Theoretical screening,intrinsic brittleness and thermal properties of the S-containing MAX carbides and borides  被引量:1

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作  者:Zhiyao Lu Xiaodong He Hang Yin Jinze Zhang Guangping Song Yongting Zheng Yuelei Bai 

机构地区:[1]National Key Laboratory of Science and Technology on Advanced Composites in Special Environments and Center for Composite Materials and Structure,Harbin Institute of Technology,Harbin,150080,China

出  处:《Journal of Materiomics》2023年第6期1056-1066,共11页无机材料学学报(英文)

基  金:supported by the National Natural Science Foundation of China(Grant No.51972080);the science foundation of National Key Laboratory of Science and Technology on Advanced Composites in Special Environments.

摘  要:To respond the recent experimental advances,the phase stability,mechanical properties,phonon as well as infrared-and Raman-active modes,thermal expansion and heat capacity were investigated by density functional theory for the S-containing MAX carbides and borides(M fromⅢB toⅧB),of importance,well consistent with the available experimental results.After examining the thermodynamic competition with all the competing phases and intrinsic stability by their lattice dynamics,18 MAX phases were screened out from 138 ones.Using the“bond stiffness”model as well as the associated criterion for damage tolerance and fracture toughness,the ratio of bond stiffness of weakest M-S to the strongest MX bonds(k_(min)/k_(max))over 1/2 indicates their intrinsic brittleness of all S-containing MAX phases except Nb4SC3.Including the contributions from phonon and electrons,their linear thermal expansion coefficients[(8.1e13.6)×10^(-6)K^(-1),300-1,300 K]and heat capacities(Cp)as a function of temperature are predicted.Of much interest,a well-established relationship between molar C_(p)of the MAX and MX phases is theoretically deduced in the present work.

关 键 词:Phase stability Intrinsic brittleness Thermal expansion Heat capacity 

分 类 号:TQ17[化学工程—硅酸盐工业]

 

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