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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Investigation of formability and surface micro-crack in hot deep drawing by using laser-welded blank of Al-Si and Zn-coated boron steel
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Investigation of formability and surface micro-crack in hot deep drawing by using laser-welded blank of Al-Si and Zn-coated boron steel

机译:Al-Si和Zn涂层硼钢的激光焊接坯料在热深冲中的可成形性和表面微裂纹的研究

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摘要

Currently, the automobile industry is focusing all its attention to creating high-strength, ultra low-weight car bodies. Many techniques can be used to decrease the thickness of a steel plate in a car body but increase the strength. Among these, the hot stamping process makes use of boron steel to produce ultra high-strength components. On the contrary, this process has a low elongation that causes a decrease in collision absorptiveness. Therefore, this study examined the material and weldability of components with high collision absorptiveness using boron steel plates welded at different thicknesses, where the thinner steel sheet can absorb the collision, whereas the thicker steel sheet can endure it. This study was conducted using boron steel coated with either Al-Si or Zn. The results showed that satisfactory tensile strength and elongation could be obtained when both sides of the coating layer were removed by the laser. The hardness in the welded area of Zn-coated boron steel was greater than 450 Hv, even when the specimen was welded without laser ablation of the coating layer, but the coating layer peeled off when heated for 5 min at 950℃.
机译:当前,汽车工业将所有注意力都集中在制造高强度,超低重量的车身上。可以使用许多技术来减小车身中钢板的厚度,但是增加强度。其中,热冲压工艺利用硼钢生产超高强度组件。相反,该过程的伸长率低,导致碰撞吸收性降低。因此,本研究使用不同厚度的硼钢板检查了具有高碰撞吸收性的部件的材料和可焊性,其中较薄的钢板可以吸收碰撞,而较厚的钢板可以承受碰撞。该研究是使用涂有Al-Si或Zn的硼钢进行的。结果表明,当通过激光除去涂层的两面时,可以获得令人满意的拉伸强度和伸长率。即使在不进行激光烧蚀涂层的情况下进行焊接的情况下,镀锌硼钢的焊接区域的硬度仍大于450 Hv,但在950℃加热5分钟时,涂层会剥落。

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