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首页> 外文期刊>Journal of Applied Polymer Science >Maleic anhydride-grafted-polybutadiene as a controlled defibrillating and dispersing agent for short aramid fiber reinforced thermoplastic polyurethane composite with improved mechanical properties
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Maleic anhydride-grafted-polybutadiene as a controlled defibrillating and dispersing agent for short aramid fiber reinforced thermoplastic polyurethane composite with improved mechanical properties

机译:马来酸酐接枝的聚丁二烯作为可控制的除颤剂和分散剂,用于短芳纶纤维增强热塑性聚氨酯复合材料的机械性能

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摘要

The reinforcing effect of resorcinol formaldehyde latex (RFL) coated short aramid fiber on an ester-based thermoplastic polyurethane (TPU) was investigated on the basis of mechanical properties. Short fibers having different fiber length were used for the reinforcement. The exceptionally high Young's modulus and low strain modulus indicate the reinforcing effect of this fiber on to the TPU matrix. It has been observed that fibers of 3 mm length at 10 phr loading and 6 mm length even at a loading of 5 phr start to exhibit severe fibrillation: the longitudinal splitting of fiber having larger diameter into thinner fibrils during processing. Fibrillation favorably affects the mechanical bonding with the matrix because of the large surface area as well as surface irregularities provided by the fibrillated fiber. However, fibrillation adversely affects the fiber dispersion by enhancing the fiber aggregation. This leads to a greater disturbance in the strain hardening behavior of the TPU matrix and subsequently reducing the tensile strength and elongation at break especially at high fiber loading. Therefore, to control the degree of fibrillation a pre-treatment has been applied on the aramid fiber surface with maleic anhydride-grafted- polybutadiene (PB-g-MA) prior to mixing it with the TPU matrix. A good quality of fiber dispersion with improved tensile strength and elongation at break has been achieved even with 6 mm short fiber at a loading of 10 phr with the treatment of only 5 phr of PB-g-MA. The tensile fractured surface morphological analyses of PB-g-MA coated fiber filled TPU composite strongly advocate these results.
机译:基于力学性能,研究了间苯二酚甲醛乳胶(RFL)包覆的芳纶短纤维对酯基热塑性聚氨酯(TPU)的增强作用。具有不同纤维长度的短纤维用于增强。极高的杨氏模量和低应变模量表明该纤维对TPU基质的增强作用。已经观察到在10phr载荷下3mm长的纤维和甚至在5phr载荷下6mm长的纤维开始表现出严重的原纤化:在加工过程中具有较大直径的纤维的纵向分裂成较细的原纤维。原纤化有利地影响与基体的机械结合,因为原纤化纤维具有大的表面积以及表面不规则性。然而,原纤化通过增强纤维聚集而不利地影响纤维分散。这导致TPU基体的应变硬化行为受到更大的干扰,从而降低了拉伸强度和断裂伸长率,特别是在高纤维负载下。因此,为了控制原纤化程度,在将其与TPU基质混合之前,已先用马来酸酐接枝的聚丁二烯(PB-g-MA)对芳纶纤维表面进行了预处理。即使仅用6 phr的PB-g-MA处理10 phr的6 mm短纤维,也能获得具有改善的拉伸强度和断裂伸长率的优质纤维分散体。 PB-g-MA涂层的纤维填充TPU复合材料的拉伸断裂表面形态分析强烈支持了这些结果。

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