Thermomechanical Modeling of an Exhaust Manifold

Intan K Kushairi, M. Awang, Aidil Ab Rahman, I. Putra, Iman Kartolaksono
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Abstract

The commonly used form of transportation mostly relies on-road vehicles nowadays. A vehicle is a mechanism to commute between places with higher efficiency and less time consumption. A vehicle usually consists of multiple working components, in which the engine is well-known to be one of its most crucial components. Although it can be considered the most vital component in a vehicle, the knowledge gaps for an engine are still unlimited. So much more potential can be explored for an engine to reach its maximum capabilities. Part of the perspective that should be explored is to study the engine’s thermal properties. This paper aims to investigate the effect of varying temperatures at the exhaust manifold under a certain amount of time spans. The temperature varied from low to high and vice versa for 6 cycles. The results revealed that the exhaust manifold had undergone an alteration in the strain of the body’s elasticity. Because of that, the displacement of the exhaust manifold, load distribution, and direction have also been affected.
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排气歧管的热力学建模
现在常用的运输方式主要依靠公路车辆。交通工具是一种高效、省时的交通工具。车辆通常由多个工作部件组成,其中发动机是众所周知的最关键的部件之一。虽然它可以被认为是车辆中最重要的部件,但关于发动机的知识差距仍然是无限的。因此,发动机可以探索更多的潜力,以达到其最大能力。应该探索的部分观点是研究发动机的热性能。本文的目的是研究在一定时间跨度内,排气歧管温度变化的影响。温度由低到高,由高到低变化了6个周期。结果表明,排气歧管在机体的弹性应变上发生了变化。因此,排气歧管的排量、负荷分布和方向也受到了影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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