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Solid freeform fabrication of alumina using laser-assisted ESAVD

机译:使用激光辅助ESAVD的固态无定形氧化铝制造

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Electrostatic spray assisted vapour deposition (ESAVD) has been used successfully to produce films and coatings. A combination of laser-assisted (LA) deposition and ESAVD has been developed for the direct fabrication of alumina ceramics. This novel laser-assisted ESAVD technique involves spraying a liquid precursor onto a substrate whilst a laser beam is simultaneously used to heat the precursor and cause the decomposition and chemical reactions of the precursor in order to produce a solid deposit. A desired three-dimensional (3-D) object can be formed through layer-by-layer deposition using a computer-controlled platform. Dense or porous alumina ceramics can be deposited on the substrate by optimizing the processing parameters. This paper reports the fabrication of alumina parts by the laser-assisted ESAVD method. The effect of processing parameters including laser scanning speed, laser beam size and laser power on the microstructure will be presented. Scanning electron microscope (SEM) and X-ray diffraction (XRD) have been used to characterise the phase and structure of the deposited alumina parts. (c) 2005 Elsevier B.V. All rights reserved.
机译:静电喷涂辅助气相沉积(ESAVD)已成功用于生产薄膜和涂层。已经开发了激光辅助(LA)沉积和ESAVD的组合以直接制造氧化铝陶瓷。这种新颖的激光辅助ESAVD技术涉及将液态前驱物喷涂到基板上,同时同时使用激光束加热前驱物并引起前驱物的分解和化学反应,从而产生固体沉积物。可以使用计算机控制平台通过逐层沉积来形成所需的三维(3-D)对象。通过优化工艺参数,可以在基板上沉积致密或多孔的氧化铝陶瓷。本文报道了通过激光辅助ESAVD方法制造氧化铝零件。将介绍包括激光扫描速度,激光束大小和激光功率在内的加工参数对微结构的影响。扫描电子显微镜(SEM)和X射线衍射(XRD)已用于表征沉积的氧化铝部件的相和结构。 (c)2005 Elsevier B.V.保留所有权利。

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