...
首页> 外文期刊>Journal of Materials Science >Infiltration of tin bronze into alumina particle beds: influence of alloy chemistry on drainage curves
【24h】

Infiltration of tin bronze into alumina particle beds: influence of alloy chemistry on drainage curves

机译:锡青铜渗透到氧化铝颗粒床中:合金化学对排水曲线的影响

获取原文
获取原文并翻译 | 示例

摘要

The wetting of angular alumina particle preforms by Cu-Sn alloys is investigated by means of pressure infiltration experiments conducted at 1150 °C, using a system enabling dynamic and precise measurements of the metal volume injected into the preform. Wetting is quantified in terms of drainage curves, which plot the volume fraction of molten metal in the packed powder preform (also called saturation) versus the applied pressure. The shape of the curves confirms earlier findings, namely (i) the initial stage of infiltration is dominated by percolation and obeys a universal scaling relation while the metal shape is fractal; and (ii) at higher saturation, incremental pore-filling is dictated by local pore geometrical characteristics, saturation curves obeying then the Brooks-Corey correlation. According to sessile drop data in the literature, the Cu-Sn system is characterized by relatively small changes in the contact angle with alloy composition (128°-122°), while the metal surface tension changes bymore than a factor two over the whole composition range. One would, therefore, expect that the drainage curves be indifferently proportional to the molten metal surface tension or the work of immersion: the present data show that this is indeed verified.
机译:通过在1150°C下进行的压力渗透实验,研究了Cu-Sn合金对角状氧化铝颗粒预成型坯的润湿性,使用的系统能够动态,精确地测量注入到预成型坯中的金属量。根据排水曲线对润湿进行量化,该排水曲线绘制了填充粉末预成型坯中熔融金属的体积分数(也称为饱和度)与施加压力的关系。曲线的形状证实了较早的发现,即:(i)渗透的初始阶段以渗流为主,服从普遍的比例关系,而金属的形状是分形的; (ii)在较高饱和度时,孔隙的增量由局部孔隙的几何特征决定,饱和曲线服从Brooks-Corey相关性。根据文献中的无滴数据,Cu-Sn系统的特征是与合金成分的接触角变化较小(128°-122°),而金属表面张力在整个成分中变化超过两倍。范围。因此,人们希望排水曲线与熔融金属表面张力或浸没功无关紧要:目前的数据表明这一点确实得到了验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号