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Effect of alloy composition on high-temperature bending fatigue strength of ferritic stainless steels

机译:合金成分对铁素体不锈钢高温弯曲疲劳强度的影响

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Exhaust manifolds are subjected to an environment in which heating and cooling cycles occur due to the running pattern of automotive engines. This temperature profile results in the repeated bending stress of exhaust pipes. Therefore, among high-temperature characteristics, the bending fatigue strength is an important factor that affects the lifespan of exhaust manifolds. Here, we report on the effect of the alloy composition, namely the weight fraction of the elements Cr, Mo, Nb, and Ti, on the high-temperature bending fatigue strength of the ferritic stainless steel used in exhaust manifolds. Little difference in the tensile strength and bending fatigue strength of the different composition steels was observed below 600 °C, with the exception of the low-Cr steel. However, steels with high Cr, Mo, or Nb fractions showed considerably larger bending fatigue strength at temperatures of 800 °C. After heating, the precipitates from the specimens were extracted electrolytically and analyzed using scanning electron microscopy energy dispersive spectrometry and transmission electron microscopy. Alloying with Cr and Mo was found to increase the bending fatigue strength due to the substitutional solid solution effect, while alloying with Nb enhanced the strength by forming fine intermetallic compounds, including NbC and Fe2Nb.
机译:排气歧管处于由于汽车发动机的运行方式而导致加热和冷却循环的环境中。该温度曲线导致排气管反复弯曲应力。因此,在高温特性中,弯曲疲劳强度是影响排气歧管寿命的重要因素。在此,我们报告了合金组成(即元素Cr,Mo,Nb和Ti的重量分数)对排气歧管中使用的铁素体不锈钢的高温弯曲疲劳强度的影响。在600°C以下,除低铬钢外,其他成分钢的拉伸强度和弯曲疲劳强度几乎没有差异。但是,Cr,Mo或Nb含量高的钢在800°C的温度下表现出明显更大的弯曲疲劳强度。加热后,将样品中的沉淀物电解提取,并使用扫描电子显微镜能量色散光谱法和透射电子显微镜进行分析。与铬和钼的合金化由于置换固溶效应而增加了弯曲疲劳强度,而与铌的合金化通过形成精细的金属间化合物包括NbC和Fe 2 Nb增强了强度。

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