SEDL / Topics / Materials Performance and Characterization / Recent 25 JAI
Crack Closure Behavior on a Variety of Materials under High Stress Ratios and K
max
Test Conditions
Point Load Weight Functions for Semi-Elliptical Cracks in Finite Thickness Plate
Layer Growth Kinetics during Post-Discharge Nitriding
Fatigue Crack Closure in Residual Stress Bearing Materials
Modeling of Surface Crack Advance in Round Wires Subjected to Cyclic Loading
Fatigue Crack Closure at Near-Threshold Growth Rates in Steels, Effects of Microstructure, Load Sequence and Environment
Characterizations of Creep-fatigue Crack Initiation and Growth Life for P92 using Circular Notched Round Bar Specimen
Unraveling the Science of Variable Amplitude Fatigue
FEM Analysis of a DCP Implant on a Human Femoral Bone With a Fracture Gap
Dimensional Analysis and Fractal Modeling of Fatigue Crack Growth
Evaluation of the Testing and Analysis Methods in ASTM E2760-10 Creep-Fatigue Crack Growth Testing Standard for a Range of Steels
Influence of Protective Coatings on Damage and Lifetime of Alloy 247 DS in Thermomechanical Fatigue and Bending Tests
NSF 14: Shaping the Future of the Plastic Piping Industry
Modeling Creep-Fatigue Behavior of Mod.9Cr-1Mo Steel
ASTM D 3350: A Historical and Current Perspective on a Standard Specification for Identification of Polyethylene Plastics Pipe and Fittings Materials
Long-Term Hydrostatic Strength and Design of Thermoplastic Piping Compounds
Creep Fatigue Behavior of Creep Strength Enhanced Ferritic Steels
The Effects of Dwell on the LCF Behavior of IN617
Effect of Creep and Oxidation on the Isothermal and Thermomechanical Fatigue Behavior of an Austenitic Stainless Steel
Deflection Lag, Load Lag, and Time Lag of Buried Flexible Pipe
Polyamide 12 Natural Gas Distribution Systems Operating at Pressures Greater Than 125 Psig
Technical Considerations When Fabricating PVC Pressure Fittings
Design and Performance of Plastic Drainage Pipes in Environmental Containment Facilities
How to Crawl Through a Pipe—Terminology
Advanced Ductility Exhaustion Methods for the Calculation of Creep Damage During Creep-Fatigue Cycling
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