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    • 4. 发明申请
    • Apparatus for supplying drinking water
    • 饮用水的设备
    • US20070075006A1
    • 2007-04-05
    • US10575782
    • 2004-10-15
    • Kazushige WatanabeMotoharu SatoMiwako Ito
    • Kazushige WatanabeMotoharu SatoMiwako Ito
    • B01D35/18
    • C02F9/005B67D3/0009B67D3/0038B67D2210/00013C02F1/32C02F1/444C02F2201/3222C02F2209/005C02F2209/006
    • An apparatus for supplying drinking water comprising a container (1) in which drinking water such as natural water or tap water is accommodated and which is arranged detachably; a water cooler (22) which cools drinking water supplied from the container (1); a sterilizer (5) which is installed in the water cooler (22) and sterilizes drinking water in the water cooler (22); a cold water valve (23) which controls supplying operation and stopping operation for drinking water in the water cooler (22); and a container detector (4) which detects whether or not the container (1) has been detached, wherein, after the container detector (4) has detected a state in which the container (1) has been detached, drives the sterilizer (5) for a predetermined period. This enables bacteria having invaded into the container (1) to be killed in a well-timed way.
    • 一种用于供应饮用水的设备,包括:容器(1),其容纳诸如天然水或自来水的饮用水,并且其可拆卸地布置; 冷却器(22),其冷却从所述容器(1)供应的饮用水; 灭菌器(5),其安装在所述水冷却器(22)中并对所述水冷却器(22)中的饮用水进行消毒; 一个冷水阀(23),用于控制水冷却器(22)中饮用水的运行和停止操作; 以及容器检测器(4),其检测所述容器(1)是否已经脱离,其中,在所述容器检测器(4)检测到所述容器(1)已经脱离的状态之后,驱动所述消毒器(5) )预定时间。 这使得已经侵入容器(1)的细菌以及时的方式被杀死。
    • 7. 发明授权
    • Manufacturing method of magnetic disk
    • 磁盘制造方法
    • US5374450A
    • 1994-12-20
    • US37178
    • 1993-03-24
    • Motoharu SatoYoshihiko Onishi
    • Motoharu SatoYoshihiko Onishi
    • C23C14/18G11B5/84H01F10/02
    • G11B5/8408C23C14/18G11B5/84
    • An object of the present invention is to obtain a magnetic disk which has a high coercive force. It has a constitution in which, at first, a Cr under layer, a magnetic layer of a Co alloy, and a protective layer, a Zr layer for example, are formed in order on a substrate, and it is heat-processed at a temperature of higher than 250.degree. C. The Zr layer is changed to an oxide layer, etc. by the heating process and becomes a layer which functions as a protective layer, and on the other hand, a chemical compound of Zr and a non-magnetic element in the magnetic layer of a Co alloy, Cr for example, is not generated, so that the segregation of Cr into the crystalline grain boundaries of the magnetic layer of a Co alloy is more effectively expedited. Because of this, since magnetic interactions between the crystalline grains in the magnetic layer of a Co alloy are weakened, the disks having high coercive force can be obtained.
    • 本发明的目的是获得具有高矫顽力的磁盘。 首先,在基板上依次形成Cr底层,Co合金的磁性层和保护层,例如Zr层,并在其上进行热处理 温度高于250℃。通过加热,Zr层变为氧化物层等,成为保护层的层,另一方面,Zr和非金属化合物, 不会产生例如Co合金的磁性层中的磁性元素,因此更有效地加速了Cr向Co合金的磁性层的晶粒边界的偏析。 因此,由于Co合金的磁性层中的晶粒之间的磁相互作用变弱,所以可以获得矫顽磁力高的圆盘。
    • 10. 发明授权
    • Control device for use in a refrigeration circuit
    • 用于制冷回路的控制装置
    • US4788828A
    • 1988-12-06
    • US147304
    • 1988-01-22
    • Motoharu Sato
    • Motoharu Sato
    • B60H1/32F25B41/00F25B41/04F25B41/06G05D23/12
    • F25B41/062B60H1/3205B60H1/3208G05D23/123B60H2001/3242B60H2001/3255B60H2001/3267B60H2001/3283B60H2001/3285F25B2341/062F25B2500/15
    • A refrigeration circuit including a compressor, a condenser, a control device, an evaporator and an accumulator is disclosed. The elements are serially arranged with the control device located between the outlet of the condenser and the inlet of the evaporator. The control device includes a tubular casing having three spaced walls on its interior surface. The first wall includes a plurality of holes and has a bellows attached to the interior surface thereof, the second wall has a longitudinal bore and a parallel bypass hole therethrough, and the third wall includes an orifice. An operating valve is mounted on the opposite end of the bellows. The bellows expands and contracts in accordance with the temperature of refrigerant fluid and the outlet side of the condenser, thereby, moving the operating valve to the left or the right. Movement of the operating valve controls the open cross-sectional area of the longitudinal bore so that the flow volume of refrigerant fluid in the circuit may be controlled.
    • 公开了一种包括压缩机,冷凝器,控制装置,蒸发器和蓄能器的制冷回路。 这些元件串联配置,控制装置位于冷凝器的出口和蒸发器的入口之间。 控制装置包括在其内表面上具有三个隔开的壁的管状壳体。 第一壁包括多个孔并且具有附接到其内表面的波纹管,第二壁具有纵向孔和穿过其的平行旁路孔,并且第三壁包括孔。 操作阀安装在波纹管的相对端。 波纹管根据制冷剂流体的温度和冷凝器的出口侧而膨胀和收缩,从而将操作阀向左或向右移动。 操作阀的移动控制纵向孔的敞开横截面积,从而可以控制回路中制冷剂流体的流量。