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Polymerization shrinkage of experimental short glass fiber-reinforced composite with semi-inter penetrating polymer network matrix

机译:具有半互穿聚合物网络基质的实验性短玻璃纤维增​​强复合材料的聚合收缩率

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Objectives. The aim of this study was to determine the magnitude of short fiber-reinforced composite resin, with a semi-IPN-polymer matrix, on polymerization resin shrinkage-strain, shrinkage stress and marginal microleakage of the restoration. Materials and methods. Experimental composite FC resin was prepared by mixing 22.5 wt.% of short E-glass fibers, 22.5 wt.% of IPN-resin and 55 wt.% of silane treated silica fillers using a high speed mixing machine. As control material, commercial paniculate filler composite resin (PFC) was used. Polymerization shrinkage-strain and stress of the specimens (n = 5) were measured using the bonded-disc technique and tensilometer, respectively with respect to time. FC composite and PFC were placed incrementally in class II cavities sized 4 mm × 4 mm × 6 mm (n = 8/group) using total-etch adhesive system according to manufacturer's instructions. After the class II restorations were completed, the specimens were finished and polished, thermocycled, stained, sectioned, and viewed under a stereo-microscope for leakage at occlusal/enamel and gingival/dentin margins. The data were analyzed using ANOVA. Results. ANOVA revealed that restorations made from experimental FC composite had a significantly lower shrinkage stress and microleakage than those made from PFC (p < 0.05). The data show that gingival margins had higher microleakage than that obtained from occlusal margins of restorations (p < 0.05). Conclusions. The use of short fiber filler with semi-IPN polymer matrix reduced polymerization shrinkage stress and microleakage compared to a conventional restorative composite.
机译:目标。这项研究的目的是确定具有半IPN聚合物基体的短纤维增强复合树脂的大小,对聚合树脂的收缩应变,收缩应力和修复体的微渗漏程度。材料和方法。通过使用高速混合机将22.5 wt。%的短E-玻璃纤维,22.5 wt。%的IPN树脂和55 wt。%的硅烷处理的二氧化硅填料混合,制备了实验性复合FC树脂。作为对照材料,使用市售的颗粒状填料复合树脂(PFC)。试样的聚合收缩应变和应力(n = 5)分别使用粘结圆盘技术和拉伸计测量时间。根据制造商的说明,使用全蚀刻胶粘剂系统将FC复合材料和PFC逐步放置在大小为4 mm×4 mm×6 mm(n = 8 /组)的II类空腔中。 II类修复体完成后,对标本进行修整和抛光,热循环,染色,切片,并在体视显微镜下观察牙合/牙釉质和牙龈/牙质边缘的渗漏情况。使用ANOVA分析数据。结果。方差分析表明,由实验性FC复合材料制成的修复体的收缩应力和微渗漏性均显着低于由PFC制成的修复体(p <0.05)。数据显示,牙龈切缘的微渗漏率高于修复牙合切缘的微渗漏率(p <0.05)。结论。与传统的修复性复合材料相比,将短纤维填料与半IPN聚合物基体一起使用可降低聚合收缩应力和微渗漏。

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