首页> 外文期刊>Journal of Materials Engineering and Performance >High Cycle Fatigue Performance in Laser Shock Peened TC4 Titanium Alloys Subjected to Foreign Object Damage
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High Cycle Fatigue Performance in Laser Shock Peened TC4 Titanium Alloys Subjected to Foreign Object Damage

机译:激光冲击的高循环疲劳性能在激光震动TC4钛合金受到异物损伤

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摘要

During their service, titanium alloys are likely to suffer from the foreign object damage (FOD), resulting in a decrease in their fatigue strength. Laser shock peening (LSP) has been proved to effectively increase the damage tolerance of military engine components by introducing a magnitude compressive residual stress in the near-surface layer of alloys. In this paper, smooth specimens of a TC4 titanium alloy were used and treated by LSP and subsequently exposed to FOD, which was simulated by firing a steel sphere with a nominal velocity of 300 m/s, at 90A degrees with the leading edge of the LSP-treated region using a light gas gun. All impacted specimens were then subjected to fatigue loading. The results showed that LSP could effectively improve the fatigue strength of the damaged specimens. The effect of LSP on the fatigue strength was assessed through fracture observations, microhardness tests and residual stress analyses. The residual stresses due to the plastic deformation caused by LSP and the FOD impact, which were found to play a crucial role on the fatigue strength, were determined using the commercial software ABAQUS.
机译:在他们的服务期间,钛合金可能遭受异物损伤(FOD),导致疲劳强度降低。通过在近表面层中引入近表面层的幅度压缩残余应力,已经证明激光冲击喷丸(LSP)通过在近表面层中引入幅度压缩残余应力,有效地提高了军用发动机部件的损伤容差。在本文中,使用TC4钛合金的平滑样品并通过LSP处理并随后暴露于FOD,通过标称速度为300 m / s的标称速度烧制钢球,在90A度与前沿的边缘模拟使用轻气枪的LSP处理区域。然后对所有受影响的标本进行疲劳负载。结果表明,LSP可以有效地提高损坏标本的疲劳强度。通过断裂观察,显微硬度试验和残留应力分析评估LSP对疲劳强度的影响。使用商业软件ABAQUS确定,由于LSP引起的塑性变形和FOD碰撞引起的塑性变形引起的残余应力是由疲劳强度发挥至关重要的作用。

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