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阻燃剂对热塑性聚合物熔体滴落行为的影响

Influence of Flame Retardants on the Melt Dripping Behaviour of Thermoplastic Polymers.

作者信息

Matzen Melissa, Kandola Baljinder, Huth Christian, Schartel Bernhard

机构信息

BAM Federal Institute for Materials Research and Testing, Unter den Eichen 87, Berlin 12205, Germany.

Institute for Materials Research and Innovation, University of Bolton, Deane Road, Bolton BL3 5AB, UK.

出版信息

Materials (Basel). 2015 Aug 27;8(9):5621-5646. doi: 10.3390/ma8095267.

Abstract

Melt flow and dripping of the pyrolysing polymer melt can be both a benefit and a detriment during a fire. In several small-scale fire tests addressing the ignition of a defined specimen with a small ignition source, well-adjusted melt flow and dripping are usually beneficial to pass the test. The presence of flame retardants often changes the melt viscosity crucially. The influence of certain flame retardants on the dripping behaviour of four commercial polymers, poly(butylene terephthalate) (PBT), polypropylene (PP), polypropylene modified with ethylene-propylene rubber (PP-EP) and polyamide 6 (PA 6), is analysed based on an experimental monitoring of the mass loss due to melt dripping, drop size and drop temperature as a function of the furnace temperature applied to a rod-shaped specimen. Investigating the thermal transition (DSC), thermal and thermo-oxidative decomposition, as well as the viscosity of the polymer and collected drops completes the investigation. Different mechanisms of the flame retardants are associated with their influence on the dripping behaviour in the UL 94 test. Reduction in decomposition temperature and changed viscosity play a major role. A flow limit in flame-retarded PBT, enhanced decomposition of flame-retarded PP and PP-EP and the promotion of dripping in PA 6 are the salient features discussed.

摘要

在火灾中,热解聚合物熔体的熔体流动和滴落既可能有益,也可能有害。在一些使用小点火源点燃特定试样的小规模火灾试验中,良好调节的熔体流动和滴落通常有利于通过试验。阻燃剂的存在常常会显著改变熔体粘度。基于对棒状试样施加炉温时,因熔体滴落导致的质量损失、液滴尺寸和液滴温度的实验监测,分析了某些阻燃剂对四种商用聚合物,即聚对苯二甲酸丁二醇酯(PBT)、聚丙烯(PP)、用乙丙橡胶改性的聚丙烯(PP-EP)和聚酰胺6(PA 6)滴落行为的影响。对热转变(DSC)、热分解和热氧化分解以及聚合物和收集到的液滴的粘度进行研究,完善了该调查。阻燃剂的不同作用机制与其在UL 94试验中对滴落行为的影响相关。分解温度的降低和粘度的改变起主要作用。讨论了阻燃PBT中的流动极限、阻燃PP和PP-EP的增强分解以及PA 6中滴落的促进等显著特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0770/5512619/38c6296932d5/materials-08-05267-g001.jpg

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