[特邀报告]CrAlN/(CrVTaTiW)N多层体系的微观结构与力学性能演变:关于CrAlN层厚影响的综合研究

CrAlN/(CrVTaTiW)N多层体系的微观结构与力学性能演变:关于CrAlN层厚影响的综合研究
编号:71 稿件编号:76 访问权限:仅限参会人 更新:2025-04-25 22:44:05 浏览:29次 特邀报告

报告开始:2025年05月11日 14:10 (Asia/Shanghai)

报告时间:20min

所在会议:[L] 高熵合金及其涂层论坛 » [L2] 下午场

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摘要
CrAlN/(CrVTaTiW)Nx nano-multilayer films were prepared using magnetron sputtering with varying the CrAlN layer thicknesses. The relationship between the CrAlN modulation layer thickness and the phase composition, microstructure, and mechanical properties of multilayer films was investigated. The results reveal that CrAlN/(CrVTaTiW)Nx multilayers possessed a single face-centered-cubic (FCC) crystal structure with NaCl-type phase structure. The GIXRR and TEM results reveal a well-defined periodic structure in the thin films. Furthermore, an accumulation of interface distortion and phase composition variations were observed as more layers along the growth direction were deposited. The increase in CrAlN layer thickness caused the formation of new phases, which affected the growth behavior of the new layer. The coherent epitaxial effect took place in all samples. As the thickness of the CrAlN layer increases, the (111) interplanar spacing decreases. The samples with 1.8nm CrAlN layer exhibited an maximum hardness and an elastic modulus of 25.8 GPa and 274.6 GPa, respectively. Furthermore, they also show an excellent crack resistance and plastic deformation resistance properties.
 
关键字
CrAlN/(CrVTaTiW)Nx; high entropy alloy nitride; hardness coating; mechanical properties; growth behavior
报告人
袁妍妍
系主任 江苏科技大学

稿件作者
YuanYanyan 江苏科技大学
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