論文專著:
發(fā)表中英文論文180余篇,,其中SCI收錄65篇,EI收錄85篇,主編教材2部,譯著1部,參編教材2部。
出版專著:
1. 《有色金屬擠壓與拉拔技術(shù)》,溫景林,丁樺,曹富榮,化學(xué)工業(yè)出版社,2006年。
2. 《材料成形工藝學(xué)》(普通高等教育“十五”國(guó)家級(jí)規(guī)劃教材),齊克敏,丁樺,冶金工業(yè)出版社,2006年。
3. 《鋼結(jié)構(gòu)的腐蝕控制》,丁樺等譯,化學(xué)工業(yè)出版社,2004年。
4. 《材料成形機(jī)械設(shè)備》電子教材(21世紀(jì)初高等教育教學(xué)改革項(xiàng)目),于久明,龐維誠(chéng),丁樺 ,電子工業(yè)出版社,2004年。
5. 《材料成形機(jī)械設(shè)備》,于九明,龐維成 ,(丁樺參編),東北大學(xué)出版社,2002年。
6. 《現(xiàn)代材料研究方法》,祖國(guó)胤,丁樺,冶金工業(yè)出版社,2012年。
7. 《材料成型及控制工程專業(yè)實(shí)驗(yàn)指導(dǎo)書(shū)》,丁樺主編,東北大學(xué)出版社,2013年。
8. 《材料成形金屬學(xué)》,丁樺主編,冶金工業(yè)出版社,2016年。
發(fā)表英文論文:
1.Wenjing Zhang, Huihong Liu, Hua Ding*, Hidetoshi Fujii*, Superplastic deformation mechanism of the friction stir processed fully lamellar Ti-6Al-4V alloy, Materials Science and Engineering: A, 785 (2020), 139390.
2.Wenjing Zhang, Huihong Liu, Hua Ding*, Hidetoshi Fujii*, The optimal temperature for enhanced low-temperature superplasticity in fine-grained Ti–15V–3Cr–3Sn–3Al alloy fabricated by friction stir processing, Journal of Alloys and Compounds, 832 (2020), 154917.
3.Han, D., Ding, H., Liu, D., Rolfe, B. and Beladi, H., 2020. Influence of C content and annealing temperature on the microstructures and tensile properties of Fe–13Mn–8Al–(0.7, 1.2) C steels. Materials Science and Engineering: A, p.139286.
4.Han, D., Ding, H. and Liu, D., 2020. The microstructures and tensile properties of aged Fe-xMn-8Al-0.8 C low-density steels. Materials Science and Technology, 36(6), pp.681-689.
5.Y.F. Jiang,H. Ding, M.H. Cai, Y. Chen, Y. Liu. Y.S. Zhang, Investigation into the hot forming-quenching integrated process with cold dies for high strength aluminum alloy, Mater. Charac. 158 (2019) 109967.
6.W.J. Zhang, H. Ding, M.H. Cai, W.J. Yang, J.Z. Li, Low-temperature superplastic deformation mechanism in Ti–6Al–4V alloyprocessed by friction stir processing, Materials Science & Engineering A 764 138261.
7.Wenjing Zhang, Huihong Liu, Hua Ding, Hidetoshi Fujii, Grain refinement and superplastic flow in friction stir processed Ti-15V-3Cr-3Sn-3Al alloy, Journal of Alloys and Compounds, 2019, 803: 901-911.
8.Guangyu Li, Hua Ding, Jian Wang, Wenjing Zhang, Ning Zhang & Hongliang Hou (2019) Effect of strain on cavity development during Al–Zn–Mg–Cu alloy superplastic flow, Materials Science and Technology, 35:8, 939-945, DOI: 10.1080/02670836.2019.1597485
9.H.J. Pan, M.H. Cai, H. Ding, S.H. Sun, H.S. Huang, Y.S. Zhang, Ultrahigh strength-ductile medium-Mn steel auto-parts combining warm stamping and quenching & partitioning. Mater. Sci. Technol, 2019, 35: 807–814。
10.Degang Liu, Minghui Cai, Ding Hua, Dong Han, Control of inter/intra-granular κ -carbides and its influence on overall mechanical properties of a Fe-11Mn-10Al-1.25 C low density steel, Materials Science & Engineering A, 2017, 715: 25-32.
11.Wenjing Zhang, Hua Ding, Pedro Henrique R. Pereira, Yi Huang, Terence G. Langdon, Grain refinement and superplastic flow in a fully lamellar Ti-6Al-4V alloy processed by high-pressure torsion, Materials Science & Engineering A, 2018, 732: 398-405.
12.Wenjing Zhang, Hua Ding, Minghui Cai, Wenjing Yang, JizhongLi, Ultra-grain refinement and enhanced low-temperature superplasticity in a friction stir-processed Ti-6Al-4V alloy, Materials Science & Engineering A, 2018, 727: 90-96.
13.Z.H. Cai, H. Ding, R.D.K. Misra, S.Q. Qiguan, Mechanistic contribution of the interplay between microstructure and plastic deformation in hot-rolled Fe–11Mn–2/4Al–0.2C steel. Materials Science & Engineering A, 2016, 652: 205-211.
14.Z.H. Cai, H. Ding, H. Kamoutsi, G.N. Haidemenopoulos, R.D.K. Misra, Interplay between deformation behavior and mechanical properties of intercritically annealed and tempered medium-manganese transformation-induced plasticity steel. Materials Science & Engineering A, 2016, 654: 359-367.
15.Z.C. Li, H. Ding, R.D.K. Misra, Z.H. Cai, H.X. Li, Microstructural evolution and deformation behavior in the Fe-(6, 8.5)Mn-3Al-0.2C TRIP steels, Materials Science & Engineering A, 2016, 672:161-169.
16.Z.C. Li, R.D.K. Misra, Z.H. Cai, H.X. Li, H. Ding, Mechanical properties and deformation behavior in hot-rolled 0.2C-1.5/3Al-8.5Mn-Fe TRIP steel: The discontinuous TRIP effect, Materials Science & Engineering A, 2016, 673:63-72.
17.Yu Chen, Hua Ding, Jizhong Li, Zhihui Cai, Jingwei Zhao, Wenjing Yang, Influence of multi-pass friction stir processing on the microstructure and mechanical properties of Al-5083 alloy. Materials Science & Engineering A, 2016, 650:281-289.
18.Yu Chen, Hua Ding, Zhihui Cai, Jingwei Zhao, Jizhong Li, Effect of initial metal temper on microstructure and mechanical properties of friction stir processed Al-7B04 alloy. Materials Science & Engineering A, 2016, 650:396-403.
19.Hua Ding, Dong Han, Jun Zhang, Zhihui Cai, Zhiqiang Wu, Minghui Cai, Tensile Deformation Behavior Analysis of Low Density Fe-18Mn-10Al-xC Steels, Materials Science & Engineering A, 652(2016)69-76.
20.Na Zan, Hua Ding, XiaoFei Guo, ZhengYou Tang, Effects of grain size on hydrogen embrittlement in a Fe-22Mn-0.6C TWIP steel. International Journal of Hydrogen Energy, 2015, 40(33):10687-10696.
21.Z.H.Cai, H.Ding, R.D.K. Misra, Z.Y. Ying, Austenite stability and deformation behavior in a cold-rolled transformation-induced plasticity steel with medium manganese. Acta Materialia, 2015, 84:229-236.
22.Z. Y.Tang, R.D.K.Misra, M. Ma, N. Zan, Z.Q.Wu, H.Ding, Deformation twinning and martensitic transformation and dynamic mechanical properties in a Fe-0.07C-23Mn-3.1Si-2.8Al TRIP/TWIP steel, Materials Science & Engineering A, 2015, 624:186-192.
23.Jun Zhang, Hua Ding, R.D.K. Misra, Enhanced strain hardening and microstructural characterization in a low carbon quenching and partitioning steel with partial austenization, Materials Science & Engineering A, 636, 2015: 53-59.
24.Z.Q. Wu, H. Ding, X.H. An, D. Han, X.Z. Liao. Influence of Al content on the strain-hardening behavior of aged low density Fe-Mn-Al-C steels with high Al content. Materials Science & Engineering A, 639, 2015: 187-191.
25.Z.C. Li, H. Ding, Z.H. Cai, Mechanical properties and austenite stability in hot-rolled 0.2C–1.6/3.2Al–6Mn–Fe TRIP steel, Materials Science & Engineering A, 2015, 639:559-566.
26.Z.H.Cai, H.Ding, R.D.K. Misra, H. Kong, Unique serrated flow dependence of critical stress in a hot-rolled Fe-Mn-Al-C steel, Scripta Materialia, 2014, 71: 5-8.
27.Z.H.Cai, H.Ding, R.D.K. Misra, et al. Unique impact of ferrite in influencing austenite stability and deformation behavior in a hot-rolled Fe-Mn-Al-C steel. Materials Science & Engineering A, 2014, 595:86-91.
28.Chao Wang, Hua Ding, Minghui Cai, Bernard Rolfe. Characterization of microstructures and tensile properties of TRIP-aided steels with different matrix microstructure, Materials Science & Engineering A, 2014, 610 :65 -75.
29.Chao Wang, Hua Ding, Minghui Cai, Bernard Rolfe. Multi-phase microstructure design of a novel high strength TRIP steel through experimental methodology, Materials Science & Engineering A, 2014, 610 :436-444.
30.Z.H.Cai, H.Ding, X.Xue, Q.B.Xin, Microstructural evolution and mechanical properties of hot-rolled 11% manganese TRIP steel. Materials Science & Engineering A, 2013, 560: 388-395.
31.Z.H.Cai, H.Ding, X.Xue, et al. Significance of control of austenite stability and three-stage work-hardening behavior of an ultrahigh strength high ductility combination transformation-induced plasticity steel, Scripta Materialia, 2013, 68: 865-868.
32.Jun Zhang, Hua Ding, Chao Wang, Jingwei Zhao, Ting Ding, Work hardening behaviors of a low carbon Nb-microalloyed Si-Mn quenching- partitioning steel with different cooling styles after partitioning, Materials Science & Engineering A, 585, 2013: 132-138.
33.Jun Zhang, Hua Ding, R.D.K. Misra, Chao Wang, Enhanced stability of retained austenite and consequent work hardening rate through pre-quenching prior to quenching and partitioning in a Q-P microalloyed steel, Materials Science & Engineering A, 611, 2014: 252-256.
34.Z.Q.Wu, H.Ding, H.Y.Li, M.L.Huang, F.R.Cao, Microstructural evolution and strain hardening behavior during plastic deformation of Fe-12Mn-8Al-0.8C steel, Materials Science and Engineering A, 2013, 584(1): 150-155
35.Ding Hao, Ding Hua,Qiu Chun-lin. Tang Zheng-you. Zeng Jian-min. Yang Ping. Formability of TRIP/TWIP Steel Containing Manganese of 18.8%. Journal of Iron and Steel Research International, 18 (2011), No,1, 36-40.
36.Ding Hao, Ding Hua, Song Dan, Tang Zhengyou, Yang Ping. Strain hardening behavior of a TRIP/TWIP steel with 18.8% Mn. Materials Science and Engineering A, 528(2011),No.3, 868-873.
37.DING Hua and Hao Shiming,Thermodynamic analysis of β → α(α_2) phase transformation temperature in a Ti-Al-H alloy system, RARE METALS,2010,(3):298-301
38.Jingwei Zhao, Hua DING, Yurong Zhong, Chong Soo Lee, Effect of thermo hydrogen treatment on lattice defects and microstructure refinement of Ti6Al4V alloy, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2010,35(12):6448-6454
39.J.W. Zhao, H. Ding, H.L. Hou, Z.Q. Li, Influence of hydrogen content on hot deformation behavior and microstructural evolution of Ti600 alloy, JOURNAL OF ALLOYS AND COMPOUNDS,2010,491(1-2):673-678
40.Jing-wei ZHAO, Hua DING, Yao-qi WANG, Hong-liang HOU .Influence of thermo hydrogen treatment on hot deformation behavior of Ti600 alloy[J];Transactions of Nonferrous Metals Society of China, 2009,19(1): 65-71
41.Ming-li HUANG, Hong-xiao LI, Hua DING, Yu-ping REN, Gao-wu QIN, Shi-ming HAO,Partial phase relationships of Mg-Zn-Ce system at 350 °C[J];Transactions of Nonferrous Metals Society of China, 2009,19(3) : 681-685
42.Ming-huiCAI, Hua DING, Jian-su ZHANG, Long LI, Xiao-bin LI, Lin-xiu DU. Transformation Behavior of Low Carbon Steels Containing Two Different Si Contents[J];Journal of Iron and Steel Research, International, 2009,16( 2): 55-60
43.Minghui CAI, Hua DING, Jiansu ZHANG, Long LI. Effiect of silicon and prior deformation of austenite on isothermal transformation in low carbon steels[J];Acta Metallurgica Sinica (English Letters), 2009, 22( 2): 100-109
44.M.L. HUANG, H.X. LI, H. DING, Y.P. REN, S.M. HAO. Isothermal section of Mg-Zn-La system in mg rich corner at 350℃,ACTA METALLURGICA SINICA ,2008,21(5),329-335(EI)
45.Chen Yanbo, Li Yinglong, He Lizi, Chen Lu, DING Hua, Li Qingyan, The influence of cryoECAP on microstructures and properties of commercial pure Al, Materials.Letters, 2008:62:2821-2824
46.Li Long, DING Hua, Du Lin-xiu, Wen Jing-lin, Song Hong-mei, Zhang Pi-jun. Influence of Mn content and Hot Deformation on Transformation Behavior of C-Mn Steels, Journal of Iron and Steel Research, 2008,15(2):51-55.(SCI)
47.ZHAO Jing-wei, DING Hua, ZHAO Wen-juan, TIAN Xue-feng, HOU Hong-liang, WANG Yao-qi. Influence of hydrogenation on microstructures and microhardness of Ti6Al4V alloy [J]. Transactions of Nonferrous Metals Society of China, 2008, 18: 506-511. (SCI&EI)
48.J. W. Zhao, H. Ding, W. J. Zhao, F. R. Cao, H. L. Hou, Z. Q. Li. Modeling of dynamic recrystallization of Ti6Al4V alloy using a cellular automaton approach [J]. Acta Metallurgica Sinica (English Letters), 2008, 21 (4): 260-268. (EI)
49.Shang Yan, Han Yi, Guo Ying-li, Li Ji-zhong, Tang Zheng-you, DING Hua. Numerical Simulation of the Distribution of Stress and Strain of Multi-Phase Steel. The 5th International Symposium on Advanced Structural Steel and New Rolling Technologies, NEU, Shenyang, 2008, 10: 245-253.
50.CAI Ming-hui, TANG Zheng-you, LI Xiao-bin DING Hua, Zhang Jian-su. Effect of Silicon on Hole-expansion Property of Low-carbon Ferrite-Bainite Dual-Phase Steels[C], The 5th International Symposium on Advanced Srructural Steels and New Rolling Technologies, 2008, NEU, Shenyang, 2008, 9: 141-147.
51.CAI Ming-hui, ZHANG Jian-su, HAN Qing-sheng, Tang Zheng-you, DING Hua. Study of Hot-Rolled Automobile Chassis Steels with High Hole-Expanding Ratio[C], Proceedings of the Third Baosteel Biennial Academic Conference, shanghai,2008, 9:E121-124.
52.HUANG Ming-li, LI Hong-xiao, REN Yu-ping, DING Hua, HAO Shi-ming, CHEN Hui. Isothermal section of Mg-Zn-La system in Mg-rich corner at 400 ℃, Transactions of nonferrous metals society of China,(International Conference of Nonferrous Materials 2007), 2007,17: S8-11.
53.Huang ML, Li HX, Ding H, et al. Phase equilibrium of Mg-Zn-La system in Mg-rich corner from 200 to 350 degrees C, JOURNAL OF RARE EARTHS(proceedings of the Fifth international Conference on Rare Earth Development and Application),2007,25: 519-522.
54.W. J. Zhao, H. Ding, D. Song, F. R. Cao, H. L. Hou. The effect of grain sizes on superplastic deformation of Ti-6Al-4V alloy [J], Material Science Forum, 2007, 551-552: 387-392. (EI&ISTP)
55.J. W. Zhao, H. Ding, W. J. Zhao, X. F. Tian, H. W. Xiao, H. L. Hou. Influences of hydrogenation on Microstructure and Microhardness of Ti6al4V alloy [J]. Materials Science Forum, 2007, 561-565: 295-298. (EI&ISTP)
56.Tang Zheng-you, DING Hua, Du Linxiu, Li Long. Study on Microstructures and Mechanical Properties of Si-Al-Mn TRIP Steel with Niobium, Journal of Materials Science&Technology, 2007, 23(6): 790-794(SCI)
57.Tang Zheng-you, DING Hua, DU Lin-xiu, DING Hao, ZHANG Xin. Effect of Thermomechanical Processing on Microstructres of TRIP Steel, Journal of Iron and Steel Research International, 2007, 14(2): 56-60 (SCI)
58.Hua DING, Zheng-You TANG, Wei LI, Mei WANG, Dan SONG. Study on Microstructures and Mechanical Properties of High Manganese Steel with TRIP/TWIP Effects[J];Journal of Iron and Steel Research, International, 2006, 13(6):66-70
59.DING Hua,TANG Zheng-you, LI Wei et al, Effect of Processing Condition on Texture and Drawability of a Ferrite Rolled and Annealed Interstitial-Free Steel, JOURNAL OF IRON AND STEEL RESEARCH,,2006, 13(60 ).
60.DING Hua, Tang Zheng-you, Li Wei, Wang Mei, Song Dan. Microstructures and Mechanical Properties of Fe-Mn-(Al, Si) TRIP/TWIP Steels, Journal of Iron and Steel Research International, 2006, 13(6): 66-70(SCI)
61.W. J. Zhao, H. Ding, Y. P. Ren, S. M. Hao, J. Wang, J. T. Wang. Finite Element Simulation of Deformation Behavior of Pure Aluminum during Equal Channel Angular Pressing, Materials Science and Engineering, 2005, A410-411: 348-352. (SCI&EI)
62.Li Long, Yang Chunzheng, DING Hua, Du Linxiu, Liu Xianghua, Wang Guodong, Song Hongmei, Zhang Pijun. Study on Microstructures and Mechanical Properties of B510L Steel Produced by TMCP, Materials Science Forum, 2005, 475-479: 77-80.
63.Li Long, DING Hua, Du Lin-xiu Song Hong-mei, Zheng Fang. Effect of Mn content and TMCP on microstructures and mechanical properties of C-Mn steels, Iron and Steel, 2005, 40, SUPPL: 174-178.
64.Li Long, Tang Zhengyou, Zhao jingwei, DING Hua, Du Linxiu, Song Hongmei. Study on Microstructures and Hardness of C-Mn Steels by Continuous Cooling Transformation Process, The 3rd Symposium on Advanced Structural Steels and New Rolling Technologies, NEU, Shenyang, 2005, 12: 190-196.
65.H Ding,Y P Ren, S M Hao, Recrystalllization of the cold- deformed discontinuous precipitation microstructure in Al-Zn-(Cu) alloys, Rare Metals, 2004; 23(4):358(SCI)
66.Y P Ren, H Ding, S M Hao, Abnormal refining of stepped-annealing microstructure in an Al alloy containing low copper and high zinc, J Mater.Sci.letters, 2003;22:433-436 (SCI,EI)
67.H Ding, L Li, C Z Yang, X H Liu, G D Wang, Development of a Fire Resistant High Strength Low Alloy Steel for Construction, Mater. Sci. Forum. 2003;426-432:1487-1492(SCI,EI)
68.L X Du , C B Zhang , H Ding , X H Liu, G D Wang, Determination of Upper Limit Temperature of Strain induced Transformation of Low Carbon Steels, ISIJ International, 2002;42:1119(SCI,EI)
69.X Y Meng, H Ding, J L Wen, Preparation and mechanical properties of SiC/2024 composite by semisolid casting, Rare Metals 2002;21(30):203 (SCI)
70.H Ding, D Song, C P Zhang, J Z Cui, Influence of hydrogen on the microstructure and superplasticity of a Ti3Al-Nb Alloy, Rare Metals ,2001;20(2):87(SCI)
71.H Ding, D Song, C P Zhang, J Z Cui, Superlastic Behavior of a β forged Ti3Al-Nb Alloy , Mater.Sci.Eng, 2000;A281:248 (SCI,EI)
72.H Ding, D L Wang, D Song, C P Zhang, J Z Cui, Microstructural Evolution in Superplastic Deformation of a Ti3Al Alloy, J.Mater.Sci.Letters,2000;19: 1135 (SCI,EI)
發(fā)表中文期刊論文:
[1]丁樺.專業(yè)課教學(xué)中的教學(xué)機(jī)智[J].中國(guó)冶金教育,2020(04):47-49.
[2]劉賽婭,李少華,柏慧,張?chǎng)稳?丁樺.退火和時(shí)效對(duì)Fe-12Mn-7Al-0.6C-0.5V低密度鋼組織性能的影響[J].材料與冶金學(xué)報(bào),2020,19(02):134-141.
[3]張玲,丁樺.學(xué)生創(chuàng)新創(chuàng)業(yè)能力與專業(yè)課知識(shí)相結(jié)合教學(xué)改革[J].知識(shí)經(jīng)濟(jì),2020(03):159-160.
[4]彭良貴,張殿華,趙忠,丁樺,趙憲明.以學(xué)生為中心的大學(xué)新生班導(dǎo)師工作[J].中國(guó)冶金教育,2019(06):99-101.
[5]韓東,丁樺,趙文娟.實(shí)驗(yàn)-CPFEM方法在分析先進(jìn)高強(qiáng)鋼應(yīng)力應(yīng)變配分中的應(yīng)用[J].材料與冶金學(xué)報(bào),2019,18(04):258-269.
[6]祖國(guó)胤,高飛,丁樺,李英龍,唐正友.材料現(xiàn)代研究方法課程教學(xué)改革[J].中國(guó)冶金教育,2019(04):24-25+28.
[7]彭良貴,蔡明暉,丁樺,趙憲明.以解決復(fù)雜工程問(wèn)題為核心的材料成形工藝課程設(shè)計(jì)教學(xué)[J].中國(guó)冶金教育,2019(03):55-58.
[8]彭良貴,丁樺,趙憲明.基于產(chǎn)出導(dǎo)向理念的壓力加工車間設(shè)計(jì)課程教學(xué)[J].中國(guó)冶金教育,2019(01):11-13.
[9]胡小龍,李英龍,劉德罡,丁樺.Fe-12Mn-7Al-0.6C-(V)輕質(zhì)鋼力學(xué)行為[J].中國(guó)冶金,2019,29(02):39-44.
[10]高彩茹,丁樺,張福波,王皓天.“材料成型機(jī)械設(shè)備”課程虛擬實(shí)踐教學(xué)應(yīng)用研究[J].科教導(dǎo)刊(下旬),2019(01):112-114.
[11]丁樺,胡曉.高層錯(cuò)能Fe-Mn-Al-C低密度鋼的變形機(jī)制和組織控制[J].材料與冶金學(xué)報(bào),2018,17(04):239-244+262.
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[13]王建,李光宇,楊文靜,丁樺,張寧,侯紅亮.7B04鋁合金超塑變形空洞研究[J].材料與冶金學(xué)報(bào),2018,17(04):293-299.
[14]許斯洋,李英龍,蔡志輝,丁樺.高強(qiáng)高彈銅合金研究及發(fā)展趨勢(shì)[J].材料與冶金學(xué)報(bào),2018,17(04):300-305+316.
[15]劉德罡,胡小龍,蔡明暉,丁樺.Fe-11Mn-10Al-0.9C低密度鋼的變形抗力模型和熱加工圖[J].材料與冶金學(xué)報(bào),2018,17(04):263-268+275.
[16]陳雨,丁樺.異種鋁合金攪拌摩擦焊的流動(dòng)行為及補(bǔ)焊對(duì)焊核區(qū)組織性能的影響[J].材料與冶金學(xué)報(bào),2018,17(04):284-292.
[17]李家智,張野,王麗,李寶綿,丁樺.Cu-0.67Cr-0.27Zr合金時(shí)效析出動(dòng)力學(xué)研究[J].材料與冶金學(xué)報(bào),2018,17(04):306-310+316.
[18]馬明,丁樺,唐正友,李國(guó)平.雙相不銹鋼2205熱軋板微觀組織及塑性變形的均勻性[J].材料與冶金學(xué)報(bào),2018,17(04):254-262.
[19]吳志強(qiáng),盧立偉,丁樺.低密度高錳高鋁鋼的動(dòng)態(tài)變形行為及韌脆轉(zhuǎn)變研究進(jìn)展[J].精密成形工程,2018,10(06):22-29.
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[168]丁樺,潘志強(qiáng),宋丹,張維山,張彩碚,崔建忠.等溫鍛造態(tài)TiAl基合金的超塑性研究[J].金屬學(xué)報(bào),2000(03):304-307.
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[170]杜云蕙,丁樺,宋丹.氫對(duì)Ti_3Al-Nb合金組織和高溫變形的影響[J].稀有金屬材料與工程,1999(03):3-5.
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會(huì)議論文:
[1]李曉濱,丁樺,唐正友,丁學(xué)勇. 結(jié)晶器內(nèi)軸承鋼矩形坯凝固過(guò)程的模擬[C]. 2011年全國(guó)高品質(zhì)特殊鋼生產(chǎn)技術(shù)研討會(huì)文集. 2011:150-155.
[2]李曉濱,丁樺,唐正友,徐桂全,赫冀成. 矩形坯輕壓下過(guò)程應(yīng)力應(yīng)變分布的有限元模擬[C]. 第七屆(2009)中國(guó)鋼鐵年會(huì)論文集(上). 2009:1448-1452.
[3]商艷,唐正友,李龍,丁樺,張建蘇. TMCP工藝對(duì)含Nb、Ti 低碳FB鋼組織和性能的影響[C]. 2007中國(guó)鋼鐵年會(huì)論文集. 2007:895-896.
[4]李繼忠,趙文娟,丁樺,商艷. 數(shù)值模擬反壓力對(duì)純鈦等通道轉(zhuǎn)角擠壓的影響[C]. 第十屆全國(guó)塑性工程學(xué)術(shù)年會(huì)、第三屆國(guó)際塑性加工先進(jìn)技術(shù)研討會(huì)論文集. 2007:25-28.
[5]黃明麗,李洪曉,丁樺,任玉平,郝士明. Phase Equilibrium of Mg-Zn-La System in Mg-Rich Corner from 200 to 350 ℃[C]. Proceedings of the Fifth International Conference on Rare Earth Development and Application. 2007:489-492.
[6]唐正友,李龍,李衛(wèi),丁樺. 應(yīng)變速率對(duì)低硅含鈮TRIP鋼力學(xué)性能的影響[C]. 2005中國(guó)鋼鐵年會(huì)論文集(第4卷). 2005:486-489.
[7]賈大朋,張殿華,丁樺,劉相華. 熱連軋過(guò)程中活套與帶鋼“軟接觸”定位控制[C]. 冶金軋制過(guò)程自動(dòng)化技術(shù)交流會(huì)論文集. 2005:258-261.
[8]包立,趙文娟,丁樺,梅瑞斌. 等通道轉(zhuǎn)角擠壓中摩擦影響的數(shù)值模擬[C]. 第九屆全國(guó)塑性工程學(xué)術(shù)年會(huì)、第二屆全球華人先進(jìn)塑性加工技術(shù)研討會(huì)論文集(二). 2005:287-288.
[9]宋紅梅,鄭芳,丁樺. 寶鋼碳錳超細(xì)晶粒鋼的研制及應(yīng)用[C]. 中國(guó)金屬學(xué)會(huì)2003中國(guó)鋼鐵年會(huì)論文集(4). 2003:606-609.
[10]李龍,楊春征,丁樺,孝云禎,劉相華,王國(guó)棟,胡淑娥,孫衛(wèi)華. 終冷溫度對(duì)建筑用耐火鋼組織和性能的影響[C]. 中國(guó)金屬學(xué)會(huì)2003中國(guó)鋼鐵年會(huì)論文集(4). 2003:151-154.
[11]丁樺,姜宏武,王幼筠,崔建忠,萬(wàn)初杰,白秉哲. Ti-24Al-17Nb-1Mo合金的超塑性研究[C]. 第八屆全國(guó)塑性加工理論與新技術(shù)學(xué)術(shù)會(huì)議論文集. 1999:149-152.