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19篇 您的检索式:作者名="Vadean"
    题名 作者 年代 出处 被引量
1Bolted Joints for Very Large Bearings-Numerical Model Development 显示文摘Vadean A Leray D Guillot J 2006Finite Elements in Analysis and Design2006,,42:1
2Optimal design of interference fit assemblies subjected to fatigue loads显示文摘Guillaume Biron Aurelian Vadean Lucian Tudose 2013Structural and Multidisciplinary Optimization2013,,47:1
3Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations显示文摘Lanoue F Vadean A Sanschagrin B 2009Simulation Modelling Practice and Theory2009,,17:1
4Fretting fatigue strength reduction factor for interference fits显示文摘Lanoue F Vadean A Sanschagrin B 2011Simulation Modelling Practice and Theory2011,,19:1
5Optimal design of interference fit assemblies subjected to fatigue loads 显示文摘Biron G Vadean A Tudose L 2013Structural and Multidisciplinary Optimization2013,,3:1
6Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations 显示文摘Lanoue F Vadean A Sansehagrin B 2009Simulation Modeling Practice and Theory2009,17,10:1
7Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations显示文摘Frederic Lanoue Aurelian Vadean Bernard Sanschagrin 2009Simulation Modelling Practice and Theory2009,,10:1
8Finite ele- ment analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations 显示文摘FredericLanoue Aurelian Vadean Bernard Sansehagrin 2009Simulation Model- ling Practice and Theory2009,17,:1
9Finite element analysis and contact modeling considerations of interference fits for fretting fatigue strength calculations显示文摘Frederic Lanoue Aurelian Vadean 2009Simulation Modeling Practice and Theory2009,17,:1
10Finite element analysis and contact modelling considerations of nterference fits for fretting fatigue strength calculations显示文摘Frederic Lanoue Aurelian Vadean Bernard Sanschagrin 2009Simulation Modelling Practice and Theory2009,17,2009:1
11Finite element anal- ysis and contact modelling consideratiuns of interference fits tot frelling fatigue strength caleulalions 显示文摘LANOUE F VADEAN A SANSCltAGRIN B 2009Simulation Modelling Praclice and Theory2009,17,:1
12Finite Element Analysis and Contact Modelling Considerations of Interference Fits for Fretting Fatigue Strength Calculations 显示文摘Frederic Lanoue Aurelian Vadean Bernard Sanschagrin 2009Simulation Modelling Practice and Theory2009,17,:1
13Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations显示文摘Frederic Lanoue Aurelian Vadean Bernard Sanschagrin 2009Simulation Modelling Practice and Theory2009,,10:1
14Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations 显示文摘Lanoue F Vadean A Sanschagrin B 2009Simulation Modelling Practice and Theory2009,17,10:1
15Bolted joints for very large earings-numerical moedl development显示文摘VADEAN A IERAY D GUILLOT J 2006Finite Elements in Analysis and Design2006,42,4:1
16Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations 显示文摘Lanoue F Vadean A Sanschagrin B 2009Simulation Modelling Practice and Theory2009,17,:1
17Finite element analysis and contact modelling considerations of interference fits for fret- ting fatigue strength calculations 显示文摘Lanoue F Vadean A Sanschagrin B 2009Simulation Modelling Practice and Theory2009,17,:1
18Bolted Joints for Very Large Diameter Bearings - numerical Model Development显示文摘Guillot J Vadean A Leray D 2005Finite Elements in Analysis and Design2005,,8:1
19A unified plasticity methodology for rate-and temperature-sensitive alloys exhibiting a non-linear kinematic hardening behavior显示文摘In this paper, a novel unified plasticity methodology is proposed to allow the coupling of rate-and temperature-sensitivity of engineering alloys as well as the non-linear kinematic hardening behavior often observed during cyclic loading. The proposed methodology is general in the sense that an arbitrary constitutive model may be chosen for the viscoplastic part, as well as the cyclic part. We adapt our model with a physically-motivated viscoplasticity flow rule and a nonlinear kinematic hardening model. In contrast with other unified plasticity models, the simplified theory involves few material parameters that can be readily calibrated from standard mechanical tests. The capabilities of the proposed theory are demonstrated for a hot rolled annealed 304 L stainless steel supplied by Vimetal Peckover. The model is tested with stress–strain curves obtained from standard tensile and cyclic uniaxial tests at various strain amplitudes and strain-rates, and good accuracy of the response is obtained for strains up to 15%, within a temperature range of 293–673 K. We note that the cyclic plasticity model in our adapted theory can be readily enhanced with ratchetting, mean stress relaxation, strain amplitude history, Masing effects or other complex capabilities.Jacques Luk-Cyr Daniel Paquet Jacques Lanteigne Henri Champliaud Aurelian Vadean 2017Acta Mechanica Solida Sinica2017,30,1:0
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