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Dive into the research topics where R. Scott Hyde is active.

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Featured researches published by R. Scott Hyde.


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2018

In-situ neutron diffraction and crystal plasticity finite element modeling to study the kinematic stability of retained austenite in bearing steels

Rohit Voothaluru; Vikram Bedekar; Qingge Xie; Alexandru Dan Stoica; R. Scott Hyde; Ke An

Abstract This work integrates in-situ neutron diffraction and crystal plasticity finite element modeling to study the kinematic stability of retained austenite in high carbon bearing steels. The presence of a kinematically metastable retained austenite in bearing steels can significantly affect the macro-mechanical and micro-mechanical material response. Mechanical characterization of metastable austenite is a critical component in accurately capturing the micro-mechanical behavior under typical application loads. Traditional mechanical characterization techniques are unable to discretely quantify the micro-mechanical response of the austenite, and as a result, the computational predictions rely heavily on trial and error or qualitative descriptions of the austenite phase. In order to overcome this, in the present work, we use in-situ neutron diffraction of a uniaxial tension test of an A485 Grade 1 bearing steel specimen. The mechanical response determined from the neutron diffraction analysis was incorporated into a hybrid crystal plasticity finite element model that accounts for the martensites crystal plasticity and the stress-assisted transformation from austenite to martensite in bearing steels. The modeling response was used to estimate the single crystal elastic constants of the austenite and martensite phases. The results show that using in-situ neutron diffraction, coupled with a crystal plasticity model, can successfully predict both the micro-mechanical and macro-mechanical responses of bearing steels while accounting for the martensitic transformation of the retained austenite.


Cirp Annals-manufacturing Technology | 2015

Transmission Kikuchi Diffraction study of texture and orientation development in nanostructured hard turning layers

Vikram Bedekar; Rajiv Shivpuri; Amir Avishai; R. Scott Hyde


Scripta Materialia | 2017

White etching matter promoted by intergranular embrittlement

Mohanchand Paladugu; R. Scott Hyde


Cirp Annals-manufacturing Technology | 2016

Atomic migration of carbon in hard turned layers of carburized bearing steel

Vikram Bedekar; Jonathan D. Poplawsky; Wei Guo; Rajiv Shivpuri; R. Scott Hyde


Wear | 2017

Microstructure deformation and white etching matter formation along cracks

Mohanchand Paladugu; R. Scott Hyde


Wear | 2018

Effect of lubricants on bearing damage in rolling-sliding conditions: Evolution of white etching cracks

Mohanchand Paladugu; Douglas R. Lucas; R. Scott Hyde


Wear | 2018

Influence of microstructure on retained austenite and residual stress changes under rolling contact fatigue in mixed lubrication conditions

Mohanchand Paladugu; R. Scott Hyde


Procedia Engineering | 2017

In-situ Neutron Diffraction Analysis of Crystal Plasticity of Retained Austenite in Bearing Steel

Vikram Bedekar; Rohit Voothaluru; Qingge Xie; Alexandru Dan Stoica; R. Scott Hyde; Ke An


arXiv: Materials Science | 2018

Investigating the difference in mechanical stability of retained austenite in bainitic and martensitic high-carbon bearing steels using in situ neutron diffraction and crystal plasticity modeling

Rohit Voothaluru; Vikram Bedekar; Dunji Yu; Qingge Xie; Ke An; R. Scott Hyde


Wear | 2018

Corrigendum to “Microstructure deformation and White etching matter formation along cracks” [Wear 390–391 (2017) 367–375]

Mohanchand Paladugu; R. Scott Hyde

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Ke An

Oak Ridge National Laboratory

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Qingge Xie

Oak Ridge National Laboratory

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Alexandru Dan Stoica

Oak Ridge National Laboratory

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Amir Avishai

Case Western Reserve University

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