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Flame retardancy and smoke suppression of silicone foams with modified microencapsulated Mg/Zn/Al-layered double hydroxide
被引:0
作者:
Furu Kang
Jun Deng
Qingtao Pang
Chao Yuan
Bo Liu
Xin Yi
Hang Li
机构:
[1] Xi’ an University of Science and Technology (XUST),Center for Post
[2] XUST,Doctoral Studies
[3] Shaanxi Coal and Chemical New Energy Group Co.,Shaanxi Key Laboratory of Prevention and Control of Coal Fire
[4] Ltd,undefined
[5] Work Safety Key Lab On Prevention and Control of Gas and Roof Disasters for Southern Coal Mines,undefined
来源:
Journal of Thermal Analysis and Calorimetry
|
2023年
/
148卷
关键词:
Silicone foams;
Flame retardancy;
Smoke suppression;
Thermal stability;
Modified microencapsulated Mg/Zn/Al-layered double hydroxide;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Silicone foams (SiFs) are high-performance materials but can combust and release choking smoke in a fire. In this paper, the modified microencapsulated Mg/Zn/Al-layered double hydroxide (MLDHs) was prepared by the sol–gel method. Then, the structure and performance of modified MLDHs were characterized by field emission scanning electron microscopy (FESEM), Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), thermogravimetry (TG), and differential scanning calorimetry (DSC). Besides, the mechanical properties, flame retardancy, smoke suppression, thermal degradation behavior, morphology and composition of carbon slag of SiFs with modified MLDHs were tested using the universal tensile testing machine, limiting oxygen index (LOI), UL-94 test, cone calorimeter, thermogravimetry, SEM–EDS and XPS. The results indicated that the modified MLDHs could effectively improve the ductility of SiFs. When the addition of modified MLDHs exceeded 20 mass%, SiFs could be improved to UL-94-V0 rating. The PHRR, THR, and TSP of SiFs with 30 mass% modified MLDHs were 56.04%, 46.86%, and 80.49% lower than that of pure SiFs. Furthermore, the decomposition products of modified MLDHs/SiFs composite such as SiO2 and zinc magnesium aluminum oxide could improve the char formation significantly. The continuous, complete, and dense structure of carbon slag of modified MLDHs/SiFs could effectively block the exchange of heat and gas on the surface of SiFs and reduce the combustion performance of SiFs.
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页码:4731 / 4743
页数:12
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