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首页> 外文期刊>Engineering failure analysis >Diagnosis of EMD645 diesel engine connection rod failure through modal testing and finite element modeling
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Diagnosis of EMD645 diesel engine connection rod failure through modal testing and finite element modeling

机译:通过模态测试和有限元建模诊断EMD645柴油机连接杆故障

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摘要

Connection rods are best known through their use in internal combustion piston engines. GM-GT26 locomotive uses a 3300 horse power V type engine with 16 cylinders that works at maximum crank speed of 900 RPM. The present study is concerned with the failure of a 645E3B engine connection rod with a reported catastrophic deformation due to unknown reasons. This rod has suffered from simultaneous bends in two surfaces with obvious marks of failure. A theoretical procedure, an experimental modal analysis technique and simulation by using finite element engineering softwares are used for this study. It includes finding the natural frequencies and the corresponding mode shapes for a new connection rod. This is then used to validate the FEM simulated model. The critical loads and the buckling forces on the connection rod are then calculated. The maximum loads are calculated by using the classical approaches and are verified by simulation in ADAMS-Engine software. The dynamic modeling includes rigid and flexible beam models and the torsional modes of vibrations are also considered. It is concluded that the connection rod failure is due to buckling at the presence of hydrolock phenomenon. The outcome of this research provides vital information for the proper operation and maintenance of heavy duty Diesel engines.
机译:连接杆通过它们在内燃活塞发动机中最着名。 GM-GT26机车使用3300马力V型发动机,具有16个气缸,可在最大曲柄速度为900 rpm。目前的研究涉及645E3B发动机连接杆的故障,由于未知原因,报告的灾难性变形具有报告的灾难性变形。该杆在两个表面中同时弯曲,具有明显的失败标记。通过使用有限元工程软件使用有限元工程软件的理论程序,实验模态分析技术和仿真用于本研究。它包括找到新连接杆的自然频率和相应的模式形状。然后用于验证FEM模拟模型。然后计算连接杆上的临界载荷和屈曲力。通过使用经典方法计算最大负载,并通过ADAMS-Engine软件的仿真验证。动态建模包括刚性和柔性的光束模型,也考虑了振动的扭转模式。结论是,连接杆故障是由于在水利力现象存在下屈曲。该研究的结果为重型柴油发动机的适当运行和维护提供了重要信息。

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