Author:
Neuber Nico,Sadeghilaridjani Maryam,Ghodki Nandita,Gross Oliver,Adam Bastian,Ruschel Lucas,Frey Maximilian,Muskeri Saideep,Blankenburg Malte,Gallino Isabella,Busch Ralf,Mukherjee Sundeep
Abstract
AbstractThe compositional dependence and influence of relaxation state on the deformation behavior of a Pt–Pd-based bulk metallic glasses model system was investigated, where platinum is systematically replaced by topologically equivalent palladium atoms. The hardness and modulus increased with rising Pd content as well as by annealing below the glass transition temperature. Decreasing strain-rate sensitivity and increasing serration length are observed in nano indentation with increase in Pd content as well as thermal relaxation. Micro-pillar compression for alloys with different Pt/Pd ratios validated the greater tendency for shear localization and brittle behavior of the Pd-rich alloys. Based on total scattering experiments with synchrotron X-ray radiation, a correlation between the increase in stiffer 3-atom cluster connections and reduction in strain-rate sensitivity, as a measure of ductility, with Pd content and thermal history is suggested.
Funder
Allianz Industrie Forschung
National Science Foundation
US National Science Foundation
Universität des Saarlandes
Publisher
Springer Science and Business Media LLC
Cited by
5 articles.
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