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Manufacturing Porous Materials from Metalorganic Mixtures: Report 2

机译:用金属有机混合物制造多孔材料:报告2

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摘要

The morphology of the surface and fracture of highly porous materials obtained during the thermal destruction of metalorganic mixtures (MOM) was investigated. The size and shape of pore channels in the finished product were shown to be determined through the fractional composition and the particle shape in MOMs. The effect of the porosity on the permeability and strength of sintered materials was considered. The permeability was demonstrated to depend not only on the value, but also on the shape of pore channels. Combining the techniques of powder metallurgy with chemical-metallurgical processes allows us to obtain materials with a porosity of 70-80 percent and a strength of no less than 5-25 MPa. If the pore size was from 10 to 100 mu m, the permeability of materials was (in 10~(12) m~2) 1-3 for Mo, 0.5-6 for Mo-Ni, and 2-6 for Ti-Mo.
机译:研究了在有机金属混合物(MOM)的热破坏过程中获得的高度多孔材料的表面和断裂形态。结果表明,成品中的孔道尺寸和形状是通过MOM中的组分组成和颗粒形状确定的。考虑了孔隙率对烧结材料的渗透性和强度的影响。渗透率不仅取决于数值,还取决于孔道的形状。将粉末冶金技术与化学冶金工艺相结合,可以得到孔隙率为70-80%,强度不小于5-25 MPa的材料。如果孔径为10至100μm,则材料的磁导率在Mo中为(10〜(12)m〜2):1-3,Mo-Ni为0.5-6,Ti-Mo为2-6 。

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