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Effects of alloying elements on solidification process and hardenability of high carbon high speed steel type alloy

机译:合金元素对高碳高速钢型合金凝固工艺及其淬透性的影响

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The effects of alloying elements on the solidification process of high carbon high speed steel type alloy were investigated by using a series of hypo-eutectic alloys of Fe-2 % C-5 % Cr-5 % Mo-5.5 % V-0/5 % W-0/5 % Co-0/5 % Ni and a hyper-eutecticFe-2.3 % C-5 % Cr-5 % Mo-9 % V-5 % W-5 % Co alloy. The solidification process of each alloy was investigated by thermal analysis and quenching experiments. In each hypo-eutectic alloy, crystallization proceeds in the order of primaryγ, γ + MC eutectic,γ + M{sub}2C eutectic, while the primary MC instead of r crystallizes in the hyper-eutectic alloy. The amount and distribution of each carbide are explained with the phase diagram and the redistribution of alloying elements during solidification. Thehardness of quenched alloy was maximum at an austenitizing temperature between 1273 K and 1373 K since the hardness depends on both the amount and hardness of martensite, that is the carbon content of austenite. Each alloy was found to exhibit a temperhardening, Co in particular enhanced the hardness when the alloy was tempered at around 823 K.
机译:通过使用Fe-2%C-5%CR-5%Mo-5.5%V-0/5的一系列杂交共晶合金研究了合金化元件对高碳高速钢型合金凝固过程的影响%W-0/5%CO-0/5%Ni和超共胶-2.3%C-5%C-5%Mo-9%V-5%W-5%Co合金。通过热分析和淬火实验研究了每种合金的凝固过程。在每种缺氧合金中,结晶按原发性γ,γ+ MC共晶,γ+ M {亚} 2C共晶的顺序进行,而初级MC代替R在超共晶合金中结晶。每种碳化物的量和分布用相图和合金元素在凝固过程中的再分布来解释。由于硬度取决于马氏体的量和硬度,因此淬灭合金的淬火合金的高空性最大在1273k和1373k之间,这是奥氏体的碳含量。发现每种合金表现出温度,特别是当合金在823k左右的回火时增强硬度。

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