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Role of loading direction on cyclic behaviour characteristics of AM30 extrusion and its fatigue damage modelling

机译:加载方向对AM30挤压成形行为的影响及其疲劳损伤建模

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摘要

Anisotropic fatigue and cyclic behaviour of AM30 Mg alloy extrusion is investigated by performing fully-reversed strain-controlled tension-compression cyclic tests at strain amplitudes between 0.3% and 2.3%, along extrusion (ED) and transverse (TD) directions. The shapes of half-life hysteresis loops suggest the predominance of slip and twinning/de-twinning mechanisms below and above the strain amplitude of 0.5%, respectively. The twinning/de-twinning occurrence is found to be more extensive during straining along ED, which results in higher asymmetry of hysteresis loops, and thereby, higher induced mean stress. This adversely affects the fatigue resistance and yields to less number of cycles before failure in ED. Optical microscopy and texture analysis are employed to validate the findings. In addition, fracture surfaces are studied by scanning electron microscopy to identify the sources of fatigue crack initiation. Persistent slip bands (PSBs) and twin lamellae interfaces are evidenced as crack initiation sites at low and high strain amplitudes, respectively. Cracks emanated from debonded inclusion interface are also observed. Lastly, estimated fatigue life by Smith-Watson-Topper (SWT) and Jahed-Varvani (JV) fatigue models are compared with experimental life obtained through this study as well as the ones reported in the literature. The JV energy model is proven to yield better life predictions.
机译:通过沿拉伸(ED)和横向(TD)方向在0.3%和2.3%的应变幅度之间进行完全反向的应变控制拉伸-压缩循环测试,研究了AM30 Mg合金挤压件的各向异性疲劳和循环行为。半衰期磁滞回线的形状表明,在低于和高于0.5%的应变幅度时,滑移和孪生/解缠机制占主导地位。发现沿ED的应变过程中孪生/解缠现象更为广泛,这导致磁滞回线的不对称性更高,从而导致更高的平均感应应力。这会对耐疲劳性产生不利影响,并导致ED失效之前的循环次数减少。使用光学显微镜和纹理分析来验证发现。此外,通过扫描电子显微镜研究断裂表面,以确定疲劳裂纹萌生的来源。持久滑带(PSB)和双片层界面分别被证明是在低和高应变振幅下的裂纹萌生点。还观察到从剥离的夹杂物界面产生的裂纹。最后,将Smith-Watson-Topper(SWT)和Jahed-Varvani(JV)疲劳模型的估计疲劳寿命与通过该研究以及文献报道的实验寿命进行了比较。事实证明,合资公司的能源模型可以提供更好的寿命预测。

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