Fatigue Crack Growth Mechanisms in High-Pressure Die-Cast Magnesium Alloys

被引:0
|
作者
Haitham El Kadiri
M.F. Horstemeyer
J.B. Jordon
Yibin Xue
机构
[1] Mississippi State University,Center for Advanced Vehicular Systems
关键词
Fatigue Crack; Fatigue Life; Fatigue Crack Growth; Fatigue Crack Propagation; AZ91 Alloy;
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中图分类号
学科分类号
摘要
Microstructure-affected micromechanisms of fatigue crack growth operating near the limit plasticity regime were experimentally identified for the four main commercial high-pressure die-cast (HPDC) magnesium alloys: AM50, AM60, AZ91, and AE44. These fatigue micromechanisms manifested by the concomitant effects of casting pores, interdendritic Al-rich solid solution layer, β-phase particles, Mn-rich inclusions, rare earth-rich intermetallics, dendrite cell size, and surface segregation phenomena. These concomitant mechanisms clearly delineated the fatigue durability observed for the AM50, AM60, AZ91, and AE44 Mg alloys in both the low- and high-cycle fatigue regimes.
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页码:190 / 205
页数:15
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