Issue 40
Z. Zhang et alii, Frattura ed Integrità Strutturale, 40 (2017) 149-161; DOI: 10.3221/IGF-ESIS.40.13 161 2407-2419. [2] Choo, B.S., Coull , A., Stiffening of laterally loaded coupled shear walls on elastic foundations, Building and Environment, 4(19) (1984) 251-256. [3] Chung, H. S. , Moon, B. W. , Lee, S. K. , Seismic performance of friction dampers using flexure of RC shear wall system, Structural Design of Tall & Special Buildings, 18(7) (2009) 807-822 . [4] Rassati, G. A. , Fortney, P. J , Shahrooz, B. M., Performance evaluation of innovative hybrid coupled core wall systems, American Society of Civil Engineers , (396) (2011) 479-492 . [5] Fortney, P. J., Shahrooz, B. M., Rassati, G. A., The next generation of coupling beams, Composite Construction in Steel and Concrete, V. ASCE (2014) 619-630. [6] Kim, H. J. , Choi, K. S. , Oh, S. H. , Comparative study on seismic performance of conventional RC coupling beams and hybrid energy dissipative coupling beams used for RC shear walls, 15WCEE , Lisbon , Portugal, (2012) 2254. [7] Oh, S. H. , Choi, K. Y. , Kim, H. J., Experimental validation on dynamic response of RC shear wall systems coupled with hybrid energy dissipative devices, 15WCEE , Lisbon , Portugal, (2012) 1422. [8] Mao, C. , Dong, J. , Li, H. , Seismic performance of RC shear wall structure with novel shape memory alloy dampers in coupling beams, Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series, (2012) 304-320 . [9] Li D, Zhang S, Yang W, Zhang W. Corrosion monitoring and evaluation of reinforced concrete structures utilizing the ultrasonic guided wave technique. International Journal of Distributed Sensor Networks, 10(2) (2014) 827130. [10] La Rosa, G., Risitano, A., Thermographic methodology for the rapid determination of the fatigue limit of materials and mechanical components, International Journal of Fatigue, 22 (2000) 65-73. [11] Junling, F., Qiang, G., Yanguang, Z., Stress analysis and fatigue behavior assessment of components with defect based on FEM and Lock-in thermography, Journal of Materials Engineering (8) (2015) 62-71. (in Chinese) [12] Todhunter, I., Pearson, K., History of the theory of elasticity and of the strength of materials, Cambridge: Cambridge University Press, (1886) 291-364. [13] Dulieu-Barton, J. M., Stanley, P., Development and applications of thermoelastic stress analysis, The Journal of Strain Analysis for Engineering Design, 33(2) (1998) 93-104. [14] Inglis, N. P., Hysteresis and fatigue of Wohler rotating cantilever specimen, The Metallurgist, 1(1) (1927) 23-27. [15] Luong, M. P., Fatigue limit evaluation of metals using an infrared thermographic method, Mechanics of Materials, 28(1-4) (1998) 155-163 [16] Fargione, G., Geraci, A., La Rosa, G., Rapid determination of the fatigue curve by the thermographic method [J]. International Journal of Fatigue, 24(1) (2002) 11-19. [17] Curà, F., Curti, G., Sesana R. A new iteration method for the thermographic determination of fatigue limit in steels. International Journal of Fatigue, 27(4) (2005) 453-459. [18] Junling, F., Xinglin, G., Yanguang, Z., Predictions of S-N curve and residual life of welded joints by quantitative thermographic method, Journal of Materials Engineering, (12) (2011) 29-33. (in Chinese). [19] Junling, F., Xinglin, G., Chengwei, W., Effect of heat treatments on fatigue properties of FV520B steel using infrared thermography, Chinese Journal of Materials Research, 26(1) (2012) 61-67. (in Chinese). [20] Zhang Z, Ou J, Li D, Zhang S. Optimization Design of Coupling Beam Metal Damper in Shear Wall Structures. Applied Sciences. 7(2) (2017) 137. [21] Carlomagno, G. M., Berardi, P. G., Unsteady thermotopography in non-destructive testing, C. Warren, ed. Proceedings of the III infrared Information Exchange, St. Louis/ USA.
Made with FlippingBook
RkJQdWJsaXNoZXIy MjM0NDE=