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Correlation Between Process Parameter and Primary Dendrite Arm Spacing in Laser Welding of Cu and Al
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作者 薛志清 胡绳荪 +1 位作者 左迪 申俊琦 《Transactions of Tianjin University》 EI CAS 2014年第5期315-321,共7页
A combined numerical model of thermal field and the primary dendrite arm spacing (PDAS) was proposed to correlate the process parameters and PDAS in laser welding of Cu and A1. The solidification parameters simulate... A combined numerical model of thermal field and the primary dendrite arm spacing (PDAS) was proposed to correlate the process parameters and PDAS in laser welding of Cu and A1. The solidification parameters simulated by the finite volume method with commercial software ANASYS FLUENT were applied in the PDAS model to predict the dendrite arm spacing of fusion zone. Dendrite was also examined by the metallographic method to validate the model. Results indicate that the calculated PDAS agrees with metallographic measurements reasonably, especially the Hunt model. PDAS increases apparently with increasing laser power while decreases slightly with increasing welding speed. Increasing laser power increases the secondary dendrite and increasing welding speed increases the microporosity in dendrite. 展开更多
关键词 laser welding ALUMINUM copper modeling primary dendrite ann spacing
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