Interfacial Mechanics of Offshore Engineering Equipment

Interfacial Mechanics of Offshore Engineering Equipment portes grátis

Interfacial Mechanics of Offshore Engineering Equipment

Zhang, Yu

Springer Verlag, Singapore

03/2026

281

Dura

Inglês

9789819531998

Pré-lançamento - envio 15 a 20 dias após a sua edição

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Application and challenges of carbon fiber reinforced polymers in marine structures and equipments.- Key Technologies and Challenges in Marine Composite Pipe and Cable Design.- Stress intensity factors of a central interface crack in a bonded finite plate and periodic interface cracks under arbitrary material combinations.- Effect of Adhesive Thickness on the Intensity of Singular Stress at the Adhesive Dissimilar Joint.- A mesh-independent technique to evaluate stress singularities in adhesive joints.- Analytical study of the strength of adhesive joints of riser pipes.- Research on interface viscoelastic mechanical modedl based on modified cohesive zone and generalized Maxwell models.- Stress analysis of adhesive in a cracked steel plate repaired with CFRP.- Rigorous SIF-Based Prediction of Fatigue Life Improvement for Prestressed-CFRP-Repaired Cracked Steel Plates.- The debonding failure analysis of corroded pipes repaired with CFRP under tension and the bending moment.- The Attenuation mechanism of CFRP repaired corroded marine pipelines based on experiments and FEM.- The research of strength degradation characteristics of CFRP-repaired pipes under fatigue loads based on experimental and numerical analysis.- Research on the Damage Mechanisms of Interface in Offshore Floating LCO2 Cryogenic Hose under LCO2 Corrosion.- The signal analysis of Lamb wave in steel plates strengthened by CFRP with interface debonding.
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Offshore engineering equipment;Interfacial mechanics;Carbon fiber reinforced polymers;Marine composite pipe;Stress intensity factors