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Behavior of electrical resistance of SiCCVD fiber and development of micro-heater with SiCCVD fiber

机译:SiC CVD 纤维的电阻行为及采用SiC CVD 纤维的微加热器的开发

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Behavior of electrical resistance was examined in room temperature and elevated temperatures up to 1000 °C for two types of SiCCVD fibers with diameters of 140 and 70 μm, respectively. The results showed that electrical resistance showed a good linear relationship with the length of fibers. Electrical resistance decreased as temperature increased, besides, temperature coefficient of electrical resistance was a minus constant, −5.2 × 10−4 °C−1 except that in the first heating. In the first heating, electrical resistance and temperature coefficient increased and had a peak in the range of 550–700 °C owing to the burning of the carbon-rich layer on the fiber surface. It suggested that behavior of electrical resistance of the fibers depended mainly on the carbon core and the carbon-rich layer. It was confirmed that SiCCVD fiber could be used as heating elements for micro-heater and finally a micro-heater using SiCCVD fiber as heating elements was developed.
机译:在室温和高达1000°C的高温下,对两种直径分别为140和70μm的SiC CVD 纤维的电阻行为进行了测试。结果表明,电阻与纤维长度呈良好的线性关系。电阻随温度升高而降低,此外,电阻温度系数为负常数,即-5.2×10 -4 °C -1 。在第一次加热中,由于纤维表面上富碳层的燃烧,电阻和温度系数增加,并在550-700°C的范围内出现一个峰值。这表明纤维的电阻行为主要取决于碳核和富碳层。证实了可以将SiC CVD 纤维用作微加热器的加热元件,并最终开发了一种以SiC CVD 纤维为加热元件的微加热器。

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