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Reduction of zinc consumption with enhanced corrosion protection in hot-dip galvanized coatings: A process-based cost analysis

机译:在热浸镀锌涂层中减少锌消耗并增强防腐蚀性能:基于工艺的成本分析

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摘要

To improve sustainability in a hot-dip galvanized coating industry, a series of galvanizing techniques have been developed. Here, a relatively novel galvanizing technique developed to reduce zinc consumption and enhance steel's corrosion protection is investigated in relation to the conventional galvanizing technique. A process-based cost modeling (PBCM) is employed to analyze the process's cost effectiveness and to determine the influence of the cost drivers, including part surface area, coating thickness, and raw materials' costs. The new process, which involves the use of either electrodeposition or electroless-deposition technique, is found economically attractive if the electrodeposition technique is integrated and the pre-coating layer remains thin. The electroless-deposition integrated process shows promise as zinc and nickel prices increase. Cost reduction of the galvanizing process with pre-coating layers is achieved mainly through reduction of zinc consumption and exclusion of the fluxing step.
机译:为了提高热浸镀锌涂料行业的可持续性,已开发出一系列镀锌技术。在此,相对于传统的镀锌技术,研究了一种相对新颖的镀锌技术,以减少锌的消耗并增强钢的防腐性能。基于过程的成本建模(PBCM)用于分析过程的成本效率并确定成本驱动因素的影响,包括零件表面积,涂层厚度和原材料成本。如果集成了电沉积技术并且预涂层保持较薄,则涉及使用电沉积或化学沉积技术的新工艺在经济上具有吸引力。随着锌和镍价格的上涨,化学沉积集成工艺有望实现。带有预涂层的镀锌工艺的成本降低主要是通过减少锌的消耗和排除助熔剂来实现的。

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