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首页> 外文期刊>Advances in materials science and engineering >Fabrication of Tantalum and Hafnium Carbide Fibers via Forcespinning TM for Ultrahigh-Temperature Applications
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Fabrication of Tantalum and Hafnium Carbide Fibers via Forcespinning TM for Ultrahigh-Temperature Applications

机译:用于超高温度应用的TM制备钽和铪纤维的制造

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In this work, a novel method for producing ultrafine tantalum and hafnium carbide fibers using the Forcespinning TM technique via a nonhalide-based sol-gel process was investigated. An optimal solution viscosity range was systematically determined via rheological studies of neat PAN/DMF as a function of fiber formation. Subsequently, Forcespinning TM parameters were also systemically studied to determine the optimal rotational velocity and spinneret-to-collecting rod distance required for ideal fiber formation. TaC and HfC fibers were synthesized via Forcespinning TM utilizing a mixture of PAN and refractory transition metal alkoxides (i.e., tantalum (V) ethoxide and hafnium (IV) tert-butoxide) in DMF solution based on optimal conditions determined from the neat PAN/DMF. In all instances after calcination, powder X-ray diffraction (PXRD) and energy dispersive spectroscopy (EDS) indicated that TaC and HfC fibers were produced. TGA/DSC confirmed the chemical stability of the resulting fibers.
机译:在这项工作中,研究了一种通过非卤素基溶胶 - 凝胶工艺生产超细钽和碳化铪纤维的新方法。通过作为纤维形成的函数,通过整齐PAN / DMF的流变研究系统地确定最佳溶液粘度范围。随后,还系统地研究了用于确定TM参数,以确定理想纤维形成所需的最佳旋转速度和喷丝注射杆距离。通过在DMF溶液中使用PAN和耐火过渡金属醇盐(即钽(V)乙氧化物和铪(IV)叔丁醇)的混合物来合成TAC和HFC纤维,基于从整洁的平移/ DMF确定的最佳条件。在煅烧后的所有情况下,粉末X射线衍射(PXRD)和能量分散光谱(EDS)表明制备了TAC和HFC纤维。 TGA / DSC确认所得纤维的化学稳定性。

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