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Synthesis and application of self-crosslinking and flame retardant waterborne polyurethane as fabric coating agent

机译:自交联和阻燃水运聚氨酯作为织物涂料的合成与应用

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A series of self-crosslinking and flame retardant modified waterborne polyurethanes (SFR-WPU) were synthesized and the chemical structure of SFR-WPU was characterized by FT-IR. Particle size, particle size distribution and zeta potential were tested to evaluate the emulsion stability. Afterwards, SFR-WPU as a finishing agent was coated on polyester fabric. The experimental results of limiting oxygen index (LOI) and vertical burning test (VBT) indicated that when the content of FRC-6 was 9.07 wt% in SFR-WPU, the LOI, afterflame time, afterglow time and damaged length values of the coated polyester fabric were 27.5%, 4.7 s, 0.0 s and 10.9 cm, respectively, but the LOI, afterflame time, afterglow time and damaged length values of the pristine polyester fabric were only 20.1%, 62.0 s, 0.0 s and 30.0 cm, respectively. Even after AATCC standard washing process, the LOI, afterflame time, afterglow time and damaged length values of the coated polyester fabric changed slightly to be 26.8%, 5.0 s, 0.0 s and 12.3 cm, respectively. Then, the flame retardant mechanism was explored by testing thermal property and char residue of polyester fabrics with thermogravimetry (TG), scanning electron microscopy (SEM) and energy dispersive spectrometry (EDS). It was found that SFR-WPU obviously reduced the initial decomposition temperature of the fabric, but significantly improved the residual carbon content, which was contributed by the synergistic flame retardant effect of P and N elements in SFR-WPU from both condensed-phase and gas-phase, respectively.
机译:合成了一系列自交联和阻燃性修饰的水性聚氨酯(SFR-WPU),SFR-WPU的化学结构的特征在于FT-IR。测试粒度,粒度分布和Zeta电位以评估乳液稳定性。然后,将SFR-WPU作为精加工剂涂覆在聚酯织物上。限制氧指数(LOI)和垂直燃烧试验(VBT)的实验结果表明,当SFR-WPU的FRC-6的含量为9.07wt%时,涂层的LOI,近漏时间,余辉时间和损坏的长度值聚酯织物分别为27.5%,4.7秒,0.0s和10.9厘米,但原始聚酯织物的LOI,近帧时间,余量时间和损坏的长度值分别仅为20.1%,62.0秒,0.0s和30.0cm 。即使在AATCC标准洗涤过程中,涂层聚酯织物的焊机,近漏时间,余辉时间和损坏的长度值也略微改变为26.8%,5.0秒,0.0s和12.3cm。然后,通过使用热重率(Tg),扫描电子显微镜(SEM)和能量分散光谱(EDS)测试聚酯织物的热性质和炭残渣来探索阻燃机理。发现SFR-WPU显然降低了织物的初始分解温度,但显着提高了残留的碳含量,这是通过从冷凝相和气体中SFR-WPU中的P和N元素的协同​​阻燃效果导致的 - 分别。

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