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Cellular/Dendritic Transition and Microstructure Evolution during Transient Directional Solidification of Pb-Sb Alloys

机译:Pb-Sb合金瞬态定向凝固过程中的细胞/树突转变和组织演变

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摘要

Recent studies of lead-antimony alloys, used for the production of positive electrodes of lead-acid batteries, have assessed the influences of both the microstructural morphology and of solute redistribution on the surface corrosion resistance in sulfuric acid solution, and have shown that cellular structures and dendritic structures have different responses on the corrosion rate of such alloys. The present article focuses on the search of adequate solidification conditions (alloy composition, cooling rate, and solidification velocity), which determine the occurrence of a microstructural transition from the cellular to the dendritic regime during the transient unidirectional solidification of hypoeutectic Pb-Sb alloys and on the microstructural evolution after such transition. The experimental data refers to the solidification of four hypoeutectic Pb-Sb alloys (2.2, 2.5, 3, and 6.6 wt pct Sb) and of the eutectic composition. The experimental results include transient metal/mold heat-transfer coefficients, liquidus isotherm velocity, cooling rate, and cellular and dendritic spacings. It was found that the cooling rate dependence on cellular and primary dendritic spacings is characterized by an experimental law of the form $ lambda _{1} = A{cdot}ifmmodeexpandafterdotelseexpandafter.fi{T}^{{{kern 1pt} {-0.55}}}, $ which seems to be independent of composition where A = 60 represents the alloys undergoing a cellular growth and A = 115 can describe the dendritic growth. The sudden change on such multiplier has occurred for the Pb 2.2 wt pct Sb alloy, i.e., for the cellular/dendritic transition.
机译:用于生产铅酸电池正极的铅锑合金的最新研究评估了微观结构形态和溶质再分布对硫酸溶液中表面耐蚀性的影响,并表明其细胞结构树枝状结构对这种合金的腐蚀速率有不同的响应。本文着重于寻找适当的凝固条件(合金成分,冷却速率和凝固速度),这些条件确定了在亚共晶Pb-Sb合金和合金的瞬态单向凝固过程中,从蜂窝状过渡到树状状的微观结构的发生。过渡后的微观结构演变。实验数据涉及四种亚共晶Pb-Sb合金(2.2、2.5、3和6.6 wt pct Sb)和共晶成分的凝固。实验结果包括瞬态金属/模具传热系数,液相线等温线速度,冷却速率以及细胞和树突间距。发现冷却速率对细胞和主要树突间距的依赖性通过以下形式的实验定律来表征:$ lambda _ {1} = A {cdot} ifmmodeexpandafterdotelseexpandafter.fi {T} ^ {{{kern 1pt}} {-0.55 }}},$似乎与组成无关,其中A = 60表示合金正在经历细胞生长,而A = 115可以描述树枝状生长。对于Pb 2.2 wt pct Sb合金,即对于细胞/树突转变,这种乘数发生了突然变化。

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  • 来源
    《Metallurgical and Materials Transactions A 》 |2008年第9期| 2161-2174| 共14页
  • 作者单位

    Faculty of Technology University of Brasília 70910-90 Brasília DF Brazil;

    Department of Materials Engineering State University of Campinas UNICAMP 13083-970 Campinas SP Brazil;

    Department of Materials Engineering State University of Campinas UNICAMP 13083-970 Campinas SP Brazil;

    Department of Materials Engineering State University of Campinas UNICAMP 13083-970 Campinas SP Brazil;

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