首页  科学研究  学术论文  2015年
 
S. Zhou, M. Ning, X. F. Wang, Z. J. Yan, D. F. Guo, Q. He, Y. P. Zhang, S. K. She and Y. Hu (2015) Journal Of Thermal Analysis And Calorimetry 119 167-173.
文章来源:SKLFS    作者:SKLFS    发布时间:2016-02-23
S. Zhou, M. Ning, X. F. Wang, Z. J. Yan, D. F. Guo, Q. He, Y. P. Zhang, S. K. She and Y. Hu (2015) The influence of gamma-irradiation on the mechanical, thermal degradation, and flame retardant properties of EVA/LDPE/ATH blends. Journal/Journal Of Thermal Analysis And Calorimetry 119 167-173. [In English]
Web link: http://dx.doi.org/10.1007/s10973-014-4101-z
Keywords: EVA/LDPE blends; Flame retardancy; Thermal properties; Mechanical; properties; CROSS-LINKING; CABLE INSULATION; COMPOSITES; DECOMPOSITION; POLYETHYLENE; COPOLYMERS; PHOSPHORUS; HYDROXIDE; LDPE
Abstract: This work aimed to study the influence of gamma-irradiation on the mechanical and thermal properties of flame retardant EVA/LDPE/ATH blends. Flame retardant poly(ethylene vinyl acetate)/low-density polyethylene/aluminum hydroxide (EVA/LDPE/ATH) blends were prepared, with a LOI value of 40 % and UL-94 V0 rating. The influence of different gamma-irradiation levels on flammability as well as mechanical, electrical, and thermal properties of EVA/LDPE/ATH blends was investigated. The flame resistance of EVA/LDPE/ATH blends was found to be slightly improved after gamma-irradiation, and meanwhile the mechanical, electrical, and thermal properties were all enhanced due to the increase of cross-linking density. Moreover, thermogravimetric analysis/infrared spectra (TG-IR) were used to explore the thermal degradation process of the EVA/LDPE blends. TG-IR results indicated that the thermal degradation of EVA/LDPE/ATH blends was delayed after gamma-irradiation, and the reduced pyrolysis products amounts were responsible for the improved fire resistance and thermal stability.
 
 
相关链接
S. Zhou, M. Ning, X. F. Wang, Z. J. Yan, D. F. Guo, Q. He, Y. P. Zhang, S. K. She and Y. Hu (2015) Journal Of Thermal Analysis And Calorimetry 119 167-173.
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