Characterization of electrospun polyurethane/polyacrylonitrile nanofiber for protective textiles

被引:0
作者
Shanmugam Kubera Sampath Kumar
Chidambaram Prakash
机构
[1] Vignan’s Foundation for Science,Department of Chemical Engineering (Textile Technology)
[2] Technology and Research (Deemed to be University),Department of Handloom and Textiles
[3] Indian Institute of Handloom Technology,undefined
[4] Ministry of Textiles,undefined
来源
Iranian Polymer Journal | 2021年 / 30卷
关键词
Electrospun; Nanofiber; Polyurethane; Polyacrylonitrile; Protective textile; Liquid penetration;
D O I
暂无
中图分类号
学科分类号
摘要
A system of polyurethane (PU) and polyacrylonitrile (PAN) with a polymer composition of 60:40 electrospun nanofibrous web has been developed as barriers to pesticides liquid (Dimethoate) penetration in protective clothing systems for agricultural workers. Barrier performance of different polymer compositions of PU and PAN layered systems has been evaluated with different areal densities of electrospun web ranging from 0.5 to 3 g/m2. This was done to improve the barrier performance of a nanofiber against a pesticide liquid. In this process, an ultra-thin layer of PU and PAN has been taken in the ratio of 60:40 and its top it is coated with polyvinylidene fluoride (PVDF). Application of PU and PAN web with PVDF and PU has significantly improved its effectiveness which has been measured when accessing the overall comfort performance of a nanofiber which includes parameters like air permeability and water vapor transmission within a layered system. Further, it is observed that the electrospun areal density has been altered due to the effect of air permeability and because of the penetration of the pesticide liquid. On other hand, the polymer compositions also affect the air permeability and rate of penetration of pesticides. It was observed that the electrospun web area has a massive impact on a web area density which reduces a pore size distribution when web area increases. Increasing the percentage of polyacrylonitrile with thermoplastic polyurethane the penetration is reduced without affecting the moisture vapor transition and which had a significant effect on air permeability. Hence PU and PAN along with PVDF nanofibrous mat have a prospective application in agro-textile industries.
引用
收藏
页码:1263 / 1271
页数:8
相关论文
共 128 条
[1]  
Asim M(2020)Thermal stability of natural fibers and their polymer composites Iran Polym J 29 625-648
[2]  
Paridah MT(2020)Synergistic flame retardancy of aqueous hybridization between iron phosphonate and ammonium polyphosphate towards polyethyleneimine-based foam Iran Polym J 29 265-274
[3]  
Chandrasekar M(2020)Electrospunpolyvinylidene fluoride/polyacrylonitrile composite fibers: fabrication and characterization Iran Polym J 29 37-46
[4]  
Shahroze RM(2017)Functional modification of breathable polyacrylonitrile/polyurethane/TiO J Colloid Interface Sci 508 508-516
[5]  
Jawaid M(2016) nanofibrous membranes with robust ultraviolet resistant and waterproof performance ACS Appl Mater Interfaces 8 27218-27226
[6]  
Nasir M(2020)Tailoring water-resistant and breathable performance of polyacrylonitrilenanofibrous membranes modified by polydimethylsiloxane Polymer 12 492-502
[7]  
Siakeng R(2005)Emerging developments in the use of electrospun fibers and membranes for protective clothing applications Environ Chem Lett 3 118-121
[8]  
Luo L(2007)Photocatalytic treatment of dimethoate by solar photocatalysis at pilot plant scale Text Res J 77 696-702
[9]  
Liu W(2018)Use of electrospunnanofiber web for protective textile materials as barriers to liquid penetration Mater Sci Energy Technol 1 29-37
[10]  
Zhai L(2021)Preparation, characterization and trifluralin degradation of laccase-modified cellulose nanofibers Appl Microbiol Biotechnol 105 991-1006