首页> 外文期刊>Biomaterials >Dental resin composites containing silica-fused whiskers--effects of whisker-to-silica ratio on fracture toughness and indentation properties.
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Dental resin composites containing silica-fused whiskers--effects of whisker-to-silica ratio on fracture toughness and indentation properties.

机译:含二氧化硅熔合晶须的牙科树脂复合材料-晶须与二氧化硅的比例对断裂韧性和压痕性能的影响。

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Dental resin composites need to be strengthened in order to improve their performance in large stress-bearing applications such as crowns and multiple-unit restorations. Recently, silica-fused ceramic whiskers were used to reinforce dental composites, and the whisker-to-silica ratio was found to be a key microstructural parameter that determined the composite strength. The aim of this study was to further investigate the effects of whisker-to-silica ratio on the fracture toughness, elastic modulus, hardness and brittleness of the composite. Silica particles and silicon carbide whiskers were mixed at whisker:silica mass ratios of 0:1, 1:5. 1:2, 1:1, 2:1, 5:1, and 1:0. Each mixture was thermally fused, silanized and combined with a dental resin at a filler mass percentage of 60%. Fracture toughness was measured with a single-edge notched beam method. Elastic modulus and hardness were measured with a nano-indentation system. Whisker:silica ratio had significant effects on composite properties. The composite toughness (mean+/-SD; n = 9) at whisker:silica = 2:1 was (2.47+/-0.28) MPa m(1/2), significantly higher than (1.02+/-0.23) at whisker:silica = 0:1, (1.13+/-0.19) of a prosthetic composite control, and (0.95+/-0.11) of an inlay/onlay composite control (Tukey's at family confidence coefficient = 0.95). Elastic modulus increased monotonically and hardness plateaued with increasing the whisker:silica ratio. Increasing the whisker:silica ratio also decreased the composite brittleness, which became about 1/3 of that of the inlay:onlay control. Electron microscopy revealed relatively flat fracture surfaces for the controls, but much rougher ones for the whisker composites, with fracture steps and whisker pullout contributing to toughness. The whiskers appeared to be well-bonded with the matrix, probably due to the fused silica producing rough whisker surfaces. Reinforcement with silica-fused whiskers resulted in novel dental composites that possessed fracture toughness two times higher than, and brittleness less than half of current dental composites.
机译:牙科树脂复合材料需要加强,以提高其在大型承重应用中的性能,例如牙冠和多单元修复体。近来,二氧化硅熔合的陶瓷晶须被用于增强牙科复合材料,晶须与二氧化硅的比例被认为是决定复合材料强度的关键微结构参数。这项研究的目的是进一步研究晶须/二氧化硅比对复合材料的断裂韧性,弹性模量,硬度和脆性的影响。将二氧化硅颗粒和碳化硅晶须以晶须:二氧化硅的质量比为0∶1、1∶5混合。 1:2、1:1、2:1、5:1和1:0。将每种混合物热熔,硅烷化并与牙科树脂混合,填充物质量百分比为60%。断裂韧性用单边切口梁法测量。弹性模量和硬度用纳米压痕系统测量。晶须:二氧化硅的比例对复合材料的性能有重要影响。晶须:二氧化硅= 2:1时的复合韧性(平均值+/- SD; n = 9)为(2.47 +/- 0.28)MPa m(1/2),明显高于晶须:(1.02 +/- 0.23):硅胶= 0:1,人工复合控件的(1.13 +/- 0.19),嵌体/覆盖复合控件的(0.95 +/- 0.11)(Tukey's在家庭置信度= 0.95)。弹性模量单调增加,硬度随晶须/二氧化硅比的增加而稳定。晶须:二氧化硅比值的增加也降低了复合材料的脆性,变成了嵌体:嵌体控制的1/3。电子显微镜显示,对照组的断裂表面相对平坦,而晶须复合材料的断裂表面更为粗糙,断裂步骤和晶须拔出有助于韧性。晶须似乎与基体结合良好,这可能是由于熔融石英产生了粗糙的晶须表面。二氧化硅熔合晶须的增强产生了新型牙科复合材料,其断裂韧性是目前牙科复合材料的两倍高,而脆性则不到目前的牙科复合材料的一半。

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