WO2020253333A1 - 啤酒桶制冷变频系统 - Google Patents
啤酒桶制冷变频系统 Download PDFInfo
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- WO2020253333A1 WO2020253333A1 PCT/CN2020/083932 CN2020083932W WO2020253333A1 WO 2020253333 A1 WO2020253333 A1 WO 2020253333A1 CN 2020083932 W CN2020083932 W CN 2020083932W WO 2020253333 A1 WO2020253333 A1 WO 2020253333A1
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- WO
- WIPO (PCT)
- Prior art keywords
- beer
- refrigeration
- frequency conversion
- pipe
- barrel
- Prior art date
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B67—OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
- B67D—DISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
- B67D1/00—Apparatus or devices for dispensing beverages on draught
- B67D1/08—Details
- B67D1/0857—Cooling arrangements
- B67D1/0858—Cooling arrangements using compression systems
- B67D1/0861—Cooling arrangements using compression systems the evaporator acting through an intermediate heat transfer means
- B67D1/0865—Cooling arrangements using compression systems the evaporator acting through an intermediate heat transfer means by circulating a cooling fluid along beverage supply lines, e.g. pythons
Definitions
- the invention belongs to the technical field of beer refrigeration, and particularly relates to a beer barrel refrigeration frequency conversion system.
- Barrel beer has developed from low-end "bulk fresh beer” to today's high-end “draft beer”, and the quality has been greatly improved. Deeply loved by consumers. The domestic and foreign "draft beer” market is showing a trend of continuous development and expansion.
- Keg beer needs to be equipped with a tap before it can be used. If the beer needs to be cooled down, the beer needs to be transferred from the barrel to other smaller containers, and then placed in refrigeration equipment such as refrigerators for cooling.
- refrigeration equipment such as refrigerators for cooling.
- this cooling method is not only cumbersome, but also takes a long time to cool the beer in the entire container, which cannot meet the consumer's demand for on-the-go drinking.
- the technical problem to be solved by the present invention is to provide a beer barrel refrigeration frequency conversion system, which aims to solve the problem of troublesome and long time-consuming cooling methods of barrel beer in the prior art.
- a beer barrel refrigeration frequency conversion system is used for cooling keg beer.
- the system includes a shell in which a beer delivery system and a refrigeration system for cooling beer in the beer delivery system are arranged.
- the beer delivery system includes a beer pipeline for conveying beer and a power source for pumping beer from beer barrels into the beer pipeline, the outlet of the beer pipeline is equipped with a wine switch, the beer pipeline
- a docking assembly connected with the wine outlet of the beer barrel is installed at the entrance.
- the refrigeration system is a compressor refrigeration system
- the compressor refrigeration system includes a compressor and an evaporator double-layer pipe, and the evaporator double-layer pipe is attached to the outer periphery of the beer pipe.
- the refrigeration system is a semiconductor refrigeration system
- the semiconductor refrigeration system includes a plurality of semiconductor refrigeration devices
- the plurality of semiconductor refrigeration devices are attached to the outer periphery of the beer pipe.
- the docking assembly includes two elastic fixing clips, two handles, and a pressing hand, the pressing hand is drivingly connected to the two elastic fixing clips, and pressing the pressing hand down can lift the elastic fixing clip upward
- the two handles are respectively arranged on the two outer sides of the two elastic fixing clips, and the two elastic fixing clips are respectively located on the two sides of the beer pipe.
- beer pipeline has a tortuous curved shape or a spiral shape.
- the beer barrel refrigeration frequency conversion system further includes a radiator and a fan for dissipating heat to the heating components in the refrigeration system, and the fan is installed near the radiator.
- the beer barrel refrigeration frequency conversion system further includes a control panel and a controller for setting the temperature value of the required beer.
- the control panel, the controller, and the refrigeration system are electrically connected in turn; the controller receives from the control Panel signal, and control the cooling capacity of the refrigeration system.
- the refrigeration system adopts a DC variable frequency power supply system.
- the power source is an air pump
- the pressure of the pump body is 1.2KG
- the pump body is provided with a filter device
- the air pump is in communication with the inside of the beer pipeline
- the air pump communicates with the inside of the beer pipeline or with the sealed space outside the beer pipeline.
- the power source is an extrusion die set
- the beer pipe is a flexible material
- the extrusion die set can continuously squeeze the beer pipe during operation.
- the present invention has the following beneficial effects:
- the beer barrel refrigeration frequency conversion system of the present invention has a docking component directly connected to the beer barrel. After the system is docked with the wine outlet of the beer barrel, the wine outlet switch and the power source are turned on, and the beer will be driven by the power source.
- the beer barrel enters the beer pipe, and the beer in the beer pipe exchanges heat with the refrigeration system during the process of flowing to the wine outlet switch, and then the temperature decreases.
- the outflow of the wine switch meets the consumer's demand for drinking immediately.
- the invention is a direct current frequency conversion technology, which can make the temperature accuracy of the beer reach higher and better guarantee the taste.
- the method of obtaining cold beer by adopting the beer barrel refrigeration frequency conversion system of the present invention is simpler and takes less time.
- Fig. 1 is a schematic structural diagram of a beer barrel refrigeration frequency conversion system provided by Embodiment 1 of the present invention
- Figure 2 is a schematic structural diagram of a beer barrel refrigeration frequency conversion system provided in the second embodiment of the present invention.
- connection should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or a connection. Electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
- installation can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or a connection.
- Electrical connection it can be directly connected, or indirectly connected through an intermediate medium, and it can be the internal communication between two components.
- specific meaning of the above-mentioned terms in the present invention can be understood in specific situations.
- FIG. 1 shows a beer barrel refrigeration frequency conversion system for cooling keg beer provided by the first embodiment of the present invention, which includes a housing 10 in which a beer delivery system 1 is provided for cooling
- the control panel 5, the controller, and the refrigeration system 1 are electrically connected in turn; the controller receives the signal from the control panel 5 and controls the refrigeration capacity of the refrigeration system 2.
- the beer delivery system 1 includes a beer pipe 11 for conveying beer and a power source 12 for pumping beer from the beer barrel 200 into the beer pipe 11.
- a wine outlet switch 6 is installed at the outlet of the beer pipe 11, and a docking assembly connected with the wine outlet of the beer barrel 200 is installed at the inlet of the beer pipe 11.
- the outlet of the beer pipe 11 is located at the top of the housing 10, the wine outlet switch 6 protrudes out of the housing 10, the inlet of the beer pipe 11 matches the position of the beer barrel 200, which is located in the housing 10 The center of the bottom surface.
- the beer pipe 11 has a tortuous shape or a spiral shape.
- the power source 12 in this embodiment is an air pump, the pressure of the pump body is 1.2KG, and the pump body is provided with a filter device 14; when the beer pipe 11 is made of hard material, the power source 12 is connected with the beer pipe 11, and the power source 12 can provide power , The beer is sucked from the beer barrel 200 so that it flows upward into the beer pipe 11.
- the power source 12 communicates with the inside of the beer pipe 11 or with the sealed space outside the beer pipe 11.
- the power source 12 can also be an extrusion die set.
- the beer pipe 11 is a flexible material, and the beer pipe 11 can be continuously squeezed when the extrusion die set works.
- the pressure difference between the beer pipe 11 and the inside of the beer barrel 200 is formed by squeezing, so that the beer in the beer barrel 200 flows upward into the beer pipe 11.
- the refrigeration system 2 is a compressor refrigeration system.
- the compressor refrigeration system includes a compressor 21 and an evaporator double-layer pipe 22.
- the evaporator double-layer pipe 22 is attached to the embedded outer periphery of the beer pipe 11. Therefore, the beer can be cooled on the entire path of the beer, ensuring the cooling effect and efficiency.
- the docking assembly includes two elastic fixing clips 71, two handles 72 and a pressing hand 73.
- the pressing hand 73 is in transmission connection with the two elastic fixing clips 71, and pressing down the pressing hand 73 can lift the elastic fixing clip 71 upwards.
- the two handles 72 are respectively arranged on the two outer sides of the two elastic fixing clips 71.
- the fixing clips 71 are respectively located on both sides of the beer pipe 11, and the two elastic fixing clips 71 can be gathered by squeezing the two handles 72.
- the elastic fixing clip 71 in this embodiment has a transmission part 711 and a buckle part 712, and the buckle part 712 is located at the bottom end of the transmission part 711 and is bent relative to the transmission part 711.
- the two elastic fixing clips 71 are arranged oppositely, the transmission part 711 penetrates the entire housing 10, and the top end of the transmission part 711 forms a lever structure with the pressing hand 73 through a pivotal part; pressing down the pressing hand 73, the two elastic fixing clips 71 can be lifted up,
- the buckle portion 712 is fastened to the opening of the beer barrel 200 after being lifted up, thereby achieving a sealing effect.
- a sealing member such as a sealing rubber gasket may be provided between the elastic fixing clip 71 and the opening of the beer barrel 200.
- the fan 4 is installed near the radiator 3 to blow out the wind flow and accelerate the heat dissipation speed of the radiator 3.
- the refrigeration system 2 adopts a DC frequency conversion power supply system, which can make the temperature accuracy of the beer reach higher and better guarantee the taste.
- the beer barrel refrigeration frequency conversion system of this embodiment has a docking assembly 7 directly connected to the beer barrel 200. After the system is docked with the wine outlet of the beer barrel 200, after the wine outlet switch 6 and the power source 12 are turned on, the beer will be Driven by the power source 12, the beer barrel 200 enters the beer pipe 11 of the device. When the beer in the beer pipe 11 flows to the wine outlet switch 6, the temperature decreases after heat exchange with the refrigeration system 2. After the beer pipe 11, it becomes a cold beer, and then flows out from the liquor switch 6, which satisfies the consumer's demand for drinking immediately. At the same time, compared to the method of transferring beer to other containers for unified cooling, the method of obtaining cold beer by adopting the beer barrel refrigeration frequency conversion system of the present invention is simpler and takes less time.
- a gas cylinder 13 is also provided in the beer barrel refrigeration frequency conversion system.
- the gas cylinder 13 contains compressed carbon dioxide.
- the gas cylinder 13 is connected to the beer barrel 200. After the gas cylinder 13 is opened, the high-pressure carbon dioxide squeezes the beer barrel. 200 beer, so that the beer flows into the beer pipe 11. It can be seen that the gas cylinder 13 can be used as another way of power source, and carbon dioxide can be dissolved in beer, which is conducive to the foaming of beer. When consumers drink, carbon dioxide is gradually released, giving people a fresh and refreshing feeling. It can also smell the unique hop aroma of beer.
- FIG. 2 shows a beer barrel refrigeration frequency conversion system for cooling keg beer provided in the second embodiment of the present invention.
- the difference between this embodiment and the first embodiment is:
- the refrigeration system of the beer barrel refrigeration frequency conversion system in this embodiment adopts a plurality of semiconductor refrigeration devices 2', and a plurality of semiconductor refrigeration devices 2'are attached to the outer periphery of the beer pipe 11.
- the semiconductor refrigeration device 2' is electrically connected with the controller and the control panel 5.
- the controller receives the signal from the control panel 5 and controls the cooling capacity of the refrigeration system.
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- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Devices For Dispensing Beverages (AREA)
- Devices That Are Associated With Refrigeration Equipment (AREA)
Abstract
公开了一种啤酒桶制冷变频系统,包括壳体(10),壳体(10)内设置有啤酒输送系统(1)以及制冷系统(2),啤酒输送系统(1)包括啤酒管道(11)以及用于将啤酒从啤酒桶(200)抽入啤酒管道(11)的动力源(12)。啤酒管道(11)的出口安装有出酒开关(6),啤酒管道(11)的入口安装有与啤酒桶(200)的出酒口连接的对接组件。开启出酒开关(6)以及动力源(12)后,啤酒会在动力源(12)的驱动下从啤酒桶(200)进入啤酒管道(11)内,啤酒管道(11)内的啤酒在流向出酒开关(6)的过程中,与制冷系统(2)发生热交换后温度降低,当啤酒经过细长的啤酒管道(11)后,变成冰爽啤酒,然后从出酒开关(6)流出,满足了消费者即开即喝的需求。同时,相比于将啤酒转移到其他容器统一冷却的方式,该方式更为简便,花费时间更短。
Description
本发明属于啤酒制冷技术领域,尤其涉及一种啤酒桶制冷变频系统。
桶装啤酒从低档的“散装鲜啤酒”发展到今天的高档“扎啤”,质量有很大提高。深受消费者的喜爱。国内和国外的“扎啤”市场呈不断发展扩大的趋势。
桶装啤酒需要装上出酒龙头才能使用,如果需要将啤酒降温冷却,则需要先将啤酒从桶里转移到其他较小的容器中,然后放到冰箱等制冷设备中进行冷却。然而,这种冷却方式不仅麻烦,而且将整个容器内的啤酒冷却花费时间也较长,不能满足消费者随开随喝的需求。
本发明所要解决的技术问题在于提供一种啤酒桶制冷变频系统,旨在解决现有技术中的桶装啤酒冷却方式麻烦,并且花费时间长的问题。
本发明是这样实现的,一种啤酒桶制冷变频系统,用于冷却桶装啤酒,所述系统包括壳体,壳体内设置有啤酒输送系统以及用于冷却所述啤酒输送系统内的啤酒的制冷系统,所述啤酒输送系统包括用于输送啤酒的啤酒管道以及用于将啤酒从啤酒桶抽入所述啤酒管道的动力源,所述啤酒管道的出口安装有出酒开关,所述啤酒管道的入口安装有与啤酒桶的出酒口连接的对接组件。
进一步的,所述制冷系统为压缩机制冷系统,所述压缩机制冷系统包括压缩机以及蒸发器双层管道,所述蒸发器双层管道贴附在所述啤酒管道的外周缘上。
进一步的,所述制冷系统为半导体制冷系统,所述半导体制冷系统包括若干半导体制冷器件,所述若干半导体制冷器件贴附在所述啤酒管道的外周缘上。
进一步的,所述对接组件包括两个弹性固定夹、两个把手以及压手,所述压手与所述两个弹性固定夹传动连接,所述压手下压可将所述弹性固定夹向上提升,所述两个把手分别设置于所述两个弹性固定夹的两外侧边,所述两个弹性固定夹分别位于所述啤酒管道的两侧边,通过挤压所述两个把手,可将所述的两个弹性固定夹收拢。
进一步的,所述啤酒管道呈迂回弯曲状,或螺旋状。
进一步的,所述啤酒桶制冷变频系统还包括用于给所述制冷系统中的发热器件散热的散热器以及风机,所述风机安装散热器附近。
进一步的,所述啤酒桶制冷变频系统还包括用于设定所需啤酒的温度值的控制面板以及控制器,所述控制面板、控制器以及制冷系统依次电连接;所述控制器接收来自控制面板的信号,并控制所述制冷系统的制冷量大小。
进一步的,所述制冷系统采用直流变频供电系统。
进一步的,所述动力源为气泵,泵体的压力是1.2KG,泵体设置有过滤装置;当所述啤酒管道为硬性材料时,所述气泵与所述啤酒管道内部连通;当所述啤酒管道为柔性材料时,所述气泵与所述啤酒管道内部连通或与啤酒管道外部的密封空间连通。
进一步的,所述动力源为挤压模组,所述啤酒管道为柔性材料,所述挤压模组工作时可不断挤压所述啤酒管道。
本发明与现有技术相比,有益效果在于:
本发明的啤酒桶制冷变频系统具有直接与啤酒桶相连接的对接组件,将该系统与啤酒桶的出酒口对接后,开启出酒开关以及动力源后,啤酒会在动力源的驱动下从啤酒桶进入啤酒管道内,啤酒管道内的啤酒在流向出酒开关的过程中,与制冷系统发生热交换后温度降低,当啤酒经过细长的啤酒管道后,变成冰爽啤酒,然后从出酒开关流出,满足了消费者即开即喝的需求。本发明是直流变频技术,可以使啤酒的温度精度达到更高,更好的保证口感。同时,相比于将啤酒转移到其他容器统一冷却的方式,采用本发明的啤酒桶制冷变频系统获得冰爽啤酒的方式更为简便,花费时间更短。
图1是本发明实施例一提供的啤酒桶制冷变频系统的结构示意图;
图2是本发明实施例二提供的啤酒桶制冷变频系统的结构示意图。
为了使本发明的目的、技术方案及优点更加清楚明白,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。
在本发明的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“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发明和简化描述,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发明的限制;术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性;此外,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
实施例一:
请参见图1,示出了本发明实施例一提供的一种用于冷却桶装啤酒的啤酒桶制冷变频系统,其包括壳体10,壳体10内设置有啤酒输送系统1、用于冷却啤酒输送系统1内的啤酒的制冷系统2、用于给制冷系统2中的发热器件散热的散热器3、用于给散热器3散热的风机4、用于设定所需啤酒的温度值的控制面板5以及控制器。控制面板5、控制器以及制冷系统1依次电连接;控制器接收来自控制面板5的信号,并控制制冷系统2的制冷量大小。
具体的,啤酒输送系统1包括用于输送啤酒的啤酒管道11以及用于将啤酒从啤酒桶200抽入啤酒管道11的动力源12。该啤酒管道11的出口安装有出酒开关6,啤酒管道11的入口安装有与啤酒桶200的出酒口连接的对接组件。于本实施例中,啤酒管道11的出口位于壳体10顶部位置,出酒开关6凸出壳体10外,啤酒管道11的入口与啤酒桶200的出酒口位置相匹配,其位于壳体10底面的中心位置。为了延伸啤酒的冷却路径,啤酒管道11为迂回弯曲状,或螺旋状。
本实施例的动力源12为气泵,泵体的压力是1.2KG,泵体设置有过滤装置14;当啤酒管道11为硬性材料时,动力源12与啤酒管道11连通,动力源12可提供动力,将啤酒从啤酒桶200上吸,使其向上流动进入啤酒管道11内。当啤酒管道11为柔性材料时,动力源12与所述啤酒管道11内部连通或与啤酒管道11外部的密封空间连通。在实际应用中,所述动力源12还可以采用挤压模组,啤酒管道11为柔性材料,挤压模组工作时可不断挤压所述啤酒管道11。通过挤压使得啤酒管道11与啤酒桶200内部形成压力差,从而啤酒桶200内的啤酒向上流入啤酒管道11内。
制冷系统2为压缩机制冷系统,压缩机制冷系统包括压缩机21以及蒸发器双层管道22,蒸发器双层管道22贴附在啤酒管道11嵌置外周缘上。从而,在啤酒流动的整个路径上,均可以对其进行冷却,保证了冷却效果与效率。
对接组件包括两个弹性固定夹71、两个把手72以及压手73。压手73与两个弹性固定夹71传动连接,压手73下压可将弹性固定夹71向上提升,两个把手分72别设置于两个弹性固定夹71的两外侧边,两个弹性固定夹71分别位于啤酒管道11的两侧边,通过挤压两个把手72,可将的两个弹性固定夹71收拢。本实施例中的弹性固定夹71具有传动部711以及卡扣部712,所述卡扣部712位于所述传动部711的底端,并相对于传动部711弯折。两个弹性固定夹71相对设置,传动部711的贯穿整个壳体10,其顶端通过枢接部件与压手73形成杠杆结构;按下压手73,可将两个弹性固定夹71向上提起,卡扣部712在向上提起后与啤酒桶200开口卡紧,从而起到密封效果。为了进一步加强密封性能,还可以在弹性固定夹71与啤酒桶200开口之间设置密封橡胶垫等密封部件。
优选的,风机4安装散热器3附近,用于吹出风流,加速散热器3的散热速度。制冷系统2采用直流变频供电系统,可以使啤酒的温度精度达到更高,更好的保证口感。
本实施例的啤酒桶制冷变频系统具有直接与啤酒桶200相连接的对接组件7,将该系统与啤酒桶200的出酒口对接后,开启出酒开关6以及动力源12后,啤酒会在动力源12的驱动下从啤酒桶200进入装置的啤酒管道11内,啤酒管道11内的啤酒在流向出酒开关6的过程中,与制冷系统2发生热交换后温度降低,当啤酒经过细长的啤酒管道11后,变成冰爽啤酒,然后从出酒开关6流出,满足了消费者即开即喝的需求。同时,相比于将啤酒转移到其他容器统一冷却的方式,采用本发明的啤酒桶制冷变频系统获得冰爽啤酒的方式更为简便,花费时间更短。
同时,啤酒桶制冷变频系统内还设置有气瓶13,所述气瓶13内装有压缩的二氧化碳,所述气瓶13与啤酒桶200连通,开启气瓶13后,高压的二氧化碳挤压啤酒桶200内的啤酒,从而使啤酒流进啤酒管道11内。可见,气瓶13可作为动力源的另一种方式,并且,二氧化碳能溶解在啤酒中,有利于啤酒的起泡性,消费者饮用时,二氧化碳逐步放出,给人以清新、爽快的感觉,还能闻出啤酒特有的酒花香味。
实施例二:
请参见图2,示出了本发明实施例二提供的一种用于冷却桶装啤酒的啤酒桶制冷变频系统。本实施例与实施例一的不相同之处在于:
本实施例的啤酒桶制冷变频系统的制冷系统采用若干半导体制冷器件2',若干半导体制冷器件2'贴附在啤酒管道11的外周缘上。半导体制冷器件2'与控制器、控制面板5电连接,控制器接收来自控制面板5的信号,并控制制冷系统的制冷量大小。
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 (10)
- 一种啤酒桶制冷变频系统,用于冷却桶装啤酒,其特征在于,所述系统包括壳体,壳体内设置有啤酒输送系统以及用于冷却所述啤酒输送系统内的啤酒的制冷系统,所述啤酒输送系统包括用于输送啤酒的啤酒管道以及用于将啤酒从啤酒桶抽入所述啤酒管道的动力源,所述啤酒管道的出口安装有出酒开关,所述啤酒管道的入口安装有与啤酒桶的出酒口连接的对接组件。
- 如权利要求1所述的啤酒桶制冷变频系统,其特征在于,所述制冷系统为压缩机制冷系统,所述压缩机制冷系统包括压缩机以及蒸发器双层管道,所述蒸发器双层管道贴附在所述啤酒管道的外周缘上。
- 如权利要求1所述的啤酒桶制冷变频系统,其特征在于,所述制冷系统为半导体制冷系统,所述半导体制冷系统包括若干半导体制冷器件,所述若干半导体制冷器件贴附在所述啤酒管道的外周缘上。
- 如权利要求1所述的啤酒桶制冷变频系统,其特征在于,所述对接组件包括两个弹性固定夹、两个把手以及压手,所述压手与所述两个弹性固定夹传动连接,所述压手下压可将所述弹性固定夹向上提升,所述两个把手分别设置于所述两个弹性固定夹的两外侧边,所述两个弹性固定夹分别位于所述啤酒管道的两侧边,通过挤压所述两个把手,可将所述的两个弹性固定夹收拢。
- 如权利要求1至4中任意一项所述的啤酒桶制冷变频系统,其特征在于,所述啤酒管道呈迂回弯曲状,或螺旋状。
- 如权利要求1至4中任意一项所述的啤酒桶制冷变频系统,其特征在于,所述啤酒桶制冷变频系统还包括用于给所述制冷系统中的发热器件散热的散热器以及风机,所述风机安装散热器附近。
- 如权利要求1至4中任意一项所述的啤酒桶制冷变频系统,其特征在于,所述啤酒桶制冷变频系统还包括用于设定所需啤酒的温度值的控制面板以及控制器,所述控制面板、控制器以及制冷系统依次电连接;所述控制器接收来自控制面板的信号,并控制所述制冷系统的制冷量大小。
- 如权利要求1至4中任意一项所述的啤酒桶制冷变频系统,其特征在于,所述制冷系统采用直流变频供电系统。
- 如权利要求1至4中任意一项所述的啤酒桶制冷变频系统,其特征在于,所述动力源为气泵,泵体的压力是1 .2KG,泵体设置有过滤装置;当所述啤酒管道为硬性材料时,所述气泵与所述啤酒管道内部连通;当所述啤酒管道为柔性材料时,所述气泵与所述啤酒管道内部连通或与啤酒管道外部的密封空间连通。
- 如权利要求1至4中任意一项所述的啤酒桶制冷变频系统,其特征在于,所述动力源为挤压模组,所述啤酒管道为柔性材料,所述挤压模组工作时可不断挤压所述啤酒管道。
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