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The chemical mechanical and physical properties of 3D printed materials composed of TiO2-ABS nanocomposites

机译:由TiO2-ABS纳米复合材料组成的3D打印材料的化学机械和物理性质

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摘要

To expand the chemical capabilities of 3D printed structures generated from commercial thermoplastic printers, we have produced and printed polymer filaments that contain inorganic nanoparticles. TiO2 was dispersed into acrylonitrile butadiene styrene (ABS) and extruded into filaments with 1.75 mm diameters. We produced filaments with TiO2 compositions of 1, 5, and 10% (kg/kg) and printed structures using a commercial 3D printer. Our experiments suggest that ABS undergoes minor degradation in the presence of TiO2 during the different processing steps. The measured mechanical properties (strain and Young’s modulus) for all of the composites are similar to those of structures printed from the pure polymer. TiO2 incorporation at 1% negatively affects the stress at breaking point and the flexural stress. Structures produced from the 5 and 10% nanocomposites display a higher breaking point stress than those printed from the pure polymer. TiO2 within the printed matrix was able to quench the intrinsic fluorescence of the polymer. TiO2 was also able to photocatalyze the degradation of a rhodamine 6G in solution. These experiments display chemical reactivity in nanocomposites that are printed using commercial 3D printers, and we expect that our methodology will help to inform others who seek to incorporate catalytic nanoparticles in 3D printed structures.
机译:为了扩展由商用热塑性打印机生成的3D打印结构的化学功能,我们生产并打印了包含无机纳米粒子的聚合物长丝。 TiO2分散在丙烯腈丁二烯苯乙烯(ABS)中,并挤出成直径为1.75毫米的长丝。我们生产的TiO2组成分别为1、5和10%(kg / kg)的长丝,并使用商用3D打印机打印结构。我们的实验表明,在不同的处理步骤中,ABS在TiO2存在下会发生轻微降解。对所有复合材料测得的机械性能(应变和杨氏模量)与由纯聚合物印刷的结构相似。 TiO 2的含量为1%会对断裂点的应力和弯曲应力产生负面影响。由5%和10%纳米复合材料制成的结构比由纯聚合物印刷的结构显示出更高的断裂点应力。印刷基质中的TiO2能够猝灭聚合物的固有荧光。 TiO2还能够光催化溶液中若丹明6G的降解。这些实验显示了在使用商用3D打印机打印的纳米复合材料中的化学反应性,我们希望我们的方法学能够帮助告知其他寻求将催化纳米颗粒纳入3D打印结构的人。

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