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Sintered composite materials on the basis of Fe/FePO4-coated powders

机译:基于Fe / FePO4涂层粉末的烧结复合材料

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摘要

Composite materials with a network microstructure of -Fe areas surrounded by continuous layer of iron phosphate compounds were prepared on the basis of Fe/FePO4 precipitation coated powder. Spherically shaped particles of this powder were compacted and sintered at 912, 930, 980, 1075 and 1130 degrees C for 3min in air. Sufficiently fast heating rate, rapid formation of a liquid phase and fast cooling suppress the development of diffusion processes and consequently the formation of Fe-Fe metallic connections. Microscopic observations showed that, after appropriate processing conditions, an even and continuous layer, comprising a mixture of ferrous orthophosphate and iron oxide compounds, was achieved. Sintering at 1130 degrees C and fast cooling at similar to 25000 degrees C/min resulted in the formation of a phosphate layer consisting of very fine lamellar structure - graftonite. The phase composition of the phosphate layer was correlated with processing conditions. Corrosion resistance of the sintered composites was measured and related to microstructure and processing technique variants. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:在Fe / FePO4沉淀涂层粉末的基础上,制备了具有-Fe区域网络微观结构并被磷酸铁化合物连续层包围的复合材料。将该粉末的球形颗粒压实并在912、930、980、1075和1130摄氏度的空气中烧结3分钟。足够快的加热速率,液相的快速形成和快速的冷却抑制了扩散过程的发展,从而抑制了Fe-Fe金属连接的形成。显微镜观察表明,在适当的加工条件下,可获得包括正磷酸亚铁和氧化铁化合物的混合物的均匀且连续的层。在1130摄氏度下烧结,并以接近25000摄氏度/分钟的速度快速冷却,导致形成了由非常细的层状结构-硅藻土组成的磷酸盐层。磷酸盐层的相组成与加工条件相关。测量了烧结复合材料的耐腐蚀性,并且与微结构和加工技术的变化有关。版权所有(c)2014 John Wiley&Sons,Ltd.

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