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The Effect of Ni and Cu Addition on Mechanical Behavior of Thermomechanically Controlled Processed HSLA X100 Steels

机译:镍和铜的添加对热力学控制的HSLA X100钢的力学行为的影响

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The effect of Cu and Ni addition on mechanical behavior of HSLA X100 steels containing relatively low amount of Carbon was studied. Very high strength, the appropriate level of toughness and good weldability attained through low carbon addition have made these steels a very attractive choice for the shipbuilding applications. Thermomechanical controlled processing was applied on the cast samples with various amounts of Cu and Ni, and the effect of process variables on mechanical properties were investigated. Austenitization and quenching together with tempering were also applied on the thermomechanically produced samples. Mechanical properties were evaluated by tensile, hardness and Charpy impact tests. Microstruc-tural evaluation was done by Optical and Scanning Electron Microscopies. Results showed that by adding Ni and Cu up to 7.6% and 4.1%, respectively, it is possible to obtain yield strength above 160 ksi. This was achieved while toughness was still in an adequate level.
机译:研究了添加铜和镍对碳含量相对较低的HSLA X100钢的力学行为的影响。通过低碳添加获得非常高的强度,适当的韧性水平和良好的可焊性,使这些钢成为造船应用中非常有吸引力的选择。对铸轧样品中的各种含量的铜和镍进行了热机械控制处理,并研究了工艺变量对机械性能的影响。奥氏体化和淬火以及回火也应用于热机械生产的样品。通过拉伸,硬度和夏比冲击试验评估机械性能。通过光学和扫描电子显微镜对微结构进行评估。结果表明,通过分别添加最多7.6%和4.1%的Ni和Cu,可以获得160 ksi以上的屈服强度。这是在韧性仍处于适当水平时实现的。

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