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Recent developments in brittle and quasi-brittle failure assessment of graphite by means of SED

机译:利用SED评估石墨脆性和准脆性破坏的最新进展

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摘要

Brittle fracture of polycrystalline graphite under tension, in-plane shear and torsion loading is studied experimentally and theoretically using prismatic and axisymmetric specimens weakened by sharp and rounded-tip V-notches. The main purpose is twofold. First, to provide a new set of experimental data from notched samples made of isostatic polycrystalline graphite with different values of notch opening angles and root radii, which should be useful to engineers engaged with static strength analysis of graphite components. At the best of authors' knowledge, data from notch specimens are very scarce in the literature for this material. Second, to apply a fracture criterion based on the strain energy density (SED) averaged over a well-defined control volume surrounding the notch tip, extending what was made by the present authors for in-plane tension-shear loading conditions in notched specimens made of other materials. Good agreement is found between the experimental data related to the critical loads to failure and the theoretical assessments based on the constancy of the mean SED over the material-dependent control volume.
机译:利用棱柱形和轴对称试样通过尖锐且圆角的V形缺口削弱,从理论和实验上研究了多晶石墨在拉伸,面内剪切和扭转载荷下的脆性断裂。主要目的是双重的。首先,要提供一组新的实验数据,这些数据是由具有不同开槽角和根半径值的等静压多晶石墨制成的开槽样品提供的,这对于从事石墨部件静态强度分析的工程师来说应该是有用的。据作者所知,此材料的缺口样品中的数据非常缺乏。第二,基于应变能密度(SED)在缺口尖端周围的明确定义的控制体积上求平均的断裂准则,扩展了当前作者针对缺口试样在平面内拉伸剪切载荷条件下所做的工作其他材料。在与失效的关键载荷有关的实验数据与基于平均SED在材料相关控制体积上的恒定性的理论评估之间找到了很好的一致性。

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