Folgen
Qingyan XU
Qingyan XU
Bestätigte E-Mail-Adresse bei tsinghua.edu.cn
Titel
Zitiert von
Zitiert von
Jahr
Effect of cooling rate on solidification parameters and microstructure of Al-7Si-0.3 Mg-0.15 Fe alloy
C Rui, YF Shi, QY Xu, B Liu
Transactions of Nonferrous Metals Society of China 24 (6), 1645-1652, 2014
1602014
The crystal growth, intercellular spacing and microsegregation of selective laser melted Inconel 718 superalloy
P Tao, H Li, B Huang, Q Hu, S Gong, Q Xu
Vacuum 159, 382-390, 2019
1462019
Correlation of solidification microstructure refining scale, Mg composition and heat treatment conditions with mechanical properties in Al-7Si-Mg cast aluminum alloys
R Chen, Q Xu, H Guo, Z Xia, Q Wu, B Liu
Materials Science and Engineering: A 685, 391-402, 2017
962017
Cellular automaton simulation of three-dimensional dendrite growth in Al–7Si–Mg ternary aluminum alloys
R Chen, Q Xu, B Liu
Computational Materials Science 105, 90-100, 2015
962015
Deformation and recrystallization of single crystal nickel-based superalloys during investment casting
Z Li, J Xiong, Q Xu, J Li, B Liu
Journal of Materials Processing Technology 217, 1-12, 2015
862015
Precipitation behavior and hardening effects of Si-containing dispersoids in Al–7Si–Mg alloy during solution treatment
R Chen, Q Xu, Z Jia, B Liu
Materials & Design 90, 1059-1068, 2016
812016
A modified cellular automaton model for the quantitative prediction of equiaxed and columnar dendritic growth
R Chen, Q Xu, B Liu
Journal of Materials Science & Technology 30 (12), 1311-1320, 2014
702014
Modeling the precipitation kinetics and tensile properties in Al-7Si-Mg cast aluminum alloys
R Chen, Q Xu, H Guo, Z Xia, Q Wu, B Liu
Materials Science and Engineering: A 685, 403-416, 2017
682017
GPU-accelerated three-dimensional phase-field simulation of dendrite growth in a nickel-based superalloy
C Yang, Q Xu, B Liu
Computational Materials Science 136, 133-143, 2017
672017
Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: Effects of microstructures and as-built surface quality
P Tao, H Li, B Huang, Q Hu, S Gong, Q Xu
China Foundry 15, 243-252, 2018
552018
Microstructure, mechanical properties, and constitutive models for Ti–6Al–4V alloy fabricated by selective laser melting (SLM)
P Tao, J Zhong, H Li, Q Hu, S Gong, Q Xu
Metals 9 (4), 447, 2019
502019
Experimental study on mechanical properties of silica-based ceramic core for directional solidification of single crystal superalloy
Z Xu, J Zhong, X Su, Q Xu, B Liu
Ceramics International 44 (1), 394-401, 2018
482018
Microstructural evolution and compositional homogenization of a low Re-bearing Ni-based single crystal superalloy during through progression of heat treatment
X Su, Q Xu, R Wang, Z Xu, S Liu, B Liu
Materials & Design 141, 296-322, 2018
462018
Microstructure simulation on recrystallization of an as-cast nickel based single crystal superalloy
Z Li, Q Xu, B Liu
Computational Materials Science 107, 122-133, 2015
462015
Modeling of grain selection during directional solidification of single crystal superalloy turbine blade castings
D Pan, Q Xu, B Liu, J Li, H Yuan, H Jin
Jom 62, 30-34, 2010
452010
Numerical methods to improve the computational efficiency of solidification simulation for the investment casting process
XP Zhang, SM Xiong, QY Xu
Journal of materials processing technology 173 (1), 70-74, 2006
432006
Experimental investigation on recrystallization mechanism of a Ni-base single crystal superalloy
Z Li, Q Xu, B Liu
Journal of Alloys and Compounds 672, 457-469, 2016
422016
Numerical simulation of solidification process on single crystal Ni-based superalloy investment castings
Y Jing, X Qingyan, C Kai, LIU Baicheng, YK Akihiko KIMATSUKA
Journal of Materials Sciences and Technology 23 (01), 47, 2007
362007
Microstructure simulation of aluminum alloy using parallel computing technique
W Feng, QY Xu, B Liu
ISIJ international 42 (7), 702-707, 2002
352002
Multiphase-field and experimental study of solidification behavior in a nickel-based single crystal superalloy
C Yang, Q Xu, X Su, B Liu
Acta Materialia 175, 286-296, 2019
342019
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20