Main machine of ice crusher

By designing internal and external heat dissipation chambers and air guide chambers in the main unit of the slush machine, combined with heat dissipation fan blades and fins, the heat dissipation problem of the drive motor and control device is solved, extending the service life of the equipment.

CN223667210UActive Publication Date: 2025-12-16FOSHAN JIEHE POWER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423308779.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The heat generated by the drive motor and control device in existing slush machines cannot be effectively dissipated during use, resulting in a shortened equipment lifespan.

Method used

A slush machine main unit was designed. It forms inner and outer heat dissipation chambers between the base and the air guide shroud, and sets heat dissipation holes and air guide chambers in the middle to use airflow for efficient heat dissipation. Combined with heat dissipation fan blades and heat dissipation fins, the heat dissipation efficiency is improved.

Benefits of technology

It effectively improves the heat dissipation of the drive motor and control motherboard, extending the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a main machine of an ice crusher, which comprises a base and a wind scooper, a driving motor is arranged on the inner side of the wind scooper, the upper side of the wind scooper is open, the lower side of the wind scooper is connected with the base to form an inner heat dissipation cavity and an outer heat dissipation cavity, and the inner heat dissipation cavity is communicated with the outer heat dissipation cavity through the opening on the upper side of the wind scooper. The driving motor is arranged in the inner heat dissipation cavity, a control mainboard is arranged in the outer heat dissipation cavity and electrically connected with the driving motor, inner heat dissipation holes and outer heat dissipation holes are formed in the positions, corresponding to the inner heat dissipation cavity and the outer heat dissipation cavity, of the base respectively, and the outer heat dissipation holes, the outer heat dissipation cavity, the inner heat dissipation cavity and the inner heat dissipation holes are sequentially communicated to form a heat dissipation channel. By arranging the wind scooper, airflow can more efficiently pass through the control mainboard and the driving motor, so that the heat dissipation efficiency of the control mainboard and the driving motor is improved, the heat dissipation effect on the driving motor and the control mainboard is improved, and the service life of the ice crusher host is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of slush machine, specifically relates to a slush machine host. BACKGROUND

[0002] The slush machine is also called slush blender, slush maker, slush conditioner and the like, and is widely applied to the preparation of slush, cocktail, iced cappuccino, ice pudding, milk shake, yogurt, Sprite strawberry ice, thick banana milk shake, coconut and pineapple ice, orange honey papaya slush, fresh fruit slush and the like.

[0003] The slush machine generally completes the stirring action through the driving motor, and a control device is arranged to control the working state of the driving motor; during use, the driving motor and the control device will generate a large amount of heat, and long-time use will affect the service life of the slush machine due to the excessively high temperature.

[0004] Therefore, further improvement is needed. INVENTION CONTENTS

[0005] The utility model discloses a slush machine host, can make the airflow follow the preset path circulation better, improve the heat dissipation effect of the driving motor and control mainboard, and be favorable to prolong the service life of the slush machine host.

[0006] The utility model discloses a slush machine host, can make the airflow follow the preset path circulation better, improve the heat dissipation effect of the driving motor and control mainboard, and be favorable to prolong the service life of the slush machine host.

[0007] A slush machine host, comprising a base and a wind guide cover, the inner side of the wind guide cover is provided with a driving motor, the upper side of the wind guide cover is open, the lower side of the wind guide cover is connected with the base to form an inner heat dissipation cavity and an outer heat dissipation cavity, the inner heat dissipation cavity and the outer heat dissipation cavity are communicated through the opening on the upper side of the wind guide cover, the driving motor is arranged in the inner heat dissipation cavity, a control mainboard is arranged in the outer heat dissipation cavity, the control mainboard is electrically connected with the driving motor, the base is respectively provided with an inner heat dissipation hole and an outer heat dissipation hole at the positions corresponding to the inner heat dissipation cavity and the outer heat dissipation cavity, and the outer heat dissipation hole, the outer heat dissipation cavity, the inner heat dissipation cavity and the inner heat dissipation hole are sequentially communicated to form a heat dissipation channel.

[0008] As a specific scheme, the driving motor has a rotating shaft capable of extending to the inner heat dissipation cavity, and a heat dissipation fan blade is connected to the rotating shaft at a position corresponding to the inner heat dissipation cavity.

[0009] As a specific scheme, the base and the wind guide cover are respectively provided with a lower inner frame and an upper inner frame, the lower inner frame and the upper inner frame are tightly matched by being sleeved with each other, the inner heat dissipation cavity is formed at the inner side positions of the lower inner frame and the upper inner frame, and the inner heat dissipation hole is arranged at a position below the inner heat dissipation cavity corresponding to the base.

[0010] As a specific scheme, the base and the air deflector are respectively provided with a lower outer frame and an upper outer frame, the lower outer frame and the upper outer frame are tightly matched with each other and form an air deflection cavity, the lower outer frame and / or the upper outer frame is provided with an air deflection notch, the outer heat dissipation cavity is communicated with the air deflection cavity through the air deflection notch, and the outer heat dissipation hole is arranged at a position below the base corresponding to the air deflection cavity.

[0011] As a specific scheme, the bottom of the base is provided with an anti-skid pad, and the inner heat dissipation hole and the outer heat dissipation hole are vertically spaced from the bottom of the anti-skid pad.

[0012] As a specific scheme, the base is provided with an inner notch at a position corresponding to the outer heat dissipation hole, the bottom of the inner notch is open to the outside, and the outer heat dissipation hole is arranged at an upper side of the inner notch.

[0013] As a specific scheme, one side of the control mainboard facing the air deflector is provided with a heat dissipation fin.

[0014] As a specific scheme, the upper side of the base is further connected with a shell, the bottom of the shell is circumferentially embeddedly matched with the base, the outer heat dissipation cavity is formed in a cavity between the shell, the air deflector and the base, the shell is provided with a control panel, the control panel is electrically connected with the control mainboard, and the inner side of the control panel is arranged in the outer heat dissipation cavity.

[0015] The beneficial effects of the present application are as follows:

[0016] By arranging the air deflector, the airflow can pass through the control mainboard and the driving motor more efficiently, so that the heat dissipation efficiency of the control mainboard and the driving motor is improved, the heat dissipation effect of the driving motor and the control mainboard is improved, and the service life of the sand ice machine host is prolonged. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 The exploded view of the embodiment of the present application Figure One .

[0018] Figure 2 The exploded view of the embodiment of the present application Figure Two .

[0019] Figure 3 The exploded view of the embodiment of the present application Figure Three .

[0020] Figure 4 The cross-sectional view of the embodiment of the present application Figure One .

[0021] Figure 5 The cross-sectional view of the embodiment of the present application Figure Two .

[0022] Figure 6It is an enlarged schematic view of the embodiment A of the utility model.

[0023] Figure 7 It is an enlarged schematic view of the embodiment B of the utility model. Specific implementation

[0024] The utility model will be further described in connection with the drawings and embodiments.

[0025] Reference Figures 1-7 , the sand ice machine host computer, including base 1 and wind scooper 2, the inside of wind scooper 2 is equipped with drive motor 3, the upside of wind scooper 2 is open, the downside of wind scooper 2 is installed with base 1 and forms inner heat dissipation chamber 21 and outer heat dissipation chamber 22, inner heat dissipation chamber 21 and outer heat dissipation chamber 22 are communicated through the opening of the upside of wind scooper 2, drive motor 3 is arranged in inner heat dissipation chamber 21, control mainboard 4 is equipped in outer heat dissipation chamber 22, control mainboard 4 is electrically connected with drive motor 3, the position of base 1 corresponding inner heat dissipation chamber 21 and outer heat dissipation chamber 22 is equipped with inner heat dissipation hole 11 and outer heat dissipation hole 12 respectively, outer heat dissipation hole 12, outer heat dissipation chamber 22, inner heat dissipation chamber 21 and inner heat dissipation hole 11 are sequentially communicated to form heat dissipation passage, by setting wind scooper 2, airflow can be more efficient through control mainboard 4 and drive motor 3, to improve the heat dissipation efficiency of control mainboard 4 and drive motor 3, improve the heat dissipation effect of drive motor 3 and control mainboard 4, be favorable to prolong the service life of sand ice machine host computer.

[0026] Further, drive motor 3 has a rotating shaft capable of extending to inner heat dissipation chamber 21, a heat dissipation fan blade 31 is connected to the position of the rotating shaft corresponding to inner heat dissipation chamber 21, drive motor 3 can drive heat dissipation fan blade 31 to rotate during operation, without additional driving source for heat dissipation fan blade 31, simplifying the overall structure of sand ice machine and reducing the material cost of sand ice machine.

[0027] Further, base 1 and wind scooper 2 are respectively provided with lower inner frame 13 and upper inner frame 23, lower inner frame 13 and upper inner frame 23 are tightly matched with each other, inner heat dissipation chamber 21 is formed at the inner side position of lower inner frame 13 and upper inner frame 23, inner heat dissipation hole 11 is arranged at the position below inner heat dissipation chamber 21 of base 1, simplifying the structure of inner heat dissipation chamber 21, so that inner heat dissipation chamber 21 can be quickly assembled and formed.

[0028] Further, base 1 and wind scooper 2 are respectively provided with lower outer frame 14 and upper outer frame 24, lower outer frame 14 and upper outer frame 24 are tightly matched with each other and form air guide cavity 25, air guide notches 251 are arranged on lower outer frame 14 and / or upper outer frame 24, outer heat dissipation chamber 22 is communicated with air guide cavity 25 through air guide notches 251, outer heat dissipation hole 12 is arranged at the position below air guide cavity 25 of base 1, so that wind scooper 2 can effectively guide airflow to circulate between outer heat dissipation chamber 22 and inner heat dissipation chamber 21.

[0029] Further, the bottom of the base 1 is provided with a non-slip pad 5, and the inner heat dissipation hole 11 and the outer heat dissipation hole 12 are vertically spaced from the bottom of the non-slip pad 5, respectively. The non-slip pad 5 can reduce the chance of the snow ice machine falling and turning over, and can also make the air flow smoothly at the positions of the inner heat dissipation hole 11 and the outer heat dissipation hole 12.

[0030] Further, the base 1 is provided with an inner recess 15 corresponding to the position of the outer heat dissipation hole 12, the bottom of the inner recess 15 is open to the outside, and the outer heat dissipation hole 12 is arranged at the upper side of the inner recess 15. The inner recess 15 can further make the air more easily enter the outer heat dissipation hole 12, and can also be used as a hand grip structure for the user to hold the base 1.

[0031] Further, the side of the control mainboard 4 facing the air baffle 2 is provided with a heat dissipation fin 41, which further improves the heat dissipation effect of the air flow on the control mainboard 4.

[0032] Further, the upper side of the base 1 is further connected with a shell 6, the bottom of the shell 6 is embedded and matched with the base 1 in the circumferential direction, an outer heat dissipation cavity 22 is formed in the cavity between the shell 6, the air baffle 2 and the base 1, the shell 6 is provided with a control panel 61, the control panel 61 is electrically connected with the control mainboard 4, and the inner side of the control panel 61 is arranged in the outer heat dissipation cavity 22. The control panel 61 can facilitate the user to operate the snow ice machine, and the outer heat dissipation cavity 22 can also provide a heat dissipation space for the control panel 61, thereby prolonging the service life of the control panel 61.

[0033] The above embodiments are only preferred schemes of the present application, and the present application can also have other embodiments. Those skilled in the art can also make equivalent modifications or substitutions without departing from the spirit of the present application, and these equivalent modifications or substitutions are all included in the scope set by the claims of the present application.

Claims

1. A slush machine main unit, characterized in that, The device includes a base (1) and a wind guide shroud (2). The wind guide shroud (2) has a drive motor (3) on its inner side. The upper side of the wind guide shroud (2) is open. The lower side of the wind guide shroud (2) is connected to the base (1) to form an inner heat dissipation cavity (21) and an outer heat dissipation cavity (22). The inner heat dissipation cavity (21) and the outer heat dissipation cavity (22) are connected through the opening on the upper side of the wind guide shroud (2). The drive motor (3) is located in the inner heat dissipation cavity (21). The outer heat dissipation cavity (22) is equipped with a control main board (4). The control main board (4) is electrically connected to the drive motor (3). The base (1) is provided with an inner heat dissipation hole (11) and an outer heat dissipation hole (12) at positions corresponding to the inner heat dissipation cavity (21) and the outer heat dissipation cavity (22). The outer heat dissipation hole (12), the outer heat dissipation cavity (22), the inner heat dissipation cavity (21) and the inner heat dissipation hole (11) are connected in sequence to form a heat dissipation channel.

2. The main unit of the slush machine according to claim 1, characterized in that: The drive motor (3) has a rotating shaft that can extend to the inner heat dissipation cavity (21), and a heat dissipation fan blade (31) is connected to the rotating shaft at a position corresponding to the inner heat dissipation cavity (21).

3. The slush machine main unit according to claim 1, characterized in that: The base (1) and the air guide cover (2) are respectively provided with a lower inner frame (13) and an upper inner frame (23). The lower inner frame (13) and the upper inner frame (23) are tightly fitted together. The inner heat dissipation cavity (21) is formed on the inner side of the lower inner frame (13) and the upper inner frame (23). The inner heat dissipation hole (11) is located on the base (1) below the inner heat dissipation cavity (21).

4. The main unit of the slush machine according to claim 1, characterized in that: The base (1) and the air guide cover (2) are respectively provided with a lower outer frame (14) and an upper outer frame (24). The lower outer frame (14) and the upper outer frame (24) are fitted together to form an air guide cavity (25). The lower outer frame (14) and / or the upper outer frame (24) are provided with air guide recesses (251). The external heat dissipation cavity (22) is connected to the air guide cavity (25) through the air guide recesses (251). The external heat dissipation hole (12) is located on the base (1) below the corresponding air guide cavity (25).

5. The main unit of the slush machine according to claim 1, characterized in that: The base (1) is provided with an anti-slip pad (5) at the bottom, and the inner heat dissipation hole (11) and the outer heat dissipation hole (12) are respectively spaced vertically from the bottom of the anti-slip pad (5).

6. The main unit of the slush machine according to claim 1, characterized in that: The base (1) has an indentation (15) at the position corresponding to the external heat dissipation hole (12). The bottom of the indentation (15) and the outside are open. The external heat dissipation hole (12) is located on the upper side of the indentation (15).

7. The main unit of the slush machine according to claim 1, characterized in that: The control motherboard (4) has heat dissipation fins (41) on the side facing the wind guide shroud (2).

8. The main unit of the slush machine according to any one of claims 1-7, characterized in that: The upper side of the base (1) is also connected to the outer shell (6). The bottom of the outer shell (6) is circumferentially fitted with the base (1). The outer heat dissipation cavity (22) is formed in the cavity between the outer shell (6), the air guide shroud (2) and the base (1). The outer shell (6) is provided with a control panel (61). The control panel (61) is electrically connected to the control motherboard (4). The inner side of the control panel (61) is located in the outer heat dissipation cavity (22).