Zizi Lu, Ph.D.
Affiliations: | 2011 | Clarkson University, Potsdam, NY, United States |
Area:
Civil EngineeringGoogle:
"Zizi Lu"Parents
Sign in to add mentorYongming Liu | grad student | 2011 | Clarkson University | |
(A small time scale model for fatigue crack growth analysis.) |
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Publications
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Li L, Wang J, Li Y, et al. (2016) The Podocyte Count Detected by an Improved Immunocytochemical Method has Higher Diagnostic Efficiency than Enzyme-Linked Immunosorbent Assay and Serum Cystatin C to Evaluate the Early Stage Damage of Glomerular. Journal of Clinical Laboratory Analysis |
Qiu X, Ding L, Huang Y, et al. (2016) Intermittency measurement in two-dimensional bacterial turbulence. Physical Review. E. 93: 062226 |
Lu Z, Liu Y, Wang H, et al. (2016) Verification and improvement of equivalent refractive index models for evaluating the shielding effectiveness of high-transmittance double-layer metallic meshes. Applied Optics. 55: 5372-5378 |
Lu Z, Xu J, Wang L, et al. (2015) Curvilinear fatigue crack growth simulation and validation under constant amplitude and overload loadings Journal of Aerospace Engineering. 28: 4014054-4014054 |
He J, Lu Z, Liu Y. (2012) New Method for Concurrent Dynamic Analysis and Fatigue Damage Prognosis of Bridges Journal of Bridge Engineering. 17: 396-408 |
Lu Z, Liu Y. (2012) A comparative study between a small time scale model and the two driving force model for fatigue analysis International Journal of Fatigue. 42: 57-70 |
Liu Y, Lu Z, Xu J. (2012) A simple analytical crack tip opening displacement approximation under random variable loadings International Journal of Fracture. 173: 189-201 |
Lu Z, Liu Y. (2011) Experimental investigation of random loading sequence effect on fatigue crack growth Materials & Design. 32: 4773-4785 |
Lu Z, Liu Y. (2010) Small time scale fatigue crack growth analysis International Journal of Fatigue. 32: 1306-1321 |
Xiang Y, Lu Z, Liu Y. (2010) Crack growth-based fatigue life prediction using an equivalent initial flaw model. Part I: Uniaxial loading International Journal of Fatigue. 32: 341-349 |