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Effects of 3-D Printed Structural Characteristics on Magnetic Properties

机译:3-D打印的结构特征对磁性能的影响

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摘要

Additive manufacturing, particularly 3-D printing, allows for completely customizable designs with relatively no limits on geometric complexities. In order to ensure optimal part design for potential magnetic applications, it is crucial to study how the different 3-D printer settings impact the magnetic properties of the printed part. Specifically, in this paper, it was determined how three structural print parameters (outer shell thickness, internal fill factor, and internal layer orientation) affect the resulting magnetic properties of 3-D printed cubic samples. The samples are made using fused deposition modeling of an iron-polymer composite filament. Hysteresis loops were gathered for fields applied along the [100], [110], and [001] directions of the printed cubes. From this, it was determined which combination of print settings should be used to achieve the most desirable magnetic response in terms of magnetic susceptibility, net magnetic moment, and mass-normalized saturation magnetization.
机译:增材制造,尤其是3D打印,可以实现完全可定制的设计,而几何复杂度相对不受限制。为了确保针对潜在磁性应用的最佳零件设计,至关重要的是研究不同的3-D打印机设置如何影响打印零件的磁性。具体来说,在本文中,确定了三个结构打印参数(外壳厚度,内部填充系数和内部层方向)如何影响3-D打印立方样品的最终磁性能。使用铁聚合物复合长丝的熔融沉积模型制作样品。磁滞回线针对沿打印立方体的[100],[110]和[001]方向应用的字段收集。由此确定在磁化率,净磁矩和质量归一化饱和磁化强度方面应该使用哪种打印设置组合以获得最理想的磁响应。

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