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Surface morphology and fracture in handpiece adjusting of a leucite-reinforced glass ceramic with coarse diamond burs

机译:含粗金刚石针的白云石增强玻璃陶瓷的机头调节中的表面形态和断裂

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The aim of this paper was to understand surface morphology and fracture occurring on leucite-reinforced glass ceramic surfaces adjusted with coarse diamond burs. The surface roughness was quantitatively assessed using stylus profilometry and was analyzed statistically. The surface morphology was viewed using scanning electron microscopy. Surface phase transformations were preliminarily studied using Raman spectrometry. The results show that the surface roughness did not significantly depend on either depth of cut (p > 0.05) or feed rate (p > 0.05). However, when decreasing the depth of cut and the feed rate, a tendency for brittle-to-ductile transition existed. The surface morphology consisted of microfracture, chipping, ductile removal scratches, smear areas and debris. Brittle fracture was the primary mechanism for material removal. Lateral and radial cracks due to the mechanical impact of diamond burs were the major cause of surface fracture in the leucite-reinforced glass ceramic. The maximum adjusting temperatures on the adjusted surfaces were estimated based on heat transfer analysis. The Raman spectra of the adjusted and unadjusted surfaces show a strong temperature-dependence of Raman shifts near 525-529 cm~(-1). This indicates the occurrence of temperature-induced cubic-tetragonal phase transformations in the adjusted leucite glass ceramic surfaces. These phase transformations are considered to contribute crack initiation and propagation on the adjusted surfaces.
机译:本文的目的是了解用粗金刚石针调节的白云石增强玻璃陶瓷表面的表面形貌和断裂。使用测针轮廓仪定量评估表面粗糙度,并进行统计分析。使用扫描电子显微镜观察表面形态。使用拉曼光谱法初步研究了表面相变。结果表明,表面粗糙度与切削深度(p> 0.05)或进给速度(p> 0.05)均不明显相关。然而,当减小切削深度和进给速度时,存在脆性-延性转变的趋势。表面形态包括微裂纹,碎裂,韧性去除划痕,涂片区域和碎屑。脆性断裂是去除材料的主要机理。金刚石钻针的机械冲击引起的横向和径向裂纹是白云石增强玻璃陶瓷表面断裂的主要原因。根据传热分析估算出被调节表面上的最大调节温度。调整后和未调整表面的拉曼光谱在525-529 cm〜(-1)附近表现出很强的温度依赖性。这表明在调节的白云石玻璃陶瓷表面中发生了温度诱导的立方四方相变。这些相变被认为有助于在调整后的表面上引发裂纹和扩展裂纹。

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