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Influence of Heat-Pretreatments on the Microstructural and Mechanical Properties of Galfan-Coated Metal Bonds

机译:热预处理对加法涂层金属键微观结构和力学性能的影响

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In the present study, heat-treatment assisted bonding of galfan-coated low-carbon steel sheets was investigated. Steel sheets were bonded by cold rolling subsequently to a heat treatment in the temperature range from 400°C to 550 °C. The reduction ratio during cold rolling was varied in the range from 50% to 80%. Such high reduction ratios were achieved by splitting the bonding process into three stages. By employing heat-treatments, the mechanical properties of the bonds were improved. The heat-pretreatment allowed the formation of brittle intermetallic phases that were easily fractured in the rolling gap during the bonding process. Thus, juvenile non-oxidized surfaces were formed, which facilitated the bonding between the steel layers, and thus increased the bond strength. The intermetallic phases were actively formed at temperatures of 450 °C and above; however increasing temperatures resulted in decreasing mechanical properties due to oxidation processes. The local microstructure was analyzed by scanning electron microscopy in order to characterize the contact zone on the micro level with a focus on the formation of intermetallic phases. The mechanical properties were determined in tensile shear tests. Interestingly, it was found that the galfan coating allowed for bonding at room temperature, and the aluminum fraction was primarily responsible for the enhanced oxide formation during the heat-pretreatment.
机译:在本研究中,研究了加仑涂覆的低碳钢板的热处理辅助粘接。随后通过冷轧粘合钢板,在400℃至550℃的温度范围内的热处理。冷轧过程中的减少比率在50%至80%的范围内变化。通过将键合过程分成三个阶段来实现这种高减速比。通过采用热处理,改善了键的机械性能。热预处理允许在粘合过程中易于在轧制间隙中容易地破裂的脆性金属间相。因此,形成少年非氧化表面,其促进了钢层之间的粘合,从而增加了粘合强度。在450℃和以上的温度下主动形成金属间相;然而,由于氧化过程,温度升高导致机械性能降低。通过扫描电子显微镜分析局部微观结构,以便在微水位上表征接触区,重点是金属间相的形成。在拉伸剪切试验中测定机械性能。有趣的是,发现允许在室温下键合的加仑涂层,铝馏分主要负责在热预处理期间增强的氧化物形成。

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