Feasibility and optimization of a bush-cut aluminium bronze big end bearing: a simulation-based study

Q4 Engineering Rakenteiden Mekaniikka Pub Date : 2023-12-29 DOI:10.23998/rm.132039
Sami Kreivi, Teemu Kuivaniemi, A. Mäntylä, J. Vaara, Jaakko Istolahti, Pasi Halla-aho, Antti-Jussi Vuotikka, T. Frondelius
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Abstract

The big end bearing of a connecting rod is one of the most highly loaded bearings in marine engines. This paper presents a feasibility study and optimization of the geometrical parameters of a bush-cut bronze bearing for connecting rods in large-bore marine engines. An accurate simulation workflow was developed and carried out in Abaqus to analyze whether a new simple and cost-saving alternative for manufacturing big end bearings would be possible. The simulations showed that aluminium bronze is feasible regarding stress and yielding. However, improvements were needed to increase the radial contact pressure and decrease the compressive tangential stress peaks on the ends of the split bearing. The optimized design parameters included the outer diameter and thickness of the bearing, the thickness of the cutting blade, and the cut angle. Especially the combination of optimized blade thickness and cut angle generated promising results. The findings of this study provide valuable insights and design principles for bearing design processes.
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轴瓦切削铝青铜大端轴承的可行性和优化:基于模拟的研究
连杆大头轴承是船用发动机中负荷最大的轴承之一。本文介绍了用于大口径船用发动机连杆的轴瓦切削青铜轴承的可行性研究和几何参数优化。在 Abaqus 中开发并执行了精确的仿真工作流程,以分析是否有可能在制造大端轴承时采用一种新的简单且节约成本的替代方法。模拟结果表明,铝青铜在应力和屈服方面是可行的。但是,还需要进行改进,以提高径向接触压力,降低剖分式轴承两端的切向压应力峰值。优化设计参数包括轴承的外径和厚度、切割刀片的厚度以及切割角度。特别是刀片厚度和切割角度的优化组合产生了良好的结果。这项研究结果为轴承设计过程提供了宝贵的见解和设计原则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
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