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Analysis of fatigue failure on the keyway of the reduction gear input shaft connecting a diesel engine caused by torsional vibration

机译:扭转振动引起的柴油机减速器输入轴键槽疲劳失效分析

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摘要

The vibratory torque of a diesel engine caused by the reciprocating motion of the mass and gas pressure force of a cylinder is one of the main causes of the failure of the driving shaft of the diesel engine and the connecting shaft to the reduction gear. Because high cycle torsional fatigue can occur in the reduction gear shaft connecting the engine under vibratory torsional stress, the US Navy restricts it under the MIL G 17859D(SH) standard and suggests a procedure for evaluating the safety of the shaft for the reduction gear. In this study, the structural safety of the reduction gear input shaft in which fatigue failure occurs in typical naval vessels is investigated in accordance with the VDI 3822 RCA (root cause analysis) procedure based on the MIL G 17859D(SH) standard. When evaluating the safety factor in accordance with the MIL G 17859D(SH) standard, the alternating bending moment from the lateral vibration and the stress concentration factor under static load are considered. In addition, an improved design is suggested by CAE to satisfy the safety factor suggested by the MIL G 17859D(SH) standard.
机译:由气缸的质量和气压的往复运动引起的柴油发动机的振动转矩是柴油机的驱动轴和减速器的连接轴故障的主要原因之一。由于在振动扭转应力作用下连接发动机的减速机轴上可能发生高周疲劳,因此美国海军将其限制在MIL G 17859D(SH)标准之下,并提出了评估减速机轴安全性的程序。在这项研究中,根据基于MIL G 17859D(SH)标准的VDI 3822 RCA(根本原因分析)程序,研究了在典型海军舰船中发生疲劳故障的减速器输入轴的结构安全性。在根据MIL G 17859D(SH)标准评估安全系数时,应考虑横向振动的交变弯矩和静态载荷下的应力集中系数。此外,CAE提出了一种改进的设计,以满足MIL G 17859D(SH)标准提出的安全系数。

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