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Effect of strip entry temperature on the formation of interfacial layer during hot-dip galvanizing of press-hardened steel

机译:带钢入口温度对淬硬钢热浸镀锌过程中界面层形成的影响

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摘要

Strip entry temperature is one of the important factors that affect alloying reactions at the steel/coating interface. This study focuses on the influence of strip entry temperature on phase formation at the press-hardened steel(PH) substrate/coating interface in zinc baths with 0.12 wt.% and 0.2 wt.% Al content respectively. The microstructure of the interfacial layer was characterized by Scanning Electron Microscope (SEM) and Glow Discharge Optical Emission Spectrometer (GDOES). Itwas determined that themicrostructure components of steel/coating interface are significantly influenced by the strip entry temperature within 440-480 °C. In the zinc bath with0.12 wt.% Al, the interfacial layer consists of mainly ζ phase (FeZn13), and the size of the ζ phase increases with the strip temperature. However, the amount of ζ phases and the Al content of the interfacial layer decreases with the strip temperature. Meanwhile, in the zinc bath with 0.2 wt.% Al, a continuous inhibition layer Fe2Al5 was formed on the steel surface. The Al enrichment at the interfacial layer increased with increasing strip temperature, accompanied with which is the coarser inhibition layer morphology.
机译:钢带入口温度是影响钢/涂层界面合金化反应的重要因素之一。这项研究的重点是带钢入口温度对铝含量分别为0.12 wt%和0.2 wt%的锌浴中压硬化钢(PH)基材/涂层界面处相形成的影响。通过扫描电子显微镜(SEM)和辉光放电光谱仪(GDOES)表征界面层的微观结构。已经确定,钢/涂层界面的显微组织成分在440-480°C范围内受到带材进入温度的显着影响。在具有0.12重量%的Al的锌浴中,界面层主要由ζ相(FeZn13)组成,并且ζ相的尺寸随剥离温度而增加。然而,界面相的ζ相的量和Al含量随着带钢温度而降低。同时,在具有0.2重量%的Al的锌浴中,在钢表面上形成了连续的抑制层Fe 2 Al 5。随着汽提温度的升高,界面层的Al富集度增加,随之而来的是较粗糙的抑制层形态。

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