Serna-Meneses Catalina, Ocampo-Parra Gabriel, Arango-Santander Santiago, Garcia-Garcia Claudia, Restrepo-Tamayo Luis Felipe, Cardona-Jimenez Johnatan, Ossa Alexander, Pelaez-Vargas Alejandro
Universidad Cooperativa de Colombia, Medellín, Colombia.
School of Physics, Universidad Nacional de Colombia, Medellín, Colombia.
Int J Dent. 2022 Jun 6;2022:6666931. doi: 10.1155/2022/6666931. eCollection 2022.
The ceramics industry produces porcelain pastes using a controlled ratio of water and porcelain powder. Two methods are used to produce a dental porcelain paste: one-step mixing or incremental mixing.
To evaluate the optical properties of a feldspathic dental ceramic using two different ceramic paste preparation methods using a Bayesian approach.
Two groups of feldspathic porcelain discs, an incremental mixing group ( = 40) and a one-step mixing group ( = 40), were assessed. Groups were evaluated using spectrophotometry, and the translucency parameter (TP) of each sample was calculated. Surfaces were characterized by AFM and SEM. Statistical analysis was performed using a Bayesian approach.
Translucency parameter values of the incremental mixing group ranged from 1.65 to 3.41, while values for the one-step mixing group ranged from 3.62 to 5.74, this difference being statistically significant. The lowest roughness was obtained on the surface of discs in the one-step mixing group.
Feldspathic porcelain with lower translucency and higher roughness was obtained using the incremental mixture method.
陶瓷行业使用水和瓷粉的可控比例来生产瓷浆。有两种方法用于生产牙科瓷浆:一步混合法或分步混合法。
采用贝叶斯方法,评估使用两种不同陶瓷浆体制备方法制备的长石质牙科陶瓷的光学性能。
评估两组长石质瓷盘,分步混合组(n = 40)和一步混合组(n = 40)。使用分光光度法对两组进行评估,并计算每个样品的半透明度参数(TP)。通过原子力显微镜(AFM)和扫描电子显微镜(SEM)对表面进行表征。采用贝叶斯方法进行统计分析。
分步混合组的半透明度参数值范围为1.65至3.41,而一步混合组的值范围为3.62至5.74,这一差异具有统计学意义。一步混合组的瓷盘表面粗糙度最低。
采用分步混合法可获得半透明度较低且粗糙度较高的长石质瓷。