首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Preparation of in situ and ex situ reinforced Fe-10Cr-1Cu-1Ni-1Mo-2C containing NbC particles by milling and hot pressing
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Preparation of in situ and ex situ reinforced Fe-10Cr-1Cu-1Ni-1Mo-2C containing NbC particles by milling and hot pressing

机译:通过研磨和热压制备原位和ex原位增强Fe-10Cr-1Cu-1Ni-1MO-2C的NBC颗粒

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摘要

An in situ and ex situ reinforced powder metallurgy (PM) steel was prepared by the combination of high-energy ball milling and subsequent hot pressing of elemental mixed powders of Fe-10Cr-1Cu-1Ni-1Mo-2C by mass with the addition of NbC particles. A 40-h milling pretreatment makes the powder particles nearly equiaxed with an average diameter of similar to 8 mu m, and the ferrite grain size is refined to similar to 6 nm. The sintered density reaches 99.0%-99.7% of the theoretical value when the sintering is conducted at temperatures greater than 1000A degrees C for 30 min. In the sintered bulk specimens, the formation of an in situ M7C3 (M = Cr, Fe, Mo) phase is confirmed. M7C3 carbides with several hundred nanometers in size are uniformly distributed in the matrix. Some ultra-fine second phases of 50-200 nm form around the ex situ NbC and in situ M7C3 particles. The sintered steel exhibits an excellent combination of hardness (> Hv 500) and compressive strength (2100-2420 MPa).
机译:通过高能球铣削和随后的Fe-10Cr-1Cu-1Ni-1MO-1MO-2C的元素混合粉末的组合和随后的热压补充,制备原位和原位增强粉末冶金(PM)钢。 NBC颗粒。 40-H铣削预处理使粉末颗粒具有几乎等于平均直径的粉末颗粒,其平均直径与8μm相似,并将铁氧体粒度精制到类似于6nm。 当烧结在大于1000A℃的温度下30分钟时,烧结密度达到理论值的99.0%-99.7%。 在烧结块状标本中,确认原位M7C3(M = Cr,Fe,Mo)相的形成。 尺寸均匀分布数百纳米的M7C3碳化物均匀分布。 在EX原位NBC和原位M7C3颗粒周围的一些超细的第二阶段为50-200nm的形式。 烧结钢具有硬度(> HV 500)和抗压强度(2100-2420MPa)的优异组合。

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