Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313887628> ?p ?o ?g. }
- W4313887628 abstract "Abstract Although structural polymers like epoxy are extensively used in marine applications over metallic structures, environmental water tends to ingress into this polymer which may affect its long‐term durability. The extent of degradation caused by the absorbed water on polymeric composite's mechanical properties depends on the water diffusion mechanism, environmental temperature and subsequent reversible and irreversible chemical restructuring of the polymer. In this study, hydrothermal conditioning behavior of glass fiber reinforced epoxy (GE) composites with varying (0.1, 0.3, and 0.5) wt.% of pristine and functionalized carbon nanotubes (CNTs and FCNTs) was studied at 15°C (Low‐Temperature Hydrothermal Conditioning (LTHC)) and 50°C (Elevated‐Temperature Hydrothermal Conditioning (ETHC)) water baths. The changes in chemical bonding characteristics and glass transition temperature of GE composite due to above mentioned factors have been studied by Fourier transformed infrared spectroscopy and differential scanning calorimetry. The gravimetric analysis was employed to monitor the water uptake kinetics of the composites and flexural strength of conditioned composites after 50 days of conditioning and saturation was study to understand the effect of water sorption. Experimental results revealed that, FCNTs greatly hinders the water absorption through the interfaces at LTHC, as the equilibrium water content of 0.1FCNT‐GE composite was ~9.5% and ~3.0% and Diffusion coefficient was ~60.0% and ~15.5% lower than the GE and 0.1CNT‐GE composites, respectively at LTHC. At LTHC, the water saturated 0.1FCNT‐GE composites exhibited superior flexural strength than GE and 0.1CNT‐GE composites. At ETHC, generation of hygroscopic stresses and unfavorable stresses at the weak CNT/polymer interface adversely affected the 0.1CNT‐GE composites water resistance compared to 0.1FCNT‐GE composites with stronger FCNT/polymer interface. The extent of recovery in the flexural strength was evaluated by complete desorption of water‐saturated specimens. Finally, a fractography study was conducted to understand the variation in the well‐being of the glass fiber/polymer and nanotube/polymer interface due to mentioned varying factors." @default.
- W4313887628 created "2023-01-10" @default.
- W4313887628 creator A5022215768 @default.
- W4313887628 creator A5067163846 @default.
- W4313887628 creator A5076315902 @default.
- W4313887628 date "2023-01-09" @default.
- W4313887628 modified "2023-10-02" @default.
- W4313887628 title "Water diffusion kinetics study at different hydrothermal bath temperatures and subsequent durability studies of <scp>CNT</scp> embedded fibrous polymeric composites: Roles of <scp>CNT</scp> content, functionalization and in‐situ testing temperature" @default.
- W4313887628 cites W1939538357 @default.
- W4313887628 cites W1971761493 @default.
- W4313887628 cites W1979862957 @default.
- W4313887628 cites W1981286905 @default.
- W4313887628 cites W1984590699 @default.
- W4313887628 cites W1989218698 @default.
- W4313887628 cites W2000022690 @default.
- W4313887628 cites W2003301392 @default.
- W4313887628 cites W2013580344 @default.
- W4313887628 cites W2021021926 @default.
- W4313887628 cites W2025206401 @default.
- W4313887628 cites W2029091166 @default.
- W4313887628 cites W2031723041 @default.
- W4313887628 cites W2040668243 @default.
- W4313887628 cites W2047825542 @default.
- W4313887628 cites W2058307016 @default.
- W4313887628 cites W2066586690 @default.
- W4313887628 cites W2069451684 @default.
- W4313887628 cites W2073040940 @default.
- W4313887628 cites W2086131948 @default.
- W4313887628 cites W2091630894 @default.
- W4313887628 cites W2091854072 @default.
- W4313887628 cites W2094021556 @default.
- W4313887628 cites W2167785890 @default.
- W4313887628 cites W2170013785 @default.
- W4313887628 cites W2255922416 @default.
- W4313887628 cites W2314996627 @default.
- W4313887628 cites W2439982402 @default.
- W4313887628 cites W2570081574 @default.
- W4313887628 cites W2606271872 @default.
- W4313887628 cites W2653298205 @default.
- W4313887628 cites W2760358713 @default.
- W4313887628 cites W2770823293 @default.
- W4313887628 cites W2790975392 @default.
- W4313887628 cites W2793823692 @default.
- W4313887628 cites W2809111024 @default.
- W4313887628 cites W2894629586 @default.
- W4313887628 cites W2896924444 @default.
- W4313887628 cites W2971383211 @default.
- W4313887628 cites W2995296737 @default.
- W4313887628 cites W3012433697 @default.
- W4313887628 cites W3028606608 @default.
- W4313887628 cites W3029266471 @default.
- W4313887628 cites W3142680977 @default.
- W4313887628 cites W3165029162 @default.
- W4313887628 cites W3198487834 @default.
- W4313887628 cites W4283364773 @default.
- W4313887628 doi "https://doi.org/10.1002/app.53617" @default.
- W4313887628 hasPublicationYear "2023" @default.
- W4313887628 type Work @default.
- W4313887628 citedByCount "1" @default.
- W4313887628 countsByYear W43138876282023 @default.
- W4313887628 crossrefType "journal-article" @default.
- W4313887628 hasAuthorship W4313887628A5022215768 @default.
- W4313887628 hasAuthorship W4313887628A5067163846 @default.
- W4313887628 hasAuthorship W4313887628A5076315902 @default.
- W4313887628 hasConcept C104779481 @default.
- W4313887628 hasConcept C121332964 @default.
- W4313887628 hasConcept C122865956 @default.
- W4313887628 hasConcept C127413603 @default.
- W4313887628 hasConcept C159985019 @default.
- W4313887628 hasConcept C160892712 @default.
- W4313887628 hasConcept C166595027 @default.
- W4313887628 hasConcept C168314062 @default.
- W4313887628 hasConcept C178405089 @default.
- W4313887628 hasConcept C192562407 @default.
- W4313887628 hasConcept C39519442 @default.
- W4313887628 hasConcept C42360764 @default.
- W4313887628 hasConcept C513720949 @default.
- W4313887628 hasConcept C521977710 @default.
- W4313887628 hasConcept C60100273 @default.
- W4313887628 hasConcept C97355855 @default.
- W4313887628 hasConceptScore W4313887628C104779481 @default.
- W4313887628 hasConceptScore W4313887628C121332964 @default.
- W4313887628 hasConceptScore W4313887628C122865956 @default.
- W4313887628 hasConceptScore W4313887628C127413603 @default.
- W4313887628 hasConceptScore W4313887628C159985019 @default.
- W4313887628 hasConceptScore W4313887628C160892712 @default.
- W4313887628 hasConceptScore W4313887628C166595027 @default.
- W4313887628 hasConceptScore W4313887628C168314062 @default.
- W4313887628 hasConceptScore W4313887628C178405089 @default.
- W4313887628 hasConceptScore W4313887628C192562407 @default.
- W4313887628 hasConceptScore W4313887628C39519442 @default.
- W4313887628 hasConceptScore W4313887628C42360764 @default.
- W4313887628 hasConceptScore W4313887628C513720949 @default.
- W4313887628 hasConceptScore W4313887628C521977710 @default.
- W4313887628 hasConceptScore W4313887628C60100273 @default.
- W4313887628 hasConceptScore W4313887628C97355855 @default.
- W4313887628 hasFunder F4320334771 @default.
- W4313887628 hasIssue "11" @default.
- W4313887628 hasLocation W43138876281 @default.
- W4313887628 hasOpenAccess W4313887628 @default.