Ruttonji Zarir R, Kusugal Preethi B, Nayak Ajaykumar, Mahajan Deepa, Sushma K M, Patil Viraj N
Department of Prosthodontics, Maratha Mandal's NGHIDS and RC, Belgaum, Karnataka, India.
Private Practice, Grace Dental Clinic and Implant Centre, Ichalkaranji, Maharashtra, India.
J Conserv Dent. 2019 May-Jun;22(3):245-248. doi: 10.4103/JCD.JCD_402_18.
The purpose of this study was to evaluate the effect of surface treatment of fiber-reinforce post and metal post of adhesion of a resin luting cement.
Sixty methyl methacrylate specimens were fabricated with a customized metal rod. The samples were segregated into six groups (F1, F2, F3, M1, M2, and M3) of 10 specimens ( = 10) each. The first three groups (F1, F2, and F3) were for fiber posts and (M1, M2, and M3) were for metal posts. The postspace preparation was done with dedicated drills supplied by the postmanufacturers to a length of 14 mm. F1 and M1 were the control groups. The posts in F2 and M2 groups were treated with airborne-particle abrasion with 70 μm AlO particles for 5 s at a constant distance of 20 mm, cleaned with alcohol and cemented in the postspace. The posts in the F3 and M3 groups were treated with airborne-particle abrasion followed by primer application. After cementing the posts into the postspace, the acrylic blocks were sectioned with a motor-driven jigsaw to obtain four specimens each of 3-mm thickness. These sections were then subjected to push-out tests on a universal testing machine.
There was a statistically significant increase in the bond strength of both fiber and metal posts to resin cement after airborne-particle abrasion with AlO particles and airborne abrasion followed by primer application.
There is an increase in the bond strength of the resin cement with the prefabricated posts after the various surface treatments.
本研究的目的是评估纤维增强桩和金属桩的表面处理对树脂粘结水门汀粘结力的影响。
用定制的金属棒制作60个甲基丙烯酸甲酯标本。样本被分为六组(F1、F2、F3、M1、M2和M3),每组10个标本(n = 10)。前三组(F1、F2和F3)用于纤维桩,(M1、M2和M3)用于金属桩。桩道预备使用桩制造商提供的专用钻头,长度为14毫米。F1和M1为对照组。F2和M2组的桩用70μm AlO颗粒进行空气颗粒研磨5秒,距离恒定为20毫米,用酒精清洁后粘结到桩道中。F3和M3组的桩先进行空气颗粒研磨,然后涂底漆。将桩粘结到桩道中后,用电动曲线锯将丙烯酸块切成厚度为3毫米的四个标本。然后在万能试验机上对这些切片进行推出试验。
用AlO颗粒进行空气颗粒研磨以及空气研磨后涂底漆,纤维桩和金属桩与树脂水门汀的粘结强度均有统计学上的显著提高。
经过各种表面处理后,预制桩与树脂水门汀的粘结强度有所提高。