论文标题

Altinicucox系统高渗透合金和结构分析的制备

Preparation of the AlTiNiCuCox system high-entropy alloys and structural analysis

论文作者

Wang, Junfeng, Wang, Xinran, Huang, Zhihao, Li, Ting, Fu, Yudong

论文摘要

这项研究旨在探索和开发具有高成本效益,出色的强度,轻巧,高硬度,耐磨性,耐腐蚀性和有利的氧化能力的新材料。结构分析表明,随着CO添加量的变化,合金系统的表面形态和结构发生了变化。 XRD分析表明,合金系统是FCC+BCC混合结构。此外,术表明,随着CO含量的增加,树突状晶体从大块转变为树突状结构,然后转向雪花,逐渐变为花瓣状,最后变为花瓣形状。 SEM-EDS分析表明,Cu元素富集在跨跨位点中,而Ti,Ni,Al和Co元素则富含树突中。此外,TEM和TEM-EDS分析表明,富含Cu的块状区域中有纳米大小的小颗粒以及脱位。此外,树突内有双结构,以及具有不同形态的第二阶段,第二阶段与矩阵显示一致性。上述分析表明,晶间结构是FCC结构的含量富集阶段。晶粒的内部基质是BCC结构的NITI和TICO阶段。谷物内的第二阶段是FCC结构的Alcu2Ti,Alni2Ti,Alco2Ti和Cuni阶段。综上所述,Altinicucox系统的新型合金改变了合金系统的相结构和相类型。

This study aimed to explore and develop a new material with high cost-effectiveness, excellent strength, light weight, high hardness, great wear resistance, corrosion resistance, and favorable oxidation resistance. Structural analysis suggested that, with the change in Co addition amount, the surface morphology and structure of the alloy system changed. XRD analysis indicated that, the alloy system was the FCC+BCC mixed structure. In addition, metallographical demonstrated that, with the increase in Co content, the dendritic crystal transformed from big block to dendritic structure, then to snowflake, gradually to petal-like, and finally to petal shape. SEM-EDS analysis revealed that, Cu element was enriched in interdendritic site, while Ti, Ni, Al and Co elements were enriched in dendrite. Besides, TEM and TEM-EDS analysis indicated that, there was nano-size precipitate of small particles in the Cu-enriched block region, along with dislocation; further, there was twin structure inside the dendrite, as well as the second phase with different morphology, and the second phase showed coherency with the matrix. The above analysis suggested that, the intercrystalline structure was the Cu-enriched phase of FCC structure; the internal matrix of grain was the NiTi and TiCo phases of BCC structure; and the second phases inside the grain were the AlCu2Ti,AlNi2Ti,AlCo2Ti and CuNi phases of FCC structure. Taken together, the AlTiNiCuCox system novel alloys have changed phase structures and phase types of the alloy system.

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