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New fatigue life calculation method for quenched and tempered steel SAE 4140

机译:调质钢SAE 4140疲劳寿命计算的新方法

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摘要

In stress-controlled constant amplitude and service loading tests at ambient temperature mechanical stress-strain hysteresis, temperature and electrical resistance measurements were performed to characterize the fatigue behavior of the quenched and tempered steel SAE 4140. The applied measurement methods use deformation-induced changes of the microstructure in the bulk material and represent the actual fatigue state. A new test procedure combines any kind of load spectra with periodically inserted constant amplitude sequences to measure the plastic strain amplitude, the change in temperature and the change in electrical resistance at the same time. The average values of the measuring sequences are plotted as function of the number of cycles in cyclic 'deformation' curves and represent the summation of microstructural changes caused by service loading. On the basis of generalized Morrow and Basquin equations the physically based fatigue life calculation method "PHYBAL" was developed for constant amplitude and service loading. With only three fatigue tests, Woehler (S-N) and fatigue life curves can be calculated in very good agreement with experimental ones determined in a conventional manner. The application of "PHYBAL" provides an enormous saving of experimental time and costs.
机译:在环境温度下的应力控制恒定振幅和服务负载测试中,进行了机械应力-应变滞后测试,并进行了温度和电阻测量以表征调质钢SAE 4140的疲劳行为。散装材料的微观结构,代表实际的疲劳状态。一种新的测试程序将任何种类的载荷谱与定期插入的恒定振幅序列结合在一起,以同时测量塑性应变振幅,温度变化和电阻变化。将测量序列的平均值绘制为循环“变形”曲线中循环次数的函数,并表示由服务负荷引起的微观结构变化的总和。基于广义的Morrow和Basquin方程,开发了基于物理的疲劳寿命计算方法“ PHYBAL”,用于恒定振幅和服务载荷。只需进行三个疲劳测试,就可以计算出Woehler(S-N)和疲劳寿命曲线,这与以常规方式确定的实验曲线非常吻合。 “ PHYBAL”的应用大大节省了实验时间和成本。

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