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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Dispersion strengthening in vanadium microalloyed steels processed by simulated thin slab casting and direct charging Part 2 - Chemical characterisation of dispersion strengthening precipitates
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Dispersion strengthening in vanadium microalloyed steels processed by simulated thin slab casting and direct charging Part 2 - Chemical characterisation of dispersion strengthening precipitates

机译:模拟薄板坯连铸和直接装料处理后的钒微合金钢中的弥散强化第2部分-弥散强化沉淀物的化学表征

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摘要

The compositions of sub-15 nm particles in six related vanadium high strength low alloy steels, made by simulated thin slab direct charged casting, have been determined using electron energy loss spectroscopy (EELS). Such particles are considered to be responsible for dispersion hardening. For the first time, particles down to 4 nm in size have had their composition fully determined. In all the steels, the particles were nitrogen and vanadium rich and possibly slightly substoichiometric carbonitrides. Equilibrium thermodynamics predicted much higher carbon to metal atomic ratios than observed in all cases so that kinetics and mechanical deformation clearly control the precipitation process. Thus it is important to formulate the steel with this in mind.
机译:使用电子能量损失光谱法(EELS)确定了六种相关的钒高强度低合金钢中15纳米以下颗粒的组成,这些钒是通过模拟薄板坯直接装料铸造而成的。这种颗粒被认为是造成分散体硬化的原因。尺寸小于4 nm的颗粒第一次完全确定了其组成。在所有钢中,颗粒中都富含氮和钒,并且可能是亚化学计量的亚碳氮化物。平衡热力学预测比所有情况下观察到的碳与金属原子比要高得多,因此动力学和机械变形可以清楚地控制沉淀过程。因此,考虑到这一点,配制钢材非常重要。

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