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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Microstructure evolution and formation mechanism of graded cemented carbide with cubic-carbide-free layer prepared with TiN or Ti(C,N) free powder mixture
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Microstructure evolution and formation mechanism of graded cemented carbide with cubic-carbide-free layer prepared with TiN or Ti(C,N) free powder mixture

机译:用锡或Ti(C,N)游离粉末混合物制备三次碳化层碳化碳化物碎片碳化物的微观结构演化与形成机理

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AbstractThe graded cemented carbide with cubic-carbide-free layer (CCFL) in the surface layer is synthesized by employing TiN or Ti(C,N) free initial powder mixture as well as nitridation-denitridation sintering procedure. Six types of alloy samples at different nitridation and denitridation sintering stages are prepared via interruption of sintering procedure at a certain temperature and direct cooling in furnace. Subsequently, the microstructure, element distribution and phase composition of these samples are analyzed by SEM, EPMA,XRD techniques respectively. Moreover, the microstructure evolution during nitridation and denitridation sintering stages is investigated, the formation mechanism of CCFL and Co-enriched layer are analyzed. The research results contribute to illuminate the formation process of CCFL, also offer instruction for adjusting the starting mixture composition and sintering procedure in a positive direction.]]>
机译:<![cdata [ 抽象 通过采用锡合成表面层中的逐方碳化层(CCFL)的分级硬质合金或Ti(C,N)自由初始粉末混合物以及氮化 - 脱氮烧结程序。在一定温度下的烧结过程中断并在炉内直接冷却,通过中断六种类型的合金样品。随后,通过SEM,EPMA,XRD技术分析了这些样品的微观结构,元件分布和相组合物。此外,研究了氮化和脱氮烧结阶段的微观结构演化,分析了CCFL和共富集层的形成机制。研究结果有助于照亮CCFL的形成过程,还提供用于调节起始混合物组合物和烧结过程的指令在正方向上。 ]]]>

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