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Roughness Analysis on Composite Materials (Microfilled Nanofilled and Silorane) After Different Finishing and Polishing Procedures

机译:复合材料(微填充纳米填充和硅烷)在不同抛光和抛光步骤后的粗糙度分析

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摘要

The finishing and polishing of composite materials affect the restoration lifespan. The market shows a variety of finishing and polishing procedures and the choice among them is conditioned by different factors such as the resulting surface roughness. In the present study, 156 samples were realized with three composite materials, -microfilled, nanofilled and silorane-, and treated with different finishing and polishing procedures. Profilometric analyses were carried out on the samples’ surface, the measured roughness values were submitted to statistical analysis. A complete factorial plan was drawn up and two-way analysis of variance (ANOVA) was carried out to investigate whether the following factors affect the values of roughness: (i) material; (ii) polishing/finishing procedure. Tukey post-hoc test was also conducted to evaluate any statistically significant differences between the material/procedure combinations. The results show that the tested materials do not affect the resulting surface quality but roughness values depend on the finishing/polishing procedure adopted. The procedures that involve: (a) the finishing with medium Sof-Lex discs and (b) the finishing with two tungsten carbide multi-blade milling cutters Q series and UF series are those that allow the lowest values of roughness to be obtained.
机译:复合材料的精加工和抛光会影响修复体的使用寿命。市场上显示了各种各样的精加工和抛光程序,它们的选择取决于不同的因素,例如最终的表面粗糙度。在本研究中,使用三种复合材料(微填充,纳米填充和硅氧烷)实现了156个样品,并采用了不同的精加工和抛光程序对其进行了处理。对样品表面进行轮廓分析,并将测得的粗糙度值提交统计分析。拟定了一个完整的因子分解计划,并进行了方差分析(ANOVA),以研究以下因素是否影响粗糙度值:(i)材料; (ii)抛光/精加工程序。还进行了Tukey事后测试,以评估材料/程序组合之间的任何统计学显着差异。结果表明,测试材料不会影响最终的表面质量,但粗糙度值取决于所采用的精加工/抛光程序。涉及的步骤:(a)用中号Sof-Lex圆盘进行精加工,以及(b)用两台Q系列和UF系列碳化钨多刃铣刀进行的精加工,可以使粗糙度达到最低。

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