首页> 外文期刊>Metallurgical and Materials Transactions A >Correlating the microstructure of the die-chill skin and the corrosion properties for a hot-chamber die-cast AZ91D magnesium alloy
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Correlating the microstructure of the die-chill skin and the corrosion properties for a hot-chamber die-cast AZ91D magnesium alloy

机译:热室压铸AZ91D镁合金的模冷蒙皮的微观结构与腐蚀性能的相关性

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摘要

The corrosion of a hot-chamber die-cast AZ91D thin plate (1.4 mm in thickness) was investigated in terms of its microstructure, to elucidate the role of die-chill skin in corrosion. The die-chill skin was composed of a thin layer of chill zone and a thick layer of an interdendritic Al-rich α-Mg/Al12Mg17 β-phase particle/α-Mg grain composite microstructures. The chill zone (4±1 µm in thickness) had fine columnar and equiaxed grains and contained a distribution of submicron Mg-Al-Zn intermetallic particles. Beneath the chill zone, Al12Mg17 β particles were irregularly shaped but did not have an interdendritic network morphology. Furthermore, Al-rich α phase (also known as eutectic α) was in the interdendritic network, which occupied a higher volume fraction than the β phase in the die-skin layer. Corrosion characteristics were studied via constant-immersion and electrochemical tests. Although previous studies have ascribed the fine microstructure to good corrosion resistance for the AZ91D alloy, the present study showed severe corrosion of the sample with a die skin in chloride solution. Moreover, the sample without the die skin on the surface corroded more slowly. The inferior corrosion performance of the die skin was considered to be related to the high volume fraction of the interdendritic network of Al-rich α phase contained in the die skin, owing to the high cooling rate during solidification. The Al-rich α phase does not increase the corrosion resistance of the AZ91D alloy.
机译:从热室压铸AZ91D薄板(厚度为1.4 mm)的微观结构方面研究了其腐蚀,以阐明压铸皮肤在腐蚀中的作用。模具冷硬蒙皮由薄薄的冷硬区层和厚的层间富Al的α-Mg/ Al12 Mg17 β相颗粒/α-Mg晶粒复合组织组成。激冷区(厚度为4±1 µm)具有细小的圆柱状和等轴晶粒,并分布有亚微米级的Mg-Al-Zn金属间化合物颗粒。在冷却区下方,A​​l12 Mg17 β颗粒呈不规则形状,但不具有树突间网络形态。此外,在枝晶间网络中存在富Al的α相(也称为共晶α),其比皮表层中的β相占据更高的体积分数。通过恒定浸没和电化学测试研究了腐蚀特性。尽管先前的研究已将AZ91D合金的精细组织归因于良好的耐蚀性,但本研究表明,样品在氯化物溶液中具有严重的腐蚀。而且,表面没有模头皮的样品腐蚀得更慢。由于固化过程中的高冷却速率,认为模具表皮的较差的腐蚀性能与模具表皮中所含的富含Al的α相的树突状网络的高体积分数有关。富铝的α相不会增加AZ91D合金的耐腐蚀性。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第8期|2245-2252|共8页
  • 作者

    Bing-Lung Yu; Jun-Yen Uan;

  • 作者单位

    the Department of Materials Engineering National Chung Hsing University 402 Taichung Taiwan Republic of China;

    the Department of Materials Engineering National Chung Hsing University 402 Taichung Taiwan Republic of China;

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  • 正文语种 eng
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