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Densification and plastic deformation under microindentation in silicate glasses and the relation to hardness and crack resistance

机译:硅酸盐玻璃微压痕下的致密化和塑性变形及其与硬度和抗裂性的关系

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To quantify and study the densification and plastic deformation under Vicker's indentation we prepared a series of simple soda-lime-silicate glasses with different modifying ion contents and four glasses with constant silica content but potassium and/or barium substituted for sodium and/or calcium. The densification and plastic deformation in these glasses were determined using atomic force microscopy (AFM) by measuring each sample twice, i.e., once immediately following indentation, and once after annealing to relax the densified volume. The results show that the densified volume of the glasses decreases approximately linearly with the bulk modulus, and the plastic deformation volume with silica mole fraction. These results have important implications in the prediction of hardness and crack resistance (i.e. load for crack initiation) from composition.
机译:为了量化和研究在维氏压痕作用下的致密化和塑性变形,我们制备了一系列具有不同修饰离子含量的简单钠钙硅酸盐玻璃和四种具有恒定二氧化硅含量但钾和/或钡代替钠和/或钙的玻璃。这些玻璃的致密化和塑性变形通过原子力显微镜(AFM)通过两次测量每个样品来确定,即压痕后立即进行一次,退火以放松致密的体积后进行一次。结果表明,玻璃的致密体积随体积模量线性降低,塑性变形体积随二氧化硅摩尔分数而降低。这些结果对于根据组成预测硬度和抗裂性(即裂纹萌生的载荷)具有重要意义。

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