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The effect of thermal cycling on the bond strength of low-fusing porcelain to commercially pure titanium and titanium-aluminium-vanadium alloy

机译:热循环对低熔点瓷与市售纯钛和钛铝钒合金的结合强度的影响

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Objectives. Titanium-ceramic restorations are currently used in spite of the pending problem of titanium-ceramic bonding, which has only been partially solved. In addition, some titanium-ceramic systems appear to be susceptible to thermal cycling, which can cause weaker bond strength. The objective of this study was to evaluate the bonding characteristics of titanium porcelain bonded to commercially pure titanium (Ti-Cp) or titanium-aluminum-vanadium (Ti-6Al-4V) alloy as well as the effect of thermal cycling on bond strength. Methods. A three-point-flexure-test was used to evaluate the bond strength of titanium porcelain bonded to commercially pure titanium and Ti-6Al-4V alloy according to DIN 13.927. To evaluate the effect of thermal cycling on the samples, half were thermal cycled in temperatures ranging from 4℃ (+-2℃) to 55℃ (+-2℃). Results were compared with palladium-silver (Pd-Ag) alloy bonded to conventional porcelain (control). Scanning electron microscope (SEM) photomicrographs were taken to characterize the failed surfaces in the metal-ceramic interface. Anova and Tukey's multiple comparison tests were used to analyze the data at a 5% probability level. Results. Thermal cycling did not significantly weaken the bond strength of porcelain to titanium interfaces. There was no significant difference in bond strength between commercially pure titanium (23.60 MPa for thermal cycled group and 24.99 MPa for non-thermal cycled group) and Ti-6Al-4V groups (24.98 and 25.60 MPa for thermal cycled and non-thermal cycled groups, respectively). Bond strength values for the control group (47.98 and 45.30 MPa, respectively) were significantly greater than those for commercially pure titanium and Ti-6Al-4V combinations. Significance. The bond strength of low fusing porcelain bonded to cast pure titanium or Ti-6Al-4V alloy was significantly lower than the conventional combination of porcelain-Pd-Ag alloy. Thermal cycling did not affect the bond strength of any group.
机译:目标。尽管存在钛钛陶瓷结合的悬而未决的问题,但目前仍使用钛陶瓷修复体,但仅部分解决了该问题。另外,某些钛陶瓷系统似乎容易受到热循环的影响,这可能导致较弱的粘结强度。这项研究的目的是评估与商业纯钛(Ti-Cp)或钛铝钒(Ti-6Al-4V)合金结合的钛瓷的结合特性,以及热循环对结合强度的影响。方法。根据DIN 13.927,使用三点弯曲试验来评估钛瓷与商业纯钛和Ti-6Al-4V合金结合的结合强度。为了评估热循环对样品的影响,将一半样品在4℃(+ -2℃)至55℃(+ -2℃)的温度下进行热循环。将结果与结合到常规瓷器上的钯银(Pd-Ag)合金(对照)进行了比较。拍摄扫描电子显微镜(SEM)显微照片以表征金属-陶瓷界面中的失效表面。使用Anova和Tukey的多重比较测试以5%的概率水平分析数据。结果。热循环并没有显着削弱瓷器与钛界面的结合强度。商业纯钛(热循环组为23.60 MPa,非热循环组为24.99 MPa)与Ti-6Al-4V组(热循环和非热循环组为24.98和25.60 MPa)之间的粘结强度没有显着差异。 , 分别)。对照组的粘结强度值(分别为47.98和45.30 MPa)显着大于商业纯钛和Ti-6Al-4V组合的粘结强度。意义。与铸造纯钛或Ti-6Al-4V合金结合的低熔瓷的结合强度明显低于传统的瓷-Pd-Ag合金组合。热循环不影响任何组的粘合强度。

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