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脈沖電流參數對過共晶高鉻鑄鐵近液相線熔化后凝固組織的影響

Effect of electric current pulse parameters on the solidification microstructure of hypereutectic high-chromium cast iron near-liquidus melted

  • 摘要: 對過共晶高鉻鑄鐵近液相線溶化后的凝固過程進行脈沖電流處理,研究了脈沖電流參數(脈沖電壓和頻率)對凝固組織的影響.發現脈沖頻率和電壓的增大都有助于過共晶高鉻鑄鐵凝固組織中碳化物的細化和粒化.脈沖頻率的增大促進大量細小顆粒狀初生碳化物的析出,離異共晶現象變得更加明顯,層片狀共晶碳化物減少.脈沖電壓的增加促進初生碳化物細化和粒化,片狀共晶碳化物變短.過高的電壓也促進離異共晶,導致更多的初生碳化物的形成.

     

    Abstract: Solidification of hypereutectic high-chromium cast iron samples near-liquidus melted was treated with electric current pulse (ECP). The effects of ECP parameters such as electric voltage and pulse frequency on the solidification microstructure were investigated during the treatment. It is found that increasing the pulse frequency or electric voltage is helpful to carbide refinement and granulation in the cast iron. The increase of pulse frequency promotes the precipitating of a large number of fine granular primary carbides and the occurrence of a divorced eutectic reaction, which lead to the decrease in number of lamellar eutectic carbides. The increase of electric voltage contributes to the primary carbides refining and granulating as well as the lamellar eutectic carbides shortening. An excessive voltage value can also be favorable to the occurrence of a divorced eutectic reaction and the formation of additional primary carbides.

     

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