会议论文详细信息
38th Risø International Symposium on Materials Science
Dislocation based controlling of kinematic hardening contribution to simulate primary and secondary stages of uniaxial ratcheting
Bhattacharjee, S.^1 ; Dhar, S.^1 ; Acharyya, S.K.^1
Jadavpur University, West Bengal, Kolkata
700032, India^1
关键词: Dislocation densities;    Dislocation rearrangement;    Dislocation structures;    Experimental curves;    Kinematic hardening;    Low cycle fatigues;    Stress amplitudes;    User material subroutine;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/219/1/012012/pdf
DOI  :  10.1088/1757-899X/219/1/012012
来源: IOP
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【 摘 要 】

The primary and secondary stages of the uniaxial ratcheting curve for the C-Mn steel SA333 have been investigated. Stress controlled uniaxial ratcheting experiments were conducted with different mean stresses and stress amplitudes to obtain curves showing the evolution of ratcheting strain with number of cycles. In stage-I of the ratcheting curve, a large accumulation of ratcheting strain occurs, but at a decreasing rate. In contrast, in stage-II a smaller accumulation of ratcheting strain is found and the ratcheting rate becomes almost constant. Transmission electron microscope observations reveal that no specific dislocation structures are developed during the early stages of ratcheting. Rather, compared with the case of low cycle fatigue, it is observed that sub-cell formation is delayed in the case of ratcheting. The increase in dislocation density as a result of the ratcheting strain is obtained using the Orowan equation. The ratcheting strain is obtained from the shift of the plastic strain memory surface. The dislocation rearrangement is incorporated in a functional form of dislocation density, which is used to calibrate the parameters of a kinematic hardening law. The observations are formulated in a material model, plugged into the ABAQUS finite element (FE) platform as a user material subroutine. Finally the FE-simulated ratcheting curves are compared with the experimental curves.

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