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首页> 外文期刊>Engineering Fracture Mechanics >(107014)Crack growth behavior of a biomedical polymer-ceramic interpenetrating scaffolds composite in the subcritical regimen
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(107014)Crack growth behavior of a biomedical polymer-ceramic interpenetrating scaffolds composite in the subcritical regimen

机译:(107014)亚临界方案中生物医学聚合物 - 陶瓷渗透支架复合材料的裂纹生长行为

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摘要

We subjected a commercial dental composite formed by interconnecting polymer-ceramic scaffolds to extensive quasi-static, static and cyclic experiments under biaxial flexure. By this we meant to obtain static and cyclic subcritical crack growth exponents that, based on established relationships describing the degradation of frictional bridging mechanisms, challenging the notion of a suggested R-curve behavior. By exploring the fracture statistics of specimens with increasing effective volumes and effective areas, we demonstrated the presence of a bi-modal defect size distribution in disaccord with the Weibull behavior across length scales. Lifetime distributions seemed to follow the strength distributions, and were used to derive crack growth velocity diagrams for combined levels of applied stress. Ultimately, the claim of an R-curve behavior could not be supported based on the absence of any significant cyclic fatigue effect, i.e. bridging degradation.
机译:我们使通过将聚合物 - 陶瓷支架互连以在双轴弯曲下进行广泛的准静态,静态和循环实验来进行商业牙科复合材料。 由此,我们的意思是获得静态和循环亚临界裂缝增长指数,基于建立的关系描述了摩擦桥接机制的降解,挑战了建议的R曲线行为的概念。 通过探索标本的裂缝统计,随着有效的有效卷和有效地区,我们证明了在跨长度尺度的Weibull行为中存在双模缺陷尺寸分布。 寿命分布似乎遵循强度分布,并用于导出用于组合施加应力水平的裂缝生长速度图。 最终,基于没有任何显着的循环疲劳效应,即桥接降解,不能支持R曲线行为的权利要求。

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