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Effect of Mn addition on microstructure and mechanical properties of GX40CrNiSi25-12 austenitic heat resistant steel
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作者 Guan-yu Jiang Meng-wu Wu +2 位作者 Xiao-guang Yang Hui Wang Yu-yuan Zhu 《China Foundry》 SCIE EI CAS CSCD 2024年第3期205-212,共8页
Three types of steels were designed on the basis of GX40CrNiSi25-12 austenitic heat resistant steel by adding different Mn contents(2wt.%,6wt.%,and 12wt.%).Thermodynamic calculation,microstructure characterization and... Three types of steels were designed on the basis of GX40CrNiSi25-12 austenitic heat resistant steel by adding different Mn contents(2wt.%,6wt.%,and 12wt.%).Thermodynamic calculation,microstructure characterization and mechanical property tests were conducted to investigate the effect of Mn addition on the microstructure and mechanical properties of the austenitic heat resistant steel.Results show that the matrix structure in all the three types of steels at room temperature is completely austenite.Carbides NbC and M_(23)C_(6)precipitate at grain boundaries of austenite matrix.With the increase of Mn content,the number of carbides increases and their distribution becomes more uniform.With the Mn content increases from 1.99%to 12.06%,the ultimate tensile strength,yield strength and elongation increase by 14.6%,8.0%and 46.3%,respectively.The improvement of the mechanical properties of austenitic steels can be explained by utilizing classic theories of alloy strengthening,including solid solution strengthening,precipitation strengthening,and grain refinement.The increase in alloy strength can be attributed to solid solution strengthening and precipitation strengthening caused by the addition of Mn.The improvement of the plasticity of austenitic steels can be explained from two aspects:grain refinement and homogenization of precipitated phases. 展开更多
关键词 austenitic heat resistant steel MANGANESE MICROSTRUCTURE mechanical properties
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High-temperature oxidation behavior of heat resistant stainless steel 1.4828 被引量:1
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作者 ZHANG Zhixia BI Hongyun LI Xing 《Baosteel Technical Research》 CAS 2014年第3期13-17,共5页
The kinetic curves of the high-temperature oxidation of austenitic heat resistant stainless steel 1. 4828 at 1 050 ℃ were measured using a weighing method. It is shown that the oxidation curves at 1 050 ℃ followed t... The kinetic curves of the high-temperature oxidation of austenitic heat resistant stainless steel 1. 4828 at 1 050 ℃ were measured using a weighing method. It is shown that the oxidation curves at 1 050 ℃ followed the parabolic line law, and after 250 h of oxidation, the mass gain was about 80 g/m2. The surface morphology and structure of the oxide layers were studied by scanning electron microscopy and X-ray diffraction. A complicated oxide layer obtained at 1 050 ℃ was mainly composed, from inner to outer, of (FeSi) 3 04, Cr2 03, Fe2 03, and spinel oxides FeCr204 and NiMn204. 展开更多
关键词 1. 4828 heat resistant stainless steel high-temperature oxidation KINETIC oxide layer
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Coarsening behavior of MX carbonitrides in type 347H heat-resistant austenitic steel during thermal aging 被引量:4
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作者 Ying-hui Zhou Chen-xi Liu +2 位作者 Yong-chang Liu Qian-ying Guo Hui-jun Li 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第3期283-293,共11页
In this work, the growth kinetics of MX (M - metal, X - C/N) nanoprecipitates in type 347H austenitic steel was systematically studied. To investigate the coarsening behavior and the growth mechanism of MX carbonitr... In this work, the growth kinetics of MX (M - metal, X - C/N) nanoprecipitates in type 347H austenitic steel was systematically studied. To investigate the coarsening behavior and the growth mechanism of MX carbonitrides during long-term aging, experiments were performed at 700, 800, 850, and 900℃ for different periods (1, 24, 70, and 100 h). The precipitation behavior of carbonitrides in specimens subjected to various aging conditions was explored using carbon replicas and transmission electron microscopy (TEM) observations. The corresponding sizes ofMX carbonitrides were measured. The results demonstrates that MX carbonitrides precipitate in type 347H austenitic steel as Nb(C,N). The coarsening rate constant is time-independent; however, an increase in aging temperature results in an increase in coarsening rate of Nb(C,N). The coarsening process was analyzed according to the calculated diffusion activation energy of Nb(C,N). When the aging temperature was 800-900℃, the mean activation energy was 294 kJ·mol -1, and the coarsening behavior was controlled primarily by the diffusion of Nb atoms. 展开更多
关键词 austenitic steel heat resistance CARBONITRIDES COARSENING NANOPARTICLES DIFFUSION thermal aging
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Electrochemical Corrosion Behavior of the Laser Continuous Heat Treatment Welded Joints of 2205 Duplex Stainless Steel 被引量:4
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作者 刘和平 金学军 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第6期1140-1147,共8页
The electrochemical corrosion behaviors of the welded joints of 2205 duplex stainless steel with the laser continuous heat treatment were investigated. The secondary austenite formation is the outcome of thermodynamic... The electrochemical corrosion behaviors of the welded joints of 2205 duplex stainless steel with the laser continuous heat treatment were investigated. The secondary austenite formation is the outcome of thermodynamic equilibrium breach of the alloy during heat treatment and the result of the continuous heat treatment which has the most important effect on the weld material. The partitioning behaviors of chromium and molybdenum as well as the volume fraction of ferrite and austenite have a remarkable influence on the composition of the individual phase. Mechanical examination of the laser trated weld demonstrates that the tensile strength and yield strength increase with increasing the amount of the secondary austenite. It is shown that the ultimate tensile strength of the 6 kW laser-treated weld is higher about 20 MPa than no heat treatment weld and the ductility can be further improved without compromising strength. The results indicate that the welding alters the corrosion behavior because of different post heat treatment power and the broad active peak is not identified which is attributed to the dissolution of the secondary austenitic in the ferrite phase. It is indicated that pitting resistance equivalent (PRE) values of base metal and 6 kW weld are higher than that of other welds; base metal is 33.7, 6 kW weld 33.3, no treatment 32.4, 4 kW weld 32.8, 8 kW weld 32.5. The extent of corrosion resistance improvement after reheating treatment is mainly caused by the removal of nitrogen from ferritic regions, which occurred as a consequence of secondary austenite growth. 展开更多
关键词 potentiodynamic polarization duplex stainless steel continuous heat treatment secondary austenite
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Hot deformation behavior of Super304H austenitic heat resistant steel 被引量:3
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作者 Shu-ping Tan Zhen-hua Wang +2 位作者 Shi-chang Cheng Zheng-dong Liu Jie-cai Han 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2010年第2期167-172,共6页
The hot compression tests of Super304H austenitic heat resistant steel were carried out at 800-1200℃and 0.005-5 s^-1 using a Gleeble 3500 thermal-mechanical simulator,and its deformation behavior was analyzed.The res... The hot compression tests of Super304H austenitic heat resistant steel were carried out at 800-1200℃and 0.005-5 s^-1 using a Gleeble 3500 thermal-mechanical simulator,and its deformation behavior was analyzed.The results show that the flow stress of Super304H steel decreases with the decrease of strain rate and the increase of deformation temperature; the hot deformation activation energy of the steel is 485 kJ/mol.The hot deformation equation and the relationship between the peak stress and the deformation temperature and strain rate is obtained.The softening caused by deformation heating cannot be neglected when both the deformation temperature and strain rate are higher. 展开更多
关键词 austenitic steel heat resistant hot deformation flow stress dynamic recrystallization
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Effect of the heat input on microstructure and properties of submerged arc welded joint of 08Cr19MnNi3Cu2N stainless steel 被引量:6
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作者 戴红 夏希玮 +2 位作者 方乃文 马青军 常晶舒 《China Welding》 EI CAS 2019年第3期48-53,共6页
SAW308L submerged arc welding wire and SJ601A submerged arc welding flux were selected to weld the 12 mm 08Cr19MnNi3Cu2N low nickel and high nitrogen austenitic stainless steel plates with three different welding heat... SAW308L submerged arc welding wire and SJ601A submerged arc welding flux were selected to weld the 12 mm 08Cr19MnNi3Cu2N low nickel and high nitrogen austenitic stainless steel plates with three different welding heat input,and microstructure,tensile properties,microhardness and corrosion properties of the welded joints were studied.The results show that no defects are found in the three groups of welded joints,and the welded joints have better performance.The tensile strength of 08Cr19MnNi3Cu2N stainless steel welded joints with different heat input is slightly lower than that of the base metal,and fracture occurs in the weld zone,and the hardness of the weld zone is lower than that of the base metal.The weld microstructure of stainless steel welded joints with different heat input is composed of austenite+δferrite,and ferrite is uniformly distributed in austenite.With the increase of the welding heat input,the ferrite content in the weld zone decrease gradually,the grain size in the thermal affected zone increase gradually,and the impact toughness reduce. 展开更多
关键词 heat input submerged arc welding low nickel and high nitrogen austenitic stainless steel microstructure property
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Grain boundary engineering for intergranular corrosion resistant austenitic stainless steel
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作者 粉川博之 SHIMADA Masayuki +2 位作者 MICHIUCHI Masato SAKAI Kenta SATO Yutaka S 《材料与冶金学报》 CAS 2005年第2期109-109,共1页
Sensitization by chromium depletion due to chromium carbide precipitation at grain boundaries in austenitic stainless steels can not be prevented perfectly only by previous conventional techniques, such as reduction o... Sensitization by chromium depletion due to chromium carbide precipitation at grain boundaries in austenitic stainless steels can not be prevented perfectly only by previous conventional techniques, such as reduction of carbon content, stabilization-treatment, local solution-heat-treatment, etc. Recent studies on grain boundary structure have revealed that the sensitization depends strongly on grain boundary character and atomic structure, and that low energy grain boundaries such as coincidence-site-lattice (CSL) boundaries have strong resistance to intergranular corrosion. The concept of ’grain boundary design and control’ has been developed as grain boundary engineering (GBE). GBEed materials are characterized by high frequencies of CSL boundaries which are resistant to intergranular deterioration of materials, such as intergranular corrosion. A thermomechanical treatment was tried to improve the resistance to the sensitization by GBE. A type 304 austenitic stainless steel was cold-rolled and solution-heat-treated, and then sensitization-heat-treated. The grain boundary character distribution was examined by orientation imaging microscopy (OIM). The intergranular corrosion resistance was evaluated by electrochemical potentiokinetic reactivation (EPR) and ferric sulfate-sulfuric acid tests. The sensitivity to intergranular corrosion was reduced by the thermomechanical treatment and indicated a minimum at a small roll-reduction. The frequency of CSL boundaries indicated a maximum at the small reduction. The ferric sulfate-sulfuric acid test showed much smaller corrosion rate in the thermomechanical-treated specimen than in the base material. A high density of annealing twins were observed in the thermomechanical-treated specimen. The results suggest that the therrmomechanical treatment can introduce low energy segments in the grain boundary network by annealing twins and can arrest the percolation of intergranular corrosion from the surface. The effects of carbon content and other minor elements on optimization in grain boundary character distribution (GBCD) and thermomechanical parameters were also examined during GBE. 展开更多
关键词 奥氏体不锈钢 抗晶间腐蚀 晶界工程 EPR
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Fabrication of high nitrogen austenitic stainless steels with excellent mechanical and pitting corrosion properties 被引量:11
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作者 Hua-bing Li Zhou-hua Jiang Yang Cao Zu-rui Zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2009年第4期387-392,共6页
关键词 high nitrogen austenitic stainless steels electroslag remelting nitrogen alloying ductile-brittle transition pitting corrosion resistance
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Surface stability and conductivity of a high Cr and Ni austenitic stainless steel plates for PEMFC 被引量:2
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作者 TIAN Rujin SUN Juncai WANG Jianli 《Rare Metals》 SCIE EI CAS CSCD 2006年第z1期229-234,共6页
In order to use stainless steel as bipolar plate for PEMFC, electrochemical behavior of a high Cr and Ni austenitic stainless steel was studied in the solutions containing different concentration of H2SO4 and 2 mg... In order to use stainless steel as bipolar plate for PEMFC, electrochemical behavior of a high Cr and Ni austenitic stainless steel was studied in the solutions containing different concentration of H2SO4 and 2 mg·L-1 F-, and interfacial contact resistance was measured after corrosion tests. The experimental results show that the passive current density lowers with decreasing the concentration of H2SO4. The interfacial contact resistance between carbon paper and passive film formed in the simulated PEMFC environment is higher than the goal of bipolar plate for PEMFC. Surface conductivity should be further reduced by surface modification. 展开更多
关键词 austenitic stainless steel bipolar plate passive film interfacial contact resistance
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Microstructure and Corrosion Resistance of Arc Additive Manufactured 316L Stainless Steel 被引量:2
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作者 杨可 WANG Qiuyu +2 位作者 QU Yang JIANG Yongfeng BAO Yefeng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第5期930-936,共7页
The gas tungsten arc welding based additive manufacturing (GTAW-AM) was carried out by printing 316L austenitic stainless steel on carbon steel substrate with different arc currents (140,160,180 A).Microstructure and ... The gas tungsten arc welding based additive manufacturing (GTAW-AM) was carried out by printing 316L austenitic stainless steel on carbon steel substrate with different arc currents (140,160,180 A).Microstructure and corrosion resistance of additive manufactured components were investigated.The results show that the microstructure of the GTAW-AM austenitic stainless steel is obviously changed by the arc current.With arc current increasing from 140 to 180 A,the austenite grains become coarse due to the effect of welding heat input.Meanwhile,the quantity of ferrites in the austenite matrix is decreased and the morphology transforms from lath to skeleton.Moreover,σ phases are finally formed under the arc currents of 180 A owing to high welding heat input.Therefore,as the microstructure transform into coarse-grained austenites,low-quantity ferrites and new-generated σ phases,the GTAW-AM austenitic stainless steel presents a significantly decrease in corrosion resistance.And the reduction of corrosion resistance is mainly due to the formation of σ phase as a result from consuming the large amounts of Cr element from the matrix. 展开更多
关键词 austenitic stainless steel additive manufacturing MICROSTRUCTURE corrosion resistance
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Effects of Austenite Stabilization on the Onset of Martensite Transformation in T91 Steel 被引量:2
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作者 Baoqun NING Yongchang LIU +2 位作者 Qingzhi SHI Zhiming GAO Liushuan YANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第2期202-206,共5页
The influences of thermal stabilization of austenitic on the onset temperature for a martensite transformation in T91 ferritic heat-resistant steel were studied by high-resolution differential dilatometer. The phase t... The influences of thermal stabilization of austenitic on the onset temperature for a martensite transformation in T91 ferritic heat-resistant steel were studied by high-resolution differential dilatometer. The phase transformation kinetic information was obtained by adopting lever rule from the recorded dilatometric curves. The results show that an inverse stabilization, featured by the damage of "the atmosphere of carbon atoms" and the increase of the starting temperature for martensite transformation takes place when the T91 ferritic steel is isothermally treated above the Ms point, and it becomes strong with increasing the holding time. While the continued temperature for martensite transformation decreases gradually when isothermally holding at a temperature below Ms point. The observed inverse stabilization behavior could be attributed to the relatively high temperature of Ms point in the explored T91 ferritic heat-resistant steel. 展开更多
关键词 T91 ferritic heat-resistant steel Austenitic thermal stabilization MARTENSITE MICROSTRUCTURE
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The Phenomenon of High Hardness Values on the S-Phase Layer of Austenitic Stainless Steel via Screen Plasma Nitriding Process 被引量:1
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作者 Sang-Gweon Kim Kook-Hyun Yeo +2 位作者 Yong-Ki Cho Jae-Hoon Lee Masahiro Okumiya 《Advances in Materials Physics and Chemistry》 2018年第6期257-268,共12页
The purpose of this study is to improve the surface properties of austenitic stainless steel using the double-folded electrode screen plasma nitriding (SPN) process. In general, the S-phase is well-known for its excel... The purpose of this study is to improve the surface properties of austenitic stainless steel using the double-folded electrode screen plasma nitriding (SPN) process. In general, the S-phase is well-known for its excellent properties such as improved hardness and wear resistance along with sustained corrosion resistance. The concentrated nitrogen via SPN process was injected to form S-phase with time at 713 K. This study was carried out under the conditions of 44 at% of nitrogen injection, which was higher than 25 at% known as the condition of no precipitation of S-phase formed by the SPN process, and 20 K higher than the maximum temperature without precipitation phase. The hardness analysis of stainless steel sample treated by the SPN process at 713 K showed a much higher value than the typical nitriding hardness at a depth of lower nitrogen than the maximum nitrogen concentration. The SPN 20 hr treated specimen showed the average value of 2339 HV while 40 hr showed the average value of 2215 HV. The result is attributed to the concentrated nitrogen formed in the SPN process reacting with the alloying elements contained in the base material to form fine precipitates, thus producing a synergy effect of the extreme hardening effect;that is, the movement of precipitates and dislocations due to the GP-zone (Guinier-Preston zone). 展开更多
关键词 Double-Folded Electrode Austenitic stainless steel (ASS) SCREEN Plasma NITRIDING (SPN) PROCESS S-PHASE Corrosion Resistance High Hardness
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Development and application of nitrogen-alloyed austenitic stainless steels in Baosteel 被引量:1
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作者 PAN Shihua JI Dengping 《Baosteel Technical Research》 CAS 2015年第4期26-31,共6页
In recent years,nitrogen-alloyed stainless steels have been a research hotspot in the field of stainless steel product and technology. Nitrogen-alloyed austenitic stainless steels developed by Baosteel and their appli... In recent years,nitrogen-alloyed stainless steels have been a research hotspot in the field of stainless steel product and technology. Nitrogen-alloyed austenitic stainless steels developed by Baosteel and their applications are introduced. These steels are nitrogen-controlled products 304 N and 316 LN,nitrogen containing economical products BN series and high-nitrogen stainless steel( HNS) series. The results show that the presence of nitrogen can significantly improve the strength and corrosion resistance of steel produced. By nitrogen alloying,economical austenitic stainless steels w ith considerably less nickel than 304 can be obtained; the corrosion resistances of these steels are almost the same as 304. Furthermore,by a scientific approach of nitrogen alloying,high-nitrogen steel of0. 8% nitrogen content is fabricated under the non-pressurized conditions,and the pitting potential of this steel is &gt;1. 0 V. At present,nitrogen-alloyed steels developed by Baosteel are w idely utilized in the manufacture of cryogenic storage containers,transportation containers,and many household w ares. 展开更多
关键词 nitrogen austenitic stainless steel corrosion resistance
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Effect of processing temperatures on characteristics of surface layers of low temperature plasma nitrocarburized AISI 204Cu austenitic stainless steel
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作者 Insup LEE 《中国有色金属学会会刊:英文版》 CSCD 2012年第S3期678-682,共5页
The influence of processing temperatures on the surface characteristics of AISI 204Cu austenitic stainless steel was investigated during a low temperature plasma nitrocarburizing.The resultant layer was a dual-layer s... The influence of processing temperatures on the surface characteristics of AISI 204Cu austenitic stainless steel was investigated during a low temperature plasma nitrocarburizing.The resultant layer was a dual-layer structure,which comprises a N-enriched layer on the top of C-enriched layer.The surface hardness and the layer thickness increase up to about HV 0.05 1000 and 20μm with increasing temperature.The specimen treated at 400°C shows a much enhanced corrosion resistance compared to the untreated steel.A loss in corrosion resistance was observed for specimens treated at temperatures above 430°C due to the formation of Cr2N. 展开更多
关键词 low temperature PLASMA nitrocarburizing corrosion resistance expanded austenite AISI 204Cu stainless steel hardness.
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Microstructure and Property Relationships in Resistance Spot Weld between 7114 Interstitial Free Steel and 304 Austenitic Stainless Steel
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作者 Ahmet Hasanba■o■lu Ramazan Kaar 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第3期375-381,共7页
Due to the differences in physical, chemical and mechanical properties of the base metals, the resistance spot welding of dissimilar materials is generally more challenging than that of similar materials. The influenc... Due to the differences in physical, chemical and mechanical properties of the base metals, the resistance spot welding of dissimilar materials is generally more challenging than that of similar materials. The influence of the primary welding parameters affecting the heat input such as peak current on the morphology, microhardness, and tensile shear load bearing capacity of dissimilar welds between 304 grades austenitic and 7114 grade interstitial free steel has been investigated in this study. The optimum welding parameters producing maximum joint strength were established at a peak current of 9 kA, where the electrode force is kept 6×10^-5 Pa and weld time is kept constant 17 cycles, respectively. The primary cause of weakening the weldment is identified as the excessive grain growing region of heat affected zone (HAZ) in case of 7114 grade interstitial free steel. 展开更多
关键词 Resistance spot weld Interstitial free steel Austenitic stainless steel
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Influence of Stainless Steel Weld Microstructure on Its Seawater Corrosion Performance
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作者 Santilláin Néstor Valdez Benjamin +3 位作者 Schorr Miguel Carrillo Mónica Martinez Alejandro Colton Samuel 《材料科学与工程(中英文版)》 2011年第1期65-70,共6页
关键词 不锈钢焊接 海水腐蚀 耐蚀性能 药芯焊丝电弧焊 焊接热影响区 电化学阻抗谱 扫描电子显微镜 钨极氩弧焊
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HR3C奥氏体耐热钢晶界蠕变损伤的电子背散射衍射分析
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作者 胡正飞 张家乐 张洁 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第4期611-618,共8页
对不同条件下的HR3C奥氏体耐热钢蠕变试样进行性能测试和微观结构观察,研究奥氏体耐热不锈钢蠕变沿晶破坏行为和损伤特征。电子背散射衍射(EBSD)分析结果表明,不同蠕变速度下材料的晶粒尺寸基本不变,未产生择优取向,但高蠕变速度条件下... 对不同条件下的HR3C奥氏体耐热钢蠕变试样进行性能测试和微观结构观察,研究奥氏体耐热不锈钢蠕变沿晶破坏行为和损伤特征。电子背散射衍射(EBSD)分析结果表明,不同蠕变速度下材料的晶粒尺寸基本不变,未产生择优取向,但高蠕变速度条件下部分孪晶界演变成一般晶界,而低蠕变速度下原始孪晶结构基本保持不变。EBSD分析结果清楚地反映了微观蠕变应变的不均匀性。沿晶微裂纹和蠕变空洞的产生和扩展是最显著的损伤特征,这些损伤现象与不同蠕变速度下的蠕变机制及晶界性质密切相关。 展开更多
关键词 奥氏体耐热钢 蠕变 损伤特征 晶界 电子背散射衍射
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不锈钢表面Al/Cu涂层制备与第一性原理计算
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作者 李德元 李光全 张楠楠 《沈阳工业大学学报》 CAS 北大核心 2024年第2期165-171,共7页
为了研究Al/Cu涂层中金属间化合物的生成顺序和形成机理,在304不锈钢基体表面制备了Al/Cu涂层。对试样进行热处理使得Al/Cu涂层原位反应生成金属间化合物,随后测试了涂层的高温抗氧化性能。采用第一性原理计算Al-Cu金属间化合物的焓、... 为了研究Al/Cu涂层中金属间化合物的生成顺序和形成机理,在304不锈钢基体表面制备了Al/Cu涂层。对试样进行热处理使得Al/Cu涂层原位反应生成金属间化合物,随后测试了涂层的高温抗氧化性能。采用第一性原理计算Al-Cu金属间化合物的焓、熵、吉布斯自由能和热容等数据。将热力学和扩散动力学相结合,提出有效生成自由能模型来预测化合物在Al/Cu界面的生成顺序。结果表明:Al/Cu涂层中首先形成Al_(2)Cu相,在Al/Cu界面处出现了AlCu相,加热时间增加至20 h后出现了富Cu的Al_(4)Cu_(9)相。由第一性原理计算得出,Al-Cu金属间化合物的形成顺序为Al_(2)Cu→AlCu→Al_(4)Cu_(9),与实验结果一致。此外,氧化实验结果表明,涂层具有良好高温抗氧化性能。 展开更多
关键词 Al/Cu涂层 304不锈钢 电弧喷涂 等离子喷涂 第一性原理计算 金属间化合物 抗高温氧化 热处理
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工艺参数对激光选区熔化316L零件电解质等离子抛光的影响
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作者 袁益民 李辉 +3 位作者 谢鹏远 王厚强 胡丽 葛晓宏 《电镀与涂饰》 CAS 北大核心 2024年第3期75-83,共9页
[目的]激光选区熔化技术(SLM)制备的316L不锈钢零件表面不易抛光。[方法]采用电解质等离子抛光技术对其进行抛光,研究了工艺参数对工件表面粗糙度(Ra)、微观形貌、元素含量、物相组成和耐蚀性的影响,并采用正交试验法进行工艺优化。[结... [目的]激光选区熔化技术(SLM)制备的316L不锈钢零件表面不易抛光。[方法]采用电解质等离子抛光技术对其进行抛光,研究了工艺参数对工件表面粗糙度(Ra)、微观形貌、元素含量、物相组成和耐蚀性的影响,并采用正交试验法进行工艺优化。[结果]各工艺参数对粗糙度的影响排序为:抛光电压>抛光时间>抛光液温度>下潜深度。最佳工艺参数为:抛光电压320 V,抛光时间300 s,抛光液温度80℃,下潜深度250 mm。抛光后的表面粗糙度可由2.1084μm降低至0.2127μm,表面Cr元素含量由初始的13.92%增大到17.28%,在3.5%NaCl溶液中的腐蚀电位正移,腐蚀电流密度降低。[结论]电解质等离子抛光可有效改善SLM制备的316L零件的表面形貌,降低其表面粗糙度,提高其耐蚀性。 展开更多
关键词 奥氏体不锈钢 激光选取熔化 电解质等离子抛光 正交优化 表面粗糙度 耐蚀性
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TP347H不锈钢焊接接头敏化特性分析
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作者 李乘安 冯道臣 +4 位作者 章霖 郑文健 程茂 鲁显京 杨建国 《焊接学报》 EI CAS CSCD 北大核心 2024年第1期64-72,I0007,共10页
为明确TP347H不锈钢焊接接头敏化特性,对焊接接头进行不同条件的敏化处理.结果表明,焊接接头热影响区敏化倾向严重,敏化过程中由于Nb原子在晶界上的结合能高于Cr原子,会先形成了粗大的初级铌碳化合物,后形成细小的二次铌碳化合物.在700... 为明确TP347H不锈钢焊接接头敏化特性,对焊接接头进行不同条件的敏化处理.结果表明,焊接接头热影响区敏化倾向严重,敏化过程中由于Nb原子在晶界上的结合能高于Cr原子,会先形成了粗大的初级铌碳化合物,后形成细小的二次铌碳化合物.在700℃下保温时,焊接接头热影响区的敏化度呈现先提高后降低的趋势,当温度达到800℃及以上时,热处理不再提高接头热影响区的敏化度.与实际生产线上服役21000 h的F347H接头热影响区敏化特性对比,证实TP347H焊接接头650℃保温100 h即可达到敏化极限,其原因是Nb元素含量为C元素的数倍,大部分C元素与Nb元素结合形成NbC,而晶粒中扩散的C元素已与Cr元素充分结合,造成的敏化程度达到平衡状态. 展开更多
关键词 TP347H不锈钢 敏化 焊接接头 热处理 耐蚀性
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