首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.4; 20060506-11; Barcelona(ES) >IMPROVED HIGH CYCLE FATIGUE DAMAGE TOLERANCE OF TURBINE ENGINE COMPRESSOR COMPONENTS BY LOW PLASTICITY BURNISHING (LPB)
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IMPROVED HIGH CYCLE FATIGUE DAMAGE TOLERANCE OF TURBINE ENGINE COMPRESSOR COMPONENTS BY LOW PLASTICITY BURNISHING (LPB)

机译:低塑性抛光(LPB)提高了涡轮发动机压缩机组件的高周疲劳损伤耐受性

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摘要

Significant progress has been made in the application of low plasticity burnishing (LPB) technology to military engine components, leading to orders of magnitude improvement in damage tolerance. Improved damage tolerance can facilitate inspection, reduce inspection frequency, and improve engine operating margins, all leading to improved military readiness at significantly reduced total costs. Basic understanding of the effects of the different LPB process parameters has evolved, and finite element based compressive residual stress distribution design methodologies have been developed. By incorporating accurate measurement of residual stresses to verify and validate processing, this combined technology leads to a total solutions approach to solve damage problems in engine components. An example of the total solution approach to develop LPB processing of a 1st stage Ti-6Al-4V compressor vane to improve the foreign object damage (FOD) tolerance from 0.002 in. to 0.025 in. is presented. The LPB process, tooling, and control systems are described, including recent developments in real-time process monitoring for quality control. Performed on CNC machine tools, LPB processing is easily adapted to overhaul and manufacturing shop operations with quality assurance procedures meeting military and industry standards, facilitating transition to military depots and manufacturing facilities.
机译:在将低塑性抛光(LPB)技术应用于军用发动机组件方面已经取得了重大进展,从而使损伤承受能力提高了几个数量级。改进的损坏容忍度可以促进检查,减少检查频率并提高发动机工作裕度,所有这些都可以大大降低总成本,从而提高军事战备状态。对不同LPB工艺参数影响的基本理解已经发展,并且已经开发了基于有限元的压缩残余应力分布设计方法。通过结合残余应力的精确测量以验证和验证工艺,该组合技术导致了解决发动机零件损坏问题的整体解决方案。提出了开发第一阶段Ti-6Al-4V压缩机叶片的LPB处理以将异物损坏(FOD)公差从0.002英寸提高到0.025英寸的整体解决方案的示例。描述了LPB过程,工具和控制系统,包括用于质量控制的实时过程监控的最新进展。 LPB处理是在CNC机床上执行的,其质量保证程序满足军事和行业标准,很容易适应大修和制造车间的操作,从而有利于过渡到军事仓库和制造工厂。

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