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Microstructural characterization and comparative evaluation of physical, mechanical and biological properties of three ceramics for metal-ceramic restorations

机译:三种用于金属陶瓷修复体的陶瓷的微观结构表征和物理,机械和生物学性能的比较评估

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Objectives. A wide variety of dental ceramics compositions have been introduced in dental clinical practice in order to combine desired aesthetics with superior mechanical performance. The aim of the present study was to investigate the microstructural changes in three dental ceramics after their sintering according to manufacturers' instructions and to comparatively evaluate some of their physical, mechanical and biological properties. Methods. The analysis of the phases present in each material before and after sintering was performed with scanning electron microscopy (SEM), Fourier transform infrared spec-troscopy (FTIR) and X-ray diffraction analysis (XRD). The thermal properties of ceramic specimens were evaluated with differential thermal and thermogravimetric analysis (TG-DTA). The mechanical properties evaluated were fracture toughness, Young's modulus and microhardness with the Vickers indentation method. MTT assay was used for cell proliferation assessment. One-way analysis of variance (ANOVA) with Bonferroni multiple comparisons tests was used to determine statistically significant differences (significance level of p< 0.05). Results. Results showed a remarkable variation among the three ceramic compositions of leucite content in the starting unheated ceramic powders ranging between 14 and 32 wt.% and in the respective sintered powders ranging between 15 and 41 wt.% The low fusing glass-ceramic and the high fusing leucite-based ceramic presented significantly higher fracture toughness (p < 0.001) and microhardness and lower modulus of elasticity (p<0.05) compared to the low fusing feldspathic ceramic. The three ceramics were almost equivalent concerning their in vitro biological behavior. Significance. Variations in crystal structure, distribution and composition are related to differences concerning mechanical properties of dental ceramics.
机译:目标。为了将所需的美观性与优异的机械性能相结合,已经在牙科临床实践中引入了多种牙科陶瓷组合物。本研究的目的是根据制造商的说明研究三种牙科陶瓷在烧结后的微观结构变化,并比较评估其某些物理,机械和生物学特性。方法。使用扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR)和X射线衍射分析(XRD)对烧结前后每种材料中存在的相进行分析。用差示热和热重分析(TG-DTA)评估了陶瓷样品的热性能。使用维氏压痕法评估的机械性能为断裂韧性,杨氏模量和显微硬度。 MTT测定用于细胞增殖评估。使用Bonferroni多重比较测试进行单向方差分析(ANOVA),以确定统计学上的显着差异(显着性水平为p <0.05)。结果。结果表明,在三种陶瓷成分中,白云母含量在未加热的起始陶瓷粉末中介于14至32重量%之间,在各自的烧结粉末中介于15至41重量%之间。低熔点玻璃陶瓷和高熔点玻璃与低熔长石质陶瓷相比,熔融白云母基陶瓷具有更高的断裂韧性(p <0.001),显微硬度和较低的弹性模量(p <0.05)。三种陶瓷在体外生物学行为方面几乎相等。意义。晶体结构,分布和组成的变化与有关牙科陶瓷机械性能的差异有关。

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