张长兴-力学系硕导简介(英文)

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Dr. ZHANG Chang-xing

Dr. ZHANG Chang-xing

Email: thuzhangcx2007@foxmail.com

Academic Qualifications

1. 2011.9-2016.7, Doctor, Tsinghua University, School of Aerospace Engineering, Mechanics

2. 2007.9-2011.7, Bachelor, Tsinghua University, School of Aerospace Engineering, Engineering Mechanics and Aerospace Engineering

Working Experience

1. 2020.9 up to now, Lecturer, Faculty of Civil Engineering and Mechanics, Kunming University of Science and Technology,

2. 2019.10-2020.8, Lecturer, Aviation College, Kunming University of Science and Technology

3. 2016.12-2019.7, Post-doctor, Mechanics, Tsinghua University

Research Fields

1. Experimental solid mechanics

2. Optical mechanics

3. Structural health monitoring

Research Fundings

1. National Natural Science Foundation of China, 11802155, Study of heat protection material oxidation and ablation real time observation technique and failure mechanism in high temperature environment

2. Talent Introduction Program of Kunming University of Science and Technology, 141120200009, Structural health monitoring technique study of highway bridges and pavement

Honors and Awards

1. First prize of China Machinery Industry Science and Technology Awards, Rank 6

2. Second prize of Beijing Science and Technology Awards, Rank 6

Papers:

[1] Changxing Zhang, Xuelin Dong, Xue Feng, et al. Multiwavelength shearing interferometry for measuring the slopes, curvatures, and shapes of thin films/substrate systems, Optics Letters, 2013, 38(24), 5446-5449.

[2] Xuelin Dong, Changxing Zhang, Xue Feng, et al. Full-field measurement of topography and curvature by coherent gradient sensing method at high temperature, Experimental Mechanics, 2013, 53(6), 959-963.

[3] Changxing Zhang, Zhe Qu, Xufei Fang, et al. Full-field measurement of surface topographies and thin film stresses at elevated temperatures by digital gradient sensing method, Applied Optics2015, 54(4), 721-727.

[4] Changxing Zhang, Zhe Qu, Xufei Fang, et al. Digital Gradient Sensing Method to Evaluate Thermal Stress at Elevated Temperatures, Experimental Mechanics, 2016, 56(6), 1123-1133.

[5] Honghong Su, Xufei Fang, Zhe Qu, Changxing Zhang, et al. Synchronous Full-Field Measurement of Temperature and Deformation of C/SiC Composite Subjected to Flame Heating at High Temperature[J]. Experimental Mechanics, 2016, 56(4):659-671.

[6] Xuelin Dong, Changxing Zhang, Xue Feng, et al. Analysis and improvement of accuracy, sensitivity, and resolution of the coherent gradient sensing method. Applied Optics, 2016, 55(17), 4752.

[7] Shisheng Cai, Changxing Zhang, Haicheng Li, et al. Surface evolution and stability transition of silicon wafer subjected to, nano-diamond grinding. AIP Advances, 2017, 7(3), 035221.

[8] Haicheng Li, Yun Xu, Xiaomin Li, Ying Chen, Yu Jiang, Changxing Zhang, et al. Epidermal inorganic optoelectronics for blood oxygen measurement. Advanced Healthcare Materials, 2017, 1601013.

[9] Xufei Fang, Zhe Qu, Changxing Zhang, Xue Feng, In-situ testing of surface evolution of sic during thermal ablation: mechanisms of formation, flowing and growth of liquid silica beads, Ceramics International, 2017, 43(9), 7040-7047.

[10] Haicheng Li, Changxing Zhang, Xue Feng, The Monte Carlo simulation of light scattering in tissue for the design of skin-like optical devices, Biomedical Optics Express, 2019, 10(2), 868-878.

Patent:

[1] A device and method for detecting mechanics-electromagnetic coupling behavior of giant magnetoresistance films

[2] A multi-wavelength shear interferometry method for measuring object surface morphology

[3] A method for measuring surface curvature by double wavelength shear interferometry in high temperature environment

[4] A three-dimensional reconstruction method of air refractive index under high temperature air flow disturbance

[5] A method for measuring object deformation through flame smoky environment

[6] A device and method for measuring refractive index change under the force- heat-magnet-electric coupling environment

[7] A device and method of measuring material oxidation ablation in high temperature wind tunnel


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