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    • 3. 发明申请
    • MULTIMODAL SENSOR, METHOD OF USE AND FABRICATION
    • 多模传感器,使用和制造方法
    • WO2014201442A1
    • 2014-12-18
    • PCT/US2014/042435
    • 2014-06-14
    • CORNELL UNIVERSITY
    • STROOCK, Abraham D.LAKSO, Alan N.PAGAY, VinaySANTIAGO, MichaelSESSOMS, David
    • G01N13/02G01N19/10
    • G01N13/02G01N7/10G01N33/246
    • A multimodal sensor includes a microtensiometer for measuring the chemical potential of a sub-saturated liquid, a temperature sensor, and a water content sensor. The microtensiometer includes a sensor body comprising a first gas-impermeable layer, an opposing second gas-impermeable layer, and a porous membrane layer disposed therebetween. The sensor body defines an internal liquid reservoir. The membrane layer is fluidly connected with the liquid reservoir, and extends to an outside edge of the microtensiometer. The membrane layer defines a plurality of through pores providing an open path from the liquid reservoir to the outside edge of the microtensiometer. The pores have a maximum diameter of 3 millimeters. The microtensiometer further includes a sensor adapted to measure changes in pressure between the liquid reservoir and an outside environment. The temperature sensor is integrated onto the microtensiometer body, and the water content sensor is coupled to the microtensiometer body.
    • 多模式传感器包括用于测量亚饱和液体的化学势的微量计,温度传感器和含水量传感器。 微量计包括传感器体,其包括第一气体不可渗透层,相对的第二气体不可渗透层和设置在其间的多孔膜层。 传感器主体限定内部液体储存器。 膜层与液体储存器流体连接,并延伸到微量计的外边缘。 膜层限定多个通孔,提供从液体储存器到微量计的外部边缘的开放路径。 毛孔最大直径为3毫米。 微量计还包括适于测量储液器和外部环境之间的压力变化的传感器。 将温度传感器集成到微量计主体上,并将含水量传感器耦合到微量计主体。