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Bithermal Low-Cycle Fatigue Evaluation of Automotive Exhaust System Alloy SS409

机译:汽车排气系统合金SS409的双温低循环疲劳评估

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摘要

This investigation provides, for the first time, cyclic strainrange-controlled, thermomechanical fatigue results for the ferritic stainless steel alloy SS409. The alloy has seen extensive application for automotive exhaust system components. The data were generated to calibrate the Total Strain Version of the Strainrange Partitioning (TS-SRP) method for eventual application to the design and durability assessment of automotive exhaust systems. The thermomechanical cyclic lifetime and cyclic stress-strain constitutive behavior for alloy SS409 were measured using bithermal tests cycling between isothermal extremes of 400 and 800 C. Lives ranged up to 10,000 cycles to failure with hold-times of 0.33 to 2.0 minutes. The bithermal fatigue behavior is compared to isothermal, strain-controlled fatigue behavior at both 400 and 800 C. Thermomechanical cycling was found to have a profound detrimental influence on the fatigue failure resistance of SS409 compared to isothermal cycling. Supplementary bithermal cyclic stress-strain constitutive tests with hold-times ranging from 40 seconds up to 1.5 hours were conducted to calibrate the TS-SRP equation for extrapolation to longer lifetime predictions. Observed thermomechanical (bithermal) fatigue lives correlated well with lives calculated using the calibrated TS-SRP equations: 70% of the bithermal fatigue data fall within a factor of 1.2 of calculated life; 85% within a factor of 1.4; and 100% within a factor of 1.8.
机译:该研究首次为铁素体不锈钢合金SS409提供了循环应变范围控制的热机械疲劳结果。该合金已广泛应用于汽车排气系统部件。生成数据以校准应变范围划分(TS-SRP)方法的总应变版本,最终应用于汽车排气系统的设计和耐久性评估。 SS409合金的热机械循环寿命和循环应力应变本构行为是通过在400和800 C等温极限之间循环的双热测试进行测量的。寿命长达10,000个循环直至失效,保持时间为0.33至2.0分钟。将双热疲劳行为与在400和800 C下等温,应变控制的疲劳行为进行了比较。与等温循环相比,发现热机械循环对SS409的抗疲劳破坏性具有深远的不利影响。进行了持续时间从40秒到1.5小时不等的补充双热循环应力应变本构试验,以校准TS-SRP方程以外推至更长的寿命预测。观察到的热机械(双热)疲劳寿命与使用校准的TS-SRP方程计算的寿命密切相关:70%的双热疲劳数据属于计算寿命的1.2倍; 85%的系数为1.4;和100%的1.8倍。

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