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Microstructure of dental porcelains in a laser-assisted rapid prototyping process

机译:激光辅助快速成型过程中牙科瓷的微观结构

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摘要

Objectives. The goals of this study were to investigate the phase transformation and microstructure of dental porcelain bodies densified via a moving laser beam and to develop an understanding of how the microstructure of the dental porcelain varies with the laser processing condition and the position relative to the center of the laser beam. Methods. A moving laser beam was used to scan and densify a commercial dental porcelain powder bed. The porcelain powder compact was also sintered using a furnace at different temperatures. The phase transformation and microstructure of these dental porcelain bodies were compared and investigated using a host of analytical instruments including scanning electron microscopy, X-ray diffraction, thermogravimetric analysis, and quantitative image analysis. Results. Based on the temperature dependence of the leucite content in the dental porcelain derived from the furnace-sintered samples, the temperature distribution in the dental porcelain body during laser densification was established. The microstructure of the laser-densified porcelain body was found to be dependent of the location relative to the center of the laser beam and the average laser densification temperature. Significance. The understanding of how the microstructure of dental porcelain bodies varies with the laser processing condition and the location with respect to the center of the laser beam was developed. Based on this understanding, the laser processing condition has been optimized to achieve the desired microstructure and densification of dental porcelain bodies simultaneously.
机译:目标。这项研究的目的是研究通过移动激光束致密的牙科瓷器本体的相变和微观结构,并了解牙科瓷器的微观结构如何随激光加工条件和相对于牙齿中心的位置而变化。激光束。方法。移动激光束用于扫描和致密化商用牙科瓷粉床。还使用不同温度的炉子来烧结瓷粉块。使用一系列分析仪器,包括扫描电子显微镜,X射线衍射,热重分析和定量图像分析,比较和研究了这些瓷牙体的相变和微观结构。结果。基于源于炉内烧结样品的牙瓷中白云石含量的温度依赖性,建立了激光致密化过程中牙瓷体内的温度分布。发现激光致密化瓷体的微观结构取决于相对于激光束中心的位置和平均激光致密化温度。意义。对牙科瓷器体的微观结构如何随激光加工条件以及相对于激光束中心的位置的变化有了了解。基于这种理解,已经优化了激光加工条件,以同时实现所需的显微结构和牙科瓷体的致密化。

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