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A Proposal for a Composite with Temperature-Independent Thermophysical Properties: HfV

机译:具有温度无关的热物理性质的复合材料的提案:HFV

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摘要

The HfV2–HfV2O7 composite is proposed as a material with potentially temperature-independent thermophysical properties due to the combination of anomalously increasing thermoelastic constants of HfV2 with the negative thermal expansion of HfV2O7. Based on literature data, the coexistence of both a near-zero temperature coefficient of elasticity and a coefficient of thermal expansion is suggested for a composite with a phase fraction of approximately 30 vol.% HfV2 and 70 vol.% HfV2O7. To produce HfV2–HfV2O7 composites, two synthesis pathways were investigated: (1) annealing of sputtered HfV2 films in air to form HfV2O7 oxide on the surface and (2) sputtering of HfV2O7/HfV2 bilayers. The high oxygen mobility in HfV2 is suggested to inhibit the formation of crystalline HfV2–HfV2O7 composites by annealing HfV2 in air due to oxygen-incorporation-induced amorphization of HfV2. Reducing the formation temperature of crystalline HfV2O7 from 550 °C, as obtained upon annealing, to 300 °C using reactive sputtering enables the synthesis of crystalline bilayered HfV2–HfV2O7.
机译:由于HFV2O7的负热膨胀,提出了由于HFV2O7的负热膨胀而异常增加的HFV2热弹性常数的组合而提出了HFV2-HFV2O7复合材料的材料。基于文献数据,针对近零温度系数的弹性和热膨胀系数的共存进行了建议,该复合材料具有约30体积的相级分。%HFV2和70体积%。%HFV2O7。为了生产HFV2-HFV2O7复合材料,研究了两个合成途径:(1)空气中的溅射的HFV2薄膜的退火形成HFV2O7 / HFV2双层的表面和(2)溅射的HFV2O7氧化物。提出了HFV2中的高氧迁移率,以抑制由于HFV2的氧掺入诱导的HFV2而在空气中通过退火HFV2-HFV2O7复合材料的形成。在退火时获得的结晶HFV2O7的形成温度从退火时得到的,使用反应溅射得到300℃,使得结晶双层HFV2-HFV2O7能够合成。

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