材料科学
极限抗拉强度
粒度
材料的强化机理
延伸率
球磨机
铝
再结晶(地质)
冶金
色散(光学)
硬化(计算)
复合材料
延展性(地球科学)
蠕动
光学
物理
生物
图层(电子)
古生物学
作者
Kanhu Charan Nayak,Juyeon Han,Suwon Park,M.R. Joo,K.B. Lee,D.H. Bae,Hyunjoo Choi
摘要
Abstract This study investigates the synergistic effect of SiC p on grain refinement and dispersion hardening in Al matrix composites produced by ball milling followed by hot rolling. Al grains are effectively refined by generating significant dislocations and subsequent dynamic recrystallization during milling. The presence of SiC p stimulates the grain refinement process by more effectively reducing the grain size to ∼40 nm. Furthermore, an increase in the milling speed and duration reduces the grain size and improves the dispersion of SiC p , thereby enhancing the yield strength without any significant loss of ductility. Consequently, SiC p /Al composites exhibit a tensile strength of 430.27 MPa with more than 4% of elongation before failure, indicating a strength enhancement of ∼325% compared to the unmilled pure Al counterpart.
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