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首页> 外文期刊>Journal of Materials Engineering and Performance >Mechanism of Decrease in Impact Toughness in a Low-Carbon MnCrMoNiCu Plate Steel with Increasing Austenitizing Temperature
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Mechanism of Decrease in Impact Toughness in a Low-Carbon MnCrMoNiCu Plate Steel with Increasing Austenitizing Temperature

机译:低碳Mncrmonicu板钢中抗冲韧性降低机制随着奥氏体温度的增加

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In order to reveal how microscopic factors affect the toughness and the occurrence of cleavage fracture of a low-carbon MnCrMoNiCu alloyed steel, a series of thermal treatments was performed on the steel employing a thermomechanical simulator. These involved reheating samples at different temperatures (950-1250?°C), producing different prior austenite sizes, followed by a continuous cooling transformation process. The Charpy V-notch toughness was determined, and the effect of austenite grain size on the ductile-to-brittle transition temperatures of the steel was investigated. The microstructural evolution on the austenite sizes was studied, fracture features were characterized, the critical event for cleavage fracture was identified, and the local cleavage fracture stress σ ~(f)was calculated. The impact toughness decreased as the austenitizing temperature increased. A quantitative relationship between σ ~(f)and the size of the initial cleavage fracture facet (microcrack nucleus) a ~(f)in the lathy martensite?+?bainite microstructure has been developed.
机译:为了揭示微观因素如何影响低碳Mncrmonicu合金钢的韧性和裂解骨折的发生,在采用热机械模拟器的钢上进行一系列热处理。这些涉及在不同温度(950-1250℃)的样品中进行再加热样品,产生不同的先前奥氏体尺寸,然后是连续冷却变换过程。确定了夏比V-Notch韧性,研究了奥氏体晶粒尺寸对钢的韧性到脆性转变温度的影响。研究了奥氏体尺寸的微观结构演化,表征了裂缝特征,鉴定了裂解断裂的临界事件,并计算了局部切割骨折应力σ〜(F)。随着奥氏体化温度的增加,冲击韧性降低。 σ〜(f)与缘裂解马氏体中的初始切割骨折突出面(微裂纹骨折刻面(微裂纹骨折)a〜(f)之间的定量关系已经开发出+β+贝氏体微观结构。

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