13–17 Sept 2021 Virtual Conference
Virtual
Europe/Vienna timezone
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Data Driven Analysis of the Brittle-to-Ductile Transition in Metallic Glasses (Highlight)

16 Sept 2021, 09:50
20m
Room 16

Room 16

Highlight Presentation H2. Inorganic and critical raw materials for the circular, low-carbon, and digital economy (new- H3 & H5 & H6 & H7) H2_Inorganic and critical raw materials for the circular, low-carbon, and digital economy

Speaker

Jürgen Eckert (Erich Schmid Institute of Materials Science)

Description

The influence of cooling rate, temperature, and strain rate on tensile deformation of metallic glasses is investigated using data driven analysis via molecular dynamics simulations. Increasing quenching rate, temperature or strain rate affect activation of shear transformation zones (STZs) and shear banding, causing a brittle-to-ductile transition. A quantitative interpretation for enhanced ductility is obtained by saddle point sampling on the potential energy surface. Although the glassy structure does not significantly change with temperature the kinetic energy of the atoms increases dramatically, thereby increasing the probability of thermal STZ activation. A large number of STZs is also activated by high strain rate deformation via storing large amounts of elastic energy in the glass. The high density of STZ events and complex percolation processes impede strain localization and formation of critical shear bands. These results provide an atomistic understanding for strain localization mechanisms in metallic glasses and shed light on the brittle-to-ductile transition.

Speaker Country Austria

Authors

Jürgen Eckert (Erich Schmid Institute of Materials Science) Xudong Yuan (Erich Schmid Institute of Materials Science) Daniel Sopu (Erich Schmid Institute of Materials Science) Kaikai Song (Shandong University (Weihai)) Min-Ha Lee (KITECH North America)

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