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Three-Dimensional (3D) Printing of Polymer-Metal Hybrid Materials by Fused Deposition Modeling

机译:熔融沉积建模对聚合物-金属杂化材料进行三维(3D)打印

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摘要

Fused deposition modeling (FDM) is a three-dimensional (3D) printing technology that is usually performed with polymers that are molten in a printer nozzle and placed line by line on the printing bed or the previous layer, respectively. Nowadays, hybrid materials combining polymers with functional materials are also commercially available. Especially combinations of polymers with metal particles result in printed objects with interesting optical and mechanical properties. The mechanical properties of objects printed with two of these metal-polymer blends were compared to common poly (lactide acid) (PLA) printed objects. Tensile tests and bending tests show that hybrid materials mostly containing bronze have significantly reduced mechanical properties. Tensile strengths of the 3D-printed objects were unexpectedly nearly identical with those of the original filaments, indicating sufficient quality of the printing process. Our investigations show that while FDM printing allows for producing objects with mechanical properties similar to the original materials, metal-polymer blends cannot be used for the rapid manufacturing of objects necessitating mechanical strength.
机译:熔融沉积建模(FDM)是三维(3D)打印技术,通常对在打印机喷嘴中熔融并逐行分别放置在打印床或上一层上的聚合物执行操作。如今,结合聚合物和功能性材料的杂化材料也可商购获得。尤其是聚合物与金属颗粒的组合会产生具有令人感兴趣的光学和机械性能的印刷物体。将使用两种金属-聚合物共混物印刷的物体的机械性能与普通的聚(丙交酯酸)(PLA)印刷的物体进行了比较。拉伸试验和弯曲试验表明,主要包含青铜的混合材料的机械性能大大降低。出乎意料的是,3D打印对象的拉伸强度与原始细丝的拉伸强度几乎相同,这表明打印过程具有足够的质量。我们的研究表明,尽管FDM印刷可以生产出具有与原始材料相似的机械性能的物体,但是金属-聚合物共混物不能用于需要机械强度的物体的快速制造。

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