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Evaluation of Microstructural Characteristics in Alumina Produced by Selective Laser Stereolithography and Detonation Gun Spraying

机译:通过选择性激光立体光刻和爆轰喷枪喷涂产生氧化铝微观结构特征的评价

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The important microstructural characteristics of Al(2)O(3)produced via detonation gun spraying (DGS) deposition and laser stereolithography (3D printing) were investigated in this study. Microstructural observation indicated that microstructure of 3D-printed samples mostly consisted of alumina and voids, while coating samples contained extra features such as splat boundaries, pores, and cracks. The DGS deposited alumina was characterized by higher density with 3.0 +/- 0.6% porosity compared to the additive manufacturing processed samples with 8.1 +/- 0.8% porosity. Existence of some residual carbon was detected in 3D-printed alumina sample via energy-dispersive x-ray spectroscopy. The feedstock powder used for both processes was pure alpha-Al2O3. While the x-ray diffraction results showed no phase change in 3D-printed samples, DGS deposited alumina coating contained a mixture of alpha-Al(2)O(3)and gamma-Al(2)O(3)phases. The phase distribution discovered by x-ray diffraction was confirmed by diffraction patterns obtained from transmission electron microscopy.
机译:在本研究中研究了通过爆炸喷枪喷涂(DGS)沉积和激光立体光刻(3D打印)产生的Al(2)O(3)的重要组织特性。微观结构观察表明3D印刷样品的微观结构主要由氧化铝和空隙组成,而涂层样品包含额外的特征,例如Splat边界,孔隙和裂缝。 DGS沉积的氧化铝的特征在于与添加剂制造加工的样品相比具有3.0 +/- 0.6%的孔隙率高,具有8.1 +/- 0.8%孔隙率。通过能量分散X射线光谱在3D印刷的氧化铝样品中检测一些残留碳的存在。用于两个方法的原料粉末是纯α-Al2O3。虽然X射线衍射结果显示在3D印刷样品中没有相变,但DGS沉积的氧化铝涂层含有α-Al(2)O(3)和γ-Al(2)O(3)相的混合物。通过从透射电子显微镜获得的衍射图来证实由X射线衍射发现的相分布。

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