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首页> 外文期刊>Journal of the European Ceramic Society >Laser scanning parameters on fabrication of ceramic parts by liquid phase sintering
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Laser scanning parameters on fabrication of ceramic parts by liquid phase sintering

机译:液相烧结制备陶瓷零件的激光扫描参数

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Layer manufacturing for fabricating ceramic parts has been carried out by a wet process known as Ceramic Laser Sintering; the process employed ceramic slurry comprised of silica powder, clay, silica gel, and water. The aim of the present research is to establish a systematic method for measuring the width and depth of the scan line on the ultra-thin layer sintered with the laser scanning. Besides laser power and scan speed, laser beam diameter was also included as one of the significant scanning parameters. Furthermore, to optimize the scanning process, a 'critical point' was defined. The working temperature at the critical point is near the melting point of the silica powder. By varying the laser power, the scan speed, and the beam diameter, the optimized scanning parameter combinations can be obtained to produce a series of critical line depths at the critical points. Based on the critical line depth, a proper layer thickness for fabricating sintering part can be determined. Parts possessed inter-connective porous structure, better surface quality, and higher strength can be obtained by employing the optimized scanning parameter combinations.
机译:已经通过称为陶瓷激光烧结的湿法进行了用于制造陶瓷部件的层制造。该方法使用由二氧化硅粉末,粘土,硅胶和水组成的陶瓷浆料。本研究的目的是建立一种测量在激光扫描烧结的超薄层上扫描线的宽度和深度的系统方法。除了激光功率和扫描速度外,激光束直径也被视为重要的扫描参数之一。此外,为了优化扫描过程,定义了一个“临界点”。临界点的工作温度接近二氧化硅粉末的熔点。通过改变激光功率,扫描速度和光束直径,可以获得优化的扫描参数组合,以在临界点处产生一系列临界线深度。基于临界线深度,可以确定用于制造烧结部件的适当的层厚度。通过使用优化的扫描参数组合,可以获得具有互连的多孔结构,更好的表面质量和更高的强度的零件。

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