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Effect of surface finishing and thickness on the translucency of zirconia dental ceramics

机译:表面精加工和厚度对氧化锆牙科陶瓷透明度的影响

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摘要

The effects of different surface finishing procedures on the translucency of yttria stabilized zirconia ceramics (ZrO2) were evaluated. ZrO2-3mol.%Y2O3 (designed Zr3) or ZrO2-5mol.%Y2O3(Zr5) specimens with thickness varying between 0.5 and 1.5 mm were obtained by sintering at 1500 degrees C for 2 h. Surface finishing of the sintered specimens was done in three distinct manners: polishing with diamond pastes, blasting with Al2O3 particles and blasting with Al2O3-SiO2 particles, according to the preparation protocol for dental prostheses. These sample groups were characterized by X-Ray diffraction analysis, scanning electron microscopy, surface roughness and spectrophotometry. The sintered ceramics exhibited relative densities higher than 99% and were composed of 68.5% and 31.5%of tetragonal (t)-ZrO2 and cubic(c)-ZrO2 for composition Zr3 and 25.2% and 74.8% for composition Zr5, respectively. Furthermore, 1.5 to 1.8% of monoclinic (m)-ZrO2, has been found in the blasted surfaces. The average grain size varied from 0.5 pm for Zr3 to 1.45 mu m for the Zr5 samples. After polishing, all samples presented a surface roughness R-a of about 0.05 mu m, while blasting resulted in an increased roughness ranging between 1.24 mu m and 1.49 mu m.Samples rich in (c)-ZrO2 phase (Zr5) are more translucent than samples rich in (t)-ZrO2(Zr3) because of their larger grain size and because the cubic phase is less anisotropic than (t)ZrO2. Furthermore, the translucency of thinner samples is more affected by abrasive blasting because they also present the highly anisotropic monoclinic(m)-ZrO(2 )phase and, therefore, the reduction of translucency is more pronounced. Parameters such as grain size, crystalline phase composition, porosity and grain boundary density are used to explain the phenomena involved in the differences of translucency of these materials.
机译:评估了不同表面整理程序对氧化钇稳定氧化锆陶瓷(ZrO2)的透明度的影响。通过在1500℃下烧结2小时,获得厚度为0.5和1.5mm的厚度在0.5和1.5mm之间的ZrO2-3mol。%Y2O3(设计的Zr3)或ZrO2-5​​mol。%Y2O3(Zr 5)标本。烧结样品的表面整理是以三种不同的方式进行:用金刚石糊擦拭,用Al2O3颗粒爆炸并用Al 2 O 3-SiO 2颗粒爆破,根据牙科假体的制备方案。这些样品基团的特征在于X射线衍射分析,扫描电子显微镜,表面粗糙度和分光光度法。烧结陶瓷表现出高于99%的相对密度,并分别由组合Zr5分别为组合物Zr3的68.5%和31.5%的四边形(T)-Zro2和立方(C)-Zro2组成。此外,在喷砂表面中发现了1.5至1.8%的单斜晶(M)-Zro2。对于Zr5样品,平均晶粒尺寸从0.5μm变化为Zr3至1.45μm。在抛光后,所有样品呈现约0.05μm的表面粗糙度Ra,而爆破导致富含(C)-Zro2相(Zr5)的1.24μm和1.49μmm。富含粗糙度的粗糙度增加比样品更半透明富含(T)-Zro2(Zr3),因为它们的粒度较大,因为立方相位不如(t)ZrO2。此外,较薄样品的半透光性受到磨料爆破的影响更大,因为它们还存在高各向异性单斜(M)-Zro(2)相,因此,半透明的还原更加明显。使用诸如晶粒尺寸,结晶相组合物,孔隙率和晶界密度的参数来解释这些材料的半透明差异的现象。

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