Efficient dough mixer capable of preventing dough from sticking

By designing separable tank structure and magnetic adsorption, limiting plate and partition plate of the lid, the problems of inconvenience in dough stickiness and cleaning are solved, and the flour is uniformly fed and water control is achieved, and the operation convenience and practicality of the dough machine is improved.

CN223219836UActive Publication Date: 2025-08-15KARAMAY MISI FOOD CO LTD
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Patent Information

Application Number
CN202422636392.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-15
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The dough is easy to stick during the dough process of existing dough machines, and it is inconvenient to clean, making it difficult to control the ratio of water and flour, resulting in inconvenient operation.

Method used

An efficient dough mixer is designed to prevent the dough from sticking. It adopts a separable tank structure and cover design. Combined with the dough, water addition and surface addition mechanism, the uniform feeding and water supply control of flour is achieved through magnetic adsorption of the cover, limiting plate and partition board and other structures.

Benefits of technology

It realizes the anti-stick effect of the dough, is convenient to clean, improves the convenience of operation and the uniformity of flour feeding, and enhances the practicality of the dough machine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient dough mixer capable of preventing dough from sticking, and relates to the technical field of dough mixers.Two first cover bodies are oppositely arranged on the left side and the right side respectively, are screwed through a hinge and are clamped on a tank body; the dough kneading mechanism is arranged in the tank body; the water adding mechanism is arranged on the rear side of the upper end of the left first cover body; the flour tank is arranged on the rear side of the upper end of the left first cover body; a third cover body is arranged on the flour tank; the second powder outlet pipe abuts against the bottom of the cover plate. A plurality of powder outlet holes are formed in the annular wall of the second powder outlet pipe; the partition plates are annularly distributed in the second powder outlet pipe and are of a semicircular structure. The tank body and the base can be separated conveniently, the tank body can be cleaned conveniently, and practicability is improved; the water adding amount is convenient to control, and the dough is prevented from being dry and non-sticky and hanging on the wall; the flour adding amount is convenient to control, so that flour falls down discontinuously and uniformly, the uniform flour adding operation is convenient, dough adhesion is prevented, and the practicability is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of dough mixers, in particular to a high-efficiency dough mixer which can prevent dough from sticking. Background Art

[0002] When a dough mixer is kneading dough, water and dough are generally added at one time, and the dough is stirred by a motor. However, if the ratio of water to dough is not well controlled, the dough will easily stick together. Therefore, flour or water needs to be added depending on the situation. However, it is also easy to miscontrol the amount of flour or water added. Moreover, after kneading the dough, the inner tank of the dough mixer is connected to the motor and is not easy to clean. For this reason, an efficient dough mixer that prevents dough from sticking is proposed. Utility Model Content

[0003] The purpose of the utility model is to address the defects and shortcomings of the existing technology and provide an efficient dough mixer that prevents dough from sticking. The machine is convenient for separating the tank body and the base, making it easy to clean the tank body, thereby improving practicality; it is convenient to control the amount of water added to prevent the dough from drying out and not sticking, and causing the dough to stick to the wall; it is convenient to control the amount of flour added so that the flour falls intermittently and evenly, facilitating uniform flour adding operations, preventing dough from sticking, and improving practicality.

[0004] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: it comprises a base and a tank body; the base is provided with an embedding groove, and the tank body is embedded in the embedding groove;

[0005] It also contains:

[0006] There are two No. 1 covers, which are arranged opposite to each other on the left and right sides, and the two No. 1 covers are connected by hinges, and the No. 1 covers are clamped on the tank body;

[0007] A dough kneading mechanism, wherein the dough kneading mechanism is arranged in the tank body;

[0008] A water adding mechanism is provided at the rear side of the upper end of the No. 1 cover on the left side;

[0009] The noodle adding mechanism is arranged on the rear side of the upper end of the No. 1 cover on the left side, and the noodle adding mechanism includes:

[0010] A flour tank is provided on the left side of the rear side of the upper end of the No. 1 cover; a No. 3 cover is provided on the flour tank;

[0011] The first powder outlet pipe is connected to the bottom of the flour tank through the first powder outlet pipe; the first powder outlet pipe is movably inserted into the first cover on the left side;

[0012] A cover plate is provided on the first powder outlet pipe;

[0013] The number of the inserting rods is several and they are respectively arranged in a ring shape and movably inserted into the inserting holes of the ring wall of the No. 1 powder outlet pipe; the inserting rods are fixed to the bottom of the cover plate;

[0014] No. 2 spring, the number of which is several and movably sleeved on the insertion rod, one end of the No. 2 spring is fixed to the cover plate, and the other end of the No. 2 spring is fixed to the socket of the No. 1 powder outlet pipe;

[0015] The second powder outlet pipe is movably inserted into the first powder outlet pipe; the second powder outlet pipe is abutted against the bottom of the cover plate; a plurality of powder outlet holes are provided on the annular wall of the second powder outlet pipe;

[0016] The connecting frame is an annular structure, and the connecting frame is integrally formed with the bottom of the second powder outlet pipe; the connecting frame is fixed to the first cover on the left side;

[0017] The partition plates are several in number and are respectively arranged in a ring shape in the second powder outlet pipe, and the partition plates are semicircular in structure;

[0018] The fourth rotating shaft is fixed to the partition plate and is screwed through the second powder outlet pipe and the connecting frame by a bearing;

[0019] The driving motor is fixed on the connecting frame through a bracket, and the driving motor is connected to an external power supply; the driving motor is connected to the fourth rotating shaft.

[0020] Preferably, a handle is provided on the No. 1 cover on the right side, and a No. 1 magnetic strip is provided on the handle. A support strip is provided in the middle of the No. 1 cover on the left side, and a No. 2 magnetic strip is provided on the support strip. The No. 1 magnetic strip and the No. 2 magnetic strip are arranged to be magnetically attracted to each other.

[0021] Preferably, the dough kneading mechanism comprises:

[0022] A first rotating shaft, the first rotating shaft being screwed through the bottom of the tank body via a bearing;

[0023] A stirring plate, the stirring plate is integrally formed with the annular wall of the first rotating shaft;

[0024] A second rotating shaft is provided on the base and is driven by a motor which is provided in the base and connected to an external power source;

[0025] The limiting plate is integrally formed with the annular wall of the No. 2 rotating shaft; a limiting groove is provided at the bottom of the No. 1 rotating shaft, and the No. 2 rotating shaft and the limiting plate are embedded in the limiting groove.

[0026] Preferably, the water adding mechanism comprises:

[0027] A water tank is fixed to the rear side of the upper end of the No. 1 cover on the left side; a No. 2 cover is provided on the water tank;

[0028] A water outlet pipe is connected to the bottom of the water tank through the outlet pipe; a valve is provided in the outlet pipe;

[0029] The third rotating shaft is connected to the switch of the water outlet valve, and the third rotating shaft is movably arranged in the left side of the first cover body.

[0030] Preferably, a hand screw is fixed to the outer end of the No. 3 rotating shaft, and a No. 1 spring is provided at the rear end of the hand screw. The No. 1 spring is sleeved on the No. 3 rotating shaft, one end of the No. 1 spring is fixed to the hand screw, and the other end of the No. 1 spring is fixed to the No. 1 cover.

[0031] Preferably, a vibration motor is fixed on the cover plate, and the vibration motor has a built-in power supply.

[0032] Compared with the prior art, the beneficial effects of the present invention are:

[0033] 1. It is equipped with a dough kneading mechanism, which drives the stirring plate to rotate through the second rotating shaft and the limit plate embedded in the limit groove, making it easy to separate the tank body and the base, and easy to clean the tank body, thus improving practicality;

[0034] 2. It is equipped with a water adding mechanism, which can discharge water by opening the valve in the water outlet pipe to prevent the dough from drying out and not sticking to the wall;

[0035] 3. It is equipped with a dough adding mechanism, which rotates the partition plate to make the flour fall evenly and intermittently, facilitating the uniform dough adding operation, preventing the dough from sticking, and improving practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] Figure 1 It is a structural diagram of the present utility model.

[0037] Figure 2 It is an exploded view of the present utility model.

[0038] Figure 3 It is a structural schematic diagram of the No. 1 rotating shaft and the stirring plate in the utility model.

[0039] Figure 4 It is a structural diagram of the water adding mechanism in the utility model.

[0040] Figure 5 It is a schematic diagram of the internal structure of the noodle adding mechanism in the utility model.

[0041] Figure 6 This is a schematic diagram of the utility model when the No. 1 cover on the right side is lifted up.

[0042] Description of reference numerals:

[0043] Base 1, embedded groove 1-1, tank body 2, No. 1 cover body 3, handle 4, support bar 5, No. 1 magnetic strip 6, No. 2 magnetic strip 7, dough kneading mechanism 8, No. 1 rotating shaft 8-1, stirring plate 8-2, No. 2 rotating shaft 8-3, limit plate 8-4, limit groove 8-5, water adding mechanism 9, water tank 9-1, No. 2 cover body 9-2, water outlet pipe 9-3, No. 3 rotating shaft 9-4, hand tightening 9-5, No. 1 spring 9-6, dough adding mechanism 10, flour tank 10-1, No. 3 cover body 10-2, No. 1 powder outlet pipe 10-3, cover plate 10-4, vibration motor 10-5, insertion rod 10-6, No. 2 spring 10-7, No. 2 powder outlet pipe 10-8, connecting frame 10-9, partition plate 10-10, No. 4 rotating shaft 10-11, drive motor 10-12. DETAILED DESCRIPTION

[0044] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. The preferred embodiments in the description are only used as examples. All other embodiments obtained by those skilled in the art without making any creative work are within the scope of protection of the present invention.

[0045] This specific implementation adopts the following technical solutions:

[0046] See also Figure 1-6 , this embodiment 1 comprises a base 1 and a tank body 2; the base 1 is provided with an embedding groove 1-1, and the tank body 2 is embedded in the embedding groove 1-1;

[0047] It also contains:

[0048] A No. 1 cover body 3, wherein the number of the No. 1 cover body 3 is two, and they are respectively arranged opposite to each other on the left and right. The two No. 1 cover bodies 3 are rotated by a hinge, and the No. 1 cover body 3 is clamped on the tank body 2; a handle 4 is provided on the No. 1 cover body 3 on the right, and a No. 1 magnetic strip 6 is provided on the handle 4. A support strip 5 is provided in the middle of the No. 1 cover body 3 on the left, and a No. 2 magnetic strip 7 is provided on the support strip 5. The No. 1 magnetic strip 6 and the No. 2 magnetic strip 7 are magnetically attracted to each other;

[0049] The dough kneading mechanism 8 is provided in the tank body 2; the dough kneading mechanism 8 comprises:

[0050] The first rotating shaft 8-1 is screwed through the bottom of the tank body 2 via a bearing;

[0051] A stirring plate 8-2, wherein the stirring plate 8-2 is integrally formed with the annular wall of the first rotating shaft 8-1;

[0052] The second rotating shaft 8-3 is provided on the base 1 and is driven by a motor. The motor (not shown) is provided in the base 1 and is connected to an external power source;

[0053] The limiting plate 8-4 is integrally formed with the annular wall of the second rotating shaft 8-3; a limiting groove 8-5 is provided at the bottom of the first rotating shaft 8-1, and the second rotating shaft 8-3 and the limiting plate 8-4 are embedded in the limiting groove 8-5;

[0054] The water adding mechanism 9 is provided at the rear side of the upper end of the left cover 3; the water adding mechanism 9 comprises:

[0055] Water tank 9-1, said water tank 9-1 is fixed to the rear side of the upper end of the left cover 3 by gluing; a second cover 9-2 is provided on the water tank 9-1;

[0056] The water outlet pipe 9-3 is connected to the bottom of the water tank 9-1; a valve (not shown) is provided in the water outlet pipe 9-3;

[0057] The third rotating shaft 9-4 is connected to the switch of the valve of the water outlet pipe 9-3, and the third rotating shaft 9-4 is movably arranged in the left side of the first cover 3; the outer end of the third rotating shaft 9-4 is fixed with a hand screw 9-5, and the rear end of the hand screw 9-5 is provided with a first spring 9-6, which is sleeved on the third rotating shaft 9-4, one end of the first spring 9-6 is fixed on the hand screw 9-5, and the other end of the first spring 9-6 is fixed on the first cover 3;

[0058] The noodle adding mechanism 10 is provided at the rear side of the upper end of the left cover 3. The noodle adding mechanism 10 comprises:

[0059] Flour tank 10-1, said flour tank 10-1 is arranged on the rear side of the upper end of the No. 1 cover 3 on the left side; a No. 3 cover 10-2 is arranged on the flour tank 10-1;

[0060] The first powder outlet pipe 10-3 is connected to the bottom of the flour tank 10-1 through the first powder outlet pipe 10-3; the first powder outlet pipe 10-3 is movably inserted on the first cover 3 on the left side;

[0061] Cover plate 10-4, said cover plate 10-4 is arranged on the No. 1 powder outlet pipe 10-3; a vibration motor 10-5 is fixed to the cover plate 10-4 by bolts, the vibration motor 10-5 has a built-in power supply, and the specific model of the vibration motor 10-5 is purchased directly from the market and installed and used according to actual use requirements;

[0062] Insertion rods 10-6, the number of the insertion rods 10-6 is several, and they are respectively arranged in a ring shape and movably inserted into the insertion holes of the ring wall of the No. 1 powder outlet pipe 10-3; the insertion rods 10-6 are fixed to the bottom of the cover plate 10-4;

[0063] No. 2 spring 10-7, the number of the No. 2 spring 10-7 is several, and each is movably sleeved on the insertion rod 10-6, one end of the No. 2 spring 10-7 is fixed to the cover plate 10-4, and the other end of the No. 2 spring 10-7 is fixed to the jack of the No. 1 powder discharge pipe 10-3;

[0064] The second powder outlet pipe 10-8 is movably inserted into the first powder outlet pipe 10-3; the second powder outlet pipe 10-8 is disposed against the bottom of the cover plate 10-4; a plurality of powder outlet holes are provided on the annular wall of the second powder outlet pipe 10-8;

[0065] The connecting frame 10-9 is an annular structure, and the connecting frame 10-9 and the bottom of the second powder discharge pipe 10-8 are integrally formed; the connecting frame 10-9 is fixed to the left side of the first cover 3 by glue;

[0066] The partition plate 10-10 is a plurality of partition plates 10-10, and each partition plate 10-10 is arranged in a circular shape in the second powder outlet pipe 10-8, and the partition plate 10-10 is a semicircular structure;

[0067] The fourth rotating shaft 10-11 is fixed to the partition plate 10-10, and the fourth rotating shaft 10-11 is screwed through the second powder discharge pipe 10-8 and the connecting frame 10-9 through a bearing;

[0068] Drive motor 10-12, the drive motor 10-12 is fixed on the connecting frame 10-9 through a bracket, the drive motor 10-12 is connected to an external power supply, and the specific usage model of the drive motor 10-12 is directly purchased, installed and used from the market according to actual usage requirements; the drive motor 10-12 is connected to the fourth rotating shaft 10-11.

[0069] When using the present invention, the tank body 2 is embedded in the embedding groove 1-1, so that the second rotating shaft 8-3 and the limiting plate 8-4 are embedded in the limiting groove 8-5, and the second rotating shaft 8-3 is driven to rotate so that the limiting plate 8-4 rotates and drives the first rotating shaft 8-1 and the stirring plate 8-2 to rotate and stir;

[0070] Open the No. 1 cover 3 on the right side by the handle 4. The magnetic attraction arrangement of the No. 1 magnetic strip 6 and the No. 2 magnetic strip 7 makes the No. 1 cover 3 on the right side stand up, which is convenient for kneading the dough. When water needs to be added according to the kneading situation, turn the hand screw 9-5 to make the water outlet pipe 9-3 discharge water as needed. Loosen the hand screw 9-5, and under the action of the No. 1 spring 9-6, the valve in the water outlet pipe 9-3 is closed and stops discharging water;

[0071] Add flour to the flour tank 10-1, insert the No. 1 powder outlet pipe 10-3 into the No. 1 cover body 3 on the left side, so that the No. 2 powder outlet pipe 10-8 lifts the cover plate 10-4, and the air outlet hole on the No. 2 powder outlet pipe 10-8 is exposed in the flour tank 10-1; when flour needs to be added, start the vibration motor 10-5, the flour tank 10-1 vibrates, start the drive motor 10-12, so that the No. 4 rotating shaft 10-11 rotates, driving the partition plate 10-10 to rotate, so that the flour falls intermittently and evenly, which is convenient for adding flour; after use, remove the flour tank 10-1, and under the action of the No. 2 spring 10-7, pull the insertion rod 10-6 back into the insertion hole of the No. 1 powder outlet pipe 10-3, so that the cover plate 10-4 is pulled back and covers the No. 1 powder outlet pipe 10-3, which is convenient for cleaning the flour tank 10-1.

[0072] Compared with the prior art, the beneficial effects of the present invention are:

[0073] 1. Two No. 1 covers 3 are provided. The No. 1 magnetic strip 6 and the No. 2 magnetic strip 7 are magnetically attracted to each other so that the No. 1 cover 3 stands upright, which is convenient for kneading the dough;

[0074] 2. A dough kneading mechanism 8 is provided, which drives the stirring plate 8-2 to rotate through the second rotating shaft 8-3 and the limiting plate 8-4 embedded in the limiting groove 8-5, so as to facilitate the separation of the tank body 2 and the base 1, facilitate the cleaning of the tank body 2, and improve practicality;

[0075] 3. A water adding mechanism 9 is provided to discharge water by opening the valve in the water outlet pipe 9-3 to prevent the dough from drying out and not sticking to the wall;

[0076] 4. A flour adding mechanism 10 is provided, which rotates the partition plate 10-10 to make flour fall evenly and intermittently, facilitating uniform flour adding operation, preventing dough from sticking, and improving practicality.

[0077] For those skilled in the art, they can modify the technical solutions described in the aforementioned embodiments and make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present utility model should be included in the scope of protection of the present utility model.

Claims

1. A high-efficiency dough mixer for preventing dough from sticking, comprising a base (1) and a tank body (2); the base (1) is provided with an embedding groove (1-1), and the tank body (2) is embedded in the embedding groove (1-1); It is characterized in that It also contains: No. 1 cover body (3), the number of the No. 1 cover bodies (3) is two, and they are respectively arranged opposite to each other on the left and right sides, the two No. 1 cover bodies (3) are connected by hinges, and the No. 1 cover bodies (3) are clamped on the tank body (2); A dough kneading mechanism (8), wherein the dough kneading mechanism (8) is arranged in the tank body (2); A water adding mechanism (9), the water adding mechanism (9) is arranged at the rear side of the upper end of the left cover body (3); The noodle adding mechanism (10) is arranged at the rear side of the upper end of the left cover (3), and the noodle adding mechanism (10) comprises: A flour tank (10-1), wherein the flour tank (10-1) is arranged on the rear side of the upper end of the No. 1 cover (3) on the left side; a No. 3 cover (10-2) is arranged on the flour tank (10-1); A powder outlet pipe (10-3) No. 1 is connected to the bottom of the flour tank (10-1); the powder outlet pipe (10-3) No. 1 is movably inserted into the cover body (3) No. 1 on the left side; A cover plate (10-4), wherein the cover plate (10-4) is arranged on the first powder outlet pipe (10-3); Insertion rods (10-6), the number of the insertion rods (10-6) is several, and the insertion rods (10-6) are respectively distributed in an annular shape and movably inserted into the insertion holes of the annular wall of the first powder outlet pipe (10-3); the insertion rods (10-6) are fixed to the bottom of the cover plate (10-4); No. 2 spring (10-7), the number of the No. 2 spring (10-7) is several, and each of the No. 2 springs (10-7) is movably sleeved on the insertion rod (10-6), one end of the No. 2 spring (10-7) is fixed to the cover plate (10-4), and the other end of the No. 2 spring (10-7) is fixed to the socket of the No. 1 powder outlet pipe (10-3); A second powder outlet pipe (10-8), wherein the second powder outlet pipe (10-8) is movably inserted into the first powder outlet pipe (10-3); the second powder outlet pipe (10-8) is disposed against the bottom of the cover plate (10-4); and a plurality of powder outlet holes are provided on the annular wall of the second powder outlet pipe (10-8); The connecting frame (10-9) is an annular structure, and the connecting frame (10-9) and the bottom of the second powder discharge pipe (10-8) are integrally formed; the connecting frame (10-9) is fixed to the first cover (3) on the left side; The partition plates (10-10) are multiple in number and are respectively arranged in a ring shape in the second powder outlet pipe (10-8). The partition plates (10-10) are of a semicircular structure. A fourth rotating shaft (10-11), the fourth rotating shaft (10-11) is fixed to the partition plate (10-10), and the fourth rotating shaft (10-11) is screwed through the second powder outlet pipe (10-8) and the connecting frame (10-9) via a bearing; A driving motor (10-12) is fixed to a connecting frame (10-9) via a bracket, and the driving motor (10-12) is connected to an external power supply; the driving motor (10-12) is connected to the fourth rotating shaft (10-11).

2. The high-efficiency dough mixer for preventing dough from sticking according to claim 1, characterized in that: A handle (4) is provided on the right cover body (3), and a first magnetic strip (6) is provided on the handle (4). A support strip (5) is provided in the middle of the left cover body (3), and a second magnetic strip (7) is provided on the support strip (5). The first magnetic strip (6) and the second magnetic strip (7) are arranged to attract each other magnetically.

3. The high-efficiency dough mixer for preventing dough from sticking according to claim 1, characterized in that: The dough kneading mechanism (8) comprises: A first rotating shaft (8-1), the first rotating shaft (8-1) is screwed through the bottom of the tank body (2) via a bearing; A stirring plate (8-2), wherein the stirring plate (8-2) is integrally formed with the annular wall of the first rotating shaft (8-1); A second rotating shaft (8-3), the second rotating shaft (8-3) being arranged on the base (1), and the second rotating shaft (8-3) being driven by a motor, the motor being arranged in the base (1) and connected to an external power source; A limiting plate (8-4) is integrally formed with the annular wall of the second rotating shaft (8-3); a limiting groove (8-5) is provided at the bottom of the first rotating shaft (8-1), and the second rotating shaft (8-3) and the limiting plate (8-4) are embedded in the limiting groove (8-5).

4. The high-efficiency dough mixer for preventing dough from sticking according to claim 3, characterized in that: The water adding mechanism (9) comprises: A water tank (9-1), wherein the water tank (9-1) is fixed to the rear side of the upper end of the No. 1 cover (3) on the left side; a No. 2 cover (9-2) is provided on the water tank (9-1); A water outlet pipe (9-3) is connected to the bottom of the water tank (9-1) through the water outlet pipe (9-3); a valve is provided in the water outlet pipe (9-3); The third rotating shaft (9-4) is connected to the switch of the valve of the water outlet pipe (9-3), and the third rotating shaft (9-4) is movably arranged in the first cover body (3) on the left side.

5. The high-efficiency dough mixer for preventing dough from sticking according to claim 4, characterized in that: A hand screw (9-5) is fixed to the outer end of the third rotating shaft (9-4), a first spring (9-6) is provided at the rear end of the hand screw (9-5), the first spring (9-6) is sleeved on the third rotating shaft (9-4), one end of the first spring (9-6) is fixed to the hand screw (9-5), and the other end of the first spring (9-6) is fixed to the first cover (3).

6. The high-efficiency dough mixer for preventing dough from sticking according to claim 5, characterized in that: A vibration motor (10-5) is fixed on the cover plate (10-4), and the vibration motor (10-5) has a built-in power supply.