采用超细纤维开纤率(包括移位开纤率和裂离开纤率)、减量率、吸水性、毛效和纤维脱落性等综合评价指标,探讨了氢氧化钠浓度、温度和时间及机械力作用对超细纤维织物开纤效果的影响;运用正交试验方法,确定了复合超细纤维开纤的最佳工艺条...采用超细纤维开纤率(包括移位开纤率和裂离开纤率)、减量率、吸水性、毛效和纤维脱落性等综合评价指标,探讨了氢氧化钠浓度、温度和时间及机械力作用对超细纤维织物开纤效果的影响;运用正交试验方法,确定了复合超细纤维开纤的最佳工艺条件:NaOH浓度5 g/L、温度110℃、时间45 m in;并进一步证明了机械力作用能促进开纤效果。展开更多
In this paper,the manufacturing of high-efficiency air filter paper is reported.The air filter paper was produced using ultra-fine fibers and wateroat fibers mercerized by alkali,using an electrospinning apparatus wit...In this paper,the manufacturing of high-efficiency air filter paper is reported.The air filter paper was produced using ultra-fine fibers and wateroat fibers mercerized by alkali,using an electrospinning apparatus with multiple rings.The high efficiency air filter paper has an antibacterial effect after adding a chitosan-copper complex which is harmless to humans.As a result of the measurement,the filtering efficiency of the air filter paper is approximately 99.998%and its antibacterial efficiency is approximately 99.5%.展开更多
文摘采用超细纤维开纤率(包括移位开纤率和裂离开纤率)、减量率、吸水性、毛效和纤维脱落性等综合评价指标,探讨了氢氧化钠浓度、温度和时间及机械力作用对超细纤维织物开纤效果的影响;运用正交试验方法,确定了复合超细纤维开纤的最佳工艺条件:NaOH浓度5 g/L、温度110℃、时间45 m in;并进一步证明了机械力作用能促进开纤效果。
文摘In this paper,the manufacturing of high-efficiency air filter paper is reported.The air filter paper was produced using ultra-fine fibers and wateroat fibers mercerized by alkali,using an electrospinning apparatus with multiple rings.The high efficiency air filter paper has an antibacterial effect after adding a chitosan-copper complex which is harmless to humans.As a result of the measurement,the filtering efficiency of the air filter paper is approximately 99.998%and its antibacterial efficiency is approximately 99.5%.