Advancement of Optical Methods and Fracture and Fatigue, Volume 3

Advancement of Optical Methods and Fracture and Fatigue, Volume 3

Proceedings of the 2023 Annual Conference on Experimental and Applied Mechanics

Hwang, Chi-Hung; Pataky, Garrett; Furlong, Cosme; Hutchens, Shelby; Berke, Ryan; Shaw, Gordon

Springer International Publishing AG

03/2024

117

Dura

Inglês

9783031504983

15 a 20 dias

Descrição não disponível.
Blast Production by a Shock Tube for use in Studies of Exposure of the Tympanic Membrane to High-intensity Sounds.- Preliminary Characterization of a Hollow Cylindrical Ultrasonic Motor by Finite Element Modeling and Digital Holographic Interferometry.- Evaluating Strains Around Fiber and Matrix Interface of CFRP Using Global Digital Image Correlation.- The Development of a Novel Photoelastic and Mechanoluminescent Coating for Full-Field Strain Measurements.- Two-Step Fringe Analysis for Fringe Projection Profile Measurement.- Non-destructive Crack Detection by High-speed Digital Holographic Interferometry and Impact-induced Traveling Waves.- On the use of RBF for Global Field Description in DIC.- Comparative Study of High-speed Digital Holographic Interferometry and Scanning Laser Doppler Vibrometry for Modal Analysis.- Automated Point Tracking Measurements using a Smartphone to Measure Strain and Displacement.- Shape Measurements in Additive Manufacturing by Structured Light Projection In-situ.- Preliminary Study on Improving DIC Analysis Using Optical Flow to Reject Outer Images.- On the Calibration of Telecentric Optics.- Effect of the Chemical Composition on Fatigue Properties of Carbon Black Filled Natural Rubber.- Criticality of Cracks in Rails using Photoelasticity and Finite Elements.- Effect of Pre-Accumulated Plastic Strain on Stress Corrosion Cracking and Fatigue Life of Steels; Experiment and Modeling.- Layered Jamming Functional Polymer-Based Composite Structures.- Comparison of Stress Fields in a Single Edge Crack Specimen from Phase Field Model and Photoelasticity.- Interrogating the Effects of Rate and Orientation on the Dynamic Failure Response of ?-quartz Under Uniaxial Stress Compression.
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Infrared Imaging;Residual stress;Materials Characterization;Conference Proceedings;Materials fracture;material fatigue;optical methods of materials analysis;DIC