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Structure of Fe40AI Iron Aluminides Sintered Under Cyclic Loading

机译:循环载荷下烧结Fe40Al铝化物的结构

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Many conventional P/M (powder metallurgy) processing methods utilize mostly the prealloyed powders as starting materials and consolidation is achieved by sintering, hot isostatic pressing or hot extrusion. However, these methods involve many complex-processing steps and are rather costly. Recently, we developed a P/M process termed sintering under cyclic loading, as an alternative fabrication method, by which dense Fe40AI intermetallics have been produced successfully from elemental powder mixtures.rnTwo stages technological process of Fe40AI sinter manufacturing was presented in this work. The first stage (presintering) was realised at two temperatures 620°C and 670°C under static and dynamic loading with frequency 20, 40, 60Hz during 1 hour at air atmosphere.rnThe second stage consisted in pressureless sintering at temperature 1250°C under protective argon atmosphere during 1 hour.rnSuitable selection of presintering parameters (temperature, type and frequency of pressing) enabled around five times grain size reduction of Fe40AI phase in comparison with particle size of raw Fe and Al powder material (40-60μm) as well as effective fragmentation of oxide layers. Sinters obtained after full heat treatment possess fine-grained and chemically homogeneous FeAl phase with uniformly distributed AI_2O_3 spherical particles along Fe40AI grain boundaries.rnIt was found that temperature and frequency of loading during presintering process also effected consolidation level of Fe-AI powder mixture, which increases with temperature and frequency. For optimal presintering parameters three percent of porosity of sinters after full cycle of heat treatment was obtained. This value is around twice smaller then presented by other authors.
机译:许多传统的P / M(粉末冶金)加工方法主要使用预合金粉末作为原材料,并且通过烧结,热等静压或热挤压实现固结。但是,这些方法涉及许多复杂的处理步骤,并且成本很高。最近,我们开发了一种称为循环载荷烧结的P / M工艺,作为一种替代的制造方法,通过该工艺可以成功地从元素粉末混合物中生产出致密的Fe40Al金属间化合物。这项工作提出了Fe40Al烧结制造的两步工艺过程。第一阶段(预烧结)是在空气和大气中在1小时内以20、40、60Hz的频率在静态和动态负载下分别在620°C和670°C的温度下实现的。第二阶段是在1250°C的温度下于1250°C的温度下进行无压烧结。 1小时内具有保护性的氩气气氛。rn适当选择预烧结参数(温度,类型和压制频率),可使Fe40Al相的晶粒尺寸减小约5倍,与生铁和铝粉材料(40-60μm)的粒径相比作为氧化物层的有效破碎。充分热处理后得到的烧结体具有细晶粒且化学均质的FeAl相,沿着Al40Al晶界均匀分布有AI_2O_3球形颗粒。rn发现预烧结过程中的温度和加载频率也影响了Fe-Al粉末混合物的固结水平,这随着温度和频率的增加而增加。对于最佳的预烧结参数,在整个热处理周期后,获得了百分之三的烧结矿孔隙率。该值是其他作者提出的值的两倍左右。

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