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Influence of cooling rate and tempering on precipitation and hardness of vanadium microalloyed steel

机译:冷却速度和回火对钒微合金钢析出和硬度的影响

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In the present work precipitate distributions in a C-Mn-Al-V-N microalloyed steel and hardness were examined for as-received, heat-treated and heat-treated & tempered samples. Examination of as-received and heat-treated samples from the vanadium micro-alloyed steels using transmission electron microscopy revealed quite different precipitate distributions. The type and sizes of the precipitate particles and also hardness of the steel samples were markedly affected as the austenitisation time and cooling rates were changed. Tempering steel samples after air cooling produced fine matrix precipitates which are closely spaced, obstruct moving dislocations and hence make the steel harder.
机译:在目前的工作中,对C-Mn-Al-V-N微合金钢中的析出物分布和硬度进行了检查,以了解原样,热处理,热处理和回火后的样品。使用透射电子显微镜检查钒微合金钢的接收样品和热处理后的样品,发现其沉淀分布完全不同。随着奥氏体化时间和冷却速率的改变,沉淀颗粒的类型和尺寸以及钢样品的硬度受到显着影响。在空气冷却后对钢样品进行回火会产生细小的基质沉淀物,这些沉淀物的间距很小,阻碍了移动位错,因此使钢变硬。

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