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FE Simulation Models for Hot Stamping an Automobile Component with Tailor-Welded High-Strength Steels

机译:定制焊接高强度钢冲压汽车零部件的有限元模拟模型

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Ultra-high-strength in sheet metal parts can be achieved with hot stamping process. To improve the crash performance and save vehicle weight, it is necessary to produce components with tailored properties. The use of tailor-welded high-strength steel is a relatively new hot stamping process for saving weight and obtaining desired local stiffness and crash performance. The simulation of hot stamping boron steel, especially tailor-welded blanks (TWBs) stamping, is more complex and challenging. Information about thermal/mechanical properties of tools and sheet materials, heat transfer, and friction between the deforming material and the tools is required in detail. In this study, the boron-manganese steel B1500HS and high-strength low-alloy steel B340LA are tailor welded and hot stamped. In order to precisely simulate the hot stamping process, modeling and simulation of hot stamping tailor-welded high-strength steels, including phase transformation modeling, thermal modeling, and thermal-mechanical modeling, is investigated. Meanwhile, the welding zone of tailor-welded blanks should be sufficiently accurate to describe thermal, mechanical, and metallurgical parameters. FE simulation model using TWBs with the thickness combination of 1.6 mm boron steel and 1.2 mm low-alloy steel is established. In order to evaluate the mechanical properties of the hot stamped automotive component (mini b-pillar), hardness and microstructure at each region are investigated. The comparisons between simulated results and experimental observations show the reliability of thermo-mechanical and metallurgical modeling strategies of TWBs hot stamping process.
机译:钣金零件的超高强度可通过热冲压工艺实现。为了提高碰撞性能并减轻车辆重量,必须生产具有定制性能的组件。定制焊接的高强度钢的使用是一种相对较新的热冲压工艺,可以减轻重量并获得所需的局部刚度和碰撞性能。热冲压硼钢,尤其是拼焊毛坯(TWB)冲压的模拟更加复杂且具有挑战性。需要有关工具和板材的热/机械性能,传热以及变形材料与工具之间的摩擦的详细信息。在这项研究中,对硼锰钢B1500HS和高强度低合金钢B340LA进行了定制焊接和热冲压。为了精确地模拟热冲压过程,研究了热冲压定制焊接高强度钢的建模和模拟,包括相变建模,热建模和热机械建模。同时,拼焊板的焊接区域应足够准确,以描述热,机械和冶金参数。建立了使用厚度为1.6 mm硼钢和1.2 mm低合金钢的TWB的有限元模拟模型。为了评估热冲压汽车部件(微型b柱)的机械性能,研究了每个区域的硬度和微观结构。仿真结果与实验观察结果的比较表明,TWBs热冲压工艺的热力学和冶金建模策略是可靠的。

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