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    • 2. 发明专利
    • Pipe joint and pipe member for fluid
    • 管道接头和管道液体成员
    • JP2014052054A
    • 2014-03-20
    • JP2012197955
    • 2012-09-07
    • Asahi Breweries Ltdアサヒビール株式会社Kyokko Electric Co Ltd旭光電機株式会社
    • KITANO JUNICHIMAEDA TSUTOMUWADA TAKASHIKUSUNOKI KENJI
    • F16L55/00B67D1/07F16L21/00
    • PROBLEM TO BE SOLVED: To provide a pipe joint capable of measuring the temperature of a flowing fluid.SOLUTION: A body portion 103 of a pipe joint 100 is positioned between a first pipe connecting portion 101 and a second pipe connecting portion 102, and has a housing 111, a temperature sensor 121, and a temperature sensor fixing portion 123. The housing 111 has a fluid pass-through hole 115 in which a fluid flows. The fluid pass-through hole 115 is formed by a pass-through hole forming surface 115P in the inside of the housing 111. The temperature sensor 121 measures the temperature of the fluid flowing in the fluid pass-through hole 115. The temperature sensor 121 has a measuring portion for measuring temperature at a measuring end 121T at a tip end. The measuring end 121T is disposed near an intersecting portion between the fluid pass-through hole 115 and a temperature sensor layout space. A tip end surface of the temperature sensor 121 practically has no level difference from the pass-through hole forming surface 115P. The measuring end 121T is disposed in the fluid pass-through hole 115, so that it can measure the temperature of the fluid flowing in the fluid pass-through hole 115 in real time.
    • 要解决的问题:提供一种能够测量流动流体的温度的管接头。解决方案:管接头100的主体部分103位于第一管连接部分101和第二管连接部分102之间,并且具有 壳体111,温度传感器121和温度传感器固定部123.壳体111具有流体流过的流体通过孔115。 流体通过孔115由壳体111内部的通孔形成面115P形成。温度传感器121测量在流体通孔115中流动的流体的温度。温度传感器121 具有用于测量末端的测量端121T处的温度的测量部分。 测量端121T设置在流体通过孔115和温度传感器布局空间之间的相交部分附近。 温度传感器121的前端面实际上与通孔形成面115P没有水平差。 测量端121T设置在流体通过孔115中,使得其可以实时地测量在流体通过孔115中流动的流体的温度。
    • 3. 发明专利
    • 手動液体供給装置を自動液体供給装置に変換する変換装置及びその取付方法
    • 用于将手动液体供应装置转换为自动液体供应装置的转换器及其装置的安装方法
    • JP2014223943A
    • 2014-12-04
    • JP2013258762
    • 2013-12-16
    • アサヒビール株式会社Asahi Breweries Ltd旭光電機株式会社Kyokko Electric Co Ltd
    • MITSUHATA SHINSUKETAKAHASHI TOMOHIROKITANO JUNICHIWADA TAKASHITANAKA TORUNISHIO TAKASHI
    • B67D1/08
    • B67D1/08B67D1/14B67D2001/1483
    • 【課題】手動液体供給装置に取り付ける手動液体供給装置用自動液体供給変換装置の提供。【解決手段】自動ビールディスペンサ変換装置100は、自動ビールディスペンサ本体101、固定リング103、取付ベース105を有する。ベースプレート105aのベースプレート取付開口105bに手動ビールサーバのビールコック取付部を位置させ、ベースプレート105aを取り付ける。分割固定リング103aをビールコック取付部に取り付け、分割固定リング結合ボルト103cで固定する。ベースプレート固定ボルト105cを締め付け、ベースプレート固定ボルト105cを突っ張り棒のように機能させて、ベースプレート105aを固定する。本体取付開口105dに、自動ビールディスペンサ本体101の取付突起を嵌め込み、自動ビールディスペンサ本体101を取付ベース105に取り付ける。【選択図】図2
    • 要解决的问题:提供一种用于将手动液体供应装置转换成安装在手动液体供应装置上的自动液体供应装置的转换器。解决方案:用于自动啤酒分配器的转换器100具有主体101 自动啤酒分配器,固定环103和安装基座105.用于手动啤酒服务器的啤酒公鸡的安装部分位于开口105b处,用于安装基板105a的底板以将基板105a安装在其上。 在用于连接分隔/固定环的螺栓103c固定用于啤酒旋塞的安装部分上设置分隔/固定环103a。 用于固定基板的螺栓105c被固定,并且用于固定基板的螺栓105c作为拉杆操作以固定基板105a。 用于安装自动啤酒分配器的主体101的突起装配到用于安装主体的开口105d上,并且自动啤酒分配器的主体101安装在安装基座105上。
    • 4. 发明专利
    • Liquid supply system and liquid flow path adjusting device
    • 液体供应系统和液体流路调节装置
    • JP2014024607A
    • 2014-02-06
    • JP2013229864
    • 2013-11-05
    • Asahi Breweries Ltdアサヒビール株式会社Kyokko Electric Co Ltd旭光電機株式会社
    • KITANO JUNICHIWADA TAKASHIKUSUNOKI KENJI
    • B67D1/04B67D1/07B67D1/14
    • B67D1/1281B08B9/055B67D1/0005B67D1/07B67D1/0842B67D1/0888B67D1/1245B67D1/1247
    • PROBLEM TO BE SOLVED: To provide a liquid supply system in which liquid does not leak to the outside in replacing a liquid storage container.SOLUTION: Before replacing a beer storage barrel 21-1 with a new one, burst preventive measures of forming an empty discharge flow path ranging from the beer storage barrel 21-1 to a waste liquid receiver WP of a dispenser 11 are executed. In this case, a fluid stopper device 33-1 is set to a supply enabled state after setting a fluid stopper device 31-1 to a supply disabled state. Thus, the discharge flow path from beer storage barrel 21-1 to the waste liquid receiver WP is formed. In an initial stage in the supply enabled state of the fluid stopper device 33-1, bubbles ejected from the beer storage barrel 21-1 are discharged to a discharge route at a point when the beer storage barrel 21-1 becomes empty. When discharge is continued for a predetermined time, bubbles that exist in the discharge route can be discharged to the waste liquid receiver WP. This makes it possible to form an empty discharge route, and burst of a first connection tube 23-1 in the vicinity of the fluid stopper device 31-1 can be prevented.
    • 要解决的问题:提供一种液体供应系统,其中在更换液体储存容器时液体不会泄漏到外部。解决方案:在用新的啤酒储存桶21-1更换啤酒储存桶21-1之前,应采取防爆措施,形成一个空的 执行从啤酒储存筒21-1到分配器11的废液接收器WP的排出流路。 在这种情况下,在将流体停止装置31-1设定到供给禁止状态之后,将流体停止装置33-1设定为供给使能状态。 因此,形成从啤酒储存筒21-1到废液接收器WP的排出流路。 在流体停止装置33-1的供给使能状态的初始阶段,从啤酒储存筒21-1喷出的气泡在啤酒储存筒21-1变空时,排出到排出路径。 当放电持续预定时间时,排放路径中存在的气泡可以排放到废液接收器WP。 由此,能够形成空的排出路径,能够防止流体阻塞装置31-1附近的第一连接管23-1的爆裂。
    • 5. 发明专利
    • Liquid quality control system
    • 液体质量控制系统
    • JP2011084276A
    • 2011-04-28
    • JP2009235946
    • 2009-10-13
    • Asahi Breweries LtdKyokko Denki Kkアサヒビール株式会社旭光電機株式会社
    • KITANO JUNICHIWADA TAKASHIUEDA AKIYOSHIKUSUNOKI KENJI
    • B67D1/07
    • PROBLEM TO BE SOLVED: To provide a liquid quality control apparatus which eliminates the fluctuations in liquid quality control. SOLUTION: A beer quality control system 51 includes a beer quality control apparatus 71, a sensor information acquiring and controlling apparatus 73, and a temperature displaying panel 75. The beer quality control apparatus 71 acquires sensor information from the sensor information acquiring and controlling apparatus 73. The beer quality control apparatus 71 determines an executing situation on water cleaning and sponge cleaning for quality control based on the acquired sensor information. The sensor information acquiring and controlling apparatus 73 is installed in a beer feeding piping path of a beer server B1 installed in a restaurant or the like and detects the controlling condition of the beer server B1 using a beer detecting sensor. In addition, the acquired sensor information is accumulated and transmitted to the beer quality control apparatus 71. The sensor information acquiring and controlling apparatus 73 measures the temperature of the cooling water in the beer server B1 using a cooling water temperature sensor. The temperature displaying panel 75 acquires temperature information from the sensor information acquiring and controlling apparatus 73 and displays the information on the panel. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种消除液体质量控制波动的液体质量控制装置。 啤酒质量控制系统51包括啤酒质量控制装置71,传感器信息获取和控制装置73和温度显示面板75.啤酒质量控制装置71从传感器信息获取获取传感器信息,并且 啤酒质量控制装置71基于获取的传感器信息来确定用于质量控制的水洗和海绵清洁的执行情况。 传感器信息获取和控制装置73安装在安装在餐馆等中的啤酒服务器B1的啤酒喂养管道中,并使用啤酒检测传感器检测啤酒服务器B1的控制状况。 此外,所获取的传感器信息被累积并传送到啤酒质量控制装置71.传感器信息获取和控制装置73使用冷却水温度传感器测量啤酒服务器B1中的冷却水的温度。 温度显示面板75从传感器信息获取和控制装置73获取温度信息,并将信息显示在面板上。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Fluid stopper device
    • 流体停止装置
    • JP2008256096A
    • 2008-10-23
    • JP2007099007
    • 2007-04-05
    • Asahi Breweries LtdKyokko Denki Kkアサヒビール株式会社旭光電機株式会社
    • KITANO JUNICHIWADA TAKASHIKUSUNOKI KENJI
    • F16K7/04B67D1/14
    • F16K7/068
    • PROBLEM TO BE SOLVED: To provide a fluid stopper device which materializes a drive mechanism for stopping fluid flowing through a given length portion of a tube with a simple constitution by preventing the direct contact with fluid, the impairment of flow in a pipe in normal time as much as possible and the influence of a kind of fluid and by realizing the execution of detection and control with one device. SOLUTION: The fluid stopper device is equipped with a tube support part 5 for regulating the outside shape of a tube 1 to be a loop state and a movable part 4 for press welding the loop-state outside shape of the tube 1. The movable part 4 presses the loop-state tube 1 to produce a folded part 2 in the tube 1. As a result, the passage of fluid 3 inside the tube 1 is intercepted. When the movable part 4 is pulled back, the folded part 2 in the tube 1 is restored to let the fluid 3 pass through the tube 1 again. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种流体止动装置,其通过防止与流体直接接触而以简单的结构实现用于阻止流过给定长度的管的流体的驱动机构,限制管道中的流动的损害 尽可能在正常时间和一种流体的影响,并通过实现一个设备的检测和控制的执行。 解决方案:流体阻塞装置配备有用于调节管1的外部形状为管状状态的管支撑部5和用于对管1的环状外部形状进行加压焊接的可动部4。 可动部4按压环状管1,在管1内产生折叠部2。结果,管1内的流体3的通过被截断。 当可移动部分4被拉回时,管1中的折叠部分2被恢复以使流体3再次通过管1。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Liquid supply device and operating state management device
    • 液体供应装置和操作状态管理装置
    • JP2011073775A
    • 2011-04-14
    • JP2009230044
    • 2009-10-01
    • Asahi Breweries LtdKyokko Denki Kkアサヒビール株式会社旭光電機株式会社
    • KITANO JUNICHIWADA TAKASHIUEDA AKIYOSHIKUSUNOKI KENJI
    • B67D1/08F25D11/00F25D29/00
    • PROBLEM TO BE SOLVED: To provide a liquid supply device capable of determining whether the installation place is appropriate or not and suggesting the result of the determination.
      SOLUTION: A compressor 23 circulates a cooling medium through a path from a refrigeration unit 25 to an evaporation tube 27. The cooling medium evaporates and exchanges heat with cooling water when passing through the evaporation tube 27 in a water tank 22. Ice is thus formed around the evaporation tube 27. The temperature of the cooling water can be controlled according to the thickness of the ice formed around the evaporation tube 27. An ice accretion sensor 51 disposed near the evaporation tube 27 located in the water tank 22 detects whether or not ice having a predetermined thickness is formed around the evaporation tube 27. The compressor 23 operates on the basis of a signal from the ice accretion sensor 51. Therefore, by observing the one-day operating state of the compressor 23, it is known how much the cooling water needs to be cooled, and it becomes possible to determine whether or not a beer server 1 is installed in an appropriate environment.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够确定安装地点是否合适的液体供应装置,并提出确定的结果。 解决方案:压缩机23使冷却介质通过从制冷单元25到蒸发管27的路径循环。当通过水箱22中的蒸发管27时,冷却介质蒸发并与冷却水交换热量。冰 可以根据蒸发管27周围形成的冰的厚度来控制冷却水的温度。设置在位于水箱22内的蒸发管27附近的积冰传感器51检测 是否在蒸发管27周围形成具有预定厚度的冰。压缩机23基于来自积冰传感器51的信号进行操作。因此,通过观察压缩机23的一天操作状态, 知道冷却水需要多少冷却,并且可以确定啤酒服务器1是否安装在适当的环境中。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Liquid supply device and cooling water condition determining device
    • 液体供应装置和冷却水条件确定装置
    • JP2011122793A
    • 2011-06-23
    • JP2009282359
    • 2009-12-14
    • Asahi Breweries LtdKyokko Denki Kkアサヒビール株式会社旭光電機株式会社
    • KITANO JUNICHIWADA TAKASHIHAGIWARA FUMIHIRO
    • F25D11/00F25D29/00
    • PROBLEM TO BE SOLVED: To provide a liquid supply device capable of automatically determining a condition of cooling water.
      SOLUTION: An ice accretion sensor 51 is disposed at a prescribed position near an evaporation tube 27, and detects an electric resistance value, that is, the electric conductivity of cooling water and the like on the basis of ion current flowing between two probe electrodes. A cooling water temperature sensor 53 is disposed near the ice accretion sensor 51 and detects the temperature of the cooling water in a water tank 22. The ice accretion sensor 51 determines whether a prescribed amount of ice is formed around the evaporation tube 27 or not, that is, whether the cooling water is cooled to a prescribed temperature or not, on the basis of change in the electric conductivity of the cooling water or ice as detected object. The electric conductivity of the cooling water is changed by a temperature of the cooling water. As the electric conductivity of the cooled water is changed by the temperature, it is necessary to correct the electric conductivity of the cooling water on the basis of the temperature to accurately acquire the condition of the cooling water on the basis of the electric conductivity. So the cooling water temperature sensor 53 is disposed to detect the temperature of the cooling water.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够自动确定冷却水的状态的液体供应装置。 解决方案:将积冰传感器51设置在蒸发管27附近的规定位置处,并且基于在两个之间流动的离子电流来检测电阻值,即冷却水等的电导率 探针电极。 冷却水温度传感器53设置在积冰传感器51的附近,并检测水箱22内的冷却水的温度。积冰传感器51判断是否在蒸发管27周围形成规定量的冰, 即冷却水是否冷却到规定的温度,以被检测对象的冷却水或冰的导电性的变化为基础。 冷却水的电导率由冷却水的温度变化。 由于冷却水的电导率被温度变化,所以需要根据温度校正冷却水的电导率,从而根据导电率准确地获得冷却水的状态。 因此,设置冷却水温度传感器53来检测冷却水的温度。 版权所有(C)2011,JPO&INPIT
    • 9. 发明专利
    • Fluid dispensing and liquid spouting system
    • 流体分配和液体排放系统
    • JP2010280408A
    • 2010-12-16
    • JP2009134542
    • 2009-06-03
    • Asahi Breweries LtdKyokko Denki Kkアサヒビール株式会社旭光電機株式会社
    • KITANO JUNICHIWADA TAKASHI
    • B67D1/04B67D1/14
    • PROBLEM TO BE SOLVED: To early and accurately detect bubbles or the like generated when a storing container such as a beer barrel becomes empty and at an initial state after the storing container such as the beer barrel is replaced, and to discharge them by easily maintainable means. SOLUTION: A fluid dispensing system for feeding and/or discharging a fluid includes opening and closing means for intercepting the flow of the fluid by forming a bending part for bending a part of a pipe line by feeding pipe line opening and closing means. Controlling means acquires a content detected by detecting means, and determines the fluid to be sorted into a liquid and fluids other than the liquid depending on the acquired content, and based on the result of the determination, the liquid is dispensed to a spout through the feeding pipe line, and the fluid other than the liquid is dispensed to the discharging pipe line. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了及时准确地检测当诸如啤酒桶的储存容器变空时产生的气泡等,并且在诸如啤酒桶的储存容器被更换之后的初始状态下,并且将它们排出 通过易于维护的方式。 解决方案:用于供给和/或排出流体的流体分配系统包括用于通过形成用于弯曲管道的一部分的弯曲部分来拦截流体的流动的打开和关闭装置, 。 控制装置获取由检测装置检测到的内容,并且根据所获取的内容将待分类的流体和除液体以外的流体进行确定,并且基于确定结果,将液体通过 进料管线,液体以外的流体被分配到排出管路。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • 見守り装置
    • 监控设备
    • JP2014235669A
    • 2014-12-15
    • JP2013118330
    • 2013-06-04
    • 旭光電機株式会社Kyokko Electric Co Ltd
    • WADA TAKASHI
    • G08B25/04G08B25/00G08B25/10
    • 【課題】見守り領域において、見守り度合いに応じた部分見守り領域を設定でき、部分見守り領域を所望の位置に容易に設定できる見守り装置の提供。【解決手段】見守り装置110は、基礎筐体110a及び可動筐体110bを有している。基礎筐体110aの外表面には、所定の位置に、人感センサユニットが形成する第1部分見守り領域の長さ方向、幅方向、それぞれの軸の方向を示す第1部分見守り領域軸指定マーク110cが表示されている。設置者は、ベッドの長さ方向、幅方向が、第1部分見守り領域軸指定マーク110cの検知領域の長さ方向、幅方向の軸に沿うように、見守り装置110を天井に設置する。可動筐体110bは、基礎筐体110aに対して移動でき、所望の位置で固定できる。可動筐体110bの内部には、人感センサユニットが配置される。これにより、簡単に第1部分見守り領域を設定することができる。【選択図】図4
    • 要解决的问题:提供一种能够根据监视区域中的监视程度设置部分监视区域并且容易地将部分监视区域设置在期望位置的监视设备。解决方案:监视设备110具有底座壳体110a 和可动壳体110b。 显示基部壳体110a的外表面,其具有由人体检测传感器单元形成的第一部分监测区域的长度方向和宽度方向,以及示出各轴线方向的第一局部监测区域轴指示标记110c。 安装者将监视装置110设置在天花板上,使得头部的长度方向和宽度方向沿着第一部分监视区域轴指定标记110c的检测区域的长度方向和宽度方向被调整。 可移动壳体110b可以移动到基座壳体110a并且可以固定在期望的位置。 人体检测传感器单元布置在可动壳体110b的内部。 结果,可以简单地设置第一部分监视区域。