Scopus
YÖKSİS DOI Eşleşti
SJR Q1
Assessing fracture toughness performance of adhesively bonded carbon fiber/epoxy composite joints accompanied by acoustic emission inspection: Effect of surface treatment methods
Engineering Fracture Mechanics · Mayıs 2025
Özet
This study investigates the impact of mechanical abrasion (MA), atmospheric pressure plasma activation (APA), and peel-ply (PP) treatments on the fracture toughness, damage mechanisms and damage progression of adhesively bonded carbon-fiber (CF)/epoxy composite joints. The chemical and physical properties of treatment applied adherend surfaces are examined through various methods. Double cantilever beam (DCB) and end-notched flexure (ENF) tests are conducted to evaluate the fracture toughness of joints. The acoustic emission (AE) method is employed during DCB and ENF tests to evaluate damage mechanisms and damage progression within specimens. The results demonstrate that MA treatment provides the highest fracture toughness, with mode-I (GIC) and mode-II (GIIC) toughness values increasing by 59% and 43%, respectively, compared to untreated specimens. APA-treated specimens show improved GIC and GIIC values by 27% and 30%, respectively, which is attributed to enhanced surface energy and chemical functionality. PP treatment contributes to a 20% increase in GIC and a 14% rise in GIIC due to improved surface roughness and surface energy. The findings highlight that the mechanical interlocking effect induced by MA treatment significantly strengthens the bond, while surface chemistry modifications achieved through APA treatment benefit bonding in applications where material integrity is critical. AE analysis reveals distinct damage mechanisms associated with each surface treatment.
YÖKSİS Kayıtları
Assessing fracture toughness performance of adhesively bonded carbon fiber/epoxy composite joints accompanied by acoustic emission inspection: Effect of surface treatment methods
Engineering Fracture Mechanics · 2025 SCI
Doç. Dr. HASAN ULUS →
Assessing fracture toughness performance of adhesively bonded carbon fiber/epoxy composite joints accompanied by acoustic emission inspection: Effect of surface treatment methods
Engineering Fracture Mechanics · 2025 SCI
Doç. Dr. HASAN ULUS →
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 4 kaydı bulundu.
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 4 kaydı bulundu.
Fracture and dynamic mechanical analysis of seawater aged aluminum-BFRP hybrid adhesive joints
2022 ISSN: 0013-7944 SCI Q1
Doç. Dr. HASAN ULUS →
Effect of atmospheric plasma treatment on Mode-I and Mode-II fracture toughness properties of adhesively bonded carbon fiber/PEKK composite joints
2023 ISSN: 0013-7944 SCI Q1
Doç. Dr. HASAN ULUS →
Coating graphene nanoplatelets onto carbon fabric with controlled thickness for improved mechanical performance and EMI shielding effectiveness of carbon/epoxy composites
2023 ISSN: 0013-7944 SCI Q1
Doç. Dr. HASAN ULUS →
Assessing fracture toughness performance of adhesively bonded carbon fiber/epoxy composite joints accompanied by acoustic emission inspection: Effect of surface treatment methods
2025 ISSN: 0013-7944 SCI Q1
Doç. Dr. HASAN ULUS →
Makale Bilgileri
Toplam Atıf
74 atıf
· Scopus
ISSN00137944
Yayın TarihiMayıs 2025
Cilt / Sayfa321
Scopus ID2-s2.0-105002340843
Kurumlar
Sabancı Üniversitesi
Tuzla Turkey
Selçuk Üniversitesi
Selçuklu Turkey
Havuzumuzdaki Atıflar 0
Bu makaleye, sistemimizdeki Scopus veritabanında bulunan 0 makale atıf yapmıştır. Scopus genel atıf sayısı: 74.
Bu makaleye, kendi Scopus havuzumuzdaki başka bir makaleden atıf kaydı bulunmuyor.
Scimago Dergi (ISSN Eşleşmesi)
Engineering Fracture Mechanics
Q1
SJR Skoru1,252
H-Index175
YayıncıElsevier B.V.
ÜlkeNetherlands
Materials Science (miscellaneous) (Q1)
Mechanical Engineering (Q1)
Mechanics of Materials (Q1)
Metrikler
74
Atıf