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首页> 外文期刊>MATEC Web of Conferences >Evaluation of Estimation Methods for Shear Fatigue Properties and Correlations with Uniaxial Fatigue Properties for Steels and Titanium Alloys
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Evaluation of Estimation Methods for Shear Fatigue Properties and Correlations with Uniaxial Fatigue Properties for Steels and Titanium Alloys

机译:钢和钛合金的剪切疲劳性能估算方法及其与单轴疲劳性能的相关性

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The goal of this study was to evaluate the accuracy of different methods in correlating uniaxial fatigue properties to shear fatigue properties, as well as finding a reliable estimation method which is able to predict the shear fatigue behavior of steels and titanium alloys from their monotonic properties. In order to do so, axial monotonic as well as axial and torsion fatigue tests were performed on two types of steel and a Ti-6Al-4V alloy. The results of these tests along with test results of 23 types of carbon steel, Inconel 718, and three types of titanium alloys commonly used in the industry were analyzed. It was found that von Mises and maximum principal strain criteria were able to effectively correlate uniaxial fatigue properties to shear fatigue properties for ductile and brittle behaving materials, respectively. Also, it was observed that for steels and Inconel 718 obtaining shear fatigue properties from uniaxial fatigue properties which are in turn calculated from Roessle-Fatemi estimation method resulted in reasonable estimations when compared to experimentally obtained uniaxial fatigue properties. Furthermore, a modification was made to the Roessle-Fatemi hardness method in order to adjust it to fatigue behavior of titanium alloys. The modified method, which was derived from uniaxial fatigue properties of titanium alloys with Brinell hardness between 240 and 353 proved to be accurate in predicting the shear fatigue behaviors.
机译:这项研究的目的是评估将单轴疲劳特性与剪切疲劳特性相关联的不同方法的准确性,并找到一种可靠的估算方法,该方法能够根据钢和钛合金的单调特性来预测其剪切疲劳行为。为此,对两种类型的钢和Ti-6Al-4V合金进行了轴向单调以及轴向和扭转疲劳测试。分析了这些测试的结果以及行业中常用的23种碳素钢,Inconel 718和三种钛合金的测试结果。发现冯·米塞斯(von Mises)和最大主应变准则能够分别有效地将韧性和脆性材料的单轴疲劳特性与剪切疲劳特性相关联。此外,可以观察到,对于钢和Inconel 718,从单轴疲劳特性中获得剪切疲劳特性,然后再通过Roessle-Fatemi估算方法计算得出,与实验获得的单轴疲劳特性相比,可以得出合理的估算值。此外,对Roessle-Fatemi硬度方法进行了修改,以使其适应钛合金的疲劳性能。这种改进的方法是从布氏硬度在240至353之间的钛合金的单轴疲劳特性得出的,它被证明可以准确地预测剪切疲劳行为。

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