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Properties of FeAlSi-X-Y Alloys (XY=Ni Mo) Prepared by Mechanical Alloying and Spark Plasma Sintering

机译:机械合金化和等离子烧结制备的FeAlSi-X-Y合金(XY = NiMo)的性能

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摘要

Short-term mechanical alloying and compaction by spark plasma sintering was used for the production of FeAl20Si20Mo20-XNiX (X corresponds to 5–15 wt %) alloy, which showed an ultrafine-grained microstructure with dimensions of phases around 200 nm or smaller. It was found that the addition of Mo and Ni to the FeAl20Si20 alloy results in the formation of the AlMoSi phase compared to the three-phase FeAl20Si20 alloy, which initially contained FeSi, Fe Si, and Fe Al Si phases. All the investigated alloys increased their hardness, reaching up to 1401 HV 1 for the FeAl20Si20Mo5Ni15 alloy, which contained in total 58.5% of the FeSi and Fe Al Si phases. As a result, all the prepared alloys showed one order magnitude lower wear rates ranging from 3.14 to 5.97·10 mm ·N ·m as well as significantly lower friction coefficients compared to two reference tool steels. The alloys achieved high compressive strengths (up to 2200 MPa); however, they also exhibited high brittleness even after long-term annealing, which reduced the strengths of all the alloys below approximately 1600 MPa. Furthermore, the alloys were showing ductile behavior when compressively tested at elevated temperature of 800 °C. The oxidation resistance of the alloys was superior due to the formation of a compact Al O protective layer that did not delaminate.
机译:FeAl20Si20Mo20-XNiX(X对应5-15 wt%)合金的生产采用了短期机械合金化和通过火花等离子体烧结进行的压实,该合金显示出超细晶粒的微观结构,其相尺寸约为200 nm或更小。已发现,与最初包含FeSi,Fe Si和Fe Al Si相的三相FeAl20Si20合金相比,向FeAl20Si20合金中添加Mo和Ni导致形成AlMoSi相。所有研究的合金都提高了硬度,FeAl20Si20Mo5Ni15合金的硬度最高达到1401 HV 1,其中总共包含58.5%的FeSi和Fe Al Si相。结果,与两种参考工具钢相比,所有制备的合金均显示出从3.14至5.97·10 mm·N·m的磨损率降低了一个数量级,并且摩擦系数也显着降低。合金具有很高的抗压强度(高达2200 MPa);但是,即使在长期退火后,它们也表现出高脆性,这使所有合金的强度降低到约1600 MPa以下。此外,当在800°C的高温下进行压缩测试时,这些合金表现出延展性。由于形成了不会分层的致密的Al O保护层,因此该合金的抗氧化性优越。

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