首页> 外文会议>Frontiers in Biomedical Devices Conference Exposition >A MICROMACHINED DEVICE USING TRANSIENT HOT-WIRE METHOD FOR HIGH ACCURACY THERMAL CONDUCTIVITY MEASUREMENT OF SEMI-RIGID MATERIALS
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A MICROMACHINED DEVICE USING TRANSIENT HOT-WIRE METHOD FOR HIGH ACCURACY THERMAL CONDUCTIVITY MEASUREMENT OF SEMI-RIGID MATERIALS

机译:一种用于高精度热导电性测量的微机械装置,用于半刚性材料

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Based on the transient hot-wire method and well developed microfabrication techniques, a new thermal sensor, in which the microfabricated gold wire serves as both a heater and a thermometer, has been developed for measuring the thermal conductivities of semi-rigid materials. The intention that only one calibration constant is needed for an entire batch of sensors has been validated. Thermal conductivities of distilled water, ethylene glycol, dimethyl sulfoxide (DMSO), and apple at different temperatures have been obtained. Measurements are in agreement with suggested values. Complete results will be presented at the conference. The operating temperature of 0°C to 27°C has been tested and is anticipated to be -20°C to 60°C. In spite of conventional advantages, the presented sensor offers new exciting superior performance characteristics, such as reduced thermal resistivity and higher sensitivity, easier manufacturing for mass production, flexibility to reconfigure the sensor for samples with various sizes and shapes, and much reduced workload for system calibration.
机译:基于瞬态热线方法和发育良好的微制造技术,已经开发出一种新的热传感器,其中微纤维金线用作加热器和温度计,用于测量半刚性材料的导热性。验证了整个批次传感器只需要一个校准常数的意图已被验证。已经获得了蒸馏水,乙二醇,二甲基磺氧化亚砜(DMSO)的热导体,以及在不同温度下的苹果。测量与建议的值一致。完成结果将在会议上展示。已经测试了0℃至27℃的工作温度,预计为-20°C至60°C。尽管存在常规优势,所呈现的传感器提供了新的令人兴奋的卓越性能特性,例如降低热电阻率和更高的灵敏度,批量生产的更容易的制造,灵活地重新配置传感器,用于各种尺寸和形状的样品,以及系统的工作量大大降低工作量校准。

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