首页> 外文期刊>C – Journal of Carbon Research >Fabrication of Graphene-Reinforced Nanocomposites with Improved Fracture Toughness in Net Shape for Complex 3D Structures via Digital Light Processing
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Fabrication of Graphene-Reinforced Nanocomposites with Improved Fracture Toughness in Net Shape for Complex 3D Structures via Digital Light Processing

机译:通过数字光加工改善净形状的净形状断裂韧性的石墨烯增强纳米复合材料的制备

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A solvent-free method to fabricate graphene-reinforced nanocomposites in net shape via digital light processing (DLP) 3D printing has been developed in this work. The effect of graphene nanofillers on resin viscosity and wettability for various printing parameters has been examined, with a systematic characterization of the mechanical and thermomechanical properties. With the addition of 0.5 wt.% graphene nanoplatelets in the resin, the flexural modulus and fracture toughness have been improved by 14% and 28% from neat resin, respectively. Thermomechanical properties of graphene-reinforced nanocomposites were also enhanced compared with the neat resin, without scarification in their printability. The feasibility of utilizing the DLP method to fabricate a fracture toughness specimen (K IC test) without complex skill-dependent notch preparation steps was explored, with different notch tip angles printed for net-shaped specimens. This provided a simple and versatile way to perform a quick examination of reinforcing efficiency from nanofillers at very low cost with high resolution and reproducibility. To demonstrate the suitability of current resins for complexly shaped structures, a gyroid scaffold for tissue engineering applications based on current graphene nanocomposite resins has been successfully fabricated via DLP, showing the great potential of current photocurable resins for applications in various fields such as tissue engineering or personalized medical devices without the cost barriers of traditional methods.
机译:通过数字光处理(DLP)3D打印在本工作中开发了一种无溶剂的方法,以制造净形状的净形状中的净形状。石墨烯纳米填料对树脂粘度和各种印刷参数的润湿性的影响,具有系统特征,机械和热机械性能。加入0.5重量%。树脂中的%石墨烯纳米孔,弯曲模量和断裂韧性分别从整颗树脂得到14%和28%。与纯树脂相比,石墨烯增强纳米复合材料的热机械性能也增强,无需透明于其可印刷性。利用DLP方法制造裂缝韧性样本(K IC试验)的可行性,没有复杂的技能依赖性的缺口制剂步骤,具有不同的凹口尖端,印在网状样本。这提供了一种简单而多功能的方式,可以快速检查从纳米填充物的加强效率,以非常低的成本,高分辨率和再现性。为了证明当前树脂的适合性,用于基于电流石墨烯纳米复合树脂的基于电流石墨烯纳米复合树脂的组织工程应用的陀螺屑支架已经通过DLP成功制造,显示出电流可光固化树脂的潜力,用于各种领域,例如组织工程或没有传统方法的成本障碍的个性化医疗设备。

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