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Ceramic binder jetting additive manufacturing: Effects of particle size on feedstock powder and final part properties

机译:陶瓷粘合剂喷射添加剂制造:粒度对原料粉末和最终部件性能的影响

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摘要

Binder jetting is a promising additive manufacturing process to fabricate a wide range of materials, including ceramics. The objective of this research is to investigate the effects of particle size on flowability and sinterability of the feedstock powder and resultant properties of fabricated parts. A commercial ceramic composite powder was sieved into three different particle size ranges: designated as fine, medium, and coarse powders, respectively. Flowability and sinterability measurements were performed on the sieved powders. After printing and sintering, the density of samples was measured with the Archimedes' method. Compressive tests were performed to investigate the mechanical properties of the fabricated parts. The experimental results showed that flowability increased but sinterability decreased as particle size increased. The printed and sintered density was dependent on both flowability and sinterability: the highest density was achieved by the medium powder due to the balance between flowability and sinterability. The compressive strength was dominated by sinterability: the highest strength was achieved by the fine powder because of the highest sinterability.
机译:粘合剂喷射是一种有前途的添加剂制造工艺,用于制造各种材料,包括陶瓷。本研究的目的是探讨粒度对原料粉末的流动性和烧结性的影响和制造零件的所得性能。将商业陶瓷复合粉末筛分成三种不同的粒度范围:分别指定为细,培养基和粗粉末。在筛分粉末中进行流动性和烧结性测量。在印刷和烧结后,用Archimedes的方法测量样品的密度。进行压缩试验以研究制造部件的机械性能。实验结果表明,随着粒径增加,流动性增加但顺序降低。印刷和烧结密度依赖于流动性和烧结性:由于流动性和烧结性之间的平衡,培养基粉末实现了最高密度。压缩强度由烧结性主导:由于烧结性最高,通过细粉实现的最高强度。

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