首页> 外文会议>2011 Second International Conference on Mechanic Automation and Control Engineering >Study on 3-D Computer Aided Design for the small bore directed-injection engine combustion system
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Study on 3-D Computer Aided Design for the small bore directed-injection engine combustion system

机译:小口径直喷式发动机燃烧系统的三维计算机辅助设计研究

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Computer-Aided Design is used to carry out 3-D (three dimensions) design for diesel engine combustion system. The diesel engine combustion system is designed and each part is modeled in Pro/E. Pro/E is a solid modeler and this offers considerable advantage for solid model creation. Normally, the geometry is first sketched in 2-D and then extruded in the third direction to generate a 3-D model. In Pro/E, it is important to first create the base geometry. The base geometry is that captures the design intent of the part to be modeled. This base geometry can be created using either the EXTRUDE or the REVOLVE options. Once this base geometry has been created, additional features like holes, rounds, chamfers, fillets, ribs, etc can be added in the finishing stages of the part creation. The center of the bowl does not coincide with the center of the cylinder due to the presence of valve pockets. The obvious advantage of this configuration is that is gives the true geometry of the piston and the connecting rod ports can be accommodated when the piston is at the top dead center. Further, the simulation mesh is built and the final piston structure is got. The results between original combustion system and the modified combustion system is analyzed. The results indicate the modified combustion system can fulfill Euro-4 instead of original Euro-3 standard and the 3-D model can carry out optimization design for a high-pressure common rail diesel engine.
机译:计算机辅助设计用于执行柴油机燃烧系统的3D(三维)设计。设计了柴油机燃烧系统,并且每个零件都在Pro / E中建模。 Pro / E是一个实体建模器,这为实体模型创建提供了相当大的优势。通常,首先在2D中绘制几何图形,然后在第三个方向上对其进行拉伸以生成3D模型。在Pro / E中,首先创建基础几何很重要。基本几何形状捕获了要建模的零件的设计意图。可以使用EXTRUDE或REVOLVE选项创建此基本几何图形。一旦创建了此基本几何图形,便可以在零件创建的精加工阶段中添加其他特征,例如孔,倒圆角,倒角,圆角,肋等。由于阀套的存在,碗的中心与气缸的中心不一致。这种配置的明显优点是,可以给出活塞的真实几何形状,并且当活塞位于上止点时可以容纳连杆端口。此外,建立了模拟网格并获得了最终的活塞结构。分析了原始燃烧系统和改进燃烧系统之间的结果。结果表明,改进后的燃烧系统可以满足Euro-4标准,而不是原来的Euro-3标准,而3-D模型可以对高压共轨柴油机进行优化设计。

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