In-situ observations of grain refinement by TiN particles in the simulated coarse-grained heat-affected zone of a high-strength low-alloy steel
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摘要: 采用高溫激光共聚焦顯微鏡原位觀察和電子背散射衍射技術研究TiN粒子在低合金高強度鋼模擬大線能量焊接熱循環過程中晶粒細化效果.研究發現合理的Ti和N含量能形成大量細小彌散分布的納米級TiN粒子,在焊接熱循環過程中有效釘扎熱影響區粗晶區奧氏體晶界,抑制晶粒粗化.同時,TiN附著在Al2O3表面析出,在冷卻過程中有效促進針狀鐵素體形核,得到有效晶粒尺寸非常細小的由少量針狀鐵素體和大量貝氏體構成的復合組織.Abstract: The effect of grain refinement by TiN particles in the simulated coarse-grained heat-affected zone of a high-strength low-alloy steel was investigated by means of analytical characterization techniques such as in-situ microscopy and electron back scattered diffraction analysis. Abundant finely dispersed nanoscale TiN particles form in the specimen and effectively retard the grain boundary migration during simulated high heat input welding,which results in refined austenite grains. TiN precipitates on the surface of aluminum oxide,which is the effective nucleation site for acicular ferrite during the cooling process and induces the austenite transform to the fine-grained mixed microstructure of a small proportion of acicular ferrite embedded in predominantly bainite.
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