Effects of reinforcement distribution on the mechanical properties of Al–Fe3O4 nanocomposites fabricated via accumulative roll bonding

سال انتشار: 1397
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 256

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شناسه ملی سند علمی:

JR_MACS-5-2_003

تاریخ نمایه سازی: 14 تیر 1399

چکیده مقاله:

This research developed new nanostructured Al–Fe3O4 composites via accumulative roll bonding (ARB). X-ray diffraction (XRD) analysis and field emission scanning electron microscopy were conducted to examine microstructural characteristics and particle distribution in the nanocomposites. Hardness and tensile strength tests were employed to examine their mechanical properties. After eight cycles of XRD analysis, the size of the Al crystals in the nanocomposites reached 198 nm. After eight cycles of tests on mechanical properties, the Al crystals exhibited a tensile strength and a hardness of 204 MPa and 63 HV, respectively. These values are higher than those achieved by pure Al. The depth of nanocomposite rupture observed in fractographic analysis revealed that a ductile fracture occurred in the materials because of the formation and growth of cavities.

نویسندگان

Behrooz Pirouzi

Dep. of Nanotechnology, Nano materials group, Semnan university

Ehsan Borhani

Semnan University

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  • Luo P, McDonald DT, Xu W, Palanisamy S, Dargusch MS, ...
  • Rezaei MR, Toroghinejad MR, and Ashrafizadeh F. Effects of ARB ...
  • Toptan F, kilicarslan A, Karaaslan A, Cigdem M, Kerti I. ...
  • Borhani E, Jafarian H, Terada D, Tsuji N. Microstructural Evolution ...
  • Borhani E, Jafarian H, Shibata A, Tsuji N. Texture Evolution ...
  • Borhani E, Jafarian H, Adachi H, Terada D, Tsuji N. ...
  • Salimi A, Borhani E, Emadoddin E. Evaluation of mechanical properties ...
  • Jamaati R, Toroghinejad MR, Dutkiewicz J, Szpunar JA. Investigation of ...
  • Alizadeh M, Paydar MH. Fabrication of Al/SiCp composite strips by ...
  • Katundi D, Ayari F, Bayraktar E, Tan MJ, Touson Bayraktan ...
  • Asif M, Chandra K, Misra PS. Development of aluminum based ...
  • Katurdi D, Ayari F, Bayraktar E, Tan MJ, Touson Bayraktan ...
  • Bayraktar E, Katundi D. Development of a new aluminum matrix ...
  • Clyne TW, Withers PJ. An Introduction to Metal Matrix Composites. ...
  • Alizadeh M. Processing of Al/B4C Composites by Cross-Roll Accumulative Roll ...
  • Li L, Nagai K, Yin F. Progress in cold roll ...
  • Bay N. Mechanisms producing metallic bonds in cold welding. Welding ...
  • Jamaati R, Toroghinejad MR. Investigation of the parameters of the ...
  • Lloyd DJ. Aspects of fracture in particulate reinforced metal matrix ...
  • Reihanian M, Bagherpour E, Paydar MH. On the achievement of ...
  • Sanaty-Zadeh A. Comparison between current models for the strength of ...
  • Zener C, Smith CS. Grains phased and interface: an interpretation ...
  • Clyne TW, Hall D.  An introduction to composite materials, Part ...
  • Hanazaki K, Shigeiri N, Tsuji N. Change in Microstructures and ...
  • Alizadeh M, Paydar MH, and Sharifian Jazi F. Structural Evaluation ...
  • Boyer HE, Gall TL. Metals Handbook, Desk Edition, ASM International, ...
  • Zhang P, Li SX, Zhang ZF. General relationship between strength ...
  • Becker W, Lampman S. Fracture appearance and mechanisms of deformation ...
  • Eizadjou M, Kazemi Talachi A, Danesh Manesh H, Shakur Shahabi ...
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