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CRYOGENIC BURNISHING OF AZ31B Mg ALLOY FOR ENHANCED CORROSION RESISTANCE

机译:低温抛光AZ31B Mg合金,可提高耐腐蚀性

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Poor corrosion resistance is limiting applications of Mg alloys. However, the corrosion performance of an Mg alloy can be enhanced through modification of its microstructure. It has been reported in the literature that the microstructure, especially grain size of AZ31 Mg alloy, has a significant influence on its corrosion resistance. In this study, AZ31B discs were subjected to a novel mechanical processing method-cryogenic burnishing; the surface of AZ31B work piece was burnished with a custom tool under a liquid nitrogen spraying condition. The processing led to a more than 3 mm thick surface layer with remarkably changed microstructures formed on the disc surface. Significant grain refinement occurred within this surface layer due to dynamic recrystallization induced by severe plastic deformation and effective cooling by liquid nitrogen. Both electrochemical method and hydrogen evolution method indicate that the corrosion resistance of the burnished surface was significantly improved.
机译:耐腐蚀性差是限制Mg合金的应用。然而,通过修改其微观结构,可以提高Mg合金的腐蚀性性能。在文献中据报道,微观结构,尤其是AZ31mg合金的粒度,对其耐腐蚀性有显着影响。在本研究中,AZ31B光盘经过新的机械加工方法 - 低温抛光; AZ31B工件的表面在液氮喷涂条件下用定制工具燃烧。该处理导致了超过3mm的厚表面层,在盘表面上形成显着变化的微结构。由于通过严重的塑性变形和通过液氮的有效冷却而引起的动态再结晶,在该表面层内发生显着的晶粒细化。两种电化学方法和氢化方法都表明抛光表面的耐腐蚀性显着改善。

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