首页> 美国卫生研究院文献>Polymers >Effect of Magnesium Hydroxide and Aluminum Hydroxide on the Thermal Stability Latent Heat and Flammability Properties of Paraffin/HDPE Phase Change Blends
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Effect of Magnesium Hydroxide and Aluminum Hydroxide on the Thermal Stability Latent Heat and Flammability Properties of Paraffin/HDPE Phase Change Blends

机译:氢氧化镁和氢氧化铝对石蜡/ HDPE相变共混物的热稳定性潜热和可燃性的影响

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摘要

In this study, paraffin was selected as the phase change material (PCM) and high-density polyethylene (HDPE) as the supporting material to prepare a flame-retardant PCM system. The system consisted of paraffin, HDPE, expanded graphite (EG), magnesium hydroxide (MH) and aluminum hydroxide (ATH). The thermal stability and flame retardancy were studied by thermo-gravimetric analysis (TGA), scanning electron microscopy (SEM) and cone calorimeter test (CONE). The SEM proved that the addition of MH and ATH can produce an oxide film on the surface of the composite material and form a “physical barrier” with the char layer, generated by the expansion of EG, preventing the transfer of heat and oxygen. The TGA test showed that, compared with other flame-retardant systems, the materials with added MH and ATH have a higher thermal stability and carbonization ability, and the amount of char residue has increased from 17.6% to 32.9%, which reduces the fire risk of the material. The flame retardant effect is obvious. In addition, the addition of MH and ATH has no significant effect on the phase transition temperature and latent heat value of PCMs. The CONE data further confirmed that MH and ATH can work with EG to prevent heat release, reduce the total heat release rate (THR) value and effectively suppress the generation of smoke, CO and CO . The peak heat release rate (PHRR) value also decreased, from 1570.2 kW/m to 655.9 kW/m .
机译:在本研究中,选择石蜡作为相变材料(PCM),并选择高密度聚乙烯(HDPE)作为支撑材料来制备阻燃PCM系统。该系统由石蜡,HDPE,膨胀石墨(EG),氢氧化镁(MH)和氢氧化铝(ATH)组成。通过热重分析(TGA),扫描电子显微镜(SEM)和锥形量热仪测试(CONE)研究了热稳定性和阻燃性。 SEM证明,MH和ATH的添加可在复合材料的表面形成氧化膜,并与由EG膨胀产生的炭层形成“物理屏障”,从而防止了热量和氧气的传递。 TGA测试表明,与其他阻燃系统相比,添加了MH和ATH的材料具有更高的热稳定性和碳化能力,并且残炭量从17.6%增加到32.9%,从而降低了火灾风险材料。阻燃效果明显。另外,MH和ATH的添加对PCM的相变温度和潜热值没有显着影响。 CONE数据进一步证实,MH和ATH可与EG一起使用,以防止热量释放,降低总热量释放率(THR)值并有效抑制烟雾,CO和CO的产生。峰值放热率(PHRR)值也从1570.2 kW / m降低到655.9 kW / m。

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