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Manufacturing a Porous Structure According to the Process Parameters of Functional 3D Porous Polymer Printing Technology Based on a Chemical Blowing Agent

机译:根据化学发泡剂的功能3D多孔聚合物印刷技术的工艺参数制造多孔结构

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In this paper, we propose a new porous polymer printing technology based on CBA(chemical blowing agent), and describe the optimization process according to the process parameters. By mixing polypropylene (PP) and CBA, a hybrid CBA filament was manufactured; the diameter of the filament ranged between 1.60 mm and 1.75 mm. A porous polymer structure was manufactured based on the traditional fused deposition modelling (FDM) method. The process parameters of the three-dimensional (3D) porous polymer printing (PPP) process included nozzle temperature, printing speed, and CBA density. Porosity increase with an increase in nozzle temperature and CBA density. On the contrary, porosity increase with a decrease in the printing speed. For porous structures, it has excellent mechanical properties. We manufactured a simple shape in 3D using 3D PPP technology. In the future, we will study the excellent mechanical properties of 3D PPP technology and apply them to various safety fields.
机译:在本文中,我们提出了一种基于CBA(化学发泡剂)的新型多孔聚合物印刷技术,并根据工艺参数描述优化过程。通过混合聚丙烯(PP)和CBA,制造杂交CBA丝;长丝的直径范围在1.60mm和1.75mm之间。基于传统的融合沉积建模(FDM)方法制造多孔聚合物结构。三维(3D)多孔聚合物印刷(PPP)工艺的过程参数包括喷嘴温度,印刷速度和CBA密度。孔隙率随喷嘴温度和CBA密度的增加而增加。相反,孔隙率随着印刷速度的降低而增加。对于多孔结构,它具有优异的机械性能。我们使用3D PPP技术在3D中制造了一种简单的形状。未来,我们将研究3D PPP技术的优异机械性能,并将其应用于各种安全领域。

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