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The mechanical properties of composite materials recycled from waste metallic chips under different pressures

International Journal of Environmental Science and Technology · Eylül 2019

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YÖKSİS Kayıtları
The mechanical properties of composite materials recycled from waste metallic chips under different pressures
International Journal of Environmental Science and Technology · 2019 SCI-Expanded
Doç. Dr. EMİN SALUR →
YÖKSİS ISSN Eşleşmesi

Bu dergide (ISSN eşleşmesi) kurumun 6 kaydı bulundu.

YÖKSİS Kayıtları — ISSN Eşleşmesi
Does fiscal policy spur environmental issues? New evidence from selected developed countries
2022 ISSN: 1735-1472 SCI-Expanded Q3
Doç. Dr. İBRAHİM ÖZMEN →
The mechanical properties of composite materials recycled from waste metallic chips under different pressures
2019 ISSN: 1735-1472 SCI-Expanded Q3
Doç. Dr. EMİN SALUR →
Biodegradability of dissolved organic nitrogen in yoghurt and cheese production wastewaters
2023 ISSN: 1735-1472 SCI-Expanded Q2
Prof. Dr. MUHAMMED KAMİL ÖDEN →
Synthesis and characterization of silver doped magnetic clay nanocomposite for environmental applications through effective RhB degradation
2023 ISSN: 1735-1472 SCI-Expanded Q3
Prof. Dr. İLKAY HİLAL GÜBBÜK →
Biodegradability of dissolved organic nitrogen in yoghurt and cheese production wastewaters
2023 ISSN: 1735-1472 SCI-Expanded
Dr. Öğr. Üyesi ZEHRA GÖK →
Optimizing solid waste classification using deep learning and grey wolf optimizer for recycling efficiency
2026 ISSN: 1735-1472 SCI-Expanded Q2
Arş. Gör. YUSUF ERYEŞİL →

Makale Bilgileri

ISSN17351472
Yayın TarihiEylül 2019
Cilt / Sayfa16 · 5259-5266
Özet The purpose of this study is to produce composite materials by utilizing the waste metallic chips. In this context, the metal matrix composite materials (MMCs) were produced at different production pressures and the effects of the different pressures on mechanical properties of MMCs were investigated. In the present investigation, spheroidal graphite cast iron (GGG-40) was used as reinforcement material in bronze (CuSn10) matrix system. The MMCs were produced by hot press with 20 wt% GGG-40 reinforcement ratio. The total time required for the production of one specimen was selected as 25 min and temperature was settled at 400 °C. In order to determine mechanical properties and consolidation mechanism of MMCs, Brinell and micro-Vickers hardness, porosity, compression and X-ray diffraction tests were conducted. In addition, microstructure views were examined to determine the consolidation quality of metallic chips. According to experimental results, it was observed that waste metallic chips can be successfully recycled into MMC final parts with approximately 40% porosity and almost 100% strength and 150% hardness with respect to bulk CuSn10 materials. Most of the presented studies in the literature present information about properties of MMCs fabricated by conventional production methods. However, no available data are found about the recycling of bronze-based MMCs which make this study more original. It is also shown in this study that waste metallic chips can be utilized by proposed recycling methodology, which is environmentally friendly in comparison with conventional recycling methods producing harmful gases for earth atmosphere.

Yazarlar (6)

1
Abdullah Aslan
2
Emin Salur
3
Aydın Güneş
4
Ömer Sinan Şahin
5
Hakan Burak Karadağ
6
Ahmet Akdemir

Anahtar Kelimeler

CuSn10 chips GGG-40 chips Mechanical characterization Metal matrix composites Recycling

Kurumlar

Necmettin Erbakan Üniversitesi
Meram Turkey
Selçuk Üniversitesi
Selçuklu Turkey
Scimago Dergi (ISSN Eşleşmesi)
International Journal of Environmental Science and Technology
Q1
SJR Skoru0,767
H-Index118
ÜlkeGermany
Agricultural and Biological Sciences (miscellaneous) (Q1)
Environmental Chemistry (Q2)
Environmental Engineering (Q2)
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Metrikler

18
Atıf
6
Yazar
5
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