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首页> 外文期刊>International Journal of Fatigue >Comparative assessment of remnant tensile properties of modified 9Cr-1Mo steel under prior low cycle fatigue and creep-fatigue interaction loading
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Comparative assessment of remnant tensile properties of modified 9Cr-1Mo steel under prior low cycle fatigue and creep-fatigue interaction loading

机译:在先前的低周疲劳和蠕变疲劳相互作用载荷下,改性9Cr-1Mo钢的残余拉伸性能的比较评估

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Progressive deterioration in the mechanical properties with increasing service period is commonly observed and hence needs to be addressed. Awareness about the rate of degradation of the properties can circumvent a lot of problems faced during service. Hence the present work aims to understand the degradation of tensile properties due to prior cyclic loading. Systematic comparative evaluation study for the evolution of tensile properties with prior fatigue loading and the deformation and damage evolution process in modified 9Cr-1Mo steel during low cycle fatigue (LCF) and creep-fatigue interaction (CFI) loadings has been carried out. For this, LCF and CFI experiments were carried out at constant strain amplitude of ±0.6%, strain rate of 3 × 10~(−3) s~(−1) and temperature of 600 °C. Experiments interrupted after 5, 10, 30, and 50% of the total fatigue life (N_f) under both LCF and CFI conditions were followed by monotonic loading at the same strain rate and temperature until fracture. Drastic reduction in the yield strength value due to both LCF and CFI prior fatigue loading was revealed and the extent of decrease in the YS values increased with the extent of prior fatigue damage imparted on the steel. Substantial difference in the YS evolution with prior fatigue damage under LCF and CFI conditions occurred only after 10% life fraction due to the predominance of creep recovery process. Factors such as microstructural changes due to creep alone or fatigue alone or both and surface oxidation changed the tensile properties under LCF and CFI.
机译:通常观察到随着使用期限的增加机械性能逐渐恶化,因此需要解决。对性能退化速率的意识可以避免服务期间面临的许多问题。因此,本工作旨在了解由于先前的循环载荷而引起的拉伸性能的下降。进行了系统的比较评估研究,研究了9Cr-1Mo改性钢在低周疲劳(LCF)和蠕变疲劳相互作用(CFI)加载过程中随先前疲劳载荷而产生的拉伸性能演变以及变形和损伤演化过程。为此,在±0.6%的恒定应变幅度,3×10〜(-3)s〜(-1)的应变速率和600°C的温度下进行了LCF和CFI实验。在LCF和CFI条件下,在总疲劳寿命(N_f)的5、10、30和50%之后中断实验,然后在相同的应变率和温度下单调加载直至断裂。结果表明,由于先前的疲劳载荷而导致的LCF和CFI都使屈服强度值急剧降低,并且随着对钢施加的先前疲劳损伤的程度,YS值的降低程度也有所增加。由于蠕变恢复过程的优势,仅在10%的使用寿命后,YS演变与先前疲劳在LCF和CFI条件下的实质差异才出现。诸如仅由于蠕变或仅由于疲劳或两者兼有引起的微观结构变化以及表面氧化等因素就改变了LCF和CFI下的拉伸性能。

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