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    • 3. 发明申请
    • SENSOR AND METHOD FOR MAKING SAME
    • 传感器及其制造方法
    • US20080003353A1
    • 2008-01-03
    • US11837013
    • 2007-08-10
    • Canan HardwickeStephen Rutkowski
    • Canan HardwickeStephen Rutkowski
    • B05D5/12
    • G01K1/143G01K1/024G01K7/01G01K13/08G01K2205/04H01C7/008H01C7/06H01C17/065
    • Multi-layer sensors are made using a direct write deposition technology. The sensors are formed on the surface of an object having a system characteristic to be monitored, such as temperature and strain. A first layer is deposited onto the substrate of the object to be monitored, a second layer is deposited onto the first layer, and a third layer is deposited onto the second layer. An optional protective layer may be deposited between the first layer and the substrate to prevent chemical interaction and lack of adhesion therebetween. A glazing or glassing layer may also be deposited to protect the thermistor from the operating environment to keep its electrical properties constant. These layers are sintered together, then electrical leads are attached to the sensor and to a monitoring controller. The monitoring controller may be hardwired to the sensor or remote therefrom.
    • 多层传感器采用直写式沉积技术制成。 传感器形成在具有待监测的系统特性的物体的表面上,例如温度和应变。 将第一层沉积在待监测对象的衬底上,第二层沉积在第一层上,第三层沉积到第二层上。 可以在第一层和衬底之间沉积可选的保护层,以防止其间的化学相互作用和不粘合。 还可以沉积玻璃或玻璃层以保护热敏电阻免受操作环境的影响,以保持其电性能不变。 这些层被烧结在一起,然后电引线连接到传感器和监控控制器。 监控控制器可以硬连线到传感器或远离传感器。
    • 6. 发明申请
    • Sensor and method for making same
    • 传感器及其制作方法
    • US20060020415A1
    • 2006-01-26
    • US10971803
    • 2004-10-22
    • Canan HardwickeStephen Rutkowski
    • Canan HardwickeStephen Rutkowski
    • G01K7/16
    • G01K1/143G01K1/024G01K7/01G01K13/08G01K2205/04H01C7/008H01C7/06H01C17/065
    • Multi-layer sensors are made using a direct write deposition technology. The sensors are formed on the surface of an object having a system characteristic to be monitored, such as temperature and strain. A first layer is deposited onto the substrate of the object to be monitored, a second layer is deposited onto the first layer, and a third layer is deposited onto the second layer. An optional protective layer may be deposited between the first layer and the substrate to prevent chemical interaction and lack of adhesion therebetween. A glazing or glassing layer may also be deposited to protect the thermistor from the operating environment to keep its electrical properties constant. These layers are sintered together, then electrical leads are attached to the sensor and to a monitoring controller. The monitoring controller may be hardwired to the sensor or remote therefrom.
    • 多层传感器采用直写式沉积技术制成。 传感器形成在具有待监测的系统特性的物体的表面上,例如温度和应变。 将第一层沉积在待监测对象的衬底上,第二层沉积在第一层上,第三层沉积到第二层上。 可以在第一层和衬底之间沉积可选的保护层,以防止其间的化学相互作用和不粘合。 还可以沉积玻璃或玻璃层以保护热敏电阻免受操作环境的影响,以保持其电性能不变。 这些层被烧结在一起,然后电引线连接到传感器和监控控制器。 监控控制器可以硬连线到传感器或远离传感器。