排气歧管的研究与设计改进

Amit Chandak
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引用次数: 1

摘要

本文旨在通过测定排气歧管在不同材料和温度条件下所表现出的热应力和挠度,对排气歧管进行重新设计。其目的是从可靠性和适用性的角度确保设计对特定材料的适用性。现有歧管的缺陷通常是由于长时间暴露在极端温度下、铸造缺陷和反复热循环而产生的裂纹。焊接区和弯曲型材是失效的关键区域。开发了一种方法,以确保最适合给定操作条件的设计和材料。对铸铁的流形行为进行了分析。重新设计弧线可以减少排气对焊缝的湍流影响。软件采用Creo 3.0编制4-1排气歧管的CAD模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation and Design Modification in Exhaust Manifold
This paper aims in re-designing an exhaust manifold by determining the thermal stresses and deflections exhibited under various operating conditions with different materials and temperatures. The objective is to ensure the suitability of the design for a particular material from the viewpoint of reliability and serviceability. Defects in the existing manifold are cracks usually occur due to prolonged exposure to extreme temperatures, defects in casting and repeated heat cycling. Welded regions and the curved profiles are the critical regions of failure. A methodology is developed to ensure the best-suited design and material for the given operating conditions. Manifold behavior in Cast Iron is analyzed. Redesigning the curved profiles can reduce the turbulence effect of the exhaust gases on the welds. The software used Creo 3.0 for preparing the CAD model of a 4-1 exhaust manifold.
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