中德微结构联合实验室

 

Publications : 2016

 

564. Guanglong Xu, Ligang Zhang, Libin Liu, Yong Du, Fan Zhang , Kai Xu, Shuhong Liu, Mingyue Tan, and Zhanpeng Jin, “Thermodynamic database of multi-component Mg alloys and its application to solidification and heat treatment,” Journal of Magnesium and Alloys, 4, 249–264 (2016).
563. Cong Zhang, Yuling Liu, Yong Du, Yingbiao Peng, and Jiong Wang, “Thermodynamic assessment of the Co–Mo–Ni and Mo–Ni–W ternary Systems, CALPHAD, 55, 243-51 (2016).
562. Cong Zhang, Yong Du, Shuzhu Zhou, Yingbiao Peng, and Jiong Wang, “Grain growth and hardness of TiC-based cermets: Experimental investigation and thermodynamic calculations,” Cearm. Internal., 42, 19289-95 (2016).
561. Biao Hu, Jiong Wang, Chao Wang, Yong Du, Jinbo Zhu, “CALPHAD-type thermodynamic assessment of the Ti–Mo–Cr–V quaternary system”, Calphad, 55, Part 2, 103-112(2016)
560. S.V. Meschel, P. Nash, Yong Du, and J.C. Wang, “The thermochemistry of some 5:3 binary lanthanide–lead compounds by high temperature direct synthesis calorimetry”, Journal of Alloys and Compounds, 656, 88-93(2016)
559. Xiaoma Tao, Ziru Wang, Chunxiang Lan, Guanglong Xu, Yifang Ouyang, and Yong Du, “Exploring phase stability, electronic and mechanical properties of Ce–Pb intermetallic compounds using first-principles calculations”, Journal of Solid State Chemistry, 237, 385-393(2016)
558. Shujun Qiu, Jianling Huang, Feihong Shen, Rui Pang, Hailiang Chu, Yongjin Zou, Cuili Xiang, Fen Xu, Yong Du, Jianchuan Wang, Lixian Sun, and Huaiying Zhou, “Ternary Co–Ni–B amorphous alloy with a superior electrochemical performance in a wide temperature range”, International Journal of Hydrogen Energy, 41, 6, 3955-3960(2016)
557. Dandan Huang, Shuhong Liu, Honghui Xu, and Yong Du, “Phase equilibria of the Mg–Mn–Zn system at 593 K (320 °C):, Journal of Alloys and Compounds, 688, Part A, 1115-1124(2016).
556. Ziqiang Wang, Lixian Sun, Fen Xu, Huaiying Zhou, Xiaojun Peng, Dalin Sun, Jianchuan Wang, and Yong Du, “Nitrogen-doped porous carbons with high performance for hydrogen storage”, International Journal of Hydrogen Energy, 41, 20, 8489-8497(2016)
555. Songxiang Sun, Yuting Qin, Hua Zhou, Yong Du, and Cuiyun He, “Experimental investigation of the isothermal section at 400 °C of the MgCeSr ternary system”, Journal of Magnesium and Alloys, 4, 1, 30-35(2016).
554. Yuxiang Xu, Li Chen, Fei Pei, and Yong Du, “Structure and thermal properties of TiAlN/CrN multilayered coatings with various modulation ratios”, Surface and Coatings Technology, 304,512-518(2016).
553. Shimin Wang, Cong Zhang, Chaoying Lin, Yingbiao Peng, and Yong Du, “Measurement of 900oC isothermal section in the Mo-Ni-Zr system, “J. Phase  Equilib. Diff., 37, 672–679 (2016).
552. Dandan Huang, Shuhong Liu, Ying Tang, Yong Du, Philip Nash, and Bo Sundman, “Experimental investigation and thermodynamic modeling of the Ce-Si system,” Thermochimica Acta, 646, 49-58 (2016).
551. Shunming Yang, Yi Kong, Yong Du, Luming Shen, and Yaogen Shen,” First-principles prediction of structural, mechanical and magnetic properties in Ni2MnAl,” Comput. Mater. Sci., 123, 52-58 (2016).
550. Fan Zhang, Jianchuan Wang, Shuhong Liu, and Yong Du, “Effects of the volume changes and elastic-strain energies on the phase transition in the Li-Sn battery, “ J. Power Sources, 330, 111-119 (2016).
549. Yingbiao Peng, Peng Zhou, Mengjie Bu, Weibin Zhang, and Yong Du, “ A thermodynamicevaluationoftheC–Cr–Nb system,” CALPHAD, 53, 10-19 (2016).
548. Yingbiao Peng, Christoph Buchegger, Walter Lengauer, Yong Du, and Peng Zhou, “Solubilities of grain-growth inhibitors in WC-Co-based cemented carbides: Thermodynamic calculations compared to experimental data,” Int. J. Refract. Met. Hard. Mater., 61, 121-27 (2016).
547. Kai Xu, Shuhong Liu, Fan Zhang, Yong Du, and Zhanpeng Jin, “ Thermodynamic calculations of the Au–Sc and Fe–Sc systems,” CALPHAD, 54, 158-64 (2016). 
546. Juan Chen, Lijun Zhang, Jing Zhong, Weimin Chen, and Yong Du,”High-throughput measurement of the composition-dependent interdiffusivity matrices in Ni-rich fcc Ni-Al-Ta alloys at elevated Temperatures,” J. Alloy Compd., 688, 320-28 (2016).
545. Cong Zhang, Yingbiao Peng, Peng Zhou, and Yong Du, “Thermodynamic modeling of the C-Co-Mo and C-Mo-Ni ternary systems,” J. Phase Equilib. Diff., 37, 423-37 (2016).
544. Dongyang Kuang , Dandan Liu, Weimin Chen , Zhao Lu , Lijun Zhang , Yong Du,Zhanpeng Jin , and Chengying Tang, “Interdiffusion in bcc_B2 Ni–Al–Cu alloys at 1173K,” Int. J. Mater. Res., 107, 597-604 (2016).
543. Chao Yin, Tao Xu, Weibing Zhang, Yong Du, Lianwu Yan, and Xiangzhong Liu, “Interaction of several kinds of carbide and cobalt under different sintering temperatures,” Mater. Sci. Eng. Powder Metall., 21, 116-121 (2016) (in Chinese).
542. Chengbin Qiu, Yingbiao Peng, Xuwen He, Yong Du, Zhongjian Zhang, Tao Xu, Xiangzhong Liu, Huiping Wang and Shequan Wang, “Experimental Study on the Solubilities of Grain-growth Inhibitors in the Binder Phase of WC-Ni Cemented Carbides ,” Cemented Carbide, 33, 89-95(2016) (in Chinese)
541. Hao Zhang, Weibing Zhang, Tao Xu, Defang Kong, Geng Zhong, Ting Zhu and Yong Du, “ Research on Interfacial Diffusion Process of Cobalt Phase in Cellular Cemented Carbide, ” Cemented Carbide, 33, 96-101(2016) (in Chinese).
540. Peng Zhou, Yingbiao Peng, Christoph Buchegger, Yong Du, and Walter Lengauer, “Experimental investigation and thermodynamic assessment of the C-Co-Fe-Ni-W system,” Int. Journal of Refractory Metals and Hard Materials,54, 60-9(2016).
539. Yaru Wang, Peng Zhou, Yingbiao Peng, Yong Du, Bo Sundman,Jianzhan Long, Tao Xu, and Zhongjian Zhang, “A thermodynamic description of the AleCoeNi system and site occupancy in Co t AlNi3 composite binder phase”, J. Alloy Compd., 687, 855-66 (2016).
538. Jingjing Zhou, Lijun Zhang, Li Chen, Hong Wu, Yong Du, “Microstructure evolution in multilayer c-TiAlN/TiN coatings during spinodal decomposition: A phase-field study”, Journal of Micromechanics and Molecular Physics, 1, 1650002 (2016).
537. Qianxin Long, Jianchuan Wang, Yong Du, David Holec, Xiaowu Nie, and Zhanpeng Jin,” Predicting an alloying strategy for improving fracture toughness of C15 NbCr2 Laves phase: A first-principles study,” Comput. Mater. Sci., 123, 59-64 (2016).
536. Kai Li, Hosni Idrissi, Gang Sha, Min Song, Jiangbo Lu, Hui Shi,Wanlin Wang , Simon P. Ringer, Yong Du, and Dominique Schryvers,” Quantitative measurement for the microstructural parameters of nano-precipitates in Al-Mg-Si-Cu alloys,” Mater. Charact., 118, 352-62 (2016).
535. Jinghua Xin, Yong Du, Shunli Shang, Senlin Cui, Jianchuan Wang, Baiyun Huang, and Zi-Kui Liu, “A New relationship among self- and impurity diffusion coefficients in binary solution phases,” Metall. Mater. Trans. A, 47A, 3295-99 (2016).
534. Hua Zhou, Chong Chen, Yong Du, and Haoran Gong, “Experimental investigation and thermodynamic calculation of the Mg–Sr–Zr system,” Int. J. Mater. Res., 107, 534-43 (2016).
533. Weibin Zhang, Yong Du, Peng Zhou, Yingbiao Peng, Na Li, and Wen Xie, “A new type of double-layer gradient cemented carbides: Preparation and microstructure characterization,” Scripta Mater., 123, 73-76 (2016).
532. Lijun Zhang and Yong Du, “Phase-field model of finite interface dissipation: a novel way to directly couple with CALPHAD databases,” J. Phase Equilib Diff., 37(3) 259-60 (2016).
531. Qianxin Long, Xiaowu Nie, Shun-Li Shang, Jianchuan Wang, Yong Du, Zhanpeng Jin, and Zi-Kui Liu, “C15 NbCr2 Laves phase with mechanical properties beyond Pugh’s criterion,” Comput. Mater. Sci., 121, 167-73 (2016).
530. Weibin Zhang, Yong  Du, Yingbiao Peng, Na Li,  Peng Zhou, Kaiming Chen, Cong Zhang, Zhongjian Zhang, Shequan Wang,  Tao Xu,  Weimin Chen, Li Chen,  Wen Xie, Guanghua Wen,  Jianzhan Long, Hao Zhang, Xiangzhong Liu, and  Zhanpeng Jin, “Integrated computational materials engineering (ICME) for developing the cemented carbides,” Mater. Sci. Technol., 24(2) 1-28 (2016) (in Chinese).

529. Cong Zhang, Yong Du, Shuhong Liu, Yuling Liu, and Bo. Sundman, “Thermal conductivity of Al–Cu–Mg–Si alloys: Experimental measurement and CALPHAD modeling,” Thermochim. Acta, 635, 8-16 (2016). 
528. S.H. Zhou, C. Liu, Y.X. Yao, Yong Du, L.J. Zhang, C.-Z. Wang, K.-M. Ho, and  M.J. Kramer,” Magnetic BiMn-a phase synthesis prediction: First-principles calculation, thermodynamic modeling and nonequilibrium chemical partitioning, “ Comput. Mater. Sci., 120, 117-126 (2016).
527. Xiaohui Yang, Jianhong Yi, Song Ni, Yong Du, and Min Song, “Microstructural Evolution and Structure-Hardness Relationship in an Al-4wt.%Mg Alloy Processed by High-Pressure Torsion,” J. Mater. Eng. Perform., 25, 1909-15 (2016).
526. Weiteng Guo, Kai Li, Yong Du, Zhongjian Zhang, Tao Xu, Chao Yin, Zhuo Zhang, and Peng Zhou, Xiangzhong Liu, and Baiyun Huang, “Microstructure and composition of segregation layers at WC/Co interfaces in ultrafine-grained cemented carbides co-doped with Cr and V,” Int. J. Refract. Met. Hard. Mater., 58, 68-73 (2016).
525. Yi Kong, Jingwu Pi, Shidi Xiao, and Yong Du,”Asymmetric mixing behavior and stability of the predicted phases in the W–Cu system,” CALPHAD, 53, 116-121 (2016).
524. Jingwu Pi, Yi Kong, Li Chen, and Yong Du, “ Ab initio molecular dynamics studies on effect of Zr on oxidation resistance of TiAlN coatings,” Appl. Sur. Sci., 378,293-300 (2016).
523. Yue Qiu, Yi Kong, ShiDi Xiao, and Yong Du, “Mechanical properties of β” precipitates containing Al and/or Cu in age hardening Al alloys,” J.Mater.Res.,31,580-88 (2016).
522. Shidi Xiao, Yi Kong, Yue Qiu, and Yong Du, “The microstructure evolution of U1 and U2 nanowires constrained in Al matrix,” Comput. Mater. Sci., 117, 180-87 (2016).
521. Kaiming Cheng, Lijun Zhang , Christian Schwarze , Ingo Steinbach, and Yong Du," Phase-field simulation of liquid phase migration in the WC–Co system during liquid phase sintering," Int. J. Mater. Res., 107, 309-314 (2016).
520. Rong Wang, Weimin Chen, Ying Tang, Lijun Zhang, Yong Du, Zhanpeng Jin, and Dragana  Zˇivkovic, "Diffusivities, atomic mobilities, and simulation of ternary eutectic solidification in the Ag–Al–Cu melts," J. Mater. Sci., 51, 5979-91 (2016).
519. Yafei Pan, Peng Zhou, Yingbiao Peng, Yong Du, and Fenghua Luo, "A thermodynamic description of the C–Hf–Ta system over the whole composition and temperature ranges," CALPHAD, 53, 1-9 (2016).
518. Yafei Pan, Peng Zhou, Yong Du, Yingbiao Peng, Chong Chen, and Fenghua Luo, "Experimental study on phase relationships in the Co-rich portion of the Co–Ti–Zr system," Int. J. Mater. Res., 107, 217-228 (2016).
517. Biao Hu, Jiong Wang, Yong Du, Qingping Wang, and Fanfei Min, "Thermodynamic reassessment of the Au–Dy system supported by first-principles calculations," CALPHAD, 53, 49-54 (2016).
516. Jianchuan Wang, Yong Du, and Lixian Sun, "Ca-decorated novel boron sheet: A potential hydrogen storage medium," Int. J. Hydro. Energy, 41, 5276-83 (2016).
515. Jinghua Xin, Jianchuan Wang, Yong Du, Lixian Sun, and Baiyun Huang," Site preference and diffusion of hydrogen during hydrogenation of Mg: A first-principles study," Int. J. Hydro. Energy, 41, 3508-16 (2016).
514. Na Li, Weibin Zhang, Yingbiao Peng, and Yong Du, "Effect of the cubic phase distribution on ultrafine WC–10Co–0.5Cr–xTa cemented carbide," J. Am. Ceram. Soc., 99(3) 1047-54 (2016).
513. X. Yang, Y. Tang, D. Cai, L. Zhang, Yong Du, and S. Zhou, "Comparative analysis of different numerical schemes in solute trapping simulations by using the phase-field model with finite interface dissipation," J. Min. Metall. Sect. B-Metall. 52 (1) 77-85 (2016)
512. Kai Wang, Ming Wei, Lijun Zhang and Yong Du, "Morphologies of primary silicon in hypereutectic Al-Si alloys: phase-field simulation supported by key experiments," Metall. Mater. Trans. A, 47A,1510-16 (2016).
511. J. Zhao, J.  Zhou, S. Liu, Yong Du, S. Tang, and Y. Yang," Phase diagram determination and thermodynamic modeling of the Cu-Mg-Si system," J. Min. Metall. Sect. B-Metall. 52 (1) 99 - 112 (2016).
510. Xiaohui Yang, Degao Wang, Zhenggang Wu, Jianhong Yi, Song Ni, Yong Du, and Min Song, "A coupled EBSD/TEM study of the microstructural evolution of multi- axial compressed pure Al and Al–Mg alloy," Mater. Sci. Eng. A, 658, 16-27 (2016).
509. Weimin Chen, Lijun Zhang, and Yong Du, "Diffusivities and atomic mobilities in Sn–Ag–In and Sn–Ag–Sb melts," CALPHAD, 52, 159-68 (2016).
508. Yuling Liu, Shuhong Liu,  Cong Zhang,  Xingxu Lu, Chong Chen, Yong Du, and Dragana Živković, "Thermodynamic Assessment of the Bi–Ni and Bi–Ni–X (X = Ag, Cu) Systems," J. Electron. Mater., 45(2) 1041-56 (2016).
507. Fan Zhang,  Aning Qin, Shuhong  Liu,  Jiong Wang, and Yong Du, "Phase equilibria and solidification characteristics of the Al–Sc–Si alloys," J. Mater. Sci., 51, 1644-58 (2016).
506. Hua Zhou,Chong Chen, Yao Wang, Yong Du, and Shuhong Liu,“Experimental investigation and thermodynamic calculation of the Mg–Mn–Sr system,” CALPHAD, 52, 110-119(2016).
505. Fan Zhang, Shuhong Liu, and Yong Du,“Experimental investigation and thermodynamic modeling of the La-Mg system," J. Alloy Compd., 663, 279-88 (2016).
504. Weibin Zhang, Yong Du, and Yingbiao Peng, " Effect of TaC and NbC addition on the microstructure and hardness in graded cemented carbides: Simulations and experiments," Ceramics International, 42, 428-35 (2016).
503. Biao Hu, Ming Yin, Qingping Wang, Fanfei Min, and Yong Du, "Thermodynamic analysis of phase diagram for V⁃M(M=Li,Na,K,Sc,Ag)binary systems," Ordnance Mater. Sci. Engr, 38, 16-20 (2015)(in Chinese).
502. Cong Zhang, Yong Du,  Shuhong Liu, Shaojun Liu, Wanqi Jie, and Bosse Sundman, " Microstructure and Thermal Conductivity of the As-Cast and Annealed Al–Cu–Mg–Si Alloys in the Temperature Range from 25oC to 400oC," Int. J. Thermophys., 36, 2869-80(2015).
501. B. Hu, Yong Du, J.-J. Yuan, Z.-F. Liua, and Q.-P. Wang, "Thermodynamic reassessment of the Mn-Ni-Si system", J. Min. Metall. Sect. B-Metall., 51 (2) B , 125-132 (2015).

500. Juan Chen, Jinkun Xiao, Lijun Zhang, and Yong Du, " Interdiffusion in fcc Ni-X (X = Rh, Ta, W, Re and Ir) alloys," J. Alloy Compd., 657, 457-63 (2016).