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Influence of gamma-alumina coating on surface properties of direct metal laser sintered 316L stainless steel

机译:γ-氧化铝涂层对直接金属激光烧结316L不锈钢表面性质的影响

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Direct metal laser sintering (DMLS) is an additive manufacturing technique that enables the production of customized and complex shaped stainless steel products. Application of DMLS parts to critical sectors requires enhanced surface properties. Although extensive research has been undertaken by many investigators on gamma-alumina coating on conventionally processed SS 316L, there has been no significant exploration of the properties of SS 316 L processed through DMLS process with and without coating. In this study, an attempt has been made to coat gamma-alumina ceramics over 316L SS substrate and report its effects. gamma-alumina synthesised using sol-gel technique was examined through Fourier-Transform Infrared Spectroscopy and X- Ray Diffractometer. The coating were 28-36.77 mu m thick and had amorphous structures. Characterization on coated substrate displayed a 33.87% increases in hardness and 81.91% increase in roughness. The water contact angle of the coated substrate exceeded bare substrate measurements by over 340. I-corr value of 0.0967 for coated substrate confirmed the anti-corrosive behaviour, which was found to be very much an essential requirements for this study. Compared with conventional processed SS 316L, the performance of DMLS SS 316L, the performance of DMLS SS 316L bare substrate and coated substrate are mainly governed by properties such as porosity, laser scanning effect, in build residual stress and surface finish. The development of uniform and adherent coating of gamma-alumina acts as a mechanical barrier for enhancement of the surface properties which will enlighten the research and applications in the fields of biomedical, aerospace and automobile industries.
机译:直接金属激光烧结(DMLS)是一种添加剂制造技术,可实现定制和复杂的不锈钢产品。 DMLS部件在关键部门的应用需要增强的表面属性。尽管在常规处理的SS 316L上进行了广泛的许多研究人员对γ-氧化铝涂层进行了广泛的研究,但通过DMLS工艺与DMLS工艺进行了无涂层的SS 316 L的性能没有显着探索。在这项研究中,已经尝试过316LS底物的γ-氧化铝陶瓷并报告其效果。通过傅立叶变换红外光谱和X射线衍射仪检查使用溶胶 - 凝胶技术合成的γ-氧化铝。涂层厚度为28-36.77μm厚并具有非晶结构。涂覆基材的表征显示的硬度增加33.87%,粗糙度增加81.91%。涂覆的基板的水接触角超过裸衬底测量超过340.对于涂覆基材的I-err值为0.0967证实了抗腐蚀性行为,这被发现对本研究的基本要求非常重要。与传统的处理SS 316L相比,DMLS SS 316L的性能,DMLS SS 316L裸衬底和涂覆的基板的性能主要受诸如孔隙率,激光扫描效果的性质的性质,在构建残余应力和表面光洁度。 γ-氧化铝的均匀和粘附涂层的发展起到了用于增强表面性质的机械屏障,这将引发生物医学,航空航天和汽车行业领域的研究和应用。

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