Highly uniform mixing device capable of preventing adhesion of inner wall

By designing an anti-stick mixing device, using a polished inner wall and an inclined mixing tank structure, combined with the main body lifting and auxiliary stabilization mechanism, the problem of sticky materials in bread making is solved, and efficiency and cleanliness are improved.

CN223182859UActive Publication Date: 2025-08-05HANGZHOU ISABEL CAKE FOOD CO LTD
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Patent Information

Application Number
CN202422512862.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-05
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

During the bread making process, the existing mixing and stirring device is easy to stick to the inner wall, affecting the cleaning and bread making efficiency.

Method used

A highly mixing device with anti-stick inner wall is designed, adopting a polished inner wall and an inclined mixing tank structure, combined with the main lifting mechanism and auxiliary stabilization mechanism, mixing is carried out through a motor drive to reduce the stickiness of the material.

Benefits of technology

It improves the efficiency of bread making, reduces stickiness, facilitates subsequent cleaning, and improves the stability and convenience of use of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223182859U_ABST
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Abstract

The utility model discloses an inner wall anti-sticking height mixing device, which comprises a main body lifting mechanism, an anti-sticking mechanism and an auxiliary stabilizing mechanism, the middle part of the main body lifting mechanism is provided with the anti-sticking mechanism, and the bottom end of the main body lifting mechanism is provided with the auxiliary stabilizing mechanism. According to the highly uniform mixing device with the anti-sticking inner wall, a material required to be uniformly mixed is put into the stirring tank, then the stirring tank is fit and put into the placement tank to be matched with the clamping groove to finish stable placement and clamping, and as the peripheral inner wall of the stirring tank adopts the polishing inner wall design, the smoothness of the surface of the inner wall can be increased, so that the material is prevented from being stuck on the inner wall during stirring; and meanwhile, the whole inner wall of the stirring tank adopts an inclined design, so that the materials in the uniform mixing process can be matched with the stirring rods which are folded inwards to achieve a stable stirring and flowing effect, and the dough materials in the stirring process form a stable flowing state, thereby reducing the sticking phenomenon, achieving the high uniform mixing process, improving the bread making efficiency and facilitating subsequent cleaning.
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Description

Technical Field

[0001] The utility model relates to the technical field of bread production, in particular to a high-level mixing device with an anti-sticking inner wall. Background Art

[0002] Bread, also known as noodle, is a food made from grain flour and heated. It uses wheat flour as the main raw material, yeast, eggs, oil, sugar, salt and other ingredients as auxiliary materials, and water is added to form a dough. It is a baked food made through processes such as dividing, shaping, proofing, baking and cooling. In the process of bread making, various raw materials need to be stirred and mixed to form dough, so as to facilitate the next step of shaping and baking.

[0003] When using existing mixing and stirring devices, it is necessary to mix and stir raw materials such as flour, sugar, yeast, salt and water to form a viscous state. As the stirring speed increases and the time increases, dough is formed. In the viscous state before the dough is formed, the viscous material is easy to stick to the inner wall of the stirring device, affecting subsequent cleaning and continued use, thereby reducing the overall efficiency of bread making. For this reason, we propose a high-level mixing device with an anti-sticking inner wall. Utility Model Content

[0004] The purpose of the present utility model is to provide a highly uniform mixing device with an anti-sticking inner wall, so as to solve the problem that the existing uniform mixing and stirring device proposed in the above background technology needs to mix and stir raw materials such as flour, sugar, yeast, salt and water to form a viscous state during use, and as the stirring speed is increased and the time is prolonged, dough is formed. In the viscous state before the dough is formed, the viscous material is easy to stick to the inner wall of the stirring device, affecting subsequent cleaning and continued use, thereby reducing the overall bread making efficiency.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a highly uniform mixing device with anti-sticking inner wall, comprising a main lifting mechanism, an anti-sticking mechanism and an auxiliary stabilizing mechanism, wherein the middle part of the main lifting mechanism is provided with an anti-sticking mechanism, and the bottom end of the main lifting mechanism is provided with an auxiliary stabilizing mechanism, the anti-sticking mechanism comprises a placement groove, a stirring groove, a clamping groove, a polished inner wall, an axis frame and a stirring rod, and the inner wall around the placement groove is fitted with the stirring groove, the outer wall around the stirring groove is distributed with clamping grooves, and the inner wall around the stirring groove is distributed with polished inner walls, an axis frame is provided above the placement groove, and the outer wall around the axis frame is distributed with stirring rods.

[0006] Furthermore, the stirring rods are evenly distributed along the outer walls of the shaft frame, and the shaft frame is connected to the main body lifting mechanism.

[0007] Furthermore, the agitating tank forms a locking structure with the placement tank through the locking groove, and the polished inner wall is evenly distributed along the inner wall around the agitating tank.

[0008] Furthermore, the main lifting mechanism includes a main frame, a control panel, a lifting cylinder, a top cover, a motor and a telescopic rod, and a control panel is provided on the outer wall of one side of the main frame, a lifting cylinder is provided on the top of one end of the main frame, and a top cover is provided on the top of the lifting cylinder, a motor is provided in the middle of the top cover, and telescopic rods are distributed on both sides of the bottom end of the top cover.

[0009] Furthermore, the main frame and the top cover form a lifting structure through a lifting cylinder, and the telescopic rods are symmetrically distributed along the bottom end of one side of the top cover.

[0010] Furthermore, the auxiliary stabilization mechanism includes a base, a bottom cushion layer and support piles, and the bottom end of the base is provided with a bottom cushion layer, and support piles are distributed around the base.

[0011] Furthermore, the support piles are embedded and distributed around the bottom end of the base, and the bottom cushion layer and the base are fixedly connected.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: the highly mixing device with anti-sticking inner wall puts the required mixing materials into the stirring tank, and then fits the stirring tank into the placement tank and cooperates with the card slot to complete stable placement and engagement. After placement is completed, the motor drives the shaft frame and the stirring rod connected below to perform the mixing process. During the mixing, since the inner walls of the stirring tank are designed with polished inner walls, the smoothness of the inner wall surface can be increased, thereby avoiding the adhesion of the materials to the inner wall during mixing. At the same time, the entire inner wall of the stirring tank adopts an inclined design, which allows the materials in the mixing process to cooperate with the inward-retracted stirring rod to achieve a stable stirring flow effect, allowing the dough materials being mixed to form a stable flow state, thereby reducing the occurrence of sticking, achieving a highly mixing process, improving bread making efficiency, and facilitating subsequent cleaning.

[0013] When this mixing equipment is in use, the top cover can be lifted through the lifting structure composed of the lifting cylinder and the top cover of the main frame, which can facilitate the placement of the mixing tank and the pouring of materials. During the lifting process, the telescopic rods distributed on both sides of the bottom of the top cover can keep the overall lifting process stable, and the motor carried in the middle of the top cover can provide driving force for the mixing process. After the placement of the mixing tank is completed, it is lowered by the lifting cylinder to complete the placement process of the entire material. After the mixing process is completed, the material can be taken out in the same way, which is convenient and quick.

[0014] In this stirring and mixing process, the required mixing materials can be placed in the stirring tank, and then the stirring tank can be fit into the placement tank and matched with the card slot to complete the stable placement and engagement. After the placement is completed, the motor drives the shaft frame and the stirring rod connected below to perform the mixing process. During the mixing, since the inner walls of the stirring tank are designed with polished inner walls, the smoothness of the inner wall surface can be increased, thereby avoiding the adhesion of the materials to the inner wall during mixing. At the same time, the entire inner wall of the stirring tank adopts an inclined design, which allows the materials in the mixing process to cooperate with the inward-retracted stirring rod to achieve a stable stirring flow effect, allowing the dough materials being mixed to form a stable flow state, thereby reducing the occurrence of sticking and facilitating subsequent cleaning.

[0015] The bottom of this mixing device is fixed to the base through a soft rubber cushion layer, allowing the bottom of the entire device to fit stably in the placement environment during placement. Lead support piles embedded around it increase the weight of the surrounding points, further improving the stability and reducing the vibration during the mixing process. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0017] Figure 2 This is a side view of the internal structure of the anti-sticking mechanism of the utility model;

[0018] Figure 3 This is a schematic diagram of the bottom structure of the auxiliary stabilizing mechanism of the utility model.

[0019] In the figure: 1. Main body lifting mechanism; 101. Main frame; 102. Control panel; 103. Lifting cylinder; 104. Top cover; 105. Motor; 106. Telescopic rod; 2. Anti-sticking mechanism; 201. Placement tank; 202. Mixing tank; 203. Card slot; 204. Polished inner wall; 205. Axle frame; 206. Mixing rod; 3. Auxiliary stabilization mechanism; 301. Base; 302. Bottom cushion layer; 303. Support pile. DETAILED DESCRIPTION

[0020] like Figure 1As shown, a high-mixing device with anti-sticking of the inner wall comprises: a main lifting mechanism 1; an anti-sticking mechanism 2 is provided in the middle of the main lifting mechanism 1, and an auxiliary stabilizing mechanism 3 is provided at the bottom end of the main lifting mechanism 1, the main lifting mechanism 1 comprises a main frame 101, a control panel 102, a lifting cylinder 103, a top cover 104, a motor 105 and a telescopic rod 106, and a control panel 102 is provided on one side outer wall of the main frame 101, a lifting cylinder 103 is provided on the top of one end of the main frame 101, and a top cover 104 is provided on the top of the lifting cylinder 103, a motor 105 is provided in the middle of the top cover 104, and telescopic rods 106 are distributed on both sides of the bottom end of the top cover 104, and the main frame 101 is connected to the top cover 104 by the lifting cylinder 103. The cover 104 constitutes a lifting structure, and the telescopic rods 106 are symmetrically distributed along the bottom end of one side of the top cover 104. When this mixing equipment is in use, the top cover 104 can be lifted through the lifting structure composed of the lifting cylinder 103 and the top cover 104 through the main frame 101, which can facilitate the placement of the mixing tank 202 and the pouring of materials. During the lifting process, the telescopic rods 106 distributed on both sides of the bottom end of the top cover 104 can keep the overall lifting process stable, and the motor 105 carried in the middle of the top cover 104 can provide driving force for the mixing process. After the placement of the mixing tank 202 is completed, it is lowered through the lifting cylinder 103 to complete the placement process of the entire material. After the mixing process is completed, the material can be taken out in the same way, which is convenient and quick.

[0021] like Figure 2As shown, a highly uniform mixing device with anti-sticking of the inner wall, the anti-sticking mechanism 2 includes a placement tank 201, a stirring tank 202, a clamping groove 203, a polished inner wall 204, an axis frame 205 and a stirring rod 206, and the inner wall of the placement tank 201 is attached to the stirring tank 202, the outer wall of the stirring tank 202 is distributed with the clamping groove 203, and the inner wall of the stirring tank 202 is distributed with the polished inner wall 204, a axis frame 205 is provided above the placement tank 201, and the outer wall of the axis frame 205 is distributed with the stirring rod 206, the stirring rod 206 is evenly distributed along the outer wall of the axis frame 205, and the axis frame 205 is connected to the main lifting mechanism 1, the stirring tank 202 forms a clamping structure with the placement tank 201 through the clamping groove 203, and the polished inner wall 204 is evenly distributed along the inner wall of the stirring tank 202. During the mixing process, the required mixing materials can be placed in the mixing tank 202, and then the mixing tank 202 can be fit into the placement tank 201 and matched with the card slot 203 to complete the stable placement and engagement. After the placement is completed, the motor 105 drives the shaft frame 205 and the stirring rod 206 connected below to perform the mixing process. During the mixing, since the inner wall design of the mixing tank 202 adopts the polished inner wall 204 design, the smoothness of the inner wall surface can be increased, thereby avoiding the adhesion of the mixing material to the inner wall. At the same time, the entire inner wall of the mixing tank 202 adopts an inclined design, which allows the materials in the mixing process to cooperate with the inward-retracted stirring rod 206 to achieve a stable stirring flow effect, allowing the dough materials being mixed to form a stable flow state, thereby reducing the occurrence of sticking, achieving a highly mixing process, improving bread making efficiency, and facilitating subsequent cleaning.

[0022] like Figure 3 As shown, a highly mixing device with anti-sticking inner wall, the auxiliary stabilizing mechanism 3 includes a base 301, a bottom cushion layer 302 and support piles 303, and the bottom end of the base 301 is provided with a bottom cushion layer 302, and the base 301 is distributed around the support piles 303, and the support piles 303 are embedded along the bottom end of the base 301, and the bottom cushion layer 302 and the base 301 are fixedly connected. The bottom end of this mixing device is fixed to the base 301 by the bottom cushion layer 302 of soft rubber material, so that the bottom end of the entire device can be stably fitted into the placement environment during the placement process, and then the lead support piles 303 embedded around the four sides are used to increase the weight of the four points, further improve the stability effect, and reduce the vibration during the stirring and mixing process.

[0023] In summary, when the high-pressure mixing device with anti-sticking inner wall is in use, first, when the mixing device is in use, the main frame 101 can be used to lift the top cover 104 through the lifting structure composed of the lifting cylinder 103 and the top cover 104, so that the mixing tank 202 can be placed and the materials can be poured out conveniently. During the lifting process, the telescopic rods 106 distributed on both sides of the bottom of the top cover 104 can keep the whole lifting process stable, and the motor 105 carried by the middle of the top cover 104 can provide driving force for the mixing process. After the mixing tank 202 is placed, the lifting cylinder 103 is lowered to complete the whole material placement process. After the mixing process is completed, the material can be taken out in the same way, which is convenient and fast. In this mixing process, the required mixing material can be placed in the mixing tank 202, and then the mixing tank 202 can be fit into the placement tank 201 and matched with the card slot 203 to complete the stable placement and engagement. After the placement is completed, the motor 105 is used to lower the mixing tank 202. 105 drives the shaft frame 205 and the stirring rod 206 connected below to perform the mixing process. During the mixing, since the inner wall design of the stirring tank 202 adopts the polished inner wall 204 design, the smoothness of the inner wall surface can be increased, thereby preventing the material from sticking to the inner wall during mixing. At the same time, the entire inner wall of the stirring tank 202 adopts an inclined design, which can allow the material in the mixing process to cooperate with the inward-retracted stirring rod 206 to achieve a stable stirring flow effect, allowing the dough material in the mixing process to form a stable flow state, thereby reducing the occurrence of sticking, achieving a highly mixed process, improving bread making efficiency, and facilitating subsequent cleaning. The bottom end of this mixing device is fixed to the base 301 through a soft rubber bottom pad 302, so that the bottom end of the entire device can be stably fitted into the placement environment during placement, and then the lead support piles 303 embedded around it are used to increase the weight of the surrounding points, further improving the stability effect and reducing the vibration during the mixing process.

Claims

1. A highly homogenous mixing device with an anti-sticking inner wall, comprising a main body lifting mechanism (1), an anti-sticking mechanism (2) and an auxiliary stabilizing mechanism (3), characterized in that: The middle part of the main body lifting mechanism (1) is provided with an anti-sticking mechanism (2), and the bottom end of the main body lifting mechanism (1) is provided with an auxiliary stabilizing mechanism (3), the anti-sticking mechanism (2) comprises a placement groove (201), a stirring groove (202), a clamping groove (203), a polished inner wall (204), an axis frame (205) and a stirring rod (206), and the inner walls of the placement groove (201) are attached to the stirring groove (202), the outer walls of the stirring groove (202) are distributed with the clamping grooves (203), and the inner walls of the stirring groove (202) are distributed with polished inner walls (204), the axis frame (205) is provided above the placement groove (201), and the outer walls of the axis frame (205) are distributed with stirring rods (206).

2. The high-level mixing device for preventing inner wall sticking according to claim 1, characterized in that: The stirring rods (206) are evenly distributed along the outer walls of the shaft frame (205), and the shaft frame (205) is connected to the main body lifting mechanism (1).

3. The high-level mixing device for preventing inner wall sticking according to claim 1, characterized in that: The stirring tank (202) forms a locking structure with the placement tank (201) through the locking groove (203), and the polished inner wall (204) is evenly distributed along the inner wall around the stirring tank (202).

4. The high-level mixing device for preventing inner wall sticking according to claim 1, characterized in that: The main body lifting mechanism (1) comprises a main frame (101), a control panel (102), a lifting cylinder (103), a top cover (104), a motor (105) and a telescopic rod (106), wherein the control panel (102) is provided on an outer wall of one side of the main frame (101), a lifting cylinder (103) is provided on the top of one end of the main frame (101), and a top cover (104) is provided on the top of the lifting cylinder (103), a motor (105) is provided in the middle of the top cover (104), and telescopic rods (106) are distributed on both sides of the bottom of the top cover (104).

5. The high-level mixing device for preventing inner wall from sticking according to claim 4, characterized in that: The main frame (101) forms a lifting structure with the top cover (104) through the lifting cylinder (103), and the telescopic rods (106) are symmetrically distributed along the bottom end of one side of the top cover (104).

6. The high-level mixing device for preventing inner wall from sticking according to claim 1, characterized in that: The auxiliary stabilizing mechanism (3) comprises a base (301), a bottom cushion layer (302) and support piles (303), wherein the bottom end of the base (301) is provided with the bottom cushion layer (302), and support piles (303) are distributed around the base (301).

7. The high-level mixing device for preventing inner wall from sticking according to claim 6, characterized in that: The support piles (303) are embedded and distributed around the bottom end of the base (301), and the bottom cushion layer (302) and the base (301) are fixedly connected.