首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Fracture resistance curves and toughening mechanisms in polymer based dental composites.
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Fracture resistance curves and toughening mechanisms in polymer based dental composites.

机译:聚合物基牙科复合材料的抗断裂曲线和增韧机理。

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The fracture resistance (R-curve behaviour) of two commercial dental composites (Filtek Z350((R)) and Concept Advanced((R))) were studied using Double Cantilever Beam sandwich specimens loaded with pure bending moments to obtain stable crack growth. The experiments were conducted in an environmental scanning electron microscope to (a) accurately measure the applied energy-release rate for crack initiation, (b) measure the early (rising) part of the R-curve, and (c) provide direct microscopic evidence of the toughening mechanisms ahead of and/or in the wake of the crack tip. The two tested composites displayed distinctly different R-curve behaviours. The difference was related to different toughening mechanisms as the two composites had markedly different microstructures. Contrary to common experience, the composite with the finer microstructure (smaller particles), the Concept Advanced((R)), showed significantly higher fracture resistance than the composite with the coarser microstructure. The fracture properties were related to the flexural strength of the dental composites. The method, thus, can provide useful insight into how the microstructure enhances toughness, which is necessary for the future development of such materials.
机译:使用加载有纯弯矩的双悬臂梁夹心样品研究了两种商用牙科复合材料(Filtek Z350(R)和Concept Advanced(R))的抗断裂性能(R曲线性能),以获得稳定的裂纹扩展。实验在环境扫描电子显微镜中进行,以(a)准确测量裂纹萌生所施加的能量释放速率,(b)测量R曲线的早期(上升)部分,以及(c)提供直接的微观证据裂纹尖端之前和/或之后的增韧机制。两种测试的复合材料显示出截然不同的R曲线行为。差异与增韧机理不同有关,因为两种复合材料的微观结构明显不同。与通常的经验相反,具有较细微结构(较小颗粒)的复合材料Concept Advanced(R)与具有较粗微结构的复合材料相比,其抗断裂性明显更高。断裂性能与牙科复合材料的抗弯强度有关。因此,该方法可以提供关于微观结构如何增强韧性的有用见解,这对于此类材料的未来开发是必需的。

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