首页> 外文期刊>Photomedicine and laser surgery >Bond strength of resin cement to yttrium-stabilized tetragonal zirconia ceramic treated with air abrasion, silica coating, and laser irradiation.
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Bond strength of resin cement to yttrium-stabilized tetragonal zirconia ceramic treated with air abrasion, silica coating, and laser irradiation.

机译:通过空气磨蚀,二氧化硅涂层和激光辐照处理的树脂水泥与钇稳定的四方氧化锆陶瓷的粘结强度。

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OBJECTIVE: The purpose of this study was to evaluate the shear bond strength of a resin cement to yttrium-stabilized tetragonal zirconia (Y-TZP) surfaces treated with air abrasion, silica coating, or CO(2), Er:YAG, or Nd:YAG laser irradiation, or irradiated by each laser after air abrasion. BACKGROUND DATA: Optimized methods are needed to improve the adhesive bonding between resin cement and Y-TZP ceramic. METHODS: Twelve specimens were irradiated with each laser at different parameters and examined by scanning electron microscopy to determine which parameters to use in this study. One hundred forty-one Y-TZP discs were assigned to nine groups: C, no treatment; AA, air abrasion; CJ, silica coating; ER, Er:YAG laser; ND, Nd:YAG laser; CO, CO(2) laser; AA+ER, air abrasion + Er:YAG laser; AA+ND, air abrasion + Nd:YAG laser; AA+CO, air abrasion + CO(2) laser. The composite cylinders were fabricated. After the surface treatments, the specimens were silanized and composite cylinders were cemented with the resin cement. The shear bond strength test was performed after specimens were stored in water for 24 h and after thermocycling for 500 cycles. RESULTS: The highest bond strength was obtained in the AA group and was similar to that of the CJ group. In C, ER, CO, ND, AA+ND, and AA+CO groups, the shear bond strengths were similar to each other according to the Duncan test results. The lowest bond value was obtained in the AA+ER group. CONCLUSION: Although air abrasion and silica coating were the most effective surface treatment methods, CO(2) and Er:YAG laser irradiation alone or Nd:YAG laser irradiation after air abrasion may be used as an alternative treatment method to increase the bond strength between resin cement and Y-TZP material.
机译:目的:本研究的目的是评估经过空气磨蚀,二氧化硅涂层或CO(2),Er:YAG或Nd处理的钇水泥稳定的四方氧化锆(Y-TZP)表面的树脂水泥的剪切粘结强度。 :YAG激光照射,或空气磨蚀后由每个激光照射。背景数据:需要优化方法来改善树脂水泥与Y-TZP陶瓷之间的粘合力。方法:用每个激光以不同的参数照射十二个标本,并通过扫描电子显微镜检查以确定在本研究中要使用的参数。将一百一十一张Y-TZP光盘分为九组:C,未治疗; AA,空气磨损; CJ,二氧化硅涂层; ER,Er:YAG激光; ND,Nd:YAG激光; CO,CO(2)激光; AA + ER,空气磨损+ Er:YAG激光; AA + ND,空气磨损+ Nd:YAG激光; AA + CO,空气磨损+ CO(2)激光。复合圆柱体被制造出来。表面处理后,将样品进行硅烷化处理,并用树脂胶粘剂固结复合圆柱体。在将样品在水中储存24小时后和热循环500次后进行剪切强度测试。结果:AA组获得了最高的结合强度,与CJ组相似。根据邓肯测试结果,在C,ER,CO,ND,AA + ND和AA + CO组中,剪切粘合强度彼此相似。在AA + ER组中获得最低的键值。结论:尽管空气磨蚀和二氧化硅涂层是最有效的表面处理方法,但是单独使用CO(2)和Er:YAG激光辐照或空气磨蚀后的Nd:YAG激光辐照可作为替代的处理方法,以提高两者之间的粘结强度树脂水泥和Y-TZP材料。

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