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Fatigue Design of Ferritic-Pearlitic Nodular Cast Iron Components with Surface Discontinuities

机译:具有表面不连续性的铁素体 - 珠光体结节铸铁组分的疲劳设计

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摘要

Surface and subsurface discontinuities are one of the most important factors affecting the fatigue life of structural cast components. Their location, shape and size vary from component to component, most of them are completely harmless, but one critical defect can lead to in-service failure. Allowable surface discontinuity size finite element (FE) results can be a practical engineering tool for casting design, process planning, and the quality inspection process. Different methods based on the continuum and fracture mechanics applicable on the multiaxial high-cycle fatigue (HCF) and fatigue limit prediction for components with surface discontinuities are compared with experimental results on ISO1083/JS/500-7 nodular cast iron (NCI). Results also confirm, that the fatigue properties of the analysed material in standards truly represent low-end material strength. A design methodology is presented based on the Defect Stress Gradient approach for the display of an allowable surface discontinuity size FE-result for complex components under proportional loading conditions in HCF.
机译:表面和地下不连续性是影响结构铸造部件疲劳寿命的最重要因素之一。它们的位置,形状和尺寸因组件的组件而异,其中大多数是完全无害的,但一个关键缺陷可能导致在役失败。允许的表面不连续尺寸有限元(FE)结果可以是用于铸造设计,工艺规划和质量检验过程的实用工程工具。将不同的方法基于连续箱和断裂力学,适用于多轴高循环疲劳(HCF)和具有表面不连续性的组分的疲劳极限预测,与ISO1083 / JS / 500-7结节铸铁(NCI)的实验结果进行比较。结果还确认,标准中分析材料的疲劳性能真正代表低端材料强度。基于缺陷应力梯度方法提出了一种设计方法,用于在HCF中比例负载条件下的复杂组分显示允许的表面不连续尺寸Fe-结果的缺陷应力梯度方法。

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