Precipitation law of ultra fine carbides in ferrite matrix Ti-Mo micro-alloy steel
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摘要: 利用光學顯微鏡、透射電鏡和能譜分析等方法對兩種不同Ti含量的鐵素體基Ti-Mo微合金鋼中析出相的尺寸、分布特征、析出規律和成分進行了研究.結果表明:鋼中絕大多數析出相為超細碳化物,尺寸小于10 nm,析出相尺寸呈正態分布.隨著Ti質量分數由0.072%增到0.092%,析出粒子平均尺寸增大,分布峰值向粒子尺寸增大的方向移動.Ti-Mo微合金鋼具有柵格狀的相間析出方式,柵格間距受冷速的影響較大,晶內和靠近晶界處的柵格間距不同.能譜分析發現,不同尺寸的粒子Mo含量不同,較大顆粒(50 nm左右)析出相中不含Mo,小顆粒(<20 nm)中碳化物是Ti和Mo的復合析出相,且隨著粒子尺寸的減小,成分中Mo所占比重增大.Abstract: The size, distribution characteristics, precipitation law, and composition of precipitate particles in ferrite matrix Ti-Mo micro-alloy steel with two different titanium contents were studied by metallographic microscopy, transmission electron microscopy and energy dispersive spectroscopy. Most of the precipitate particles are ultra fine carbides of less than 10 nm in size, and the particle sizes are a normal distribution. With the increase of titanium content from 0. 072% to 0. 092%, the average particle size increases and the distribution peak gradually moves to the particle size increasing direction. The Ti-Mo micro-alloy steel has an inter-phase precipitation style like ledge structures. The ledge spacing in the interior grain is different from that near the grain boundaries, and it is affected by cooling rate. Energy spectrum analysis shows that the Mo content is different in different sizes of particles. The composition of the bigger particles (about 50 nm) has no molybdenum, but the smaller particles (less than 20 nm) are compound of Ti and Mo. The Mo content increases with the particle size decreasing.
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Key words:
- alloy steel /
- ferrite /
- carbides /
- precipitation /
- titanium /
- molybdenum
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