首页> 外文期刊>Journal of Applied Polymer Science >Effect of layered double hydroxide on the flame retardancy of intumescent flame retardant thermoplastic polyurethane composites prepared by selective laser sintering
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Effect of layered double hydroxide on the flame retardancy of intumescent flame retardant thermoplastic polyurethane composites prepared by selective laser sintering

机译:层状双氢氧化物对选择性激光烧结制备膨胀型阻燃热塑性聚氨酯复合材料阻燃性能的影响

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摘要

Presently, layered double hydroxides (LDHs) are pervasively adopted as part of flame retardant polymer composite materials due to its favorable synergism effect with certain flame retardants. In addition, it is environmentally friendly. Meanwhile, selective laser sintering (SLS) is a powder-based three-dimensional (3D) printing technology, providing a novel path to manufacturing polymer composite materials with complex shapes. In this research, flame retardancy of thermoplastic polyurethane (TPU) was enhanced based on LDHs and intumescent flame retardant (IFR). Being prepared by SLS technology. First, TPU composite powders based on LDHs and IFR were obtained using a two-stage mixing method. Morphology analysis revealed that IFR and LDHs were dispersed uniformly in TPU powder. Subsequently, flame retardant TPU composites were prepared with TPU composite powders using the SLS process under appropriate 3D printing parameters, thereby enabling flame retardant TPU parts to be obtained. With 23 wt IFR and 2 wt LDHs filler, the limiting oxygen index of TPU composite was reached to 31.7, while passing the UL-94 V-0 level during the vertical burning test. The cone calorimeter test showed that the heat release rate, smoke production rate, as well as production of carbonic oxides, all decreased significantly following the addition of LDHs. Thermogravimetric analysis indicated that LDHs and IFR were characterized by a favorable synergism effect, with the TPU/23IFR/2LDHs possessing good thermal stability. Char residue analysis, including SEM, energy dispersive X-ray, Fourier transform infrared, and Raman spectra, further testified that a synergism effect existed between LDHs and IFR in the TPU composite. Overall, in this study the TPU composites fabricated by SLS technology exhibited excellent flame retardant ability.
机译:目前,层状双氢氧化物(LDHs)因其与某些阻燃剂的良好协同作用而被广泛采用为阻燃高分子复合材料的一部分。此外,它还是环保的。同时,选择性激光烧结(SLS)是一种基于粉末的三维(3D)打印技术,为制造形状复杂的聚合物复合材料提供了一条新途径。本研究基于LDHs和膨胀型阻燃剂(IFR)增强了热塑性聚氨酯(TPU)的阻燃性。由SLS技术准备。首先,采用两级混合法制备了基于LDHs和IFR的TPU复合粉体;形貌分析表明,IFRs和LDHs均匀分散在TPU粉体中。随后,在适当的3D打印参数下,采用SLS工艺制备了TPU复合材料粉末,从而获得了阻燃TPU零件。在23 wt% IFR和2 wt% LDHs填料下,TPU复合材料的极限氧指数达到31.7%,同时在垂直燃烧试验中通过了UL-94 V-0水平。锥形量热仪测试表明,添加LDHs后,热量释放速率、烟雾产生速率以及碳氧化物的产生均显著降低。热重分析表明,LDHs与IFR具有较好的协同效应,TPU/23IFR/2LDHs具有良好的热稳定性。炭渣分析,包括SEM、能量色散X射线、傅里叶变换红外和拉曼光谱,进一步证明了TPU复合材料中LDHs和IFR之间存在协同效应。总体而言,本研究采用SLS技术制备的TPU复合材料表现出优异的阻燃性能。

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