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An Investigation and 3D Crack Propagation Analysis of High Speed Flexible Coupling of Fighter Aircraft

机译:战斗机高速挠性联轴器的研究与3D裂纹扩展分析。

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The high speed flexible coupling (HSFC) transmits power from the aircraft engine gear box to the accessory gear box operating at high speed ranging from 10,000 to 18,000 rpm. The HSFC utilizes a series of thin annular, titanium alloy flexible plates, to accommodate larger parallel and axial misalignment that arises on the drive line. During ground testing, failure of flexible plate was observed. As a part of the failure analysis the extensive metallographic studies were done. This study showed that, failure was caused by the presence of Electron beam weld spatter on flexible plate, which was a crucial factor to the fatigue crack initiation phase. In order to complement the cause of failure, a 3D crack propagation simulation by FEA was done to predict the critical flaw size. This combined failure cause analysis approach has served as an efficient tool for optimized product development.
机译:高速挠性联轴器(HSFC)将动力从飞机发动机齿轮箱传递到附件齿轮箱,附件齿轮箱以10,000至18,000 rpm的高速运行。 HSFC使用一系列薄的环形钛合金柔性板,以适应传动线上出现的更大的平行和轴向未对准的情况。在地面测试期间,观察到柔性板的故障。作为失效分析的一部分,进行了广泛的金相研究。这项研究表明,故障是由于在柔性板上存在电子束焊接飞溅而造成的,这是疲劳裂纹萌生阶段的关键因素。为了弥补故障原因,FEA进行了3D裂纹扩展仿真,以预测关键缺陷尺寸。这种组合的故障原因分析方法已成为优化产品开发的有效工具。

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