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    • 6. 发明授权
    • Laser repair method for nickel base superalloys with high gamma prime content
    • 具有高γ含量的镍基超级合金的激光修复方法
    • US06495793B2
    • 2002-12-17
    • US09833487
    • 2001-04-12
    • Sudhir Kumar Tewari
    • Sudhir Kumar Tewari
    • B23K2634
    • B23P6/007B23K26/144B23K26/32B23K26/34B23K26/342B23K35/0244B23K35/0255B23K35/3033B23K2101/001B23K2103/26C23C24/10F01D5/005
    • A laser repair method for a high gamma prime content Ni base superalloy substrate surface, with gamma prime content in the range of at least about 30 volume %, conducts the repair at ambient temperature without preheating the substrate surface and by controlling processing parameters to avoid cracking of the resulting weld bead during and after welding. The laser beam, operating in a power range of about 50-10000 watts per centimeter, is focused away from the substrate surface to provide a laser spot in the size range of about 0.03-0.2″. A relative movement between the substrate surface and the laser beam, for example at a rate in the range of about 1-100 inches per minute, provides an interaction time of no greater than about 10 seconds between the laser beam and the substrate surface. Concurrently, a repair alloy powder is deposited in the laser beam to melt and fuse the repair alloy powder into a molten repair alloy deposited on the substrate surface.
    • 对于具有至少约30体积%范围内的γ原子含量的高γ'含量的Ni基超合金基底表面的激光修复方法,在环境温度下进行修复而不预热衬底表面并通过控制加工参数以避免开裂 在焊接期间和之后产生的焊缝。 在大约50-10000瓦特/厘米的功率范围内工作的激光束被聚焦在远离衬底表面以提供大约0.03-0.2“尺寸范围内的激光光点。 衬底表面和激光束之间的相对运动,例如以约1-100英寸/分钟的范围内的速率提供在激光束和衬底表面之间不大于约10秒的相互作用时间。 同时,在激光束中沉积修复合金粉末,熔化并将修复合金粉末熔化成沉积在基材表面上的熔融修复合金。