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Influence of the Manufacturing Process on Defects in the Galvanized Coating of High Carbon Steel Wires

机译:制造工艺对高碳钢丝镀锌层缺陷的影响

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摘要

This study is a detailed failure analysis of galvanized high carbon steel wires, which developed coating cracks during the torsion test performed as a quality control at the end of the manufacturing process. Careful visual inspections showed that the cracks are already present in the coating before the torsion test. In order to explain the origin of these cracks, systematic metallographic investigations were performed by means of optical and scanning electron microscope on both the wires and the rods that have been cold drawn to produce the wire. The chemical composition of the galvanized coatings was evaluated by means of energy dispersive spectroscopy. Micro bidimensional X-ray diffraction experiments were also performed to measure the residual stresses in the galvanized coating. The results showed that the failure is related to two main factors: the relatively high content of silicon in the steel and the unsuitable cooling rate of the rods at the exit from the galvanizing bath. The mechanism proposed to explain the origin of the defects was supported by Finite Elements Methods simulations and verified with in-plant tests. The proper countermeasures were then applied and the problem successfully solved.
机译:这项研究是对镀锌高碳钢丝的详细失效分析,在制造过程结束时作为质量控制执行的扭转试验中,镀锌高碳钢丝会产生涂层裂纹。仔细的目视检查表明,在扭转试验之前,涂层中已经存在裂纹。为了解释这些裂纹的起源,通过光学和扫描电子显微镜对金属丝和被冷拉成金属丝的棒材进行了系统的金相研究。镀锌涂层的化学组成通过能量色散光谱法评估。还进行了微二维X射线衍射实验,以测量镀锌涂层中的残余应力。结果表明,失效与两个主要因素有关:钢中硅含量相对较高以及镀锌槽出口处的棒材冷却速度不合适。有限元方法模拟支持提出的解释缺陷来源的机制,并通过厂内测试进行了验证。然后采取了适当的对策,成功地解决了问题。

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