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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Effect of Silicon Particles on the Fatigue Crack Growth Characteristics of Al-12 Wt Pet Si-0.35 Wt Pet Mg-(0 to 0.02) Wt Pct Sr Casting Alloys
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Effect of Silicon Particles on the Fatigue Crack Growth Characteristics of Al-12 Wt Pet Si-0.35 Wt Pet Mg-(0 to 0.02) Wt Pct Sr Casting Alloys

机译:硅颗粒对Al-12 Wt Pet Si-0.35 Wt Pet Mg-(0至0.02)Wt Pct Sr铸造合金疲劳裂纹扩展特性的影响

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摘要

Fatigue crack growth (FCG) characteristics and mechanisms in Al-Si-Mg eutectic casting alloys containing 0.35 wt pet Mg and 0 to 0.02 wt pet Sr were investigated as a function of stress ratio, R, stress-intensity-factor range, DELTA K, and silicon (Si) particle size. The fatigue crack propagation behavior was compared with that observed in commercial casting alloy A356. At the same applied DELTA K level, the crack growth rate was found to increase with increasing stress ratio and Si particle size. Modified (fine Si morphology) and A356 alloys showed better FCG resistance than the unmodified (coarse Si morphology) ones, for a constant applied DELTA K, due to increased closure. The effects of roughness-induced and plasticity-induced crack closures, crack branching, and crack meandering on the fatigue crack propagation observed in these alloys have been discussed. The fatigue crack propagation path is found to be dependent on the Si particle characteristics. The mechanisms of silicon particle decohesion and cracking are also discussed.
机译:研究了含0.35 wt%的Mg和0至0.02 wt%的Pet Sr的Al-Si-Mg共晶铸造合金的疲劳裂纹扩展(FCG)特性和机理,该应力裂纹扩展是应力比,R,应力强度因子范围和DELTA K的函数和硅(Si)粒度。将疲劳裂纹扩展行为与商业铸造合金A356中观察到的行为进行了比较。在相同的施加DELTA K水平下,发现裂纹扩展速率随着应力比和Si颗粒尺寸的增加而增加。对于恒定施加的DELTA K,由于增加的闭合性,改性的(精细Si形态)和A356合金显示出比未改性的(粗Si形态)更好的FCG耐性。讨论了由粗糙度和塑性引起的裂纹闭合,裂纹分支和裂纹弯曲对这些合金中疲劳裂纹扩展的影响。发现疲劳裂纹扩展路径取决于Si粒子特性。还讨论了硅颗粒脱粘和破裂的机理。

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