel cover body (4), wherein the barrel cover body (4) is provided with a long strip-shaped liquid inlet groove (41) with an open upper end, wherein the liquid inlet groove (41) comprises a water inlet groove (412) and a guide groove (411) which is connected to the water inlet groove (412) and is not blocked by a drip cup, and a water drop hole (401) is provided on the bottom surface of the water inlet groove (412).

2. The cover structure of the mixing barrel of a noodle machine according to claim 1, characterized in that: The bottom surface of the liquid inlet groove (41) is provided with a pressure relief block (402) protruding upwards, and a water passage (403) for water to pass through is reserved between the pressure relief block (402) and the inner walls on both sides of the liquid inlet groove (41). The pressure relief block (402) is arranged at the connection between the water inlet groove (412) and the guide groove (411), and the bottom surface of the guide groove (411) is not lower than the upper end of the water drop hole (401).

3. The cover structure of the mixing barrel of a noodle machine according to claim 1 or 2, characterized in that: The water drop hole (401) is circular or elongated. When the water drop hole (401) is circular, the diameter of the water drop hole (401) is 8 mm to 60 mm; when the water drop hole (401) is elongated, the length of the water drop hole (401) is 8 mm to 60 mm.

4. The cover structure of the mixing barrel of a noodle machine according to claim 2, characterized in that: The force relief block (402) is in the shape of an elliptical cylinder, and the diameter of the force relief block (402) in the front-to-back direction is greater than the diameter in the left-to-right direction.

5. The cover structure of the mixing barrel of a noodle machine according to claim 2, characterized in that: The force relief block (402) is a structure formed by the barrel cover body (4) bulging upwards, and a downwardly opening receiving groove (404) is formed inside the force relief block (402), and a bushing (6) for installing the main shaft (5) in the mixing barrel (2) is installed in the receiving groove (404).

6. The cover structure of the mixing barrel of a noodle machine according to claim 1, characterized in that: The bottom surface of the guide groove (411) is a slope that gradually rises from front to back.

7. The cover structure of the mixing barrel of a noodle machine according to claim 2, characterized in that: The bottom surface of the water inlet groove (412) located between the force relief block (402) and the water drop hole (401) is a V-shaped surface that gradually rises from the middle to the left and right sides.

8. The cover structure of the mixing barrel of a noodle machine according to claim 1, characterized in that: The upper surface of the barrel cover body (4) is provided with a first enclosing plate (42) and a second enclosing plate (420); the first enclosing plate (42) is the outer wall of the guide groove (411); the second enclosing plate (420) is the outer wall of the water inlet groove (412); the first enclosing plate (42) and the second enclosing plate (420) together form a liquid inlet groove (41).

9. The cover structure of the mixing barrel of a noodle machine according to claim 8, characterized in that: The height of the first enclosure plate (42) is 3 mm to 150 mm, and the height of the second enclosure plate (420) is 3 mm to 10 mm.

Citation Information

Patent Citations

  • Dripping cup structure of noodle maker

    CN217771276U