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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Electrodeposition behavior and properties of iron-group metal alloys with W from ammoniacal citrate baths
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Electrodeposition behavior and properties of iron-group metal alloys with W from ammoniacal citrate baths

机译:柠檬酸氨水浴中含铁的铁族金属合金的电沉积行为和性能

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摘要

Electrodeposition behavior of iron-group metal alloys with W was studied in ammoniacal citrate baths of various compositions at 50℃ under galvanostatic conditions. The wear and corrosion resistances of iron-group metal alloys with W were also investigated by sliding wear test of ring-on-plate type at 300℃ and dipping test in HNO{sub}3, H{sub}2SO{sub}4 and HF solutions. The results obtained were as follows: (1) The relationship between the alloy composition and the cathode current efficiency showed the existence of two characteristic alloy compositions, i.e., the one appeared at a maximum partial current efficiency of W and the other corresponded to the limiting W content. (2) Electrodeposition behavior of iron-group metal alloys with W was explainable by the mechanism that the intermediate W4 oxide electrochemically formed was reduced by atomic hydrogen held on freshly deposited iron-group metals. (3) The wear resistance of iron-group metal alloys with W was improved with increasing W content in the deposit and showed the best performance at 30~40 mass% W. When W content in the deposit was high, hardness of the film was increased to prevent adhesive wear between the film and press ring. Hardening of the film due to the frictional heat also seemed to be contributed to the improvement of wear resistance. (4) The corrosion resistances of the films were improved with increasing W content in the deposit, especially in HNO{sub}3 solutions.
机译:在恒电流条件下,在50℃的各种组成的氨柠檬酸盐浴中研究了含W的铁族金属合金的电沉积行为。还通过在300℃下进行的板环式滑动磨损试验和在HNO {sub} 3,H {sub} 2SO {sub} 4和HNO3中的浸入试验研究了含W的铁族金属合金的耐磨性和耐蚀性。 HF解决方案。得到的结果如下:(1)合金成分与阴极电流效率之间的关系表明存在两种特征合金成分,即一种以最大分流效率W出现,另一种对应于极限。 W含量。 (2)具有W的铁族金属合金的电沉积行为可以通过以下机理解释:电化学形成的中间W4氧化物被保持在新鲜沉积的铁族金属上的原子氢还原。 (3)随着沉积物中W含量的增加,具有W的铁族金属合金的耐磨性得到改善,并且在30〜40质量%W时表现出最佳的性能。当沉积物中W含量高时,薄膜的硬度会降低。增加以防止薄膜和压环之间的粘合剂磨损。由于摩擦热引起的膜的硬化似乎也有助于提高耐磨性。 (4)随着沉积物中W含量的增加,薄膜的耐蚀性得到改善,尤其是在HNO {sub} 3溶液中。

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