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Hot-Rolling and a Subsequent Direct-Quenching Process Enable Superior High-Cycle Fatigue Resistance in Ultra-High Strength Low Alloy Steels

机译:热轧和随后的直接淬火过程使超高强度低合金钢中的卓越的高循环疲劳性能实现

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摘要

The current study investigated the effect of hot rolling reduction rate of ultra-high strength low alloy steel manufactured via the direct quenching process on microstructure, tensile and high-cycle fatigue properties of the alloy. In order to control the reduction rate of ultra-high strength steels (UHSSs) differently, the steels were produced with two different thicknesses, 6 mm (46.2%—reduction rate, A) and 15 mm (11.5%—reduction rate, B). Then, the two alloys were directly quenched under the same conditions. Both the UHSSs showed martensite in the near surface region and auto-tempered martensite and bainite in the center region. Tensile results showed that alloy A with higher fraction of finer martensite had higher yield strength by about 180 MPa (1523 MPa) than alloy B. The alloy A was also found to possess a higher tensile strength (~2.1 GPa) than alloy B. In addition, alloy A had higher strength than B, and the elongation of A was about 4% higher than that of alloy B. High-cycle fatigue results showed that the fatigue limits of alloys A and B were 1125 MPa and 1025 MPa, respectively. This means that alloy A is excellent not only in strength but also high-cycle fatigue resistance. Based on the above results, the correlation between the microstructure and deformation behaviors were also discussed.
机译:目前的研究研究了通过直接淬火过程制造的超高强度低合金钢的热轧减小速率对合金的微观结构,拉伸和高循环疲劳性能的影响。为了控制超高强度钢(UHSSS)的减少率,用两种不同的厚度产生钢,6毫米(46.2%-REACUCTION,A)和15毫米(11.5%-REMUCTION率,B)。 。然后,在相同的条件下直接淬火两种合金。 uhsss都在近地表区域和中央区域的自动回火马氏体和贝氏体上显示了马氏体。拉伸结果表明,具有比合金B的屈服强度较高的屈服强度较高的合金A具有比合金B的约180mPa(1523MPa)更高的屈服强度。还发现合金A具有比合金B更高的拉伸强度(〜2.1GPa)。在添加,合金A具有比B更高的强度,并且A的伸长率高于合金B的约4%。高循环疲劳结果表明,合金A和B的疲劳限制分别为1125MPa和1025MPa。这意味着合金A不仅优于强度,而且是高循环疲劳性的优异。基于上述结果,还讨论了微观结构与变形行为之间的相关性。

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