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Annealing effect on crystalline structure and mechanical properties in long glass fiber reinforced polyamide 66

机译:长玻璃纤维增强聚酰胺的结晶结构和机械性能的退火效应66

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摘要

Generally, annealing is one of the important post-processing methods used to obtain injection molding products coupled with excellent comprehensive performance. Based on a series of experimental studies in this work, a systematic investigation was performed to research the annealing effect on crystalline structure and mechanical properties in long glass fiber reinforced polyamide 66 (LGF-PA66) composite. The composite was prepared by injection molding, using LGF-PA66 pellet with 50 wt % fiber content and 12 mm length. Composite samples were annealed in 120 degrees C to 200 degrees C range and then subjected to various tests at room temperature. Besides, the releasing strain during a specific temperature cycle was also investigated. Our results suggest that annealing treatment had a neglected impact on the crystallinity and crystal morphology of LGF-PA66 composite. However, with the increasing of processing temperature, annealing could strikingly promote the phase transition from to and the further growth of (2) crystal in (010)/(110). In addition, annealing of LGF-PA66 composite resulted in a drastic increase in tensile and flexural properties and a reduction in impact strength, along with the transition of failure mode. The changes in mechanical properties were attributed to the crystal transition, strengthening of matrix performance, and the release of residual stress. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 44832.
机译:通常,退火是用于获得具有优异综合性能的注塑产品的重要后处理方法之一。基于这项工作的一系列实验研究,进行了系统研究,以研究长玻璃纤维增​​强聚酰胺66(LGF-PA66)复合材料中的结晶结构和机械性能的退火效果。通过注射成型制备复合材料,使用具有50wt%纤维含量和12mm长的LGF-PA66沉淀。复合样品在120℃至200℃的范围内退火,然后在室温下进行各种试验。此外,还研究了特定温度循环期间的释放应变。我们的研究结果表明,退火处理对LGF-PA66复合材料的结晶和晶体形态具有忽略的影响。然而,随着加工温度的增加,退火可以惊人地促进从(010)/(110)中(2)晶体的进一步生长的相转变。另外,LGF-PA66复合材料的退火导致拉伸和弯曲性能的急剧增加以及抗冲击强度的降低以及失效模式的转变。机械性能的变化归因于晶体转变,强化基质性能,以及释放残余应力。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,44832。

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