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Mechanical Behavior of Dual-Phase Steel Tubes and its Application in Automotive Industries

机译:双相钢管的力学行为及其在汽车产业中的应用

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In the present investigation dual-phase steel tubes are produced through induction heating and quench system with varied martensite and ferrite content. Thereby, spectrums of tensile properties are obtained for the given steel grade. Five most popular auto steel grade DP tubes are selected and examined for work-hardening characteristics of the material. Further, Strain-hardening exponent (n) is calculated for the all the grades of steel tubes used for the investigation to understand the metal-forming behavior of the DP tubular components. It is found that as the intercritical temperature increases, the strain-hardening exponent decreases. Effect of cold drawing on the tensile properties of DP steel tubes are studied with various cold-drawn reduction percentages. It is inferred that maximum cold reduction possible for DP tubes and strips are limited to about 10% in order to retain the dual-phase steel characteristics. A correlation between strain-hardening component and the micro constituents such as martensite and ferrite volume fraction is proposed. The prospective DP steel auto tubular components are discussed in this paper.
机译:在本发明的研究中,通过具有不同马氏体和铁氧体含量的感应加热和淬火系统生产双相钢管。由此,获得给定钢级的拉伸性能的光谱。选择五个最流行的汽车钢级DP管,并检查材料的硬化特性。此外,对于用于研究DP管状部件的金属形成行为的所有等级的钢管计算应变硬化指数(n)。发现随着临界温度的增加,应变硬化指数降低。冷绘对DP钢管拉伸性能的影响,采用各种冷轧百分比研究。推断,DP管和条带可能的最大冷减少限制为约10%,以保持双相钢特性。提出了应变硬化组分与Martensite等微量成分之间的相关性。本文讨论了前瞻性DP钢自动管状部件。

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