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Wu K, Shen MM, Hu YA (2010) Polymer-Plastics Technology and Engineering 49(15), 1527-1533.
文章来源:WOS    作者:SKLFS    发布时间:2011-08-15

Wu K, Shen MM, Hu YA (2010) Combustion Behavior and Thermal Oxidative Degradation of EVA Containing Intumescent Flame Retardant. Polymer-Plastics Technology and Engineering 49(15), 1527-1533. [In English]

Web link: http://dx.doi.org/10.1080/03602559.2010.512331

Keywords:

Ammonium polyphosphate; EVA; Intumescent flame retardant; Microencapsulation; Thermal oxidative degradation; ammonium polyphosphate; system; composites; mechanism

Abstract: Microencapsulated ammonium polyphosphate (VAPP) with poly(vinyl alcohol)- melamine-formaldehyde (VMF) shell was introduced in ethylene vinyl acetate copolymer (EVA) to improve its flame retardancy. Due to the presence of VMF shell, VAPP shows better compatibility, flame retardancy and water resistance compared with ammonium polyphosphate (APP) in EVA. The flammability of EVA and its flame-retarded composites was studied by LOI, UL-94 and cone calorimeter. The composite containing 40wt% VAPP can pass V-0 in UL-94 test, and hot water treatment shows few effects on its LOI value and UL-94 rating. The cone results indicated that the use of VAPP in EVA can significantly decrease heat release rate and total heat release compared with APP. To understand the mechanism of action of VAPP, dynamic FTIR experiments were carried out on EVA and EVA/VAPP composites. Based on above studies, the flame retardant mechanism of VAPP in EVA composite is discussed.

 
 
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Wu K, Shen MM, Hu YA (2010) Polymer-Plastics Technology and Engineering 49(15), 1527-1533.
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