WO2020119764A1 - 一种牛奶饮料加热搅拌机 - Google Patents

一种牛奶饮料加热搅拌机 Download PDF

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Publication number
WO2020119764A1
WO2020119764A1 PCT/CN2019/124878 CN2019124878W WO2020119764A1 WO 2020119764 A1 WO2020119764 A1 WO 2020119764A1 CN 2019124878 W CN2019124878 W CN 2019124878W WO 2020119764 A1 WO2020119764 A1 WO 2020119764A1
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WO
WIPO (PCT)
Prior art keywords
cup
temperature measuring
assembly
milk beverage
cup body
Prior art date
Application number
PCT/CN2019/124878
Other languages
English (en)
French (fr)
Inventor
熊兴剑
Original Assignee
熊兴剑
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 熊兴剑 filed Critical 熊兴剑
Priority to EP19897177.2A priority Critical patent/EP3895585B1/en
Priority to AU2019399834A priority patent/AU2019399834B2/en
Priority to ES19897177T priority patent/ES2955043T3/es
Priority to KR1020217013736A priority patent/KR102508986B1/ko
Priority to US17/413,201 priority patent/US20220039602A1/en
Priority to DK19897177.2T priority patent/DK3895585T3/da
Publication of WO2020119764A1 publication Critical patent/WO2020119764A1/zh

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    • 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
    • A47J31/00Apparatus for making beverages
    • 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
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools
    • A47J43/075Safety devices
    • A47J43/0761Safety devices for machines with tools driven from the lower side
    • A47J43/0766Safety devices for machines with tools driven from the lower side activated by the proper positioning of the mixing bowl
    • 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
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details
    • 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
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details
    • A47J31/441Warming devices or supports for beverage containers
    • A47J31/4425Supports for beverage containers when filled or while being filled
    • A47J31/4432Supports for beverage containers when filled or while being filled with means for keeping the beverage warm
    • A47J31/4435Heated support plates
    • A47J31/4439Heated support plates with electrical heating elements
    • 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
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/52Alarm-clock-controlled mechanisms for coffee- or tea-making apparatus ; Timers for coffee- or tea-making apparatus; Electronic control devices for coffee- or tea-making apparatus
    • A47J31/525Alarm-clock-controlled mechanisms for coffee- or tea-making apparatus ; Timers for coffee- or tea-making apparatus; Electronic control devices for coffee- or tea-making apparatus the electronic control being based on monitoring of specific process parameters
    • A47J31/5253Alarm-clock-controlled mechanisms for coffee- or tea-making apparatus ; Timers for coffee- or tea-making apparatus; Electronic control devices for coffee- or tea-making apparatus the electronic control being based on monitoring of specific process parameters of temperature
    • 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
    • A47J43/0465Machines 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 with magnetic drive
    • 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
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools
    • A47J43/0716Parts or details, e.g. mixing tools, whipping tools for machines with tools driven from the lower side
    • 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
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools
    • A47J43/08Driving mechanisms
    • A47J43/085Driving mechanisms for machines with tools driven from the lower side
    • 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
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details
    • A47J31/441Warming devices or supports for beverage containers
    • 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
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details
    • A47J31/441Warming devices or supports for beverage containers
    • A47J31/4425Supports for beverage containers when filled or while being filled
    • A47J31/4432Supports for beverage containers when filled or while being filled with means for keeping the beverage warm
    • A47J31/4435Heated support plates

Definitions

  • the present application relates to the technical field of liquid food processing equipment, for example, to a milk beverage heating mixer.
  • Milk beverage heating mixers are widely used in household and commercial fields. They generally refer to appliances for heating, stirring, and foaming milk. Milk frothers or milk tea machines are more commonly used.
  • the milk frother in the related technologies on the market mainly has three functions: making room temperature milk froth, making hot milk froth, and milk heating, after processing the milk, adding different proportions of milk and milk froth to the coffee to make a card
  • a variety of fancy coffees, such as cappuccino and latte, are also added with milk when the milk is heated to make milk chocolate hot drinks to meet the needs of users.
  • the temperature of the milk in the cup of the milk beverage heating mixer needs to be measured by a temperature control device to control the milk temperature at the preset value of the better foaming temperature (generally 60- 70 degrees) to maintain sufficient milk froth volume and good taste.
  • a temperature control device to control the milk temperature at the preset value of the better foaming temperature (generally 60- 70 degrees) to maintain sufficient milk froth volume and good taste.
  • a through hole is usually provided on the heating plate, and the temperature control device is inserted into the through hole to contact the bottom of the cup body to measure the temperature.
  • the authorized patent number is the invention patent of CN101485541B, which discloses a liquid food heating, stirring, foaming cup, the cup and the heating plate in the heating seat body can be separated.
  • the heating plate has three through holes passing through its thickness direction, which are the middle holes in the center of the heating plate for installing the retaining ring, for installing the thermostat Through hole, and the through hole of the push rod used to activate the micro switch; through the bottom of the cup to contact the thermostat to measure the temperature and start the micro switch push rod.
  • the temperature controller is installed in the heating plate, which is greatly affected by the temperature of the heating plate and affects the accuracy of temperature measurement. Moreover, the heating plate is provided with through holes, and the heating efficiency is relatively reduced; especially in When heating milk or frothing milk froth multiple times in a row, the heating plate is always at a higher temperature. The initial temperature of the heating plate is too high, and the temperature measurement accuracy of the thermostat is worse. The more the number of hot milk or hot milk foam The lower the temperature, the shorter the mixing time and the insufficient the mixing, the insufficient foaming of milk, the poor foaming effect, and the small amount of foaming. The reason is that the actual temperature of the hot milk or hot milk foam is low, and the best milk is not achieved.
  • the preset temperature value of the bubble affects the taste. It needs to wait for the temperature of the heating plate to decrease to near normal temperature before returning to normal, which affects the user experience. At the same time, there are many through holes on the heating plate, which poses a safety hazard.
  • a utility model patent with authorization announcement number CN203483288U which discloses a milk frother, including a base and a teat cup, the teat cup is provided on the base ;
  • the base is equipped with a rotatable active magnetic head;
  • the teat cup body is equipped with a stirring device, the stirring device includes a stirring head containing a magnet;
  • the active magnetic head is vertically aligned with the stirring head;
  • the base is also provided with an infrared sensor device;
  • the base has The concave position for the milk cup;
  • the infrared sensing device can be set on the side wall of the concave position or the bottom surface of the concave position; the infrared sensing device is used to sense the presence of the cup body to control the operation or break of the machine Electricity is also used to sense and control milk temperature.
  • the infrared sensor device is used to sense the presence of the cup body on the heating plate, which acts like a micro switch to control the operation or power off of the machine; and the infrared sensor device is also used to sense and control the temperature of the milk; this temperature measurement
  • the cost of the method is relatively high, and it is also susceptible to the interference of the residual heat of the heating plate, especially when the same milk frother is heated multiple times in a row, the temperature measurement accuracy and sensitivity of the infrared sensor device are reduced, and the temperature measurement effect is not ideal .
  • the present application provides a milk beverage heating mixer, which can improve the temperature measurement accuracy of a cup body when continuously heating multiple cups of milk.
  • a milk beverage heating mixer including:
  • a base an upper end of the base has a receiving cavity configured to receive the cup body, and a first radial opening and a second radial opening are opened on the cavity wall of the receiving cavity;
  • a heating plate is provided at the bottom of the accommodating cavity, the heating plate is configured to heat the bottom of the cup body;
  • the first lever assembly is rotatably disposed on the outer side of the accommodating cavity, and the protrusion on the first end of the first lever assembly extends into the accommodating cavity from the first radial opening;
  • the cup body presses the protrusion, and pushes the temperature measurement assembly from the second radial direction through the second end of the first lever assembly
  • the opening extends into the receiving cavity to contact the side wall of the cup body.
  • FIG. 1 is a schematic cross-sectional structure diagram of a milk beverage heating blender provided in Embodiment 1 of the present invention
  • FIG. 2 is an exploded schematic view of a milk beverage heating blender provided in Embodiment 1 of the present invention.
  • Embodiment 3 is one of the exploded schematic diagrams of some structural members in the base provided in Embodiment 1 of the present invention.
  • Embodiment 4 is a second exploded schematic view of some structural components in the base provided in Embodiment 1 of the present invention.
  • FIG. 5 is a schematic structural diagram of a first lever assembly provided in Embodiment 1 of the present invention.
  • FIG. 6 is a schematic cross-sectional view along the A-A plane in FIG. 5;
  • FIG. 7 is a schematic cross-sectional view along the B-B plane in FIG. 5;
  • FIG. 8 is a schematic plan view of a milk beverage heating mixer according to Embodiment 1 of the present invention when the cup body leaves the containing cavity;
  • FIG. 9 is a top schematic view of a milk beverage heating blender provided in Embodiment 1 of the present invention when a cup is placed in a containing cavity;
  • FIG. 10 is a schematic structural diagram of the assembly of the first lever assembly and the temperature measurement assembly provided in Embodiment 1 of the present invention.
  • FIG. 11 is a schematic perspective cross-sectional view taken along the C-C plane in FIG. 10;
  • FIG. 12 is a view from F in FIG. 10;
  • FIG. 13 is an exploded schematic view of the mounting base and the thermostat provided by Embodiment 1 of the present invention.
  • FIG. 15 is a schematic cross-sectional structural view of another starting mode of a micro-switch of a milk beverage heating mixer provided in Embodiment 3 of the present invention.
  • FIG. 17 is a schematic cross-sectional structural diagram of another starting mode of a micro-switch of a milk beverage heating and blending machine provided in Embodiment 4 of the present invention.
  • 210 heating plate; 220, temperature measuring component; 230, electronic control board; 240, micro switch; 250, accommodating cavity; 260, support ring; 270, first lever component; 2101, center blind hole; 2102, concentric thin Grain; 2301, electronic button; 2302, key switch;
  • 251 heat insulation ring; 253, first radial opening; 254, second radial opening; 255, magnetic driving member; 256, first projection; 257, first groove; 258, third radial opening; 2511, cavity wall; 2512, flange side; 2513, upper end hole; 2514, lower end hole;
  • 261 supporting wall; 262, supporting bottom plate; 263, supporting block; 264, driving device; 265, magnetic driving disk; 2651, active magnet;
  • this embodiment provides a milk beverage heating blender, including a cup 100, a blender 110, an isolation cover 160, and a base 200.
  • a heating plate 210, a partition are provided in the base 200 Thermal coil 251, support ring 260, driving device 264, magnetic driving disk 265 fixedly connected to the output shaft of the driving device 264, temperature measuring assembly 220, first lever assembly 270, electronic control board 230, key electronic board 2301 and micro-motion Switch 240; wherein, the cup body 100 is used to contain milk beverages, and the cup body 100 and the base 200 are detachably provided, the upper end of the base 200 has a containing cavity 250 for accommodating the cup body 100, and the heating plate 210 is provided at The bottom of the accommodating chamber 250 is used to heat the bottom of the cup 100.
  • the temperature measuring assembly 220 is used to contact the side wall of the cup 100 for temperature measurement.
  • the stirrer 110 is used to stir the milk in the cup 100.
  • the driving device 264 can Selected as a motor, the magnetic drive disk 265 is provided with an active magnet 2651, and the agitator 110 is provided with a driven magnet 111 magnetically matched with the active magnet 2651.
  • the active magnet 2651 and the driven magnet 111 may be neodymium iron boron magnets.
  • the magnetic driving disk 265 rotates with the driving device 264, the magnetic driving disk 265 drives the stirrer 110 to stir the milk beverage in the cup 100 by magnetic force to make milk foam; the heating plate 210, the driving device 264, the temperature measuring component 220, Both the micro switch 240 and the key electronic board 2301 are electrically connected to the electronic control board 230.
  • the temperature measurement assembly 220 is configured to measure the temperature of the cup 100 when in contact with the sidewall of the cup 100.
  • a handle 120 may be provided on the cup body 100, a cup cover 140 is provided at the upper opening of the cup body 100, a stirring shaft 130 is provided at the center of the inner bottom surface of the cup body 100, and the stirrer 110 is sleeved on The stirring shaft 130 is rotatable about the stirring shaft 130.
  • the stirring shaft 130 is fixed to the inner bottom surface of the cup body 100 by welding or riveting, and the stirrer 110 is detachably sleeved on the stirring shaft 130.
  • the agitating shaft 130 may be first riveted to a bottom plate to be fixed as a bracket, and the outer side of the bottom plate may be provided with a handle, and the bottom plate of the bracket may be detachably disposed in a recess in the center of the inner bottom surface of the cup 100 ,
  • the agitator 110 is rotatably sleeved on the agitating shaft 130.
  • the top surface of the inner hole of the agitator 110 and the top end of the agitating shaft 130 are supported by point contact to reduce the friction force when the agitator 110 rotates.
  • the cup body 100 in this embodiment may be made by stretching a stainless steel plate, and the outer bottom surface of the cup body 100 is fixed with a heat conductive plate 150 by brazing or other methods, and the heat conductive plate 150 may be made of an aluminum plate or other heat conductive materials. board. It should be noted that, in other embodiments, when the cup body 100 is formed by stretching an aluminum plate or other thermally conductive materials, there is no need to additionally provide a heat conductive plate on the bottom surface; in other embodiments, when the cup body 100 is glass In the case of a cup, a heat conducting plate is connected to the bottom of the cup.
  • a central blind hole 2101 is provided at the center of the lower end surface of the heating plate 210.
  • the central blind hole 2101 is used to shorten the magnetic driving distance between the magnetic drive plate 265 and the agitator 110.
  • the magnetic attraction between the magnet 2651 and the driven magnet 111 and the inner contact of the stirrer 110 and the tip of the stirrer shaft 130 use friction-reducing point contact support and the lightweight design of the stirrer 110 to ensure the magnetic drive plate 265 can reliably drive the stirrer 110 to rotate and stir, so as to avoid the defect of opening a through hole in the center of the heating plate in the related art;
  • the heating surface of the heating plate 210 is provided with a plurality of concentric fine lines 2102, used to improve the heating plate 210 Heating efficiency at the bottom of the cup 100.
  • the isolation cover 160 is movably disposed on the inner bottom surface of the cup body 100.
  • the isolation cover 160 may be substantially hemispherical or tapered, or may have other shapes.
  • the isolation cover 160 is provided on the periphery of the agitator 110 and is connected to the agitator 110 Spaced apart, the isolation cover 160 is provided with a plurality of through grooves and/or through holes.
  • the maximum outer diameter of the isolation cover 160 is smaller than the inner diameter of the lower end of the cup body 100.
  • the isolation cover 160 is used to add a chocolate bar to the cup body 100 or In the case of other lumpy seasonings, the chocolate lumps or other lumpy seasonings are blocked from contacting with the magnetic stirrer 110 to avoid the lumpy seasonings preventing the stirrer 110 from rotating and stirring.
  • the isolating cover 160 is provided with a lifting rod 161 to facilitate the handling of the isolating cover 160.
  • the lifting rod 161 and the isolating cover 160 can be detachably connected by screw connection or elastic buckling connection, etc., or by welding Fixed connection or integrated structure; understandably, in other embodiments, the isolation cover 160 may not be placed, for example, when only milk is heated or frothed, the isolation cover 160 does not need to be placed, wherein the isolation cover 160 is optional It is made of stainless steel sheet and can also be made of food-grade plastic materials.
  • the support ring 260 includes a support wall 261, a support block 263 and a support bottom plate 262, and the support block 263 is located inside the support arm 261.
  • the driving device 264 is fixed at the center of the support ring 260 and is vertically arranged with the central axis of the agitator 110, and the micro switch 240 is connected to the support ring 260.
  • the heat insulation ring 251 and the support ring 260 may be made of temperature-resistant heat insulation material PPS (polyphenylene sulfide), or other temperature-resistant heat insulation materials may be used.
  • the heat insulating ring 251 includes an annular cavity wall 2511 and a flange 2512 formed by the outer periphery of the lower portion of the cavity wall 2511 extending radially outward, wherein the inside of the cavity wall 2511 is concentric with the heating plate 210
  • the heating surface of the fine lines 2102 forms an accommodating cavity 250.
  • the heat insulating ring 251 has an upper end hole 2513 and a lower end hole 2514, and the diameter of the upper end hole 2513 is smaller than the diameter of the lower end hole 2514.
  • the outer diameter of the heating plate 210 is larger than the diameter of the upper end hole 2513.
  • the thickness of the heating plate 210 is equal to or slightly smaller than the height of the lower end hole 2514, the heating plate 210 is sleeved in the lower end hole 2514 and supported by the support ring 260, the heat insulation ring 251 and the support ring 260 are tight
  • the heating plate 210 is fixedly connected, and is connected and fixed on the inner wall of the base 200 together. As shown in FIGS.
  • a first radial opening 253 and a second radial opening 254 are opened on the cavity wall 2511, and are located between the first radial opening 253 and the second radial opening 254
  • the flange 2512 is fixedly provided with a lever rotating shaft 274, and a first protrusion 256 is provided on both sides of the first radial opening 253, and a first groove 257 is provided on the first protrusion 256, and within the first groove 257
  • a magnetic driving member 255 that uses a heat-resistant glue to fix the reset assembly can be selected.
  • the magnetic driving member 255 can be a magnet or a magnetic metal sheet, or other magnetic members.
  • first radial opening 253 and the second radial opening 254 are as long as the corresponding components can pass through the first radial opening 253 or the second radial opening 254 and reach the receiving chamber 250.
  • it may be a through hole penetrating the cavity wall 2511, an open through slot penetrating the upper end surface of the cavity wall 2511, or other shapes.
  • the first radial opening 253 is an opening penetrating the cavity wall 2511 in the radial direction of the cavity wall 2511; the second radial opening 254 is a diameter along the cavity wall 2511 To an opening through the cavity wall 2511.
  • the magnetic driving member 255 is disposed on the cavity wall 2511 and is located at the first radial opening 253.
  • the first lever assembly 270 includes a first end 271, a second end 272, and a connecting portion 279.
  • the connecting portion 279 is provided with a lever through hole 278 and a lever through hole 278 Rotatingly connected to the lever rotating shaft 274, a convex portion 273 and a second groove 276 are provided at the first end 271, in the second groove 276, a magnetically driven member 275 can be optionally fixed with a temperature-resistant glue to fix the reset component.
  • the second end 272 is provided with a first guide through hole 2721 and a connecting hole 2723.
  • the second end 272 extends downward to form a start plate 277 for starting the micro switch 240; wherein, the pressing surface 2731 at the front end of the protrusion 273
  • the first radial opening 253 extends into the edge of the accommodating cavity 250 by about 2-5 mm.
  • the pressing surface 2731 is provided as a first introduction slope. The upper end of the first introduction slope is inclined outward relative to the lower end.
  • the pressing surface 2731 of the protrusion 273 The structure is designed as the first lead-in slope, which is to facilitate the horizontal horizontal force received by the lead-in slope when pushed by the cup 100 to push the first lever assembly 270 to rotate, thereby pushing the temperature measuring assembly 220 to contact the side of the cup 100 for temperature measurement ;
  • the magnetically driven member 275 is a magnet, and the magnetically driven member 275 and the magnetically driven member 255 can be attracted by magnetic force to reset the first lever assembly 270;
  • the first lever assembly 270 uses a temperature-resistant heat-insulating material PPS (polystyrene) Sulfide), other temperature-resistant and heat-insulating materials can also be used.
  • the connecting portion 279 is located between the first end 271 and the second end 272.
  • the temperature measuring assembly 220 includes a mounting base 221 and a thermostat 222.
  • the thermostat 222 is provided with a positioning flat square 2224, and the thermostat 222 is sleeved on the mounting base 221.
  • the mounting holes 2211 in the mounting hole 2211 are positioned and oriented by the positioning flat 2224.
  • the mounting holes 2211 of the thermostat 222 and the mounting base 221 can be fixed with temperature-resistant glue, or can be fixed in other ways, for example, interference fit fixing, or
  • the clip is fixedly connected;
  • the temperature controller 222 includes a temperature-sensing sleeve 2221 and an NTC (Negative Temperature Coefficient) thermistor 2222 sleeved in the temperature-sensing sleeve 2221.
  • the NTC can be fixed in the temperature-sensing sleeve 2221 by using temperature-resistant glue;
  • the temperature jacket 2221 may be an aluminum jacket.
  • the temperature-sensing surface 2223 at the front end of the temperature-sensing jacket 2221 has an arc-shaped surface that matches the curvature of the outer side surface of the lower end of the cup body 100 to better fit the temperature-sensing.
  • the mounting base 221 is made of temperature-resistant heat-insulating material PPS, and other temperature-resistant materials can also be selected.
  • the temperature measuring component 220 is connected to the second end 272 as follows: the first guide post 282 on the mounting base 221 and the first guide through hole on the second end 272 2721 is guided and connected, the outer cylinder 2212 on the mounting base 221 is inserted into the connecting hole 2723 on the second end 272, the first elastic member 281 is sleeved on the outer cylinder 2212, and both ends thereof respectively abut the mounting base 221 and Between the second ends 272, the first limiting member 283 is connected to the inner hole on the end surface of the first guide post 282 to connect the temperature measuring assembly 220 to the second end 272, and the temperature measuring assembly 220 is opposite to the second end 272 can move linearly to and fro; among them, the first elastic member 281 can be a compression spring, or a temperature-resistant elastic silicone member can be used, for example, a temperature-resistant elastic silicone sleeve can be used, and the first elastic member 281 can also use other
  • the first elastic member 281 is connected between the temperature measuring component 220 and the second end 272.
  • the first limiting member 283 is a screw
  • the first limiting member 283 includes a first nut and a first threaded rod connected to each other, the first threaded rod is away from the One end of the first nut is connected to the inner hole on the end surface of the first guide post 282 through threads, and the first nut and the temperature measuring assembly 220 are respectively located on different sides of the second end 272.
  • the first screw cap may abut on the first guide through hole 2721 on the second end 272 to limit the relative moving distance between the temperature measuring assembly 220 and the second end 272.
  • an appropriate movable gap is left between the first guide through hole 2721 and the first guide post 282, and there is a gap between the connecting hole 2723 of the second end 272 and the outer cylinder 2212 of the mounting base 221
  • Appropriate movable gap when the temperature measuring component 220 is close to the lower end of the cup 100 and the first elastic member 281 is compressed, the temperature measuring component 220 can automatically adjust to make the temperature-sensing surface 2223 and the arc surface of the lower end of the cup 100 more Match the sense of temperature well.
  • the temperature measurement of the temperature measurement assembly 220 and the activation process of the micro switch 240 are as follows.
  • the side wall of the cup 100 is pressed
  • the convex portion 273 of the first end 271 causes the first lever assembly 270 to rotate around the lever rotation shaft 274, and pushes the temperature measurement assembly 220 through the second end 272 to extend from the second radial opening 254 into the edge of the accommodating chamber 250 and the cup body 100
  • the starter plate 277 presses the spring of the micro switch 240 to close the circuit.
  • the convex portion 273 of the first end 271 and the temperature measuring assembly 220 are respectively attached to the side wall of the cup body 100.
  • the reset process of the temperature measuring assembly 220 and the opening process of the micro switch 240 are as follows.
  • the magnetic force at the first radial opening 253 The driving member 255 exerts a magnetic attraction force on the magnetic force at the first end 271 of the first lever assembly 270 by the driving member 275, causing the first lever assembly 270 to rotate around the lever rotating shaft 274 and reset.
  • the protrusion 273 extends into In the accommodating chamber 250, the temperature measuring assembly 220 retreats from the edge of the accommodating chamber 250 and is located in the second radial opening 254.
  • the activation plate 277 leaves the shrapnel of the micro switch 240, and the micro switch disconnects the circuit; Among them, by adjusting the magnitude of the magnetic attraction between the magnetic driving member 255 and the magnetic driven member of the reset assembly, not only can the reliable magnetic attraction reset of the reset assembly be maintained, but also the cup body 100 can be placed in the accommodating cavity 250 without excessive resistance Big.
  • a second elastic return member may also be provided, and the second elastic return member provides the first lever assembly 270 with a force that causes the second end 272 and the temperature measurement assembly 220 to leave the edge of the receiving chamber 250 , The second elastic restoring element causes the temperature measuring assembly 220 to leave the outer edge of the heating plate 210.
  • the convex portion 273 of the first lever assembly 270 and the outer surface away from the heating plate 210 are recessed Facing the blind hole in the center of the heating plate, the bottom of the blind hole extends into the convex portion 273, and the opening of the blind hole is located on the side of the convex portion 273 of the first lever assembly 270 away from the heating plate 210
  • the outer edge of the flange 2512 is convexly provided with a baffle, the baffle along the radial direction of the cavity wall 2511 directly facing the first radial opening 253, and away from the outer edge of the outer edge of the heating plate is set, that is, assembled state
  • the baffle is disposed opposite to the blind hole of the convex portion 273 along the radial direction of the cavity wall 2511, and the baffle is located at the position of the convex portion 273 of the first lever assembly 270
  • a second elastic return member is provided between the baffle and the blind
  • the milk beverage heating blender provided in this embodiment pushes the first lever assembly to rotate through the side wall of the cup body, and the first lever assembly further pushes the temperature measurement assembly to contact the side wall of the cup body for temperature measurement, and resets when the cup body leaves the accommodating cavity
  • the component can make the temperature measuring component leave the edge of the accommodating cavity and return to the second radial opening to prevent the temperature measuring component from being roasted by the residual heat of the heating plate.
  • the temperature measuring component neither contacts the heating plate nor directly
  • the roasting by the residual heat of the heating plate can reduce the influence of the heating plate heat on the temperature measurement of the temperature measuring component, and can improve the temperature measurement accuracy, especially the temperature measurement accuracy during continuous multiple heating, so that the milk temperature is in a better foaming
  • the temperature is preset at the same time, and the stirring is more sufficient, thereby improving the fineness of the milk foam, improving the taste and the user experience;
  • there is no need to open a through hole for the temperature measurement component and the micro switch start rod on the heating plate and there is no need to A through hole is set in the center of the heating plate, the integrity of the heating plate is good, the heating efficiency is improved, and at the same time, the hidden danger of possible water leakage through the through hole is avoided; It is easy to assemble, has low production cost, and can maintain good contact between the temperature measurement component and the side wall of the cup body, ensuring reliable temperature measurement.
  • a connecting plate 284 is provided between the temperature measuring assembly 220 and the second end 272, and a second guide post 285 is provided on the cavity wall 2511 on both sides of the second radial opening 254.
  • the connecting plate 284 is movably guided and connected to the second guide post 285 through the second guide through hole 2841. Both ends of the second guide post 285 are respectively connected to the cavity wall 2511 and the second limiter 286.
  • the second limiter 286 is used to Prevent the connecting plate 284 from detaching from the cavity wall 2511; the connecting plate 284 and the temperature measuring assembly 220 are movably guided and connected by a third guide post 287, and the third guide post 287 passes through the third guide through hole 2842 on the connecting plate 284 The two ends of the third guide column 287 are connected to the temperature measuring assembly 220 and the third limiter 288 respectively.
  • the third limiter 288 is used to prevent the connecting plate 284 from detaching from the temperature measuring assembly 220.
  • the first elastic member 281 is provided at Between the connecting plate 284 and the temperature measuring assembly 220;
  • the second end 272 and the connecting plate 284 are movably connected by a connecting post 289.
  • the second end 272 is provided with an elongated hole 2722 slidingly matched with the connecting post 289, the connecting post 289 is inserted into the elongated hole 2722, and the connecting post 289
  • the two ends are respectively connected to the connecting plate 284 and the connecting piece 2810. Understandably, in order to ensure that the second end 272 can rotate relative to the connecting post 289, the elongated hole 2722 should be set along the horizontal direction; for ease of installation, the second limit The piece 286, the third limiting piece 288 and the connecting piece 2810 can be selected as screws.
  • the second guiding post 285, the third guiding post 287 and the connecting post 289 are respectively provided with the second limiting piece 286 and the third limiting position
  • the number of the second guide post 285, the third guide post 287 and the connecting post 289 can all be at least two.
  • the temperature measuring component 220 can move linearly relative to the accommodating cavity 250, thereby ensuring that the temperature measuring component 220 can contact the side wall of the cup 100 to measure temperature; this implementation
  • the temperature measurement process of the example temperature measurement assembly 220 and the reset process of the first lever assembly 270 and the temperature measurement assembly are the same as those in the first embodiment described above, and will not be repeated here.
  • the second limiting member 286 is a screw
  • the second limiting member 286 includes a second nut and a second threaded rod connected to each other, the second threaded rod is away from the One end of the second nut is connected to the inner hole on the end surface of the second guide post 285 through threads, and the second nut and the cavity wall 2511 are respectively located on different sides of the connecting plate 284.
  • the second screw cap can abut on the second guide through hole 2841 of the connecting plate 284 to limit the relative moving distance between the connecting plate 284 and the cavity wall 2511.
  • the third limiter 288 is a screw
  • the third limiter 288 includes a third nut and a third threaded rod connected to each other, the third threaded rod is away from the One end of the third nut is connected to the inner hole on the end surface of the third guide post 287 through threads, and the third nut and the temperature measuring assembly 220 are respectively located on different sides of the connecting plate 284.
  • the third nut can abut on the third guide through hole 2842 of the connecting plate 284 to limit the relative moving distance between the connecting plate 284 and the temperature measuring assembly 220.
  • the connecting member 2810 is a screw
  • the connecting member 2810 includes a fourth nut and a fourth threaded rod connected to each other, the fourth threaded rod is away from the fourth nut
  • One end is connected to the inner hole on the end surface of the connecting post 289 through a screw thread
  • the fourth nut and the connecting plate 284 are respectively located on different sides of the second end 272.
  • the fourth nut may abut on the elongated hole 2722 of the second end 272 to limit the relative moving distance between the connecting plate 284 and the second end 272.
  • the temperature measurement assembly 220 may be movably connected to the cavity wall 2511 or the base 200, for example, the temperature measurement assembly 220 may be movably connected to the cavity wall 2511 through a second elastic member.
  • the two ends 272 push the temperature measuring assembly 220 to overcome the elastic force of the second elastic member and contact the side wall of the cup 100 to measure temperature.
  • the method of starting or disconnecting the micro switch 240 of this embodiment is the same as that of the above-mentioned first embodiment, which will not be repeated here.
  • a third radial opening 258 is opened on the cavity wall 2511 of the accommodating cavity 250, and the micro switch 240 is activated or disconnected by rotating the starter provided at the third radial opening 258 and the first elastic return member 291.
  • the third radial opening 258 is an opening that penetrates the cavity wall 2511 in the radial direction of the cavity wall 2511.
  • the starter includes a second lever assembly 292 that is rotatably connected to the outside of the cavity wall 2511.
  • the two ends of the second lever assembly 292 are the first starter end for contacting the cup 100 and the The first pressing end of the micro switch 240 is pressed.
  • the cavity wall 2511 of the accommodating cavity 250 is provided with a third radial opening 258 for the first activation end of the second lever assembly 292 to pass through.
  • the side wall of the cup body 100 squeezes Press the first actuating end of the second lever assembly 292, so that the first pressing end of the second lever assembly 292 presses and turns on the micro switch 240, and the first elastic reset member 291 is used for the first pressing of the second lever assembly 292
  • the end provides a force to leave the micro switch 240; in this embodiment, the first start end includes a second lead-in slope, the upper end of the second lead-in slope is inclined outward relative to the lower end, and the second lead-in slope provided at the first start end is In order to facilitate being pushed outward by the cup body 100, the second lever assembly 292 is also driven to rotate, so that the first pressing end presses the spring of the micro switch 240 to turn on the power.
  • the principle of this embodiment is the same as that of Embodiment 3, and the structure is basically the same.
  • the difference is that the starter includes a pressing rod 293 that can slide up and down.
  • the starter includes a pressing rod 293 and a first elastic reset member 291 slidably provided in the base 200 up and down.
  • the first elastic reset member 291 is used to To provide a reset force for the pressing lever 293, the two ends of the pressing lever 293 are a second start end for contacting the bottom of the cup 100 and a second pressing end for contacting with the micro switch 240, optionally,
  • the pressing rod 293 is generally L-shaped.
  • the surface of the second starting end for contacting with the cup 100 is a third introduction slope.
  • the upper end of the third introduction slope is inclined outward relative to the lower end.
  • the second starting end The third introduction slope is provided to facilitate the pressing of the pressing rod 293 to slide down and press the spring of the micro switch 240 when pressed by the cup body 100 to turn on the power.
  • a milk beverage heating mixer provided by the present application pushes the first lever assembly to rotate through the side wall of the cup body, and the first lever assembly further pushes the temperature measuring assembly to contact the side wall of the cup body to measure temperature, and when the cup body leaves the bottom of the containing cavity
  • the reset component can make the temperature measuring component leave the edge of the accommodating cavity and return to the second radial opening, which avoids the temperature measuring component being roasted by the residual heat of the heating plate.
  • the temperature measuring component is neither The heating plate is in contact, and it will not be directly roasted by the residual heat of the heating plate, which can significantly reduce the influence of the heating plate heat on the temperature measurement accuracy of the temperature measurement component, improve the temperature measurement accuracy, especially the temperature measurement accuracy during continuous multiple heating, Make the milk temperature at a better preset value of the foaming temperature, while stirring more fully, thereby improving the fineness of the milk foam, improving the taste and user experience; on the other hand, there is no need to set the temperature measurement component and micro switch on the heating plate to start There is no need to open a through hole in the center of the heating plate through the through hole of the rod, the integrity of the heating plate is good, the heating efficiency is improved, and the hidden danger of leakage of water through the through hole is avoided; on the other hand, the temperature measurement component is pushed through the lever component,
  • the structure is simple, convenient to manufacture, easy to assemble, low in production cost, and can maintain good contact between the temperature measuring component and the side wall of the cup body, ensuring reliable temperature measurement.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

一种牛奶饮料加热搅拌机,包括杯体(100)、搅拌器(110)、基座(200)、发热盘(210)、测温组件(220)和第一杠杆组件(270),基座(200)上端具有被配置为容置杯体(100)的容纳腔(250),容纳腔(250)的腔壁(2511)上设置有第一径向开口(253)和第二径向开口(254);发热盘(210)设置于容纳腔(250)的底部;第一杠杆组件(270)可转动地设置于容纳腔(250)外侧,第一杠杆组件(270)的第一端上的凸起部(273)由第一径向开口(253)伸入容纳腔(250)中;当杯体(100)容置于容纳腔(250)中时,杯体(100)按压凸起部(273),并通过第一杠杆组件(270)的第二端推动测温组件(220)由第二径向开口(254)伸入容纳腔(250)与杯体(100)侧壁接触。

Description

一种牛奶饮料加热搅拌机
本公开要求在2018年12月13日提交中国专利局、申请号为201811526511.1的中国专利申请的优先权,以上申请的全部内容通过引用结合在本公开中。
技术领域
本申请涉及液体食品加工设备的技术领域,例如是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在家用和商用领域均得到了广泛应用,一般是指对牛奶进行加热、搅拌、发泡加工的器具,较为常用的是奶泡机或奶茶机。
市面上相关技术中的奶泡机主要具备三个功能:制作常温牛奶泡、制作热牛奶泡、和牛奶加热,将牛奶加工好后,在咖啡中加入不同比例的牛奶和牛奶泡,制作出卡布奇诺(cappuccino)、拿铁(latte)等多种花式咖啡,也有在牛奶加热时加入巧克力,制作牛奶巧克力热饮,以满足用户多种口味需求。
牛奶饮料加热搅拌机在加热的过程中,需要通过温控装置对牛奶饮料加热搅拌机的杯体中的牛奶进行测温,以将牛奶温度控制在较佳的发泡温度的预设值(一般60—70度),以保持足够的牛奶发泡量和好的口感。相关技术中通常是在发热盘上设置一个通孔,温控装置穿设于该通孔中以与杯体的底部接触进行测温。例如,授权公告号为CN101485541B的发明专利,其公开了一种液体食品加热、搅拌、发泡杯,其杯与加热座体内的发热盘可分离。如上述发明专利文件第6页的图2所示,发热盘具有三个穿过其厚度方向的通孔,分别是用于安装挡圈的位于发热盘中心的中孔,用于安装温控器的通孔,和用于启动微动开关的推杆的通孔;通过杯的底部接触温控器测温和启动微动开关推杆。
这种测温方式存在以下缺陷,温控器穿设于发热盘中,受发热盘温度的影响较大,影响测温精度,而且发热盘上设置有通孔,加热效率相对降低;尤其是在连续多次牛奶加热或者打热奶泡时,发热盘始终处于较高温度状态,发热盘初始温度过高,温控器测温准确度更差,其越往后面次数的热牛奶或者热牛奶泡的温度越低,搅拌时间越短、搅拌越不足,牛奶发泡不充分,奶泡效果差,起泡量少,原因是热牛奶或热牛奶泡实际温度偏低、没有达到较佳的牛奶发泡 的预设温度值,影响口感,需等待发热盘温度降低至接近常温时才恢复正常,影响用户体验,同时发热盘上通孔较多,存在安全隐患。
相关技术提出了利用红外感应装置对牛奶进行测温的技术方案,例如授权公告号为CN203483288U的实用新型专利,公开了一种打奶泡器,包括底座和打奶杯,打奶杯设于底座;底座内设有一可旋转的主动磁头;打奶杯杯体内设有搅拌装置,搅拌装置包括内含磁体的搅拌头;主动磁头与搅拌头竖直对齐;底座还设有红外感应装置;底座具有可供打奶杯放置的凹位;红外感应装置可设于凹位的侧壁,也可设于凹位的底面;红外感应装置既用于感应杯体的存在,以控制机器的运行或断电,又用于感应和控制牛奶温度。
使用红外感应装置感应杯体在发热盘上的存在,起到类似于微动开关的作用,以控制机器的运行或断电;而且红外感应装置也用于感应控制牛奶的温度;这种测温方式成本相对较高,而且也容易受到发热盘的余热干扰影响,尤其是当同一台打奶泡器连续多次加热多个循环时,红外感应装置测温精度和灵敏度下降,测温效果不理想。
发明内容
本申请提供一种牛奶饮料加热搅拌机,能够在连续加热多杯牛奶的情况下,提高对杯体的测温精度。
本申请采用以下技术方案:
一种牛奶饮料加热搅拌机,包括:
用于容纳牛奶饮料的杯体;
基座,所述基座的上端具有被配置为容置所述杯体的容纳腔,所述容纳腔的腔壁上开设有第一径向开口和第二径向开口;
发热盘,设置于所述容纳腔的底部,所述发热盘被配置为对所述杯体的底部加热;
测温组件;以及
第一杠杆组件,可转动地设置于所述容纳腔的外侧,且所述第一杠杆组件的第一端上的凸起部由所述第一径向开口伸入所述容纳腔中;当所述杯体容置于所述容纳腔中时,所述杯体按压所述凸起部,并通过所述第一杠杆组件的第二端推动所述测温组件由所述第二径向开口伸入所述容纳腔以与所述杯体的侧壁接触。
附图说明
图1是本发明实施例一提供的一种牛奶饮料加热搅拌机的剖面结构示意图;
图2是本发明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3是本发明实施例一提供的基座内的部分结构件的分解示意图之一;
图4是本发明实施例一提供的基座内的部分结构件的分解示意图之二;
图5是本发明实施例一提供的第一杠杆组件的结构示意图;
图6是沿图5中A-A面的剖面示意图;
图7是沿图5中B-B面的剖面示意图;
图8是本发明实施例一提供的一种牛奶饮料加热搅拌机在杯体离开容纳腔时的俯视示意图;
图9是本发明实施例一提供的一种牛奶饮料加热搅拌机在杯体放置于容纳腔时的俯视示意图;
图10是本发明实施例一提供的第一杠杆组件与测温组件装配的结构示意图;
图11是沿图10中C-C面的立体剖视示意图;
图12是图10中的F向视图;
图13是本发明实施例一提供的安装座和温控器的分解结构示意图;
图14是本发明实施例二提供的基座内的部分结构件的分解示意图;
图15是本发明实施例三提供的一种牛奶饮料加热搅拌机的微动开关的另一种启动方式的剖面结构示意图;
图16是本发明实施例三基座内的部分结构件的分解示意图;
图17是本发明实施例四提供的一种牛奶饮料加热搅拌机的微动开关的另一种启动方式的剖面结构示意图。
附图标记:
100、杯体;200、基座;
110、搅拌器;120、把手;130、搅拌轴;140、杯盖;150、导热板;160、隔离罩;111、从动磁铁;161、提拿杆;
210、发热盘;220、测温组件;230、电子控制板;240、微动开关;250、容纳腔;260、支撑圈;270、第一杠杆组件;2101、中心盲孔;2102、同心细 纹;2301、按键电子板;2302、按键开关;
221、安装座;222、温控器;2221、感温套;2222、NTC热敏电阻;2211、安装孔;2212、外圆柱;2223、感温面;2224、定位扁方;
251、隔热圈;253、第一径向开口;254、第二径向开口;255、磁力驱动件;256、第一凸块;257、第一凹槽;258、第三径向开口;2511、腔壁;2512、法兰边;2513、上端孔;2514、下端孔;
261、支撑壁;262、支撑底板;263、支撑块;264、驱动装置;265、磁性驱动盘;2651、主动磁铁;
271、第一端;272、第二端;273、凸起部;274、杠杆转轴;275、磁力受驱件;276、第二凹槽;277、启动板;278、杠杆通孔;279、连接部;2721、第一导向通孔;2722、长条孔;2723、连接孔;2731、按压面;
281、第一弹性件;282、第一导向柱;283、第一限位件;284、连接板;285、第二导向柱;286、第二限位件;287、第三导向柱;288、第三限位件;289、连接柱;2810、连接件;2841、第二导向通孔;2842、第三导向通孔;291、第一弹性复位件;292、第二杠杆组件;293、按压杆。
具体实施方式
下面结合附图并通过具体实施方式来进一步说明本申请的技术方案。
在本申请的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,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。
实施例一
如图1和图2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、搅拌器110、隔离罩160和基座200,在基座200内设有发热盘210、隔热圈251、支撑圈260、驱动装置264、固定连接于驱动装置264输出轴上的磁性驱动盘265、测温组件220、第一杠杆组件270、电子控制板230、按键电子板2301和微动开关240;其中,杯体100用于容纳牛奶饮料,杯体100与基座200之间为可分离设置,基座200上端具有用于容置杯体100的容纳腔250,发热盘210设置于容纳腔250的底部以对杯体100的底部加热,测温组件220用于与杯 体100的侧壁接触测温,搅拌器110用于对杯体100内的牛奶进行搅拌,驱动装置264可选为电机,磁性驱动盘265内设置有主动磁铁2651,搅拌器110内设置有与主动磁铁2651磁吸匹配的从动磁铁111,主动磁铁2651和从动磁铁111可选为钕铁硼磁铁,磁性驱动盘265随驱动装置264转动时,磁性驱动盘265通过磁力带动搅拌器110对杯体100内的牛奶饮料旋转搅拌,以制作牛奶泡;发热盘210、驱动装置264、测温组件220、微动开关240和按键电子板2301均与电子控制板230电连接。
在一些实施例中,测温组件220被配置为在与杯体100的侧壁接触时,测量杯体100的温度。
如图1和图2所示,杯体100上可以设置有手柄120,杯体100上端开口处设置有杯盖140,杯体100的内底面中心设置有搅拌轴130,搅拌器110套设在搅拌轴130上且可绕搅拌轴130转动。本具体实施方式中,搅拌轴130通过焊接或铆接固定于杯体100的内底面,搅拌器110可拆卸地套设在搅拌轴130上。其他实施方式中,搅拌轴130也可以先与一底板垂直铆接固定为一支架,底板的外侧可设有提拿件,该支架的底板可分离地设置于杯体100的内底面中心的凹陷内,搅拌器110转动套设在搅拌轴130上。其中,搅拌器110的内孔的顶面与搅拌轴130的顶端之间为点接触支撑,以减少搅拌器110旋转时的摩擦力。本实施例中的杯体100可以为由不锈钢板材拉伸制成,杯体100的外底面上通过钎焊或者其他方式固定有导热板150,导热板150可以为铝板或其它导热材料制成的板。需要说明地是,在其他的实施方式中,当杯体100为铝板或者其他导热材料拉伸而成时,其底面无需再额外设置导热板;在另外的实施方式中,当杯体100为玻璃杯时,其底部连接设置有导热板。
如图1至图3所示,发热盘210下端面的中心处设有中心盲孔2101,中心盲孔2101用于缩短磁性驱动盘265与搅拌器110之间的磁力驱动距离,通过加大主动磁铁2651和从动磁铁111之间的磁性吸力、以及搅拌器110的内孔与搅拌轴130的顶端之间采用减少摩擦力的点接触支撑和搅拌器110的轻量化设计,来确保磁性驱动盘265能可靠地磁力驱动搅拌器110旋转搅拌,从而避免相关技术中在发热盘中心开设通孔的缺陷;发热盘210的加热面上设有多个同心细纹2102,用于提高发热盘210对杯体100底部的加热效率。
隔离罩160活动设置于杯体100的内底面上,隔离罩160可以为大致呈半球形或者锥形,也可以是其它形状,隔离罩160罩设于搅拌器110的外围,并 与搅拌器110间隔开,隔离罩160上设置有多个通槽和/或通孔,隔离罩160的最大外圆直径小于杯体100下端的内径,隔离罩160用于当向杯体100内添加巧克力块或其它块状调味料时、阻挡巧克力块或其它块状调味料与磁力搅拌器110接触、以避免块状调味料阻扰搅拌器110旋转搅拌。隔离罩160上设置有提拿杆161,以便于隔离罩160的取放,提拿杆161与隔离罩160之间可以通过螺纹连接或弹性扣位连接等方式可拆卸连接,也可以通过焊接方式固定连接或者为一体结构;可以理解地是,在其他实施方式中也可以不放置隔离罩160,例如,当只是牛奶加热或打牛奶泡时,无需放置隔离罩160,其中,隔离罩160可选为采用不锈钢板材拉伸而成,也可以采用食品级塑胶材料制作。
如图1至图3所示,支撑圈260包括支撑壁261、支撑块263和支撑底板262,支撑块263位于支撑臂261内侧。驱动装置264固定在支撑圈260的中心处、并与搅拌器110竖直同中心轴线设置,微动开关240连接在支撑圈260上。隔热圈251和支撑圈260可以为由耐温隔热材料PPS(聚苯硫醚)制成,也可采用其它耐温隔热材料。
如图1至图4所示,隔热圈251包括环形的腔壁2511和腔壁2511的下部外周沿径向向外延伸形成的法兰边2512,其中腔壁2511内侧与发热盘210的同心细纹2102加热面形成容纳腔250,隔热圈251具有上端孔2513和下端孔2514,且上端孔2513的直径小于下端孔2514的直径,发热盘210的外径大于上端孔2513的直径,略小于或者等于下端孔2514的直径,发热盘210的厚度等于或者略小于下端孔2514的高度,发热盘210套设于下端孔2514中并由支撑圈260支撑,隔热圈251与支撑圈260紧固连接以固定发热盘210、并且一同连接固定于基座200的内壁上。如图3和图4所示,在腔壁2511上开设有第一径向开口253和第二径向开口254,在第一径向开口253和第二径向开口254之间、并位于法兰边2512上固定设有杠杆转轴274,在第一径向开口253的两侧设有第一凸块256,第一凸块256上开设有第一凹槽257,在第一凹槽257内可选采用耐温胶固定复位组件的磁力驱动件255,磁力驱动件255可选为磁铁或者磁性金属片,也可以是其它磁性件。可以理解的是,第一径向开口253和第二径向开口254的形状,只要能够供相应部件在第一径向开口253或第二径向开口254处穿过并到达容纳腔250中即可,例如可以为贯穿腔壁2511的通孔,也可以为贯穿腔壁2511上端面的开口通槽,或其它形状。
在一些实施例中,如图3、图4所示,第一径向开口253为沿腔壁2511的 径向贯穿腔壁2511的一个开口;第二径向开口254为沿腔壁2511的径向贯穿腔壁2511的一个开口。
如图8所示,在一些实施例中,磁力驱动件255设于腔壁2511上,且位于第一径向开口253处。
如图3至图9所示,在一些实施例中,第一杠杆组件270包括第一端271、第二端272和连接部279,连接部279上设有杠杆通孔278,杠杆通孔278转动连接于杠杆转轴274,在第一端271处设有凸起部273和第二凹槽276,在第二凹槽276内可选采用耐温胶固定复位组件的磁力受驱件275,在第二端272上设有第一导向通孔2721和连接孔2723,第二端272向下延伸形成有用于启动微动开关240的启动板277;其中,凸起部273的前端的按压面2731由第一径向开口253伸入容纳腔250边缘2-5mm左右,按压面2731设置为第一导入斜面,第一导入斜面的上端相对于下端向外侧倾斜,凸起部273的按压面2731的结构设计为第一导入斜面,是为了便于被杯体100按压时、导入斜面受到的向外侧的水平分力推动第一杠杆组件270转动,从而推动测温组件220与杯体100侧面接触测温;磁力受驱件275为磁铁,磁力受驱件275与磁力驱动件255之间能够通过磁力吸合从而使第一杠杆组件270复位;第一杠杆组件270采用耐温隔热材料PPS(聚苯硫醚)制作,也可以选用其它耐温隔热材料。
在一些实施例中,如图5所示,第一杠杆组件270中,连接部279位于第一端271、第二端272之间。
如图3、图4以及图10至图13所示,测温组件220包括安装座221和温控器222,温控器222设有定位扁方2224,温控器222套设在安装座221的安装孔2211中、并由定位扁方2224定位定向,温控器222与安装座221的安装孔2211可选用耐温胶固定,也可以采用其他方式固定,例如,过盈紧配合固定,或者卡扣固定连接;温控器222包括感温套2221和套设于感温套2221中的NTC(Negative Temperature Coefficient)热敏电阻2222,NTC可采用耐温胶固定在感温套2221中;感温套2221可以为铝套,感温套2221前端的感温面2223具有与杯体100下端外侧面弧度匹配的弧形面、以便更好地贴合感温。安装座221采用耐温隔热材料PPS制作,也可选择其它耐温材料。
请结合参阅图3至图5以及图10至图13,测温组件220与第二端272连接方式如下:安装座221上的第一导向柱282与第二端272上的第一导向通孔2721导向连接,安装座221上的外圆柱2212穿设在第二端272上的连接孔2723中, 第一弹性件281套设于外圆柱2212上、其两端分别抵顶于安装座221与第二端272之间,第一限位件283连接于第一导向柱282的端面上的内孔、以将测温组件220连接在第二端272上,测温组件220相对于第二端272可以直线往复移动;其中,第一弹性件281可选为压缩弹簧,也可采用耐温的弹性硅胶件,例如,可采用耐温的弹性硅胶套,第一弹性件281也可以选用其他弹性材料制作,第一弹性件281起到适当弹性压紧的作用,第一弹性件281能够使温控器222的感温面2223与杯体100侧壁更好地弹性压紧、并且贴合测温;第一限位件283为螺丝。
在一些实施例中,如图4所示,第一弹性件281连接于测温组件220与所述第二端272之间。
如图11所示,在一些实施例中,第一限位件283为螺丝,且第一限位件283包括相互连接的第一螺帽和第一螺纹杆,所述第一螺纹杆远离所述第一螺帽的一端通过螺纹与所述第一导向柱282的端面上的内孔连接,所述第一螺帽与所述测温组件220分别位于所述第二端272的不同侧。所述第一螺帽可以抵接于所述第二端272上的第一导向通孔2721处,以限位测温组件220与第二端272之间的相对活动距离。
如图9和图11所示,第一导向通孔2721和第一导向柱282之间留有适当的活动间隙,第二端272的连接孔2723与安装座221的外圆柱2212之间留有适当的活动间隙,当测温组件220贴紧杯体100下端且第一弹性件281被压缩时,测温组件220能自动调整,使其感温面2223与杯体100下端的圆弧面更好地匹配贴合感温。
在一些实施例中,结合图1和图9,测温组件220的测温以及微动开关240的启动过程如下,当杯体100容置于容纳腔250中时,杯体100的侧壁按压第一端271的凸起部273,使第一杠杆组件270绕杠杆转轴274转动,通过第二端272推动测温组件220由第二径向开口254伸入容纳腔250的边缘与杯体100的侧壁接触测温,与此同时,启动板277按压微动开关240的弹片,接通电路。从图9中可以看出,杯体100放置在容纳腔250中后,第一端271的凸起部273和测温组件220分别与杯体100的侧壁贴合。
在一些实施例中,结合图2和图8,测温组件220的复位以及微动开关240的断开过程如下,当杯体100离开容纳腔250时,位于第一径向开口253处的磁力驱动件255对第一杠杆组件270的第一端271处的磁力受驱件275产生磁 吸力作用,使第一杠杆组件270绕杠杆转轴274转动而复位,此时,凸起部273伸入至容纳腔250中,测温组件220从容纳腔250的边缘回退、并位于第二径向开口254内,与此同时,启动板277离开微动开关240的弹片,微动开关断开电路;其中,通过调节复位组件的磁力驱动件255与磁力受驱件之间的磁吸力大小,可以既保持复位组件的可靠磁吸复位,又能使杯体100置入容纳腔250时不至于阻力过大。
需要说明地是,在其他实施方式中,也可以设置第二弹性复位件,第二弹性复位件给第一杠杆组件270提供使第二端272和测温组件220离开容纳腔250的边缘的力,第二弹性复位件使测温组件220离开发热盘210的外边缘,在一些实施例中,在第一杠杆组件270的凸起部273上、并且远离发热盘210的外侧面上凹设有正对发热盘中心的盲孔,所述盲孔的底部伸入至所述凸起部273内,所述盲孔的开口位于第一杠杆组件270的凸起部273远离发热盘210的一侧;同时,在法兰边2512的外缘凸设有挡板,所述挡板沿腔壁2511的径向正对第一径向开口253、并且远离发热盘外边缘的外侧设置,即装配状态时,所述挡板沿腔壁2511的径向与所述凸起部273的所述盲孔相对设置,所述挡板位于所述第一杠杆组件270的所述凸起部273的所述盲孔的后侧,在所述挡板和所述盲孔之间设置有第二弹性复位件;所述第二弹性复位件可以为压缩弹簧,所述弹簧的两端分别为第五端和第六端,所述第五端伸入所述盲孔设置且抵接于所述盲孔的底部,所述第六端抵接于所述挡板,所述第二弹性复位件还可以为其他弹性件;当杯体100离开发热盘210时,在第二弹性复位件的弹性作用下,第一杠杆组件270复位,凸起部273通过第一径向开口253伸入到容纳腔250中,与此同时,测温组件220朝离开发热盘210外边缘的方向向外回退,使得测温组件220位于第二径向开口254中,从而避免测温组件220直接受到发热盘210余热的炙烤。
本实施例提供的牛奶饮料加热搅拌机,通过杯体侧壁推动第一杠杆组件转动,第一杠杆组件进而推动测温组件与杯体侧壁接触测温,且当杯体离开容纳腔时,复位组件能使测温组件离开容纳腔的边缘、退回到第二径向开口内,避免测温组件受发热盘余热的炙烤,一方面,测温组件既不与发热盘接触,又不会直接受到发热盘余热的炙烤,可降低发热盘热量对测温组件测温的影响,能提高测温精度、尤其是提高连续多次加热时的测温精度,使牛奶温度处于较佳的发泡温度预设值,同时搅拌更充分,进而提高奶泡细腻度,提升口感和用户 体验;另一方面,发热盘上无需开设供测温组件和微动开关启动杆通过的通孔,也无需在发热盘中心开设通孔,发热盘的完整性好,提高了加热效率,同时避免了通孔可能漏水的安全隐患;再一方面,通过杠杆组件推动测温组件测温,结构简单、方便制造、容易装配、生产成本低,且能够保持测温组件与杯体侧壁的良好接触,确保测温可靠。
实施例二
本实施例与上述实施例一的原理相同,结构基本相同,不同之处在于:第一杠杆组件270的第二端272与测温组件220之间的连接方式不同。
如图14所示,本实施例中,在测温组件220与第二端272之间设置有连接板284,第二径向开口254两侧的腔壁2511上设置有第二导向柱285,连接板284通过第二导向通孔2841与第二导向柱285活动导向连接,第二导向柱285的两端分别与腔壁2511和第二限位件286连接,第二限位件286用于防止连接板284与腔壁2511脱离;连接板284与测温组件220之间通过第三导向柱287活动导向连接,第三导向柱287穿设于连接板284上的第三导向通孔2842中,第三导向柱287的两端分别与测温组件220和第三限位件288连接,第三限位件288用于防止连接板284与测温组件220脱离,第一弹性件281设置于连接板284与测温组件220之间;
第二端272与连接板284通过连接柱289活动连接,第二端272上设置有与连接柱289滑动配合的长条孔2722,连接柱289穿设于长条孔2722中,且连接柱289的两端分别与连接板284和连接件2810连接,可理解地,为了保证第二端272能够相对于连接柱289转动,长条孔2722应当沿水平方向设置;为了安装方便、第二限位件286、第三限位件288和连接件2810均可选为螺钉,第二导向柱285、第三导向柱287和连接柱289上分别设置有与第二限位件286、第三限位件288和连接件2810连接的内孔。为了保证运动的稳定性,第二导向柱285、第三导向柱287和连接柱289的数量均可选为至少两个。第二端272与测温组件220的这种连接方式中,测温组件220能够相对于容纳腔250作直线运动,进而保证测温组件220能够与杯体100的侧壁接触测温;本实施例的测温组件220测温过程和第一杠杆组件270以及测温组件的复位过程与上述实施例一相同,在此不加以赘述。
如图14所示,在一些实施例中,第二限位件286为螺钉,且第二限位件286包括相互连接的第二螺帽和第二螺纹杆,所述第二螺纹杆远离所述第二螺帽的 一端通过螺纹与所述第二导向柱285的端面上的内孔连接,所述第二螺帽与所述腔壁2511分别位于所述连接板284的不同侧。所述第二螺帽可以抵接于所述连接板284的第二导向通孔2841处,以限位连接板284与腔壁2511之间的相对活动距离。
如图14所示,在一些实施例中,第三限位件288为螺钉,且第三限位件288包括相互连接的第三螺帽和第三螺纹杆,所述第三螺纹杆远离所述第三螺帽的一端通过螺纹与所述第三导向柱287的端面上的内孔连接,所述第三螺帽与所述测温组件220分别位于所述连接板284的不同侧。所述第三螺帽可以抵接于所述连接板284的第三导向通孔2842处,以限位连接板284与测温组件220之间的相对活动距离。
如图14所示,在一些实施例中,连接件2810为螺钉,且连接件2810包括相互连接的第四螺帽和第四螺纹杆,所述第四螺纹杆远离所述第四螺帽的一端通过螺纹与所述连接柱289的端面上的内孔连接,所述第四螺帽与所述连接板284分别位于所述第二端272的不同侧。所述第四螺帽可以抵接于所述第二端272的长条孔2722处,以限位连接板284与第二端272之间的相对活动距离。
需要说明地是,其他实施方式中,也可以将测温组件220活动连接于腔壁2511上或者基座200上,例如通过第二弹性件将测温组件220活动连接于腔壁2511上,第二端272推动测温组件220克服第二弹性件的弹力与杯体100的侧壁接触测温。
本实施例的微动开关240的启动或断开方式与上述实施例一相同,在此不加以赘述。
实施例三
本实施例与上述实施例一和二的原理相同,结构基本相同,不同之处在于,
容纳腔250的腔壁2511上开设有第三径向开口258,通过转动设置于第三径向开口258处的启动件以及第一弹性复位件291来启动或断开微动开关240。
在一些实施例中,如图16所示,第三径向开口258为沿腔壁2511的径向贯穿腔壁2511的一个开口。
如图15和图16所示,启动件包括转动连接于腔壁2511外侧的第二杠杆组件292,第二杠杆组件292的两端分别为用于与杯体100接触的第一启动端和用于按压微动开关240的第一按压端。容纳腔250的腔壁2511上设置有供第二杠杆组件292的第一启动端穿过的第三径向开口258,杯体100容置于容纳腔250 中时,杯体100的侧壁挤压第二杠杆组件292的第一启动端,以使得第二杠杆组件292的第一按压端按压并开启微动开关240,第一弹性复位件291用于给第二杠杆组件292的第一按压端提供离开微动开关240的力;在本实施例中,第一启动端包括第二导入斜面,第二导入斜面的上端相对于下端向外侧倾斜,第一启动端设置的第二导入斜面是为了便于被杯体100按压向外转动时,同时带动第二杠杆组件292转动,从而使得第一按压端按压微动开关240的弹片,以接通电源。
本实施例的测温和复位过程与上述实施例二相同,在此不加以赘述。
实施例四
本实施例与实施例三的原理相同,结构基本相同,不同之处在于,启动件包括可上下滑动的按压杆293。
如图17所示,启动件的结构和开断形式可以如下:启动件包括可上下滑动地设置于基座200内的按压杆293和第一弹性复位件291,第一弹性复位件291用于为按压杆293提供复位的力,按压杆293的两端分别为用于与杯体100的底部接触的第二启动端和用于与微动开关240接触的第二按压端,可选地,按压杆293大致呈L形,在一些实施例中,第二启动端用于与杯体100接触的面为第三导入斜面,第三导入斜面的上端相对于下端向外侧倾斜,第二启动端设置的第三导入斜面是为了便于被杯体100按压时、带动按压杆293向下滑动并按压微动开关240的弹片,以接通电源。
本申请提供的一种牛奶饮料加热搅拌机,通过杯体侧壁推动第一杠杆组件转动,第一杠杆组件进而推动测温组件与杯体的侧壁接触测温,且当杯体离开容纳腔底部的发热盘时,复位组件能使测温组件离开容纳腔的边缘、并退回到第二径向开口内,避免了测温组件受发热盘余热的炙烤,一方面,测温组件既不与发热盘接触,又不会直接受到发热盘余热的炙烤,可以显著降低发热盘热量对测温组件测温精度的影响,提高测温精度、尤其是提高连续多次加热时的测温精度,使牛奶温度处于较佳的发泡温度预设值,同时搅拌更充分,进而提高奶泡细腻度,提升口感和用户体验;另一方面,发热盘上无需开设供测温组件和微动开关启动杆通过的通孔,也无需在发热盘中心开设通孔,发热盘的完整性好,提高加热效率,同时避免了通孔可能漏水的安全隐患;再一方面,通过杠杆组件推动测温组件,结构简单、方便制造、装配容易、生产成本低,且能够保持测温组件与杯体侧壁的良好接触,确保测温可靠。

Claims (10)

  1. 一种牛奶饮料加热搅拌机,包括:
    用于容纳牛奶饮料的杯体(100);
    基座(200),所述基座(200)的上端具有被配置为容置所述杯体(100)的容纳腔(250),所述容纳腔(250)的腔壁(2511)上开设有第一径向开口(253)和第二径向开口(254);
    发热盘(210),设置于所述容纳腔(250)的底部,所述发热盘(210)被配置为对所述杯体(100)的底部加热;
    测温组件(220);以及
    第一杠杆组件(270),可转动地设置于所述容纳腔(250)的外侧,且所述第一杠杆组件(270)的第一端(271)上的凸起部(273)由所述第一径向开口(253)伸入所述容纳腔(250)中;当所述杯体(100)容置于所述容纳腔(250)中时,所述杯体(100)按压所述凸起部(273),并通过所述第一杠杆组件(270)的第二端(272)推动所述测温组件(220)由所述第二径向开口(254)伸入所述容纳腔(250)以与所述杯体(100)的侧壁接触。
  2. 根据权利要求1所述的牛奶饮料加热搅拌机,所述牛奶饮料加热搅拌机还包括复位组件,所述复位组件被配置为给所述第一杠杆组件(270)提供使所述第二端(272)和所述测温组件(220)离开所述容纳腔(250)的力。
  3. 根据权利要求2所述的牛奶饮料加热搅拌机,其中,
    所述复位组件包括:
    磁力驱动件(255),设置于所述第一径向开口(253)处;以及
    磁力受驱件(275),设置于所述第一端(271),所述磁力驱动件(255)与所述磁力受驱件(275)能够通过磁力吸合。
  4. 根据权利要求1至3任一项所述的牛奶饮料加热搅拌机,其中,所述测温组件(220)与所述第二端(272)连接;所述第二端(272)通过第一弹性件(281)推动所述测温组件(220)与所述杯体(100)的侧壁接触。
  5. 根据权利要求4所述的牛奶饮料加热搅拌机,其中,所述第二端(272)与所述测温组件(220)通过第一导向柱(282)活动连接,所述第一导向柱(282)穿设于所述第二端(272)上的第一导向通孔(2721)中,且所述第一导向柱(282)的两端分别与所述测温组件(220)和第一限位件(283)连接,所述第一弹性件(281)设置于所述第二端(272)与所述测温组件(220)之间;或者,
    所述牛奶饮料加热搅拌机还包括设置于所述测温组件(220)与所述第二端 (272)之间的连接板(284),所述容纳腔(250)的所述腔壁(2511)与所述连接板(284)通过第二导向柱(285)活动连接,所述第二导向柱(285)穿设于所述连接板(284)上的第二导向通孔(2841)中,所述第二导向柱(285)的两端分别与所述腔壁(2511)和第二限位件(286)连接;所述连接板(284)与所述测温组件(220)之间通过第三导向柱(287)活动连接,所述第三导向柱(287)穿设于所述连接板(284)上的第三导向通孔(2842)中,所述第三导向柱(287)的两端分别与所述测温组件(220)和第三限位件(288)连接,所述第一弹性件(281)设置于所述连接板(284)与所述测温组件(220)之间;所述第二端(272)与所述连接板(284)通过连接柱(289)活动连接,所述第二端(272)上设置有与所述连接柱(289)滑动配合的长条孔(2722)。
  6. 根据权利要求1至3任一项所述的牛奶饮料加热搅拌机,其中,所述基座(200)内设置有微动开关(240),所述第二端(272)设置有启动板(277),在所述杯体(100)容置于所述容纳腔(250)中时,所述启动板(277)按压并开启所述微动开关(240)。
  7. 根据权利要求1至3任一项所述的牛奶饮料加热搅拌机,其中,所述基座(200)内还设置有微动开关(240)、启动件和第一弹性复位件(291),所述容纳腔(250)的腔壁(2511)上设置有供所述启动件的第三端穿过的第三径向开口(258),所述杯体(100)容置于所述容纳腔(250)中时,所述杯体(100)挤压所述启动件的第三端以使得所述启动件的第四端按压并开启所述微动开关(240),所述第一弹性复位件(291)被配置为给所述启动件提供离开所述微动开关(240)的力。
  8. 根据权利要求7所述的牛奶饮料加热搅拌机,其中,所述启动件包括转动连接于所述基座(200)内的第二杠杆组件(292),所述第二杠杆组件(292)的两端分别为用于与所述杯体(100)接触的第一启动端和用于按压所述微动开关(240)的第一按压端;或者,
    所述启动件包括可上下滑动地设置于所述基座(200)内的按压杆(293),所述按压杆(293)的两端分别为用于与所述杯体(100)的底部接触的第二启动端和用于与所述微动开关(240)接触的第二按压端。
  9. 根据权利要求1至3任一项所述的牛奶饮料加热搅拌机,其中,所述杯体(100)内转动设置有磁力搅拌器(110),所述基座(200)内设置有驱动装置(264)和与所述驱动装置(264)的输出轴连接的磁性驱动盘(265),所述驱 动装置(264)被配置为通过所述磁性驱动盘(265)驱动所述磁力搅拌器(110)转动。
  10. 根据权利要求9所述的牛奶饮料加热搅拌机,其中,所述杯体(100)的内底面上还活动设置有隔离罩(160),所述隔离罩(160)罩设于所述磁力搅拌器(110)的外围,并与所述磁力搅拌器(110)间隔开,所述隔离罩(160)上设置有通槽和通孔中至少之一。
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CN108852055A (zh) * 2018-07-13 2018-11-23 熊兴剑 牛奶饮料加热搅拌机
CN109330380A (zh) * 2018-12-13 2019-02-15 熊兴剑 一种牛奶饮料加热搅拌机
CN209269388U (zh) * 2018-12-13 2019-08-20 熊兴剑 一种牛奶饮料加热搅拌机

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AU2019399834A1 (en) 2021-06-10
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US20220039602A1 (en) 2022-02-10
ES2955043T3 (es) 2023-11-28
EP3895585A4 (en) 2022-09-14
CN109330380A (zh) 2019-02-15
KR20210058990A (ko) 2021-05-24
EP3895585B1 (en) 2023-05-10
EP3895585A1 (en) 2021-10-20

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