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Assessment of Thermo-Mechanical Fatigue Performance of an Exhaust Manifold through Simulation

机译:通过仿真评估排气歧管的热机械疲劳性能

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Exhaust manifold of an IC engine typically experiences cyclic thermal and mechanical loading and are prone to TMF failure. Thermo-mechanical fatigue resistance needs to be ensured for exhaust manifold to meet the requirement of durability in order to meet the demanding needs of recent trends in IC engine design. Considering reduced product development cycle time, more accurate design procedure for exhaust manifold through simulation route is preferred. The present work is an attempt in this direction, where methodology to carry out TMF analysis of exhaust manifold through simulation is formulated and successfully implemented. The complete simulation process involved four important stages, namely simplified 1-D simulation of engine, thermal analysis of exhaust manifold, and structural analysis of exhaust manifold and TMF life evaluation of exhaust manifold. The developed methodology has been successfully implemented considering a typical exhaust manifold. Thermal inputs obtained through simplified engine simulation using 1-D gas dynamics and engine simulation software required for thermal analysis of exhaust manifold are found to be satisfactory and has eliminated the need for complex 3-D CFD simulations. TMF life valuated at critical locations indicate that except one location all other locations have life exceeding the LCF limit.
机译:内燃机的排气歧管通常承受周期性的热负荷和机械负荷,并且容易出现TMF故障。为了满足IC发动机设计的最新趋势的苛刻需求,需要确保排气歧管的热机械疲劳强度以满足耐久性的要求。考虑到缩短产品开发周期时间,首选通过仿真路线进行排气歧管更准确的设计程序。目前的工作是朝这个方向的尝试,其中制定并成功实施了通过模拟进行排气歧管TMF分析的方法。完整的仿真过程涉及四个重要阶段,即发动机的简化一维仿真,排气歧管的热分析,排气歧管的结构分析以及排气歧管的TMF寿命评估。考虑到典型的排气歧管,已成功实施了开发的方法。通过使用1-D气体动力学简化的发动机仿真和排气歧管热分析所需的发动机仿真软件获得的热输入被认为是令人满意的,并且消除了对复杂的3D CFD仿真的需要。在关键位置评估的TMF寿命表明,除一个位置外,其他所有位置的寿命均超过LCF限制。

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