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Dual-curing resin cement with colour indicator for adhesively cemented restorations to dental tissues: Change of colour by curing and some physical properties

机译:双固化树脂水泥,具有粘合粘合修复到牙科组织的颜色指示器:通过固化和一些物理性能改变颜色

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摘要

The study was aimed to investigate a color indicator containing dual curing resin composite luting cement and to plot the color change to the time of solidification of the cement. In addition some physical properties were studied. Specimens were made of a dual-cure resin cement (Maxcem Elite™ Chroma, Kerr, Orange, CA, USA) and polymerized by autopolymerization only, or with light initiated polymerization. A spectrophotometer was used to quantify the color change of the cement as plotted with the curing time. The efficacy of the curing process was studied by measuring water sorption and the ultimate flexural properties of the cement. The results showed that the flexural strength of cement after autopolymerization was 27.3 MPa and after light initiated polymerization 48.1 MPa. Young’s modulus of bending was 2089.3 MPa and 3781.5 MPa respectively for the same cement samples. Water sorption after two weeks for the autopolymerization cement samples was −1.12 wt% and for the light initiated polymerization samples 0.56 wt%. Non-parametric Spearman’s correlation was measured for autopolymerized cement samples between variables for color and solidification load (N), which showed a strong correlation between curing process and color change (p < 0.05). There was a correlation between the color change and degree of monomer conversion of the dual curing resin composite luting cement which contained a color indicator system for polymerization reaction. The study also suggested that autopolymerization only resulted in suboptimal polymerization of the cement. By additional light curing considerably higher flexural properties were obtained. Keywords: Colour change, Colour indicator, Resin cement, Physical properties
机译:该研究的目的是研究含有双重固化树脂复合LUTING CEMENT颜色指示剂和绘制颜色改变水泥的凝固时间。另外一些物理性能进行了研究。试样由双固化树脂水泥(Maxcem精英™色度,克尔,橙色,CA,USA),并通过自聚合聚合,或仅与光引发的聚合反应。分光光度计作为与固化时间进行标绘量化水泥的颜色变化。固化过程的效力是通过测量水吸附和水泥的最终弯曲性能的影响。结果表明,水泥的自动聚合后的弯曲强度为27.3兆帕,后光引发聚合48.1兆帕。弯曲杨氏模量为2089.3兆帕和3781.5兆帕分别为相同的水泥样品。两周的自聚合水泥样品后水的吸附是-1.12%(重量)和用于将光引发的聚合反应的样品0.56重量%。非参数Spearman相关被用于变量之间常温聚合水泥样品的颜色和凝固负荷(N),这表明固化过程和颜色变化(P <0.05)之间的较强的相关性测量。有颜色的变化,并含有用于聚合反应中的颜色指示剂系统的双重固化树脂复合粘固水泥的单体转化率的程度之间的相关性。这项研究还表明,自聚合不仅造成水泥的次优聚合。通过附加的光固化显着,得到较高的抗弯性能。关键词:颜色变化,颜色指示剂,树脂水泥,物理性能

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