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Physical property investigation of contemporary glass ionomer and resin-modified glass ionomer restorative materials

机译:现代玻璃离聚物和树脂改性玻璃离聚物恢复材料的物理性质研究

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ObjectivesThe objective of this study was to investigate selected physical properties of nine contemporary and recently marketed glass ionomer cement (GIC) and four resin-modified glass ionomer cement (RMGI) dental restorative materials.Materials and methodsSpecimens (n=12) were fabricated for fracture toughness and flexure strength using standardized, stainless steel molds. Testing was completed on a universal testing machine until failure. Knoop hardness was obtained using failed fracture toughness specimens on a microhardness tester, while both flexural modulus and flexural toughness was obtained by analysis of the flexure strength results data. Testing was completed at 1h, 24h, 1week, and then at 1, 3, 6, and 12months. Mean data was analyzed with Kruskal-Wallis and Mann-Whitney (p=0.05).ResultsPhysical properties results were material dependent. Physical properties of the GIC and RMGI products were inferior at 1h compared to that at 24h. Some improvement in selected physical properties were noted over time, but development processes were basically concluded by 24h. A few materials demonstrated improved physical properties over the course of the evaluation.ConclusionsUnder the conditions of this study:GIC and RMGI physical property performance over time was material dependent;Polyalkenoate maturation processes are essentially complete by 24h;Although differences in GIC physical properties were noted, the small magnitude of the divergences may render such to be unlikely of clinical significance;Modest increases in some GIC physical properties were noted especially flexural modulus and hardness, which lends support to reports of a maturing hydrogel matrix;Overall, GIC product physical properties were more stable than RMGI;A similar modulus reduction at 6months for both RMGI and GIC produced may suggest a polyalkenoate matrix change; andGlobally, RMGI products demonstrated higher values of flexure strength, flexural toughness, and fracture toughness than GIC materials.Clinical relevanceAs compared to RMGI materials, conventional glass ionomer restorative materials demonstrate more stability in physical properties.
机译:本研究的客观目的是调查九个当代和最近销售的玻璃离聚物水泥(GIC)和四种树脂改性玻璃离聚物水泥(RMGI)牙科修复材料的选定物理性质。制造用于骨折的材料和方法特异性(n = 12)使用标准化的不锈钢模具的韧性和弯曲强度。在通用测试机器上完成测试,直到失败。使用微硬度测试仪上的失效韧性试样获得了Knoop硬度,而通过分析弯曲强度结果数据来获得弯曲模量和抗弯曲韧性。测试完成于1小时,24小时,1周,然后在1,3,6和12个月内完成。用Kruskal-Wallis和Mann-Whitney分析了平均数据(P = 0.05)。评估性能是依赖性的。与24h相比,GIC和RMGI产品的物理性质在1小时下较差。随着时间的推移,注意到所选物理性质的一些改善,但是发展过程基本上结束了24小时。一些材料在评估过程中表现出改善的物理性质。结论本研究的条件下:GIC和RMGI物理性能随着时间的推移是物质依赖性;多链烯酸盐成熟过程基本上完成24小时;尽管指出了GIC物理性质的差异,分歧的少量幅度可能使临床意义不太可能;一些GIC物理性质的适度增加,特别是弯曲模量和硬度,其赋予了成熟水凝胶基质的报道;总体而言,GIC产品物理性质比RMGI更稳定;产生的RMGI和GIC的6个月相似的模量可以提示多链烯酸盐基质变化; Andglobally,RMGI产品显示比GIC材料更高的弯曲强度,弯曲韧性和断裂韧性值。与RMGI材料相比,临床相关性,常规的玻璃离聚物恢复材料在物理性质中表现出更多的稳定性。

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