会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • IMPROVEMENTS IN HEAT EXCHANGERS FOR DISPENSING SUB-ZERO BEER
    • 用于分配次级啤酒的热交换器的改进
    • WO2009086589A1
    • 2009-07-16
    • PCT/AU2009/000002
    • 2009-01-02
    • TEMPAK INTERNATIONAL PTY LTDBAKER, Benjamin, Paul
    • BAKER, Benjamin, Paul
    • F28D7/10F28F13/00F28F23/00B67D1/08F28F13/14
    • F28D7/0016
    • A heat exchanger (10) comprises a coolant line (11) and a beverage line (13), embedded in a solid block of Aluminium (15). The coolant line (1 l)is in the form of a first helical coil defining a plurality of turns typically located in the centre of the block. The beverage line (13) is in the form of a second helical coil defining a plurality of turns extending around the first coil. The coolant line defines a cold zone (12), typically in the centre of the block, with the volume outside the central zone carrying the beverage line ratio defining an designated beverage cooling zone (14). The volume ratio of the designated zone to the cold zone is about 150: 100. The heat exchanger allows for cooling of beer to precise temperatures and even temperatures close to freezing point, using direct expanded Freon refrigeration methods. The complete system including the refrigeration equipment to be packaged into a small area, such as is available under bars and dispensing counters etc., which removes the need for large installations and the associated costs and maintenance of the same. In a variant an additional beverage cooling zone may be located inside the cold zone. The positions of the coolant and beverage lines may also be reversed in certain applications.
    • 热交换器(10)包括冷却剂管线(11)和嵌入铝的固体块(15)中的饮料管线(13)。 冷却剂管线(11)是形成通常位于块体中心的多个匝的第一螺旋线圈形式。 饮料管线(13)是限定围绕第一线圈延伸的多个匝的第二螺旋线圈形式。 冷却剂管线限定通常位于块体中心的冷区(12),其中承载饮料管线比例的中心区域外的体积限定了指定的饮料冷却区域(14)。 指定区域与冷区域的体积比为约150:100。热交换器允许使用直接扩展的氟利昂制冷方法将啤酒冷却至精确的温度,甚至接近冰点的温度。 完整的系统包括要封装在小区域内的制冷设备,例如可用于酒吧和分配计数器等,这消除了对大型设备的需要以及相关的成本和维护。 在一个变型中,另外的饮料冷却区可以位于冷区内。 在某些应用中,冷却剂和饮料管线的位置也可以颠倒。
    • 2. 发明申请
    • FLOW CONTROL BLOCK FOR BEVERAGE DISPENSER
    • 饮料分配器流量控制块
    • WO2015048848A1
    • 2015-04-09
    • PCT/AU2014/050256
    • 2014-09-30
    • TEMPAK INTERNATIONAL PTY LTD
    • BAKER, Benjamin Paul
    • B67D1/06B67D1/04B67D1/08B67D1/00
    • F16K11/085B67D2210/0006
    • A flow control block (10) for dispensing beverages, such as beer, lager or the like, from a keg to one or more dispense stations, comprises a plurality of interconnected modules, including two end modules (12,16) and one or more middle modules (14). Each middle module (14) has an outlet (56) for connection to a beverage dispense station. Bores are provided in the middle module in a manner which allows additional middle modules (14) to be added to the flow control block, and to be supplied from one incoming beverage supply line connected to one of the end modules (12). At least one of the end modules is connected to the incoming beverage supply line, a water supply line and a gas supply line. Each middle block (14) includes a spool valve (100) for switching the outlet of the middle module between one of a closed or "OFF" position, the beverage supply line, a water supply line or a gas supply line.
    • 用于从小桶到一个或多个分配站分配诸如啤酒,啤酒机等的饮料的流量控制块(10)包括多个互连的模块,包括两个端部模块(12,16)和一个或多个 中间模块(14)。 每个中间模块(14)具有用于连接到饮料分配站的出口(56)。 在中间模块中以允许将附加的中间模块(14)添加到流量控制块并且从连接到一个端部模块(12)的一个输入饮料供应管线供应的方式设置在中间模块中的孔。 至少一个端部模块连接到进入的饮料供应管线,供水管线和气体供应管线。 每个中间块(14)包括滑阀(100),用于在封闭或“关闭”位置之一,饮料供应管线,供水管线或气体供应管线之间切换中间模块的出口。
    • 3. 发明申请
    • IMPROVED BEVERAGE CHILLING SYSTEM
    • 改进的饮料冷却系统
    • WO2013138866A1
    • 2013-09-26
    • PCT/AU2013/000297
    • 2013-03-22
    • TEMPAK INTERNATIONAL PTY LTD
    • BAKER, Benjamin, Paul
    • B67D7/80F25D31/00
    • F25D31/003B67D1/0864F25D2500/02
    • An apparatus for chilling a beverage (10) such as a beer, lager, cider, soft drink, pre-mixed spirit or the like comprises a first tank (200) for receiving liquid coolant and/or beverage lines and, optionally, a heat transfer medium, and a second tank (250), is connected to the first tank by a spillway. The first tank (200) is typically cylindrical. Advantageously as the tank is cylindrical when it is used to create an ice reservoir/thermal storage bank, which may be run down in peak periods, the ice is formed, and used more evenly than would occur with a square tank. The second tank (250) is typically generally crescent shaped in cross-section to fit within the same rectangular housing as the first tank. It is typically much smaller in capacity than the first tank. The first and second tanks may be separated by a layer of insulation to prevent heat transfer from the small tank to the larger tank.
    • 用于冷冻诸如啤酒,啤酒,苹果酒,软饮料,预混合精神等的饮料(10)的装置包括:用于接收液体冷却剂和/或饮料管线的第一罐(200),和任选的热量 转移介质和第二罐(250)通过溢洪道连接到第一罐。 第一罐(200)通常是圆柱形的。 有利的是,当罐被用于创建可能在高峰期可能下降的储冰库/储热库时,罐是圆柱形的,形成冰,并且比在方罐中发生的更均匀地使用。 第二罐(250)的横截面通常大体上为新月形,以装配在与第一罐相同的矩形壳体内。 它的容量通常比第一个坦克小得多。 第一和第二储罐可以被绝缘层隔开,以防止从小罐到较大罐的热传递。
    • 4. 发明申请
    • REMOTE BEVERAGE SUPPLY MANAGEMENT METHOD AND SYSTEM
    • 远程饮料供应管理方法与系统
    • WO2013138839A1
    • 2013-09-26
    • PCT/AU2012/000962
    • 2012-08-15
    • TEMPAK INTERNATIONAL PTY LTDBAKER, Benjamin Paul
    • BAKER, Benjamin Paul
    • G05B13/00G06F19/00
    • G05B15/02G06Q10/087G07F11/002G07F13/00
    • A remote beverage supply management system includes a dashboard human machine interface (110), a server (120), a modem (130) and an appliance control board (140) wherein the server (120) compares events in a list of events with operation status data received from the appliance control board (140) via the modem (130) in real time. If an event in the list of events occurs and user intervention is needed, the server (120) sends an indication to the human machine interface (110) for control commands from a user; if an event in the list of events occurs and no user intervention is needed, the server (110) automatically generates the control commands and sends the control commands to the appliance control board (140) to control remote appliances.
    • 远程饮料供应管理系统包括仪表板人机界面(110),服务器(120),调制解调器(130)和设备控制板(140),其中服务器(120)将事件列表中的事件与操作 通过调制解调器(130)实时地从设备控制板(140)接收的状态数据。 如果发生事件列表中的事件并且需要用户干预,则服务器(120)向人机界面(110)发送用于来自用户的控制命令的指示; 如果事件列表中的事件发生并且不需要用户干预,则服务器(110)自动生成控制命令,并将控制命令发送到设备控制板(140)以控制远程设备。