Crack Growth Monitoring with Structure-Bonded Thin and Flexible Coils. [PDF]
Mandache C, Desnoyers R, Bombardier Y.
europepmc +1 more source
Low‐cycle fatigue damage in Mn–Mo–Ni reactor pressure vessel steel is examined using a combined electron backscatter diffraction and positron annihilation lifetime spectroscopy approach. The study correlates texture evolution, dislocation substructure development, and vacancy‐type defect formation across uniform, necked, and fracture regions, providing
Apu Sarkar +2 more
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Bayesian Updating of Fatigue Crack Growth Parameters for Failure Prognosis of Miter Gates. [PDF]
Brown A, Eick B, Fillmore T, Nguyen H.
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Research on the Fatigue Crack Growth Behavior of a Zr/Ti/Steel Composite Plate with a Crack Normal to the Interface. [PDF]
Zhou B +7 more
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Stabilization of L‐PBF Ni50.7Ti49.3 under low‐cycle loading was investigated. Recoverable strain after cycling was dependent on the amount of applied load. Recovery ratio was 53.4% and 35.1% at intermediate and high load, respectively. The maximum total strain reached 10.3% at a high load of 1200 MPa.
Ondřej Červinek +5 more
wiley +1 more source
Effects of Aging on Mode I Fatigue Crack Growth Characterization of Double Cantilever Beam Specimens with Thick Adhesive Bondline for Marine Applications. [PDF]
Iyer Kumar R, De Waele W.
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Influence of Retrogression Time on the Fatigue Crack Growth Behavior of a Modified AA7475 Aluminum Alloy. [PDF]
Zheng X +6 more
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Oxide‐Free Titanium Coatings by Wire Arc Spraying in a Silane‐Doped Inert Atmosphere
A silane‐doped argon atmosphere enables the production of oxide‐free titanium coatings via twin‐wire arc spraying at ambient pressure. This innovative approach eliminates residual oxygen, creating process conditions that prevent oxidation and nitride formation.
Manuel Rodriguez Diaz +4 more
wiley +1 more source
Fatigue Crack Growth Performance of Q370qENH Weathering Bridge Steel and Butt Welds. [PDF]
Yu Y, Zhang X, Hu C, Liu L, Wang H.
europepmc +1 more source
Adaptive Finite Element Modeling of Linear Elastic Fatigue Crack Growth. [PDF]
Alshoaibi AM, Bashiri AH.
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