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首页> 外文期刊>Journal of Materials Science >COMPOSITIONAL MODIFICATION OF TITANIUM CARBIDE POWDERS BY INDUCTION PLASMA TREATMENT
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COMPOSITIONAL MODIFICATION OF TITANIUM CARBIDE POWDERS BY INDUCTION PLASMA TREATMENT

机译:诱导等离子体处理对碳化钛粉的成分改性

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Non-stoichiometric titanium carbide powders were treated in an r.f. induction plasma. The composition of plasma gas, reactor pressure and powder feed rate were changed as experimental parameters, but plate power was kept constant. As the titanium carbide powders passed through the plasma, they melted, partially evaporated, and finally solidified. During the in-flight process, compositional modification was noted involving lattice modification and a change of the non-stoichiometry of titanium carbide depending on the plasma and powder feeding conditions. These were mostly due to the removal of carbon and oxygen impurity in titanium carbide while melting. The mu-AES analysis indicated that the removal of carbon occurred in the plasma treatment. The deposits formed from the vapour phase consisted mainly of very fine cubic crystals, some tens of nanometres in size, with an appreciable number of vacancies at carbon sites. [References: 28]
机译:非化学计量的碳化钛粉末在r.f.感应等离子体。改变了等离子体气体的组成,反应器压力和粉末进料速率作为实验参数,但是板功率保持恒定。当碳化钛粉末通过等离子体时,它们熔化,部分蒸发并最终固化。在飞行过程中,根据等离子体和粉末进料条件,发现组成改性涉及晶格改性和碳化钛非化学计量的变化。这些主要是由于熔化时碳化钛中碳和氧杂质的去除。 mu-AES分析表明在等离子体处理中发生了碳的去除。由气相形成的沉积物主要由非常精细的立方晶体组成,立方晶体的大小约为数十纳米,在碳位点上有相当数量的空位。 [参考:28]

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