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Effects of TiC on the microstructure and formation of acicular ferrite in ferritic stainless steel 被引量:5

Effects of TiC on the microstructure and formation of acicular ferrite in ferritic stainless steel
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摘要 The formation mechanism of acicular ferrite and its microstructural characteristics in 430 ferrite stainless steel with TiC additions were studied by theory and experiment.Using an"edge?to?edge matching"model,a 5.25 mismatch between TiC(FCC structure)and ferritic stainless steel(BCC structure)was identified,which met the mismatch requirement for the heterogeneous nucleation of 430 ferritic stainless steel.TiC was found to be an effective nucleation site for the formation of acicular ferrite in a smelting experiment,as analyzed by metallographic examination,Image-Pro Plus 6.0 analysis software,and SEM–EDS.Furthermore,small inclusions in the size of 2–4?m increased the probability of acicular ferrite nucleation,and the secondary acicular ferrite would grow sympathetically from the initial acicular ferrite to produce multi-dimensional acicular ferrites.Moreover,the addition of Ti C can increase the average microstrain and dislocation density of 430 ferrite stainless steel,as calculated by Williamson-Hall(WH)method,which could play some role in strengthening the dislocation. The formation mechanism of acicular ferrite and its microstructural characteristics in 430 ferrite stainless steel with TiC additions were studied by theory and experiment. Using an "edge?to?edge matching" model, a 5.25 mismatch between TiC(FCC structure) and ferritic stainless steel(BCC structure) was identified, which met the mismatch requirement for the heterogeneous nucleation of 430 ferritic stainless steel. TiC was found to be an effective nucleation site for the formation of acicular ferrite in a smelting experiment, as analyzed by metallographic examination, Image-Pro Plus 6.0 analysis software, and SEM–EDS. Furthermore, small inclusions in the size of 2–4 ?m increased the probability of acicular ferrite nucleation, and the secondary acicular ferrite would grow sympathetically from the initial acicular ferrite to produce multi-dimensional acicular ferrites. Moreover, the addition of Ti C can increase the average microstrain and dislocation density of 430 ferrite stainless steel, as calculated by Williamson-Hall(WH) method, which could play some role in strengthening the dislocation.
机构地区 School of Metallurgy
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第11期1385-1395,共11页 矿物冶金与材料学报(英文版)
基金 financially supported by the National Natural Science Foundation of China (No. 51674071)
关键词 acicular FERRITE DISLOCATION density STAINLESS steel TIC grain REFINER oxide METALLURGY acicular ferrite dislocation density stainless steel TiC grain refiner oxide metallurgy
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