WO2024104224A1 - 牛奶饮料加热搅拌机 - Google Patents

牛奶饮料加热搅拌机 Download PDF

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Publication number
WO2024104224A1
WO2024104224A1 PCT/CN2023/130267 CN2023130267W WO2024104224A1 WO 2024104224 A1 WO2024104224 A1 WO 2024104224A1 CN 2023130267 W CN2023130267 W CN 2023130267W WO 2024104224 A1 WO2024104224 A1 WO 2024104224A1
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WO
WIPO (PCT)
Prior art keywords
heating
container
cup body
heat
milk beverage
Prior art date
Application number
PCT/CN2023/130267
Other languages
English (en)
French (fr)
Inventor
熊兴剑
Original Assignee
熊兴剑
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Filing date
Publication date
Application filed by 熊兴剑 filed Critical 熊兴剑
Publication of WO2024104224A1 publication Critical patent/WO2024104224A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/21Water-boiling vessels, e.g. kettles
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J36/00Parts, details or accessories of cooking-vessels
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J36/00Parts, details or accessories of cooking-vessels
    • A47J36/24Warming devices
    • A47J36/26Devices for warming vessels containing drinks or food, especially by means of burners Warming devices with a burner, e.g. using gasoline; Travelling cookers, e.g. using petroleum or gasoline with one burner
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/046Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven with tools driven from the bottom side

Definitions

  • the present application relates to the technical field of liquid food processing equipment, for example, to a milk beverage heating and mixing machine.
  • the milk beverage heating and mixing machine is an appliance for heating and mixing milk or other beverages. It can generally heat the milk or other beverages in the cup to about 60-70 degrees. At the same time, the magnetic force of the magnet on the motor drives the mixer to rotate and mix the milk to heat and mix it into hot milk foam. Alternatively, the milk or other beverages can be mixed at room temperature as needed, that is, the milk can be beaten into cold milk foam.
  • the heating device used in some split-type milk beverage heating and mixing machines is a flat aluminum heating plate, which directly contacts and heats the heat-conducting aluminum plate welded on the outer bottom of the cup body through the flat aluminum heating plate, thereby heating the milk beverage in the cup body.
  • the contact heat conduction heating method of the above-mentioned flat aluminum heating plate to the heat-conducting aluminum plate welded on the bottom of the cup body has the disadvantages of limited heat conduction area of the heat-conducting aluminum plate on the bottom of the cup body, small heat conduction area and uneven heat conduction.
  • the local temperature of the heating plate rises rapidly, causing the temperature control device that detects the temperature of the heating plate to frequently trip and cut off the power, and it is necessary to temporarily stop heating and wait for the local temperature to drop before continuing to heat.
  • the heating process is intermittent, resulting in a long heating and heat conduction time and low heating efficiency. Consumers reported that the waiting time for milk heating is long; and the subsequent processing technology of welding the heat-conducting aluminum plate on the outer bottom of the cup body is complicated and the processing cost is high.
  • the present application provides a milk beverage heating and mixing machine, comprising:
  • a cup body wherein the cup body is configured to hold a milk beverage
  • a heating device comprising a heating container and a heating component, the heating component being arranged outside the heating container, the heating device being mounted on the base, the heating container being a container with an upper end opening formed by a container bottom wall, a container side wall and abutment portion, the upper end of the container side wall extending toward the outer periphery to form the abutment portion, the abutment portion abutting against the upper end of the shell of the base;
  • the heat-conducting liquid is added into the heating container, and the heating device is configured as follows: heating the heat transfer liquid;
  • the cup body is detachably positioned in the heating container, and the heating device and the heat-conducting liquid can heat and conduct heat to the bottom wall of the cup body and the lower side wall of the cup body at the same time;
  • the milk beverage heating mixer meets one of the following requirements:
  • the cup body comprises a first accommodating portion and a second accommodating portion which are interconnected, the first accommodating portion is located above the second accommodating portion, the diameter of the first accommodating portion is larger than the diameter of the second accommodating portion, a supporting shoulder is formed at the junction of the first accommodating portion and the second accommodating portion, when the cup body is placed in the heating container, the supporting shoulder abuts against the upper end surface of the heating container, and the supporting shoulder is configured to be movably positioned with the heating container;
  • the upper part of the container side wall is inclined outward to form an annular container positioning portion, the upper end diameter of the container positioning portion is larger than the lower end diameter, the bottom wall of the cup body abuts against the bottom wall of the heating container, and a part of the outer side wall of the cup body abuts against and is positioned on the container positioning portion.
  • the heating container also includes a container cover
  • the container cover includes an annular upper cover portion and an annular wall
  • the annular upper cover portion and the annular wall are arranged to form a through hole, the upper end diameter of the through hole is larger than the lower end diameter thereof, the container cover is removably covered on the opening of the heating container, the annular upper cover portion abuts against the upper end surface of the heating container, the annular wall is positioned on the upper inner wall of the heating container, and a portion of the outer wall of the cup body is removably positioned on the inner wall positioning portion of the through hole.
  • a positioning flange structure is provided on the inner side of the bottom of the heating container.
  • the outer surface of the cup body is provided with a water-resistant coating material.
  • a positioning shaft is fixedly provided at the center of the inner bottom surface of the cup body, and a stirrer is detachably and rotatably mounted on the positioning shaft, and a driven magnet is provided in the stirrer.
  • a driving device is also provided in the base, and the driving device includes a motor and a magnetic driving disk fixedly connected to the output shaft of the motor, and an active magnet is fixed on the magnetic driving disk.
  • the driving device can drive the agitator to rotate through the magnetic force of the magnetic driving disk.
  • the milk beverage heating and mixing machine also includes an electronic control device, a temperature controller and a switch device.
  • the heating device, the driving device, the temperature controller and the switch device are electrically connected to the electronic control device respectively, and the electronic control device is configured to control the opening and closing of the heating device and the driving device.
  • the blender is not placed in the cup body
  • an appropriate amount of drinking water is added to the cup body according to the scale
  • the cup cover is closed
  • a heat-conducting liquid is added to the heating container
  • the cup body containing the drinking water is placed in the heating container
  • the boiling water function of the switch device is started
  • the milk beverage heating and blending machine also has a kettle function.
  • FIG1 is a schematic diagram of the appearance of a milk beverage heating and mixing machine provided in Example 1 of the present application;
  • FIG2a is a schematic diagram of the internal structure of a milk beverage heating and mixing machine provided in Example 1 of the present application;
  • FIG2b is a schematic structural diagram of a heating container and a heating assembly provided in Example 1 of the present application;
  • FIG2c is an exploded schematic diagram of a milk beverage heating and mixing machine provided in Example 1 of the present application.
  • FIG3a is a schematic diagram of the internal structure of a milk beverage heating and mixing machine provided in Example 2 of the present application;
  • FIG3b is a schematic structural diagram of a heating container and a heating assembly provided in Example 2 of the present application;
  • FIG3c is an exploded schematic diagram of a milk beverage heating and mixing machine provided in Example 2 of the present application.
  • FIG4a is a schematic diagram of the internal structure of a milk beverage heating and mixing machine provided in Example 3 of the present application;
  • FIG4b is an exploded schematic diagram of a milk beverage heating and mixing machine provided in Example 3 of the present application.
  • FIG4c is a top view of a heating container provided in Example 3 of the present application.
  • FIG4d is a schematic structural diagram of the kettle function of a milk beverage heating and mixing machine provided in Example 3 of the present application.
  • Heat transfer liquid 100, cup body; 110, first accommodating portion; 120, second accommodating portion; 130, supporting shoulder; 140, Cup body spout; 150, cup cover; 160, handle; 170, cup body bottom wall; 180, cup body lower side wall; 190, drinking water; 200, base; 210, housing; 300, heating device; 310, heating container; 311, container bottom wall; 312, container side wall; 3121, Container positioning part; 313, abutting part; 314, container spout; 315, container upper end surface; 316, positioning flange structure; 320, heating component; 321, heating component; 322, heat-conducting component; 323, temperature controller; 330, container cover; 331, annular upper cover part; 332, annular wall; 333, through hole; 334, inner wall positioning part; 335, silicone ring; 400, agitator; 410, driven magnet; 420, positioning shaft; 500, electric control device; 510, electric wire; 600. Switchgear; 700, driving device; 710, motor;
  • connection should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements.
  • connection can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements.
  • a first feature being “above” or “below” a second feature may include the first feature being in direct contact with the second feature, or may include the first feature being in contact with the second feature through another feature between them instead of being in direct contact.
  • a first feature being “above”, “above”, and “above” a second feature may include the first feature being directly above and obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature.
  • a first feature being “below”, “below”, and “below” a second feature may include the first feature being directly below and obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
  • this embodiment provides a milk beverage heating and stirring machine, including a cup body 100, a base 200, a heating device 300, a heat-conducting liquid 10, a stirrer 400, a driving device 700, an electronic control device 500 and a switch device 600.
  • the base 200 includes a housing 210 , and the heating device 300 is mounted against the housing 210 of the base 200 .
  • the heating device 300 includes a heating container 310 and a heating assembly 320, wherein the heating container 310 is composed of a container bottom wall 311, a container side wall 312 and a supporting portion 313, the upper end of the container side wall 312 extends toward the outer periphery to form a supporting portion 313, the supporting portion 313 abuts against the upper end of the outer shell 210 installed on the base 200, the upper end of the heating container 310 is an open shape, and the heating container 310 is also provided with a container spout 314, which is configured to discharge hot steam formed by heating the heat-conducting liquid 10.
  • the heating component 320 is welded and fixed to the outer bottom wall of the heating container 310.
  • the heating component 320 includes a heating component 321 and a heat-conducting component 322.
  • the heating component 321 can be an electric heating tube
  • the heat-conducting component 322 can be an aluminum plate with a through hole in the center of the aluminum plate.
  • the electric heating tube of the heating component 321 and the aluminum plate of the heat-conducting component 322 are brazed and fixed to the outer bottom of the heating container 310. Nut columns are also riveted on the aluminum plate of the heat-conducting component 322, which are configured to install a thermostat 323.
  • the heating component 320 may be other heating elements, such as a mica heating device.
  • the mica heating device may be disposed on the outer side wall or the outer bottom wall of the heating container 310 .
  • the heating container 310 is made of steel use stainless steel 304 (Steel Use Stainless 304, SUS304) or SUS316 stainless steel by stretching, and other materials can also be selected.
  • the thermostat 323 may be a negative temperature coefficient (NTC) thermistor.
  • NTC negative temperature coefficient
  • the thermostat 323 is mounted on the aluminum plate of the heat-conducting component 322 at the outer bottom of the heating container 310 to detect the heating temperature of the heat-conducting liquid 10 in the heating container 310 and the milk in the cup body 100.
  • the heat-conducting liquid 10 is heated by the heating device 300, and the heat-conducting liquid 10 simultaneously conducts heat to the cup body bottom wall 170 and the lower side wall 180 of the cup body 100, thereby indirectly heating the milk in the cup body 100.
  • the temperature of the heat-conducting liquid 10 is the same as the temperature of the milk in the cup body 100.
  • the thermostat 323 transmits the temperature signal to the electronic control device 500, and the heating component 321 stops heating through the electronic control device 500.
  • Thermostat 323 may also be other temperature control devices, and thermostat 323 may be mounted on the outer side wall of heating container 310.
  • a sudden jump temperature control device such as KSD301 sudden jump temperature control device, may also be mounted on the electric heating tube of heating component 321 to control the temperature of the electric heating tube.
  • a proper amount of heat-conducting liquid 10 is added to the heating container 310 according to the scale.
  • the heat-conducting liquid 10 can be drinking water, or other potable liquids with good heat-conducting effect can be selected as the heat-conducting liquid 10.
  • the heat-conducting liquid 10 can immerse a certain height of the lower side wall 180 of the cup body.
  • the added capacity of the heat-conducting liquid 10 can be determined based on the fact that the heat-conducting liquid 10 will not overflow from the heating container 310 during the heating process, while improving the heat-conducting effect on the milk in the cup body 100 and shortening the heating time.
  • the circumferential heat-conducting area of the lower side wall 180 can be selected to be about 1 to 2 times the heat-conducting area of the bottom wall 170 of the cup body.
  • the function of the heat-conducting liquid 10 is to conduct heat to the bottom wall 170 and the lower side wall 180 of the cup body 100 at the same time during the heating process, so as to improve the heating efficiency of the heat-conducting liquid 10 on the milk beverage in the cup body 100 and shorten the heating time of the milk beverage.
  • a flat aluminum heating plate is used to directly contact and conduct heat to the heat-conducting aluminum plate on the bottom of the cup body.
  • the heat conduction is not smooth, resulting in the local temperature of the heating plate being high.
  • the temperature rises quickly, and the temperature control device detecting the temperature of the heating plate will frequently trip and cut off the power, temporarily stop heating, and wait for the local temperature to drop before continuing to heat.
  • the heating process is intermittent, so the heating process takes a long time.
  • a proper amount of heat-conducting liquid 10 is added to the heating container 310.
  • the heat-conducting liquid 10 can evenly conduct heat to the bottom wall 170 of the cup body and the lower side wall 180 of the cup body at the same time, the heat-conducting area is increased, the heat conduction is smooth, and the heating is continuous, so the milk is heated faster.
  • the cup body 100 is composed of a first accommodating portion 110 and a second accommodating portion 120 that are interconnected, and a cup body bottom wall 170.
  • the first accommodating portion 110 is located above the second accommodating portion 120.
  • the diameter of the first accommodating portion 110 is larger than the diameter of the second accommodating portion 120.
  • a support shoulder 130 is formed at the junction of the first accommodating portion 110 and the second accommodating portion 120.
  • the support shoulder 130 abuts against the upper end surface 315 of the container, so that the cup body 100 and the heating container 310 are positioned in the vertical axial direction, and the outer side wall of the second accommodating portion 120 of the cup body 100 is configured to be positioned with a small gap at the upper end opening of the heating container 310 in the diameter direction.
  • an appropriate gap is left between the bottom wall 170 of the cup body 100 and the bottom wall 311 of the heating container 310, and the gap can accommodate a portion of the heat-conducting liquid 10.
  • the heat-conducting liquid 10 can heat or conduct heat to the bottom wall 170 and the lower side wall 180 of the cup body 100 at the same time, so as to improve the heating efficiency of the milk beverage in the cup body 100.
  • a positioning shaft 420 is fixedly provided at the center of the inner bottom surface of the cup body 100, and the agitator 400 is movably installed on the positioning shaft 420; a handle 160 is fixedly connected to the outer side of the upper part of the cup body 100 to facilitate the user to take and put the cup body 100; at the same time, a cup spout 140 is also provided on the cup body 100 to facilitate pouring the milk beverage in the cup body 100 and discharging the hot steam of the milk beverage in the cup body 100 during the heating process.
  • the upper opening of the cup body 100 is also covered with a cup cover 150 , and the cup cover 150 is provided with an elastic ring made of food-grade silicone material.
  • the cup body 100 is made of SUS304 or SUS316 stainless steel by stretching, and other materials can also be selected, such as a glass cup made of high-temperature resistant high-boron glass.
  • a driving device 700 is also provided in the base 200.
  • the driving device 700 includes a motor 710 and a magnetic driving disk 720 fixedly connected to the output shaft of the motor 710.
  • An active magnet 730 is fixedly provided on the magnetic driving disk 720.
  • the driven magnet 410 and the active magnet 730 in the stirrer 400 are in an axial magnetic attraction alignment state. Through the mutual magnetic attraction between the active magnet 730 on the magnetic driving disk 720 and the driven magnet 410 in the stirrer 400, the magnetic driving disk 720 of the driving device 700 can magnetically drive the stirrer 400 in the cup body 100 to rotate and stir, so that the milk in the cup body 100 is foamed.
  • the milk beverage heating and mixing machine further comprises an electric control device 500 and a switch device 600.
  • the electric control device 500 is arranged below the heating container 310, and the switch device 600 is arranged on the housing 210.
  • the heating component 321, the driving device 700, the temperature controller 323 and the switch device 600 are electrically connected to the electric control device 500 respectively.
  • 500 can control the opening and closing of the heating component 321 and the driving device 700.
  • the electric control device 500 is a main control printed circuit board (PCB), and the electric control device 500 is connected to a power supply component such as a household socket through a wire 510 and a plug arranged at the bottom of the base 200.
  • PCB main control printed circuit board
  • the stirrer 400 is detachably and rotatably mounted on the positioning shaft 420 .
  • a driven magnet 410 is disposed inside the stirrer 400 .
  • the stirrer 400 is configured to stir the liquid milk in the cup body 100 to foam.
  • the operation process of the milk beverage heating and stirring machine is as follows: the stirrer 400 is movably installed on the positioning shaft 420 on the bottom surface of the cup body 100, an appropriate amount of milk is added into the cup body 100 according to the scale, the cup cover 150 is covered, an appropriate amount of drinking water is added into the heating container 310 of the heating device 300 as the heat-conducting liquid 10, the cup body 100 filled with milk is placed and installed in the heating container 310, the switch device 600 is started, and the driving device 700 magnetically drives the stirrer 400 to rotate and stir the milk.
  • the heating device 300 and the heat-conducting liquid 10 heat and conduct heat to the cup bottom wall 170 and the lower side wall 180 of the cup body 100 at the same time.
  • the electronic control device 500 controls the heating component 321 to stop heating and controls the driving device 700 to stop stirring, thereby completing the heating and stirring and foaming of the milk in the cup body 100.
  • the outer surface of the cup body 100 is provided with a water-proof coating material.
  • the outer surface includes the outer side surface of the side wall of the cup body 100 and the outer bottom surface of the bottom wall 170 of the cup body.
  • the outer side surface of the side wall of the cup body 100 and the outer bottom surface of the bottom wall 170 of the cup body are provided with a high temperature resistant and wear-resistant water-proof coating material.
  • the present application does not limit the water-proof coating material, and the water-proof coating material can be a high temperature resistant and wear-resistant water-proof coating such as polytetrafluoroethylene (PTFE), ceramic material, etc., and generally a colorless and transparent water-proof coating material is used; the water-proof coating material can be firmly attached to the outer surface of the cup body 100 in a variety of ways, such as spraying, dipping, and the like.
  • PTFE polytetrafluoroethylene
  • the milk beverage heating and mixing machine adds an appropriate amount of drinking water as the heat-conducting liquid 10 in the heating container 310 according to the scale.
  • the heating device 300 and the heat-conducting liquid 10 can simultaneously conduct heat to the cup body bottom wall 170 and the cup body lower side wall 180 of the cup body 100.
  • the flat aluminum heating plate only conducts heat to the aluminum plate on the bottom of the cup body. Due to the small heat-conducting area of the bottom of the cup body, the local temperature of the heating plate rises rapidly, and its temperature control device puts the heating plate in an intermittent heating process, resulting in a long heating time.
  • the peripheral heat-conducting area of the lower side wall 180 of the cup body 100 is increased, and the peripheral heat-conducting area of the lower side wall 180 is about 1 to 2 times the heat-conducting area of the cup body bottom wall 170, which can be selected according to needs.
  • the heating device 300 continuously heats and conducts the heat-conducting liquid 10 and the milk in the cup body 100, and the heating and heat conduction are smoother, thereby increasing the heating and heat-conducting area of the lower part of the cup body 100, improving the heating efficiency of the milk in the cup body 100, and shortening the waiting time for heating the milk; at the same time, the outer bottom surface of the cup body 100 does not need to be welded with a heat-conducting aluminum plate, which simplifies the subsequent complex processing technology of the cup body 100 and reduces the manufacturing cost of the cup body 100.
  • the product structure is simple, the cup body 100 can be cleaned in a dishwasher, and production and assembly are convenient, thereby reducing production costs.
  • the principle of this embodiment is the same as that of the first embodiment, except that the positioning method between the cup body 100 and the heating container 310 is different.
  • the upper end of the container side wall 312 of the heating container 310 extends outward and tilts to form a container positioning portion 3121, and the upper end diameter of the container positioning portion 3121 is larger than the lower end diameter; the heating container 310 is provided with a container spout 314, which is configured to discharge hot steam formed by the heating of the heat-conducting liquid 10.
  • the middle area of the outer wall of the cup body 100 corresponds to and matches the container positioning portion 3121, maintaining a small gap for active positioning.
  • the middle area of the outer wall of the cup body 100 matches and positions the container positioning portion 3121, and the cup bottom wall 170 of the cup body 100 is supported on the container bottom wall 311 of the heating container 310.
  • the cup bottom wall 170 of the cup body 100 contacts and conducts heat with the container bottom wall 311 of the heating container 310, and the heat-conducting liquid 10 conducts heat to the milk in the cup body 100 through the lower side wall 180 of the cup body 100.
  • this embodiment increases the heat-conducting area of the lower side wall 180 of the cup body 100, so that the heating efficiency of the milk in the cup body 100 is higher.
  • the principle of this embodiment is the same as that of the first embodiment, except that the positioning method between the cup body 100 and the heating container 310 is different.
  • a detachable cover is provided with a container cover 330, and the container cover 330 includes an annular upper cover portion 331 and an annular wall 332, and a through hole 333 is formed by the annular upper cover portion 331 and the annular wall 332.
  • the upper end diameter of the through hole 333 is larger than the lower end diameter thereof, and the annular upper cover portion 331 abuts against the container upper end surface 315 of the heating container 310, and a silicone ring 335 is sleeved on the outer side of the annular wall 332, and the annular wall 332 is positioned on the upper inner wall of the heating container 310 through the silicone ring 335, and a small gap is provided between the middle outer wall of the cup body 100 and the inner wall positioning portion 334 of the through hole 333 for movable matching and positioning.
  • a positioning flange structure 316 is convexly provided on the bottom wall 311 of the heating container 310, and the cup bottom wall 170 of the cup body 100 is supported on the positioning flange structure 316.
  • the cup bottom wall 170 of the cup body 100 can be kept at an appropriate distance from the container bottom wall 311, which is convenient for the flow of the heat-conducting liquid 10 and the simultaneous heat conduction to the cup bottom wall 170 and the lower side wall 180 of the cup body 100;
  • the heating container 310 is provided with a container mouth 314, which is configured to discharge the hot steam formed by the heating of the heat-conducting liquid 10.
  • the milk beverage heating and blending machine of the present embodiment also has a kettle function.
  • a proper amount of heat-conducting liquid 10 is added into the heating container 310 according to the scale.
  • the heat-conducting liquid 10 can be drinking water.
  • the container cover 330 is covered at the upper end opening of the heating container 310.
  • a proper amount of drinking water 190 is added into the cup body 100 according to the scale.
  • the cup body 100 filled with drinking water 190 is placed in the heating container 310.
  • the cup cover 150 is covered on the cup body 100.
  • the blender 400 should not be placed in the cup body 100.
  • the boiling water function of the switch device 600 is started. When the water in the cup body 100 is boiled, the electric control device 500 will automatically cut off the power, so that it can be used as a small kettle. It is convenient and fast, and expands the product's functionality.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

一种牛奶饮料加热搅拌机,包括杯体(100)、基座(200)、加热装置(300)、导热液体(10)、搅拌器(400)、驱动装置(700)和电控装置(500);杯体(100)被配置为盛装牛奶饮料;加热装置(300)包括加热容器(310)和加热组件(320);导热液体(10)添加在加热容器(310)内;杯体(100)可拆卸定位于加热容器(310)中,加热装置(300)被配置为加热导热液体(10),加热装置(300)和导热液体(10)能够对杯体(100)的杯体底壁(170)和杯体下部侧壁(180)同时加热和导热。

Description

牛奶饮料加热搅拌机
本申请要求在2022年11月16日提交中国专利局、申请号为202223052771.4的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及液体食品加工设备技术领域,例如涉及一种牛奶饮料加热搅拌机。
背景技术
牛奶饮料加热搅拌机是对牛奶或其他饮料进行加热和搅拌的器具,一般能够将杯体中的牛奶或其他饮料加热到60--70度左右,同时,通过电机上的磁铁盘磁力带动搅拌器旋转搅拌,将牛奶加热搅拌打成热奶泡。或者按需要也可以对牛奶或其他饮料只进行常温搅拌,即可以将牛奶打发成冷奶泡。
在相关技术中,一部分的分体式牛奶饮料加热搅拌机采用的加热装置为平面铝质发热盘,通过平面铝质发热盘直接对焊接在杯体外底面的导热铝板进行接触加热,进而实现对杯体中牛奶饮料的加热。上述平面铝质发热盘对焊接在杯体底面的导热铝板的接触式导热的加热方式,存在杯体底面的导热铝板的导热面积受限,导热面积偏小以及导热不顺畅等缺点。同时,发热盘局部温度快速升高,导致探测发热盘温度的温控装置会频繁的跳开断电,需要暂时停止加热,等待局部温度下降后才会继续加热,其加热过程是断断续续的,导致加热、导热的时间较长以及加热效率低的问题,消费者反馈牛奶加热等待的时间较长;并且,杯体的外底面焊接导热铝板的后续加工工艺复杂,加工成本较高。
发明内容
本申请提供一种牛奶饮料加热搅拌机,包括:
杯体,所述杯体被配置为盛装牛奶饮料;
基座;
加热装置,所述加热装置包括加热容器和加热组件,所述加热组件设置于所述加热容器的外部,所述加热装置安装在所述基座上,所述加热容器为由容器底壁、容器侧壁和抵靠部构成的上端开口的容器,所述容器侧壁的上端向外周边延伸形成所述抵靠部,所述抵靠部抵靠于所述基座的外壳上端;
导热液体,所述导热液体添加在所述加热容器内,所述加热装置被配置为 加热所述导热液体;
所述杯体可拆卸定位于所述加热容器中,所述加热装置和所述导热液体能够对所述杯体的杯体底壁和杯体下部侧壁同时加热和导热;
所述牛奶饮料加热搅拌机满足以下之一:
所述杯体包括相互连通的第一容置部和第二容置部,所述第一容置部位于所述第二容置部上方,所述第一容置部的直径大于所述第二容置部的直径,所述第一容置部和所述第二容置部的衔接处形成支撑台肩,在所述杯体放置于所述加热容器中的情况下,所述支撑台肩抵靠于所述加热容器的容器上端面,所述支撑台肩被配置为与所述加热容器活动定位;
所述容器侧壁的上部向外侧倾斜,形成环形的容器定位部,所述容器定位部的上端直径大于其下端直径,所述杯体的杯体底壁抵靠于所述加热容器的容器底壁上,所述杯体的外侧壁的一部分抵靠定位于所述容器定位部。
作为本申请提供的牛奶饮料加热搅拌机的方案,所述加热容器还包括容器盖,所述容器盖包括环形上盖部和环形壁,所述环形上盖部和所述环形壁围设形成通孔,所述通孔的上端直径大于其下端直径,所述容器盖可拆卸盖设于所述加热容器的开口,所述环形上盖部抵靠于所述加热容器的容器上端面,所述环形壁定位于所述加热容器的上部内侧壁,所述杯体的一部分外侧壁可拆卸定位于所述通孔的内壁定位部。
作为本申请提供的牛奶饮料加热搅拌机的方案,所述加热容器的底部内侧设置定位凸缘结构。
作为本申请提供的牛奶饮料加热搅拌机的方案,所述杯体的外表面设置有不沾水的涂层材料。
作为本申请提供的牛奶饮料加热搅拌机的方案,所述杯体的内底面中心固定设置有定位轴,所述定位轴上可拆卸转动安装有搅拌器,所述搅拌器内设有从动磁铁。
作为本申请提供的牛奶饮料加热搅拌机的方案,所述基座内还设有驱动装置,所述驱动装置包括电机和固定连接于所述电机输出轴上的磁性驱动盘,所述磁性驱动盘上固设有主动磁铁,所述驱动装置能通过所述磁性驱动盘磁力驱动所述搅拌器转动。
作为本申请提供的牛奶饮料加热搅拌机的方案,所述牛奶饮料加热搅拌机还包括电控装置、温控器和开关装置,所述加热装置、所述驱动装置、所述温控器和所述开关装置分别电连接于所述电控装置,所述电控装置被配置为控制所述加热装置和所述驱动装置的启闭。
作为本申请提供的牛奶饮料加热搅拌机的方案,在所述搅拌器不放置在所述杯体内,在所述杯体内按刻度加入适量的饮用水,盖上杯盖,在所述加热容器内加入导热液体,并将盛装有饮用水的所述杯体放置在所述加热容器中的情况下,启动开关装置的烧开水功能,所述牛奶饮料加热搅拌机还具有水壶功能。
附图说明
图1是本申请实施例一提供的一种牛奶饮料加热搅拌机的外观示意图;
图2a是本申请实施例一提供的一种牛奶饮料加热搅拌机的内部结构示意图;
图2b是本申请实施例一提供的一种加热容器和加热组件的结构示意图;
图2c是本申请实施例一提供的一种牛奶饮料加热搅拌机的分解示意图;
图3a是本申请实施例二提供的一种牛奶饮料加热搅拌机的内部结构示意图;
图3b是本申请实施例二提供的一种加热容器和加热组件的结构示意图;
图3c是本申请实施例二提供的一种牛奶饮料加热搅拌机的分解示意图;
图4a是本申请实施例三提供的一种牛奶饮料加热搅拌机的内部结构示意图;
图4b是本申请实施例三提供的一种牛奶饮料加热搅拌机的分解示意图;
图4c是本申请实施例三提供的一种加热容器的俯视图;
图4d是本申请实施例三提供的一种牛奶饮料加热搅拌机的水壶功能的结构示意图。
图中:
10、导热液体;
100、杯体;110、第一容置部;120、第二容置部;130、支撑台肩;140、
杯体壶嘴;150、杯盖;160、手柄;170、杯体底壁;180、杯体下部侧壁;190、饮用水;
200、基座;210、外壳;
300、加热装置;310、加热容器;311、容器底壁;312、容器侧壁;3121、
容器定位部;313、抵靠部;314、容器壶嘴;315、容器上端面;316、定位凸缘结构;320、加热组件;321、发热部件;322、导热部件;323、温控器;330、容器盖;331、环形上盖部;332、环形壁;333、通孔;334、内壁定位部;335、硅胶圈;
400、搅拌器;410、从动磁铁;420、定位轴;
500、电控装置;510、电线;
600、开关装置;
700、驱动装置;710、电机;720、磁性驱动盘;730、主动磁铁。
具体实施方式
下面结合附图和实施例对本申请进行说明。此处所描述的具体实施例仅仅用于解释本申请。为了便于描述,附图中仅示出了与本申请相关的部分。
在本申请的描述中,除非另有规定和限定,术语“相连”、“连接”、“固定”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据情况理解上述术语在本申请中的含义。
在本申请中,除非另有规定和限定,第一特征在第二特征之“上”或之“下”可以包括第一特征和第二特征直接接触,也可以包括第一特征和第二特征不是直接接触而是通过它们之间的另外的特征接触。而且,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”包括第一特征在第二特征正下方和斜下方,或仅仅表示第一特征水平高度小于第二特征。
在本实施例的描述中,术语“上”、“下”、“右”、“左”等方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述和简化操作,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,术语“第一”、“第二”仅仅用于在描述上加以区分,并没有特殊的含义。
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
实施例一
如图1、图2a、图2b和图2c所示,本实施例提供了一种牛奶饮料加热搅拌机,包括杯体100、基座200、加热装置300、导热液体10、搅拌器400、驱动装置700、电控装置500和开关装置600。
基座200包括外壳210,加热装置300抵靠安装在基座200的外壳210上。
加热装置300包括加热容器310和加热组件320,其中,加热容器310由容器底壁311、容器侧壁312和抵靠部313构成,容器侧壁312的上端向外周边延伸,形成抵靠部313,抵靠部313抵靠安装于基座200的外壳210的上端,加热容器310的上端为开口形状,加热容器310还设有容器壶嘴314,被配置为排出导热液体10加热形成的热蒸汽。
加热组件320焊接固定于加热容器310的外底壁,加热组件320包括发热部件321和导热部件322,发热部件321可以为电发热管,导热部件322可以为铝板,铝板中心开设有通孔,发热部件321的电发热管和导热部件322的铝板组合钎焊固定在加热容器310的外底部,导热部件322的铝板上还铆接有螺母柱,被配置为安装温控器323。
加热组件320可以选择其它发热体,如云母发热装置,云母发热装置可以设置在加热容器310的外侧壁上或者外底壁上。
加热容器310采用钢用不锈钢304(Steel Use Stainless 304,SUS304)或SUS316不锈钢材质拉伸制成,也可以选择其它材料。
如图2a和图2b所示,温控器323可以为负温度系数(Negative Temperature Coefficient,NTC)热敏电阻,温控器323安装在加热容器310外底部的导热部件322的铝板上,以探测加热容器310内的导热液体10与杯体100内的牛奶的加热温度。本实施例是通过加热装置300加热导热液体10,导热液体10对杯体100的杯体底壁170和杯体下部侧壁180同时导热,从而间接加热杯体100内的牛奶。导热液体10的温度与杯体100内的牛奶温度相同,当杯体100内的牛奶温度到达设定温度值时,一般为60℃~70℃,温控器323将温度信号传给电控装置500,通过电控装置500使发热部件321停止加热。温控器323也可以采用其它温控装置,温控器323可以安装在加热容器310外侧壁上。在发热组件321的电发热管上还可以安装突跳式温控装置,如KSD301突跳式温控装置,以控制电发热管的温度。
如图2a所示,在加热容器310内按刻度添加有适量的导热液体10,导热液体10可以为饮用水,也可选择其它导热效果好的可饮用液体作为导热液体10。导热液体10能够浸没杯体下部侧壁180的一段高度,导热液体10的加入容量,可根据在加热过程中导热液体10不会从加热容器310中溢出,同时又能提升对杯体100内牛奶的导热效果和缩短加热时间来确定,一般可选择下部侧壁180的周侧导热面积为杯体底壁170的导热面积的1~2倍左右。导热液体10的作用是在加热过程中同时对杯体100的杯体底壁170和杯体下部侧壁180进行导热,以提升导热液体10对杯体100内牛奶饮料的加热效率,缩短牛奶饮料的加热时间。
在相关技术中,采用平面铝质发热盘对杯体外底面的导热铝板直接接触导热的加热方式,因杯体底面导热面积偏小,导热不畅,导致发热盘的局部温度 上升较快,探测发热盘温度的温控装置会频繁的跳开断电,暂时停止加热,等待局部温度下降后才会继续加热,其加热过程是断断续续的,所以,加热过程的时间比较长。在本实施例中,在加热容器310中加入适量的导热液体10,导热液体10能够同时对杯体底壁170和杯体下部侧壁180均匀导热,导热面积增大,导热顺畅,连续加热,所以牛奶加热速度更快。
参照图2a和图2c,杯体100由相互连通的第一容置部110和第二容置部120以及杯体底壁170构成,第一容置部110位于该第二容置部120上方,第一容置部110的直径大于第二容置部120的直径,第一容置部110和第二容置部120的衔接处形成支撑台肩130。当杯体100放置于加热容器310中时,支撑台肩130抵靠于容器上端面315,使杯体100与加热容器310在垂直轴向方向定位,杯体100的第二容置部120的外侧壁被配置为在直径方向上与加热容器310的上端开口处小间隙活动定位。
如图2a和图2b所示,杯体100的杯体底壁170与加热容器310的容器底壁311之间留有适当间隙,该间隙能够容纳一部分的导热液体10,当加热装置300加热时,导热液体10能够对杯体100的杯体底壁170和杯体下部侧壁180同时加热或者导热,以提升对杯体100内牛奶饮料的加热效率。
杯体100的内底面中心固定设有定位轴420,搅拌器400活动安装在定位轴420上;杯体100的上部外侧固定连接有手柄160,以便于用户对杯体100的取放;同时,杯体100上还设有杯体壶嘴140,便于倾倒杯体100中的牛奶饮料和排出杯体100内牛奶饮料在加热过程中的热蒸汽。
杯体100的上端开口处还盖设有杯盖150,杯盖150上设有弹性圈,弹性圈由食品级硅胶材质制成。
杯体100采用SUS304或SUS316不锈钢材质拉伸制成,也可以选择其它材料,如耐高温的高硼玻璃材质的玻璃杯。
基座200内还设有驱动装置700,驱动装置700包括电机710和固定连接于电机710输出轴上的磁性驱动盘720,磁性驱动盘720上固设有主动磁铁730。其中,搅拌器400内的从动磁铁410与主动磁铁730处于上下轴向磁吸对正状态,通过磁性驱动盘720上的主动磁铁730与搅拌器400内的从动磁铁410之间的相互磁吸力作用,驱动装置700的磁性驱动盘720能够磁力驱动杯体100内的搅拌器400旋转搅拌,使杯体100内的牛奶发泡。
牛奶饮料加热搅拌机还包括电控装置500和开关装置600。该电控装置500设置于加热容器310的下方,开关装置600设置于外壳210上。其中,发热部件321、驱动装置700、温控器323和开关装置600分别与电控装置500电连接,电控装置 500能够控制发热部件321和驱动装置700的启闭。在本实施例中,电控装置500为主控印制线路板(Printed Circuie Board,PCB)板,电控装置500通过设置在基座200下部的电线510及插头连接家用插座等供电组件。
搅拌器400可拆卸转动安装在定位轴420上,搅拌器400内设有从动磁铁410,搅拌器400被配置为搅拌杯体100中的液体牛奶发泡。
牛奶饮料加热搅拌机的运作过程是,将搅拌器400活动安装在杯体100内底面的定位轴420上,在杯体100内按刻度加入适量牛奶,盖上杯盖150,在加热装置300的加热容器310内添加适量的饮用水作为导热液体10,装有牛奶的杯体100放置安装在加热容器310中,启动开关装置600,驱动装置700磁力驱动搅拌器400旋转搅拌牛奶,同时,加热装置300和导热液体10对杯体100的杯体底壁170和杯体下部侧壁180同时进行加热和导热,当杯体100内的牛奶达到设定的温度范围时,电控装置500控制发热部件321停止加热和控制驱动装置700停止搅拌,完成对杯体100内牛奶的加热和搅拌发泡。
杯体100的外表面设置有不沾水的涂层材料。其中,该外表面包括杯体100侧壁的外侧面和杯体底壁170的外底面。在杯体100的杯体侧壁的外侧面和杯体底壁170的外底面,都设置有耐高温耐磨损的不沾水的涂层材料,当杯体100从装有导热液体10的加热容器310中拿出时,杯体100的外部不会有水滴落,以保持桌面或工作台上不会有水滴;本申请对不沾水的涂层材料不作限定,不沾水的涂层材料可以为聚四氟乙烯(Polytetrafluoroethylene,PTFE),陶瓷材料等耐高温耐磨的不沾水涂层,一般使用无色透明的不沾水涂层材料;不沾水涂层材料可以通过多种方式牢固附着在杯体100的外表面,如喷涂,浸沾,等等方式。
本实施例提供的牛奶饮料加热搅拌机,通过在加热容器310内按刻度加入适量的饮用水作为导热液体10,当盛装有牛奶的杯体100放置在加热容器310中时,加热装置300和导热液体10能够同时对杯体100的杯体底壁170和杯体下部侧壁180进行导热,相对于在相关技术中,平面铝质发热盘只对杯体底面的铝板接触导热,受限于杯体底面的导热面积偏小,发热盘局部温度快速升高,其温控装置使发热盘处于断续加热过程,导致加热时间长。在本实施例中,由于增加了杯体100的杯体下部侧壁180的周侧导热面积,并且,下部侧壁180的周侧导热面积为杯体底壁170的导热面积的1~2倍左右,可根据需求选择。加热装置300连续对导热液体10和杯体100内的牛奶进行加热和导热,加热和导热更加顺畅,增大了杯体100下部的加热和导热面积,提升了对杯体100内牛奶的加热效率,缩短了牛奶加热等待的时间;同时,杯体100的外底面无需焊接导热铝板,简化了杯体100后续复杂的加工工艺,降低了杯体100的制造成本,产品结构简单,杯体100可洗碗机清洗,方便生产装配,降低生产成本。
实施例二
本实施例与实施例一的原理相同,不同之处在于:杯体100与加热容器310之间的定位方式不同。
如图3a、图3b和3c所示,加热容器310的容器侧壁312的上端向外延伸倾斜,形成容器定位部3121,容器定位部3121的上端直径大于其下端直径;加热容器310设置有容器壶嘴314,被配置为排出导热液体10加热形成的热蒸汽。
杯体100的外侧壁的中部区域与容器定位部3121之间相对应匹配,保持小间隙活动定位,当杯体100放置在加热容器310中时,杯体100的外侧壁的中部区域与容器定位部3121匹配定位,杯体100的杯体底壁170支撑在加热容器310的容器底壁311上,杯体100的杯体底壁170与加热容器310的容器底壁311接触导热,导热液体10通过杯体100的杯体下部侧壁180对杯体100内牛奶导热;相对于相关技术的发热装置只对杯体100的底面加热,本实施例增加了杯体100的杯体下部侧壁180的导热面积,使杯体100内牛奶的加热效率更高。
实施例三
本实施例与实施例一的原理相同,不同之处在于:杯体100与加热容器310之间的定位方式不同。
如图4a、图4b和图4c所示,在加热容器310的上端开口处,可拆卸盖设有容器盖330,容器盖330包括环形上盖部331和环形壁332,由环形上盖部331和环形壁332围设形成通孔333,通孔333的上端直径大于其下端直径,环形上盖部331抵靠于加热容器310的容器上端面315,环形壁332的周外侧套设有硅胶圈335,环形壁332通过硅胶圈335定位于加热容器310的上端内侧壁,杯体100的中部外侧壁与通孔333的内壁定位部334之间为小间隙活动匹配定位。
在加热容器310的容器底壁311上,凸设有定位凸缘结构316,杯体100的杯体底壁170支撑在定位凸缘结构316上。通过定位凸缘结构316,能够使杯体100的杯体底壁170与容器底壁311之间保持适当距离,便于导热液体10的流动和对杯体100的杯体底壁170和杯体下部侧壁180的同时导热;加热容器310设置有容器嘴部314,被配置为排出导热液体10加热形成的热蒸汽。
如图4d所示,本实施例的牛奶饮料加热搅拌机还具有水壶功能,在加热容器310内按刻度加入适量的导热液体10,导热液体10可以为饮用水,容器盖330盖设于加热容器310的上端开口处,在杯体100内按刻度加入适量的饮用水190,将装有饮用水190的杯体100放置于加热容器310中,杯盖150盖设于杯体100上,此时,搅拌器400不要放置在杯体100内,启动开关装置600的烧开水功能,当杯体100内的水烧开后,电控装置500会自动断电,这样可作为小型水壶使用,方 便快捷,扩展了产品的使用功能。

Claims (8)

  1. 牛奶饮料加热搅拌机,包括:
    杯体(100),所述杯体(100)被配置为盛装牛奶饮料;
    基座(200);
    加热装置(300),所述加热装置(300)包括加热容器(310)和加热组件(320),所述加热组件(320)设置于所述加热容器(310)的外部,所述加热装置(300)安装在所述基座(200)上,所述加热容器(310)为由容器底壁(311)、容器侧壁(312)和抵靠部(313)构成的上端开口的容器,所述容器侧壁(312)的上端向外周边延伸形成所述抵靠部(313),所述抵靠部(313)抵靠于所述基座(200)的外壳(210)上端;
    导热液体(10),所述导热液体(10)添加在所述加热容器(310)内,所述加热装置(300)被配置为加热所述导热液体(10);
    所述杯体(100)可拆卸定位于所述加热容器(310)中,所述加热装置(300)和所述导热液体(10)被配置为对所述杯体(100)的杯体底壁(170)和杯体下部侧壁(180)同时加热和导热;
    所述牛奶饮料加热搅拌机满足以下之一:
    所述杯体(100)包括相互连通的第一容置部(110)和第二容置部(120),所述第一容置部(110)位于所述第二容置部(120)上方,所述第一容置部(110)的直径大于所述第二容置部(120)的直径,所述第一容置部(110)和所述第二容置部(120)的衔接处形成支撑台肩(130),在所述杯体(100)放置于所述加热容器(310)中的情况下,所述支撑台肩(130)抵靠于所述加热容器(310)的容器上端面(315),所述支撑台肩(130)被配置为与所述加热容器(310)活动定位;
    所述容器侧壁(312)的上部向外侧倾斜,形成环形的容器定位部(3121),所述容器定位部(3121)的上端直径大于所述容器定位部(3121)的下端直径,所述杯体(100)的杯体底壁(170)抵靠于所述加热容器(310)的容器底壁(311)上,所述杯体(100)的外侧壁的一部分抵靠定位于所述容器定位部(3121)。
  2. 根据权利要求1所述的牛奶饮料加热搅拌机,其中,所述加热容器(310)还包括容器盖(330),所述容器盖(330)包括环形上盖部(331)和环形壁(332),所述环形上盖部(331)和所述环形壁(332)围设形成通孔(333),所述通孔(333)的上端直径大于其下端直径,所述容器盖(330)可拆卸盖设于所述加热容器(310)的开口,所述环形上盖部(331)抵靠于所述加热容器(310)的容器上端面(315),所述环形壁(332)定位于所述加热容器(310)的上部内 侧壁,所述杯体(100)的一部分外侧壁可拆卸定位于所述通孔(333)的内壁定位部(334)。
  3. 根据权利要求2所述的牛奶饮料加热搅拌机,其中,所述加热容器(310)的底部内侧设置定位凸缘结构(316)。
  4. 根据权利要求1所述的牛奶饮料加热搅拌机,其中,所述杯体(100)的外表面设置有不沾水的涂层材料。
  5. 根据权利要求1-3任一所述的牛奶饮料加热搅拌机,其中,所述杯体(100)的内底面中心固定设置有定位轴(420),所述定位轴(420)上可拆卸转动安装有搅拌器(400),所述搅拌器(400)内设有从动磁铁(410)。
  6. 根据权利要求5所述的牛奶饮料加热搅拌机,其中,所述基座(200)内还设有驱动装置(700),所述驱动装置(700)包括电机(710)和固定连接于所述电机(710)输出轴上的磁性驱动盘(720),所述磁性驱动盘(720)上固设有主动磁铁(730),所述驱动装置(700)被配置为通过所述磁性驱动盘(720)磁力驱动所述搅拌器(400)转动。
  7. 根据权利要求6所述的牛奶饮料加热搅拌机,还包括电控装置(500)、温控器(323)和开关装置(600),所述加热装置(300)、所述驱动装置(700)、所述温控器(323)和所述开关装置(600)分别电连接于所述电控装置(500),所述电控装置(500)被配置为控制所述加热装置(300)和所述驱动装置(700)的启闭。
  8. 根据权利要求7所述的牛奶饮料加热搅拌机,其中,在所述搅拌器(400)不放置在所述杯体(100)内,在所述杯体(100)内按刻度加入预定量的饮用水(190),盖上杯盖(150),在所述加热容器(310)内加入所述导热液体(10),并将盛装有饮用水(190)的所述杯体(100)放置在所述加热容器(310)中的情况下,启动所述开关装置(600)的烧开水功能,所述牛奶饮料加热搅拌机还具有水壶功能。
PCT/CN2023/130267 2022-11-16 2023-11-07 牛奶饮料加热搅拌机 WO2024104224A1 (zh)

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