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Statistical analysis of pulsed laser beam welding repair strategies of nickel-base superalloys

机译:镍基超合金脉冲激光束焊接策略的统计分析

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Pulse shaping is a suitable option to adapt energy input and temperature gradients in the base material during filler wire assisted laser beam welding, although the influence on the temperature-depended microstructure and γ’-precipitation strengthening of Nickel-base superalloys as well as the process windows are not sufficiently understood so far. Therefore, the influence of pulse parameters, preheating temperature, hot-wire heating power and wire feeding rate on the deposition process and the resulting macro- and microstructure of similar Nickel-base superalloy joints of Inconel 738 low carbon (IN 738 LC) with Haynes (HS 282) filler are investigated. The statistical analysis of the multidimensional parameter space with respect to the geometric properties of the weld seams (dilution, aspect ratio and wetting angle) and hot-crack formation revealed high reliability and predictability concerning individual choice of suitable parameters in field repair application.
机译:脉冲整形是在填充线辅助激光束焊接期间适应基材中基材中的能量输入和温度梯度的合适选择,尽管对镍基超合金的温度依赖的微观结构和γ'沉淀强化的影响以及该过程的影响到目前为止,Windows没有充分理解。因此,脉冲参数,预热温度,热线加热功率和送料速率对沉积过程的影响以及由Haynes的Inconel 738低碳(738 LC中的类似镍基超合金接头的所得宏观和微观结构(HS 282)调查填料。关于焊缝的几何特性的多维参数空间统计分析(稀释,纵横比和润湿角度)和热裂纹形成揭示了在现场修复应用中的各个选择的各个选择的高可靠性和可预测性。

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