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Water droplet erosion mechanisms of Ti-6Al-4V.

机译:Ti-6Al-4V的水滴腐蚀机理。

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摘要

Water impingement erosion of materials can be a life-limiting phenomenon for the components in many erosive environments. For example, aircraft body exposed to rain, steam turbine blade, and recently in gas turbine coupled with inlet fogging system. The last is the focus of this study.;Inlet fogging system is the most common method used to augment gas turbine output during hot days; high ambient temperature causes strong deterioration of the engine performance. Micro-scaled droplets introduced into the inlet airflow allow the cooling of entering air as well as intercooling the compressor (overspray) and thus optimizes the output power. However, erosion damage of the compressor blades in overspray stage is one of the major concerns associated with the inlet fogging system.;The main objective of this research work (CRIAQ MANU419 project) is to understand the erosion induced by water droplets on Titanium alloy to eventually optimize the erosion resistance of the Ti-based compressor blade. Therefore, characterization of the water droplet erosion damage on Ti-6Al-4V receives the major importance. The influence of base material microstructure and impact parameters were considered in erosion evaluation in present study.;This work covers the characterization of the erosion damage on Ti-6Al-4V alloy in two parts: - The water droplet erosion damage through a novel experimental approach. The collected data were processed both qualitatively and quantitatively for multi-aspects damage study. - The influence of impact velocity on erosion in an attempt to represent the in-service conditions.
机译:在许多侵蚀性环境中,材料的水冲击侵蚀可能是限制部件寿命的现象。例如,暴露于雨水的飞机机体,蒸汽涡轮机叶片以及最近在燃气涡轮机中的进气口雾化系统。最后是本研究的重点。入口雾化系统是在炎热天气增加燃气轮机输出的最常用方法;环境温度过高会导致发动机性能严重下降。引入到进气流中的微型液滴不仅可以冷却进入的空气,还可以对压缩机进行中冷(过喷),从而优化了输出功率。然而,过度喷涂阶段压缩机叶片的腐蚀损坏是与进气雾化系统相关的主要问题之一。这项研究工作(CRIAQ MANU419项目)的主要目的是了解水滴在钛合金上引起的腐蚀。最终优化了Ti基压缩机叶片的耐蚀性。因此,表征水滴腐蚀对Ti-6Al-4V的损害具有重要意义。本研究在腐蚀评估中考虑了基体材料的微观结构和冲击参数的影响。这项工作涵盖了对Ti-6Al-4V合金腐蚀破坏的表征,分为两个部分:-通过新颖的实验方法对水滴进行腐蚀破坏。对收集到的数据进行定性和定量处理,以进行多方面损伤研究。 -冲击速度对侵蚀的影响,试图代表使用中的状况。

著录项

  • 作者单位

    Ecole de Technologie Superieure (Canada).;

  • 授予单位 Ecole de Technologie Superieure (Canada).;
  • 学科 Mechanical engineering.;Aerospace engineering.;Materials science.
  • 学位 D.Eng.
  • 年度 2014
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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