首页> 外文会议>SEM IX International Congress on Experimental Mechanics June 5-8, 2000 Orlando, Florida >Microstructure effects on fatigue crack initiation in aluminum castings
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Microstructure effects on fatigue crack initiation in aluminum castings

机译:显微组织对铝铸件疲劳裂纹萌生的影响

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The effects of microstructures on high-cycle fatigue (HCF) crack initiation have been investigated in a casting aluminum alloy (A356.2) under both axial and bending conditiosn at various strain/stress ratios. Secondary dendrite arm spacing (SDAS), porosity (maximum size and density distribution) and silicon particles have been quantified in the casting alloy. For specimens removed from directionally solidified ingots, SEM observatiosn show that high cycle fatigue cracks initiate at near surface porosity, oxides or within eutectic area depending on SDAS. When the SDAS is greater than 25approx28 mum, the porosity size exceeds a critical value of approx 75 mum. Fatigue cracks initiate from surface and subsurface porosity. When the SDAS. The effects of microstructure on both small and long crack propagation have also been observed. In a microstructure with a small SDAS, small cracks propagate around silicon particles (debonding). The silicon particles could prolong the propagation life by deviating the cracks. As the SDAS increases, more silicon particles are cracked in the crack path. HCF crack propagation path is trans-dendrite.
机译:在不同应变/应力比的轴向和弯曲条件下,已经研究了铸造铝合金(A356.2)中微观结构对高周疲劳(HCF)裂纹萌生的影响。二次枝晶臂间距(SDAS),孔隙率(最大尺寸和密度分布)和硅颗粒已在铸造合金中进行了定量。对于从定向凝固的铸锭中取出的试样,SEM观察表明,取决于SDAS,高周疲劳裂纹会在表面近孔隙度,氧化物或低共熔区内产生。当SDAS大于25约28微米时,孔隙度将超过约75微米的临界值。疲劳裂纹是由表面和地下孔隙引起的。当SDAS。还观察到微观结构对小裂纹和长裂纹扩展的影响。在具有较小SDAS的微结构中,小裂纹在硅颗粒周围扩散(脱胶)。硅颗粒可以通过消除裂纹来延长传播寿命。随着SDAS的增加,更多的硅颗粒会在裂纹路径中破裂。 HCF裂纹的传播路径是横枝状。

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