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Additive Re-Manufacturing of Mechanically Recycled End-of-Life Glass Fiber-Reinforced Polymers for Value-Added Circular Design

机译:适用于增值圆形设计的机械再循环寿命玻璃纤维增​​强聚合物的添加剂重新制造

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摘要

Despite the large use of composites for industrial applications, their end-of-life management is still an open issue for manufacturing, especially in the wind energy sector. Additive manufacturing technology has been emerging as a solution, enhancing circular economy models, and using recycled composites for glass fiber-reinforced polymers is spreading as a new additive manufacturing trend. Nevertheless, their mechanical properties are still not comparable to pristine materials. The purpose of this paper is to examine the additive re-manufacturing of end-of-life glass fiber composites with mechanical performances that are comparable to virgin glass fiber-reinforced materials. Through a systematic characterization of the recyclate, requirements of the filler for the liquid deposition modeling process were identified. Printability and material surface quality of different formulations were analyzed using a low-cost modified 3D printer. Two hypothetical design concepts were also manufactured to validate the field of application. Furthermore, an understanding of the mechanical behavior was accomplished by means of tensile tests, and the results were compared with a benchmark formulation with virgin glass fibers. Mechanically recycled glass fibers show the capability to substitute pristine fillers, unlocking their use for new fields of application.
机译:尽管对工业应用的复合材料大量使用,但其终身管理仍然是制造业的开放问题,特别是在风能领域。添加剂制造技术已成为一种解决方案,增强循环经济模型,并使用用于玻璃纤维增​​强聚合物的再循环复合材料作为一种新的添加剂制造趋势。然而,它们的机械性能仍然不与原始材料相媲美。本文的目的是检查寿命终端玻璃纤维复合材料的添加剂重新制造,其具有与原始玻璃纤维增​​强材料相当的机械性能。通过对再循环的系统表征,鉴定了用于液体沉积建模过程的填料的要求。使用低成本改造的3D打印机分析了不同配方的可印刷性和材料表面质量。还制造了两个假设的设计概念以验证应用领域。此外,通过拉伸试验完成对机械行为的理解,并将结果与​​具有维珍玻璃纤维的基准配方进行了比较。机械回收的玻璃纤维显示替代原始填料的能力,解锁其用于新应用领域的用途。

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