WO2017201871A1 - 粉水混合饮品的制备装置 - Google Patents

粉水混合饮品的制备装置 Download PDF

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Publication number
WO2017201871A1
WO2017201871A1 PCT/CN2016/092709 CN2016092709W WO2017201871A1 WO 2017201871 A1 WO2017201871 A1 WO 2017201871A1 CN 2016092709 W CN2016092709 W CN 2016092709W WO 2017201871 A1 WO2017201871 A1 WO 2017201871A1
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WO
WIPO (PCT)
Prior art keywords
water
temperature
warm
cold
warm water
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PCT/CN2016/092709
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English (en)
French (fr)
Inventor
尹善章
陈克勇
Original Assignee
深圳市妈妈科技有限公司
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Publication of WO2017201871A1 publication Critical patent/WO2017201871A1/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
    • A47J31/00Apparatus for making beverages
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • A47J31/401Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea whereby the powder ingredients and the water are delivered to a 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
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • 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
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • A47J31/402Liquid dosing devices
    • 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
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices
    • 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
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices
    • A47J31/462Dispensing spouts, pumps, drain valves or like liquid transporting devices with an intermediate liquid storage tank
    • A47J31/465Dispensing spouts, pumps, drain valves or like liquid transporting devices with an intermediate liquid storage tank for the heated water
    • 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
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices
    • A47J31/462Dispensing spouts, pumps, drain valves or like liquid transporting devices with an intermediate liquid storage tank
    • A47J31/467Dispensing spouts, pumps, drain valves or like liquid transporting devices with an intermediate liquid storage tank for the infusion
    • 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
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices
    • A47J31/469Details of hydraulic circuits
    • 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
    • A47J31/50Urns with devices for keeping beverages hot or cool
    • 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
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/54Water boiling vessels in beverage making machines
    • A47J31/56Water boiling vessels in beverage making machines having water-level controls; having temperature controls

Definitions

  • the invention belongs to the technical field of beverage preparation, and in particular relates to a device for preparing a powdered water mixed drink.
  • Powdered water mixed drink refers to a beverage made from powdered or powdered powder of milk powder, coffee powder, juice powder, soy flour, sesame powder and drinking water. If the temperature of the brewing is too high, the powder may be agglomerated or the nutrients may be damaged. If the temperature is too low, the powder may not be sufficiently dissolved.
  • most of the preparation equipment for powdered water mixed drinks on the market is to heat the normal temperature water to the optimal brewing temperature, and directly brew into a drink according to the optimal ratio of water to powder. However, if only the normal temperature water is heated to a temperature suitable for brewing, and there is no high temperature sterilization treatment, there are many underwater microorganisms at the brewing temperature, and long-term drinking has a negative impact on human health.
  • the technical problem to be solved by the present invention is to provide a preparation device for a powdered water mixed drink, which aims to solve the problem that the beverage prepared by the preparation device in the prior art is not subjected to high temperature sterilization treatment and cannot be immediately consumed.
  • the present invention is achieved by a method for preparing a powdered water mixed drink, comprising a powder storage box and a powder water mixing container, wherein the powder water mixing container is provided with an inlet for powder and water, and an output brewed beverage.
  • the outlet is provided with a valve;
  • the preparation device further comprises a warm water preparation mechanism, a cold water preparation mechanism, a first warm water pump, a second warm water pump, a beverage temperature detecting module, a cold water pump, and a control system,
  • the preset optimal beverage temperature is stored in the control system;
  • the warm water preparation mechanism prepares the warm water that has been sterilized by high temperature, the first branch of the warm water and the second branch, and the control system controls the first warm water pump to input the warm water of the first branch into the powder.
  • the beverage powder in the powder storage box is input into the powder water mixer and fully dissolved in the warm water;
  • the second warm water pump transports the warm water of the second branch to the cold boiling water preparation mechanism, and the cold boiling water preparation mechanism forms the warm boiling water into the cold boiling water, and the cold boiling water preparation mechanism inputs the cold boiling water through the cold water pump.
  • Powder water mixing container
  • the beverage temperature detecting module detects the temperature of the beverage in the powder water mixing container, and sends the temperature information to the control system, and the control system controls the water volume of the first warm water pump and the cold water pump according to the temperature information of the beverage, and adjusts the beverage. Temperature; when the temperature received by the control system is the same as the preset optimal beverage temperature, the control system controls the first warm water pump and the cold water pump to stop working, and controls the valve to open to output a drink.
  • the warm water preparation mechanism includes a normal temperature drinking water container, a boiler, a cold heat exchanger, and a warm water container that are sequentially connected; the normal temperature drinking water in the normal temperature drinking water container is input into the boiler, and the boiler will The normal temperature drinking water is boiled into boiling water, and the cold heat exchanger cools the boiled boiling water into warm boiling water, and the warm water container is used for storing the warm boiling water.
  • the warm water preparation mechanism further includes a first water pump, and the normal temperature drinking water in the normal temperature drinking water container is input into the boiler through the first water pump.
  • the cold heat exchanger includes an outer tube and an inner tube, the inner tube is embedded in the outer tube, and the outer tube and the inner tube have a space for normal temperature drinking water to circulate, the space having An inlet and an outlet, the inner tube also has an inlet and an outlet, wherein the normal temperature drinking water in the normal temperature drinking water container passes through the space and is input into the boiler, and the boiler heats the internal temperature drinking water inside the boiler and changes The high temperature boiling water is sent into the inner tube, and the high temperature boiling water flowing in the inner tube exchanges with the normal temperature drinking water heat energy in the space, and then the temperature is cooled to warm water, and the warm water is discharged from the outlet of the inner tube and enters The warm water container.
  • the preparation device further includes a warm water temperature detecting module for detecting the temperature of the first branch warm water, wherein the control system further stores a preset optimal dissolved temperature range; the warm water temperature detecting module Detecting the temperature of the warm water and feeding back to the control system, when the temperature detected by the warm water temperature detecting module is within the optimal dissolved temperature range, the control system controls the first warm water pump to warm the first branch
  • the input control system controls the amount of water delivered to the inner tube by the boiler when the temperature detected by the warm water temperature detecting module is not within the optimal dissolved temperature range.
  • the cold water preparation mechanism includes a warm water container, a second warm water pump, a semiconductor refrigerator, and a cold water container that are sequentially connected; the cold water container is connected to the warm water preparation mechanism through a second warm water pump.
  • the semiconductor refrigerator is attached to an outer side surface of the cold water container, and the semiconductor refrigerator cools the warm water in the cold water container into cold water.
  • the preparation device further includes a cold boiling water temperature detecting module for detecting a cold boiling water temperature in the cold boiling water container, the cold boiling water temperature detecting module transmitting the detected temperature information to the control system, the control system
  • the semiconductor refrigerator operates according to the received temperature information.
  • the temperature of the warm water is 40 to 60 degrees, and the temperature of the cold water is 5 to 15 degrees.
  • the invention has the beneficial effects that the preparation device of the invention is provided with a warm water preparation mechanism, and can prepare two warm waters that are sterilized by high temperature, wherein the warm water of the first branch is mixed with powder water. Stir in the container with the powder until the beverage powder is fully dissolved to obtain a higher temperature powdered water mixed drink.
  • the warm water of the second branch is sent to the cold boiling water preparation mechanism, and the cold boiling water is prepared by the cold boiling water preparation mechanism, and the cold boiling water is input into the powder water mixing container to be deeply mixed with the higher temperature powder water mixed drink, and the beverage temperature detecting module
  • the temperature of the beverage is detected in real time and fed back to the control system.
  • the control system controls the powdered water mixing container to output a beverage suitable for immediate drinking. If the temperature of the beverage is inconsistent with the best beverage, control The system controls the amount of water from the first warm water pump and the cold water pump to adjust the temperature of the beverage until the temperature of the beverage equals the optimal beverage temperature. It can be seen that the preparation device of the present invention uses the warm boiled water after boiling sterilization to brew the powder, and the temperature of the warm water can fully dissolve the powder, and the temperature does not affect the quality of the powder. At the same time, the cold boiled water obtained by cooling the boiled and sterilized warm water and the higher temperature beverage can make the beverage cool down quickly, satisfy the demand of ready-to-drink, and meet the requirements of health and hygiene.
  • FIG. 1 is a block diagram showing the structure of a device for preparing a powdered mixed drink according to an embodiment of the present invention.
  • FIG. 2 is a block diagram showing the structure of the warm water preparation mechanism and associated components in Figure 1.
  • FIG 3 is a block diagram showing the structure of the cold water preparation mechanism and associated components in Figure 1.
  • a preparation device for a powdered water mixed beverage comprises a powder storage tank 1, a powder water mixing container 2, a warm water preparation mechanism 3, and a cold boiling water preparation mechanism 4, as shown in FIG.
  • the powder water mixing container 2 is provided with an inlet 21 for the powder to enter, an inlet 22 for the warm water to enter, an inlet 23 for the cold water to enter, and an outlet 24 for discharging the brewed beverage, and the outlet 24 is provided with a valve 241;
  • the water mixing container 2 is provided with an agitating device (not shown) that can be automatically stirred.
  • a predetermined beverage target temperature is stored in the control system 10.
  • the warm water preparation mechanism 3 prepares the warm water which has been sterilized by high temperature, and the two sides of the warm water are transported, and the control system 10 controls the first warm water pump 6 to input the warm water of the first branch into the powder water mixing container 2, the powder storage box The beverage powder in 1 is fed into the powder water mixer 2, and the stirring device operates to rapidly dissolve the beverage powder in the warm water.
  • the second warm water pump 7 transports the warm water of the second branch to the cold boiling water preparation mechanism 4, and the cold boiling water preparation mechanism 4 feeds the cold boiling water into the powder water mixing container 2 through the cold water pump 9.
  • the beverage temperature detecting module 8 detects the temperature of the beverage in the powder water mixing container 2, and transmits the temperature information to the control system 10, and the control system 10 controls the water output of the first warm water pump 6 and the cold water pump 9 according to the temperature information of the beverage, when the control When the temperature received by the system 10 is the same as the preset optimal beverage temperature, the control system 10 controls the first warm water pump 6 and the cold water pump 9 to stop working, and controls the valve 241 to open to output a drink.
  • the warm water preparation mechanism 3 includes a normal temperature drinking water tank 31, a first water pump 32, a boiler 33, a cold heat exchanger 34, and a warm water container 35 which are sequentially connected.
  • the cold heat exchanger 34 includes an outer tube 341 and an inner tube 342.
  • the inner tube 342 is embedded in the outer tube 341.
  • the outer tube 341 and the inner tube 342 have a space for normal temperature drinking water to flow, and the space has an inlet and an outlet.
  • Tube 342 also has an inlet and an outlet.
  • the normal temperature drinking water in the normal temperature drinking water container 31 passes through the space and is then introduced into the boiler 33.
  • the boiler 33 heats the internal temperature drinking water inside the boiler 33 to become high temperature boiling water (98 degrees or more) and feeds it into the inner tube 342. After the high-temperature boiling water flowing through the inner tube 342 is exchanged with the normal-temperature drinking water heat energy in the space, the temperature is cooled to warm boiling water (45 to 60 degrees), and the warm boiling water is discharged from the outlet of the inner tube 342 and enters the warm boiling water container 35.
  • the warm water in the warm water container 35 is the output of the two branches, and in order to further limit the dissolution temperature of the powder, the powder can be dissolved in an optimum dissolution range.
  • the optimal dissolution temperature range is also stored in the control system 10.
  • the warm water in the first branch is subjected to temperature detection by the warm water temperature detecting module 5, and the temperature of the warm water detecting module 5 detects that the temperature of the warm boiling water is optimally dissolved. Within the range, the control system 10 directly controls the first warm water pump 6 to output warm water.
  • control system 10 controls the amount of water delivered to the inner tube 342 by the boiler 33, thereby adjusting the temperature of the warm water output to the first branch, so that the temperature can be guaranteed.
  • the optimum solution temperature range is not limited.
  • the cold water preparation mechanism 4 includes a warm water container 35, a second warm water pump 7, a semiconductor refrigerator 41, and a cold water container 42 which are sequentially connected.
  • the warm water container 35 is connected to the warm water of the second branch output from the warm water preparation mechanism 3, the semiconductor refrigerator 41 is attached to the outer side surface of the cold water container 42, and the semiconductor refrigerator 41 is the warm water in the cold water container 42. Cool to cold water.
  • the preparation device further includes a cold boiling water temperature detecting module 11 for detecting the temperature of the cold boiling water in the cold water container 42, and the cold boiling water temperature detecting module 11 transmits the detected temperature information to the control system 10, and the control system 10 is The received temperature information controls the operation of the semiconductor refrigerator 41.
  • the preparation device of the embodiment is provided with the warm water preparation mechanism 3, and the warm water which has been sterilized by high temperature can be prepared, wherein the warm water of the first branch is input into the powder water mixing container 2, and the powder is evenly stirred until the beverage powder is completely dissolved. A higher temperature powdered water mixed drink can be obtained.
  • the warm water of the second branch is sent to the cold boiling water preparation mechanism 4, and the cold boiling water is prepared by the cold boiling water preparation mechanism 4, and the cold boiling water is input into the powder water mixing container 2 to be deeply mixed with the higher temperature powder water mixed drink, the drink
  • the temperature detecting module 8 detects the temperature of the beverage in real time and feeds it back to the control system 10.
  • the control system 10 controls the powder water mixing container 2 to output a beverage suitable for immediate drinking, if the temperature of the beverage is When the optimal beverage temperatures are inconsistent, the control system 10 controls the amount of water discharged from the first warm water pump 6 and the cold water pump 9, thereby adjusting the temperature of the beverage until the temperature of the beverage equals the optimal beverage temperature.
  • the preparation device of the present embodiment uses the warm boiled water after boiling sterilization to brew the powder, and the temperature of the warm water can fully dissolve the powder, and the temperature does not affect the quality of the powder.
  • the cold boiled water obtained by cooling the boiled and sterilized warm water and the higher temperature beverage can make the beverage cool down quickly, satisfy the demand of ready-to-drink, and meet the requirements of health and hygiene.
  • warm water preparation mechanism 3 works to prepare warm boiling water, the range of warm boiling water is 45 to 60 degrees, and the specific temperature is preset in the control system 10 according to the optimal dissolution temperature range of different brands of milk powder;
  • the cold boiling water preparation mechanism 4 works to prepare cold boiling water, and the temperature of the cold boiling water ranges from 5 to 15 degrees;
  • the amount of cold water and warm water is determined by the control system 10 according to the optimal temperature of the fresh milk (the target temperature is 37.5 degrees, the temperature value is pre-stored in the control
  • the system 10 is controlled; when the temperature received by the control system 10 is the same as the preset optimal temperature of the fresh milk, the control system 10 controls the first warm water pump 6 and the cold water pump 9 to stop working, and the control valve 241 is opened. Output 37.5 degrees of ready-to-drink fresh milk.

Abstract

一种粉水混合饮品的制备装置,包括粉末储存箱(1)、粉水混合容器(2)、将常温饮用水快速加热以及快速降温的温开水制备机构(3)、冷开水制备机构(4)、温开水温度检测模块(5)、第一温水泵(6)、第二温水泵(7)、饮品温度检测模块(8)、冷水泵(9)及控制系统(10)。温开水制备机构(3)制备出经过杀菌的两支路温开水,一支路输入粉水混合容器(2)与粉末搅拌,得到较高温度饮品,另一支路输入冷开水制备机构(4)中,制备出冷水,将冷水与较高温度饮品混合,通过控制系统(10)控制冷水出水量,从而得到最佳温度的饮品。

Description

粉水混合饮品的制备装置 技术领域
本发明属于饮品制备技术领域,尤其涉及一种粉水混合饮品的制备装置。
背景技术
粉水混合饮品是指由奶粉、咖啡粉、果汁粉、豆粉、芝麻粉等颗粒或粉末与饮用水冲泡合成的饮品。由于冲泡的温度过高可能会造成粉末结块或营养受损,温度过低则可能会导致粉末无法充分溶解。目前,市面上的大多数粉水混合饮品的制备装置都是将常温水加热到最佳冲泡温度后,按照水与粉的最佳配置比例,直接冲泡制成饮品饮用。但如果只是把常温水加热到适合冲泡的温度,没有经过高温杀菌处理,该冲泡温度还存在很多水下微生物,长期饮用对人体健康产生负面影响。
例如,现在市场上的多数智能冲奶器产品,只是把常温水加热到40~60度的温水进行冲泡,没有经过高温杀菌处理。因此,需要把将水煮沸,然后再将煮沸的开水快速降温到各种品牌奶粉的最佳溶解温度40~60度的温水,以达到奶粉溶解最佳效果和奶粉营养不流失的目的。但是冲泡的鲜奶在40~60度之间的温度,还无法即时给到婴儿饮用。在此基础上,很有必要研发出一种能即时饮用且经过高温杀菌的粉水混合饮品的制备技术。
技术问题
本发明所要解决的技术问题在于提供一种粉水混合饮品的制备装置,旨在解决现有技术中的制备装置所制备的饮品没有经过高温杀菌处理以及不能即时饮用的问题。
技术解决方案
本发明是这样实现的,一种粉水混合饮品的制备装置,包括粉末储存箱以及粉水混合容器,所述粉水混合容器上设有供粉、水进入的入口以及输出冲泡好的饮品的出口,所述出口上设置有阀门;所述制备装置还包括温开水制备机构、冷开水制备机构、第一温水泵、第二温水泵、饮品温度检测模块、冷水泵以及控制系统,所述控制系统内储存有预设的最佳饮品温度;
所述温开水制备机构制备出经过高温杀菌的温开水,所述温开水分第一支路以及第二支路输送,所述控制系统控制第一温水泵将第一支路的温开水输入粉水混合容器内,粉末储存箱中的饮品粉末输入粉水混合器内,并充分溶解于温开水中;
所述第二温水泵将第二支路的温开水输送至冷开水制备机构,所述冷开水制备机构将温开水制成冷开水,所述冷开水制备机构通过所述冷水泵将冷开水输入粉水混合容器内;
所述饮品温度检测模块检测所述粉水混合容器内的饮品温度,并将温度信息发送给控制系统,控制系统根据饮品的温度信息控制所述第一温水泵以及冷水泵的出水量,调节饮品温度;当控制系统接收到的温度与预设的最佳饮品温度相同时,所述控制系统控制所述第一温水泵以及冷水泵停止工作,并控制阀门打开,输出饮品。
进一步地,所述温开水制备机构包括依次连通的常温饮用水容器、锅炉、冷热交换器以及温开水容器;所述常温饮用水容器内的常温饮用水输入所述锅炉内,所述锅炉将所述常温饮用水煮沸成开水,所述冷热交换器将所述煮沸的开水冷却成温开水,所述温开水容器用于储存所述温开水。
进一步地,所述温水制备机构还包括第一水泵,所述常温饮用水容器内的常温饮用水通过所述第一水泵输入所述锅炉内。
进一步地,所述冷热交换器包括外管以及内管,所述内管嵌置于所述外管内,所述外管与内管之间具有供常温饮用水流通的空间,所述空间具有入口以及出口,所述内管也具有入口以及出口,所述常温饮用水容器内的常温饮用水通过所述空间后输入所述锅炉内,所述锅炉将其内部的常温饮用水加热煮沸,变成高温开水,高温开水输送入所述内管内,所述内管流动的高温开水与空间内的常温饮用水热能交换后,降温成温开水,温开水从所述内管的出口输出,并进入所述温开水容器。
进一步地,所述制备装置还包括用于检测第一支路温开水温度的温开水温度检测模块,所述控制系统内还储存有预设的最佳溶解温度范围;所述温开水温度检测模块检测温开水的温度并反馈到控制系统中,当所述温开水温度检测模块检测到的温度在最佳溶解温度范围内时,所述控制系统控制第一温水泵将第一支路的温开水输入粉水混合容器内,当所述温开水温度检测模块检测到的温度不在最佳溶解温度范围内时,所述控制系统控制所述锅炉输送到内管的出水量。
进一步地,所述冷开水制备机构包括依次连通的温开水容器、第二温水泵、半导体制冷器以及冷开水容器;所述冷开水容器通过第二温水泵接入所述温开水制备机构输出的第二支路的温开水,所述半导体制冷器贴附在所述冷开水容器的外侧面上,所述半导体制冷器将所述冷开水容器内的温开水冷却成冷开水。
进一步地,所述制备装置还包括用于检测冷开水容器内的冷开水温度的冷开水温度检测模块,所述冷开水温度检测模块将检测到的温度信息发送到控制系统中,所述控制系统根据接收到的温度信息控制所述半导体制冷器工作。
进一步地,所述温开水的温度为40~60度,所述冷开水的温度为5~15度。
有益效果
本发明与现有技术相比,有益效果在于:本发明的制备装置设置有温开水制备机构可以制备出经过高温杀菌的两支路温开水,其中,第一支路的温开水输入粉水混合容器中,与粉末搅拌均匀,直到饮品粉末充分溶解,可得到较高温度的粉水混合饮品。第二支路的温开水输送至冷开水制备机构中,并通过冷开水制备机构制备出冷开水,冷开水输入粉水混合容器中与较高温度的粉水混合饮品深度交合,饮品温度检测模块实时检测饮品的温度,将反馈给控制系统,当饮品的温度与最佳饮品温度一致时,控制系统控制粉水混合容器输出适宜即时饮用的饮品,如果饮品的温度与最佳饮品不一致时,控制系统控制第一温水泵与冷水泵的出水量,进而调节饮品的温度,直至饮品的温度等于最佳饮品温度。可见,本发明的制备装置,采用经过煮沸杀菌后的温开水冲泡粉末,温开水的温度能使粉末充分溶解,并且其温度不会影响到粉末的品质。同时,采用经过煮沸杀菌后的温开水进行降温后制得的冷开水与较高温度的饮品进行交合,可使饮品快速降温,满足了即饮的需求,也满足了健康卫生的要求。
附图说明
图 1 是本发明实施例 提供的一种 粉水混合饮品的制备装置的结构框图。
图 2 是图 1 中的温开水制备机构与关联部件的结构框图。
图 3 是图 1 中的冷开水制备机构与关联部件的结构框图。
本发明的实施方式
为了使本发明所要解决的技术问题、技术方案及有益效果更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
如图1所示,为本发明的一较佳实施例,一种粉水混合饮品的制备装置,包括粉末储存箱1、粉水混合容器2、温开水制备机构3、冷开水制备机构4、温开水温度检测模块5、第一温水泵6、第二温水泵7、饮品温度检测模块8、冷水泵9以及控制系统10。
粉水混合容器2上设有供粉末进入的入口21、供温开水进入的入口22、供冷开水进入的入口23以及输出冲泡好的饮品的出口24,出口24上设置有阀门241;粉水混合容器2内设置有可自动搅拌的搅拌装置(图中未示出)。控制系统10内储存有预设的饮品目标温度。
温开水制备机构3制备出经过高温杀菌的温开水,温开水分两支路输送,控制系统10控制第一温水泵6将第一支路的温开水输入粉水混合容器2内,粉末储存箱1中的饮品粉末输入粉水混合器2内,搅拌装置工作,迅速地将饮品粉末充分溶解于温开水中。
第二温水泵7将第二支路的温开水输送至冷开水制备机构4,冷开水制备机构4通过冷水泵9将冷开水输入粉水混合容器2内。
饮品温度检测模块8检测粉水混合容器2内的饮品温度,并将温度信息发送给控制系统10,控制系统10根据饮品的温度信息控制第一温水泵6以及冷水泵9的出水量,当控制系统10接收到的温度与预设的最佳饮品温度相同时,控制系统10控制第一温水泵6以及冷水泵9停止工作,并控制阀门241打开,输出饮品。
具体地,请参见图2,上述温开水制备机构3包括依次连通的常温饮用水容器31、第一水泵32、锅炉33、冷热交换器34以及温开水容器35。冷热交换器34包括外管341以及内管342,内管342嵌置于外管341内,外管341与内管342之间具有供常温饮用水流通的空间,空间具有入口以及出口,内管342也具有入口以及出口。常温饮用水容器31内的常温饮用水通过空间后输入锅炉33内,锅炉33将其内部的常温饮用水加热煮沸,变成高温开水(98度以上),输送入内管342内。内管342流动的高温开水与空间内的常温饮用水热能交换后,降温成温开水(45~60度),温开水从内管342的出口输出,并进入温开水容器35。
温开水容器35内的温开水分为两支路输出,为了进一步地限制粉末的溶解温度,使粉末能在最佳的溶解范围内溶解。控制系统10内还储存有最佳溶解温度范围,第一支路中的温开水经过温开水温度检测模块5进行温度检测,当温开水温度检测模块5检测出温开水的温度位于最佳的溶解范围内时,控制系统10直接控制第一温水泵6输出温开水。若检测出温开水的温度不在最佳的溶解范围内,控制系统10控制锅炉33输送到内管342的出水量,进而调节输出到第一支路中的温开水温度,使其温度能保证在最佳的溶解温度范围内。
请参见图3,上述冷开水制备机构4包括依次连通的温开水容器35、第二温水泵7、半导体制冷器41以及冷开水容器42。温开水容器35接入温开水制备机构3输出的第二支路的温开水,半导体制冷器41贴附在冷开水容器42的外侧面上,半导体制冷器41将冷开水容器42内的温开水冷却成冷开水。
进一步地,制备装置还包括用于检测冷开水容器42内的冷开水温度的冷开水温度检测模块11,冷开水温度检测模块11将检测到的温度信息发送到控制系统10中,控制系统10根据接收到的温度信息控制半导体制冷器41工作。
本实施例的制备装置设置有温开水制备机构3可以制备出经过高温杀菌的温开水,其中,第一支路的温开水输入粉水混合容器2中,与粉末搅拌均匀,直到饮品粉末充分溶解,可得到较高温度的粉水混合饮品。第二支路的温开水输送至冷开水制备机构4中,并通过冷开水制备机构4制备出冷开水,冷开水输入粉水混合容器2中与较高温度的粉水混合饮品深度交合,饮品温度检测模块8实时检测饮品的温度,将反馈给控制系统10,当饮品的温度与最佳饮品温度一致时,控制系统10控制粉水混合容器2输出适宜即时饮用的饮品,如果饮品的温度与最佳饮品温度不一致时,控制系统10控制第一温水泵6与冷水泵9的出水量,进而调节饮品的温度,直至饮品的温度等于最佳饮品温度。
可见,本实施例的制备装置,采用经过煮沸杀菌后的温开水冲泡粉末,温开水的温度能使粉末充分溶解,并且其温度不会影响到粉末的品质。同时,采用经过煮沸杀菌后的温开水进行降温后制得的冷开水与较高温度的饮品进行交合,可使饮品快速降温,满足了即饮的需求,也满足了健康卫生的要求。
为了使本实施例的技术方案更清楚,下面举列上述制备装置制备高品质鲜奶的过程:
S11、温开水制备机构3工作,制备出温开水,温开水的范围为45~60度,具体温度根据不同牌子的奶粉的最佳溶解温度范围预先设定在控制系统10中;
S12、冷开水制备机构4工作,制备出冷开水,冷开水温度范围为5~15度;
S13、粉末储存箱1中的奶粉进入粉水混合容器2内;
S14、往粉水混合容器2输入温开水,搅拌装置将温开水与奶粉搅拌均匀,直到饮品粉末充分溶解,得到高温度的鲜奶;
S15、往粉水混合容器2输入冷开水以及温开水,冷开水以及温开水具体的量由控制系统10根据鲜奶的最佳温度(本处目标温度为37.5度,该温度值预先储存于控制系统10内)控制;当控制系统10接收到的温度与预设的鲜奶最佳温度相同时,控制系统10控制第一温水泵6以及冷水泵9停止工作,并控制阀门241打开,即可输出37.5度的适宜即时饮用的鲜奶。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (8)

  1. 一种粉水混合饮品的制备装置,包括粉末储存箱以及粉水混合容器,所述粉水混合容器上设有供粉、水进入的入口以及输出冲泡好的饮品的出口,所述出口上设置有阀门;其特征在于,所述制备装置还包括温开水制备机构、冷开水制备机构、第一温水泵、第二温水泵、饮品温度检测模块、冷水泵以及控制系统,所述控制系统内储存有预设的最佳饮品温度;
    所述温开水制备机构制备出经过高温杀菌的温开水,所述温开水分第一支路以及第二支路输送,所述控制系统控制第一温水泵将第一支路的温开水输入粉水混合容器内,粉末储存箱中的饮品粉末输入粉水混合器内,并充分溶解于温开水中;
    所述第二温水泵将第二支路的温开水输送至冷开水制备机构,所述冷开水制备机构将温开水制成冷开水,所述冷开水制备机构通过所述冷水泵将冷开水输入粉水混合容器内;
    所述饮品温度检测模块检测所述粉水混合容器内的饮品温度,并将温度信息发送给控制系统,控制系统根据饮品的温度信息控制所述第一温水泵以及冷水泵的出水量,调节饮品温度;当控制系统接收到的温度与预设的最佳饮品温度相同时,所述控制系统控制所述第一温水泵以及冷水泵停止工作,并控制阀门打开,输出饮品。
  2. 如权利要求1所述的粉水混合饮品的制备装置,其特征在于,所述温开水制备机构包括依次连通的常温饮用水容器、锅炉、冷热交换器以及温开水容器;所述常温饮用水容器内的常温饮用水输入所述锅炉内,所述锅炉将所述常温饮用水煮沸成开水,所述冷热交换器将所述煮沸的开水冷却成温开水,所述温开水容器用于储存所述温开水。
  3. 如权利要求2所述的粉水混合饮品的制备装置,其特征在于,所述温水制备机构还包括第一水泵,所述常温饮用水容器内的常温饮用水通过所述第一水泵输入所述锅炉内。
  4. 如权利要求2所述的粉水混合饮品的制备装置,其特征在于,所述冷热交换器包括外管以及内管,所述内管嵌置于所述外管内,所述外管与内管之间具有供常温饮用水流通的空间,所述空间具有入口以及出口,所述内管也具有入口以及出口,所述常温饮用水容器内的常温饮用水通过所述空间后输入所述锅炉内,所述锅炉将其内部的常温饮用水加热煮沸,变成高温开水,高温开水输送入所述内管内,所述内管流动的高温开水与空间内的常温饮用水热能交换后,降温成温开水,温开水从所述内管的出口输出,并进入所述温开水容器。
  5. 如权利要求4所述的粉水混合饮品的制备装置,其特征在于,所述制备装置还包括用于检测第一支路温开水温度的温开水温度检测模块,所述控制系统内还储存有预设的最佳溶解温度范围;所述温开水温度检测模块检测温开水的温度并反馈到控制系统中,当所述温开水温度检测模块检测到的温度在最佳溶解温度范围内时,所述控制系统控制第一温水泵将第一支路的温开水输入粉水混合容器内,当所述温开水温度检测模块检测到的温度不在最佳溶解温度范围内时,所述控制系统控制所述锅炉输送到内管的出水量。
  6. 如权利要求1至5中任意一项所述的粉水混合饮品的制备装置,其特征在于,所述冷开水制备机构包括依次连通的温开水容器、第二温水泵、半导体制冷器以及冷开水容器;所述冷开水容器通过第二温水泵接入所述温开水制备机构输出的第二支路的温开水,所述半导体制冷器贴附在所述冷开水容器的外侧面上,所述半导体制冷器将所述冷开水容器内的温开水冷却成冷开水。
  7. 如权利要求6所述的粉水混合饮品的制备装置,其特征在于,所述制备装置还包括用于检测冷开水容器内的冷开水温度的冷开水温度检测模块,所述冷开水温度检测模块将检测到的温度信息发送到控制系统中,所述控制系统根据接收到的温度信息控制所述半导体制冷器工作。
  8. 如权利要求1至5中任意一项所述的粉水混合饮品的制备装置,其特征在于,所述温开水的温度为40~60度,所述冷开水的温度为5~15度。
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