Kamath Vignesh, Kamath Mayuri, Bhargava Abhinav, Shetty Thilak, Rodrigues Shobha J, Pai Umesh Y, Saldanha Sharon, Mahesh M, Hegde Puneeth, Bajantri Prashant, Mukherjee Sandipan, Sales Ann
Department of Prosthodontics and Crown and Bridge, Manipal College of Dental Sciences, Mangalore, Manipal Academy of Higher Education, Manipal, Karnataka, India.
Department of Prosthodontics Crown and Bridge, A. J Institute of Dental Sciences, Mangalore, Karnataka 575004, India.
Int J Dent. 2022 May 30;2022:2557127. doi: 10.1155/2022/2557127. eCollection 2022.
To evaluate and compare the shear bond strength of feldspathic porcelain to four distinctively surface-treated Ni-Cr and Co-Cr alloys and to assess the impact of oxidation-heat treatment on porcelain to base metal alloy bond strength.
40 specimens each of nickel-chromium alloy and cobalt-chromium alloy were cast. A total of four groups of specimens were created. Group I was surface-treated by sandblasting with 50 m alumina particles, Group II was surface-treated by sandblasting with 110 m alumina particles, Group III and Group IV were surface-treated with 250 m alumina particles. In Group IV, after sandblasting initially with 250 m alumina particles, the alloys were subjected to oxidation and resandblasting with 250 m alumina particles. Each of the specimen was coated with opaque and body porcelain and fired to a total thickness of 2 mm porcelain. A universal measuring machine was used to assess shear bond strength at a crosshead speed of 0.5 mm/min.
Two-way ANOVA followed by Tukey's post hoc test was used to assess the significant difference within the groups. Unpaired -test was used for the intergroup comparison of the obtained data. The study showed that the size of the air abrasion particles used for sandblasting significantly influenced the porcelain to metal surface bond strength, with value <0.001. The bond strength values of the two alloys tested showed no major variations. Result also showed that oxidation influences the metal-ceramic bond strength.
The bond strength of the metal-ceramic interface is influenced by the alloy's surface treatment. The oxidation process impacts the bond strength of the metal-ceramic system.
评估并比较长石质瓷与四种经过不同表面处理的镍铬合金和钴铬合金之间的剪切粘结强度,并评估氧化热处理对瓷与贱金属合金粘结强度的影响。
铸造40个镍铬合金试样和40个钴铬合金试样。共创建四组试样。第一组通过用50μm氧化铝颗粒喷砂进行表面处理,第二组通过用110μm氧化铝颗粒喷砂进行表面处理,第三组和第四组用250μm氧化铝颗粒进行表面处理。在第四组中,先用250μm氧化铝颗粒喷砂,然后对合金进行氧化处理,再用250μm氧化铝颗粒重新喷砂。每个试样均涂覆不透明瓷和体瓷,并烧制至瓷层总厚度为2mm。使用万能测量机以0.5mm/min的十字头速度评估剪切粘结强度。
采用双向方差分析并随后进行Tukey事后检验来评估组内的显著差异。对获得的数据进行组间比较时使用不成对t检验。研究表明,用于喷砂的空气磨料颗粒尺寸对瓷与金属表面的粘结强度有显著影响,P值<0.001。所测试的两种合金的粘结强度值没有重大差异。结果还表明氧化会影响金属陶瓷粘结强度。
金属陶瓷界面的粘结强度受合金表面处理的影响。氧化过程会影响金属陶瓷系统的粘结强度。