4.1 Review

In Situ Experiments: Paving Ways for Rapid Development of Structural Metallic Materials for a Sustainable Future

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Summary: The low cycle fatigue behavior of Fe50Mn30Co10Cr10 high entropy alloy is characterized by deformation-induced martensitic transformation and extensive twinning, with multiple deformation mechanisms like planar slip and deformation twinning contributing to a hierarchically refined microstructure. This provides a pathway for microstructural engineering to achieve excellent tensile and low cycle fatigue performance of Fe50Mn30Co10Cr10.

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Summary: The scanning strategy in powder bed fusion has a measurable impact on the grain size and growth direction of produced parts. Tilted scan lines can lead to greater elongation in AlSi10Mg parts, while non-tilted lines result in higher tensile strength. Advanced characterization methods like EBSD and X-ray CT were used to analyze the microstructures of the alloys, providing insights into the deformation and hardening behavior of the specimens.

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Abheepsit Raturi et al.

Summary: A comprehensive study was conducted to predict the elastic and plastic anisotropy of the non-equiatomic Mo15Nb35Ta35V5W10 Refractory High Entropy alloy (RHEA) using high throughput combinatorial approach and instrumented micro-indentation with electron backscatter diffraction (EBSD). The results indicate that the anisotropy in the elastoplastic behavior of the novel RHEA is distinct from its constituent elements, requiring high throughput experimental techniques to establish the structure-property linkages.

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Jaclyn L. Cann et al.

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Chengxiong Zou et al.

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Zifan Wang et al.

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Zheng Liu et al.

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Decheng Kong et al.

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