This content is not included in your SAE MOBILUS subscription, or you are not logged in.

The Effect of TiB 2 on Mechanical and Microstructural Properties of AZ91 Matrix Composites Manufactured by Cold Chamber Die Casting Process

Journal Article
2020-28-0425
ISSN: 2641-9645, e-ISSN: 2641-9645
Published September 25, 2020 by SAE International in United States
The Effect of TiB
<sub>2</sub>
 on Mechanical and Microstructural Properties of AZ91 Matrix Composites Manufactured by Cold Chamber Die Casting Process
Sector:
Citation: R, S., P, P., and M, P., "The Effect of TiB2 on Mechanical and Microstructural Properties of AZ91 Matrix Composites Manufactured by Cold Chamber Die Casting Process," SAE Int. J. Adv. & Curr. Prac. in Mobility 3(2):831-835, 2021, https://doi.org/10.4271/2020-28-0425.
Language: English

References

  1. Gupta , M. , and Sharon , N.M.L. Magnesium, Magnesium Alloys, and Magnesium Composites New Jersey Wiley 2011 5
  2. Deng , K.K. , Wu , K. , Wu , Y.W. et al. Effect of Submicron Size SiC Particulates on Microstructure and Mechanical Properties of AZ91 Magnesium Matrix Composites J. Alloys Compd. 504 542–5 47 2010
  3. Zheng , M.Y. , Wua , K. , Kamado , S. , and Kojima , Y. Aging Behavior of Squeeze Cast SiC/AZ91 Magnesium Matrix Composite Mater. Sci. Eng. A 348 67–7 5 2003
  4. Reyes , E.B. , Perez , R. , and Contreras , A. Effect of Heat Treatment on the Mechanical and Microstructural Characterization of Mg-AZ91E/TiC Composites Compos. Interfaces 24 6 593–6 09 2017
  5. Zheng , M.Y. , Wu , K. , Liang , M. et al. The Effect of Thermal Exposure on the Interface and Mechanical Properties of Al 18B4O33w/AZ91 Magnesium Matrix Composite Mater. Sci. Eng. A 372 66–7 4 2004
  6. Deng , K.K. , Wang , X.J. , Wu , Y.W. et al. Effect of Particle Size on Microstructure and Mechanical Properties of SiCp/AZ91 Magnesium Matrix Composite Mater. Sci. Eng. A 543 158–1 63 2012
  7. Yu , W. , Wang , X. , Zhao , H. et al. Microstructure, Mechanical Properties and Fracture Mechanism of Ti AlC Reinforced AZ91D Composites Fabricated by Stir Casting J. Alloys Compd. 702 199–2 08 2017
  8. Kandil Microstructure and Mechanical Properties of SiCp /AZ91 Magnesium Matrix Composites Processed by Stir Casting J. Eng. Sci., Assiut Univ 40 1 255–2 70 2012
  9. Vinarcik , E.J. High Integrity Die Casting Processes New York John Wiley & Sons, Inc. 2003
  10. Wong , W.L.E. , Karthik , S. , and Gupta , M. Development of High Performance Mg-Al2O3 Composites Containing Al2O3 in Submicron Length Scale Using Microwave Assisted Rapid Sintering Mater. Sci. Technol. 21 9 1063–1 070 2005
  11. Spierings , A.B. , Schneider , M. , and Eggenberger , R. Comparison of Density Measurement Techniques for Additive Manufactured Metallic Parts Rapid Prototyping J. 17 5 380–3 86 2011
  12. Wang , H.Y. , Jiang , Q.C. , and Wang , Y. Fabrication of TiB2 Particulate Reinforced Magnesium Matrix Composites by Powder Metallurgy Mater. Lett. 58 3509–3 513 2004
  13. Xiao-Peng , C. , Hai-Feng , L. , Jian , M. , and De-Ping , Z. Microstructure and Mechanical Properties of Die-Cast AZ91 D Magnesium Alloy by Pr Additions s435 s438 Jan. 2010
  14. Cerri , E. , Leo , P. , and De Marco , P.P. Hot Compression Behaviour of the AZ91 Magnesium Alloy Produced by High Pressure DIE Casting 189 2007 97–1 06 Jan. 2007
  15. Braszczynska-Malik , K.N. , Zawadzki , I. , Walczak , W. , and Braszczynski , J. Mechanical Properties of High-Pressure Die-Casting AZ91 Magnesium Alloy 8 4 July 2008
  16. Yinghong , P. , Dayong , L. , Wang , Y. , Jilong , Y. et al. Numerical Study on the Low Pressure Die Casting of AZ91D Wheel Hub Materials Science Forum 488–489 Aug. 2005 1662–9752

Cited By