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Low Cycle Fatigue Behavior of 429EM Ferritic Stainless Steel at Elevated Temperatures

机译:429EM铁素体不锈钢在升高温度下的低周疲劳行为

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In recent, ferritic stainless steels are widely used in high temperature structure because of their high resistance in thermal fatigue and low prices. Tensile and low cycle fatigue(LCF) tests on 429EM stainless steel were performed at several temperatures from room temperature to 600 °C. Elastic modulus, yield stress and ultimate tensile strength(UTS) decreased with increasing temperature. Considerable cyclic hardening occurred at 200 °C and 400 °C. 475 °C embrittlement observed could not explain this phenomenon but dynamic strain aging(DSA) observed from 200 °C to 500°C could explain the hardening mechanism at 200 °C and 400 °C. And it was observed that plastic strain energy density(PSED) was useful to predict fatigue life when large cyclic hardening occurred. Fatigue life using PSED over elastic modulus could be well predicted within 2X scatter band at various temperatures.
机译:最近,铁素体不锈钢广泛应用于高温结构,因为它们的热疲劳和低价格耐高采烈。 429EM不锈钢的拉伸和低循环疲劳(LCF)测试在室温至600℃的几个温度下进行。随着温度的增加,弹性模量,屈服应力和极限拉伸强度(UTS)降低。相当大的循环硬化发生在200℃和400℃时发生。观察到的475°C脆化不能解释这种现象,但从200℃至500℃观察到的动态菌株老化(DSA)可以在200℃和400℃下解释硬化机构。并且观察到,当发生大循环硬化时,塑性应变能量密度(PSED)可用于预测疲劳寿命。在各种温度下,使用PSED使用PSED的疲劳寿命可以在2倍散射带内预测。

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