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Decarburizing Behavior and Its Effect on Mechanical Properties of Ultrahigh Strength Steel Sheets

机译:脱碳行为及其对超高强度钢板力学性能的影响

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In this study, the decarburization behavior, and its effect on mechanical properties of 2000 MPa class martensitic steel were investigated with the purpose of collecting the basic data to realize the further strengthening of structural members for automobiles. Concerning the decarburization behavior, the maximum of the decarburization rate of 2000 MPa class martensitic steel with a basic chemical composition of 0.35%C-1.2%Mn was found around 750°C and the thickness of the decarburized zone grew proportional to the square root of time. The addition of Nb reduced the decarburization rate.Concerning the effect of decarburization on mechanical properties, the decarburization significantly improved bendability even though the thickness of the decarburized layer is relatively thin. An observation of the crack behavior revealed that the initiation and propagation of the crack were suppressed by the decarburization layer. The resistance to delayed fracture was improved by decarburization. This improvement is presumed to be based on a similar mechanism for the improvement of bendability.
机译:在该研究中,研究了脱碳行为,及其对2000MPa类马氏体钢的力学性能的影响,目的是收集基本数据,以实现汽车结构构件的进一步加强。关于脱碳行为,2000MPa类马氏体钢的脱碳率的最大值为0.35%C-1.2%Mn约750℃,脱碳区的厚度与平方根成比例时间。 Nb的添加降低了脱碳率。截止脱碳对机械性能的影响,即使脱碳层的厚度相对较薄,脱碳显着提高了可弯曲性。观察裂纹行为揭示了脱碳层抑制了裂缝的起始和传播。通过脱碳改善了对延迟骨折的抗性。推测这种改进基于改善弯曲性的类似机制。

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