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Optimization of process parameters for high efficiency laser forming of advanced high strength steels within metallurgical constraints

机译:在冶金条件下优化先进高强度钢的高效激光成形工艺参数

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摘要

Laser forming (LF) has been shown to be a viable alternative to form automotive grade advanced high strength steels (AHSS). Due to their high strength, heat sensitivity and low conventional formability show early fractures, larger springback, batch-to-batch inconsistency and high tool wear.\ud\udIn this paper, optimisation of the LF process parameters has been conducted to further understand the impact of a surface heat treatment on DP1000. A FE numerical simulation has been developed to analyse the dynamic thermo-mechanical effects. This has been verified against empirical data. The goal of the optimisation has been to develop a usable process window for the LF of AHSS within strict metallurgical constraints. Results indicate it is possible to LF this material, however a complex relationship has been found between the generation and maintenance of hardness values in the heated zone. A laser surface hardening effect has been observed that could be beneficial to the efficiency of the process.
机译:激光成型(LF)已被证明是形成汽车级高级高强度钢(AHSS)的可行选择。由于它们的高强度,热敏感性和较低的常规成形性,因此显示出早期断裂,较大的回弹,批次间不一致以及较高的工具磨损。\ ud \ ud本文对LF工艺参数进行了优化,以进一步了解表面热处理对DP1000的影响。已经开发了有限元数值模拟来分析动态热机械效应。已根据经验数据对此进行了验证。优化的目标是在严格的冶金学约束范围内为AHSS的LF开发可用的工艺窗口。结果表明可以将这种材料LF化,但是在加热区的硬度值的产生和维持之间发现了复杂的关系。已经观察到激光表面硬化效果,这可能有益于该过程的效率。

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