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首页> 外文期刊>Journal of Industrial Textiles >Optimization of air permeability of spunlaced filter fabrics using the Box-Behnken experimental design
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Optimization of air permeability of spunlaced filter fabrics using the Box-Behnken experimental design

机译:用箱形式实验设计优化循环过滤织物的透气性

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One of the most important characteristics that a filter must possess is high air permeability. A good filter fabric must be able to capture the dust particles while maintaining a good airflow through it in order to reduce high pressure drop. Therefore, producing a filter fabric with the desired air permeability can be challenging as several process parameters such as fiber types, area weight and water jet pressure will interact with each other during spunlacing process and influence the fabric air permeability. To study the effects of these independent variables on the air permeability of three different types of spunlaced fabrics, the Box-Behnken design was used to model their effects. The fibers used were polyacrylonitrile, polyphenylene sulfide and blend of polyphenylene sulfide/polyimide. In addition, filtration properties of some of the filter samples were also evaluated. Based on the effects of the fiber types, area weight and water jet pressure on the fabric air permeability, the optimum conditions for achieving higher air permeability were fiber types (+1 level), area weight (0 level) and pressure (-1 level), respectively. The air permeability of the fabrics decreased with increasing water jet pressure for all fiber types and increasing area weight decreased the air permeability. It was observed that the independent variables had a significant effect on the air permeability. Filtration efficiency of the selected filters samples were = 95%. Among the selected samples, polyphenylene sulfide/polyimide (440 g/m(2)) fabric has the lowest pressure drop whereas polyacrylonitrile (560 g/m(2)) has the highest pressure drop.
机译:过滤器必须具有的最重要特征之一是高透气性。良好的过滤器织物必须能够捕获灰尘颗粒,同时保持良好的气流,以减小高压下降。因此,产生具有所需透气性的过滤织物可以挑战,因为诸如纤维类型的若干工艺参数,面积重量和水射流在痉挛过程中将相互作用并且影响织物透气性。为了研究这些独立变量对三种不同类型的循环织物的透气性的影响,盒子Behnken设计用于模拟它们的效果。使用的纤维是聚丙烯腈,聚苯硫醚和聚苯硫醚/聚酰亚胺的混合物。此外,还评估了一些过滤样品的过滤性质。基于纤维类型,面积重量和水射流对织物透气性的影响,实现较高透气性的最佳条件是纤维类型(+1水平),面积重量(0级)和压力(-1级) ), 分别。织物的透气性随着所有纤维类型的水射流增加而降低,并且增加面积重量降低了透气性。观察到独立变量对透气性具有显着影响。所选过滤器样品的过滤效率> = 95%。在所选样品中,聚苯硫醚/聚酰亚胺(440g / m(2))织物具有最低的压降,而聚丙烯腈(560g / m(2))具有最高的压降。

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