Murray Andrea K, Attrill David C, Dickinson Mark R
School of Physics and Astronomy, University of Manchester, Manchester M13 9PL, UK.
Dent Mater. 2005 Jun;21(6):538-44. doi: 10.1016/j.dental.2004.07.021.
The aim of this study was to determine the effect of laser surface treatment of Ni-Cr alloy on the tensile bond strength of a proprietary composite resin (Panavia 21) in comparison with a conventional sandblasting technique.
Eighty cylinders of Ni-Cr were randomly allocated into the following groups: Group I-sandblasting only; Group II-low laser fluence (3.0 J/cm(2)); Group III-medium laser fluence (4.0 J/cm(2)); Group IV-high laser fluence (4.9 J/cm(2)); Group V-sandblasting in combination with medium laser fluence (4.0 J/cm(2)). Specimens within groups were bonded into pairs with resin cement as per manufacturer's instructions. They were then de-bonded using a tensile test.
The mean de-bond strengths (SD) were: Group I-13.1 (4.2)MPa; Group II-17.6 (5.8)MPa; Group III-25.7 (11.8)MPa; Group IV-22.6 (6.6)MPa; Group V-41.8 (13.2)MPa. A statistically significant improvement (Bonferroni, p<0.05) in bond strength was found for the specimens which had been both lased and sandblasted (Group V) compared to all other groups, including those which were only sandblasted.
Laser pre-treatment of Ni-Cr alloy increases bond strength to composite resin compared with sandblasting; laser pre-treatment in combination with sandblasting further increases the de-bond strengths.
本研究旨在确定镍铬合金的激光表面处理与传统喷砂技术相比,对一种专利复合树脂(Panavia 21)拉伸粘结强度的影响。
将80个镍铬合金圆柱体随机分为以下几组:第一组——仅喷砂;第二组——低激光能量密度(3.0 J/cm²);第三组——中等激光能量密度(4.0 J/cm²);第四组——高激光能量密度(4.9 J/cm²);第五组——中等激光能量密度(4.0 J/cm²)与喷砂相结合。按照制造商的说明,将组内的样本用树脂粘结剂成对粘结。然后通过拉伸试验使其脱粘。
平均脱粘强度(标准差)为:第一组——13.1(4.2)MPa;第二组——17.6(5.8)MPa;第三组——25.7(11.8)MPa;第四组——22.6(6.6)MPa;第五组——41.8(13.2)MPa。与所有其他组(包括仅喷砂的组)相比,经过激光处理和喷砂处理的样本(第五组)的粘结强度有统计学上的显著提高(Bonferroni检验,p<0.05)。
与喷砂相比,镍铬合金的激光预处理可提高与复合树脂的粘结强度;激光预处理与喷砂相结合可进一步提高脱粘强度。