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Superstrength of nanograined steel with nanoscale intermetallic precipitates transformed from shock-compressed martensitic steel

机译:由冲击压缩马氏体钢转变而来的纳米晶粒钢与纳米金属间析出物的超强度

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An increasing number of industrial applications need superstrength steels. It is known that refined grains and nanoscale precipitates can increase strength. The hardest martensitic steel reported to date is C0.8 steel, whose nanohardness can reach 11.9?GPa through incremental interstitial solid solution strengthening. Here we report a nanograined (NG) steel dispersed with nanoscale precipitates which has an extraordinarily high hardness of 19.1?GPa. The NG steel (shock-compressed Armox 500T steel) was obtained under these conditions: high strain rate of 1.2 μs(-1), high temperature rise rate of 600?Kμs(-1) and high pressure of 17?GPa. The mean grain size achieved was 39?nm and reinforcing precipitates were indexed in the NG steel. The strength of the NG steel is expected to be ~3950?MPa. The discovery of the NG steel offers a general pathway for designing new advanced steel materials with exceptional hardness and excellent strength.
机译:越来越多的工业应用需要超强度钢。众所周知,精制的晶粒和纳米级的沉淀物可以提高强度。迄今为止报道的最坚硬的马氏体钢是C0.8钢,通过不断增加的间隙固溶强化,其纳米硬度可以达到11.9?GPa。在这里,我们报道了分散有纳米级沉淀物的纳米级(NG)钢,其硬度极高,为19.1?GPa。在以下条件下获得了NG钢(冲击压缩的Armox 500T钢):1.2 ss(-1)的高应变速率,600?Kμs(-1)的高温升高速率和17?GPa的高压。所获得的平均晶粒尺寸为39?nm,在NG钢中标出了强化析出物。 NG钢的强度预计约为3950MPa。 NG钢的发现为设计具有卓越硬度和出色强度的新型先进钢材提供了一条通用途径。

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