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Cracking failure analysis of an engine exhaust manifold at high temperatures based on critical fracture toughness and FE simulation approach

机译:基于临界断裂韧性和FE模拟方法的高温发动机排气歧管的破裂故障分析

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摘要

D5S is an alloy used in the manufacture of exhaust manifold of the internal combustion (IC) engines. Considering that exhaust manifold is one of the engine components that are under intense thermal and mechanical loads, fracture failure analysis should be regarded for this engine part. Fracture toughness determination is the main criterion for structural fracture analysis. In this research, crack failure was analyzed based on the finite element method (FEM), upon which critical fracture toughness was determined. Using the FEM analysis, a crack was assigned on the exhaust manifold model in order to obtain its fracture toughness at the first mode (K-I) under thermo-mechanical loads. According to the ASTM standard, four compact tension (CT) specimens with different notch lengths of 4 mm, 5 mm, 9 mm, and 12 mm were prepared. Then, using the tension test at a high temperature, critical fracture force was determined. CT specimens were simulated by the finite element ABAQUS software. Fracture force obtained from the tension test was exerted on the CT specimen in the simulation software. Then, critical fracture toughness (K-IC) was gained by using the fracture analysis in FE simulation. Finally, K-I was compared with K-IC and crack propagation was discussed.
机译:D5S是用于制造内燃机(IC)发动机的排气歧管的合金。考虑到排气歧管是在激烈的热和机械负载下的发动机部件之一,应考虑断裂破坏分析。断裂韧性测定是结构骨折分析的主要标准。在该研究中,基于有限元方法(FEM)分析裂纹衰竭,确定临界断裂韧性。使用有限元分析,在排气歧管模型上分配了裂缝,以便在热机械负载下在第一模式(K-1)处获得其断裂韧性。根据ASTM标准,制备具有不同凹口长度为4mm,5mm,9mm和12mm的四个紧凑张力(CT)样本。然后,在高温下使用张力试验,确定临界断裂力。 CT标本由ABAQUS软件的有限元模拟。从张力试验中获得的断裂力施加在模拟软件中的CT样本上。然后,通过使用Fe模拟中的断裂分析来获得临界断裂韧性(K-IC)。最后,K-I与K-IC进行了比较,并讨论了裂缝繁殖。

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