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Diffusion Analyses Using GDOES Technique of the 22MnB5 Press Hardened Steel with Al-Si and Zn-Ni Coatings

机译:使用GDOES技术对具有Al-Si和Zn-Ni涂层的22MnB5压淬钢的扩散分析

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The hot stamping process consists to heat the steel blank, at total austenitization temperatures and to transfer it into the press tooling for forming and fast cooling to fully martensitic transformation. This transference from furnace to press stage promotes some steel oxidation. The application of metallic coatings avoids this phenomenon. The Al-Si coating, a patented process, has been the most applied on steel. Hence, alternative coatings like Zn-Ni are under development. It is known that this furnace heating causes chemical elements diffusion that results in intermetallics formation. This study had the objective of analyze the diffusion profiles of chemical elements present in the substrate, 22MnB5 steel, and coatings of Al-Si and Zn-Ni, using glow-discharge optical emission spectroscopy - GDOES and to correlate the results with those obtained with energy dispersive X-ray spectroscopy - EDS. The results showed that for the Zn-Ni sample, the Zn and Fe profiles at the interfacial zone, are predominant; which justify the high proportion of ZnFe phases as showed using scanning electron microscopy - SEM images. For the Al-Si sample at the interfacial zone, the profile of Al and Fe varies simultaneously; besides that, silicon diffusion in the substrate is more effectively than the nickel diffusion. For this reason, it was possible to identify AlFeSi phase near to the steel substrate.
机译:热冲压过程包括在总奥氏体化温度下加热钢坯,并将其转移到冲压模具中以进行成形并快速冷却至完全马氏体相变。从炉到压榨阶段的这种转移促进了一些钢的氧化。金属涂层的应用避免了这种现象。铝硅涂层是一种获得专利的工艺,在钢上的应用最为广泛。因此,诸如Zn-Ni的替代涂层正在开发中。众所周知,这种炉子加热会引起化学元素扩散,从而导致金属间化合物的形成。这项研究的目的是使用辉光放电光发射光谱法-GDOES分析存在于基材,22MnB5钢以及Al-Si和Zn-Ni涂层中的化学元素的扩散曲线,并将结果与​​通过能量色散X射线光谱仪-EDS。结果表明,对于Zn-Ni样品,界面区域的Zn和Fe分布占优势;如使用扫描电子显微镜-SEM图像所示,这证明了ZnFe相的比例很高。对于在界面区域的Al-Si样品,Al和Fe的轮廓同时变化。除此之外,衬底中的硅扩散比镍扩散更有效。由于这个原因,有可能在钢基底附近识别出AlFeSi相。

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