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Mechanisms for reinforcing cement-based materials with carbonated AOD stainless steel slag rich in acicular aragonite
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作者 Ya-jun Wang Jian-bao Zhang +8 位作者 Shao-hua Liu Jun-guo Li Ya-nan Zeng Yi-tong Wang Xi Zhang Bao Liu Xiao-pei Zhang Li-jie Peng Ya-jing Zhang 《Journal of Iron and Steel Research International》 2025年第9期3096-3113,共18页
A slurry-phase carbonation technique was utilized,employing argon oxygen decarburization slag(AOD slag)as a source of calcium and MgCl_(2) as a regulator for the crystal morphology of acicular aragonite.Subsequently,t... A slurry-phase carbonation technique was utilized,employing argon oxygen decarburization slag(AOD slag)as a source of calcium and MgCl_(2) as a regulator for the crystal morphology of acicular aragonite.Subsequently,the carbonated AOD slag,enriched with acicular aragonite,was employed in fabricating composite cementitious materials,followed by an analysis of their evolution in hydration heat,hydration products,and microscopic morphology.Additionally,it delved into the mechanism through which acicular aragonite enhances the stength of composite cementitious materials.Moreover,advanced simulation software for engineering and sciences(ABAQUS)was utilized to simulate the compressive performance of composite mortar with varying dosages of acicular aragonite.The findings demonstrate that the carbonated AOD slag,containing 83.4%acicular aragonite(with an average aspect ratio of 21.31),exhibited commendable compatibility with cement.Moderate integration of carbonated AOD slag facilitated the formation of calcium sulfoaluminate hydrate(AFt)phases.The acicular aragonite within the cementitious matrix showcased remarkable filling effects.As the dosage of carbonated AOD slag increased,flexural and compressive strengths of cement mortar initially rose before declining.Upon reaching a 6%cement inclusion of carbonated AOD slag,the various constituents of the cementitious material displayed optimal synergy.The numerical simulation results confirmed the experimental findings,demonstrating a favorable increase in compressive strength and flexural strength with the addition of acicular aragonite.The acicular aragonite strengthened the matrix by serving bridging and pull-out functions. 展开更多
关键词 AOD slag CARBONATION acicular aragonite Cement-based material Reinforcing ABAQUS
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Effect of Mo on acicular ferrite transformation and interphase precipitation of Nb–V–N microalloyed steel during a continuous cooling process
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作者 Jing Zhang Wen-bin Xin +3 位作者 Deng-yun Hou Jun Peng Zhi-bo Zhao Yang Tong 《Journal of Iron and Steel Research International》 2025年第6期1662-1677,共16页
The substantial influences of Mo contents varying from 0 to 0.26 and 0.50 wt.%on the microstructural evolution and MX(M=Nb,V and Mo;X=C and N)precipitation characteristics of Nb–V–N microalloyed steels processed by ... The substantial influences of Mo contents varying from 0 to 0.26 and 0.50 wt.%on the microstructural evolution and MX(M=Nb,V and Mo;X=C and N)precipitation characteristics of Nb–V–N microalloyed steels processed by hot deformation and continuous cooling were studied using a Gleeble 3800 thermomechanical simulator.Metallographic analysis showed that the ferrite microstructure transformed from polygonal ferrite(PF)in 0Mo steel to both acicular ferrite(AF)and PF in 0.26Mo and 0.50Mo steels,and AF content first increased and then decreased.The thermodynamic calculations and the experimental results proved that the quantity of solid solution of Mo in austenite obviously increased,which reduced the austenite(γ)to ferrite(α)transformation temperature,consequently promoting AF formation in 0.26Mo steel and bainite transformation in 0.50Mo steel.Moreover,the submicron Nb-rich MX particles that precipitated at the temperature of the austenite region further induced AF heterogeneous nucleation with an orientation relationship of(100)_(MX)//(100)_(Ferrite)and[■][001]Ferrite.The interphase precipitation of the nanosized V-rich MX particles with Mo partitioning that precipitated duringγ→αtransformation exhibited a Baker–Nutting orientation relationship of(100)_(MX)//(100)Ferrite and[001]_(MX)//[■]_(Ferrite)with respect to the ferrite matrix.With increasing Mo content from 0 to 0.26 and 0.50 wt.%,the sheet spacing decreased from 46.9–49.0 to 34.6–38.6 and 25.7–28.0 nm,respectively,which evidently hindered dislocation movement and greatly enhanced precipitation strengthening.Furthermore,facilitating AF formation and interphase precipitation was beneficial to improving steel properties,and the optimal Mo content was 0.26 wt.%. 展开更多
关键词 Nb-V-Mo-N microalloyed steel Mo content acicular ferrite Interphase precipitation Secondary ion mass spectrometry
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Inclusion characteristics and acicular ferrite formation in 1.8%Ni low carbon Al-killed steel with MgO nanoparticles addition
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作者 Meng Sun Yang Li +6 位作者 Zhou-hua Jiang Shuai Ma Yong-shuai Ji Yun-qie Mao Chang-yong Chen Yu-cheng Wang Rui Yang 《Journal of Iron and Steel Research International》 CSCD 2024年第12期3007-3021,共15页
The effect of adding MgO nanoparticles(0%,0.01%,0.05%,and 0.10%)on the inclusion and acicular ferrite(AF)formation in 1.8%Ni low carbon Al-killed(LCAK)steel was explored.The inclusion analysis reveals that MgO nanopar... The effect of adding MgO nanoparticles(0%,0.01%,0.05%,and 0.10%)on the inclusion and acicular ferrite(AF)formation in 1.8%Ni low carbon Al-killed(LCAK)steel was explored.The inclusion analysis reveals that MgO nanoparticles react with dissolved Al or Al_(2)O_(3)inclusions and finally change to fine MgAl_(2)O_(4)wrapped by MnS in the case of adding 0.05%Mgo nanoparticles.In contrast,Mgo nanoparticles are agglomerated and form Mg-bearing inclusion clusters in the case of 0.10%or reduced to high Al_(2)O_(3)inclusions by dissolved Al in the case of 0.10%.The microstructure observations show that the AF formation was promoted in the case with addition of 0.05%Mgo nanoparticles.The process of inclusion-inducing AF nucleation is essentially characterized via the high-temperature confocal scanning laser microscopy experiment.δ_(min)(δdenotes disregistry)of Al_(2)O_(3)/α-Fe,MgAl_(2)O_(4)/α-Fe,and MnS/α-Fe is evaluated to be 11.5%,6.5%,and 7.4%,respectively.The high AF fraction in the case of 0.05%MgO addition can be attributed to the low disregistry of MnS–MgAl_(2)O_(4)/ferrite and Mn-depleted zone adjacent to the MnS layer.Based on the results,0.05%was recommended as the proper addition amount of MgO nanoparticles in 1.8%Ni LCAK steel. 展开更多
关键词 1.8%Ni low carbon Al-killed steel acicular ferrite MGO INCLUSION NUCLEATION
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Formation mechanism and control methods of acicular ferrite in HSLA steels:A review 被引量:21
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作者 Yi Shao Chenxi Liu +2 位作者 Zesheng Yan Huijun Li Yongchang Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第5期737-744,共8页
High strength low alloy(HSLA) steels have been widely used in pipelines,power plant components,civil structures and so on,due to their outstanding mechanical properties as high strength and toughness,and excellent w... High strength low alloy(HSLA) steels have been widely used in pipelines,power plant components,civil structures and so on,due to their outstanding mechanical properties as high strength and toughness,and excellent weldability.Multi-phase microstructures containing acicular ferrite or acicular ferrite dominated phase have been proved to possess good comprehensive properties in HSLA steels.This paper mainly focuses on the formation mechanisms and control methods of acicular ferrite in HSLA steels.Effect of austenitizing conditions,continuous cooling rate,and isothermal quenching time and temperature on acicular ferrite transformation was reviewed.Furthermore,the modified process to control the formation of multi-phase microstructures containing acicular ferrite,as intercritical heat treatments,step quenching treatments and thermo-mechanical controlled processing,was summarized.The favorable combination of mechanical properties can be achieved by these modified treatments. 展开更多
关键词 HSLA steels acicular ferrite Microstructure Mechanical properties Intercritical heat treatment Step quenching Thermo-mechanical controlled processing
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Effect of Mg addition on formation of intragranular acicular ferrite in heat-affected zone of steel plate after high-heat-input welding 被引量:13
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作者 Long-yun Xu Jian Yang +2 位作者 Rui-zhi Wang Wan-lin Wang Yu-nan Wang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2018年第4期433-441,共9页
The effects of Mg content, inclusion size, and austenite grain size on the intragranular acicular ferrite (IAF) nucleation in heat-affected zone of steel plate after high-heat-input welding of 400 kJ/cm were investi... The effects of Mg content, inclusion size, and austenite grain size on the intragranular acicular ferrite (IAF) nucleation in heat-affected zone of steel plate after high-heat-input welding of 400 kJ/cm were investigated by welding simulation and observation using a scanning electron microscope equipped with an energy dispersive spectrometer and an optical microscope. The IAFs are observed in steel with Mg addition, and the volume fraction of IAF is as high as 55.4% in the steel containing 0.0027 mass% Mg. The MgO-Al2O3-Ti2O3-MnS inclusions with size around 2 μm are effective nucleation sites for IAF, whereas Al2O3-MnS inclusions are impotent to nucleate the acicular ferrite. The prior-austenite grain (PAG) size distribution in low Mg steel is similar to that in steel without Mg addition. The austenite grain with size about 200 μm is favorable for the IAF formation. In the steel with high Mg content of 0.0099%, the growth of PAG is greatly inhibited, and PAG sizes are smaller than 100 μm. Therefore, the nucleation of IAF can hardly be observed. 展开更多
关键词 Heat-affected zone INCLUSION Intragranular acicular ferrite Magnesium deoxidation High-heat-inputwelding Steel plate
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Mechanisms of inclusion evolution and intra-granular acicular ferrite formation in steels containing rare earth elements 被引量:14
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作者 Xiaoxuan DENG Min JIANG Xinhua WANG 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2012年第3期241-248,共8页
Inclusion characteristic and microstructure steel were evaluated with scanning electron of rare earth (RE) elements containing microscopy with energy dispersive spec- troscopy (SEM-EDS), element-mapping, optical m... Inclusion characteristic and microstructure steel were evaluated with scanning electron of rare earth (RE) elements containing microscopy with energy dispersive spec- troscopy (SEM-EDS), element-mapping, optical microscopy (OM), and automated feature analysis (AFA) option equipped with ASPEX PSEM. Factsage was used to calculate the equilibrium inclusion composition. Based on the calculation, an inclu- sion evolution mechanism was proposed. Furthermore, line scanning analysis was used to elucidate the intra-granular acicular ferrite (IAF) nucleation mechanism. The re- sult showed that two different inclusions exist in sample steel: (Mn-A1-Si-Ti-La-Ce-O) +MnS complex inclusion and isolated MnS inclusion. Almost all nucleation sites for IAF are complex inclusions, while single MnS inclusion cannot induce IAF. A possible formation mechanism of complex inclusion is proposed based on calculated results using Factsage, which agrees well with experimental results. A Mn-depletion zone (MDZ) which exists adjacent to the (Mn-A1-Si-Ti-La-Ce-O) +MnS complex inclusion can account for the IAF formation. However, the low volume fraction (1.49× 10-7) of effective inclusion may result in only 10% (volume fraction) IAF. 展开更多
关键词 Intra-granular acicular ferrite RE containing complex inclusion Factsage Inclusion precipitation Mn-depletion zone
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Influences of microstructure and texture on crack propagation path of X70 acicular ferrite pipeline steel 被引量:13
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作者 Hao Yu 《Journal of University of Science and Technology Beijing》 CSCD 2008年第6期683-687,共5页
The aspects of two pipeline steels with different technologies were investigated by using transmission electron microscopy (TEM) and electron back-scattered diffraction (EBSD). The microstructure presents a typica... The aspects of two pipeline steels with different technologies were investigated by using transmission electron microscopy (TEM) and electron back-scattered diffraction (EBSD). The microstructure presents a typical acicular ferrite characteristic with fine particles of martensite/austenite (M/A) constituent, which distributes in grains and at grain boundaries. The bulk textures of the pipeline steel plate are {112}〈110〉 and 〈111〉 fibers, respectively, and the {112}〈110〉 component is the favorable texture benefiting for drop weight tear test. Moreover, low angle boundaries and low coincidence site lattice boundaries are inactive and more resistant to fracture than high energy random boundaries. 展开更多
关键词 pipeline steel acicular ferrite MICROSTRUCTURE TEXTURE crack propagation
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Toughening mechanisms of a high-strength acicular ferrite steel heavy plate 被引量:7
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作者 Zhi-qiang Cao Yan-ping Bao +3 位作者 Zheng-hai Xia Deng Luo Ai-min Guo Kai-ming Wu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2010年第5期567-572,共6页
An ultra-low carbon acicular ferrite steel heavy plate was obtained with an advanced thermo-mechanical control process-relaxed precipitation controlled transformation (TMCP-RPC) at Xiangtan Steel, Valin Group. The h... An ultra-low carbon acicular ferrite steel heavy plate was obtained with an advanced thermo-mechanical control process-relaxed precipitation controlled transformation (TMCP-RPC) at Xiangtan Steel, Valin Group. The heavy plate has a tensile strength of approximately 600 MPa with a lower yield ratio. The impact toughness of the heavy plate achieves 280 J at ?40°C. The fine-grained mixed microstructures of the heavy plate mainly consist of acicular ferrite, granular bainite, and polygonal ferrite. The high strength and excellent toughness of the heavy plate are attributed to the formation of acicular ferrite microstructure. The prevention of blocks of martensite/retained austenite (M/A) and the higher cleanness are also responsible for the superior toughness. 展开更多
关键词 HIGH-STRENGTH STEEL MICROSTRUCTURE mechanical properties acicular ferrite
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Effects of TiC on the microstructure and formation of acicular ferrite in ferritic stainless steel 被引量:5
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作者 Yang Li Peng-fei Du +7 位作者 Zhou-hua Jiang Cong-lin Yao Lu Bai Qi Wang Guang Xu Chang-yong Chen Lei Zhang Hua-bing Li 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第11期1385-1395,共11页
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"mode... 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. 展开更多
关键词 acicular FERRITE DISLOCATION density STAINLESS steel TIC grain REFINER oxide METALLURGY
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Precipitation behaviors of X70 acicular ferrite pipeline steel 被引量:6
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作者 Hao Yu Yi Sun +2 位作者 Qixiang Chen Haitao Jiang Lihong Zhang 《Journal of University of Science and Technology Beijing》 CSCD 2006年第6期523-527,共5页
The morphology, structure, and chemical composition of precipitates in the final microstructure of Nb-V-Ti microalloyed X70 acicular ferrite pipeline steel were investigated using transmission electron microscopy (TE... The morphology, structure, and chemical composition of precipitates in the final microstructure of Nb-V-Ti microalloyed X70 acicular ferrite pipeline steel were investigated using transmission electron microscopy (TEM) and energy dispersive X-ray spectroscopy (EDS). Precipitates observed by TEM can be classified into two groups. The large precipitates are complex compounds that comprise square-shaped TiN precipitate as core with fine Nb-containing precipitate nucleated on pre-existing TiN precipitate as caps on one or more faces at high temperature. In contrast, the fine and spherical Nb carbides and/or carbonitrides precipitate heterogeneously on dislocations and sub-boundaries at low temperature. From the analysis in terms of thermodynamics, EDS and chemical cornposition of the steel, NbC precipitation is considered to be the predominant precipitation behavior in the tested steel under the processing conditions of this research. 展开更多
关键词 pipeline steel acicular ferrite MICROSTRUCTURE CARBONITRIDE precipitation behavior THERMODYNAMICS
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Effect of inclusions on the formation of acicular ferrite in Ti-bearing non quenched-and-tempered steel 被引量:6
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作者 Ying Yang Chaobin Lai +2 位作者 Fuming Wang Zhanbing Yang Bo Song 《Journal of University of Science and Technology Beijing》 CSCD 2007年第6期501-506,共6页
Nucleation of acicular ferrite and its influence factors in non quenched-and-tempered steel was studied by using TEM and thermodynamic calculation. The results show that the complex particles with a center made of Ti ... Nucleation of acicular ferrite and its influence factors in non quenched-and-tempered steel was studied by using TEM and thermodynamic calculation. The results show that the complex particles with a center made of Ti oxide, Al2O3, and silicate and an outside made of a small quantity of mixture of TiN and MnS are able to act as ferrite nucleation nuclei. The acicular ferrite percentage changes little with Ti. When the oxygen content was 80 ppm, the volume percentage of acicular ferrite decreased due to an increase in allotriomorphic ferrite. The larger the cooling rate and the shorter the incubation time, the finer the titanium oxide and the higher the nucleation ratio of acicular ferrite. 展开更多
关键词 acicular ferrite titanium INCLUSIONS non quenched-and-tempered steel
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Processing of Ultralow Carbon Pipeline Steels with Acicular Ferrite 被引量:4
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作者 FurenXIAO MingchunZHAO +2 位作者 YiyinSHAN BoLIAO KeYANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第6期779-781,共3页
Acicular ferrite microstructure was achieved for an ultralow carbon pipeline steel through the improved thermome chanical control process (TMCP), which was based on the transformation process of deformed austenite of ... Acicular ferrite microstructure was achieved for an ultralow carbon pipeline steel through the improved thermome chanical control process (TMCP), which was based on the transformation process of deformed austenite of steel. Compared with commercial pipeline steels, the experimental ultralow carbon pipeline steel possessed the satisfied strength and toughness behaviors under the current improved TMCP, although it contained only approximately 0.025% C, vvhich should mainly be attributed to the microstructural characteristics of acicular ferrite. 展开更多
关键词 Pipeline steel TRANSFORMATION acicular ferrite
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Microstructure evolution and acicular ferrite nucleation in inclusion-engineered steel with modified MgO@C nanoparticle addition 被引量:4
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作者 Hao Guo Shufeng Yang +3 位作者 Tiantian Wang Hang Yuan Yanling Zhang Jingshe Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第4期277-287,共11页
To investigate the effect of surface-modified nanoparticles(NPs)on the inclusion refinement and microstructure evolution,deoxidized experiment ingots with different amounts of modified NPs were manufactured under diff... To investigate the effect of surface-modified nanoparticles(NPs)on the inclusion refinement and microstructure evolution,deoxidized experiment ingots with different amounts of modified NPs were manufactured under different cooling conditions.Laser scanning confocal microscope(LSCM)was hereby used for in-situ observation of the phase transition and microstructural evolution during heat cycle process.The results revealed that the inclusion size was always smaller under water quenching than under air cooling,and the number of inclusions was greater under water quenching.After NP addition,the nucleant inclusions were identified as MgAl_(2)O_(4)spinel and irregular TiN inclusion from SEM-EDS measurement and equilibrium calculations using Factsage thermodynamic software.The higher cooling rate under water quenching resulted in less polygonal ferrite decrease and the formation of bainite in the steel.The LSCM experiments showed that ferrite side plates(FSP)always formed on the boundary prior to the formation of acicular ferrite(AF)on the intragranular inclusions,and the start transformation temperatures of FSP and AF phases both lowered after NP addition.The higher cooling rate and NP addition contributed to AF formation and increased the degree of interlocking of the AF phase.Finally,the relationship between the characteristics of inclusions and the kinetics of AF was investigated. 展开更多
关键词 Surface-modified nanoparticles Laser scanning confocal microscopy Inclusion-engineered steel Microstructure evolution acicular ferrite nucleation
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Effect of acicular ferrite on banded structures in low-carbon microalloyed steel 被引量:2
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作者 Lei Shi Ze-sheng Yan +3 位作者 Yong-chang Liu Xu Yang Cheng Zhang Hui-jun Li 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2014年第12期1167-1174,共8页
The effect of acicular ferrite (AF) on banded structures in low-carbon microalloyed steel with Mn segregation during both iso- thermal transformation and continuous cooling processes was studied by dilatometry and m... The effect of acicular ferrite (AF) on banded structures in low-carbon microalloyed steel with Mn segregation during both iso- thermal transformation and continuous cooling processes was studied by dilatometry and microscopic observation. With respect to the iso- thermal transformation process, the specimen isothermed at 550℃ consisted of AF in Mn-poor bands and martensite in Mn-rich bands, whereas the specimen isothermed at 450℃ exhibited two different morphologies of AF that appeared as bands. At a continuous cooling rate in the range of 4 to 50℃/s, a mixture of AF and martensite formed in both segregated bands, and the volume fraction of martensite in Mn-rich bands was always higher than that in Mn-poor bands. An increased cooling rate resulted in a decrease in the difference of martensite volume fraction between Mn-rich and Mn-poor bands and thereby leaded to less distinct microstrucmral banding. The results show that Mn segregation and cooling rate strongly affect the formation of AF-containing banded structures. The formation mechanism of microstructural banding was also discussed. 展开更多
关键词 low-carbon microalloyed steel acicular ferrite MICROSTRUCTURE MANGANESE SEGREGATION
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Microstructure and Transformation Characteristics of Acicular Ferrite in High Niobium-Bearing Microalloyed Steel 被引量:2
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作者 YANG Jing-hong LIU Qing-you +1 位作者 SUN Dong-bai LI Xiang-yang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2010年第6期53-59,共7页
The transformation behavior and microstructural characteristics of a low carbon high niobium-bearing microalloyed pipeline steel were investigated by deformation dilatometry and microstructure observation. The continu... The transformation behavior and microstructural characteristics of a low carbon high niobium-bearing microalloyed pipeline steel were investigated by deformation dilatometry and microstructure observation. The continuous cooling transformation curves of the test steel were constructed. The results showed that high niobium content and deformation enhanced the formation of acicular ferrite; the microstructures changed from polygonal ferrite, quasi-polygonal ferrite to acicular ferrite with increasing cooling rates from 0.5 to 50 ℃/s and was dominated by acicular ferrite in a broadened cooling rate higher than 5 ℃/s. The chaotic microstructure consisted of non-equiaxed ferrite and interwoven ferrite laths with high density dislocations and subunits. The results of isothermal holding treatment showed that acicular ferrite microstructure was formed at 550-600 ℃ and consisted of highly misoriented plate packets having internal low angle boundaries. With increasing the holding time or temperature,some low misorientation boundaries changed to high misorientation owing to the movement of dislocations and coarsening of grain. 展开更多
关键词 microalloyed steel acicular ferrite TRANSFORMATION continuous cooling transformation
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Effect of Mg Addition on Nucleation of Intra-granular Acicular Ferrite in Al-killed Low Carbon Steel 被引量:10
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作者 Xiao-bing LI Yi MIN +2 位作者 Zhe YU Cheng-jun LIU Mao-fa JIANG 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2016年第5期415-421,共7页
To verify the formation behaviors and mechanisms of intra-granular acicular ferrite( IAF) grains nucleated by Mg-Al-O in low carbon steel,the steels containing different Mg contents were refined in a vacuum inductio... To verify the formation behaviors and mechanisms of intra-granular acicular ferrite( IAF) grains nucleated by Mg-Al-O in low carbon steel,the steels containing different Mg contents were refined in a vacuum induction furnace. The effect of Mg addition on the formation of IAF structure in Al-killed low carbon steel was investigated by optical microscope( OM) and scanning electron microscope with energy dispersive X-ray spectroscope( SEM-EDX). It reveals that the IAFs are only detected in Mg-added steels,and the volume fraction of IAF increases with the Mg concentration from 8 × 10^(-6) to 26 × 10^(-6). It shows that not only the MgO-Al_2O_3-MnS and MgO-Al_2O_3-P_2O_5 particles are the effective nucleation sites for IAF,but also the pure MgO·Al_2O_3 phase can promote the ferrite nucleation. A Mn-depletion zone( MDZ) is characterized adjacent to the MgO-Al_2O_3-MnS,which is believed to be one of the possible mechanisms to explain the IAF nucleation. The MDZ around the MgO-Al_2O_3-MnS inclusion would be induced by the Mn S precipitation on the inclusion. It seems that the ability of Mg-containing inclusions to induce the nucleation of ferrite might be attributed to a new mechanism,i. e.,the Prich zone formed on a few Mg-Al-O inclusions might be another factor for promoting the IAF formation. 展开更多
关键词 low carbon steel inclusion magnesium intra-granular acicular ferrite Mn-depletion zone
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Mechanical properties and grain refinement by acicular ferrite in high strength high toughness weld metal 被引量:2
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作者 雷玄威 王红鸿 +1 位作者 吴开明 于磊 《China Welding》 EI CAS 2016年第1期71-76,共6页
The volume fraction and morphology of acicular ferrite evolution in a high strength high toughness weld metal were studied and the mechanical properties of weld metal under heat input of 21 kJ/cm with and without fast... The volume fraction and morphology of acicular ferrite evolution in a high strength high toughness weld metal were studied and the mechanical properties of weld metal under heat input of 21 kJ/cm with and without fast cooling were tested. The results show the weld metal can obtain a large proportion of acicular ferrite during a wide range of cooling rate and the sizes of acicular ferrite in length and thickness decrease with cooling rate increasing. The weld metal exhibited high tensile strength (895 MPa and 870 MPa) and good low temperature toughness (average AKv-30℃ 104 J and 79. 2 J). The higher tensile strength and better low temperature toughness of the weld metal under fast cooling are due to the more refined grain of acicular ferrite. 展开更多
关键词 acicular ferrite high toughness weld metal mechanical properties
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Kinetics of Acicular Ferrite Transformation in Weld Metal
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作者 TIAN Zhi-ling 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2001年第1期34-36,共3页
Acicular Ferrite(AF) is beneficial in welds because it provides a tough and strong microstructure.Therefore,much works have been done in the study of the effect of alloying elements and welding conditions aimed at obt... Acicular Ferrite(AF) is beneficial in welds because it provides a tough and strong microstructure.Therefore,much works have been done in the study of the effect of alloying elements and welding conditions aimed at obtaining more AF in the weld metal.However,the knowledge about the nature of AF is limited due to the lack of kinetics researches.In this paper,the kinetic curves of AF transformation in an X65 weld metal were established by means of welding thermal simulation test.The results showed that AF transformation is a typical diffusion process of nucleation and growth with incubation period.AF transformation in weld metal obeys the relationship described by JMA Equation.The effect of welding heat input was also studied. 展开更多
关键词 weld metal acicular ferrite KINETICS pipe steel
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As-Cast Acicular Ductile Aluminum Cast Iron
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作者 S M Mostafavi Kashani S M A Boutorabi 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2009年第6期23-28,共6页
The effects of nickel (2.2 %) and molybdenum (0.6 % ) additions on the kinetics, microstrueture, and mechanical properties of ductile aluminum cast iron were studied under the as-cast and tempered conditions. Test... The effects of nickel (2.2 %) and molybdenum (0.6 % ) additions on the kinetics, microstrueture, and mechanical properties of ductile aluminum cast iron were studied under the as-cast and tempered conditions. Test bars machined from cast to size samples were used for mechanical and metallurgical studies. The results showed that adding nickel and molybdenum to the base iron produced an upper bainitic structure, resulting in an increase in strength and hardness. The same trend was shown when the test bars were tempered at 300 ℃in the range of 300 ℃ to 400 ℃. The elongation increased with increasing the temperature from 300 ℃ to 400 ℃. The carbon content of the retained austenite also increased with increasing the temperature. The results also showed that the kinetics, microstructure, and mechanical properties of this iron were similar to those of Ni-Mo alloyed silicon ductile iron. 展开更多
关键词 ductile aluminum cast iron acicular bainite carbon content retained austenite
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THE FORMATION OF ACICULAR AUSTENITE DURING IN TERCRITICAL ANNEALING OF STEEL 30CrMnSiA
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作者 Z.M. Ding1) , Y. Lei2) and L.J. Lao1) 1)Department of Materials Engineering ,Dalian Railway Institute,China 2)Department of Materials Science & Engineering ,Dalian University of Technology ,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1999年第4期728-732,共5页
Theacicular austeniteformation process duringintercritical annealing atslow heating speedof0 5 ℃/ min isinvestigated using TEMin the sample of 30 CrMnSiA. The resultsshow thatinthe preliminarystage, austenitesnucle... Theacicular austeniteformation process duringintercritical annealing atslow heating speedof0 5 ℃/ min isinvestigated using TEMin the sample of 30 CrMnSiA. The resultsshow thatinthe preliminarystage, austenitesnucleateintheform ofshortneedle atshort rod like cementites, which hasthesame orientation and precipitates along the boundary of original martensitelathes. Asthetemperatureincreasingslowly, the austenites grow up and connect witheach other alongtheboundaryoftheoriginallathesso astoform acicular austenite. At last,the fully grown austenite connectsin the direction verticalto the boundary of lathes, leavingthe remnant ferrites appear in the shape of rhombus, the original austenite grainshaperecovers and the feature of thethick lath remains. The superledgeinterface has been found and someaustenitegrowsintoferritein theshapeoflath. 展开更多
关键词 austenitictransformation intercriticalannealing acicular austenite
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