Effects of Stirring Duration and Casting Temperature in Ultrasonic Assisted Stir Casting of Al A356 Matrix Composites
Öz
In the present study, two main parameters as stirring duration and casting temperature were taken into consideration in order to determine the effect of stirring process on mechanical properties of aluminum matrix composites. AlSi7Mg0.3 aluminum alloy and silicon carbide (SiC) particles were used as matrix and reinforcement materials to produce composite samples. Firstly, stirring processes were applied as the combination of mechanical stirring and ultrasonic vibration for the various time as 3-1, 2-2 and 1-3 minutes, respectively. To determine the effect of stirring process, tensile tests were applied to whole samples and Quality Indexes (QI) were calculated by using the results of tensile tests. According to the values of QI, the produced samples with the combination of 1 minute mechanical stirring and 3 minutes ultrasonic vibration showed the maximum mechanical properties. Afterwards, the determined stirring combination was chosen to specify the appropriate molten metal temperature. Three different casting temperatures were addressed as 700˚C, 720˚C and 740˚C. According to mechanical tests results and calculations of QI and metallographic analysis, the maximum mechanical properties were obtained with aluminum composite reinforced with 1 wt. % SiC at 720˚C molten metal temperature by applying 1 minute mechanical stirring and 3 minutes ultrasonic vibration.
Anahtar Kelimeler
Destekleyen Kurum
Proje Numarası
Teşekkür
Kaynakça
- Derin S., Birol Y., Aybarc U., “Effect of strontium addition on microstructure and mechanical properties of AlSi7Mg0,3 alloy”, International Journal of Metalcasting, 11(4): 688-695, (2016)
- Dispinar D., Akhtar S., Nordmarka A., Di Sabatinoa M., Arnberg, L., “Degassing, hydrogen and porosity phenomena in A356”, Materials Science and Engineering A , 527: 3719-3725, (2010)
- Tsakiridis P.E., “Aluminum salt slag characterization and utilization – a review”, Journal of Hazardous Materials, 217-218: 1-10, (2012)
- Sajjadi S.A., Ezatpour H.R:, Torabi Parizi M., “Comparison of microstructure and mechanical properties of A356 aluminum Alloy/Al2O3 composites fabricated by stir and compo-casting processes”, Materials and Design, 34:106–111, (2012)
- Khosravi H., Bakhshi H., Salahinejad E., “Effects of compocasting process parameters on microstructural characteristics and tensile properties of A356−SiCp composites”, Trans. Nonferrous Met. Soc. China, 24: 2482-2488, (2014)
- Starke E. A., Staley J. T., “Application of modern aluminium alloys to aircraft”, Progress in Aerospace Sciences, 32(2-3): 131-172, (1996)
- Walczak M., Pieniak D., Zwierzchowski M., “The tribology characteristics of SiC particle reinforced aluminium composites”, Archieves of Civil and Mechanical Engineering, 15: 116-123, (2015)
- Vieira A. C., Sequeira P. D., Gomes J. R., Rocha L. A., “Dry sliding wear of Al alloy/SiCp functionally graded composites: influence of processing conditions”, Wear, 267: 585-592, (2009)
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Tuğçe Büşra Yüksel
Bu kişi benim
0000-0002-0112-3390
Türkiye
Uğur Aybarç
*
0000-0002-5646-351X
Türkiye
Onur Ertuğrul
0000-0001-9017-9443
Türkiye
Yayımlanma Tarihi
1 Aralık 2020
Gönderilme Tarihi
4 Ekim 2019
Kabul Tarihi
5 Ocak 2020
Yayımlandığı Sayı
Yıl 2020 Cilt: 23 Sayı: 4
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