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Effect of Thermocycling, Teeth, and Polymerization Methods on Bond Strength Teeth-Denture Base

机译:热循环,牙齿和聚合方法对粘合强度牙齿底座的影响

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摘要

Objective. To evaluate the shear bond strength between different artificial teeth and denture base polymerized by two polymerization methods submitted to thermocycling. Materials and Methods. Two acrylic resins were selected according to the polymerization method (water-bath and microwave), and four different artificial teeth (Biotone, Dentsply; Trilux, Vipi Dent; Premium 8, Heraeus Kulzer; Soluut PX, Yamahachi) were also tested. The polymerization of the acrylic resin was performed by using conventional cycle (8 h at 74°C) in water-bath and using two cycles (20 min at 270 W + 5 min at 360 W) by the microwave method. The shear bond strength was evaluated after 24 h of water storage at 37°C (immediately) and after the thermocycling test (5,000 cycles, 5–55°C). The shear bond strength (n=10) was performed using a universal testing machine (Instron 4411) at a crosshead speed of 1.0 mm/min. Modes of failures were classified as cohesive and adhesive. The data (MPa) were statistically analyzed by three-way ANOVA, and the mean values were compared by the Tukey test (α = 0.05). Results. In general, the polymerization by microwave showed the highest shear bond strength values, and Trilux artificial teeth had the lowest bond strength values (p<0.05). Thermocycling did not affect the shear bond strength (p<0.05). There was a predominance of cohesive failures for all groups. Conclusions. The chemical composition of the artificial teeth affects the bond strength, and the microwave method is preferable to perform the acrylic resin polymerization.
机译:客观的。通过两种提交至热循环的两种聚合方法评估不同人造牙齿和义肢基质之间的剪切粘合强度。材料和方法。根据聚合方法(水浴和微波)和四种不同的人造牙齿(Biotone,Lirlux,Vipi Dent; Premium 8,Heraeus Kulzer; Soluut PX,Yamahachi),选择了两个丙烯酸树脂。通过在水浴中使用常规循环(8小时,在74℃)中并通过微波法使用两个循环(在360W时270W + 5分钟)的常规循环(8小时)进行丙烯酸树脂的聚合。在37℃(立即)和热循环试验(5,000次循环,5-55°C)之后,评估剪切粘合强度。使用通用测试机(Instron 4411)以1.0mm / min的十字头速度进行剪切键强度(n = 10)。故障模式被归类为粘性和粘合剂。通过三元ANOVA统计分析数据(MPA),并且通过TUKEY测试进行平均值(α= 0.05)。结果。通常,微波的聚合显示出最高的剪切粘合强度值,并且Trilux人造齿具有最低的粘合强度值(P <0.05)。热循环不影响剪切粘合强度(P <0.05)。所有群体都有凝聚力的失败。结论。人造齿的化学成分影响粘合强度,并且微波法优选进行丙烯酸树脂聚合。

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