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Chemical reactivity of thermo-hardenable steel weld joints investigated by electrochemical impedance spectroscopy

机译:电化学阻抗谱研究热硬化钢焊接接头的化学反应性

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摘要

The chemical reactivity of oxide-free weld joints made of thermo-hardened carbon steel in different electrolytes was investigated by chronopo-tentiometry, electrochemical impedance spectroscopy (EIS) and scanning electron microscopy (SEM). The objective was to identify the role of different electrolyte constituents on the electrochemical behaviour of the different materials constituting the weld joint, namely the weld material, the heat affected zone (HAZ) and the base carbon steel. Hardness measurements by Vickers and nano-indentation techniques indicated that the weld material is harder than the heat affected zone and the base carbon steel due to a Widmanstatten ferrite-type structure of the weld. Electrochemical measurements were performed on polished cross-sections on these weld joints in four electrolytes containing different additives. The weld joints are active in all tested electrolytes and the composition of the electrolytes dictates the dissolution even though the main chemical reactivity mechanism remains unaffected. A balanced presence of oxidative agent, inhibitor and HF in the electrolyte is necessary to obtain a homogeneous chemical attack on weld joint and Si-rich inclusion removal in weld material, while avoiding excessive attack roughening and/or pitting of the carbon steel.
机译:通过计时电位仪,电化学阻抗谱(EIS)和扫描电子显微镜(SEM)研究了由热硬化碳钢制成的无氧化物焊接接头在不同电解质中的化学反应性。目的是确定不同电解质成分对构成焊接接头的不同材料(即焊接材料,热影响区(HAZ)和基础碳钢)的电化学行为的作用。通过维氏硬度计和纳米压痕技术进行的硬度测量表明,由于焊接的维氏铁素体型结构,焊接材料比热影响区和基础碳钢更硬。在包含不同添加剂的四种电解质中,对这些焊接接头的抛光横截面进行电化学测量。焊缝在所有测试的电解液中均具有活性,即使主要化学反应机理不受影响,电解液的成分也决定了溶解。为了在焊缝上获得均匀的化学侵蚀并在焊接材料中去除富硅夹杂物,同时避免碳钢过度腐蚀和/或点蚀,电解液中必须均衡地存在氧化剂,抑制剂和HF。

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