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Process improvement in laser hot wire cladding for martensitic stainless steel based on the Taguchi method 被引量:5
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作者 Zilin HUANG Gang WANG +2 位作者 Shaopeng WEI Changhong LI Yiming RONG 《Frontiers of Mechanical Engineering》 SCIE CSCD 2016年第3期242-249,共8页
Laser hot wire cladding, with the prominent features of low heat input, high energy efficiency, and high precision, is widely used for remanufacturing metal parts. The cladding process, however, needs to be improved b... Laser hot wire cladding, with the prominent features of low heat input, high energy efficiency, and high precision, is widely used for remanufacturing metal parts. The cladding process, however, needs to be improved by using a quantitative method. In this work, volumetric defect ratio was proposed as the criterion to describe the integrity of forming quality for cladding layers. Laser deposition experiments with FV520B, one of martensitic stainless steels, were designed by using the Taguchi method. Four process variables, namely, laser power (P), scanning speed (Vs), wire feed rate (Vf), and wire current (/), were optimized based on the analysis of signal-to-noise (S/N) ratio. Metallurgic observation of cladding layer was conducted to compare the forming quality and to validate the analysis method. A stable and continuous process with the optimum parameter combination produced uniform microstructure with minimal defects and cracks, which resulted in a good metallurgical bonding interface. 展开更多
关键词 process optimization Taguchi method signalto-noise (S/N) ratio volumetric defect ratio laser hot wire cladding
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