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Improving hygiene performance of microfiber synthetic leather base by mixing polyhydroxybutyrate nanofiber

机译:混合聚羟基丁酸酯纳米纤维改善超细纤维合成革基底的卫生性能

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Compared with natural leather, microfiber synthetic leather has many excellent properties such as chemical resistance and physical and mechanical properties. However, the preparation of high performance microfiber synthetic leather with excellent water vapor transmission rate, moisture absorption, and wearing comfort property still has a great challenge. The aim of this work was to improve moisture absorbent and transfer abilities by mixing polyhydroxybutyrate hydrophilic nanofibers in microfiber synthetic leather base. The effect of polyhydroxybutyrate nanofibers content on the structure and properties of microfiber synthetic leather base were investigated. The results indicated that polyhydroxybutyrate nanofibers with an average diameter of 0.40 μm were evenly distributed in all directions of microfiber synthetic leather base. As the nanofibers content increased from 0% to 20%, water contact angle decreased from 111.64° to 59.31°, resulting in 44% increase in water vapor transmission rate (from 3112.37 g/(m~(2) 24 h) to 4350.53 g/(m~(2) 24 h)) and 22.3% increase in moisture absorption (from 649.12% to 812.92%). Meanwhile, the addition of nanofibers made microfiber synthetic leather base dense, leading to 24.0% decrease in air permeability. In particular, the softness of microfiber synthetic leather base was increased by 42.18%. In addition, the tear strength was also significantly enhanced. Therefore, this study provided a viable method for preparing high performance microfiber synthetic leather base to use polyhydroxybutyrate nanofibers.
机译:与天然皮革相比,超细纤维合成皮革具有许多优异的性能,例如耐化学性和物理机械性能。然而,制备具有优异的水蒸气透过率,吸湿性和穿着舒适性的高性能超细纤维合成革仍然是巨大的挑战。这项工作的目的是通过在微纤维合成革基料​​中混合聚羟基丁酸酯亲水性纳米纤维来提高吸湿和转移的能力。研究了聚羟基丁酸酯纳米纤维含量对超细纤维合成革基底结构和性能的影响。结果表明,平均直径为0.40μm的聚羟基丁酸酯纳米纤维均匀分布在超细纤维合成革基底的各个方向上。随着纳米纤维含量从0%增加到20%,水接触角从111.64°减小到59.31°,导致水蒸气透过率增加了44%(从311.33 g /(m〜(2)24 h)增加到4350.53 g /(m〜(2)24 h))和22.3%的吸湿率增加(从649.12%增至812.92%)。同时,纳米纤维的添加使超细纤维合成革基底致密,导致透气性降低24.0%。尤其是,超细纤维合成革的柔软度提高了42.18%。另外,撕裂强度也显着提高。因此,本研究提供了一种使用聚羟基丁酸酯纳米纤维制备高性能超细纤维合成革基料​​的可行方法。

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