Crack growth in conventionally manufactured pure nickel, titanium and aluminum and the cold spray additively manufactured equivalents
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Elsevier BV
Reference19 articles.
1. Cold spray deposition of freestanding Inconel samples and comparative analysis with selective laser melting;Bagherifard;J. Therm. Spray Technol.,2017
2. Review of requirements for the durability and damage tolerance certification of additively manufactured aircraft structural parts and AM repairs;Kundu;Materials,2020
3. Durability and Damage Tolerance Certification for Additive Manufacturing of Aircraft Structural Metallic Parts,2019
4. Further studies into crack growth in additively manufactured materials;Iliopoulos;Materials,2020
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1. Effect of solid solution elements on cracking susceptibility of Ni-based superalloys during additive manufacturing;Journal of Materials Science & Technology;2024-08
2. USAF Characteristic K Approach: A Robust Tool for Predicting Fatigue Crack Growth under Various Underload Spectra;Materials;2024-07-04
3. A reverse identification of the friction coefficient operating within crack lips through a complete elastoplastic simulation of 3D fretting fatigue cracks;Engineering Fracture Mechanics;2024-06
4. Fatigue life assessment of offshore wind support structures in the presence of corrosion pits;Marine Structures;2023-11
5. Modelling Crack Growth in Additively Manufactured Inconel 718 and Inconel 625;Metals;2023-07-20
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