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Processing of Highly Filled Polymer–Metal Feedstocks for Fused Filament Fabrication and the Production of Metallic Implants

机译:用于加工高度填充的聚合物 - 金属原料用于融合长丝制造和金属植入物的生产

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摘要

Fused filament fabrication (FFF) is a new procedure for the production of plastic parts, particularly if the parts have a complex geometry and are only needed in a limited quantity, e.g., in specific medical applications. In addition to the production of parts which are purely composed of polymers, fused filament fabrication can be successfully applied for the preparation of green bodies for sintering of metallic implant materials in medical applications. In this case, highly filled polymer–metal feedstocks, which contain a variety of polymeric components, are used. In this study, we focus on various polymer-metal feedstocks, investigate the rheological properties of these materials, and relate them to our results of FFF experiments. Small amplitudes of shear oscillations reveal that the linear range of the polymer–metal feedstocks under investigation is very small, which is caused by elastic and viscous interactions between the metallic particles. These interactions strongly influence or even dominate the flow properties of the feedstock depending on the applied shear stress. The magnitude of the complex viscosity strongly increases with decreasing angular frequency, which indicates the existence of an apparent yield stress. The viscosity increase caused by the high powder loading needed for sintering limits the maximum printing velocity and the minimum layer height. The apparent yield stress hinders the formation of smooth surfaces in the FFF process and slows down the welding of deposited layers. The influence of composition on the processing parameters (suitable temperature range) and part properties (e.g., surface roughness) is discussed on the basis of rheological data.
机译:熔丝灯丝制造(FFF)是生产塑料部件的新方法,特别是如果部件具有复杂的几何形状,并且仅在有限的数量中仅在特定的医疗应用中需要。除了由聚合物纯粹由聚合物组成的部件的生产外,可以成功地施加熔融丝制造,以制备用于在医疗应用中烧结金属植入材料的生体。在这种情况下,使用含有各种聚合物组分的高度填充的聚合物 - 金属原料。在这项研究中,我们专注于各种聚合物 - 金属原料,研究这些材料的流变性质,并将它们与我们的FFF实验结果相关联。小的剪切振荡振荡揭示了在调查中的聚合物 - 金属原料的线性范围非常小,这是由金属颗粒之间的弹性和粘性相互作用引起的。这些相互作用强烈影响或甚至根据施加的剪切应力来定位原料的流动性质。随着角度频率的降低,复杂粘度的大小强烈增加,这表明存在表观屈服应力。由烧结所需的高粉末载荷引起的粘度增加限制了最大印刷速度和最小层高度。表观屈服应力阻碍了FFF工艺中的光滑表面的形成,并减慢了沉积层的焊接。在流变数据的基础上讨论了组合物对处理参数(合适温度范围)和部分性质(例如,表面粗糙度)的影响。

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