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Fatigue strength of yttria-stabilized zirconia polycrystals: Effects of grinding, polishing, glazing, and heat treatment

机译:赤虫稳定氧化锆多晶的疲劳强度:研磨,抛光,玻璃和热处理的影响

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摘要

This study aimed to evaluate and compare the effect of different surface post-processing treatments (polishing, heat treatment, glazing, polishing + heat treatment and polishing + glazing) on the superficial characteristics (micromorphology and roughness), phase transformation and fatigue strength of a Y-TZP ceramic ground with diamond bur. Discs of Y-TZP ceramic were manufactured (150:6872-2015; final dimensions of 15 mm in diameter and 1.2 +/- 0.2 mm in thickness) and randomly allocated according to the surface condition: Ctrl as sintered; Gr - ground with coarse diamond bur; Gr + HT - ground and subjected to the heat treatment; Gr + Pol ground and polished; Gr+ Pol + HT - ground, polished and heat treated; Gr + Gl ground and glazed; Gr + Pol + Gl - ground, polished and glazed. The following analyses were performed: roughness (n = 25), surface topography (n = 2), phase transformation (n = 2) and fatigue strength by staircase method (n = 20). All treatments influenced to some extent the surface characteristics of Y-TZP, being that polishing reduced the surface roughness, the m-phase content and improved the fatigue strength; glazing led to the lowest roughness values (Ra and Rz), although it showed the worst fatigue strength; heat treatment showed limited effect on surface roughness, led to complete reversion of the existing m-phase content to t-phase, without enhancing fatigue performance. Thus, a polishing protocol after clinic adjustment (grinding) of monolithic restorations based on polycrystalline zirconia material is mandatory for surface characteristics and fatigue performance improvements.
机译:本研究旨在评估和比较不同表面后处理处理的影响(抛光,热处理,玻璃窗,抛光+热处理和抛光+玻璃)对浅表特征(微晶和粗糙度),相变性和疲劳强度的效果Y-TZP陶瓷地面与金刚石BUR。制造Y-TZP陶瓷的圆盘(150:6872-2015;最终尺寸为15毫米,厚度为1.2 +/- 0.2mm),并根据表面状况随机分配:Ctrl如烧结; GR地面粗钻毛母线; GR + HT - 接地并经受热处理; gr + pol地面和抛光; GR + POL + HT - 接地,抛光和热处理; GR + GL地面和釉面; GR + POL + GL - 地,抛光和釉面。进行以下分析:通过阶梯法(n = 20),粗糙度(n = 25),表面形貌(n = 2),相变(n = 2)和疲劳强度(n = 20)。所有治疗影响在某种程度上影响了Y-TZP的表面特征,抛光降低了表面粗糙度,M相含量并提高了疲劳强度;玻璃导致最低粗糙度值(RA和RZ),尽管它显示出最疲劳强度;热处理对表面粗糙度显示有限的影响,导致现有的M相含量完全将现有的M相含量恢复为T相,而不提高疲劳性能。因此,基于多晶氧化锆材料的整体修复后的临床调整(研磨)抛光方案是表面特征和疲劳性能改进的强制性。

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