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Effect of molybdenum, manganese and tungsten contents on the corrosion behavior and hardness of iron-based metallic glasses

机译:钼,锰和钨含量对铁基金属玻璃腐蚀行为和硬度的影响

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摘要

The effects of molybdenum (Mo), manganese (Mn) and tungsten (W) on the corrosion behavior and hardness of iron-based metallic glasses (MG) were investigated by using electrochemical measurements, X-ray photoelectron spectroscopy, and micro-hardness tester. The results showed that the alloying elements (Mo, Mn, and W) have great influence on the corrosion behavior and hardness. Corrosion resistance of the MG increased with Mo and W-content to a critical value (9.4 and 3.2 at%, respectively) and then decreased, while kept increasing with Mn. The corrosion behavior is dependent on the composition of the passive film. The protective Mo(IV), Mn(IV), and W(VI) oxide film on the surface attributes to the enhanced stability of the film. The hardness of the MG is not sensitive to the Mn content, but increased with the Mo and W-content. Little influence on the hardness is found when the Mo content is higher than 9.4 at%. Based on the above mentioned influence of alloying elements, corrosion, and wear resistance can be balanced to meet the service of marine pump that served in both corrosive and erosive environments.
机译:通过电化学测量,X射线光电子能谱和显微硬度测试仪研究了钼(Mo),锰(Mn)和钨(W)对铁基金属玻璃(MG)腐蚀行为和硬度的影响。 。结果表明,合金元素(Mo,Mn和W)对腐蚀行为和硬度有很大影响。 MG的耐腐蚀性随Mo和W含量增加到临界值(分别为9.4和3.2 at%),然后下降,而随Mn保持增加。腐蚀行为取决于钝化膜的成分。表面的保护性Mo(IV),Mn(IV)和W(VI)氧化膜有助于提高膜的稳定性。 MG的硬度对Mn含量不敏感,但是随着Mo和W含量的增加而增加。当Mo含量高于9.4at%时,对硬度几乎没有影响。基于上述合金元素的影响,可以平衡腐蚀和耐磨性,以满足在腐蚀和侵蚀性环境中使用的船用泵的使用。

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