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On the surface integrity of additive manufactured and post-processed AlSilOMg parts

机译:关于添加剂制造和后处理后肺泡零件的表面完整性

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The research centres on the evaluation of surface integrity of AlSilOMg parts produced via laser-based powder bed fusion(LPBF)process,followed by vibratory surface finishing.The alloy is chosen for its applications in lightweight components used in electronic packaging,automotive and aerospace sectors.Initial experiments involve optimisation of key LPBF process parameters by analysing the surface roughness and density data of the built parts.A Taguchi Lis orthogonal array is used for the optmisation trials with variations in the laser power(P),beam scanning speed(v),hatch spacing(H)and island size(l).Latter experimental phase deals with microhardness and microstructure assessment of heat treated LPBF specimens that are produced using the optimised LPBF parameters,i.e.P:250 W,v:1500 mm/s,H:75 μm and/:2 mm.Microhardnesses of the annealed samples reduce by ~12% with respect to the as-built parts and the values remain almost unchanged from the annealed state following solution treatment and ageing.The fish-scale like melt-pools observed on the unheat treated samples begin to fade off in the annealed specimens and completely disappear after solution treatment and ageing,with silicon particles dispersed all over the aluminium matrix.The final experimental phase involves vibratory surface finishing of the as-built LPBF parts using a vibrating ceramic media mixed with different acid and amine based liquid compounds for 1-6 hours,followed by vibrating in a maize based media for another 1-6 hours.The process aids in reducing the parts'roughness,& by ~35-70%,however the effect is more prominent when using the ceramic media.
机译:通过激光基粉末融合(LPBF)工艺产生的山脉表面完整性的研究中心,其次是振动表面精加工。选择合金,以其在电子包装,汽车和航空航天领域的轻质部件中的应用.Initial实验涉及通过分析内置零件的表面粗糙度和密度数据来优化关键的LPBF工艺参数.AGUCHI LIS正交阵列用于激光功率(P),光束扫描速度(V)的含有变化的光学试验,舱口间距(h)和岛尺寸(l)。目的是使用优化的LPBF参数生产的热处理LPBF样本的微硬度和微观结构评估,IEP:250W,V:1500mm / s,H: 75μm和/:2 mm.退火样品的红外光度相对于原木部分减少〜12%,并且在解决方案处理后,这些值几乎不变地保持不变D播种。在未加热处理的样品上观察到的鱼鳞如熔融池开始在退火的标本中开始褪色,并在溶液处理和老化后完全消失,硅颗粒在铝基中分散。最后的实验阶段涉及振动使用振动陶瓷培养基与不同酸和胺基液体化合物混合的振动陶瓷培养物的表面整理1-6小时,然后在玉米基培养基中振动另外1-6小时。工艺有助于减少零部件,且〜35-70%,然而,在使用陶瓷媒体时效果更突出。

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