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Fiber reinforcement and fracture resistance of PC/PBT/LCP ternary in situ composite

机译:PC / PBT / LCP三元原位复合材料的纤维增强和抗断裂性能

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The microstructures, mechanical properties, and fracture toughness of LCP (Vectra B950) reinforced PC/PBT blend with a 60/40 weight ratio have been studied. LCP of varying concentrations were investigated as rigid tillers in matrices of multiphase polymer blends. In this study, differences in microstructures and morphology between samples of two thicknesses (4 mm thick and 6 mm thick) and two geometries (dumbbell and rectangular) were compared using scanning electron microscopy (SEM). Given identical processing conditions, fibrous LCP structures were evident in the 4-mm-thick injection molded, dumbbell-shaped samples, whereas the 6-mm-thick rectangular samples displayed spherical dispersion of LCP aggregates that embrittled the preblended ductile matrix. Tensile properties of the dumbbell specimens showed superior strengthening and stiffening whereby the tensile strength increased twofold and the modulus increased fourfold. Plane strain fracture toughness was slightly enhanced as the LCP content increased because of the fiber strengthening effect but the overall fracture performance of the in situ composites was relatively poor compared with PC/PBT. Experimental results were compared with those predicted in composite theory. Simplified micromechanics equations were developed to describe the tensile moduli of injection molded LCP reinforced blends that exhibited a strong skin-core morphology. [References: 30]
机译:研究了重量比为60/40的LCP(Vectra B950)增强PC / PBT共混物的微观结构,力学性能和断裂韧性。研究了不同浓度的LCP作为多相聚合物共混物基质中的刚性分till。在这项研究中,使用扫描电子显微镜(SEM)比较了两种厚度(4毫米厚和6毫米厚)和两种几何形状(哑铃形和矩形)的样品在微观结构和形态上的差异。在相同的加工条件下,纤维状LCP结构在厚度为4毫米的注塑哑铃形样品中很明显,而厚度为6毫米的矩形样品显示出LCP聚集体的球形分散,使脆性延展性基体变脆。哑铃试样的拉伸性能显示出优异的增强和刚度,其中拉伸强度增加了两倍,模量增加了四倍。由于纤维增强作用,随着LCP含量的增加,平面应变断裂韧性略有提高,但与PC / PBT相比,原位复合材料的整体断裂性能相对较差。将实验结果与复合理论中的预测结果进行了比较。开发了简化的微力学方程式,以描述具有强皮芯形态的注模LCP增强共混物的拉伸模量。 [参考:30]

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