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Effect of Austenization Temperature on the Martensitic Transformation in a Low-alloy Ultra-high-strength Steel

机译:低合金超高强度钢马氏体变换的奥项化温度对

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The effect of austenization treatment temperature on the martensitic transformation in the 30CrNi3MoV ultra-high-strength steel was investigated by means of dilatometric measurements and microstructural observations. The results showed that the coarsening temperature of austenite grains in the 30CrNi3MoV steel is raised to about 1000°C due to the inhibition to the migration of austenite grain boundaries, not only by the fine and disperse vanadium carbides, but also by the solute atoms adsorbed near the boundaries. The martensite obtained in 30CrNi3MoV samples with different austenization temperatures varied in the structural constituent, as well as in the size. The martensite microstructures obtained in the samples austenized at relatively low temperatures were composed of both lath martensite and acicular martensite and they are small in size. Yet the microstructures in the 30CrNi3MoV samples with relatively high austenization temperatures were occupied mostly by coarse lath martensite. For the 30CrNi3MoV steel, the austenization heating temperature should be kept below 1000°C in order to achieve the optimum mechanical property.
机译:通过稀释测量和微观结构观察研究了奥氏体化处理温度对30crNi3Mov超高强度钢中马氏体转化的影响。结果表明,由于抑制奥氏体晶状体界限,不仅通过精细和分散钒碳化钒,因此抑制了30crNi3moV钢中奥氏体晶粒的粗升温至约1000℃,而且由溶质原子吸附靠近边界。在30crni3mov样品中获得的马氏体,具有不同的奥氏化温度在结构组分中变化,以及尺寸。在相对较低温度下允许在相对低温下允许的样品中获得的马氏体微观结构由Lath Martensite和针状马氏体组成,它们的尺寸很小。然而,30crNi3mov样品中的微观结构具有相对高的奥氏体化温度的样品主要由粗Lath马氏体占据。对于30crni3mov钢,奥氏体化加热温度应保持在1000°C以下,以实现最佳的机械性能。

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