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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of particle size of an amorphous calcium phosphate filler on the mechanical strength and ion release of polymeric composites.
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Effect of particle size of an amorphous calcium phosphate filler on the mechanical strength and ion release of polymeric composites.

机译:无定形磷酸钙填料的粒径对聚合物复合材料的机械强度和离子释放的影响。

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摘要

The random clustering of amorphous calcium phosphate (ACP) particles within resin matrices is thought to diminish the strength of their polymerized composites. The objective of this study was to elucidate the effect of ball-milling on the particle size distribution (PSD) of ACP fillers and assess if improved dispersion of milled ACP in methacrylate resin sufficiently enhanced filler/matrix interactions to result in improved biaxial flexure strength (BFS), without compromising the remineralizing potential of the composites. Unmilled and wet-milled zirconia-hybridized ACP (Zr-ACP) fillers were characterized by PSD analysis, X-ray diffraction, thermogravimetric and chemical analysis, infrared spectroscopy, and scanning electron microscopy. Composite specimens made from a photoactivated, ternary methacrylate resin admixed with a mass fraction of 40% of un-milled or milled Zr-ACP were evaluated for the BFS (dry and wet) and for the release of calcium and phosphate ions into saline solutions. While having noapparent effect on the structure, composition, and morphology/topology of the fillers, milling significantly reduced the average size of Zr-ACP particulates (median diameter, d(m) = 0.9 +/- 0.2 microm) and the spread of their PSD. Better dispersion of milled Zr-ACP in the resins resulted in the improved BFS of the composites, even after aqueous soaking, and also gave a satisfactory ion release profile. The demonstrated improvement in the mechanical stability of anti-demineralizing/remineralizing ACP composites based on milled Zr-ACP filler may be beneficial in potentially extending their dental utility.
机译:树脂基质中无定形磷酸钙(ACP)颗粒的随机聚集被认为会降低其聚合复合材料的强度。这项研究的目的是阐明球磨对ACP填料粒径分布(PSD)的影响,并评估改进的ACP在甲基丙烯酸酯树脂中的研磨分散度是否充分增强了填料/基体之间的相互作用,从而提高了双轴弯曲强度( BFS),而不会损害复合材料的再矿化潜力。通过PSD分析,X射线衍射,热重和化学分析,红外光谱和扫描电子显微镜对未研磨和湿研磨的氧化锆杂化ACP(Zr-ACP)填料进行了表征。对由光活化的甲基丙烯酸三元酯树脂与质量分数为40%的未碾磨或碾磨过的Zr-ACP混合而成的复合材料样品的BFS(干湿)和钙离子和磷酸根离子向盐溶液中的释放进行了评估。虽然对填充剂的结构,组成和形态/拓扑没有明显影响,但研磨显着降低了Zr-ACP颗粒的平均尺寸(中值直径,d(m)= 0.9 +/- 0.2微米)及其散布PSD。研磨后的Zr-ACP在树脂中的分散性更好,即使在水浸泡后,复合材料的BFS也有所改善,并且离子释放曲线令人满意。基于磨碎的Zr-ACP填料的抗脱矿质/再矿化ACP复合材料的机械稳定性方面的改进表明,可能会有利于潜在地扩展其牙科用途。

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