Micromechanical simulation of interfacial fracture behavior using cohesive zone modeling for TRIP steel composite with ceramic particles

被引:0
作者
Chiu, ChenChun [1 ]
Tseng, ShaoChen [1 ]
Qayyum, Faisal [2 ]
Hama, Takayuki [3 ]
Prahl, Ulrich [2 ]
Chao, ChingKong [1 ]
机构
[1] Natl Taiwan Univ Sci & Technol, Dept Mech Engn, Taipei, Taiwan
[2] Tech Univ Bergakad Freiberg, Inst Metallformung, Freiberg, Germany
[3] Kyoto Univ, Grad Sch Energy Sci, Kyoto, Japan
关键词
metal matrix composites (MMCs); delamination; cohesive zone model; crack propagation; DUAL-PHASE; DEFORMATION-BEHAVIOR; DUCTILE FRACTURE; MICROSTRUCTURE; TRANSFORMATION; MECHANISMS; STRENGTH; DAMAGE; SHAPE; SIZE;
D O I
10.1093/jom/ufae043
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this work, ceramic particle and metal matrix interfacial delamination in transformation-induced plasticity steel composite reinforced with magnesium partially stabilized zirconia particles is investigated using a parametric modeling approach. The global behavior of the composite is modeled using elastic and Johnson-Cook plasticity models for the ceramic particles and the austenite matrix. Interfacial degradation is implemented through a cohesive zone model with a traction-separation law. Both perfect and damaged models are considered in the global stress-strain curve analysis. In the damaged model, the plastic region is characterized by softening and hardening stages, corresponding to unstable and stable crack propagation, respectively. To comprehensively identify the interfacial evolution, parameters such as normal contact strength, normal separation and stiffness degradation are evaluated along the particle/matrix interface. From a statistical perspective, the mechanical behavior of the system is analyzed through the kernel distribution plots for both the particles and the matrix. As the strain level increases, right- and left-skewed distributions are observed in the particles and matrix, respectively, particularly under high-strain conditions. Consequently, in the plastic hardening region, the median value exceeds the mean value, indicating that relying solely on the average stress value results in an underestimation during significant delamination.
引用
收藏
页码:521 / 536
页数:16
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