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Compression molding of reused in-process waste – effects of material and process factors

机译:重复利用的过程中废弃物的压缩成型–材料和工艺因素的影响

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AbstractEffective strategies for the reuse and recycling of in-process prepreg waste are needed to reduce economic and environmental costs.?In this paper, we investigate the compression molding of prepreg waste converted into scrap “chips” (or strands). Material is randomly distributed within a lab-scale closed mold and cured with control of temperature and pressure. Material properties?and process parameters such as chip geometry, fiber bed reinforcement, resin state, and cure cycle are varied and shown to influence porosity and thickness. These experiments clarify the phenomena governing microstructural quality and identify manufacturing pathways for high-quality parts. In addition, mechanical properties are measured for laminates with high and low defect levels. The study demonstrates the viability of prepreg reuse. Furthermore, the resulting insights provide a basis for practical science-based optimization of the reuse of production prepreg waste.
机译:摘要为了减少经济和环境成本,需要有效的策略来对预浸料进行再利用和循环利用,以降低经济和环境成本。本文研究了将预浸料压缩成废料“碎片”(或条状)的压缩成型方法。材料在实验室规模的封闭模具中随机分布,并在控制温度和压力的情况下固化。材料特性和工艺参数(例如切屑几何形状,纤维床增强,树脂状态和固化周期)会发生变化,并显示出会影响孔隙率和厚度。这些实验阐明了控制微观结构质量的现象,并确定了高质量零件的制造途径。另外,对具有高和低缺陷水平的层压材料测量了机械性能。该研究证明了预浸料再利用的可行性。此外,所得到的见解为生产预浸料废料的再利用提供了基于科学的实用优化基础。

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