Effect of titanium microalloying on microstructure and mechanical properties of vanadium microalloye

来源 :钢铁研究学报(英文版) | 被引量 : 0次 | 上传用户:dufuyan
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Effect of titanium microalloying on the microstructure and mechanical properties of vanadium microalloyed steels for hot forging was studied.Titanium microalloying improves the mechanical properties mainly through refining the austenite grains.When the heating temperature is in the range of 1050-1300℃,the austenite grain diameter is decreased from 77-133 to 26-68 pm by titanium microalloying.With the decrease in austenite grain diameter,the final microstructure is refined significantly,and the high misorientation boundaries are increased.After the steel is heated at 1200℃(the common hot forging temperature)and cooled slowly,titanium microalloying decreases the yield strength from 548.4 to 519.4 MPa,and the tensile strength decreases from 842.7 to 808.7 MPa.However,the elongation increases from 19.0%to 21.4%,and the impact energy increases from 9.8 to 38.2 J.V-Ti steel has a better combination of strength,plasticity and toughness than V steel.In addition,the nucleation of intragranular ferrite idiomorphs is promoted by titanium microal-loying,which may have a beneficial effect on the property of steels with coarse microstructure caused by the critical deformation in hot die forging.
其他文献
Based on the thermal simulation method,a systematical analysis was conducted on the effect of welding peak temperature and the cooling time that takes place from 800 to 500℃on microstructure,precipitates,substructure and microhardness of the reheated coar
Optimization of mathematical model of flow field in slab continuous casting mold was performed by means of industrial measurement and mathematical modeling.The rod deflection method was used to quantitatively measure the velocities near the mold surface a
In order to improve the production efficiency of electroslag remelting process and the solidification quality of electroslag ingot,a novel electroslag furnace with electromagnetic stirring was designed and the effects of external magnetic field and differ
Based on the free volume theory,lattice model,the Scatchard-Hildebrand theory,novel expressions of configuration partition function and excessive Gibbs free energy and component activity coefficients of solid solutions were developed using configuration p
To reduce internal residual stress and homogenize micro-property of hot-rolled ferrite steel,the cold compression deformation method with small reduction rate has been performed in the hot-rolled samples,and X-ray diffraction and nanoindentation test have
The reactions between CO2 gas and liquid Fe-C alloy with different initial carbon concentrations at 1873 K were investigated using experimental results,thermodynamic equilibrium,and kinetic analysis.The average CO2 conversion is greater than 80%when the c
The sliding wear property of high-carbon nanostructured bainitic bearing steel with the equal initial hardness and different microstructures was investigated,and the reasons for the difference of wear resistance between the cementite-bearing(CB)and cement
采用高通量场发射扫描电镜结合图像批处理技术以及全自动显微维氏硬度分析技术对2种不同成分(W1和W2)的火车车轮轮辋踏面附近较大范围内的显微组织和硬度进行了原位统计分布表征,探究了轮辋靠近踏面的关键区域铁素体面积分数和珠光体片层间距的分布规律.通过大尺度原位统计分布表征结果可以发现,2种车轮铁素体面积分数自踏面往里均呈现逐渐增加的趋势,但固溶强化元素Si和沉淀强化元素V的含量差异以及W2车轮所采用更为精细的阶梯式淬火工艺对车轮的微观组织和硬度的定量分布有较大影响.固溶强化和沉淀强化元素含量较少的W1车轮的铁
Iron ore containing BaSO4 may have a senes of effects on the quality of the sinter and performance of the blast furnace.Thus,the effect mechanism of BaSO4(0-6.0 mass%)on the compressive strength,mineral composition,and microstructure of the sinter was inv