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Effect of zinc oxide on flame retardant finishing of plasma pre-treated cotton fabric

机译:氧化锌对等离子预处理棉织物阻燃整理的影响

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摘要

An organic phosphorus compound (flame retardant agent, FR) in combination with a melamine resin (crosslinking agent, CL), phosphoric acid (catalyst, PA) and zinc oxide (co-catalyst, ZnOano-ZnO) imparted effective and durable flame retardant properties. Also, atmospheric pressure plasma jet was applied as pre-treatment to improve post-finishing (flame retardant finishing) on cotton fabrics. In the present paper, surface morphology, chemical structure analysis, combustibility and mechanical properties of plasma pre-treated cotton fabrics subjected to flame-retardant treatment were investigated. Surface morphology of treated cotton specimens showed roughened and wrinkled fabric surface with high deposition of the flame retardant finishing agent, which was caused by the plasma etching effect and attack of acidic FR. The FTIR-ATR spectra for the treated cotton specimens showed some new characteristic peaks in chemical structure, interpreted as carbonyl bands, OH stretching vibration, COO− stretching vibration, CH2 rocking band and CH3 asymmetric and CH2 symmetric stretching. Moreover, FR-CL-PA-treated specimens showed remarkable flame-retardant property, which was further improved by the plasma pre-treatment and ZnOano-ZnO co-catalyst. However, flame-retardant-treated cotton specimens had poor mechanical strength when compared with control sample, resulting from side effects of the crosslinking agent used, while plasma pre-treatment and ZnOano-ZnO co-catalyst may compensate for the reduction in tensile and tearing strength caused by flame-retardant agents.
机译:有机磷化合物(阻燃剂,FR)与三聚氰胺树脂(交联剂,CL),磷酸(催化剂,PA)和氧化锌(助催化剂,ZnO /纳米ZnO)结合使用,可产生持久有效的火焰阻燃性能。另外,常压等离子体射流被用作预处理,以改善棉织物上的后整理(阻燃整理)。研究了经过等离子体处理的棉织物经阻燃处理后的表面形态,化学结构分析,可燃性和力学性能。经处理的棉样品的表面形态显示出织物表面粗糙和起皱,且阻燃整理剂的沉积率较高,这是由于等离子蚀刻作用和酸性FR的侵蚀所致。经处理的棉花样品的FTIR-ATR光谱在化学结构上显示出一些新的特征峰,解释为羰基带,OH拉伸振动,COO -拉伸振动,CH 2 摇摆带和CH 3 不对称和CH 2 对称拉伸。此外,FR-CL-PA处理的样品显示出显着的阻燃性,通过等离子体预处理和ZnO /纳米-ZnO助催化剂进一步提高了阻燃性。但是,由于使用的交联剂的副作用,与对照样品相比,用阻燃剂处理的棉样品的机械强度较差,而等离子体预处理和ZnO /纳米ZnO助催化剂可能弥补了拉伸强度的降低。以及由阻燃剂引起的撕裂强度。

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