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BINDER JETTING ADDITIVE MANUFACTURING OF CERAMICS: FEEDSTOCK POWDER PREPARATION BY SPRAY FREEZE GRANULATION

机译:粘合剂的粘结剂陶瓷增材制造:通过喷雾冷冻制粒法制备饲料粉

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Objective of this study is to prepare the binder jetting feedstock powder by spray freeze drying and study the effects of its parameters on the powder properties. Binder jetting additive manufacturing is a promising technology for fabricating ceramic parts with complex or customized geometries. However, this process is limited by the relatively low density of the fabricated parts even after sintering. The main cause comes from the contradicting requirements of the particle size of the feedstock powder: a large particle size (>5 μm) is required for a high flowability while a small particle size (<1 μm) for a high sinterability. For the first time, a novel technology for the feedstock material preparation, called spray freeze drying, is investigated to address this contradiction. Using raw alumina nanopowder (100 nm), a full factorial design at two levels for two factors (spraying pressure and slurry feed rate) was formed to study their effects on the properties (i.e., granule size, flowability, and sinterability) of the obtained granulated powder. Results show that high pressure and small feed rate lead to small granule size. Compared with the raw powder, the flowability of the granulated powders was significantly increased, and the high sinterability was also maintained. This study proves that spray freeze granulation is a promising technology for the feedstock powder preparation of binder jetting additive manufacturing.
机译:这项研究的目的是通过喷雾冷冻干燥制备喷射粘合剂的原料粉末,并研究其参数对粉末性能的影响。粘合剂喷射增材制造是一种用于制造具有复杂或定制几何形状的陶瓷零件的有前途的技术。但是,即使在烧结之后,该过程也受到所制造零件的相对低密度的限制。主要原因是原料粉末的粒径要求相互矛盾:高流动性需要大粒径(> 5μm),而高烧结性则需要小粒径(<1μm)。为解决这一矛盾,首次研究了一种用于原料制备的新技术,称为喷雾冷冻干燥。使用粗氧化铝纳米粉(100 nm),针对两个因素(喷涂压力和浆料进料速度)在两个级别上进行了全因子设计,以研究其对所得产品的性能(即颗粒大小,流动性和可烧结性)的影响颗粒状。结果表明,高压和小进料速度导致较小的颗粒尺寸。与原料粉末相比,造粒粉末的流动性显着提高,并且还保持了高烧结性。这项研究证明,喷雾冷冻制粒是制备粘合剂喷射添加剂的原料粉末的一种有前途的技术。

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  • 来源
    《International Manufacturing Science and Engineering Conference》|2019年|V001T01A006.1-V001T01A006.6|共6页
  • 会议地点 Erie(US)
  • 作者单位

    Department of Industrial Systems Engineering Texas AM University College Station TX 77843;

    Department of Mechanical Engineering Texas AM University College Station TX 77843;

    Department of Materials Science Engineering Texas AM University College Station TX 77843;

    Department of Engineering Technology Industrial Distribution Department of Industrial Systems Engineering Department of Mechanical Engineering Department of Materials Science Engineering Texas AM University College Station TX 77843;

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