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Dissolution of brass alloys naturally aged in neutral solutions - an electrochemical and surface analytical study

机译:中性溶液天然老化黄铜合金的溶解 - 电化学和表面分析研究

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摘要

The ageing process of brass alloys, the dissolution rate versus time, was studied in artificial saliva (pH 7.4) and in a phosphate buffer solution (pH 7). Mechanically polished brass alloys (Zn content 18-38 wt%) were exposed for 1, 3 and 16 hours to the solutions open to air at room temperature. The open circuit potential (OCP) and linear polarization resistance (R-p) increased asymptotically with ageing time, indicating a decrease of the dissolution rate upon time. In the artificial saliva the corrosion rate decreased from initially 60 mu m per year to 0.5 mu m per year after 16 h of exposure, and alloys with a higher zinc content in the alloy showed higher dissolution rates. In the less aggressive phosphate buffer solution the corrosion rate decreased only by a factor of two. This different reaction mechanism can be interpreted on the basis of the surface film composition determined by X-ray photoelectron spectroscopy (XPS) and X-ray induced Auger electron spectroscopy (XAES): while following the exposure to artificial saliva a thick protective film of CuSCN and zinc phosphate was formed, the film present on the brass alloys was very thin and was made of copper oxide Cu2O and ZnO.
机译:在人造唾液(pH7.4)中和磷酸盐缓冲溶液(pH7)中研究黄铜合金的老化过程,溶出速率与时间。将机械抛光的黄铜合金(Zn含量18-38wt%)暴露于1,3和16小时,以在室温下向空气开放的溶液。开路电位(OCP)和线性偏振电阻(R-P)随着老化时间渐近增加,表明溶解速率的减少。在人造唾液中,腐蚀速率从最初的60μm每年减少到每年60μm,每年在接触16小时后每年0.5μm,并且合金中具有较高锌含量的合金显示出更高的溶解率。在不太腐蚀性的磷酸盐缓冲溶液中,腐蚀速率仅降低两倍。这种不同的反应机制可以基于由X射线光电子能谱(XPS)和X射线诱导螺旋电子光谱(XAES)测定的表面膜组合物来解释:在暴露于人造唾液的荷敏薄膜上和磷酸锌形成,在黄铜合金上存在的薄膜非常薄,由氧化铜Cu2O和ZnO制成。

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  • 来源
    《RSC Advances》 |2016年第93期|共12页
  • 作者单位

    Univ Cagliari Dipartimento Sci Chim &

    Geol Campus Monserrato SS 554 I-09124 Cagliari Italy;

    Univ Cagliari Dipartimento Sci Chim &

    Geol Campus Monserrato SS 554 I-09124 Cagliari Italy;

    Univ Cagliari Dipartimento Sci Chim &

    Geol Campus Monserrato SS 554 I-09124 Cagliari Italy;

    Univ Cagliari Dipartimento Sci Chim &

    Geol Campus Monserrato SS 554 I-09124 Cagliari Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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