代表性论著: |
[1] Chang D M, Liu X F, Jin G, Han J X. Non-Fourier thermal shock resistance of the ceramic plate with an embedded elliptical crack. Archive of Applied Mechanics, 2022 (SCI期刊, Major revisions) [2] Chang D M, Wang B L, Liu X F, Wang T G, Jin G, Han J X. Non-Fourier thermal shock resistance and transient thermal fracture of magneto-electro-elastic composite with a penny-shaped crack. Engineering Fracture Mechanics, 2021, 253: 107871 (SCI期刊, JCR影响因子:4.898, 检索号:UA2EK) [3] Chang D M, Liu X F, Wang B L, Wang Q, Wang T G, Han J X. Thermal shock resistance and thermal fracture of a thermopiezoelectric cylinder based on hyperbolic heat conduction. Engineering Fracture Mechanics, 2020, 230: 107003 (SCI期刊, JCR影响因子:4.898, 检索号:KZ5EU) [4] Chang D M, Liu X F, Wang B L, Liu L, Wang T G, Wang Q, Han J X. Exact solutions to magneto-electro-thermo-elastic fields for a cracked cylinder composite during thermal shock. International Journal of Mechanics and Materials in Design, 2020, 16: 3–18 (SCI期刊, JCR影响因子:3.561, 检索号:KV2VH) [5] Chang D M, Liu X F, Wang B L, Wang T G, Wang Q. Non-Fourier thermal shock fracture of solids with shallow semi-elliptical surface crack. Theoretical and Applied Fracture Mechanics, 2018, 96: 160-167 (SCI期刊, JCR影响因子:4.374, 检索号:GQ2LC) [6] Liu X F, Chang D M, Wang B L, Cai L R. Effect of temperature-dependency of material properties on thermal shock fracture of solids associated with non-Fourier heat conduction. Theoretical and Applied Fracture Mechanics, 2018, 93: 195-201 (SCI期刊, JCR影响因子:4.374, 检索号:FT2UX) [7] Chang D M, Wang B L. Surface thermal shock cracking of a semi-infinite medium: a nonlocal analysis. Acta Mechanica, 2015, 226(12): 4139-4147. (SCI期刊, JCR影响因子:2.645, 检索号:CX2GB) [8] Chang D M, Wang B L. Strength evaluation of brittle ceramics with surface defects subjected to thermal shock. Philosophical Magazine, 2014, 94(23): 2633-2646 (SCI期刊, JCR影响因子:1.948, 检索号:AM7ML) [9] Chang D M, Liu X F. Transient thermal cracking of a brittle half space medium with a semi-elliptical surface crack. Theoretical and Applied Fracture Mechanics, 2013, 66: 37-40 (SCI期刊, JCR影响因子:4.374, 检索号:AE3EF) [10] Chang D M, Wang B L. Transient thermal elastic fracture of a piezoelectric cylinder specimen. Archive of Applied Mechanics, 2013, 83(5): 709-721 (SCI期刊, JCR影响因子:2.467, 检索号:115NA) [11] Chang D M, Wang B L. Transient thermal fracture and crack growth behavior in brittle media based on non-Fourier heat conduction. Engineering Fracture Mechanics, 2012, 94: 29-36 (SCI期刊, JCR影响因子:4.898, 检索号:036GU) [12] Chang D M, Wang B L. Thermal shock resistance of brittle ceramic materials with embedded elliptical cracks. Philosophical Magazine Letters, 2011, 91(10): 648-655 (SCI期刊, JCR影响因子:1.195, 检索号:820EU) [13] Han J X, Li L, Jin G, Ma W K, Feng J J, Jia H L, Chang D M. Qualitative identification of the static pull-in and fundamental frequency of one-electrode MEMS resonators. Micromachines, 2018, 9(12): 614. (SCI期刊, JCR影响因子:2.862, 检索号:HG6EC) |