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AN INNOVATIVE APPROACH TO TURBINE BLADE REFURBISHMENT

机译:涡轮叶片翻新的一种创新方法

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Reliable and efficient power generation is a major global issue due to both political and environmental concerns. Nevertheless many critical components, particularly the blades of the low pressure (LP) side of power generating steam turbines, are subjected to failure due to severe erosion at the leading edges. Since taking machines offline for maintenance and removal of damaged blade for repair is extremely expensive, increasing the service life of these critical components offers significant economic and political benefits. Conventional techniques to increase service life include brazing of an erosion shield at the leading edge of the turbine blades, open arc hard-facing, and cladding with erosion resistant materials using gas tungsten, manual metal or plasma transferred arc welding. We have investigated the potential of laser cladding [13] to deposit a high quality and erosion resistant protection shield on the leading edge of LP blades. Laser cladding offers unique advantages over the conventional techniques. The project to-date has demonstrated the feasibility of in-situ repair of turbine blades in trials conducted at a power station using a fibre delivered diode laser and a robot. A company, Hardwear Pty. Ltd., has been established to commercialise the technology.
机译:由于政治和环境问题,可靠和高效的发电是一个主要的全球问题。然而,由于在前缘处的严重腐蚀,许多关键部件,特别是发电蒸汽涡轮机的低压(LP)侧的叶片的叶片。由于将机器离线进行维护和拆卸损坏的刀片以进行维修,因此增加这些关键部件的使用寿命具有重要的经济和政治利益。为了提高使用寿命的常规技术包括在涡轮机叶片的前缘处的侵蚀屏蔽,使用气体钨,手动金属或等离子体转移电弧焊接打开弧形硬盘和耐腐蚀材料的包层。我们研究了激光熔覆的潜力[13],以在LP刀片的前缘上存放高质量和抗腐蚀的保护屏蔽。激光熔覆提供通过传统技术的独特优点。该项目迄今已证明使用纤维输送二极管激光器和机器人在发电站进行的试验中出于原位修复涡轮机叶片的可行性。一家公司,Hardwear Pty。有限公司,已建立以商业化该技术。

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