3차원 미세조직에 기반한 잔류응력 하의 이상 조직강의 소성변형률비 예측

논문상세정보
' 3차원 미세조직에 기반한 잔류응력 하의 이상 조직강의 소성변형률비 예측' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • dual-phasesteel
  • finiteelementsimulation
  • meso-scale
  • r-value
  • representative volume element
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
33 0

0.0%

' 3차원 미세조직에 기반한 잔류응력 하의 이상 조직강의 소성변형률비 예측' 의 참고문헌

  • Strain-path Change Induced Transients in Flow Stress, Work Hardening and R-values in Aluminum
    T. Manik Int. J. Plast. 69 : 1 ~ 20 [2015]
  • Strain Localization and Damage in Dual Phase Steels Investigated by Coupled In-situ Deformation Experiments and Crystal Plasticity Simulations
    C. C. Tasan Int. J. Plast. 63 : 198 ~ 210 [2014]
  • Prediction of Mechanical Properties of Multi-Phase Steels Based on Stress-strain Curves
    Y. Tomota ISIJ Int 32 (3) : 343 ~ 349 [1992]
  • New Criteria for Predicting the Press Performance of Deep Drawing Sheets
    W. T. Lankford Trans. ASM 42 : 1197 ~ 1205 [1950]
  • Modelling of Damage and Failure in Multiphase High Strength DP and TRIP Steels
    V. Uthaisangsuk Eng. Fract. Mech. 78 (3) : 469 ~ 486 [2011]
  • Microstructural Modeling of Dual Phase Steel using a Higher-order Gradient Plasticity-damage Model
    R. K. A. Al-Rub Int. J. Solids Struct. 58 : 178 ~ 189 [2015]
  • Meso-scopic Analysis of Strain Path Change Effect on the Hardening Behavior of Dual-phase Steel
    J. Ha Steel Research Int. 85 (6) : 1047 ~ 1057 [2014]
  • Hole-expansion Formability of Dual-Phase Steels using Representative Volume Element Approach with Boundary-smoothing Technique
    J. H. Kim Mater. Sci. Eng., A 527 (27) : 7353 ~ 7363 [2010]
  • Effect of Material Inhomogeneity on the Cyclic Plastic Deformation Behavior at the Microstructural Level: Micromechanics-based Modeling of Dual-phase Steel
    S. K. Paul Modell. Simul. Mater. Sci. Eng 21 (5) : 55001 ~ 55026 [2013]
  • Analysis of Texture and R value Variations in Asymmetric Rolling of IF Steel
    L. S. toch J. Mater. Process. Technol 212 (2) : 509 ~ 515 [2012]
  • A Method to Quantitatively Upscale the Damage Initiation of Dual-phase Steels under Various Stress States from Microscale to Macroscale
    J. Lian Comput. Mater. Sci. 94 : 245 ~ 257 [2014]