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A Finite Element Numerical Methodology for the Fatigue Analysis of Cylinder Liners of a High Performance Internal Combustion Engine

机译:高性能内燃机汽缸衬套疲劳分析的有限元数值方法

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In this paper a numerical methodology is proposed, which aims at predicting the fatigue behaviour of engine cylinder liners in an eight-cylinder V-type four-stroke turbocharged engine. A preliminary kinematic and dynamic study of the crank mechanism is fulfilled in order to properly identify the load cycle that involves the cylinder liner. Finite Element analyses, both thermal and thermo-mechanical, are performed to evaluate the stress and the strain of the component. In particular, non-linear models are developed to mimic the piston-liner interaction when subjected to different loading conditions. A simplified approach is proposed in order to reduce the computational effort of the simulations. FEM results are then processed employing the multiaxial Dang Van fatigue criterion.
机译:在本文中,提出了一种数值方法,该方法旨在预测八缸V型四冲程涡轮增压发动机中发动机缸衬里的疲劳行为。满足了曲柄机构的初步运动和动态研究,以适当地识别涉及汽缸衬套的载荷循环。进行有限元分析,热和热机械,进行热和热机械,以评估组分的应力和应变。特别地,开发非线性模型以在经受不同的负载条件时模拟活塞衬里相互作用。提出了一种简化的方法,以减少模拟的计算工作。然后将FEM结果采用多轴Dang Van疲劳标准。

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