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Effect of Oxide Particles on Microstructure and Mechanical Properties of the 45 Carbon Structural Steel

机译:氧化物颗粒对45碳结构钢微观结构和力学性能的影响

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摘要

Striking difference in density between the oxide and the steel results in difficulty in preparing oxide dispersion strengthened steel with large size parts or materials. In this research, Al 2 O 3 and TiO 2 particles were initially milled with the 20 steel, and then the mixture was heated to a molten state to form a master alloy, which was used as a raw material for further preparation of the object steel. It was found that homogeneous distribution of the oxide particles was obtained in the mass production of the steel. Moreover, the obtained 45 carbon structural steel presents fine microstructures, together with improved mechanical properties, especially the impact ductility. This should be attributable to the transformation from the introduced micro-size oxide particles to the nano ones, which act as heterogeneous nucleants that play an important role in grain refinement and dispersion strengthening for the steel, during the remelting of the master alloy.
机译:氧化物和钢之间的密度偏差导致难以制备具有大尺寸零件或材料的氧化物分散钢。在该研究中,最初用20钢研磨Al 2 O 3和TiO 2颗粒,然后将混合物加热至熔融状态以形成母合金,其用作原料以进一步制备物体钢的原料。发现氧化物颗粒的均匀分布是在钢的批量生产中获得的。此外,所获得的45个碳结构钢呈现细微结构,以及改善的机械性能,尤其是冲击延展性。这应该是从引入的微尺寸氧化物颗粒转化到纳米氧化物颗粒的转化,其充当在母合金的重熔期间在晶粒细化和钢中发挥着重要作用的异质核法,这是在母料中的重熔期间。

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