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Influence of ceramic thickness on mechanical properties and polymer structure of dual-cured resin luting agents.

机译:陶瓷厚度对双固化树脂粘结剂力学性能和聚合物结构的影响。

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摘要

OBJECTIVE: To investigate the influence of ceramic thickness on the mechanical properties and polymer structure (degree conversion and cross-linking density) of three dual-cured resin luting agents. METHODS: Three dual-cured resin luting agents [Linkmax HV (GC), Nexus 2 (Kerr), and Variolink IIHV (Ivoclar-Vivadent)] were polymerized with or without 800mW/cm(2) irradiation through 0-3-mm-thick GN-I (GC) machinable ceramic. Bar-shape specimens were subjected to three-point bending to determine flexural strength (FS) and elastic modulus (EM) after dry storage at 37 degrees C for 24h. Knoop hardness was measured on the irradiated surface of disk-shaped specimens before (KHN1) and after (KHN2) storage of 100% ethanol solution at 37 degrees C for 24h. KHN1 and KHN2 were estimated as indirect indicators of degree of conversion (DC) and cross-linking density, respectively. Data were analyzed by one-way ANOVA and Student-Newman-Keuls test for each luting agent, and four mechanical properties were subjected to regression analysis. RESULTS: For three resin luting agents with dual-cured mode, FS, EM, KHN1, and KHN2 decreased with the increase of ceramic thickness. FS except for Nexus 2 and EM for three resin luting agents had a positive linear relationship with both KHN1 and KHN2. SIGNIFICANCE: The variables tested behaved differently. When the ceramic thickness increased, the chemical cured components of dual-cured resin luting agents did not produce significant compensation for all variables. Mechanical properties and polymer structure of dual-cured resin luting agents was dependent on the intensity of light irradiation.
机译:目的:研究陶瓷厚度对三种双固化树脂浸润剂的力学性能和聚合物结构(度转化率和交联密度)的影响。方法:三种双固化树脂诱剂[Linkmax HV(GC),Nexus 2(Kerr)和Variolink IIHV(Ivoclar-Vivadent)]在有或没有通过0-3-mm-射线照射800mW / cm(2)的条件下聚合。厚的GN-1(GC)可加工陶瓷。将棒状样品进行三点弯曲,以确定其在37摄氏度下干燥24小时后的弯曲强度(FS)和弹性模量(EM)。努氏硬度是在将100%乙醇溶液在37°C下储存(KHN1)和(KHN2)之后在圆盘状样品的辐照表面上测量的,时间为37h。估计KHN1和KHN2分别作为转化度(DC)和交联密度的间接指标。通过单因素方差分析和Student-Newman-Keuls检验对每种诱剂进行数据分析,并对四个机械性能进行回归分析。结果:对于三种双固化模式的树脂浸胶剂,FS,EM,KHN1和KHN2随着陶瓷厚度的增加而降低。除Nexus 2和EM外,其他三种树脂浸润剂的FS与KHN1和KHN2均具有正线性关系。重要性:测试的变量表现不同。当陶瓷厚度增加时,双固化树脂浸润剂的化学固化成分并未对所有变量产生明显补偿。双固化树脂浸润剂的机械性能和聚合物结构取决于光的照射强度。

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