Scopus Eşleşmesi Bulundu
1
Atıf
15
Cilt
🔓
Açık Erişim
Scopus Yazarları: S. Bilal Çetinkal, Mehmet Şahin Ataş, Emin Salur, İlyas Şavklıyıldız, Halit Sübütay, Gökhan Arici, Abdulaziz Kurdi, Ahmed Degnah, Abdulaziz AlHazaa
Özet
As internal combustion engine (ICE) systems are increasingly exposed to severe thermal and oxidative environments, the oxidation resistance and structural integrity of exhaust valve materials have become critical for maintaining long-term engine reliability and efficiency. This study presents a comparative evaluation of the cyclic oxidation behavior of two candidate valve steels, 1.4718 (ferritic stainless steel) and 1.4871 (austenitic stainless steel), under service-temperature conditions. The specimens were exposed to repeated oxidation at 550 °C, 650 °C and 750 °C for 25 cycles in ambient air. The surface and cross-sectional morphologies of the oxide layers were analyzed using scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS) to investigate oxide scale composition, thickness, and growth characteristics. The oxidation behavior of both alloys proceeded in two distinct stages: an initial phase marked by accelerated oxidation, followed by a slower, more stable growth period. The extent of oxidation intensified with increasing temperature. The 1.4718 alloy developed relatively porous but compositionally stable oxide layers consisting primarily of Fe- and Cr-based spinels such as FeCr<inf>2</inf>O<inf>4</inf> and Cr<inf>2</inf>SiO<inf>4</inf>. In contrast, the 1.4871 alloy formed a dense, adherent, dual-layered oxide scale composed of an outer Mn<inf>2</inf>O<inf>3</inf>-rich layer and an inner Cr<inf>2</inf>O<inf>3</inf>-rich layer, attributable to its high Mn and Cr content. The results underscore the critical influence of elemental composition, particularly Cr, Mn and Si, on oxide scale stability and spallation resistance, demonstrating the superior cyclic oxidation resistance of the 1.4871 alloy and its potential suitability for exhaust valve applications in thermally aggressive environments.
Anahtar Kelimeler (Scopus)
1.4718
1.4871
microstructure
oxidation
SEM
Scimago Dergi Bilgisi
Otomatik ISSN Eşleştirmesi
2025 yılı verileri
Coatings
Q2
SJR Quartile
0,557
SJR Skoru
100
H-Index
🔓
Açık Erişim
Kategoriler: Materials Chemistry (Q2) · Surfaces and Interfaces (Q2) · Surfaces, Coatings and Films (Q2)
Alanlar: Materials Science · Physics and Astronomy
Ülke: Switzerland
· Multidisciplinary Digital Publishing Institute (MDPI)
Bu bilgiler makale yılına göre Scimago veritabanından ISSN eşleştirmesiyle otomatik getirilmektedir.
Dergi sıralama verileri Scimago'nun ilgili yılı baz alınmaktadır.
Anahtar Kelimeler
1.4871
1.4718
microstructure
SEM
oxidation
Makale Bilgileri
Dergi
Coatings
ISSN
2079-6412
Yıl
2025
/ 9. ay
Cilt / Sayı
15
Makale Türü
Özgün Makale
Hakemlik
Hakemli
Endeks
SCI-Expanded
JCR Quartile
Q2
TEŞV Puanı
16,00
Yayın Dili
Türkçe
Kapsam
Uluslararası
Toplam Yazar
9 kişi
Erişim Türü
Basılı+Elektronik
Erişim Linki
Makaleye Git
Alan
Mühendislik Temel Alanı
Malzeme ve Metalurji Mühendisliği
Korozyon
1.4871,1.4718, microstructure,SEM,oxidation
YÖKSİS Yazar Kaydı
Yazar Adı
ÇETİNKAL SALİH BİLAL,ATAŞ MEHMET ŞAHİN,SALUR EMİN,ŞAVKLIYILDIZ İLYAS,SÜBÜTAY HALİT,ARICI GÖKHAN,Kurdi Abdulaziz,Degnah Ahmed,AlHazaa Abdulaziz
YÖKSİS ID
8824160
Hızlı Erişim
Metrikler
Scopus Atıf
1
JCR Quartile
Q2
TEŞV Puanı
16,00
Yazar Sayısı
9