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首页> 外文期刊>Polymer engineering and science >Preparation of electrospun polyurethane/hydrophobic silica gel nanofibrous membranes for waterproof and breathable application
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Preparation of electrospun polyurethane/hydrophobic silica gel nanofibrous membranes for waterproof and breathable application

机译:耐电纺/疏水性硅胶纳米纤维玻璃防水透气膜的制备

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The polyurethane (PU)/hydrophobic silica gel (HSG) fibrous membranes with the hydrophobic and breathable surface was fabricated via electrospinning. By employing the HSG incorporation, mechanical properties, thermal stability, and waterproofness of the composite membranes could be improved. The porous structure of the membranes would be regulated by tuning the temperatures of thermal treatment. When HSG content increased to 3 wt%, the PU/HSG composite membranes possessed remarkable tensile strength of 6.3 MPa and high water contact angle (WCA) of 134 degrees. Furthermore, the maximum WCA (142 degrees +/- 1 degrees), good hydrostatic pressure (5.45 kPa), large water vapor transmission rate (8.05 kg/m(2)/day), and high air permeability (9.25 L/m(2)/s) of the composite membranes could be achieved by heat treatment at 120 degrees C. The resultant membranes performed significantly better when compared to the pure PU membranes under the same conditions, such as the higher tensile strength (100%), better waterproofness (200%), and stronger breathablity (25%). POLYM. ENG. SCI., 58:1381-1390, 2018. (c) 2017 Society of Plastics Engineers
机译:通过静电纺丝制造具有疏水性和透气表面的聚氨酯(PU)/疏水硅胶(HSG)纤维膜。通过采用HSG掺入,可以改善复合膜的机械性能,热稳定性和防水性。通过调节热处理的温度来调节膜的多孔结构。当HSG含量增加至3wt%时,PU / HSG复合膜具有134度的6.3MPa和高水接触角(WCA)的显着拉伸强度。此外,最大WCA(142℃+/- 1度),良好的静液压(5.45kPa),大的水蒸气透射率(8.05kg / m(2)/天)和高透气性(9.25L / m( 2)/ s通过120℃的热处理可以通过热处理实现复合膜。与在相同条件下的纯PU膜相比时,所得膜的所得膜显着更好,例如抗拉强度(100%),更好防水性(200%),呼吸较强(25%)。聚合物。 eng。 SCI。,58:1381-1390,2018。(c)2017塑料工程师协会

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