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Hydrogen Influence on Microstructure and Properties of Novel Explosive Welded Corrosion Resistant Clad Materials

机译:氢气对新型爆炸焊接耐腐蚀层材料的组织和性能影响

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The aim of this work was to investigate whether the explosively welded metals are susceptible to hydrogen degradation. The materials described in this article are widely used nickel alloy Inconel C-276 and super duplex steel SAF 2507 as clad materials for their superior resistance to corrosive environment and low alloy steel P355NH as a base material. It was observed that at the explosive bonded interface between the base steel and the stainless steel some local melting zones are formed. It was found that the cathodic hydrogen charging causes changes in the microstructure of bonded materials and decreases the shear strength of bonds as well as the corrosion resistance of clads.
机译:这项工作的目的是研究爆炸焊接金属是否易受氢化的影响。本文中描述的材料是广泛应用的镍合金Inconel C-276和超级双工钢SAF 2507,其作为其具有腐蚀性环境和低合金钢P355NH作为基材的耐腐蚀性环境的耐抗性材料。观察到,在底钢和不锈钢之间的爆炸粘合界面,形成一些局部熔化区。发现阴极氢气充电导致粘合材料的微观结构变化,并降低粘合剂的剪切强度以及包层的耐腐蚀性。

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