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Fe-B及Fe-C-B合金的激光熔化激冷

LASER MELT QUENCHING OF Fe-B AND Fe-C-B ALLOY SURFACE LAYERS

  • 摘要: 工業純鐵與共析碳鋼表面滲硼層先在爐中處理,以獲得共晶組織,然后以高能密度激光束掃描;被激光熔化的金屬在冷基底的吸熱作用下,以非常高的速度冷卻并凝固。實驗表明,爐內處理后Fe-B合金層的共晶由α-Fe+Fe2B二相組成,FeC-B合金層的共晶由α-Fe+Fe3(C、B)二相組成;共晶中Fe2B為方棒狀和Fe3(C、B)為片層狀。激光熔化激冷后,共晶中的相組成及形貌無改變,但棒間距和片間距相應減小了40及100倍。共晶組織的硬度大幅度增高,每個合金系的共晶組織的硬度與尺寸的關系服從Hall-Petch公式。

     

    Abstract: Borided layers on the surface of Armco iron and eutectoid carbon Steel were eutectified in furnace and then scanned continuously with laser beam of high power densities. The laser melted metal were cooled and then solidified with extra-ordinary speeds by the heat extraction action of the cold substrale. It was found that the eutectic structures are composed of α-Fe+Fe2B phases in the Fe-B alloy layer and of α-Fe + Fe3(C, B) phases in the Fe-C-B layer. Fe2B is in the square rod-shaped form and Fe3(C, B) in the lamellar form respectively after furnace treatment. The phase constitution and the morphologies are not altered, but the inter-rod and interlamellar spacings are reduced by 40 and 100 times respectively after the laser melt quenching. The hardness of eutectic structures are thus greatly enhanced and the hardness-dimension relationship for each alloy system obeys the Hall-Petch equation.

     

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