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EFFECT OF EAM PULSED CURRENT ON 1450 MPA MARTENSITIC STEEL

机译:EAM脉冲电流对1450 MPA马氏体钢的影响

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Martensitic steel is often used to fabricate parts that require high tensile strength. However, this quality, and the material's low ductility, requires manufacturing equipment with higher tonnage capacity. This paper explores a potential way to reduce the tonnage requirement by temporarily reducing the steel's required flow stress. Previous studies with other metals have shown that using a pulsed electric current will provide lower strength, as well as, an increase in ductility, without the sensitivity to temperature that heat treating has. This project investigates how martensitic steel reacts to pulsing electric current in terms of the tensile strength and elongation. The project consists of two studies. First, where the parameters considered were current density (CD), pulse duration (PD), pulse period (PP), and pressurized air (PA). Second is a series of tests where current duration was based off the material's strength. The results from the first study show that the electricity can increase the material's achievable elongation; the second study achieved reducing and limiting the material's strength.
机译:马氏体钢通常用于制造需要高抗拉强度的零件。但是,这种质量以及材料的低延展性要求制造设备具有更高的吨位。本文探索了一种通过暂时降低钢材所需的流动应力来降低吨位要求的潜在方法。先前对其他金属的研究表明,使用脉冲电流将提供较低的强度以及延展性的提高,而不会像热处理那样具有对温度的敏感性。该项目从抗拉强度和伸长率的角度研究马氏体钢对脉冲电流的反应。该项目包括两项研究。首先,考虑的参数是电流密度(CD),脉冲持续时间(PD),脉冲周期(PP)和压缩空气(PA)。第二是一系列测试,其中当前持续时间基于材料的强度。第一项研究的结果表明,电可以增加材料的可达到的伸长率。第二项研究降低并限制了材料的强度。

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