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首页> 外文期刊>Materials Research >Evaluation of Welding Parameter's Effects on Corrosion Behavior of Bronze-Carbon Steel Dual-Layer Explosion Welded Joint at Salt Enviroment
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Evaluation of Welding Parameter's Effects on Corrosion Behavior of Bronze-Carbon Steel Dual-Layer Explosion Welded Joint at Salt Enviroment

机译:盐环境下焊接参数对青铜-碳钢双层爆炸焊接头腐蚀行为的影响评价

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In the current investigation, corrosion behavior and microstructural variations of explosion-welded joint of bronze-carbon steel dual-layer plates were studied. The resultant curves of potentiodynamic's polarization tests demonstrated that the lowest corrosion rate was related to the sample with maximum explosive load thickness, and the highest corrosion speed was for the sample with minimum standoff distance. EIS test results of welded samples were indicative of creating a passive layer at the beginning of immersion process which showed that the polarization resistance has been reduced by increasing of explosive load thickness. So, the corrosion mechanism included two stages; at the beginning of immersion, for the samples with the lower thickness of explosive load, a passive layer would be created around the component due to higher concentration gradient and then, by removing of this layer, the galvanic couple determines the corrosion rate.
机译:在目前的研究中,研究了青铜-碳钢双层板爆炸焊接接头的腐蚀行为和组织变化。电位动力学极化测试的结果曲线表明,最低的腐蚀速率与最大爆炸载荷厚度的样品有关,而最高的腐蚀速度与最小的隔离距离样品有关。焊接样品的EIS测试结果表明,在浸入过程开始时会形成钝化层,这表明极化电阻已通过增加爆炸载荷厚度而降低。因此,腐蚀机理包括两个阶段。在浸入开始时,对于爆炸厚度较小的样品,由于较高的浓度梯度,将在部件周围形成钝化层,然后通过去除该层,电偶决定了腐蚀速率。

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