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Fracture Behaviour of 2195-T8 Aluminium Alloy Plates

机译:2195-T8铝合金板的断裂行为

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In this paper, the determination of the fracture toughness of a thin Al-Cu-Li 2195-T8 alloy plate faces to the problems of insufficient thickness constraint and pop-ins coupled with local unstable crack growth. Since crack initiation occurs by crack tip blunting followed by ductile tearing, J_(Ic) is an advisable alternative to K_(Ic). The microstructural interpretation of J_(Ic) values indicates that they depend mainly on the inclusion distribution of the alloy, and that the local interparticle spacing along inclusion rows aligned in the rolling direction is the initiation toughness controlling parameter, irrespective of the crack orientation plane. On the other hand, crack growth toughness, expressed by the tearing modulus T, shows a crack orientation dependence, because the interparticle spacing along inclusion rows determines the T values in TL samples, whereas the spacing between inclusion rows determines the T values in LT samples.
机译:本文在薄的Al-Cu-Li 2195-T8合金板的裂缝韧性的测定,厚度约束和弹出式耦合与局部不稳定裂缝的问题的问题。由于裂缝启动通过裂纹尖端钻孔,然后进行延展性撕裂,因此J_(IC)是K_(IC)的可取替代方案。 J_(IC)值的微观结构解释表明它们主要取决于合金的包含分布,并且沿着在滚动方向上对准的夹杂物行的局部间隔是引发韧性控制参数,而不管裂缝取向平面如何。另一方面,由撕裂模量T表示的裂纹生长韧性显示出裂缝取向依赖性,因为沿着包含行的晶间距确定TL样本中的T值,而包含行之间的间距确定LT样本中的T值。

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