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Effect of the Die Temperature and Blank Thickness on the Formability of a Laser-Welded Blank of a Boron Steel Sheet with Removing Al-Si Coating Layer

机译:模具温度和坯料厚度对去除铝硅涂层的硼钢板激光焊接坯料成形性的影响

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摘要

Reducing carbon emissions has been a major focus in the automobile industry to address various environmental issues. In particular, studies on parts comprised of high strength sheets and light car bodies are ongoing. Accordingly, this study examined the use of boron steel, which is commonly used in high strength sheets. Boron steel is a type of sheet used for hot stamping parts. Although it has high strength, the elongation is inferior, which reduces its crash energy absorption capacity. To solve this problem, two sheets of different thickness were welded so the thin sheet would absorb crash energy and the thick sheet would work as a support. Boron steel, however, may show weakening at the welding spot due to the Al-Si coating layer used to prevent oxidation from occurring during the welding process. Therefore, a certain part of the coating layer of a double-thickness boron steel sheet that is welded in the hot stamping process is removed through laser ablation, and the formability of the hot-work was examined.
机译:减少碳排放一直是汽车工业解决各种环境问题的主要重点。特别是,正在对由高强度薄板和轻型车身组成的零件进行研究。因此,这项研究检查了高强度薄板中常用的硼钢的使用。硼钢是用于热冲压零件的薄板类型。虽然强度高,但是伸长率差,降低了碰撞能量吸收能力。为了解决这个问题,将两张不同厚度的板焊接在一起,使薄板吸收碰撞能量,而厚板将作为支撑。然而,由于用于防止在焊接过程中发生氧化的Al-Si涂层,硼钢可能在焊接点处表现出弱化作用。因此,通过激光烧蚀去除在热冲压过程中焊接的双厚度硼钢板的涂层的特定部分,并检查热加工的可成形性。

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