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PLA/banana fiber based sustainable biocomposites: A manufacturing perspective

机译:基于PLA /香蕉纤维的可持续生物复合材料:制造视角

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In the present experimental investigation, biocomposites based on short banana fiber (20 wt%) and poly-lactic acid were fabricated using three different processing techniques, namely direct injection molding (DIM), extrusion injection molding (EIM) and extrusion compression molding (ECM). The thermal and mechanical characterization as well as dynamic mechanical analysis has been performed to understand and compare the performance of the developed biocomposites. FTIR analysis has been conducted to investigate the presence and type of interfacial interaction in the biocomposites. XRD analysis was conducted to investigate the structure and to measure the crystallinity of the biocomposites. A significant improvement in the mechanical (tensile and flexural properties), dynamic mechanical properties (storage modulus, loss modulus, and tan delta) and crystallinity of the biocomposites fabricated by EIM were observed. A novel approach was used to examine the orientation and distribution of the fibers within the developed biocomposites. The fiber damage in terms of breaking, bending, twisting and formation of the clusters have been observed. Scanning Electron Microscopy (SEM) analysis revealed that the fiber pull-out and fracture are dominating the failure of biocomposite under loading.
机译:在本实验研究中,使用三种不同的加工技术制造了基于短香蕉纤维(20 wt%)和聚乳酸的生物复合材料,即直接注塑(DIM),挤压注塑(EIM)和挤压压缩成型(ECM) )。已经进行了热和机械表征以及动态力学分析,以了解和比较已开发的生物复合材料的性能。已经进行了FTIR分析以研究生物复合物中界面相互作用的存在和类型。进行XRD分析以研究结构并测量生物复合材料的结晶度。观察到由EIM制造的生物复合材料的机械性能(拉伸和弯曲性能),动态机械性能(储能模量,损耗模量和tanδ)和结晶度有了显着改善。一种新颖的方法被用来检查在发达的生物复合物中纤维的方向和分布。已经观察到纤维的断裂,弯曲,扭曲和簇的形成。扫描电子显微镜(SEM)分析表明,纤维的拉拔和断裂是负载状态下生物复合材料失效的主要原因。

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