Investigation on mechanical properties of aluminium 7075 - boron carbide - coconut shell fly ash reinforced hybrid metal matrix composites

被引:0
作者
Balasubramani Subramaniam
Balaji Natarajan
Balasubramanian Kaliyaperumal
Samson Jerold Samuel Chelladurai
机构
[1] Sri Eshwar College of Engineering,Department of Mechanical Engineering
[2] Sri Krishna College of Engineering and Technology,Department of Mechanical Engineering
来源
China Foundry | 2018年 / 15卷
关键词
aluminium 7075; boron carbide; fly ash; casting; hardness; tensile strength; impact energy; TG146.21; A;
D O I
暂无
中图分类号
学科分类号
摘要
The present research work reports the fabrication and evaluation of the mechanical properties of hybrid aluminium matrix composites (HAMC). Aluminium 7075 (Al7075) alloy was reinforced with particles of boron carbide (B4C) and coconut shell fly ash (CSFA). Al7075 matrix composites were fabricated by stir casting method. The samples of Al7075 HAMC were fabricated with different weight percentages of (0, 3, 6, 9 and 12wt.%) B4C and 3wt.% of CSFA. The mechanical properties discussed in this work are hardness, tensile strength, and impact strength. Hardness of the composites increased 33% by reinforcements of 12wt.% B4C and 3wt.% CSFA in aluminium 7075 alloy. The tensile strength of the composites increased 66% by the addition of 9wt.% B4C and 3wt.% CSFA in aluminium 7075 alloy. Further addition of reinforcements decreased the tensile strength of the composites. Elongation of the composites decreased while increasing B4C and CSFA reinforcements in the matrix. The impact energy of the composites increased up to 2.3 J with 9wt.% B4C and 3wt.% CSFA addition in aluminium alloy. Further addition of reinforcement decreased the impact strength of the composites. The optical micrographs disclosed the homogeneous distribution of reinforcement particles (B4C and CSFA) in Al7075 matrix. The homogeneously distributed B4C and CSFA particles added as reinforcement in the Al7075 alloy contributed to the improvement of hardness, tensile strength, and impact strength of the composites.
引用
收藏
页码:449 / 456
页数:7
相关论文
共 78 条
  • [1] Shalaby E A(2016)Preparation and characterization of hybrid A359/(SiC+Si3N4) composites synthesized by stir/squeeze casting techniques Materials Science and Engineering: A 674 18-24
  • [2] Churyumov A Y(2013)Influence of B4C on the tribological and mechanical properties of Al 7075–B4C composites Composites Part B: Engineering 54 146-152
  • [3] Solonin A N(2003)Aluminium matrix composites challenges and opportunities Sadhana 28 319-334
  • [4] Baradeswaran A(2009)Manufacturing of aluminum/fly ash composite with liquid reactive sintering technology Acta Metallurgica Sinica English Letters 15 465-470
  • [5] Perumal A E(2017)Influence of rice husk ash particles on microstructure and tensile behavior of AA6061 aluminum matrix composites produced using friction stir processing Composites Communications 3 42-46
  • [6] Surappa M K(2010)Studies on Al6061–SiC and Al7075–Al2O3 metal matrix composites Journal of Minerals and Materials Characterization and Engineering 9 43-55
  • [7] Zhang X F(2013)Fabrication and characterization of SiC, Al2O3 and B4C reinforced Al–Zn–Mg–Cu alloy (Al7075) metal matrix composites: A study Advanced Materials Research 622 1295-1299
  • [8] Wang D J(2014)Study on mechanical and wear properties of Al 7075/Al2O3/graphite hybrid composites Composites Part B: Engineering 56 464-471
  • [9] Xie G(2015)Microstructural characteristics mechanical and wear behaviour of aluminium matrix hybrid composites reinforced with alumina, rice husk ash and graphite Engineering Science and Technology, an International Journal 18 416-422
  • [10] Dinaharan I(2018)Investigation of mechanical properties of aluminium 6061–silicon carbide, boron carbide metal matrix composite Silicon 10 495-502