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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Interrelation among the handling, mechanical, and wear properties of the newly developed flowable resin composites
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Interrelation among the handling, mechanical, and wear properties of the newly developed flowable resin composites

机译:新开发的可流动树脂复合材料的处理,机械和磨损性能之间的相互关系

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ObjectivesThis study investigates the handling, mechanical, and wear properties of the newly developed flowable resin composites and elucidate the interrelations among the tested parameters. MethodsSix flowable and two conventional resin composites are used. Five measurements are performed per resin composite to obtain the average inorganic filler content. Ten specimens per material are used to obtain the flexural strength, flexural modulus, and resilience. For sliding impact wear testing, twelve specimens are prepared. Noncontact profilometer and confocal laser scanning microscopy are used to determine the maximum facet depth and volume loss. Extrusion force and thread formation are used to measure the handling properties of the flowable resin composites. Six measurements are performed per flowable resin composite. Data evaluation is performed using analysis of variance and Tukey's honestly significant difference test at anα-level of 0.05. The correlation between the tested parameters is verified using the Pearson product-moment correlation coefficient. ResultsA subset of flowable resin composites exhibits higher flexural properties and wear resistance as compared to the conventional resin composites. The handling properties of the flowable resin composites are material dependent. ConclusionWhile the resilience parameters exhibit an extremely strong and statistically significant correlation with the wear parameters, the handling properties exhibit no interrelation with the remaining parameters. SignificanceWhile the handling properties of the newly developed flowable resin composites did not correlate with the mechanical and wear properties, some new flowable resin composites have the potential for use in high-stress bearing areas, such as posterior lesions, because of the enhanced mechanical properties and wear resistance.
机译:Objectivesthis研究研究了新开发的可流动树脂复合材料的处理,机械和磨损性能,并阐明了测试参数之间的相互关系。方法使用方法和两个常规树脂复合材料。每树树脂复合物进行五项测量以获得平均无机填料含量。每种材料的十个样本用于获得弯曲强度,弯曲模量和弹性。对于滑动冲击磨损测试,制备了12个样品。非接触式轮廓仪和共聚焦激光扫描显微镜用于确定最大面深度和体积损耗。挤出力和螺纹形成用于测量可流动树脂复合材料的处理性能。每种可流动树脂复合材料进行六次测量。数据评估使用方差分析和Tukey在α-leve的诚实显着差异测试进行进行。使用Pearson Product MoneD相关系数来验证测试参数之间的相关性。与常规的树脂复合材料相比,可流动树脂复合材料的流动树脂复合材料的子集具有更高的弯曲性能和耐磨性。可流动树脂复合材料的处理性能是依赖性的。结论,随着耐磨参数,弹性参数表现出极强且统计学上的相关性,处理特性表现出与剩余参数的相互关系。重要的是,新开发的可流动树脂复合材料的处理性能与机械和磨损性能不相关,一些新的可流动的树脂复合材料具有在高应力轴承区域(例如后病变)中使用的可能性,因为有增强的机械性能和耐磨性。

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