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The Relationship between Quantitative Evaluation of Filamentization and Mechanical Properties in the LFRTP Molding

机译:LFRTP成型中丝定量评价与机械性能的定量评价

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摘要

The long fiber reinforced thermoplastic (LFRTP) pellet has better mechanical properties than short fiber rein-forced pellet and better moldability than stampable sheet. At present, injection molding method is mainly used for molding LFRTP pellets because of its high productivity. However, the long fiber of LFRTP pellet, whose length is same as pellet length, is degraded during processing if conventional injection molding machines are used, and as the result, the mechanical properties are not improved as expected in many cases. Therefore, a new molding process is required to make good use of LFRTP pellets. Recently, a new molding process has been developed appropriate for LFRTP pellets. It is possible for this new molding machine to make fiber length longer in the molding than universal injection molding one. However, the deterioration of the filamentization becomes the disturbance of the improvement of the mechanical property. Then, the quantification of the filamentization was tried in this study. In addition to it, the experimental strength was compared with the theory strength that considers fiber length, fiber concentration and fiber orientation.As the result, we were able to prove the effectiveness of quantification technique of the filamentization. Then, it was possible to grasp the relationship between tensile strength and filamentization, and the importance of filamentization was confirmed.
机译:长纤维增强热塑性塑料(LFRTP)颗粒具有比短纤维的机械性能更好,而不是比脐带的更好的可模塑性。目前,注塑方法主要用于模塑LFRTP颗粒,因为其高生产率。然而,如果使用常规的注射成型机,则长度与颗粒长度相同的LFRTP颗粒的长纤维在加工期间降低,并且结果,在许多情况下,机械性能不会得到预期的预期。因此,需要一种新的模塑过程来利用LFRTP颗粒。最近,已经开发了一种适用于LFRTP颗粒的新型模塑过程。这种新型模塑机可以使纤维长度延长成型,而不是通用注塑成型。然而,丝的恶化成为机械性能改善的干扰。然后,在本研究中尝试了丝状化的量化。除此之外,实验强度与考虑纤维长度,纤维浓度和纤维取向的理论强度进行比较。结果,我们能够证明丝定量技术的有效性。然后,可以掌握拉伸强度和丝之间的关系,确认了丝的重要性。

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