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Effect of Isothermal Transformation Times below Ms and Tempering on Strength and Toughness of Low-Temperature Bainite in 0.53 C Bainitic Steel

机译:等温转化时间低于MS的影响和回火对0.53C贝氏体钢的低温贝氏体的强度和韧性

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This study aims to investigate the microstructures, strength, and impact toughness of low-temperature bainite obtained by isothermal transformation at temperature below Ms (Martensite Starting temperature) for different times and tempering process in 0.53 C wt% bainitic steel. By using the optical microscopy, X-ray diffraction (XRD), transmission electron microscopy (TEM), electron back scatter diffraction (EBSD), and mechanical property test, it was found that the microstructures after heat treatment consist of small amounts of martensite, fine bainite, and film retained austenite. After tempered at 250 °C for 2 h, the volume fraction of retained austenite (10.9%) in the sample treated by isothermal transformation at 220 °C for three hours is almost the same as that of the sample without tempering. In addition, the retained austenite fraction decreases with the increase of holding times and is reduced to 6.8% after holding for 15 h. The ultimate tensile strength (1827 MPa), yield strength (1496 MPa), total elongations (16.1%), and impact toughness (up to 58 J/cm 2 ) were obtained by isothermal transformation at 220 °C for three hours and tempered at 250 °C. Whereas, the impact toughness of sample without tempering is 28 J/cm 2 . After holding for 15 h, the impact toughness raises to 56 J/cm 2 , while the ductility and strength decreases. These results indicate that the tempering process is helpful to improve the impact toughness of low-temperature bainite.
机译:该研究旨在研究通过在0.53℃WT%贝氏体钢中的不同时间和回火过程在MS(马氏体起始温度)温度下通过等温转化获得的低温贝氏体的微观结构,强度和冲击韧性。通过使用光学显微镜,X射线衍射(XRD),透射电子显微镜(TEM),电子背面散射衍射(EBSD)和机械性能测试,发现热处理后的微观结构由少量马氏体组成,细贝氏体和薄膜保持奥氏体。在250℃下回火2小时后,通过在220℃下在220℃下在220℃下处理的样品中保留的奥氏体(10.9%)的体积分数几乎与样品的样品在没有回火的情况下的相同。此外,保留奥氏体部分随着保持时间的增加而降低,并且在保持15小时后减少到6.8%。通过在220℃下在220℃下在220℃下进行三小时并回火,获得最终拉伸强度(1827MPa),屈服强度(1496MPa),总伸长率(16.1%)和冲击韧性(高达58J / cm 2),并锻炼250°C。而不含回火的样品的冲击韧性为28J / cm 2。在保持15小时后,冲击韧性升高至56J / cm 2,而延展性和强度降低。这些结果表明回火过程有助于改善低温贝氏体的冲击韧性。

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