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用于汽车成型和碰撞应用的第三代先进高强度钢的比较评估

A Comparative Evaluation of Third-Generation Advanced High-Strength Steels for Automotive Forming and Crash Applications.

作者信息

Noder Jacqueline, Gutierrez Jon Edward, Zhumagulov Amir, Dykeman James, Ezzat Hesham, Butcher Clifford

机构信息

Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, ON N2L 3G1, Canada.

Honda R&D Americas Inc., 21001 State Route 739, Raymond, OH 43067, USA.

出版信息

Materials (Basel). 2021 Aug 31;14(17):4970. doi: 10.3390/ma14174970.

Abstract

While the third generation of advanced high-strength steels (3rd Gen AHSS) have increasingly gained attention for automotive lightweighting, it remains unclear to what extent the developed methodologies for the conventional dual-phase (DP) steels are applicable to this new class of steels. The present paper provides a comprehensive study on the constitutive, formability, tribology, and fracture behavior of three commercial 3rd Gen AHSS with an ultimate strength level ranging from 980 to 1180 MPa which are contrasted with two DP steels of the same strength levels and the 590R AHSS. The hardening response to large strain levels was determined experimentally using tensile and shear tests and then evaluated in 3D simulations of tensile tests. In general, the strain rate sensitivity of the two 3rd Gen 1180 AHSS was significantly different as one grade exhibited larger transformation-induced behavior. The in-plane formability of the three 1180 MPa steels was similar but with a stark contrast in the local formability whereas the opposite trend was observed for the 3rd Gen 980 and the DP980 steel. The forming limit curves could be accurately predicted using the experimentally measured hardening behavior and the deterministic modified Bressan-Williams through-thickness shear model or the linearized Modified Maximum Force Criterion. The resistance to sliding of the three 3rd Gen AHSS in the Twist Compression Test revealed a comparable coefficient of friction to the 590R except for the electro-galvanized 3rd Gen 1180 V1. An efficient experimental approach to fracture characterization for AHSS was developed that exploits tool contact and bending to obtain fracture strains on the surface of the specimen by suppressing necking. Miniature conical hole expansion, biaxial punch tests, and the VDA 238-100 bend test were performed to construct stress-state dependent fracture loci for use in forming and crash simulations. It is demonstrated that, the 3rd Gen 1180 V2 can potentially replace the DP980 steel in terms of both the global and local formability.

摘要

虽然第三代先进高强度钢(3rd Gen AHSS)在汽车轻量化方面越来越受到关注,但传统双相(DP)钢的现有开发方法在多大程度上适用于这类新型钢仍不清楚。本文对三种商业3rd Gen AHSS进行了全面研究,其极限强度水平在980至1180 MPa之间,并与两种相同强度水平的DP钢和590R AHSS进行了对比。通过拉伸和剪切试验实验确定了对大应变水平的硬化响应,然后在拉伸试验的三维模拟中进行了评估。一般来说,两种第三代1180 AHSS的应变速率敏感性有显著差异,因为其中一个等级表现出更大的相变诱导行为。三种1180 MPa钢的面内成形性相似,但局部成形性有明显差异,而第三代980钢和DP980钢则呈现相反趋势。使用实验测量的硬化行为以及确定性修正的布雷桑 - 威廉姆斯厚度方向剪切模型或线性化修正最大力准则,可以准确预测成形极限曲线。在扭转压缩试验中,三种第三代AHSS的抗滑动性显示,除了电镀锌第三代1180 V1外,其摩擦系数与590R相当。开发了一种有效的AHSS断裂表征实验方法,该方法利用工具接触和弯曲,通过抑制颈缩来获取试样表面的断裂应变。进行了微型锥形扩孔试验、双轴冲压试验和VDA 238 - 100弯曲试验,以构建用于成形和碰撞模拟的应力状态相关断裂轨迹。结果表明,就整体和局部成形性而言,第三代1180 V2有可能替代DP980钢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21b5/8434350/dc8a134d86f9/materials-14-04970-g001.jpg

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