纳米压痕
蠕动
刚度
表征(材料科学)
脆性
计算机科学
材料科学
纳米技术
复合材料
作者
Daniel Kiener,Michael Wurmshuber,Markus Alfreider,Gerald J.K. Schaffar,Verena Maier‐Kiener
标识
DOI:10.1016/j.cossms.2023.101108
摘要
Nanoindentation based techniques were significantly enhanced by continuous stiffness monitoring capabilities. In essence, this allowed to expand from point-wise discrete measurement of hardness and elastic modulus towards advanced plastic characterization routines, spanning the whole rate-dependent spectrum from steady state creep properties via quasi static flow curves to impact or brittle fracture. While representing a significant step forwards already, these techniques can tremendously benefit from additional or complementary input provided by in situ or operando experiments. In fact, by combining and merging these approaches, impressive advances were made towards well controlled nanomechanical investigations at various non-ambient conditions. Here we will discuss some novel experimental avenues facilitated by deliberate extreme environments, and also indicate how future improvements and enhancements will potentially provide previously unseen insights into fundamental material behavior at extreme conditions.
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