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首页> 外文期刊>Advances in Automobile Engineering >Conventional Design and Static Stress Analysis of IC Engine Component (Crank Pin) Using the Finite Element Method
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Conventional Design and Static Stress Analysis of IC Engine Component (Crank Pin) Using the Finite Element Method

机译:内燃机零件(曲柄销)的常规设计和静应力分析的有限元方法

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The main objective of this study is to analyse performance of an internal combustion engine components to obtain detailed information of stress/strain distributions. Component that is analysed crankpin. This study deals with two subjects, first, conventional design of the components, and second, static stress analysis of the components using the finite element method. Component geometry is obtained using conventional design methods. The loads acting on the component as a function of time are obtained. Two-dimensional static finite element analysis is performed at several positions and by varying the number of elements. The stress distributions of the components are illustrated in the form of graphs and the various results are studied comparatively. Design and analysis are done with the help of MATLAB programs which have been included in the study. It is the conclusion of this study that the finite element method can be used to compute localised stresses and results achieved from aforementioned analysis can be used in optimization of the components.
机译:这项研究的主要目的是分析内燃机部件的性能,以获得应力/应变分布的详细信息。被分析的曲柄销的组件。这项研究涉及两个主题,第一,构件的常规设计,第二,使用有限元方法的构件静应力分析。使用常规设计方法可获得零部件的几何形状。获得作用在组件上的载荷随时间的变化。二维静态有限元分析是在几个位置并通过更改元素数量进行的。部件的应力分布以图表的形式示出,并且对各种结果进行了比较研究。研究中包括的MATLAB程序帮助完成了设计和分析。这项研究的结论是,可以将有限元方法用于计算局部应力,并将通过上述分析获得的结果用于部件的优化。

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