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Using Laser Peening to Improve Shipbuilding and Material Life in Maritime Industry

机译:使用激光喷丸技术改善海运业的造船和材料寿命

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Since the invention of the laser in 1960, applications have enhanced numerous industries: communications, media, defense, medicine, commerce, logistics, manufacturing and more. Now, thanks to an innovative application of high-energy pulsed laser technology, lasers can be used to form metal components, while enhancing their fatigue strength and operational lifetime in harsh marine environments. Laser peening introduces deep compressive residual stresses into component surfaces, providing superior protection against fatigue cracking and failure. Laser peening has been widely adopted within the aviation and power generation industries to enhance critical turbine engine components. This paper introduces the technical parameters of laser peening, an overview of recent 3D scanning, fatigue and forming analysis accomplished in the National Shipbuilding Research Program (NSRP), an industry-led, Navy-sponsored collaboration of U.S. shipyards. The paper also provides an overview of LSP Technology's Procudo Laser Peening System. Efforts to date have identified multiple cost-savings and performance benefits in marine-grade alloys that apply to new construction and repair of marine vessels. Applying laser peening can provide a design enhancement for future vessels such as Ice Breaker and aluminum ship design while mitigating stress corrosion cracking and sensitization. Fatigue life testing of aluminum alloy 5083-H116 in several thicknesses has demonstrated that laser peened samples experience a fatigue lifetime improvement of 10 times that of untreated material. Laser peen forming compound curvatures has also been demonstrated with aluminum and steel. Shipyards can now implement their own on-site laser peening metal enhancement and forming equipment as LSP Technologies is the first manufacturer to sell industrial-grade production laser peening systems. For components such as propulsion shafts that are drivers for drydocking periodicities, this technology could provide significant cost savings for the Navy.
机译:自1960年激光器问世以来,其应用已促进了众多行业的发展:通信,媒体,国防,医药,商业,物流,制造等。现在,得益于高能脉冲激光技术的创新应用,激光可以用于形成金属部件,同时增强其在恶劣海洋环境中的疲劳强度和使用寿命。激光喷丸将深的残余压缩应力引入部件表面,从而提供出色的抗疲劳开裂和失效保护功能。激光喷丸在航空和发电行业已被广泛采用,以增强关键的涡轮发动机组件。本文介绍了激光喷丸技术参数,概述了美国造船厂在行业领导下由海军发起的国家造船研究计划(NSRP)中完成的最新3D扫描,疲劳和成形分析。本文还概述了LSP Technology的Procudo激光喷丸系统。迄今为止的努力已经确定了适用于新造和维修船舶的海洋级合金的多种节省成本和性能的好处。应用激光喷丸技术可以为未来的船舶(例如“破冰船”和铝制船舶设计)提供增强的设计,同时减轻应力腐蚀开裂和敏感性。多种厚度的铝合金5083-H116的疲劳寿命测试表明,激光喷丸处理的样品的疲劳寿命提高了未经处理材料的10倍。用铝和钢也已经证明了激光喷针形成复合曲率。由于LSP Technologies是第一家出售工业级生产激光喷丸系统的制造商,因此船厂现在可以实施自己的现场激光喷丸金属增强和成形设备。对于诸如用于干式对接周期性驱动器的推进轴之类的组件,该技术可以为海军节省大量成本。

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