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ALLOYS EXHIBITING SPINODAL GLASS MATRIX MICROCONSTITUENTS STRUCTURE AND DEFORMATION MECHANISMS

机译:合金具有纺丝状玻璃基质微结构和变形机理

摘要

An alloy composition comprising iron present in the range of 49 atomic percent (at %) to 65 at %, nickel present in the range of 10.0 at % to 16.5 at %, cobalt optionally present in the range of 0.1 at % to 12 at %, boron present in the range of 12.5 at % to 16.5 at %, silicon optionally present in the range of 0.1 at % to 8.0 at %, carbon optionally present in the range of 2 at % to 5 at %, chromium optionally present in the range of 2.5 at % to 13.35 at %, and niobium optionally present in the range of 1.5 at % to 2.5 at %, wherein the alloy composition exhibits spinodal glass matrix microconstituents when cooled at a rate in the range of 103K/s to 104K/s and develops a number of shear bands per linear meter in the range of greater than 1.1 x102 m-1 to 107 m-1 upon application of a tensile force applied at a rate of 0.001s-1.
机译:一种合金组合物,包括铁,原子含量在49原子百分比(原子%)至65原子%之间;镍含量在10.0原子%至16.5原子%之间;钴可选地在0.1原子%至12原子%范围内,硼的含量在12.5 at%至16.5 at%的范围内,硅可选地在0.1 at%至8.0 at%的范围内,碳可选地在2 at%至5 at%的范围内,铬可选地在范围为2.5原子%至13.35原子%,并且任选地存在的铌为1.5原子%至2.5原子%,其中合金组合物以103K / s至104K / s的速度冷却时,呈现出旋节状玻璃基体微成分。 s并在施加以0.001s-1的速率施加的拉力时,每线性米产生的剪切带数量大于1.1 x102 m-1至107 m-1。

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