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Effects of Heavy Warm Deformation on Microstructure and Mechanical Properties of a Medium Carbon Ferritic-Pearlitic Steel

机译:大温变形对中碳铁素体-珠光体钢组织和力学性能的影响

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The study of medium-carbon steel (0.36 percent C) with deformation induced spheroidized cementite produced by heavy warm deformation (HWD) was carried out as a potential substitution of conventional quenching and tempering (QT) or soft annealing (SA). After austenite deformation the HWD samples were cooled and heavily deformed (epsilon approx 1.6) at the temperatures below the gamma-alpha transformation with a subsequent simulated coiling. To estimate the treatment sensitivity the effect of the heating due to the heavy deformation on the mechanical properties was studied using both isothermal and adiabatic processing routes. The mechanical properties after the various treatments show that the strength-ductility relation after HWD and QT are superior to that after CC or SA. The reason is in the presence of lamellar pearlite in the microstructure after CC and also partially after SA that deteriorates the reduction of area. A similar effect is observed after the adiabatic HWD treatment: the deformation heating at high HWD temperatures may lead to partial pearlite-austenite-pearlite transformation, which results in some lamellar pearlite in the final microstructure. HWD at 670 deg C with subsequent coiling simulation allows to get a microstructure with dispersed spheroidized cementite distributed homogeneously in fine grained ferritic matrix with an average grain size of 2 mu m and an amount of high angle grain boundaries (HAGB) of about 65 percent. The features of ferrite and cementite after both HWD and QT have some important resemblances: fine homogeneous distributed cementite and fairly high amount of HAGB. As a result, the mechanical properties of the HWD samples are well comparable to those after QT.
机译:研究了由重温变形(HWD)产生的变形诱导球状渗碳体的中碳钢(0.36%C),以替代传统的淬火和回火(QT)或软退火(SA)。奥氏体变形后,HWD样品在低于γ-α相变的温度下冷却并严重变形(ε约为1.6),随后进行了模拟卷取。为了估计处理灵敏度,使用等温和绝热工艺路线研究了由于大变形而导致的加热对机械性能的影响。各种处理后的力学性能表明,HWD和QT后的强度-延性关系优于CC或SA后的强度-延性关系。原因是在CC之后以及在SA之后部分存在层状珠光体珠光体,这会降低面积的减小。绝热HWD处理后观察到类似的效果:在高HWD温度下进行形变加热可能导致部分珠光体-奥氏体-珠光体相变,从而在最终的显微组织中形成一些层状珠光体。在670摄氏度下进行HWD并随后进行卷取模拟,可以得到具有均匀分布在细晶粒铁素体基体中的分散球状渗碳体的微结构,其平均晶粒度为2μm,高角度晶界(HAGB)约为65%。 HWD和QT后的铁素体和渗碳体的特征有一些重要的相似之处:细小的均质分布的渗碳体和相当高的HAGB。结果,HWD样品的机械性能与QT之后的机械性能相当。

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