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Properties and filtration performance of microporous metal membranes fabricated by rolling process

机译:通过轧制工艺制造的微孔金属膜的性能和过滤性能

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摘要

We evaluated the filtration performance of microporous metal membranes fabricated by the rolling process. Metal wire meshes were rolled with thickness reduction ratios of 10, 20, and 30%. The pore size of the metal wire mesh membrane decreased with increasing rolling ratio, whereas the removal efficiency of the suspended solids and turbidity showed a very slight increase compared to that of an unrolled mesh membrane. The metal powder was dispersed on the surface of the rolled metal wire mesh membrane and bound with polyvinyl alcohol, then dried at 100°C for 1 h, and finally sintered at 1,000°C for 3 h. The mean pore size, suspended solids, and turbidity of the metal powder membrane at a rolling ratio of 30% were approximately 0.7 μm, 84% and 83%, respectively. Therefore, microporous metal membranes successfully fabricated by the rolling process were also sufficiently permeable filters.
机译:我们评估了通过轧制工艺制造的微孔金属膜的过滤性能。金属丝网卷曲,厚度降低量为10,20和30%。金属丝网膜的孔径随着轧制比的增加而降低,而悬浮固体和浊度的去除效率与展开的网膜相比显示出非常轻微的增加。将金属粉末分散在轧制金属丝网膜的表面上并与聚乙烯醇结合,然后在100℃下干燥1小时,最后在1,000℃下烧结3小时。金属粉末膜的平均孔径,悬浮固体和浊度分别为30%,分别为约0.7μm,84%和83%。因此,通过轧制工艺成功制造的微孔金属膜也是充分透过的过滤器。

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