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High Cycle Fatigue Behavior of MB8 Magnesium Alloy

机译:MB8镁合金的高循环疲劳行为

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High cycle fatigue behavior of MBS magnesium alloy were investigated using an up-and-down load method. High cycle fatigue tests were carried out up to 10~7cycies at a stress ratio R=0.1 and frequency of 90Hz on specimens using a high frequency fatigue machine. Fatigue fracture surfaces of specimens that in the high cycle fatigue tests were also observed using a scanning electron microscope for revealing the micro-mechanisms of fatigue crack initiation and propagation. The results showed that fatigue limit of MB8 alloy at room temperature is 90.2 MPa under the numbers of cycle to failure N_f = 10~7 conditions using up-and-down method calculation. The fatigue strength of the alloy is about 34% of its tensile strength. The micro-fatigue fracture surface of MB8 alloy included three representative regions. These regions are fatigue initiation area, fatigue crack propagation area and fatigue fracture area. Fatigue cracks of MBS alloy initiate principally at surface and subsurface, and propagate along the grain boundary. The fatigue striations of fatigue crack propagation area are not clear. The fatigue fracture of test specimens show the rupture characteristics of dimple.
机译:使用上下载荷法研究了MBS镁合金的高循环疲劳行为。使用高频疲劳机的应力比r = 0.1和90Hz频率在应力比R = 0.1和90Hz的频率下进行高循环疲劳试验。使用扫描电子显微镜,还观察到在高循环疲劳试验中的疲劳断裂表面,用于露出疲劳裂纹引发和繁殖的微机制。结果表明,使用上下方法计算,在室温下在室温下在室温下的MB8合金的疲劳极限为90.2MPa,使用上下方法计算,= 10〜7条件。合金的疲劳强度约占其拉伸强度的34%。 MB8合金的微疲劳断裂表面包括三个代表区。这些区域是疲劳起始面积,疲劳裂纹繁殖区域和疲劳裂缝区域。 MBS合金的疲劳裂缝主要在表面和地下发起,并沿晶界传播。疲劳裂纹传播区域的疲劳纹章尚不清楚。试样的疲劳骨折显示凹坑的破裂特性。

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