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Investigation of high-cycle fatigue and fatigue crack propagation characteristic in 5083-0 aluminum alloy

机译:5083-0铝合金的高周疲劳及疲劳裂纹扩展特性研究

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摘要

The objective of the present study is to investigate the high-cycle fatigue (HCF) and fatigue crack propagation (FCP) characteristic in relation to the microstructure in the 5083-O aluminum alloy. The FICF strengths of the 5083-O Al alloy in parallel to rolling direction (PD) and vertical to rolling direction (VD) specimens are 164 MPa and 165 MPa, respectively, However, the FCP resistance of the specimens reveals evident anisotropy. The FCP resistance of the PD specimen is less than that of the VD specimen, which is predominantly caused by the main crack expanding along the chain-shaped coarse inclusions in PD specimen. These chain-shaped coarse inclusions, particularly, Fe/Mn containing particles with secondary microcracks, might accelerate FCP rate and decrease FCP resistance.
机译:本研究的目的是研究与5083-O铝合金的显微组织相关的高周疲劳(HCF)和疲劳裂纹扩展(FCP)特性。 5083-O铝合金在平行于轧制方向(PD)和垂直于轧制方向(VD)的试样上的FICF强度分别为164 MPa和165 MPa,但是,试样的FCP电阻显示出明显的各向异性。 PD样品的FCP阻力小于VD样品,这主要是由于主裂纹沿着PD样品中的链状粗夹杂物扩展而引起的。这些链状的粗大夹杂物,特别是带有次级裂纹的含铁/锰的颗粒,可能会加速FCP速率并降低FCP抵抗力。

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