This study presents an isogeometric framework for incorporating representative volume element-based multiscale models into computational homogenization. First-order finite deformation homogenization theory is derived within the framework of the method of multiscale virtual power, and Lagrange multipliers are used to illustrate the effects of considering different kinematical constraints. Using a Lagrange multiplier approach in the numerical implementation of the discrete system naturally leads to a consolidated treatment of the commonly employed representative volume element boundary conditions. Implementation of finite deformation computational strain-driven, stress-driven, and mixed homogenization is detailed in the context of isogeometric analysis (IGA), and performance is compared to standard finite element analysis. As finite deformations are considered, a numerical multiscale stability analysis procedure is also detailed for use with IGA. Unique implementation aspects that arise when computational homogenization is performed using IGA are discussed, and the developed framework is applied to a complex curved microstructure representing an architectured material.
机构:
Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USA
Song, Wonsup
Krishnaswamy, Vikram
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Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USA
Krishnaswamy, Vikram
Pucha, Raghuram V.
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Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USA
机构:
Univ Paris Est, Lab Modelisat & Simulat Multi Echelle, MSME UMR CNRS 8208, F-77454 Marne La Vallee 2, FranceUniv Paris Est, Lab Modelisat & Simulat Multi Echelle, MSME UMR CNRS 8208, F-77454 Marne La Vallee 2, France
Clement, A.
Soize, C.
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Univ Paris Est, Lab Modelisat & Simulat Multi Echelle, MSME UMR CNRS 8208, F-77454 Marne La Vallee 2, FranceUniv Paris Est, Lab Modelisat & Simulat Multi Echelle, MSME UMR CNRS 8208, F-77454 Marne La Vallee 2, France
Soize, C.
Yvonnet, J.
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Univ Paris Est, Lab Modelisat & Simulat Multi Echelle, MSME UMR CNRS 8208, F-77454 Marne La Vallee 2, FranceUniv Paris Est, Lab Modelisat & Simulat Multi Echelle, MSME UMR CNRS 8208, F-77454 Marne La Vallee 2, France
机构:
CIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Tech Univ Catalonia Barcelona Tech, ESEIAAT, Campus Terrassa UPC,C Colom 11, Terrassa 08222, SpainCIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Roca, D.
Lloberas-Valls, O.
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CIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Tech Univ Catalonia Barcelona Tech, ETSECCPB, Campus Nord UPC,Modul C 1,C Jordi Girona 1-3, Barcelona 08034, SpainCIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Lloberas-Valls, O.
Cante, J.
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CIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Tech Univ Catalonia Barcelona Tech, ESEIAAT, Campus Terrassa UPC,C Colom 11, Terrassa 08222, SpainCIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Cante, J.
Oliver, J.
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CIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain
Tech Univ Catalonia Barcelona Tech, ETSECCPB, Campus Nord UPC,Modul C 1,C Jordi Girona 1-3, Barcelona 08034, SpainCIMNE, Campus Nord UPC,Modul C 1-101,C Jordi Girona 1-3, Barcelona 08034, Spain