材料科学
冲击波
休克(循环)
复合材料
复合数
振动
压痕硬度
铝
微观结构
机械
声学
医学
物理
内科学
作者
P. S. Samuel Ratna Kumar,Peter Madindwa Mashinini,M. Adam Khan,M. Uthayakumar,Ainagul Rymkulovna Toleuova,Dariusz Mierzwiński,Kinga Korniejenko,M.S. Abdul Majid
出处
期刊:Crystals
[Multidisciplinary Digital Publishing Institute]
日期:2022-11-08
卷期号:12 (11): 1587-1587
被引量:3
标识
DOI:10.3390/cryst12111587
摘要
The semi-solid state casting procedure was used to manufacture as-cast AA5083, 1 and 2 wt.% of aluminosilicate reinforced composite material. After solidification, developed as-cast materials were subjected to shock wave treatment in the subsonic wind tunnel. Various techniques were used to evaluate the change in shock wave exposure, including mechanical and structural analysis, which is a field dedicated to the study of vibrations and other material properties. The research methods involved developed material grain structure and surface morphology, such as field emission scanning electron microscope, X-ray diffraction, and the energy dispersive method. This study shows that the microhardness value of the matrix material is increased before and after exposure to shock wave treatment compared to the developed composite material. The natural frequency of the developed composite increases as a result of the addition of aluminosilicate reinforcement before and after the shock wave. In addition, the shifting of frequency mechanism is studied to know the influence of shock wave surface treatment. The results obtained show the potential of the application of this material in the area of robotic parts.
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