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高碳馬氏體不銹鋼8Cr13MoV鋼鑄態組織及碳化物

Microstructure and carbides of as-cast high carbon martensitic stainless steel 8Cr13MoV

  • 摘要: 利用Thermo-Calc軟件對8Cr13MoV馬氏體不銹鋼的凝固過程進行計算,利用光學顯微鏡、掃描電子顯微鏡和X射線衍射分析儀對鑄態組織和碳化物形貌以及類型進行觀察與分析,利用Gleeble熱模擬試驗機測定材料的靜態連續冷卻轉變曲線.結果表明,8Cr13MoV在平衡凝固條件下組織為鐵素體和M23C6型碳化物,而在實際的凝固條件下,組織為鐵素體、馬氏體、殘余奧氏體、M7C3型和M23C6型碳化物,由于偏析導致最終組織中碳化物以M7C3型為主,少量M23C6以薄片或樹枝狀分布在晶界上.由于較高的C和Cr含量,以0.1℃·s-1的冷卻速率冷卻時,奧氏體也會發生馬氏體轉變.

     

    Abstract: The solidification process of 8Cr13MoV martensitic stainless steel was calculated by using Thermo-Calc software. The solidification microstructure, morphology and type of carbides were analyzed by optical microscopy, scanning electron microscopy and X-ray diffraction. The static continuous cooling transformation curve was measured by Gleeble thermal simulator. The results indicate that the microstructure of 8Cr13MoV includes ferrite and M23C6 under the equalized solidification condition, while ferrite, martensite, retained austenite, M7C3 and M23C6 in the practical solidification condition. The main carbides are M7C3, and a small number of M23C6 with lamellar or dendritic morphology distribute on the grain boundaries, which can be attributed to element segregation. Because of high C and Cr contents, austenite can transform to martensite at a cooling rate of 0.1℃·s-1.

     

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