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A Novel Fatigue Evaluation Approach with Direct Steady Cycle Analysis (DSCA) Based on the Linear Matching Method (LMM)

机译:一种基于线性匹配方法(LMM)直接稳态分析(DSCA)的新型疲劳评价方法

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The traditional Low Cycle Fatigue (LCF) evaluation method is based on elastic analysis with Neuber's rule which is usually considered to be over conservative. However, the effective strain range at the steady cycle should be calculated by detailed cycle-by-cycle analysis for the alternative elastic-plastic method in ASME VIII-2, which is obviously time-consuming. A Direct Steady Cycle Analysis (DSCA) method within the Linear Matching Method (LMM) framework is proposed to assess the fatigue life accurately and efficiently for components with arbitrary geometries and cyclic loads. Temperature-dependent stress-strain relationships considering the strain hardening described by the Ramberg-Osgood (RO) formula are discussed and compared with those results obtained by the Elastic-Perfectly Plastic (EPP) model. Additionally, a Reversed Plasticity Domain Method (RPDM) based on the shakedown and ratchet limit analysis method and the DSCA approach within the LMM framework (LMM DSCA) is recommended to design cyclic load levels of LCF experiments with predefined fatigue life ranges.
机译:传统的低循环疲劳(LCF)评价方法是基于与Neuber规则的弹性分析,这通常被认为是保守的。然而,稳定循环的有效应变范围应通过在ASME VIII-2中的替代弹性塑料方法进行详细的循环循环分析来计算,这显然是耗时的。提出了线性匹配方法(LMM)框架内的直接稳态循环分析(DSCA)方法,以准确,高效地评估具有任意几何形状和循环负载的部件的疲劳寿命。考虑Ramberg-Osgood(RO)公式描述的温度依赖应力 - 应变关系,并与由弹性完美塑料(EPP)模型获得的结果进行比较。另外,基于Shakedown和棘轮限制分析方法的反向塑性域法(RPDM)和LMM框架内的DSCA方法(LMM DSCA),以设计具有预定疲劳寿命范围的LCF实验的循环负载水平。

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