会议论文详细信息
International Conference on Advances in Materials and Manufacturing Applications 2016
Preparation of SiC based Aluminium metal matrix nano composites by high intensity ultrasonic cavitation process and evaluation of mechanical and tribological properties
Murthy, N.V.^1 ; Reddy, A Prasad^1 ; Selvaraj, N.^1 ; Rao, C.S.P.^1
Mechanical Engineering Department, NIT Warangal, Telangana, India^1
关键词: Composite properties;    High intensity ultrasonic;    Mechanical and tribological properties;    Metal matrix nano composites;    Nano-SiC;    Stir casting;    Structural applications;    Ultimate tensile strength;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/149/1/012106/pdf
DOI  :  10.1088/1757-899X/149/1/012106
来源: IOP
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【 摘 要 】
Request augments on a worldwide scale for the new materials. The metal matrix nano composites can be used in numerous applications of helicopter structural parts, gas turbine exit guide vane's, space shuttle, and other structural applications. The key mailman to ameliorate performance of composite matrix in aluminium alloy metal reinforces nano particles in the matrix of alloy uniformly, which ameliorates composite properties without affecting limit of ductility. The ultrasonic assisted stir casting helped agitation was successfully used to fabricate Al 2219 metal matrix of alloy reinforced with (0.5, 1, 1.5 and 2) wt.% of nano silicon carbide (SiC) particles of different sizes 50nm and 150nm. The micrographs of scanning electron microscopy of nano composite were investigated it reveals that the uniform dispersion of nano particles silicon carbide in aluminium alloy 2219 matrix and with the low porosity. How the specific wear rate was vary with increasing weight percentage of nano particles at constant load and speed as shown in results and discussions. And the mechanical properties showed that the ultimate tensile strength and hardness of metal matrix nano composite AA 2219 / nano SiC of 50nm and 150nm lean to augment with increase weight percentage of silicon carbide content in the matrix alloy.
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