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The Effect of Nano-precipitates on Strength in a Micro-alloyed Ferritic Steel

机译:纳米析出物对微合金铁素体钢强度的影响

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A high strength ferritic steel with finely dispersive precipitates was investigated to reveal the fundamental strengthening mechanisms in this alloy. Using energy dispersive X-ray spectroscopy (EDXS) and transmission electron microscope (TEM), fine carbides with an average diameter of 10 nm were observed in the ferrite matrix of the 0.08%Ti steel, and some cubic M_(23)C_6 precipitates were also observed at the grain boundaries and the interior of grains. The dual precipitate structure of finely dispersive TiC precipitates in the matrix and coarse M_(23)C_6 at grain boundaries provides combined matrix and grain boundary strengthening. The resulting yield stress is two or three times higher than that of conventional Ti-bearing high strength hot-rolled sheet steels. The effect of the particle size, particle distribution and intrinsic particle strength have been investigated through dislocation dynamics (DD) simulations and the relationship for resolved shear stress for single crystal under this condition has been presented using simulation data. The results show that the finely dispersive precipitates can strengthen the material by pinning the dislocations up to a certain shear stress and retarding the recovery as well as annihilation of dislocations. The DD results also show that strengthening is not only a function of the density of the nano-scale precipitates but also of their size. This size effect is explained using a mechanistic model developed based on dislocation-particle interaction.
机译:研究了具有精细分散的析出物的高强度铁素体钢,以揭示该合金的基本强化机理。使用能量色散X射线能谱(EDXS)和透射电子显微镜(TEM),在0.08%Ti钢的铁素体基体中观察到平均直径为10 nm的细碳化物,并且有一些立方M_(23)C_6析出物在晶界和晶粒内部也观察到。细分散的TiC沉淀在基体中的双重沉淀结构和晶界处的粗M_(23)C_6提供了结合的基体和晶界强化。所产生的屈服应力比传统的含钛高强度热轧钢板高两倍或三倍。通过位错动力学(DD)模拟研究了粒径,粒径分布和固有强度的影响,并利用模拟数据给出了在此条件下单晶的解析切应力的关系。结果表明,细分散的析出物可以通过将位错固定在一定的剪切应力下,并阻碍位错的恢复和hil灭,从而增强材料的强度。 DD结果还表明,强化不仅是纳米级沉淀物密度的函数,而且还是其大小的函数。使用基于位错-粒子相互作用开发的机械模型解释了这种尺寸效应。

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