@article{1340fc03677d4bde97762eca0fe0d7d7,
title = "Dynamic strength and fragmentation of highly oriented Ti3SiC2 under multiaxial compression",
abstract = "MAX phases are distinguished by their unique kink band formation, a distinct deformation mechanism in layered materials. This study explores the influence of global grain orientation c-axis, strain rate, and stress state on the compressive response of highly oriented Ti3SiC2 through experimental methods. A Kolsky (or split-Hopkinson) bar is employed to evaluate the dynamic compressive response under uniaxial and biaxial (planar confinement) conditions under 102 s−1 strain rate. Macroscopic ultra-high-speed visualization during loading and microscopic post-mortem fractography reveal that confinement states significantly impact both macroscopic failure patterns and microscopic fracture mechanisms. Notably, biaxial loading with dynamic load edge-on to the grains and 80 MPa planar confinement along the layers resulted in the highest dynamic compressive strength observed (1636 ± 136 MPa), a 66 % increase compared to the unconfined uniaxial dynamic condition. The planar confinement appears to delay crack propagation and enhance inelastic deformation.",
keywords = "Biaxial loading, Confinement, Dynamic compression, MAX phases, Orientation dependence",
author = "Xingyuan Zhao and Maxim Sokol and Barsoum, {Michel W.} and Leslie Lamberson",
note = "Publisher Copyright: {\textcopyright} 2024 Elsevier Ltd",
year = "2025",
month = mar,
doi = "10.1016/j.jeurceramsoc.2024.116994",
language = "אנגלית",
volume = "45",
journal = "Journal of the European Ceramic Society",
issn = "0955-2219",
publisher = "Elsevier B.V.",
number = "3",
}