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Surface Integrity of Machined Electron Beam Melted Ti6A14V Alloy Manufactured with Different Contour Settings and Heat Treatment

机译:机加工电子束的表面完整性熔化Ti6a14V合金不同的轮廓设置和热处理

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The powder-bed-fusion-based Electron Beam Melting(EBM)is rapidly gaining interest as a feasible process in the manufacturing industry for producing intricate Ti6A14V components.However,there is still a challenge of reducing production time and optimizing surface roughness.One way to improve surface roughness is to optimize the melting strategy,i.e.contour setting.This not only influences the obtained surface topographical features,but also the production time.Most industrial applications require subtractive post processing(machining)to obtain a desired functional surface.This paper is concerned with analysing surface and subsurface in turning of Ti6AI4V alloy,manufactured by EBM using different contour settings.Also,the effect of subsequent heat treatment,i.e.Hot Isostatic Pressing(HIP)is studied.The results indicate that avoiding of contours require a machining allowance of 1 mm to obtain surface roughness of about 0.5 μm(So).In case of three and five contours the machining allowance can be reduced to 0.25 mm.Microstructural differences originating from the subsequent HIP operation show no effect on machinability.Tensile residual stresses are generated when reaching down to the heat effected zone of contour settings.
机译:基于粉末床融合的电子束熔化(EBM)正在迅速获得兴趣,作为制造工业中的可行过程,用于生产复杂的Ti6a14V组分。然而,仍然存在减少生产时间和优化表面粗糙度的挑战。一路为了改善表面粗糙度是优化熔化策略,Iecontour环境。这不仅影响所获得的表面形貌特征,而且影响生产时间。大多数工业应用需要减去后处理(加工)以获得所需的功能表面。本文涉及通过使用不同的轮廓设置制造的Ti6ai4V合金转动Ti6ai4V合金的分析和地下。研究了随后的热处理,Iehot等静压(HIP)的效果。结果表明避免轮廓需要加工允许1毫米的表面粗糙度约为0.5μm(SO)。在三个和五轮廓的情况下,加工津贴可以减少到0.25mm.源自随后的髋部动作的差异显示没有对机械加工的影响。当达到蒸馏到轮廓设定的散热区时产生畸变残余应力。

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