材料科学
合金
晶体结构
硼
Crystal(编程语言)
体积模量
六方晶系
碳纤维
材料性能
相(物质)
弹性模量
固溶体
杨氏模量
模数
弹性(物理)
金属
过渡金属
电子结构
压痕硬度
混合(物理)
相变
结晶学
单晶
作者
F. Zhang,Lei Cao,Ying Zeng,Chunfeng Hu,Marcus Ekholm,Qingguo Feng
摘要
Abstract The widely recognized MAX‐phase materials consist of an early transition metal (M), an A‐group element, and carbon or nitrogen (X) in a hexagonal layered crystal structure. Recently, materials known as MAB phase materials have been developed by substituting boron (B) for the carbon or nitrogen. We have studied an MAB phase alloy system, , by mixing the elements on the A site in the prototypical MAX‐phase crystal structure instead of the more common M site. We have considered thermodynamic, mechanical and electronic properties of the resulting alloy system in the entire composition range, . With increasing Te content, the modulus of elasticity and hardness show a decreasing trend, while the material retains its electrical conductivity. Further analysis of the optical properties shows that the studied solid solutions are good candidates for effective absorbing materials in the UV region. Our study indicates that strategic alloying within the A site of MAB phases can selectively tailor certain material properties while preserving their favorable electrical and mechanical performance.
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