材料科学
陶瓷
抗弯强度
氮化硅
制作
流变学
复合材料
挤压
多孔性
绿色车身
紧迫的
相对密度
压痕硬度
3D打印
热等静压
近净形状
原材料
微观结构
图层(电子)
有机化学
化学
病理
替代医学
医学
作者
M.S. Faria,Manuel Fellipe Rodrigues Pais Alves,R. Cintra,F.J. Oliveira,Cristina Fernandes,Daniel Figueiredo,Susana M. Olhero
标识
DOI:10.1016/j.ceramint.2023.03.231
摘要
The fabrication of complex shaped Si3N4 parts by conventional methods is challenging due to its high hardness and mechanical strength. Additive manufacturing (AM) appeared as a competitive way to attain three-dimensional complexity at lower costs. However, most of AM technologies still present limitations in producing high dense ceramics, mainly due to several difficulties in developing proper feedstock. This work presents the fabrication of dense silicon nitride-based ceramics by using an extrusion based additive manufacturing technique (direct ink writing, also known as robocasting) and cold isostatic pressing (CIP) as a post processing step. Silicon-nitride aqueous based inks containing different amounts of solids loading (36, 38 and 39 vol%) and proper rheological characteristics for the printing process were studied. The use of CIP (200 MPa) is suggested to reduce or even eliminate defects and porosity and consequently, to improve mechanical performance of the final parts. Relative density, microhardness and flexural strength increased as solids loading in the inks increased and were further improved when CIP pressing was used. Parts produced by robocasting with an ink containing 39 vol% and cold isostatic pressed at 200 MPa exhibited an average relative density around 99%, 1475 HV2 microhardness value and 650 MPa flexural strength, values similar to those of silicon nitride ceramics fabricated by conventional processing.
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