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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effect of polymerization under pressure on indirect tensile mechanical properties of light-polymerized composites.
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Effect of polymerization under pressure on indirect tensile mechanical properties of light-polymerized composites.

机译:压力下聚合对光聚合复合材料间接拉伸力学性能的影响。

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Statement of Problem. Flaws developed during polymerization of restorative materials cause a decrease in mechanical properties. Purpose. The aim of this study was to determine the effect of polymerization under pressure on the indirect tensile mechanical properties (stiffness and diametral tensile strength) of several light-polymerized composites. Material and Methods. Five light-polymerized composites were tested: Brilliant, Z100, TPH Spectrum, Prodigy, and Pertac Hybrid. A total of 80 cylindrical disk specimens (6 mm x 2 mm) were prepared for each material in a special mold that enabled polymerization under pressure (PUP). An equal number of specimens were polymerized under surface pressures of 0,.35,.71 and 1.06 MPa (n = 20). Stiffness (N/mm) and diametral tensile strength (DTS) (MPa) were analyzed while loading the specimen to failure with a loading machine. Two-way analysis of variance and Weibull analyses were applied (alpha=5%). Results. Material type had a statistically significant influence on both DTS and stiffness (P<.0001). Differences up to 33% in DTS and up to 70% in stiffness values were found among the tested materials. Loading (PUP) had a significant influence on stiffness (P<.03) and DTS (P<.0001). PUP caused an increase in DTS values for Brilliant, Z100, and Prodigy of about 20% (P<.001) and increased stiffness only for Brilliant (15%). However, the amount of pressure needed for the improvement was different between materials (interaction between materials and loadings) (P<.0005). Weibull statistics showed that PUP improved the chances for reducing flaws in a material. Conclusion. Polymerizing material under pressure can improve its DTS and stiffness. However, the pressure needed for the procedure is material dependent.
机译:问题陈述。修复材料聚合过程中产生的缺陷会导致机械性能下降。目的。这项研究的目的是确定压力下聚合对几种轻聚合复合材料的间接拉伸机械性能(刚度和径向拉伸强度)的影响。材料与方法。测试了五种光聚合复合材料:Brilliant,Z100,TPH Spectrum,Prodigy和Pertac Hybrid。在特殊的模具中为每种材料准备了总共80个圆柱盘样品(6 mm x 2 mm),该模具可以在压力下进行聚合(PUP)。在0,.35,.71和1.06 MPa(n = 20)的表面压力下,将相同数量的样品聚合。在用加载机加载样品至失效时,分析了刚度(N / mm)和径向拉伸强度(DTS)(MPa)。应用了方差和威布尔分析的双向分析(alpha = 5%)。结果。材料类型对DTS和刚度均具有统计学上的显着影响(P <.0001)。在被测材料中,DTS的差异高达33%,刚度值的差异高达70%。载荷(PUP)对刚度(P <.03)和DTS(P <.0001)有重要影响。 PUP使Brilliant,Z100和Prodigy的DTS值增加了大约20%(P <.001),而仅Brilliant(15%)的刚度增加了。但是,改善所需的压力在不同的材料之间(材料与载荷之间的相互作用)有所不同(P <.0005)。 Weibull统计数据表明,PUP增加了减少材料缺陷的机会。结论。在压力下聚合材料可以改善其DTS和刚度。但是,该过程所需的压力取决于材料。

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