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Bis-(acrylamide)s as new cross-linkers for resin-based composite restoratives

机译:双(丙烯酰胺)作为树脂基复合修复剂的新型交联剂

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Objectives. The objective of this study was to investigate the use of three new bis-(acrylamide)s as cross-linker in resin-based composite restoratives. Selected mechanical properties such as flexural strength and flexural modulus of model composites containing bis-(acrylamide)s were investigated and compared to the properties of composites that are based on only conventional dimethacrylates. In addition, the hydrolytic stability of composites containing an acidic monomer was examined. Methods. The flexural strength and flexural modulus of elasticity were determined according to ISO 4049:2000. For this purpose, test specimens (2 mm x 2 mm x 25 mm) of the composites investigated were prepared in stainless steel moulds and light-cured (150 mW/cm~2, 2 x 180 s). The flexural strength and flexural modulus were measured after the samples had been stored in dry conditions or in water for 24 h at 37℃ as well as after they had been stored in water for 7 days at 37℃, and in certain cases, after they had been boiled for 24h in water. Results, Visible light cured mixtures of dimethacrylates with bis-(acrylamide)s and compos-ites based on these mixtures show a similar reactivity, flexural strength and flexural modulus of elasticity compared to materials that contain only dimethacrylate. The composites did not show any deterioration of the mechanical properties after water storage. Only when strongly acidic monomers were added to the composites containing dimethacrylates or bis-(acrylamide)s did the flexural strength and flexural modulus of the samples decrease after they were stored in water. Significance. Bis-(acrylamide)s were similarly reactive than dimethacrylates and therefore can be used as diluents to substitute dimethacrylate diluents in composites. Although the bis-(acrylamide)s are entirely soluble in water, non-ionic materials based on bis-(acrylamide)s did not strongly change their mechanical properties during storage in water.
机译:目标。这项研究的目的是研究在树脂基复合修复剂中使用三种新型的双(丙烯酰胺)交联剂。研究了含双-(丙烯酰胺)的模型复合材料的选定机械性能,例如弯曲强度和弯曲模量,并将其与仅基于常规二甲基丙烯酸酯的复合材料的性能进行了比较。另外,检查了含有酸性单体的复合物的水解稳定性。方法。弯曲强度和弯曲弹性模量根据ISO 4049:2000确定。为此,在不锈钢模具中制备所研究的复合材料的试样(2 mm x 2 mm x 25 mm)并进行光固化(150 mW / cm〜2,2 x 180 s)。在将样品在干燥条件下或在37℃的水中存放24小时后,以及在37℃的水中存放7天之后,以及在某些情况下,将样品测量弯曲强度和弯曲模量在水中煮了24小时。结果,与仅包含二甲基丙烯酸酯的材料相比,二甲基丙烯酸酯与双-(丙烯酰胺)和基于这些混合物的复合材料的可见光固化混合物显示出相似的反应性,挠曲强度和挠曲弹性模量。储水后,复合材料没有显示出机械性能的任何劣化。只有将强酸性单体添加到含有二甲基丙烯酸酯或双-(丙烯酰胺)的复合材料中后,样品的弯曲强度和挠曲模量才会在储存于水中后降低。意义。双(丙烯酰胺)与二甲基丙烯酸酯具有相似的反应性,因此可以用作稀释剂以代替复合材料中的二甲基丙烯酸酯稀释剂。尽管双-(丙烯酰胺)完全溶于水,但是基于双-(丙烯酰胺)的非离子材料在水中储存期间并未强烈改变其机械性能。

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