The Effect of Aging on Composition and Surface of Translucent Zirconia Ceramic

立方氧化锆 材料科学 光泽度(光学) 化学成分 表面粗糙度 单斜晶系 复合材料 陶瓷 表面光洁度 摩擦学 化学状态 X射线光电子能谱 氧化物 化学工程 冶金 化学 晶体结构 结晶学 有机化学 工程类 涂层
作者
Korina Mešić,Igor Majnarić,Jasmina Obhođaš,Gorana Baršić,Ketij Mehulić
出处
期刊:Acta stomatologica Croatica [School of Dental Medicine, University of Zagreb]
卷期号:54 (4): 339-352 被引量:6
标识
DOI:10.15644/asc54/4/1
摘要

Objectives: To examine the effect of two aging protocols on the chemical and phase composition as well as the surface state of monolithic translucent zirconia ceramics. Material and Methods: Translucent zirconia ceramics KATANA-Zirconia STML with different surface treatments (no treatment, K1, K2; glazed, G1-G8; polished, P1-P8) underwent testing in order to examine how the two aging protocols (three-hour hydrothermal degradation in an autoclave at 134 °C and 2 bars: G1-G4, P1-P4, and sixteen-hour chemical degradation in four-percent acetic acid at 80 °C (ISO 6872): G5-G8, P5-P8) affect chemical composition, particularly the share of stabilizing yttrium oxide (Energy Dispersive XRay Fluorescence – EDXRF), phase composition (X-ray diffraction – XRD) and surface state in terms of roughness and gloss. Results: Aging protocols did not affect the tested chemical composition stability of specimens and a high share of stabilizing yttrium-oxide (≥10% of total content), which correlates with the absence of monoclinic phase. A decrease in gloss on all specimens is statistically significant. Chemical degradation substantially increased the surface roughness of tested specimens. Conclusions: Translucent monolithic zirconia demonstrated a stable chemical composition and resistance to tetragonal-to-monoclinic transformation. Surface gloss was significantly reduced, especially in polished specimens. Contrary to glazed specimens, the tested polished specimens manifested an increase in surface roughness. Glazing the surface of translucent monolithic zirconia produces better esthetic, tribological and hygienic effects than polishing.

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