Advances in Material Engineering and Mechanical Engineering by Edited by Liang Gao

By Edited by Liang Gao

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Extra resources for Advances in Material Engineering and Mechanical Engineering

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L. Zhao. Fatigue tests and design of thin CHS-plate T-joints under cyclic in-plane bending[J]. Thin-Walled Structures, Volume 45, Issue 4, April 2007, Pages 463-472. [9] T. Usami, H. B. Ge. Cyclic behavior of thin-walled steel structures—numerical analysisCyclic behavior of thin-walled steel structures—numerical analysis[J]. Thin-Walled Structures, Volume 32, Issues 1-3, September 1998, Pages 41-80. [10] Mohamed Elgaaly. Thin steel plate shear walls behavior and analysis[J]. Thin-Walled Structures, Volume 32, Issues 1-3, September 1998, Pages 151-180.

Geomech, 2007, 31:133-146. Solids Structures,1982,18(7):551-562. [7] Tang C A,Yang W T,Fu Y F,et al. A new approach to numerical method of modeling geological processes and rock engineering problems-continuum to discontinuum and linearity to nonlinearity[J]. Engineering Geology,1998,49(3/4):207–214. [8] Wu Zheng, Zhang Chenjuan. Investigation of rock damage model and its mechanical behavior [J]. Chinese Journal of Rock Mechanics and Engineering, 1996,15(1):55-61. 39 Strain Fatigue Behavior of Thin-Walled Tubes of Zr-1Nb and Zr-4 and Thin Plates of N18 at Elevated Temperatures Q.

9] T. Usami, H. B. Ge. Cyclic behavior of thin-walled steel structures—numerical analysisCyclic behavior of thin-walled steel structures—numerical analysis[J]. Thin-Walled Structures, Volume 32, Issues 1-3, September 1998, Pages 41-80. [10] Mohamed Elgaaly. Thin steel plate shear walls behavior and analysis[J]. Thin-Walled Structures, Volume 32, Issues 1-3, September 1998, Pages 151-180. [11] Wisner S B , Reynolds M B , Adamson R B. Fatigue behavior of irradiated and unirradiated zircaloy and zirconium[A] .

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