ZHANG, Kaixuan

ZHANG, Kaixuan
Associate Professor

Work Address:  Room 205, Siyuan Hall, School of Medicine, 94 Weijin Road, Nankai District, Tianjin 300071, China

Telephone:  +86-18800204192

Fax:  

E-mail:  kaixuan_zhang@nankai.edu.cn

Research Focus

1.       Orthopedic iomechanics; 2.  Biomechanics and bionics; 3.  Bioinformatics

Education

Ph.D., Tongji University, School of Aerospace Engineering and Applied Mechanics, 2019

Joint Ph.D. (CSC), Brown University, Division of Applied Mathematics, 2018

B.E., Nanjing University of Aeronautics and Astronautics, College of Aerospace Engineering, 2015

Professional Experience

2022 - present Associate Professor, School of Medicine, Nankai University

2020 - 2022 Post Doctor, School of Aerospace Engineering, Tsinghua University

Publications (*corresponding author, #first author)

1.         Zhang,   H., Zhang, K.X., Li, M.,   Shao, Y.*, Feng, X.–Q.* Force-regulated state   transitions of growing axons. Phys. Rev. Lett.2022, 129(12), 128101.

2.         Fang,   W., Zhang, K.X., Jiang, Q.,   Lv, C., Sun, C., Li, Q., Song, Y., Feng, X.–Q.* Drop impact   dynamics on solid surfaces. Appl. Phys. Lett. 2022, 121(21), 210501.   (Featured   Article)

3.         Zhang, K.X.#, Li, J.#,   Fang, W.#, Lin, C.*, Zhao, J., Li, Z., Liu, Y., Chen, S.*,   Lv, C., Feng, X.–Q. An energy-conservative many-body dissipative particle   dynamics model for thermocapillary drop motion. Phys. Fluids2022, 34,   052011.

4.         Zhang, K.X.*, Fang, W., Lv, C.,   Feng, X.–Q. Evaporation of liquid nanofilms: A minireview. Phys.   Fluids 2022, 34, 021302.

5.         Zhang, K.X., Zhao, J., Liu, Y., Chen,   S.* Analytical prediction of electrowetting-induced jumping motion   for droplets on textured hydrophobicsubstrates: effects of the wetting   states. Phys. Fluids 2022, 34, 032001.

6.         Zhang, K.X., Wang, G., Zhang, S.,   Chen, S.* Shear-thinning property of liquid system in many-body   dissipative particle dynamics model. Mod. Phys. Lett. B 2022, 2250062.

7.         Xiao,   L., Chu, J., Lin, C.*, Zhang,   K.X., Chen, S., Liu, Y. Simulation of a tumor cell flowing through a   symmetric bifurcated microvessel. Biomech. Model. Mechan. 2022, https://doi.org/10.1007/s10237-022-01649-3.

8.         Li,   J., Zhang, K.X.*,   Lin, C., Xiao, L., Liu, Y., Chen, S.* Many-body dissipative   particle dynamics with energy conservation: temperature-dependent long-term   attractive interaction. Appl. Math. Mech.ENGL 2022, 43, 497–506.

9.         Yu,   Z.#, Zhang, K.X.#,   Zhao, J., Chen, S.*, Lin, C., Liu, Y. Coalescence-induced jumping   of droplets on superhydrophobic substrates with a beam structure. Appl.   Surf. Sci.2022, 582(1),   152284.

10.     Yang,   X., Zhang, K.X.*   The classification of the single traveling wave solutions to the KdV equation   with higher-order nonlinearity.Mod. Phys. Lett. B 2022, 2150585.

11.     Ye,   S., Li, M., Zhang, K.X.,   Zhao, H.P., Feng, X.–Q.* Extracting the properties of constituent   phases from the overall response of composites: A deep neural network method.   Compos.   Struct. 2022, 293, 115707.

12.     Zhang,   H., Wang, H.*, Gao, Y., Zhang,   K.X., Vella, D., Feng, X.–Q.* Mechanical–electrochemical   coupling theory of bacterial cells. Int. J. Solids Struct. 2022, 252, 111804.   

13.     Zhao,   J., Chen, S.*, Zhang,   K.X., Cao, D., Liu, Y. Numerical study on the bouncing dynamics of   droplets impacting on a macro-textured superhydrophobic surface. Comput.   Fluids 2022, 105383.

14.     Yu,   X., Zhao, J.*, Chen, S., Huang, D., Zhang, K.X., Cao, D. The calibration for many-body   dissipative particle dynamics by using back-propagation neural networks. Mol.   Simulat. 2022, 1–10.

15.     Xiao,   L., Zhang, K.X.*,   Zhao, J., Chen, S.*, Liu, Y. Viscosity measurement and simulation   of microbubble wetting on flat surfaces with many-body dissipative particle   dynamics model. Colloid. Surface. A 2021, 608, 125559.

16.     Zhao,   J., Chen, S.*, Zhang,   K.X., Liu, Y. A review of many-body dissipative particle dynamics   (MDPD): Theoretical models and its applications. Phys. Fluids2021, 33, 112002.

17.     Lin,   C.,Zhang, K.X.,Chen, X., Xiao, L., Chen, S.*,   Zhu, J., Zou, T. Reducing droplet contact time and area by craterlike surface   structure. Phys. Rev. Fluids 2021, 6, 083602.

18.     Wang,   Y., Zhang, K.X., Zhao, J.*,   Wang Y.*, Wang, S. Post-impact dynamics of droplet on bare   stranded overhead power transmission lines with varying surface properties. Colloid.   Surface. A 2021, 609, 125690.

19.     Zhao,   J., Zhou, N., Zhang, K.X.,   Chen, S.*, Liu, Y. Study on stretching liquid bridges with   symmetric and asymmetric surface wettability. Phys. Rev. Fluids 2020,   5, 064003.

20.     Zhao,   J., Zhou, N., Zhang, K.X.,Chen, S.*, Liu, Y., Wang,   Y.X. Rupture process of liquid bridges: The effects of thermal fluctuations. Phys.   Rev. E 2020, 102, 023116.

21.     Zhou,   N., Zhao, J., Chen, S.*, Liu, Y., Zhang, K.X. Simulation of liquid transfer between the   plate and the groove. Mod. Phys. Lett. B 2020, 34,   2050331.

22.     Zhang, K.X., Li, Z.*,   Chen, S.* Analytical prediction of electrowetting-induced jumping   motion for droplets on hydrophobic substrates. Phys. Fluids2019, 31,   081703.

23.     Zhang, K.X.#, Li, Z.#, *,   Maxey, M., Chen, S.*, Karniadakis, G. E. Self-cleaning of   hydrophobic rough surfaces by coalescence-induced wetting transition. Langmuir2019, 35, 6, 2431–2442. (Cover Article)

24.     Zhang, K.X., Zhao J., Chen, S.*,   Liu, Y. Effects of a chemically heterogeneous island on the dynamic contact   angles of droplets. Appl. Surf. Sci. 2019, 486,   337–343.

25.     Zhang, K.X., Chen, S.*,   Wang, Y.X. Ratio dependence of contact angle for droplet wetting on   chemically heterogeneous substrates. Colloid. Surface. A 2018, 539,   237–242.

Projects

1.    National Natural Science Foundation of China (#12102218), Theoretical and Experimental Studies on Dynamic Wetting Behaviors of Microorganism-laden Droplets on Solid Surfaces, 2022-2024.

2.    China Postdoctoral Science Foundation (#2020M680525), Dissipative Particle Dynamics Study on Ice Formation Mechanism of Droplets on Superhydrophobic Surfaces, 2020-2022.

Teaching

Bioinformatics