首页> 外文期刊>Journal of Applied Polymer Science >Preferred orientation of chopped fibers in polymer-based composites processed by selective laser sintering and fused deposition modeling: Effects on mechanical properties
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Preferred orientation of chopped fibers in polymer-based composites processed by selective laser sintering and fused deposition modeling: Effects on mechanical properties

机译:通过选择性激光烧结和融合沉积建模加工的聚合物基复合材料中切碎纤维的优选取向:对机械性能的影响

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摘要

The orientation of reinforcing fibers in polymer-based composites greatly affects their mechanical features. It is known that different orientations of continuous fibers in the stacked layers of a laminate play a crucial role in providing an isotropic mechanical behavior, while the alignment of chopped fibers in injection molding of composites results in a degree of anisotropy. Recent additive manufacturing techniques have offered a way of controlling the fiber orientation. This article aims to investigate the effect of fiber orientation on the mechanical properties of polyamide/carbon fiber composites processed by fused deposition modeling and selective laser sintering. Tensile samples which had different fibers and layer interface with respect to the sample axis (and therefore to the tensile load) were produced. Tensile tests were performed at different strain rates; the tensile properties and the fracture surface morphology were correlated with the processing method and the sample microstructure. The best strength and stiffness were observed when the fibers and the layer interfaces were parallel to the sample axis.
机译:在聚合物基复合材料中加强纤维的取向极大地影响其机械特征。众所周知,层压材料的堆叠层中连续纤维的不同取向在提供各向同性的机械行为方面发挥着至关重要的作用,而切碎的纤维在复合材料的注射成型中的对准导致各向异性程度。最近的添加剂制造技术提供了一种控制纤维取向的方法。本文旨在探讨纤维取向对通过融合沉积建模和选择性激光烧结加工的聚酰胺/碳纤维复合材料的机械性能的影响。制备具有不同纤维和层界面相对于样品轴的拉伸样品(以及因此抗拉载荷)。在不同应变率下进行拉伸试验;拉伸性能和裂缝表面形态与加工方法和样品微观结构相关。当纤维和层界面平行于样品轴时,观察到最佳强度和刚度。

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