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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Mechanical properties of PLA-graphene filament for FDM 3D printing
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Mechanical properties of PLA-graphene filament for FDM 3D printing

机译:PLA-石墨烯长丝的机械性能,用于FDM 3D打印

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摘要

Fused deposition modelling is an additive manufacturing technology that is widely employed to produce good quality products with complex geometries at a low cost and with efficient manufacturing and delivery logistics. The mechanical properties can be enhanced by studying the numerous FDM parameters and by using new materials. In this work, was studied the mechanical properties tensile strength, flexural strength, and impact energy of 3D printed parts manufactured with FDM technology and PLA-graphene raw material by varying the infill and layer thickness parameters using a statistical technique CCD-central composite design. Due to the layered production process, 3D printed parts exhibit anisotropic behaviour. In the tests, the flat orientation and honeycomb infill pattern were maintained. The results showed that the mechanical properties improve as the linear layer thickness parameter increases. The behaviour was different in each test for the linear infill parameter. The mechanical properties, tensile strength and flexural strength, increased as the infill increased, while impact energy decreased as infill increased. The relationship between mechanical properties and printing time/weight was also evaluated.
机译:融合沉积建模是一种添加剂制造技术,广泛用于生产具有较低成本和高效制造和交付物流的复杂几何形状的优质产品。通过研究许多FDM参数和使用新材料,可以提高机械性能。在这项工作中,通过使用统计技术CCD-Centy Composite Design改变填充和层厚度参数,研究了用FDM技术和PLA-石墨烯原料制造的3D印刷部件的机械性能拉伸强度,弯曲强度和冲击能量。由于层状生产过程,3D印刷部件表现出各向异性行为。在测试中,维持扁平定向和蜂窝状填充图案。结果表明,随着线性层厚度参数的增加,机械性能提高。线性infill参数的每个测试中的行为都不同。由于填充量增加,机械性能,拉伸强度和抗弯强度增加,而冲击能量随着填充而降低。还评估了机械性能和印刷时间/重量之间的关系。

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