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首页> 外文期刊>Journal of engineering materials and technology >Influence of Manufacturing Processes and Microstructures on the Performance and Manufacturability of Advanced High Strength Steels
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Influence of Manufacturing Processes and Microstructures on the Performance and Manufacturability of Advanced High Strength Steels

机译:制造工艺和微结构对高级高强度钢性能和可制造性的影响

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Advanced high strength steels (AHSS) are performance-based steel grades and their global material properties can be achieved with various steel chemistries and manufacturing processes, leading to various microstructures. In this paper, we investigate the influence of the manufacturing process and the resulting micro structure difference on the overall mechanical properties, as well as the local formability behaviors of AHSS. For this purpose, we first examined the basic material properties and the transformation kinetics of three different commercial transformation induced plasticity (TRIP) 800 steels under different testing temperatures. The experimental results show that the mechanical and microstructural properties of the TRIP 800 steels significantly depend on the ther-momechanical processing parameters employed in making these steels. Next, we examined the local formability of two commercial dual phase (DP) 980 steels which exhibit noticeably different formability during the stamping process. Microstructure-based finite element analyses are carried out to simulate the localized deformation process with the two DP 980 microstructures, and the results suggest that the possible reason for the difference in formability lies in the morphology of the hard martensite phase in the DP microstructure. The results of this study suggest that a set of updated material acceptance and screening criteria is needed to better quantify and ensure the manufacturability of AHSS.
机译:高级高强度钢(AHSS)是基于性能的钢种,可以通过各种钢的化学性质和制造工艺来实现其全局材料性能,从而产生各种微观结构。在本文中,我们研究了制造工艺的影响以及由此产生的微观结构差异对整体机械性能以及AHSS的局部成形性能的影响。为此,我们首先检查了三种不同商业化转变诱导塑性(TRIP)800钢在不同测试温度下的基本材料性能和转变动力学。实验结果表明,TRIP 800钢的机械和显微组织性能显着取决于制造这些钢所采用的热机械加工参数。接下来,我们检查了两种商用双相(DP)980钢的局部可成形性,它们在冲压过程中表现出明显不同的可成形性。进行了基于微结构的有限元分析,以模拟两个DP 980微结构的局部变形过程,结果表明,可成形性差异的可能原因在于DP微结构中硬质马氏体相的形态。这项研究的结果表明,需要一套更新的材料验收和筛选标准,以更好地量化和确保AHSS的可制造性。

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