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Effects of Particle Size and Forming Pressure on Pore Properties of Fe-Cr-Al Porous Metal by Pressureless Sintering

机译:粒径和成形压力对电气烧结Fe-Cr-Al多孔金属孔隙性能的影响

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摘要

With increased hydrogen consumption in ammonia production, refining and synthesis, fuel cells and vehicle industries, development of the material components related to hydrogen production is becoming an important factor in industry growth. Porous metals for fabrication of hydrogen are commonly known for their relative excellence in terms of large area, lightness, lower heat capacity, high toughness, and permeability. Fe-Cr-Al alloys not only have high corrosion resistance, heat resistance, and chemical stability but also ductility, excellent mechanical properties. In order to control powder size and sintering temperature effects of Fe-Cr-Al porous metal fabrication, Fe-Cr-Al powder was classified into 25-35 mu m, 35-45 mu m, 45-75 mu m using an auto shaking sieve machine and then classified Fe-Cr-Al powders were pressed into disk shapes using a uniaxial press machine and CIP. The pelletized Fe-Cr-Al specimens were sintered at various temperatures in high vacuum. Properties such as pore size, porosity, and air permeability were evaluated using perm-porosimetry. Microstructure and phase changes were observed with SEM and XRD. Porosity and relative density were proportionated to increasing sintering temperature. With sufficient sintering at increasing temperatures, the pore size is expected to be gradually reduced. Porosity decreased with increasing sintering temperature and gradually increased necking of the powder.
机译:随着氨生产,精炼和合成,燃料电池和车辆行业的氢消耗量增加,与氢生产有关的材料成分正在成为行业生长的重要因素。用于制备氢的多孔金属通常以大面积,亮度,较低的热容量,高韧性和渗透性而卓越的卓越。 Fe-Cr-Al合金不仅具有高耐腐蚀性,耐热性和化学稳定性,还具有延展性,优异的机械性能。为了控制Fe-Cr-Al多孔金属制造的粉末尺寸和烧结温度效果,Fe-Cr-Al粉末分为25-35亩,35-45μm,45-75μm使用自动摇动使用单轴压机和CIP将筛机和分类的Fe-Cr-Al粉末压入盘形。将粒化Fe-Cr-Al标本在高真空中的各种温度下烧结。使用PEX-POROSIMETRY评估孔径,孔隙率和透气性等性质。使用SEM和XRD观察到微观结构和相变。孔隙率和相对密度与增加烧结温度的比例均匀。在增加温度下充分烧结,预计孔径将逐渐降低。随着烧结温度的增加和逐渐增加粉末的颈部孔隙率降低。

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