4.3 Article

Flame retardancy of biodegradable polylactic acid with piperazine pyrophosphate and melamine cyanurate as flame retardant

期刊

JOURNAL OF FIRE SCIENCES
卷 40, 期 4, 页码 254-273

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/07349041221093546

关键词

Flame retardant; piperazine pyrophosphate; melamine cyanurate; degradation; polylactic acid

资金

  1. Open Research Fund of State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences [2018-02]
  2. General Project Fund of Liaoning Education Department [LJGD2019014]

向作者/读者索取更多资源

A flame-retardant polylactic acid composite was developed by adding piperazine pyrophosphate and melamine cyanurate, which showed synergistic effect in the composite material. It was found that the biodegradation of the polylactic acid composite also influenced its flame retardancy.
A flame-retardant polylactic acid composite added with piperazine pyrophosphate and melamine cyanurate was developed. Piperazine pyrophosphate and melamine cyanurate showed synergistic effect in the polylactic acid composites. When the weight ratio of piperazine pyrophosphate to melamine cyanurate was 4:1 and the loading of the piperazine pyrophosphate/melamine cyanurate flame retardant was 15 wt.%, the prepared polylactic acid composites passed V-0 rating in the UL-94 test and achieved the high limit oxygen index value of 34.9%. The cone calorimeter test result confirmed that the addition of piperazine pyrophosphate/melamine cyanurate flame retardant reduced the total heat release value of polylactic acid. The effect of polylactic acid biodegradation on the flame retardancy of polylactic acid composite was further discussed. The biodegraded polylactic acid, which was exposed to the air for 8 months, showed high flame retardancy and even passed V-0 rating in the UL-94 test without the addition of piperazine pyrophosphate/melamine cyanurate flame retardant, which proved that biodegradation could affect the flame retardancy of polylactic acid.

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