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The numerical analysis of influence of crankshaft main spindles regeneration in marine engine on stiffness and eigenfrequency of the crankshaft

机译:曲轴主轴再生在船舶发动机上对曲轴刚度和特征频率影响的数值分析

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Engine operating conditions of the main propulsion, static in principle with steady-state rotation speed of the crankshaft and engine load, also work under dynamic load conditions. These conditions cause additional distortion of the crankshaft and changes in the operating conditions of the shaft bearings. However, the greatest impact on the long and trouble-free operation has proper engine maintenance. Variable operating conditions and engine operating errors, unfortunately, often cause damage to the main bearings of the crankshaft. Repair of the damaged main bearing spindles of the shaft involves performing the machining of the spindle surface then its re-hardening and selecting new bearing bushings with the appropriate bearing clearance. Trusting the engine manufacturer, there is no check of the influence of the machining of bearing spindles on the structural properties of the shaft. Therefore, the paper presents the model tests of the structure of medium-rev marine engine crankshaft aimed at determining the changes in the mechanical properties of the structure resulting from carrying out the regeneration of the main shaft spindles.
机译:发动机运行条件主要推进,原则上具有稳态旋转速度的曲轴和发动机负荷,也在动态负荷条件下工作。这些条件导致曲轴的额外变形和轴轴承的操作条件的变化。然而,对长期和无故障操作的影响最大,具有适当的发动机维护。不幸的是,可变操作条件和发动机运行误差通常会导致曲轴的主轴承损坏。修复轴的损坏主轴轴承轴涉及进行主轴表面的加工,然后进行其再硬化并选择具有适当轴承间隙的新轴承衬套。相信发动机制造商,没有检查轴承主轴的影响对轴的结构性能的影响。因此,本文介绍了旨在确定由执行主轴锭子的再生产生的结构的机械性能的变化的中等船舶发动机曲轴结构的模型试验。

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