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Featured researches published by Ruho Kondo.


Key Engineering Materials | 2014

Investigation on Intragranular Stress of Mg Including Several Twin-Bands Using Dislocation-Based Crystal Plasticity and Phase-Field Models

Ruho Kondo; Yuichi Tadano; Kazuyuki Shizawa

A coupled model based on crystal plasticity and phase field theories that express both plastic anisotropy of HCP metals and expansion/shrinkage of twin-bands is proposed in the present study. In this model, the difference of the hardening rate in each slip system is expressed by changing their dislocation mobility as a numerical parameter defined in the crystal plasticity framework. The stress calculated via crystal plasticity analysis becomes to the driving force of multi-phase filed equations that express the evolution of twin bands of several variants, which include both the growth and shrinkage. Solving this equation set, the rate of twinning/detwinning and the mirror-transformed crystal basis in the twinned/detwinned phase are obtained and then, crystal plasticity analysis is carried out again. Using the present model, a uniaxial cyclic loading simulation along [0001] direction on the specimen including two variants of twin-bands is carried out by means of finite element method (FEM). The results show that the detwinning stress decreases with increase of the pre-tensioned strain. This is caused by a residual compression stress resulting from the twin shearing that occurs in the vicinity of two twin boundaries approaching each other.


The Proceedings of the Materials and Mechanics Conference | 2014

OS0109 均質化Phase-field結晶塑性モデルを用いた多結晶Mg中の双晶組織発展挙動に関するFEM解析

Ruho Kondo; Yuichi Tadano; Kazuyuki Shizawa


The Proceedings of Conference of Kanto Branch | 2014

20104 Dislocation-based Crystal Plasticity Simulation Coupled with Phase-field Model for Grain Refinement of Mg/LPSO Alloy

Takahiro Furuya; Ruho Kondo; Kazuyuki Shizawa


The Proceedings of the Materials and Mechanics Conference | 2013

OS0412 Investigation of Intragranular Stress Due to Deformation Twinning on HCP Metals Using Dislocation-based Crystal Plasticity Model Coupling with Phase-field Method

Ruho Kondo; Yuichi Tadano; Kazuyuki Shizawa


Transactions of the Japan Society of Mechanical Engineers. A | 2012

Dislocation-based crystal plasticity modeling and simulation for HCP metals considering evolution of twin-microstructure

Ruho Kondo; Yuichi Tadano; Kazuyuki Shizawa


The Proceedings of the Materials and Mechanics Conference | 2012

OS0312 Dislocation-crystal Plasticity FEM Analysis Coupled with Twin Formation Based on Phase-field Model on Mg Single Crystal

Ruho Kondo; Yuichi Tadano; Kazuyuki Shizawa


The Proceedings of Mechanical Engineering Congress, Japan | 2012

NM-JP-8 Multiphysics modeling of deformation twinning in HCP metals based on phase-field approach

Yuichi Tadano; Ruho Kondo; Kazuyuki Shizawa


The Proceedings of the Materials and Mechanics Conference | 2011

OS2001 Three-dimensional FEM Analysis of Twin Evolution Considering Anisotropy of Surface Energy on Pure Magnesium

Ruho Kondo; Ryo Ueta; Yuichi Tadano; Kazuyuki Shizawa


The Proceedings of The Computational Mechanics Conference | 2011

715 A Three-dimensional GN Dislocation-crystal Plasticity Simulation for Evolution of Twinning in HCP Crystal

Ruho Kondo; Ryo Ueta; Yuichi Tadano; Kazuyuki Shizawa


The Proceedings of The Computational Mechanics Conference | 2010

1126 A GN Dislocation-crystal Plasticity Simulation on Ultrafine-graining of Magnesium Based on Deformation Twinning

Ryo Ueta; Ruho Kondo; Yuichi Tadano; Kazuyuki Shizawa

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