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Solid viscoelasticity of glass fiber and carbon fiber filled liquid crystalline polymers

机译:玻璃纤维和碳纤维填充液晶聚合物的固体粘弹性

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Two types of thermotropic liquid crystalline polymers (fully-aromatic type. VA and semi-aromatic type. NE) were filled with glass fiber (GF) and carbon fiber (CF) to produce composite materials. These composite materials were processed using a capillary rheometer under different pressure and cooling temperature conditions to prepare four types of strands, and their dynamic viscoelastic properties were measured at 1 and 104 Hz. The results of the measurement were as follows. For unfilled liquid crystalline polymers, VA and NE, the storage modulus (E') and loss modulus (E") were markedly affected by the strand processing conditions, with both E' and E" decreasing with increasing frequency. For both GF- and CF-filled VA systems, E' and E" increased with increasing fiber content. The degree of the influence of the processing conditions on viscoelastic properties of CF/VA was higher than that for the GF/VA system. E' and E" of the CF-filled system also showed a larger fiber-content dependency than the CF-filled system. In both systems, E' and E" showed little difference in their values measured at 1 and 104 Hz, suggesting that their frequency dependency was small. In GF- and CF-filled NE systems, both E' and E" showed a small frequency dependency. When comparing the fiber content dependency on viscoelastic properties for both systems at 1 and 104 Hz, that for the GF/NE system was higher than for the CF/NE system. The dependency of E' and E" on processing conditions in the fiber-filled NE systems showed different behavior from those of the fiber-filled VA systems, i.e. the degree of the influence of the processing condition on E' and E" of the CF/NE system was higher than that for the CF/NE system. The glass transition temperature (TG) of the VA and NE systems determined from their tanδ curves at 1 Hz were larger than those by the DSC method. Fiber content dependency of Tg for the GF- and CF- filled VA systems were different from those of the GF- and CF-filled NE systems. In all the systems, the inflection points (Tc) of the tanδ curves at 104 Hz were larger than the corresponding Tg at 1 Hz. floth unfilled and fiber-filled VA and NE systems showed processing dependency for their Tg and Tc values.
机译:两种类型的热致液晶聚合物(全芳族型。VA和半芳族类型。NE)填充玻璃纤维(GF)和碳纤维(CF)以生产复合材料。使用毛细管流变仪在不同的压力和冷却温度条件下处理这些复合材料以制备四种类型的股线,并在1和104Hz测量它们的动态粘弹性。测量结果如下。对于未填充的液晶聚合物,VA和NE,储存模量(E')和损耗模量(e“)被股线加工条件显着影响,e'和e”随着频率的增加而减小。对于GF-和CF填充的VA系统,E'和E“随着纤维含量的增加而增加。加工条件对CF / VA粘弹性的影响的程度高于GF / VA系统的影响。e CF填充系统的“和e”也显示出比CF填充系统更大的纤维内容依赖性。在两个系统中,E'和E“在1和104 Hz测量的值中显示出的差异很小,表明它们的频率依赖性很小。在GF和CF填充的网元系统中,E'和E”都显示了一个小频率依赖。当在1和104Hz处比较两个系统的粘弹性特性的光纤内容依赖性时,对于GF / NE系统的粘弹性属性高于CF / NE系统。 E'和E“对纤维填充NE系统的处理条件的依赖性显示了来自填充光纤VA系统的不同行为,即CF的e”和e“的处理条件的影响程度/网元系统高于CF / NE系统的系统。从其Tanδ曲线确定的VA和NE系统的玻璃化转变温度(Tg)大于DSC方法的Tanδ曲线。 GF-和CF填充VA系统的TG的纤维含量依赖性与GF和CF填充的NE系统的纤维含量依赖性不同。在所有系统中,104Hz的Tanδ曲线的拐点(Tc)大于1Hz的相应Tg。 VAVOTH未填充和纤维填充的VA和NE系统向其TG和TC值显示了处理依赖性。

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