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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Fatigue assessment and fatigue life calculation of quenched and tempered SAE 4140 steel based on stress-strain hysteresis, temperature and electrical resistance measurements
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Fatigue assessment and fatigue life calculation of quenched and tempered SAE 4140 steel based on stress-strain hysteresis, temperature and electrical resistance measurements

机译:基于应力-应变滞后,温度和电阻测量的调质SAE 4140钢的疲劳评估和疲劳寿命计算

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摘要

In this paper, mechanical stress-strain-hysteresis, temperature and electrical resistance measurements are performed for the detailed characterization of the fatigue behaviour of quenched and tempered SAE 4140 steel used for many applications in the automotive industry. Stress-controlled load increase and constant amplitude tests (CATs) were carried out at ambient temperature on servo-hydraulic testing systems. The applied measurement methods depend on deformation-induced changes of the microstructure in the bulk material and represent the actual fatigue state. The plastic strain amplitude, the change in temperature and the change in electrical resistance can be equally used for an assessment of baseline fatigue properties in generalized cyclic deformation curves as well as in generalized Morrow and Coffin-Manson curves. On the basis of comprehensive experimental fatigue data, the physically based fatigue life calculation method 'PHYBAL' based on the generalized Basquin equation was developed. S-N (Wbehler) curves calculated with 'PHYBAL' using data from only three fatigue tests agree very well with the conventionally determined ones.
机译:在本文中,进行了机械应力-应变滞后,温度和电阻测量,以详细表征用于汽车行业许多应用的调质SAE 4140钢的疲劳行为。在环境温度下,在伺服液压测试系统上进行了应力控制的载荷增加和恒定振幅测试(CAT)。所应用的测量方法取决于变形引起的散装材料中微观结构的变化,并代表实际的疲劳状态。塑性应变幅度,温度变化和电阻变化可以等效地用于评估广义循环变形曲线以及广义Morrow和Coffin-Manson曲线中的基线疲劳特性。在综合实验疲劳数据的基础上,开发了基于广义Basquin方程的基于物理的疲劳寿命计算方法“ PHYBAL”。仅使用三个疲劳测试的数据通过“ PHYBAL”计算的S-N(Wbehler)曲线与常规确定的曲线非常吻合。

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