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Comparison of Gigacycle Fatigue Behavior of Cast Aluminum in Tension and Torsion Loading

机译:铸铝张力和扭转荷载缩放疲劳行为的比较

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An improved understanding of fatigue behavior of a cast aluminum alloy (2-AS5U3G-Y35) in very high cycle regime was developed through ultrasonic fatigue test in axial and torsion loading. The design of the new developed torsion fatigue system is presented in details. The effects of loading condition and frequency on the very high cycle fatigue (VHCF) were investigated. Cyclic loading in axial and torsion at 35 Hz and 20kHz with R=1 was used respectively to demonstrate the effect of loading condition. S-N curves obtained show that fatigue failure occurs in range of 105 -1010 cycles in axial or torsion loading, the asymptote of S-N curve is inclined gently, but no fatigue limit under torsion and axial loading condition. Fatigue fracture surface shows fatigue crack essentially initiate from the surface of the specimens subjected to cyclic torsion load, it is different from the fatigue fracture characteristic in axial loading which fatigue crack initiate from subsurface defect in very high cycle regime. Fatigue initiation is on the maximum shear plane, the overall crack orientation observed is on a typical spiral 45° to the fracture plane, which is the maximum principle stress plane, however, shear strip are very clear in the torsion fatigue fracture surface, the torsion fracture is actually in shear fracture.
机译:通过轴向和扭转载荷的超声疲劳试验,通过超声疲劳试验改进了对非常高循环状态的铸铝合金(2-AS5U3G-Y35)的疲劳行为的改进了解。新的开发扭转疲劳系统的设计是详细介绍的。研究了负载条件和频率对非常高循环疲劳(VHCF)的影响。使用轴向和扭转的循环加载在35Hz和20kHz中,分别用于r = 1,以证明负载条件的效果。获得的S-N曲线表明,疲劳失败发生在轴向或扭转负载的105-1010循环范围内,S-N曲线的渐近呈轻轻倾斜,但在扭转和轴向负载条件下没有疲劳极限。疲劳骨折表面显示疲劳裂缝基本上从经过循环扭转载荷的样本的表面引发,它与轴向负载中的疲劳骨折特性不同,该疲劳裂纹在非常高的循环状态下从地下缺陷开始。疲劳开始是在最大剪切平面上,观察到的整体裂缝取向是典型的螺旋45°到断裂面,这是最大原理应力平面,然而,在扭转疲劳骨折表面中剪切条带非常清晰,扭转骨折实际上是剪切骨折。

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