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Simulation test of automotive cylinder head for six stroke engine using computer aided engineering software

机译:利用计算机辅助工程软件对六冲程发动机汽缸盖进行仿真测试

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摘要

This dissertation deals with durability assessment for new six-stroke cylinder head engine system using variable pressure loadings. The objective of this dissertation is to develop the general procedures for durability assessment on the cylinder head when the pressure applied. The dissertation describes the finite element analysis techniques to predict the failure of the cylinder head and identify the critical locations of the components. Aluminium 356.0-T71 material was studied in this dissertation which commonly used in automotive industry. The structural three-dimensional solid modelling of cylinder head was developed using the solidwork software. The finite element analysis was then performed using MSC.NASTRAN code. The finite element model of the components was analyzed using the linear statics stress analysis. From the results, it is observed that by making mesh optimization, the accuracy of values for stress and displacement will increase. The obtained results indicate that the values stress for cylinder head is under ultimate tensile strength value of aluminium 356.0-T71.The results concluded that the smallest value of mesh size will produce fine mesh. Based on analysis result, the cylinder head design is acceptable to product by using casting method. The durability assessment results are significant to improve the component design at the early developing stage. The results can also significantly reduce the cost and time to market, and improve product reliability and customer confidence of the component.
机译:本文研究了使用可变压力负载的新型六冲程汽缸盖发动机系统的耐久性评估。本文的目的是建立在施加压力时对气缸盖进行耐久性评估的通用程序。本文介绍了有限元分析技术,以预测汽缸盖的失效并确定零件的关键位置。本文研究了356.0-T71铝材料在汽车工业中的应用。使用solidwork软件开发了汽缸盖的结构三维实体建模。然后使用MSC.NASTRAN代码进行有限元分析。使用线性静应力分析来分析部件的有限元模型。从结果可以看出,通过进行网格优化,应力和位移值的准确性将提高。得到的结果表明,气缸盖的应力值在铝356.0-T71的极限抗拉强度值以下。结果表明,最小的网眼尺寸将产生细密的网眼。根据分析结果,汽缸盖设计可以通过铸造方法用于产品。耐久性评估结果对于在早期开发阶段改善组件设计具有重要意义。结果还可以显着降低成本和上市时间,并提高组件的产品可靠性和客户信心。

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    Mohd Khalidi Yahya;

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  • 年度 2009
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