假弹性
材料科学
钛镍合金
超材料
激光器
断裂(地质)
复合材料
冶金
形状记忆合金
光电子学
光学
微观结构
马氏体
物理
作者
Zhaorui Yan,Jianing Zhu,Yi-Chieh Yang,Hans Brouwer,Ton Riemslag,Joerg R. Jinschek,M. J. M. Hermans,Jovana Jovanova,Vera Popovich
标识
DOI:10.1016/j.scriptamat.2025.116558
摘要
Superelastic metamaterials have attracted significant attention recently, but achieving such functionality remains challenging due to partial superelasticity and premature fracture in additively manufactured components. To address these issues, this study investigates the premature fracture in Ni-rich NiTi metamaterials fabricated by laser powder bed fusion. A comparative analysis of two structures (Gyroid network and Diamond shell) reveals that the structural stability of bending- and stretching-dominated structures is reversed compared to typical elastic-plastic response, due to the tension-compression asymmetry of base NiTi. The premature fracture and partial superelasticity of these as-fabricated samples are attributed to low deformation ability for accommodating tensile stress. Based on these findings, a heat treatment introducing Ni 4 Ti 3 precipitates was employed, successfully achieving macroscopic superelasticity in the NiTi metamaterials, with consistency between model prediction and experiments.
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