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Development of breathable and liquid/microbes barrier woven surgical gowns for hospital usage

机译:开发用于医院的透气和液体/微生物屏障的机织手术衣

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An attempt has been made to develop a breathable woven surgical gown with antimicrobial and liquid repellent properties by finishing with nanoparticles of silver and fluorocarbon using pad-dry-cure method. Box-Behnken design has been used to optimize the coating parameters, i.e. concentrations of nanosilver (NS), nanofluorocarbon (NFC) and binder. The selected coating parameters has decisive influence on the fabric properties, such as air permeability, moisture vapour permeability, antimicrobial and tensile behaviour. The optimum coating parameters such as concentrations of NS, NFC and binder result in improved air permeability and moisture vapour permeability of the fabric for 3 g/L of NS and 40 g/L of NFC. The antibacterial activity of fabric is found to be higher for increased NS concentration and lower for increased NFC. In case of tensile properties of coated fabrics, the increase in NS concentration increases the tensile strength and decreases the bending modulus of fabrics.
机译:已经尝试通过使用垫干固化方法用银和碳氟化合物的纳米颗粒进行整理来开发具有抗菌和拒液性能的透气机织手术衣。 Box-Behnken设计已用于优化涂层参数,即纳米银(NS),纳米碳氟化合物(NFC)和粘合剂的浓度。所选的涂层参数对织物性能具有决定性影响,例如透气性,湿气透过性,抗菌和拉伸性能。对于3 g / L的NS和40 g / L的NFC,最佳的涂层参数(例如NS,NFC和粘合剂的浓度)可改善织物的透气性和透湿性。发现织物的抗菌活性对于增加的NS浓度较高,而对于增加的NFC则较低。在涂层织物具有拉伸性能的情况下,NS浓度的增加会提高织物的拉伸强度并降低其弯曲模量。

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