首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >R-curve behavior and micromechanisms of fracture in resin based dental restorative composites.
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R-curve behavior and micromechanisms of fracture in resin based dental restorative composites.

机译:树脂基牙科修复复合材料的R曲线行为和断裂的微观机制。

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摘要

The fracture properties and micromechanisms of fracture for two commercial dental composites, one microhybrid (FiltekZ250) and one nanofill (FiltekSupreme Plus), were studied by measuring fracture resistance curves (R-curves) using pre-cracked compact-tension specimens and by conducting both unnotched and double notched four point beam bending experiments. Four point bending experiments showed about 20% higher mean flexural strength of the microhybrid composite compared to the nanofill. Rising fracture resistance was observed over approximately 1 mm of crack extension for both composites, and higher overall fracture resistance was observed for the microhybrid composite. Such fracture behavior was attributed to crack deflection and crack bridging toughening mechanisms that developed with crack extension, causing the toughness to increase. Despite the lower strength and toughness of the present nanofill composite, based on micromechanics observations, large nanoparticle clusters appear to be as effective at deflecting cracks and imparting toughening as solid particles. Thus, with further microstructural refinement, it should be possible to achieve a superior combination of aesthetic and mechanical performance using the nanocluster approach for dental composites.
机译:通过使用预破裂的紧凑型拉伸试样测量断裂阻力曲线(R曲线)并进行两种试验,研究了两种商用牙科复合材料(一种微混合材料(FiltekZ250)和一种纳米填充材料(FiltekSupreme Plus))的断裂特性和断裂的微观机理。无缺口和双缺口的四点梁弯曲实验。四点弯曲实验表明,与纳米填充材料相比,微杂化复合材料的平均弯曲强度高出约20%。对于两种复合材料,在大约1 mm的裂纹扩展处都观察到了较高的断裂抗性,而对于微混合复合材料,则观察到了更高的整体断裂抗性。这种断裂行为归因于裂纹扩展和随裂纹扩展而发展的裂纹桥接增韧机制,从而导致韧性增加。尽管基于纳米力学观察,本纳米填料复合材料的强度和韧性较低,但是大型纳米颗粒簇似乎在偏转裂纹和赋予韧性方面与固体颗粒一样有效。因此,通过进一步的微观结构改进,使用纳米簇方法对牙科复合材料进行美学和机械性能的优异结合应该是可能的。

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