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  1. Article

    Open Access

    A self-aligning microtensile setup: Application to single-crystal GaAs microscale tension–compression asymmetry

    A novel microtensile setup was developed to overcome typical issues encountered in small-scale testing, particularly sample fabrication, sample handling, and misalignment. The system features a silicon (Si) gr...

    Daniele Casari, Laszlo Pethö, Patrik Schürch in Journal of Materials Research (2019)

  2. Article

    Open Access

    Erratum: A self-aligning microtensile setup: Application to single-crystal GaAs microscale tension–compression asymmetry-CORRIGENDUM

    doi: 10.1557/jmr.2019.183, Published by Materials Research Society, 07 June 2019.

    Daniele Casari, Laszlo Pethö, Patrik Schürch in Journal of Materials Research (2020)

  3. Article

    Open Access

    High strain rate in situ micropillar compression of a Zr-based metallic glass

    High strain rate micromechanical testing can assist researchers in elucidating complex deformation mechanisms in advanced material systems. In this work, the interactions of atomic-scale chemistry and strain r...

    Rajaprakash Ramachandramoorthy, Fan Yang, Daniele Casari in Journal of Materials Research (2021)