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首页> 外文期刊>Journal of the European Ceramic Society >Giant piezoresistivity of polymer-derived ceramics at high temperatures
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Giant piezoresistivity of polymer-derived ceramics at high temperatures

机译:聚合物陶瓷在高温下的巨大压阻

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摘要

The piezoresistivity of a silicon oxycarbonitride polymer-derived ceramic (PDC) material is investigated at high temperatures. The resistancewas measured as a function of uniaxial loading under constant current conditions. The piezoresistive gage factor was found to be in the range of 600-1700 at an applied stress of 1 MPa. The gage factor depends on both the stress and temperature. The piezoresistivity was measured up to1000℃, demonstrating the viability of PDCs as piezoresistive materials at high temperatures. The Arrhenius dependence of the gage factor,ψ,gives the following expression for its temperature dependence at 1 MPa: ψ = 44 exp(28,000/8.317), where T is in Kelvin. The extrapolated values ofthe gage factor yield a value of 322 at 1400℃ , and 287 at 1500℃ (at an applied stress of 1 MPa). A combination of stability at high temperatures, chemical durability, and large gage factor are entirely unique to PDCs making them ideal candidates for sensor materials in extreme environments.
机译:在高温下研究了碳氧氮化硅聚合物衍生的陶瓷(PDC)材料的压阻。在恒定电流条件下,测量电阻作为单轴载荷的函数。发现在1 MPa的施加应力下,压阻应变系数在600-1700范围内。应变系数取决于应力和温度。在高达1000℃的温度下测量了压阻,证明了PDC在高温下作为压阻材料的可行性。量规因子ψ的Arrhenius依赖性因其在1 MPa时的温度依赖性而具有以下表达式:ψ= 44 exp(28,000 / 8.317),其中T为开尔文。在1400℃时,应变系数的外推值得出322,在1500℃(1 MPa施加应力)下得出的287值。 PDC完全具有高温稳定性,化学耐久性和较大的应变系数的完美结合,使其成为极端环境下传感器材料的理想选择。

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