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    • 8. 发明申请
    • METHOD FOR INFERRING TEMPERATURE IN AN ENCLOSED VOLUME
    • 在封闭体积中感染温度的方法
    • US20110129934A1
    • 2011-06-02
    • US13057827
    • 2009-07-10
    • Gerard D. Agnew
    • Gerard D. Agnew
    • G01N33/20G01R27/08
    • H01M8/04656G01K3/005G01K7/183G01N31/22G01N33/84H01M8/0432H01M8/0444H01M2008/1293Y02E60/50Y02E60/525
    • A method for inferring temperature in an enclosed volume containing a fuel/oxidant mixture, the method comprises placing at least one wire in the enclosed volume. The at least one wire having an identifiable property wherein the identifiable property of the at least one wire changes from a first identifiable state at a temperature below the auto-ignition temperature of the fuel/oxidant mixture to a second identifiable state at a temperature above the auto-ignition temperature of the fuel/oxidant mixture, and determining if the identifiable property of the at least one wire has changed from the first identifiable state to the second identifiable state and hence if the temperature in the enclosed volume is above the auto-ignition temperature of the fuel/oxidant mixture.
    • 一种用于推断包含燃料/氧化剂混合物的封闭体积中的温度的方法,所述方法包括将至少一根导线放置在封闭容积中。 所述至少一根线材具有可识别的特性,其中至少一根线材的可识别性能在低于燃料/氧化剂混合物的自燃温度的温度下从第一可识别状态改变到第二可识别状态, 燃料/氧化剂混合物的自燃温度,以及确定至少一根导线的可识别性质是否已经从第一可识别状态改变到第二可识别状态,因此如果封闭容积中的温度高于自动点火 燃料/氧化剂混合物的温度。
    • 9. 发明申请
    • BEARING APPARATUS AND MANUFACTURING METHOD THEREOF
    • 轴承装置及其制造方法
    • US20100002974A1
    • 2010-01-07
    • US12439207
    • 2007-03-15
    • Keisuke YokoyamaKunihiko Sasao
    • Keisuke YokoyamaKunihiko Sasao
    • F16C19/24B21D53/10
    • F16C19/525F16C19/06F16C33/583F16C33/7856F16C2300/02G01K1/14G01K7/183G01K13/08Y10T29/49636
    • A bearing apparatus has a rolling bearing including an outer ring (11), an inner ring (12), and rolling elements (13) disposed between the two rings, and a temperature sensor (TS) for measuring an internal temperature of the rolling bearing. A wire from the temperature sensor extends to the outside via a through-hole (11d) formed in a component of the bearing apparatus, and hence the temperature sensor can be disposed in a desired position with excellent wiring extension flexibility, thereby enabling a temperature in the desired position of the bearing to be measured. The temperature sensor, which can be configured thin in a small size with flexibility, can therefore be incorporated into whichever portion of the bearing, wherein a high response to temperature detection is attained, and detectability of abnormality in temperature can be improved.
    • 轴承装置具有包括外圈(11),内圈(12)和设置在两个环之间的滚动元件(13)的滚动轴承和用于测量滚动轴承的内部温度的温度传感器(TS) 。 来自温度传感器的线通过形成在轴承装置的部件中的通孔(11d)延伸到外部,因此温度传感器可以布置在期望的位置,具有良好的布线延伸柔性,从而使得 要测量的轴承的所需位置。 因此,可以将具有柔性的小尺寸的温度传感器并入到轴承的哪个部分中,其中获得对温度检测的高响应,并且可以提高温度异常的可检测性。