Torna ai risultati
Scheda bibliografica · Consultazione e accesso
Artículo de revista

Numerical optimization of natural hybrid fiber reinforced composite overwrapped pressure vessel

Reta Warkina et al · Nature Portfolio · 2026

Accesso aperto disponibile
Lettura rapida. Controlla i dati essenziali della risorsa e accedi al contenuto con il pulsante principale. La scheda mostra solo le informazioni necessarie per identificare, citare e aprire l’opera.
Pubblicazione seriale

3D scan-based classification of Chinese young female hand morphology

Questa pubblicazione seriale contiene 688 contenuti correlati.

Accesso alla risorsa

Apri il contenuto dall’opzione principale o scegli un’altra fonte disponibile.

DOAJ DOAJ Articles
Entrar por DOAJ
Accesso principale

Accesso aperto disponibile

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Apri risorsa

Riepilogo

Descripción general del contenido del recurso.

Abstract Composite overwrapped pressure vessels (COPVs) represent a paradigm shift in lightweight pressure containment, achieving substantial mass savings over traditional metallic vessels. However, their widespread deployment remains constrained by challenges in design, fabrication, and qualification, most notably the risk of catastrophic stress rupture failure arising from stress concentrations under burst and dynamic loading conditions. To address these concerns, this study undertakes a rigorous optimization of COPV design parameters, with particular emphasis on the influence of winding angles and lay-up patterns on burst pressure performance. Advanced finite element analysis using ABAQUS was employed to develop sixteen Aluminum/Flax–Sisal hybrid composite COPV models incorporating a 4 mm aluminum liner and varied ply configurations. In contrast to conventional synthetic fiber overwraps, the proposed natural synthetic hybrid system offers a sustainable alternative with competitive load-carrying capability. Comparative stress analyses indicate that optimized hybrid lay-ups can achieve burst pressures comparable to synthetic composites while reducing weight and environmental impact, thereby establishing their viability for safe and efficient pressure containment. A systematic investigation of fiber orientations and stacking sequences, conducted under isoperimetric thickness constraints, identified an optimal [24.5°, 24.5°] ply sequence in a PP winding pattern, achieving a maximum burst pressure of 10.295 MPa with ten reinforcement layers. Stress strain evaluations revealed a predominantly uniform membrane stress distribution, with critical stress concentrations localized at the polar boss interface. These findings provide valuable insights for enhancing the performance, durability, and operational safety of COPVs in high-demand storage, aerospace, and industrial applications.

Come citare

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, R. W. E. (2026). Numerical optimization of natural hybrid fiber reinforced composite overwrapped pressure vessel. https://doi.org/10.1038/s41598-026-43118-2

MLA

al, Reta Warkina et. "Numerical optimization of natural hybrid fiber reinforced composite overwrapped pressure vessel." 2026. https://doi.org/10.1038/s41598-026-43118-2.

Chicago

al, Reta Warkina et. 2026. "Numerical optimization of natural hybrid fiber reinforced composite overwrapped pressure vessel.". https://doi.org/10.1038/s41598-026-43118-2.

Harvard

al, R. W. E. 2026, Numerical optimization of natural hybrid fiber reinforced composite overwrapped pressure vessel, Nature Portfolio, available at: https://doi.org/10.1038/s41598-026-43118-2 [Accessed 10 Aug. 2026].

Condividi e stampa

Salva la scheda, copia il link permanente o stampala in PDF.

Esporta riferimento

Esporta il record nei formati più comuni per usarlo con un gestore bibliografico.

Dettagli della risorsa

Informazioni bibliografiche utili per verificare che sia il materiale corretto.

Titolo
Numerical optimization of natural hybrid fiber reinforced composite overwrapped pressure vessel
Autore / collaboratori
Reta Warkina et al
Editore
Nature Portfolio
Anno di pubblicazione
2026
ISSN
2045-2322
ISSN
2045-2322
Lingua
Inglés

Soggetti

Esplora risorse correlate a partire da questi soggetti.

Copiato