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Electrophotographic multi-material powder deposition for additive manufacturing

机译:添加剂制造的电子照相多材料粉末沉积

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In order to realize multi-material components with Selective Laser Sintering (SLS) Technology new layer coating technologies are needed for the preparation of multi-material powder patterns. A promising technique to achieve such layers is electrophotography which is highly successful in the common printing industry. Due to its ability to handle different powders fast and precisely, the combination of electrophotography and SLS would support the progress in realizing high-quality multi-material parts. In this paper, electrophotographic polymer powder transfer for the preparation of multi-material layers is discussed with respect to the application in SLS. Therefore, a two-chamber design was built which enables the electrophotographic powder transfer under typical process conditions of SLS. Using this setup, the residual powder transfer of polypropylene powder was investigated in order to verify the 3D printing capabilities. Therefore, a scorotron unit was applied for charging the surface of already printed polymer layers, by which an electric field was established which transfers the powder adherent to the electrophotographic printing plate to the surface of the already printed polymer layers. The results show that the scorotron improves the uniformity of the powder deposition in comparison to a simple negative corona wire, and that the deposition quality depends on the scorotron grid voltage.
机译:为了实现具有选择性激光烧结(SLS)技术的多材料部件,需要新的层涂层技术来制备多材料粉末图案。实现这种层的有希望的技术是在普通印刷工业中具有非常成功的电子照相。由于其能够快速且精确地处理不同的粉末,电子照相和SLS的组合将支持实现高质量的多材料部件的进展。本文讨论了用于制备多材料层的电子照相聚合物粉末转移,相对于SLS中的应用讨论。因此,建造了双室设计,其在SLS的典型工艺条件下能够在典型的工艺条件下实现电子照相粉末转移。使用该设置,研究了聚丙烯粉末的残留粉末转移,以验证3D打印能力。因此,施加了一个光晕单位用于对已经印刷的聚合物层的表面充电,通过该表面建立电场,该电场将粉末粘附到已经印刷的聚合物层的表面上转移到电子照相印刷板上。结果表明,与简单的负电晕线相比,暗槽改善了粉末沉积的均匀性,并且沉积质量取决于光晕网格电压。

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