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Mechanical properties of single- and double-gated injection moulded short glass fibre reinforced PBT/PC composites

机译:单门和双门注塑短玻璃纤维增​​强PBT / PC复合材料的机械性能

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摘要

Tensile and flexural properties of single-gated (SG) and double-gated (DG) injection moulded blend of polybutylene terephthalate (PBT) and polycarbonate (PC) and its composites containing 15, 20 and 30 wt.% short glass fibres were investigated. In the DG mouldings, a weldline was formed by direct impingement of two opposing melt fronts (i.e. cold weld). It was found that tensile modulus was not affected by the weldline but flexural modulus decreased in the presence of weldline. For both specimen types, modulus increased linearly with volume fraction of fibres (phi(f)), according to the rule-of-mixtures for moduli. The weldline integrity (WIF) factor for flexural modulus decreased linearly with increasing phi(f). Results showed that tensile and flexural strengths for SG mouldings increase with increasing phi(f) in a linear manner according to the "rule-of-mixtures" for strengths. The presence of weldline affected both strengths in a significant way; WIF factor decreased linearly with increasing phi(f) and was independent of loading mode. It was noted also, that the overall fibre efficiency parameter for tensile modulus was independent of specimen type but for flexural modulus it was lower in the case of DG mouldings. In all cases, efficiency parameter for strength was considerably lower than for the modulus. Impact strength and fracture toughness of SG mouldings were significantly greater than for DG mouldings. Although these properties for SG mouldings increased with increasing phi(f), they decreased significantly for DG mouldings. Results showed that WIF factor for impact strength and fracture toughness decreased linearly with increasing phi(f).
机译:研究了聚对苯二甲酸丁二醇酯(PBT)和聚碳酸酯(PC)及其包含15、20和30%重量百分比的短玻璃纤维的复合材料的单浇注(SG)和双浇注(DG)注塑共混物的拉伸和弯曲性能。在DG模制品中,通过直接冲击两个相对的熔体前沿(即冷焊)形成一条焊缝。发现拉伸模量不受熔合线的影响,但是弯曲模量在存在熔合线的情况下降低。对于两种样品类型,模量均随模量的混合规则随纤维的体积分数(phi(f))线性增加。弯曲模量的焊缝完整性(WIF)因子随phi(f)的增加而线性降低。结果表明,根据强度的“混合规则”,SG模塑件的拉伸强度和弯曲强度会随着phi(f)的增加而线性增加。焊缝的存在会显着影响两种强度。 WIF因子随phi(f)的增加而线性降低,并且与加载模式无关。还应注意,拉伸模量的总纤维效率参数与样品类型无关,但对于弯曲模量,在DG模制的情况下较低。在所有情况下,强度的效率参数都大大低于模量。 SG成型品的冲击强度和断裂韧性明显高于DG成型品。尽管SG成型品的这些性能随phi(f)的增加而增加,但对于DG成型品,它们的性能却显着下降。结果表明,冲击强度和断裂韧性的WIF因子随phi(f)的增加而线性降低。

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