无人机用马氏体时效钢零件的微观结构研究与优化

Rama Pavan Kumar Varma Indukuri, Rama Murty Raju Penmetsa, S. R. Chalamalasetti, Rajesh Siriyala
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引用次数: 0

摘要

目的军用和无人机(UAV)应用,如火箭发动机外壳、导弹外壳和船体,都使用由马氏体钢制成的部件。马氏体时效钢具有优于其他金属的性能,使其更适合制造此类部件。基于田口方法的灰色关联分析(GRA)已用于当前的研究,以优化激光束焊接(LBW)工艺。还对GRA的最佳范围和贡献百分比等其他方面进行了估计。设计/方法/方法利用田口L16正交阵列设计和进行实验。选择激光功率(LP)、焊接速度(WS)和焦点位置(FP)三个参数进行焊接。输出响应是热影响区的上宽度(HAZup)、熔合区的上宽(FZup)和穿透深度(DOP)。使用方差分析(ANOVA)检验了上述关键参数对反应的影响。结果ANOVA的结果表明,对总体灰关联度(GRG)影响最大的参数是FP。最后,对焊缝几何形状进行金相表征和微观结构分析,以划分HAZ和熔合区(FZ)。原创性/价值由于马氏体时效钢LBW的最重要标准是提供更高的DOP、更高的FZ宽度和更低的热影响区,该研究旨在证明GRA技术在国防和无人系统等应用中解决多目标优化问题的适用性。
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Microstructure investigations and optimisation of maraging steel parts for UAV applications
PurposeMilitary and unmanned aerial vehicles (UAV) applications like rocket motor casings, missile covers and ship hulls use components that are made of maraging steel. Maraging steel has properties that are superior to other metals, making it more suitable for the fabrication of such components. A grey relational analysis (GRA) that is based on the Taguchi method has been utilised in the current study to optimise a laser beam welding (LBW) process. Further aspects such as GRA's optimum ranges and percentage contributions were also estimated.Design/methodology/approachA Taguchi L16 orthogonal array is utilised to design and conduct the experiments. Laser power (LP), welding speed (WS) and focal position (FP) are the three parameters are chosen for the process of welding. The output responses are the upper width of the heat-affected zone (HAZup), the upper width of the fusion zone (FZup) and the depth of penetration (DOP). The effect of the above key parameters on the responses was examined using an analysis of variance (ANOVA).FindingsThe results of ANOVA reveal that the parameter that has the most influence on the overall grey relational grade (GRG) is the FP. Finally, metallographic characterisation and a microstructural analysis are conducted on the weld bead geometry to demarcate the zone of HAZ and fusion zone (FZ).Originality/valueAs the most important criteria for LBW of maraging steels is the provision of higher DOP, higher FZ width and lower heat-affected zone, the study intended to prove the applicability of GRA technique in solving multi-objective optimisation problems in applications like defence and unmanned systems.
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