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首页> 外文期刊>Journal of the European Ceramic Society >Influence of diamond particles content on the critical load for crack initiation and fracture toughness of SiOC glass-diamond composites
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Influence of diamond particles content on the critical load for crack initiation and fracture toughness of SiOC glass-diamond composites

机译:金刚石含量对SiOC玻璃-金刚石复合材料裂纹萌生和断裂韧性临界载荷的影响

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摘要

The crack initiation load and fracture toughness were characterized as a function of diamond particle content, up to 25 vol%, in silicon oxycarbide glass matrix by means of Vickers indentation and single edge notch beam (SENB) technique, respectively. The larger fracture toughness value of 3.21 ±0.3 MPam~(1/2) was reached for 20 vol% diamond content composites and the value was 4 times higher than that of the unrcinforced glass. The addition of diamond particles greatly influenced the crack initiation load, which increased from 2.9 to 49.0 N. The enhancement in the fracture toughness and crack initiation load can be explained by both the intrinsic mechanical properties of diamond (especially the elastic properties; E ~ 1100 GPa) and the diamond/SiOC glass interfacial bonding. A clear correlation was found between the fracture energy, the reinforced interparticle spacing and the residual stress arising upon cooling due to thermal expansion mismatch between the matrix and the diamond particles.
机译:在碳氧化硅玻璃基体中,分别通过维氏压痕和单边缺口梁(SENB)技术,将裂纹萌生载荷和断裂韧度作为金刚石颗粒含量(至多25 vol%)的函数进行表征。金刚石含量为20%(体积)的复合材料的断裂韧性值达到3.21±0.3 MPam〜(1/2),比未增强玻璃高4倍。金刚石颗粒的添加极大地影响了裂纹萌生载荷,从2.9 N增加到49.0N。断裂韧性和裂纹萌生载荷的提高可以用金刚石的固有机械性能(尤其是弹性性能; E〜1100)来解释。 GPa)和金刚石/ SiOC玻璃界面结合。发现在断裂能,增强的颗粒间间距和由于基体和金刚石颗粒之间的热膨胀失配而在冷却时产生的残余应力之间存在明显的相关性。

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