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首页> 外文期刊>Polymer-Plastics Technology and Engineering >Interfacial Interactions and Flammability of Flame-Retarded and Short Fiber-Reinforced Polyamides
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Interfacial Interactions and Flammability of Flame-Retarded and Short Fiber-Reinforced Polyamides

机译:阻燃和短纤维增强聚酰胺的界面相互作用和易燃性

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摘要

Interfacial properties, crystallinity and flammability of short fiber reinforced and flame retarded polyamide 6 and polyamide 66 compounds are investigated, emphasizing the influence of flame retardant fillers on the resistance of fiber/matrix interface to shear. Interfacial shear strengths are derived through a micromechanical approach by determining the tensile properties and residual fiber length distributions. Validated by fracture morphologies, interfacial strengths are found to be governed by filler - induced apparent crystallinities and fractional occurrence of polyamide polymorphs, obtained via peak deconvolution of X-Ray diffraction patterns. Although flame retardant additives based on Br/Sb synergism are found to impart excellent flammability reductions regarding oxygen index and UL94 classifications (V-0 rating), degree of crystallinity; thus, interfacial properties are deteriorated due to lowered thermal expansion and increased cooling rates. Red phosphorus as a flame retardant also induces a UL94 V-0 and significant reduction in flammability together with the facts that crystallinity is not altered and a strong fiber/matrix interface is maintained. Use of melamine cyanurate in an unreinforced polyamide improves the limiting oxygen index considerably; however, the UL94 rating remains unchanged as V-2 as a consequence of increased level of melt dripping. Melamine cyanurate additionally increases the degree of crystallinity through promotion of heterogeneous nucleation.
机译:研究了短纤维增强和阻燃聚酰胺6和聚酰胺66化合物的界面性质,结晶度和可燃性,强调了阻燃填料对纤维/基体界面抗剪切性的影响。通过确定拉伸特性和残余纤维长度分布,通过微机械方法得出界面剪切强度。通过断裂形态验证,发现界面强度受填料诱导的表观结晶度和通过X射线衍射图谱的峰去卷积获得的聚酰胺多晶型物的部分发生所控制。尽管发现基于Br / Sb协同作用的阻燃添加剂在氧指数和UL94等级(V-0等级),结晶度,可燃性方面均具有出色的降低性。因此,由于降低的热膨胀和增加的冷却速率,界面性能变差。红磷作为阻燃剂还诱导UL94 V-0并显着降低可燃性,并具有结晶度未改变且纤维/基体界面保持牢固的事实。在未增强的聚酰胺中使用三聚氰胺氰尿酸酯可极大地改善极限氧指数。但是,由于熔滴的增加,UL94等级保持为V-2。三聚氰胺氰尿酸酯还通过促进异相成核而增加了结晶度。

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  • 来源
    《Polymer-Plastics Technology and Engineering》 |2009年第10期|p.1046-1054|共9页
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  • 作者单位

    Polymer Science and Technology Department, Middle East Technical University, Ankara, Turkey;

    Metallurgical and Materials Engineering Department, Middle East Technical University, Ankara, Turkey;

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