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A parametric study of Inconel 625 wire laser deposition

机译:Inconel 625线激光沉积的参数研究

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Laser deposition with wire offers saving potentials over powder based systems. These include a cleaner processing environment, reduced economic and environmental cost of producing the wire, better surface finish and higher material deposition rates. This technique is rapidly finding applications for the manufacture and repair of high value components. For the first time, the deposition of Inconel 625 wire for single tracks at varying processing parameters using a 2-kW Ytterbium doped fibre laser has been investigated. A process map predicting the process characteristics in terms of wire dripping, smooth wire transfer and wire stubbing at different cladding conditions has been developed. Track geometrical characteristics including aspect ratio and contact angle were evaluated using surface profilometry and optical microscopy. Scanning electron microscopy equipped with energy dispersive X-ray spectroscopy was used to determine the dilution ratio (%) of the tracks. Wire deposition volume per unit length of track and energy per unit length of track were found to be key parameters influencing both the process and track geometrical characteristics. Aspect ratio and dilution ratio showed positive dependency whereas contact angle showed negative dependency on energy per unit length of track. Conversely, material deposition volume per unit length of track varied directly with contact angle but inversely with aspect ratio and dilution ratio (ranging from 0% to 24%). Processing conditions at which a combination of favourable single track properties including low contact angle (<80°), minimal dilution ratio (5-13%) and high surface quality were achieved are presented. These properties are required for depositing overlapped tracks of good surface finish, minimal dilution and free of inter-run porosity.
机译:与粉末基系统相比,使用金属丝进行激光沉积可节省潜力。这些包括更清洁的加工环境,降低的生产线经济性和环境成本,更好的表面光洁度和更高的材料沉积速率。该技术正在迅速发现用于制造和维修高价值组件的应用程序。首次研究了使用2 kW掺fiber光纤激光器以不同的处理参数在单个加工条件下沉积Inconel 625线材的方法。已经开发了一种工艺图,该工艺图根据在不同包层条件下的焊丝滴落,平滑的焊丝转移和焊丝截断来预测工艺特性。使用表面轮廓仪和光学显微镜评估了轨道的几何特征,包括长宽比和接触角。使用配备有能量色散X射线光谱学的扫描电子显微镜来确定痕迹的稀释率(%)。发现每单位轨道长度的导线沉积量和每单位轨道长度的能量是影响工艺和轨道几何特性的关键参数。纵横比和稀释比显示出正相关性,而接触角显示出每单位磁道长度对能量的负相关性。相反,每单位轨道长度的材料沉积量直接随接触角而变化,而随纵横比和稀释比(从0%到24%)成反比。提出了有利的单磁道特性(包括低接触角(<80°),最小稀释比(5-13%)和高表面质量)的加工条件。这些性能是沉积具有良好表面光洁度,最小稀释度和无中间间隙的重叠轨道所必需的。

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