首页> 外文会议>ASME international manufacturing science and engineering conference >A NOVEL MULTI-MATERIAL ADDITIVE MANUFACTURING TECHNIQUE FOR FABRICATING LAMINATED POLYMER NANOCOMPOSITE STRUCTURES
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A NOVEL MULTI-MATERIAL ADDITIVE MANUFACTURING TECHNIQUE FOR FABRICATING LAMINATED POLYMER NANOCOMPOSITE STRUCTURES

机译:制造多层聚合物纳米复合结构的新型多材料增材制造技术

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The objective of this research is to develop a novel, multimaterial additive manufacturing technique for fabricating laminated polymer nancomposite structures that have characteristic length-scales in the tens of millimeters range. The 3D printing technology presented in this paper combines the conventional inkjet-based printing of ultraviolet (UV) curable polymers with the deposition of either aligned or random nano-scale fiber mats, in between each printed layer. The fibers are first generated using an electrospinning process that produces the roll of fibers. These fibers are then transferred to the part being manufactured using a stamping operation. The process has been proven to manufacture multi-material laminated nanocomposites having different 3D geometries. The dimensional accuracy of the parts is seen to be a function of the interaction between the different UV-curable polymer inks. In general, the addition of the nanofibers in the form of laminates is seen to improve the mechanical properties of the material, with the Young's modulus and the ultimate breaking stress showing the most improvement. The pinning and deflection of micro-cracks by the nano-scale fiber mats has been identified to be the underlying mechanism responsible for these improved mechanical properties. The thermogravimetric analysis reveals that these improvements in the mechanical properties are obtained without drastically altering the thermal degradation pattern of the base polymer.
机译:这项研究的目的是开发一种新颖的,多材料增材制造技术,以制造具有数十毫米范围内特征长度尺度的层压聚合物纳米复合结构。本文介绍的3D打印技术将传统的基于喷墨的紫外线(UV)固化聚合物打印与在每个打印层之间沉积对齐或无规纳米级纤维垫相结合。首先使用电纺丝工艺产生纤维,该电纺丝工艺产生纤维卷。然后将这些纤维通过冲压操作转移到要制造的零件上。已经证明该方法可制造具有不同3D几何形状的多材料层压纳米复合材料。零件的尺寸精度被认为是不同的紫外线可固化聚合物油墨之间相互作用的函数。总的来说,以层状形式添加纳米纤维可以改善材料的机械性能,其中杨氏模量和极限断裂应力表现出最大的改善。纳米级纤维垫对微裂纹的钉扎和挠曲已被确定是负责这些改善的机械性能的潜在机理。热重分析表明,在不显着改变基础聚合物的热降解模式的情况下获得了机械性能的这些改进。

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