Staninec Michal, Kim Paul, Marshall Grayson W, Ritchie R O, Marshall Sally J
Department of Preventive and Restorative Dental Sciences, University of California, San Francisco, CA 94143, USA.
Dent Mater. 2008 Jun;24(6):799-803. doi: 10.1016/j.dental.2007.09.008. Epub 2007 Nov 9.
The objective was to determine the fracture and cyclic fatigue properties of composite-dentin beams bonded with a self-etching adhesive in four-point bend.
Beams of rectangular cross-section were shaped to a size of approximately 0.87mmx0.87mmx10mm and placed in a four-point bending apparatus, with the loading points 1.8 and 7.2mm apart, with the interface centered between the inner rollers. Cyclical loading was performed in Hanks' Balanced Salt Solution at 25 degrees C, with forces between 54% and 99% of the bending strength of the bonded beams.
Solid dentin and solid composite beams [n=6] had bending strengths of 164.4 and 164.6MPa, respectively, under monotonically increasing loads. Bonded beams [n=6] had strengths of 90.6MPa. No significant difference was found between solid composite and solid dentin beams, the bonded beams were different (ANOVA, p<0.0001) With long-term cycling, stresses below 49MPa were tolerated for 10(6) cycles, but with increasing stress up to 90MPa, beams failed earlier, demonstrating that subcritical fatigue cycling will eventually cause failure.
Fatigue may be a significant mechanism of dentin-composite bond degradation.
本研究旨在测定四点弯曲条件下,使用自酸蚀粘结剂粘结的复合树脂-牙本质梁的断裂和循环疲劳性能。
将矩形横截面的梁加工成尺寸约为0.87mm×0.87mm×10mm的形状,并放置在四点弯曲装置中,加载点间距为1.8mm和7.2mm,界面位于内辊之间的中心位置。在25℃的汉克斯平衡盐溶液中进行循环加载,加载力为粘结梁弯曲强度的54%至99%。
在单调增加载荷下,实心牙本质梁和实心复合树脂梁[n=6]的弯曲强度分别为164.4MPa和164.6MPa。粘结梁[n=6]的强度为90.6MPa。实心复合树脂梁和实心牙本质梁之间未发现显著差异,粘结梁有所不同(方差分析,p<0.0001)。长期循环时,应力低于49MPa可耐受10(6)次循环,但随着应力增加至90MPa,梁更早失效,表明亚临界疲劳循环最终会导致失效。
疲劳可能是牙本质-复合树脂粘结降解的一个重要机制。