On the strain rate sensitivity of a TRIP assisted high entropy alloy

Title On the strain rate sensitivity of a TRIP assisted high entropy alloy
Author Radi, Amin, Duygulu, O., Işıl, Canay, Yapıcı, Güney Güven
Publication Date: 2023-02-15
Publication Place - Elsevier
Subject Deformation and fracture, High entropy alloy, Metals and alloys, Strain Hardening, Strain rate, TRIP
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 0167-577X
Record ID 61c7957d-2f2f-4957-8f10-49dca5d3399f
Library Location Mechanical Engineering
Date 2023-02-15
Notes BAGEP Award, Bilim Akademisi
Sample Text In the present work, the strain rate sensitivity is investigated in a novel high entropy alloy with transformation-induced plasticity (TRIP) effect. Herein, it is aimed to reflect the effect of phase constitution on the mechanical behavior under different strain rates. It is shown that TRIP mechanism is operational in the annealed microstructures at all examined rates. It is also demonstrated that strength and strain hardening rate levels show dependency to strain rate with varying trends based on the microstructural condition.
DOI 10.1016/j.matlet.2022.133610
Cilt 333
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On the strain rate sensitivity of a TRIP assisted high entropy alloy

Author Radi, Amin, Duygulu, O., Işıl, Canay, Yapıcı, Güney Güven
Publication Date 2023-02-15
Publication Place - Elsevier
Subject Deformation and fracture, High entropy alloy, Metals and alloys, Strain Hardening, Strain rate, TRIP
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 0167-577X
Record ID 61c7957d-2f2f-4957-8f10-49dca5d3399f
Library Location Mechanical Engineering
Date 2023-02-15
Notes BAGEP Award, Bilim Akademisi
Sample Text In the present work, the strain rate sensitivity is investigated in a novel high entropy alloy with transformation-induced plasticity (TRIP) effect. Herein, it is aimed to reflect the effect of phase constitution on the mechanical behavior under different strain rates. It is shown that TRIP mechanism is operational in the annealed microstructures at all examined rates. It is also demonstrated that strength and strain hardening rate levels show dependency to strain rate with varying trends based on the microstructural condition.
DOI 10.1016/j.matlet.2022.133610
Cilt 333
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