

Master Thesis,” Master's Thesis, Shanghai University of Engineering Science, 2016 Zhang, “Research of Fatigue Damage of Automotive Sheet of Aluminum Alloy based on CT/Ultrasonic Scan. In: 11th International Conference on Computational Science and Its Applications (Springer, Spain, 2011), p 624-634 Yoon, Removal of surface artifacts of material volume data with defects. Charkaluk, Coupling of X-Ray Computed Tomography and Surface in situ Analysis Combined with Digital Image Correlation Method to Study Low Cycle Fatigue Damage Micromechanisms in Lost Foam Casting A319 Alloy, Fatigue Fract. Withers, In-situ Synchrotron X-ray Tomography Investigation of Damage Mechanism of an Extruded Magnesium Alloy in Uniaxial Low-cycle Fatigue with Ratchetting, Acta Mater., 2021, 211, p 116881. Srirangam, X-ray Computed Tomography Studies on Porosity Distribution in Vacuum Induction Cast Al-7Si Alloys, JOM, 2021, 73(12), p 3866-3872. Balloy, In-situ 3D Characterization of Tensile Damage Mechanisms in A319 Aluminium Alloy Using X-ray Tomography and Digital Volume Correlation, Mat.
#Element 3d materials crack#
Sun, Crack Propagation Behavior of Die-cast AlSiMgMn Alloys with in-situ SEM Observation and Finite Element Simulation, Mater. Osmond, Investigation of the Effect of Porosity on the High Cycle Fatigue Behaviour of Cast Al-Si Alloy by X-ray Micro-Tomography, Int.


Zhang, Fatigue Life Prediction of Aluminum Alloy 6061 Based on Defects Analysis, Int. Shen, A Multiresolution Investigation on Fatigue Damage of Aluminum Alloys at Micrometer Level, Int. Wicke, 3D Characterization of Fatigue Damage Mechanisms in a Cast Aluminum Alloy Using X-ray Tomography, Int. Vincent, 3D Characterization and Modeling of Low Cycle Fatigue Damage Mechanisms at High Temperature in a Cast Aluminum Alloy, Acta Mater., 2017, 123(16), p 24-34. Zou, Effect of Micro-porosities on Fatigue Behavior in Aluminum Die Castings by 3D X-ray Tomography Inspection, ISIJ Int., 2014, 54(3), p 511-515.ĭ. Zhou, Experimental Investigation and Numerical Modeling of Strength Properties of Iron Ore Sinter Based on Pilot-Scale Pot Tests and X-ray Computed Tomography, J. Adrien, 3D Characterization of the Influence of Porosity on Fatigue Properties of a Cast Al Alloy, Adv. Laserre, An Energy Based Criterion for High Cycle Multiaxial Fatigue, Eur. Kumosa, A Modal Acoustic Emission Signal Classification Scheme Derived from Finite Element Simulation, Int. Taehyo, Nondestructive Damage Evaluation of Plates Using the Multi-Resolution Analysis of two-Dimensional Haar Wavelet, J. Sedov, Modeling and Measuring all the Elements of an Ultrasonic Nondestructive Evaluation System I: Modeling Foundations, Res. Chen, CPU/CPU Parallel Computation of Material Damage, Eng. Wang, Evaluation and Prediction of Material Fatigue Characteristics Under Impact Loads: Review and Prospects, Int J Struct Integr, 2022, 13(2), p 251-277. Verdu, Influence of Casting Defects on The Fatigue Behavior of Cast Aluminum AS7G06-T6, Int. McDowell, Microstructural Inclusion Influence on Fatigue of a Cast A356 Aluminum aLloy, Metall.
