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Preparation of Porous Stainless Steel Hollow-Fibers through Multi-Modal Particle Size Sintering towards Pore Engineering

机译:多孔模态多模态烧结法制备多孔不锈钢中空纤维

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摘要

The sintering of metal powders is an efficient and versatile technique to fabricate porous metal elements such as filters, diffusers, and membranes. Neck formation between particles is, however, critical to tune the porosity and optimize mass transfer in order to minimize the densification process. In this work, macro-porous stainless steel (SS) hollow-fibers (HFs) were fabricated by the extrusion and sintering of a dope comprised, for the first time, of a bimodal mixture of SS powders. The SS particles of different sizes and shapes were mixed to increase the neck formation between the particles and control the densification process of the structure during sintering. The sintered HFs from particles of two different sizes were shown to be more mechanically stable at lower sintering temperature due to the increased neck area of the small particles sintered to the large ones. In addition, the sintered HFs made from particles of 10 and 44 μm showed a smaller average pore size (<1 μm) as compared to the micron-size pores of sintered HFs made from particles of 10 μm only and those of 10 and 20 μm. The novel HFs could be used in a range of applications, from filtration modules to electrochemical membrane reactors.
机译:金属粉末的烧结是一种用于制造多孔金属元素(例如过滤器,扩散器和膜)的有效且通用的技术。然而,颗粒之间的颈部形成对于调节孔隙率和优化传质至关重要,以最大程度地减少致密化过程。在这项工作中,大孔不锈钢(SS)中空纤维(HFs)是通过挤压和烧结包含首次由SS粉末组成的双峰混合物的浓液制成的。将不同尺寸和形状的SS颗粒混合在一起,以增加颗粒之间的颈部形成,并控制烧结过程中结构的致密化过程。结果表明,由于烧结成大颗粒的小颗粒的颈面积增加,来自两种不同尺寸的颗粒的烧结HF在较低的烧结温度下机械稳定性更高。另外,与仅由10μm和10和20μm的颗粒制成的烧结HF相比,由10和44μm的颗粒制成的烧结的HF显示出较小的平均孔径(<1μm) 。新型HF​​可以用于从过滤模块到电化学膜反应器的一系列应用中。

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