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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >A new failure criterion for materials exhibiting ratcheting during very low cycle fatigue
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A new failure criterion for materials exhibiting ratcheting during very low cycle fatigue

机译:极低周疲劳期间出现棘轮的材料的新失效准则

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摘要

Ratcheting or cyclic creep is the phenomenon of progressive accumulation of permanent deformation when a component is subjected to cyclic loads in the plastic strain range under stress controlled fatigue with non-zero mean stresses. This accumulation of plastic strain will finally lead to a shakedown, or a constant rate of ratcheting or very large ratcheting strains leading to failure of the material. This latter situation is encountered during the very low cycle fatigue (VLCF) of components when the stress levels are close to the ultimate strength and the component fails in less than 100 cycles. Large strains are accumulated leading to plastic instabilityecking and final fracture. A failure criterion based on the initiation of plastic instability has been proposed in this work, for the life prediction of materials exhibiting ratcheting in the VLCF regime. The proposed model is supported by experimental observations made from the stress controlled VLCF tests with tensile mean stresses on smooth cylindrical mild steel specimens.
机译:当零件在非零平均应力的应力控制疲劳下承受塑性应变范围内的循环载荷时,棘轮或周期性蠕变是永久变形逐渐累积的现象。塑性应变的这种累积将最终导致震动,恒定的棘轮速率或非常大的棘轮应变,从而导致材料损坏。当构件的应力水平接近极限强度并且构件在少于100次的循环中失效时,在构件的极低循环疲劳(VLCF)期间会遇到后一种情况。累积了大的应变,导致塑性不稳定/颈缩和最终断裂。在这项工作中,已经提出了基于塑性不稳定性引发的失效准则,用于预测在VLCF机制中出现棘齿的材料的寿命。所提出的模型得到了由应力控制的VLCF测试得到的实验观察的支持,该实验具有在光滑圆柱形低碳钢试样上的拉伸平均应力。

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