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Synthesis and characterization of thermotropic liquid crystalline polyesters/glass fiber by in-situ process

机译:原位工艺的热致液晶聚酯/玻璃纤维的合成与表征

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Liquid crystalline polyesters containing central biphenylene moiety in the mesogenic unit with ester linkages to the different lengths of flexible spacers were synthesized using melt polycondensation reaction. Glass fiber, as a reinforce, was meltpolymerized with 4-acetoxybenzoic(ABA),4,4'-diacetoxybiphenyl and terephthalic acid (TA) to make TLCPs with a good mechanical properties. All the obtained compounds were characterized by conventional spectroscopic methods. The thermal behavior of the polymers has been characterized using polarized optical microscopy and differential scanning calorimetry. The effect of monomer structure and mechanical properties has been investigated on the prepared polyesters and is also compared with that of the analogous polyester by other processing mode. Optical microscopy showed a highly threaded liquid crystalline texture to a high birefringent Schlierene texture characteristic of the nematic phase for all polyesters. DSC experiments were also found in accord with mesophase formation. The melting points of polymers having a central 4,4'-biphenyldicarboxylate residue have two broad endotherms. The glass transition temperature values of polyesters are not effect by the glass fiber. According to the SEM result showed that the composite had strong fiber-matrix adhesion. From the mechanical test result, it showed that TLCP are reinforced by rigid fiber further improvement of properties depending on fiber content, fiber fabric construction, fiber type. The mechanical properties of GF/TLCP had been improved greatly as the content of glass fiber was increased, but GF/TLCP mechanical properties do not improve remarkably as glass fiber content more than 30 wt%. The effect of copolymerization with added glass fiber in synthesis process is compared with that of the anlogous homopolyesters by other processing mode. Our finding shows that the copolymers exhibit reduced technical process and maintained mechanical properties.
机译:使用熔融缩聚反应合成含有与酯键合的介晶单元中的中央联苯部分中的液晶聚酯与酯键合成的酯键合。玻璃纤维作为增强,用4-乙酰氧基苯甲酸(ABA),4,4'-二乙酸甲苯基和对苯二甲酸(TA)熔化,以使具有良好机械性能的TLCP。通过常规光谱方法表征所有得到的化合物。使用偏振光显微镜和差示扫描量热法的特征在特征中的热量。已经在制备的聚酯上研究了单体结构和机械性能的影响,并通过其他加工模式与类似聚酯的效果进行比较。光学显微镜显示出高度螺纹液晶纹理,对所有聚酯的向量的高双折射Schlierene质地特征。也符合中间相形成发现DSC实验。具有中央4,4'-Biphyldicarboxty羧酸盐残基的聚合物的熔点具有两个宽的吸热。聚酯的玻璃化转变温度值不受玻璃纤维的影响。根据SEM结果表明,复合材料具有强纤维 - 基质粘附性。从机械测试结果,它表明,根据纤维含量,纤维织物结构,纤维型,通过刚性纤维进一步改善性能的TLCP进一步提高。随着玻璃纤维的含量增加,GF / TLCP的力学性能大大提高,但GF / TLCP机械性能不会显着,玻璃纤维含量超过30wt%。将共聚与添加的玻璃纤维在合成过程中的效果与其他加工模式的均匀均聚酯的效果与其他加工模式进行比较。我们的发现表明,共聚物表现出降低的技术过程和维持力学性能。

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