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首页> 外文期刊>Acta biomaterialia >Influence of ageing on glass and resin bonding of dental glass-ceramic veneer adhesion to zirconia: A fracture mechanics analysis and interpretation
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Influence of ageing on glass and resin bonding of dental glass-ceramic veneer adhesion to zirconia: A fracture mechanics analysis and interpretation

机译:老化对玻璃玻璃胶合剂粘附对氧化锆的玻璃和树脂粘合的影响:裂缝力学分析和解释

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Adhesion plays a major role in the bonding of dental materials. In this study the adhesion of two glass-ceramic systems (IPS e.max and VITABLOCS) to a zirconia sintered substrate using a glass (for IPS e.max) and resin (VITABLOCS) before and after exposure to ageing for 14 days in distilled water at 37 degrees C are compared using two interfacial fracture mechanics tests, the 3 point bend Schwickerath (Kosyfaki and Swain, 2014; Schneider and Swain, 2015) and 4 point bend (Charalambides et al., 1989) approaches. Both tests result in stable crack extension from which the strain energy release rate (G, N/m or J/m(2)) can be determined. In the case of the 3 PB test the Work of Fracture was also determined. In addition, the Schwickerath test enables determination of the critical stress for the onset of cracking to occur, which forms the basis of the ISO (ISO9693-2:2016) adhesion test for porcelain ceramic adhesion to zirconia. For the aged samples there was a significant reduction in the resin-bonded strengths (Schwickerath) and strain energy release rate (both 3 and 4 PB tests), which was not evident for the glass bonded specimens. Critical examination of the force-displacement curves showed that ageing of the resin resulted in a major change in the form of the curves, which may be interpreted in terms of a reduction in the critical stress to initiate cracking and also in the development of an R-curve. The extent of the reduction in strain energy release rate following ageing was greater for the Schwickerath test than the Charalambides test. The results are discussed in terms of; the basic mechanics of these two tests, the deterioration of the resin bonding following moisture exposure and the different dimensions of the specimens. These in-vitro results raise concerns regarding resin bonding to zirconia.
机译:粘合力在牙科材料的粘接中起着重要作用。在该研究中,使用玻璃(对于IPS E.Max)和树脂(Vitablocs)在蒸馏中,在蒸馏出14天之前和之后使用玻璃(用于IPS E.Max)和树脂(Vitabloc),将两个玻璃陶瓷系统(IPS E.MAX和Vitablocs)与氧化锆烧结基材的粘附性粘附到蒸馏中使用两个界面骨折力学试验(Kosyfaki和Swain,2015)使用两个界面骨折力学测试进行比较37摄氏度的水进行比较。两个测试可以从中产生稳定的裂缝延伸,从中可以确定应变能释放速率(g,n / m或j / m(2))。在3 PB测试的情况下,还测定了骨折的工作。此外,Schwickerath测试能够确定裂解发生的临界应力,这构成了ISO(ISO9693-2:2016)粘附试验对氧化锆的瓷陶瓷粘合性的基础。对于老化样品,树脂键合强度(Schwickerath)和应变能释放速率(3和4 PB试验)的显着降低,这对玻璃键合标本不明显。对力 - 位移曲线的临界检查表明,树脂的老化导致曲线形式的主要变化,这可以在减少临界应力的减少方面来解释,以引发裂化以及在r的开发中。 -曲线。在脑卒中试验后老化的应变能量释放率降低的程度比Charalambides试验更大。结果讨论了;这两个试验的基本机制,在水分暴露之后的树脂粘接的劣化和样本的不同尺寸。这些体外结果提高了对氧化锆的树脂键合的担忧。

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