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Galvanic corrosion behavior of plain carbon steel-B_4C composite in 3.5% NaCl solution with electrochemical noise 被引量:1

Galvanic corrosion behavior of plain carbon steel-B_4C composite in 3.5% NaCl solution with electrochemical noise
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摘要 The galvanic corrosion behavior of metal-matrix composite plain carbon steel/boron carbide(B_4C) in 3.5%NaCl solution was studied.The composite was locally produced as a weld band on carbon steel by means of the gas tungsten arc welding process and using nickel as the wetting agent.Samples from the weld band,heat-affected zone and parent metal region were extracted precisely and DC/AC electrochemical tests in combination with techniques such as scanning electron microcopy and energy dispersive spectrometry were conducted.The results of the electrochemical tests show that the corrosion resistance of the parent metal sample is higher than that of the welded composite and the HAZ samples.However,as the corrosion potential(E_(Corr)) of the parent metal is more positive than other two samples,this becomes the cathode in galvanic couples with two other samples.On the other hand,the weld composite sample is also cathodic due to its more positive E_(Corr) compared to HAZ sample.This means that the HAZ can be particularly at risk of preferential dissolution.The approach can be used in specific areas on plain carbon steel to locally increase hardness and resistance to abrasion and reduce manufacturing costs. The galvanic corrosion behavior of metal-matrix composite plain carbon steel/boron carbide (B4C) in 3.5% NaCl solution was studied. The composite was locally produced as a weld band on carbon steel by means of the gas tungsten arc welding process and using nickel as the wetting agent. Samples from the weld band, heat-affected zone and parent metal region were extracted precisely and DC/AC electrochemical tests in combination with techniques such as scanning electron microcopy and energy dispersive spectrometry were conducted. The results of the electrochemical tests show that the corrosion resistance of the parent metal sample is higher than that of the welded composite and the HAZ samples. However, as the corrosion potential (Eco^r) of the parent metal is more positive than other two samples, this becomes the cathode in galvanic couples with two other samples. On the other hand, the weld composite sample is also cathodic due to its more positive Ecorr compared to HAZ sample. This means that the HAZ can be particularly at risk of preferential dissolution. The approach can be used in specific areas on plain carbon steel to locally increase hardness and resistance to abrasion and reduce manufacturing costs.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期1-8,共8页 中南大学学报(英文版)
关键词 金属基复合材料 NACL溶液 电化学测试 腐蚀行为 中碳钢 电偶 扫描电子显微镜 热影响区 composites scanning electron microscopy potentiodynamic polarization electrochemical noise
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