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The effect of temperature and strain rate on the impact performance of recyclable all-polypropylene composites

机译:温度和应变速率对可回收全聚丙烯复合材料冲击性能的影响

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摘要

Highly oriented polypropylene (PP) tapes, with high tensile strength and stiffness achieved by molecular orientation during solid state drawing, are consolidated to create fully recyclable, high performance "all-polypropylene" (all-PP) composites. These composites possess a large processing temperature window (>30 ℃) and a high volume fraction of highly oriented PP reinforcement phase (>90%). This large processing window is achieved by using co-extruded, highly drawn PP tapes. This paper investigates the relationship between the impact resistance of all-PP composite laminates based on these highly oriented co-extruded PP tapes, and the temperature and velocity of impact. Unlike isotropic PP, the highly oriented nature of all-PP composites means that a significant influence of glass transition temperature is not observed and so all-PP composites retain high impact energy absorption even at low temperatures. Finally, the ballistic impact resistance of all-PP composites is investigated and compared with current commercial anti-ballistic materials.
机译:通过在固态拉伸过程中通过分子取向获得具有高拉伸强度和刚度的高取向聚丙烯(PP)胶带,可进行整合,以形成完全可回收利用的高性能“全聚丙烯”(all-PP)复合材料。这些复合材料具有较大的加工温度范围(> 30℃)和高体积分数的高取向PP增强相(> 90%)。通过使用共挤,高度拉伸的PP胶带可以实现较大的加工窗口。本文研究了基于这些高取向共挤PP胶带的全PP复合层压板的耐冲击性与冲击温度和速度之间的关系。与各向同性聚丙烯不同,全聚丙烯复合材料具有高度定向性,这意味着未观察到玻璃化转变温度的显着影响,因此,即使在低温下,全聚丙烯复合材料仍可吸收高冲击能量。最后,对全PP复合材料的抗冲击性能进行了研究,并将其与目前的商用防弹材料进行了比较。

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