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Improvement of formability in deep drawing of ultra-high strength steel sheets by coating of die

机译:通过模头涂覆提高超高强度钢板深拉成形性

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The formability of deep drawn ultra-high strength steel sheets in dies coated with either titanium nitride (TiN) or Vanadium carbide (VC) at different drawing speeds and ironing ratios was investigated. TiN was deposited via chemical vapour deposition and physical vapour deposition (PVD) while thermal diffusion was used for VC deposition. In non-coated dies, seizure occurred on both surfaces of the die and the side wall of the drawn cup irrespective of the deep drawing conditions. The deep drawability is improved with coating of die. Whereas in coated dies, seizure became significant only during deep drawing extreme conditions of 120 mm/s for TiN-coated dies; and this was prevented in VC-coated dies across all drawing conditions. The VC-coated die was suitable for deep drawing of ultra-high strength steel sheets. The delayed fractured observed in the ultra-high strength steel cups occurred for a large amount of ironing ratio and drawing speeds; and this can be prevented by appropriate heat treatment.
机译:研究了深拉超高强度钢板在不同拉伸速度和熨烫比下涂覆氮化钛(TiN)或碳化钒(VC)的模具中的成形性。通过化学气相沉积和物理气相沉积(PVD)沉积TiN,而热扩散用于VC沉积。在无涂层模具中,不论深冲条件如何,在模具的两个表面和所拉拔杯的侧壁上都会发生咬合。深冲性可通过涂覆模具而得到改善。而在涂层模具中,仅在TiN涂层模具在120 mm / s的深冲极限条件下,咬合才显着;在所有拉伸条件下的VC涂层模具中都可以避免这种情况。涂有VC的模具适用于超高强度钢板的深冲。超高强度钢杯中观察到的延迟断裂发生在大量的熨烫比和拉伸速度下。并且可以通过适当的热处理来防止。

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