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首页> 外文期刊>Engineering Fracture Mechanics >The Theory of Critical Distances as an alternative experimental strategy for the determination of K_(Ic) and ΔK_(th)
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The Theory of Critical Distances as an alternative experimental strategy for the determination of K_(Ic) and ΔK_(th)

机译:临界距离理论作为确定K_(Ic)和ΔK_(th)的替代实验策略

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摘要

The present technical note is concerned with the use of the Theory of Critical Distances, applied in the form of the Point Method, to estimate the range of the threshold value of the stress intensity factor, ΔK_(th), as well as the plane strain fracture toughness, K_(Ic), of con-ventional engineering materials. In more detail, it is shown that ΔK_(th) can efficiently be evaluated by measuring two fatigue limits: the plain fatigue limit and a second fatigue limit generated by testing samples containing a stress concentration feature such as a notch. The K_(Ic), on the other hand, can be accurately estimated by using experimental results obtained by testing samples containing notches of two different sharpnesses. The accuracy and reliability of the proposed experimental methodology was checked by using a large amount of experimental results taken from the literature. Such a systematic valida-tion exercise allowed us to fully confirm that the Theory of Critical Distances is not only an accurate static and fatigue assessment technique, but it can also be considered as an effi-cient experimental strategy suitable for estimating the classical Linear Elastic Fracture Mechanics material properties.
机译:本技术说明涉及以点方法的形式应用的临界距离理论来估计应力强度因子ΔK_(th)的阈值范围以及平面应变传统工程材料的断裂韧性K_(Ic)。更详细地,示出了可以通过测量两个疲劳极限来有效地评估ΔK_(th):普通疲劳极限和通过测试包含应力集中特征(例如缺口)的样品而产生的第二疲劳极限。另一方面,可以通过使用通过测试包含两个不同锐度的凹口的样品而获得的实验结果来准确地估计K_(Ic)。通过使用大量来自文献的实验结果来检验所提出实验方法的准确性和可靠性。这种系统的验证练习使我们能够充分确认,“临界距离理论”不仅是一种精确的静力和疲劳评估技术,而且还可以被认为是一种适合估算经典线性弹性断裂的有效实验策略。力学材料特性。

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