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Estimation of Fracture Toughness by Testing Notched Fracture Specimens and Applying the Theory of Critical Distances

机译:通过测试缺口试样并应用临界距离理论估算断裂韧性

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This paper applies a methodology that allows the fracture toughness of a given material to be estimated by testing notched fracture toughness specimens and applying the Theory of Critical Distances, which requires the elastic stress field at the notch tip to be determined by finite elements simulation. This methodology, which is not intended to substitute any standardised fracture characterisation procedure, constitutes an alternative in those situations where pre-cracking processes may be too time-consuming, too expensive or, simply, cannot be performed. It comprises testing two notched specimens with different notch radii, defining the corresponding stress fields at fracture by using finite elements analysis, and applying the Theory of Critical Distances in order to calibrate the material’s critical distance and to apply the corresponding apparent fracture toughness formulation. The methodology has been applied to two different materials, PMMA and Al7075-T651, and the results have proven that, as long as the Theory of Critical Distances has been applied within its validity range, the fracture toughness estimations are highly accurate.
机译:本文采用了一种方法,该方法允许通过测试带缺口的断裂韧性样品并应用临界距离理论来估算给定材料的断裂韧性,这需要通过有限元模拟确定缺口尖端的弹性应力场。这种方法无意替代任何标准化的裂缝特征化程序,但在开裂过程可能过于耗时,过于昂贵或无法简单执行的情况下,是一种替代方案。它包括测试两个具有不同缺口半径的缺口试样,通过有限元分析定义相应的断裂应力场,并应用临界距离理论以校准材料的临界距离并应用相应的表观断裂韧性公式。该方法已应用于两种不同的材料,PMMA和Al7075-T651,结果证明,只要在其有效范围内应用了临界距离理论,断裂韧性的估算就非常准确。

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