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Flame retarding mechanism of polycarbonate containing trifunctional phenylsilicone additive studied by analytical pyrolysis techniques

机译:解析热解技术研究含三官能苯基硅氧烷添加剂的聚碳酸酯的阻燃机理

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摘要

The flame retarding mechanism for polycarbonate (PC) by a trifunctional phenyl-rich silicone additive was studied by analytical pyrolysis techniques. In order to clarify the actions of the silicone-based flame retardant for PC substrate during combustion, the change in the chemical structure of the flame retarded PC with the silicone additive (FR-PC) after thermal treatment at 380 °C was investigated by pyrolysis-gas chromatography (Py-GC) in the presence of organic alkali. On the pyrogram of the thermally treated FR-PC, which exhibited highly insoluble nature, the peaks reflecting the abnormal structures, formed through the reaction between a silyl radical originating from the additive and an ether like oxygen atom in the carbonate linkage of the PC chain accompanied by decarboxylation or Fries rearrangement, were clearly observed in much larger intensity than those on the pyrogram of the thermally treated PC. On the basis of the observed results for the thermally treated FR-PC, it was suggested that the formation of a char barrier on the surface of the FR-PC material was promoted during combustion to reduce the radiant heat of flame and to restrict the diffusion of flammable degradation products into the combustion zone. Thus formed cross-linking structure might surpress the thermal decomposition and confine the movements of the degradation products.
机译:通过分析热解技术研究了三官能富苯基硅氧烷添加剂对聚碳酸酯(PC)的阻燃机理。为了阐明聚硅氧烷系阻燃剂对PC基材在燃烧过程中的作用,通过热解研究了含聚硅氧烷添加剂(FR-PC)的阻燃PC在380°C热处理后的化学结构变化。有机碱存在下的气相色谱(Py-GC)。在表现出高度不溶性的热处理FR-PC的热解图上,反映异常结构的峰是通过源自添加剂的甲硅烷基与PC链的碳酸酯键中的醚(如氧原子)之间的反应形成的与热处理后的PC的热解图上的强度相比,可以清楚地看到伴随着脱羧或Fries重排的强度。根据对热处理过的FR-PC的观察结果,建议在燃烧过程中促进FR-PC材料表面上的焦炭形成,以减少火焰的辐射热并限制扩散。易燃降解产物进入燃烧区。这样形成的交联结构可能抑制热分解并限制降解产物的运动。

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  • 来源
    《Polymer Bulletin》 |2002年第6期|483-490|共8页
  • 作者单位

    Department of Applied Chemistry Graduate School of Engineering Nagoya University Nagoya 464-8603 Japan e-mail hajime@apchem.nagoya-u.ac.jp;

    Fax +81-52-789-4666;

    Department of Applied Chemistry Graduate School of Engineering Nagoya University Nagoya 464-8603 Japan e-mail hajime@apchem.nagoya-u.ac.jp;

    Fax +81-52-789-4666;

    Department of Applied Chemistry Graduate School of Engineering Nagoya University Nagoya 464-8603 Japan e-mail hajime@apchem.nagoya-u.ac.jp;

    Fax +81-52-789-4666;

    Dow corning Toray Silicone Co. Ltd. ST Div. Ichihara 299-0108 Japan;

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