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Deformation and Fracture of Porous Brittle Materials Under Different Loading Schemes

机译:不同加载方案下多孔脆性材料的变形和断裂

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摘要

The behavior of alumina and zirconia compression- and shear-test specimens with porosity ranging from 10 to 70% is investigated. Analysis of the stress-strain curves for the materials under study has revealed a transition from a characteristically brittle fracture of fairly dense Al2O3 and ZrO2 specimens to pseudo-plastic fracture for a high porosity level. The ultimate compression strength, effective elastic and shear moduli, and Poisson's ratio are found to decrease with increase in the pore space volume of the ceramic specimens, which is shown to correlate with development of strain-induced multiple cracking of the materials.
机译:研究了孔隙率为10%至70%的氧化铝和氧化锆压缩和剪切试样的行为。对所研究材料的应力-应变曲线进行分析后发现,从较高密度的Al2O3和ZrO2试样的特征性脆性断裂转变为高孔隙度水平的拟塑性断裂。发现极限压缩强度,有效弹性模量和剪切模量以及泊松比随着陶瓷样品的孔空间体积的增加而降低,这表明与材料引起的应变诱发的多裂化有关。

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