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FE Prediction and Extrapolation of Multiaxial Ratcheting for R7T Steel

机译:用于R7T钢的多轴棘轮FE预测和外推

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Wear of materials in rail/wheel industry is closely related tp the cyclic creep. This contribution presents main results of experimental testing on R7T steel. The cyclic creep is investigated under non-proportional loading conditions simulating a line rolling contact case. McDowell extrapolation was successfully applied to the calculation of twist. Cyclic material model MAKOC and MAKOC with memory surface were used for cyclic creep prediction. The plasticity model is based on AbdelKarim-Ohno kinematic hardening and Calloch isotropic hardening rules. Second material model was extended with Jiang-Sehitoglu memory surface, which is introduced in stress space. Material models were successfully used for predicting accumulation of shear strain.
机译:轨道/车轮工业中材料的磨损与循环蠕变密切相关。该贡献提出了R7T钢对实验检测的主要结果。在非比例装载条件下研究循环蠕变,模拟线滚动触头壳体。 McDowell推断成功地应用于扭曲的计算。循环材料模型Makoc和Makoc用于内存表面用于循环蠕变预测。可塑性模型基于Abdelkarim-Ohno运动硬化和Calloch各向同性硬化规则。第二种材料模型与江塞希港记忆面延伸,江切尔格勒省内存表面延伸,该表面在应力空间中引入。材料模型已成功用于预测剪切应变的累积。

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