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Flexure Behaviors of ABS-Based Composites Containing Carbon and Kevlar Fibers by Material Extrusion 3D Printing

机译:材料挤压3D打印的含碳和芳纶纤维的ABS基复合材料的弯曲行为

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摘要

Short-fiber-reinforced thermoplastics are popular for improving the mechanical properties exhibited by pristine thermoplastic materials. Due to the inherent conflict between strength and ductility, there are only a few successful cases of simultaneous enhancement of these two properties in polymer composite components. The objective of this work was to explore the feasibility of simultaneous enhancement of strength and ductility in ABS-based composites with short-carbon and Kevlar fiber reinforcement by material extrusion 3D printing (ME3DP). Microstructure characterization and measurement of thermal and mechanical properties were conducted to evaluate the fiber-reinforced ABS. The influence of printing raster orientation and build direction on the mechanical properties of material extrusion of 3D-printed composites was analyzed. Experimental results demonstrated that the reinforcement of the ABS-based composites by short-carbon and Kevlar fibers under optimized 3D-printing conditions led to balanced flexural strength and ductility. The ABS-based composites with a raster orientation of ±45° and side build direction presented the highest flexural behaviors among the samples in the current study. The main reason was attributed to the printed contour layers and the irregular zigzag paths, which could delay the initiation and propagation of microcracks.
机译:短纤维增强的热塑性塑料普遍用于改善原始热塑性材料所展现的机械性能。由于强度和延展性之间的内在冲突,在聚合物复合材料部件中只有少数成功的案例可以同时增强这两种性能。这项工作的目的是探索通过材料挤压3D打印(ME3DP)同时增强具有短碳纤维和芳纶纤维的ABS基复合材料的强度和延展性的可行性。进行了微结构表征和热力学性能的测量,以评估纤维增强的ABS。分析了打印栅格方向和构建方向对3D打印复合材料材料力学性能的影响。实验结果表明,在优化的3D打印条件下,短碳纤维和芳纶纤维增强了ABS基复合材料的抗弯强度和延展性。在当前研究中,具有±45°光栅方向和侧面构建方向的基于ABS的复合材料表现出最高的弯曲性能。主要原因是印刷的轮廓层和不规则的之字形路径可能会延迟微裂纹的产生和传播。

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