Rapid cooling wall breaking machine

By designing the outer cover and cold air components in the wall breaker, forming an air-cooled chamber and taking away heat, the problem of poor cooling effect of the wall breaker is solved, rapid cooling is achieved, and user experience is improved.

CN222898963UActive Publication Date: 2025-05-27GUANGDONG XINBAO ELECTRICAL APPLIANCES HLDG CO LTD
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Patent Information

Application Number
CN202421967623.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-05-27
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

After the existing wall breaker is stirred, the cooling effect is poor, resulting in a high temperature of the mixing cup, affecting the user's drinking experience.

Method used

A wall breaker that quickly cools down is designed, using a combination of outer cover and cold air components. Through the design of the air-cooled chamber and the drive of the fan, the heat of the slurry cup is taken away and the temperature is achieved quickly.

Benefits of technology

Through the use of the cold air component, the cup can be cooled to a suitable temperature for consumption in a short time, which significantly improves the user's drinking experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rapid cooling wall breaking machine which comprises a main machine and a pulp cup and further comprises an outer cover and a cold air assembly. The outer cover is detachably assembled on the main machine and covers the soybean milk cup, and an air cooling cavity is formed between the inner wall of the outer cover and the outer wall of the soybean milk cup; the cold air assembly is assembled on the host and communicates with the air cooling cavity; the cold air assembly at least comprises a fan; the fan drives external airflow to enter the air cooling cavity, the airflow takes away heat when flowing through the outer wall of the slurry cup, and the airflow flows out from the air outlet of the outer cover; according to the wall breaking machine capable of rapidly cooling, after food is stirred by the wall breaking machine, the cold air assembly is started to blow external cold air into the air cooling cavity, the temperature of the pulp cup is taken away in the airflow flowing process, rapid cooling of the pulp cup and the food in the pulp cup is effectively achieved, the temperature suitable for eating is achieved, and the cooling effect is good.
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Description

Technical Field

[0001] The utility model relates to the technical field of wall breakers, and more specifically to a wall breaker with rapid cooling. Background Art

[0002] A wall breaker is a cooking machine that crushes or stirs food materials evenly by high-speed stirring of a stirring knife. In addition to the crushing / stirring function, the wall breaker also has an additional heating function, such as heating when making soy milk to boil the soy milk.

[0003] In the prior art, the cooling technology applied to the wall breaker mainly dissipates heat from the motor part inside the body of the wall breaker. The motor rotates at a high speed and drives the stirring knife to rotate at a high speed. The motor generates a large amount of heat, and the body is prone to heat. In order to prevent the motor from burning out when the wall breaker operates for a long time.

[0004] In addition, after the wall breaker makes soy milk, the temperature of the stirring cup is relatively high. Generally, the soy milk is poured out into a glass cup and left to cool, and the remaining soy milk cools together with the stirring cup in the stirring cup; or, after all the soy milk is poured out, cold water is injected into the stirring cup to cool the stirring cup by water cooling; in order to enable the stirring cup containing soy milk to achieve rapid cooling and reach a temperature suitable for users to drink, a wall breaker with the Chinese publication number CN219374455U includes a base assembly, a body assembly and an outer cover; the base assembly includes a base and a main housing, and a closed inner cavity is formed between the main housing and the base; a heat insulation space is formed between the cup body and the outer cover; under the action of the fan blade, gas forms an internal circulation flow in the inner cavity, the heat insulation space and the internal space of the cup holder. In this prior art, although the gas flows in the heat insulation space, its main purpose is to effectively disperse the heat generated when the motor and the circuit board operate evenly to each area of the wall breaker, and then perform contact heat exchange with the outside through the main housing, the base and the outer cover, but its cooling effect is not good.

[0005] In order to achieve air-cooling after the food stirring is completed, the present application improves the prior art and proposes the following wall breaker with rapid cooling. Summary of the Utility Model

[0006] In view of this, the utility model provides a wall breaker with rapid cooling.

[0007] In order to achieve the above object, the utility model adopts the following technical scheme: a wall breaker with rapid cooling, including: a main machine and a pulp cup, and further including:

[0008] An outer cover, detachably assembled to the main machine and covering the pulp cup, and an air-cooling cavity is formed between the inner wall of the outer cover and the outer wall of the pulp cup;

[0009] An air-cooling component, assembled to the main machine and communicated with the air-cooling cavity;

[0010] The cold air component at least includes a fan;

[0011] The fan drives external air flow into the air-cooling cavity. When the air flow passes through the outer wall of the pulp cup, it takes away heat, and the air flow flows out from the air outlet of the outer cover.

[0012] This technical solution provides a wall breaker with rapid cooling. After the food stirring is completed, the cold air component starts to blow the external cold air into the air-cooling cavity. During the process of air flow, the temperature of the pulp cup is taken away, effectively realizing the rapid cooling of the pulp cup and the food in the pulp cup, reaching a suitable temperature for consumption, and having a good cooling effect.

[0013] As a preferred solution of the present utility model, an air inlet of the outer cover is provided on the side wall of the outer cover, and an air outlet of the outer cover is provided on the upper part of the outer cover. This technology defines the positions of the air inlet of the outer cover and the air outlet of the outer cover. During the air flow process, the air flows from the low position to the high position, which conforms to the principle of hot air rising, and the air flow distance is large, which can more effectively cool the pulp cup.

[0014] As a preferred solution of the present utility model, the cold air component further includes: an air housing, which is provided with a cold air inlet and a cold air outlet; the fan is assembled in the air housing; the air inlet of the outer cover is communicated with the cold air outlet of the air housing; in this technology, an air duct can be defined in the air housing, and when the fan operates, it can effectively guide the air flow to smoothly flow into the air-cooling cavity.

[0015] As a preferred solution of the present utility model, the air housing is arranged on the periphery of the main body and protrudes upward from the main body; the cold air inlet is arranged on the periphery or the low position of the air housing; the cold air outlet is arranged at the high position of the air housing and is communicated with the air inlet of the outer cover. In this technology, the air housing is arranged on the periphery of the main body and protrudes upward from the main body, which is more convenient for connecting the cold air outlet with the air inlet of the outer cover.

[0016] As a preferred solution of the present utility model, the main body has a housing, and an air outlet of the housing is provided at the top of the housing. After the outer cover is assembled on the main body, the air outlet of the housing is within the covering range of the outer cover, and the air outlet of the housing is communicated with the air-cooling cavity; in this technology, the air outlet of the housing is arranged at the top of the housing of the main body, and the outer cover no longer has an air inlet of the outer cover, reducing the steps of aligning the position with the cold air component after the outer cover is assembled on the main body. The air outlet of the housing is within the covering range of the outer cover, ensuring that external air can enter the air-cooling cavity through the air outlet of the housing.

[0017] As a preferred solution of the present utility model, the housing is further provided with an air inlet of the housing;

[0018] The cold air component further includes: an air housing, which is connected between the air inlet of the housing and the air outlet of the housing, and the fan is assembled in the air housing; in this technology, the cold air component can be hidden in the housing of the main body.

[0019] As a preferred solution of the present utility model, the outer cover and the main body are limited by a limiting component, which can prevent the outer cover from shifting due to vibration during the operation of the wall breaker, and prevent the outer cover from shifting due to the air pressure of the air flow during the operation of the cold air component, thus affecting the use.

[0020] As a preferred solution of the present utility model, the limiting component includes: a limiting protrusion and a knob;

[0021] One of the limiting protrusion and the knob is arranged on the outer cover, and the other is arranged on the main body;

[0022] In this technology, during use, the outer cover is stably assembled to the main body through the cooperation of the limiting protrusion and the knob.

[0023] As a preferred solution of the present utility model, the pulp cup includes: a cup body and a pressure-bearing and sealing cup cover, and the pressure-bearing and sealing cup cover is assembled at the open top of the cup body.

[0024] As a preferred solution of the present utility model, the pulp cup is detachably assembled to the main body; a stirring knife is arranged in the pulp cup, and it is convenient to clean after the pulp cup is removed.

[0025] The remaining beneficial technical effects of the present utility model are reflected in the specific implementation manners. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.

[0027] Figure 1 It is a schematic structural diagram of the rapid cooling wall breaker of the present utility model;

[0028] Figure 2 It is a schematic sectional view of the rapid cooling wall breaker of the present utility model;

[0029] Figure 3 It is an exploded view of the rapid cooling wall breaker of the present utility model;

[0030] Figure 4 It is a schematic structural diagram of the cold air component arranged in the main body.

[0031] DESCRIPTION OF THE REFERENCE NUMERALS

[0032] Main body 100; Outer shell air inlet 101; Knob 110; Pulp cup 200; Cup body 210; Pressure-bearing and sealing cup cover 220;

[0033] Stirring blade 230; outer cover 300; air-cooling cavity 301; outer cover air inlet 302; outer cover air outlet 303; limit protrusion 310; cold air assembly 400; fan 410; air housing 420; cold air inlet 421; cold air outlet 422. Detailed implementation

[0034] Now, the present invention will be further described in detail with reference to the accompanying drawings. These drawings are all simplified schematic diagrams, only illustrating the basic structure of the present invention in a schematic manner, so they only show the components related to the present invention.

[0035] A wall breaker with rapid cooling, please refer to Figures 1 - 3 As shown in the figure, it includes: a main body 100, a pulp cup 200, an outer cover 300, and a cold air assembly 400.

[0036] The pulp cup 200 is assembled to the main body 100, and the main body 100 drives the stirring blade 230 to rotate at a high speed in the pulp cup 200 to crush / stir the food;

[0037] The structure between the main body 100 and the pulp cup 200 can be a fixed structure or a split structure. In the fixed structure, the pulp cup 200 is fixed on the main body 100 and cannot be disassembled; in the split structure, the pulp cup 200 is detachably installed on the main body 100. After the food is made, the pulp cup 200 is removed from the main body 100, which is convenient for cleaning the pulp cup 200.

[0038] In the split structure, a stirring blade 230 is arranged in the pulp cup 200. The stirring blade 230 is connected with an upper connector, and the upper connector extends out of the bottom of the pulp cup 200; a motor is arranged in the main body 100, and the motor drives a lower connector. After the pulp cup 200 is assembled to the main body 100, the upper connector and the lower connector are engaged, and the motor drives the lower connector and the upper connector, and finally drives the stirring blade 230 to rotate at a high speed.

[0039] In order to achieve the heating effect, a heating element is arranged at the bottom of the main body 100 or the bottom of the pulp cup 200, which can heat the ingredients in the pulp cup 200.

[0040] The outer cover 300 is installed on the main body 100 and covers the outside of the pulp cup 200. An air-cooling cavity 301 is formed between the inner wall of the outer cover 300 and the outer wall of the pulp cup 200;

[0041] The cold air assembly 400 at least includes a fan 410. The fan 410 drives the air flow to flow through the air-cooling cavity 301 to take away the heat of the pulp cup 200 and achieve rapid cooling of the pulp cup 200.

[0042] After the wall breaker executes a certain function (such as the soymilk function), the cold air component 400 is started, the fan 410 runs, and the air flow is pushed into the air-cooling cavity 301. The cold air blows towards the pulp cup 200, and the heat on the pulp cup 200 is taken away by the low-temperature air flow, realizing the rapid cooling of the pulp cup 200.

[0043] Furthermore, all wall breakers are provided with an electronic board, and various programs are pre-written on the electronic board to correspondingly realize different functions. For example, the wall breaker can realize functions such as the juice function, the soymilk function, and the soup cooking function. For functions that require heating such as the soymilk function and the soup cooking function, it can also be set through the program that after these functions are completed, the cold air component 400 is automatically started and stops after running for X minutes, so that the pulp cup 200 and the food are cooled, with a higher degree of intelligence.

[0044] Here, X minutes can be set to any value in the range of 5 minutes to 10 minutes.

[0045] Of course, the operation of the cold air component 400 can also be controlled manually and used as needed.

[0046] In one embodiment, as Figures 2 - 3 shown, the outer cover 300 is provided with an outer cover air inlet 302 and an outer cover air outlet 303;

[0047] Specifically, the lower part of the outer cover 300 is provided with the outer cover air inlet 302, and the upper part of the outer cover 300 is provided with the outer cover air outlet 303;

[0048] In this embodiment, the outer cover air inlet 302 is provided on the side wall of the lower part of the outer cover 300, and the outer cover air outlet 303 is provided on the top of the outer cover 300; after the air flow enters the air-cooling cavity 301 from the outer cover air inlet 302, it flows out from the outer cover air outlet 303;

[0049] Optionally, the outer cover air inlet 302 can also be provided on the side wall of the lower part of the outer cover 300, and the outer cover air outlet 303 is provided on the side wall of the upper part of the outer cover 300, which can also realize that after the air flow enters the air-cooling cavity 301 from the outer cover air inlet 302, it flows out from the outer cover air outlet 303.

[0050] Furthermore, there is one outer cover air inlet 302, and there can be multiple outer cover air outlets 303.

[0051] Continuing as Figures 2 - 3 shown, the cold air component 400 further includes: a wind shell 420, the wind shell 420 is provided with a cold air inlet 421 and a cold air outlet 422, a wind channel is formed inside the wind shell 420, the cold air inlet 421 and the cold air outlet 422 are distributed at both ends of the wind channel, the fan 410 is assembled inside the wind shell 420 and is located in the wind channel, and the outer cover air inlet 302 is communicated with the cold air outlet 422 of the wind shell 420;

[0052] Further, the air housing 420 is disposed around the main body 100 and protrudes upward from the main body 100.

[0053] As Figure 3 shown, the air housing 420 can be divided into a left housing and a right housing. The left housing can be integrally injection-molded with the outer shell of the main body 100. The right housing is assembled to the left housing, and the blower 410 is located between the left housing and the right housing;

[0054] The air housing 420 protruding upward from the main body 100 is to make the cold air outlet 422 of the air housing 420 communicate with the outer cover air inlet 302 more conveniently;

[0055] The cold air inlet 421 is disposed at a lower position of the air housing 420, and the cold air outlet 422 is disposed at a higher position of the air housing 420 and communicates with the outer cover air inlet 302; specifically, the cold air outlet 422 is disposed on the circumferential side of the air housing 420.

[0056] Here, the specific model of the blower 410 is not limited in this embodiment.

[0057] Further, as Figure 2 shown, the outer cover air inlet 302 is disposed at the lower part of the outer cover 300. After the outer cover 300 is installed on the main body 100 at a correct angle, the outer cover air inlet 302 communicates with the cold air outlet 422 of the air housing 420 correspondingly; when the air flows, as Figure 2 shown by the arrow direction, the air enters the air housing 420 from the cold air inlet 421, then flows through the cold air outlet 422 and the outer cover air inlet 302 in sequence and then flows into the air cooling chamber 301. The air rises in the air cooling chamber 301, takes away the heat of the pulp cup 200, and finally is sent out from the outer cover air outlet 303, realizing rapid cooling of the pulp cup 200.

[0058] Optionally, a silica gel sealing strip can be provided at the edges of the outer cover air inlet 302 and the cold air outlet 422. When the outer cover air inlet 302 and the cold air outlet 422 communicate correspondingly, they are sealed by the silica gel sealing strip, and the air intake effect in the air cooling chamber 301 is better.

[0059] In one embodiment, as Figure 4 shown, the main body 100 has an outer shell, and an outer shell air outlet (not shown in the figure) is provided at the top of the outer shell. After the outer cover 300 is assembled to the main body 100, the outer shell air outlet is within the covering range of the outer cover 300, and the outer shell air outlet communicates with the air cooling chamber 301.

[0060] And the outer shell is further provided with an outer shell air inlet 101;

[0061] The cold air assembly 400 is installed inside the main body 100. The cold air assembly further includes: an air housing 420, which is connected between the air inlet 101 of the housing and the air outlet of the housing, and a blower 410 assembled inside the air housing 420. Specifically, as Figure 4 shown, the air inlet 101 of the housing is provided on the side surface of the housing of the main body 100.

[0062] Continuing as Figure 4 shown, during use, the blower 410 operates, external air flow enters the air housing 420 through the air inlet 101 of the housing, and then flows upward into the air-cooling cavity 301 through the air outlet of the housing. When the air flow passes through the slurry cup 200, heat is carried away, and finally the air flow flows out from the air outlet 303 at the top of the outer cover 300, thereby achieving the purpose of quickly cooling the slurry cup 200.

[0063] In one embodiment, in order to stably assemble the outer cover 300 to the main body 100 and prevent the outer cover 300 from shifting or falling under the action of air pressure or vibration generated during the operation of the wall breaker, the outer cover 300 and the main body 100 are limited by a limiting component.

[0064] Further, the limiting component includes: a limiting protrusion 310 and a knob 110; the limiting protrusion 310 is formed on the lower part of the outer cover 300, and the knob 110 is arranged on the main body 100; the knob 110 can rotate, and the knob 110 is provided with a hook portion. As Figure 1 shown, after the outer cover 300 is installed on the main body 100, rotate the knob 110 to make the hook portion of the knob 110 hook the limiting protrusion 310, then the outer cover 300 is limited to the main body 100; during the operation of the wall breaker and when a relatively large air pressure is generated in the air-cooling cavity 301 during the operation of the cold air assembly 400, the outer cover 300 does not break away from the main body 100 and does not shift.

[0065] After the slurry cup 200 is cooled, rotate the knob 110 to make it leave the limiting protrusion 310, and the outer cover 300 can be taken out, and then the slurry cup 200 can be taken out continuously.

[0066] Optionally, the knob 110 is installed on the main body 100 through a knob shaft. A safety switch can be provided inside the main body 100. When the knob 110 rotates to hook the limiting protrusion 310, the knob shaft triggers the safety switch, and the safety switch closes to connect the circuit; when the knob 110 rotates to leave the limiting protrusion 310, the knob shaft no longer triggers the safety switch, and the safety switch disconnects to disconnect the circuit, then the motor and the heating element stop running, and the safety is higher.

[0067] In one embodiment, the slurry cup 200 includes: a cup body 210 and a pressure-bearing and sealed cup cover 220, and the pressure-bearing and sealed cup cover 220 is assembled at the open top of the cup body 210;

[0068] The pressure-bearing and sealed cup lid 220 is provided with a sealing ring. When the pressure-bearing and sealed cup lid 220 is installed on the cup body 210, it is sealed through the sealing ring.

[0069] The pressure-bearing and sealed cup lid 220 can be directly installed in an embedded manner at the open top of the cup body 210. The sealing ring is squeezed between the inner wall of the open mouth of the cup body 210 and the pressure-bearing and sealed cup lid 220, so that the pressure-bearing and sealed cup lid 220 will not be pushed upward by the air pressure and separated from the cup body 210 within a certain air pressure range.

[0070] Alternatively, the pressure-bearing and sealed cup lid 220 is installed on the cup body 210 by means of screwing or buckling.

[0071] When making soy milk, the soy milk in the cup body 210 is heated to generate steam, increasing the air pressure in the cup body 210.

[0072] After the soy milk is made, the air pressure in the pulp cup 200 is relatively high. At this time, if the pressure-bearing and sealed cup lid 220 is directly opened, the steam in the cup body 210 may rush out of the cup body 210 and spray upward, easily burning the user. Therefore, it is necessary to wait for the temperature of the pulp cup 200 to drop. By operating the cold air component 400, the pulp cup 200 can be cooled within a short time, achieving the effect of quickly opening the pressure-bearing and sealed cup lid 220.

[0073] Therefore, after the soy milk is made, the cold air component 400 operates to cool down, quickly reducing the temperature inside the pulp cup 200. Then, the outer cover 300 is removed. After the temperature and pressure inside the pulp cup 200 are reduced, the effect of quickly opening the pressure-bearing and sealed cup lid 220 can be achieved.

[0074] When the wall-breaking machine of the present utility model executes the soy milk function, beans and a certain amount of water are placed in the pulp cup 200. After the pulp cup 200 is assembled to the main machine 100, the outer cover 300 is installed on the main machine 100 and covers the pulp cup 200. After the main machine 100 is powered on and the soy milk function is selected, the motor in the main machine 100 drives the stirring knife 230 to rotate at a high speed to crush the soybeans, and the main machine 100 controls the heating element to operate for heating to make soy milk.

[0075] After the soy milk is made, the cold air component 400 is turned on and stops after about 5 minutes. At this time, the temperature of the pulp cup 200 drops. After the user removes the outer cover 300, the pulp cup 200 is taken out, and the pressure-bearing and sealed cup lid 220 is opened to pour out the soy milk or the soy milk can be directly drunk using the cup body 210.

[0076] The foregoing description of the disclosed embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to the embodiments shown herein, but rather should be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A rapid cooling wall breaking machine, comprising: The main machine and the pulp cup are characterized by: The outer cover is detachably assembled on the main machine and covers the outside of the pulp cup, and an air cooling chamber is formed between the inner wall of the outer cover and the outer wall of the pulp cup; A cooling air component is mounted on the main unit and communicated with the cooling air chamber; The cold air component at least includes a fan; The fan drives the external airflow to enter the air cooling chamber, and the airflow takes away the heat when flowing through the outer wall of the pulp cup, and the airflow flows out from the outer cover air outlet of the outer cover.

2. A rapid cooling wall breaking machine according to claim 1, characterized in that: The side wall of the outer cover is provided with an outer cover air inlet, and the upper part of the outer cover is provided with an outer cover air outlet.

3. A rapid cooling wall breaking machine according to claim 2, characterized in that: The cold air component also includes: an air shell, which is provided with a cold air inlet and a cold air outlet; the fan is installed in the air shell; and the air inlet of the outer cover is connected to the cold air outlet of the air shell.

4. A rapid cooling wall breaking machine according to claim 3, characterized in that: The wind shell is arranged on the peripheral side of the main unit and protrudes upward from the main unit; the cold air inlet is arranged on the peripheral side or at a low position of the wind shell; the cold air outlet is arranged at a high position of the wind shell and communicates with the air inlet of the outer cover.

5. A rapid cooling wall breaking machine according to claim 1, characterized in that: The host has a shell, and a shell air outlet is arranged on the top of the shell. After the outer cover is assembled on the host, the shell air outlet is located within the cover setting range of the outer cover, and the shell air outlet is communicated with the air cooling cavity.

6. A rapid cooling wall breaking machine according to claim 5, characterized in that: The housing is also provided with a housing air inlet; The cold air component also includes: an air shell, the air shell is connected between the air outlet of the shell and the air inlet of the shell, and the fan is assembled in the air shell.

7. A rapid cooling wall breaking machine according to any one of claims 1 to 6, characterized in that: The outer cover and the main body are limited by a limiting component.

8. A rapid cooling wall breaking machine according to claim 7, characterized in that: The limiting assembly comprises: a limiting protrusion and a knob; One of the limiting protrusion and the knob is arranged on the outer cover, and the other is arranged on the main unit.

9. The rapid cooling wall breaking machine according to any one of claims 1 to 6, characterized in that: The pulp cup comprises: a cup body and a pressure-bearing and sealed cup cover, wherein the pressure-bearing and sealed cup cover is assembled at the open top of the cup body.

10. The rapid cooling wall breaking machine according to claim 9, characterized in that: The slurry cup can be detachably assembled on the main machine; a stirring blade is arranged in the slurry cup.

Citation Information

Patent Citations

  • Wall breaking machine

    CN219374455U