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首页> 外文期刊>Journal of Materials Engineering and Performance >Effects of the Electron Beam Welding Process on the Microstructure, Tensile, Fatigue and Fracture Properties of Nickel Alloy Nimonic 80A
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Effects of the Electron Beam Welding Process on the Microstructure, Tensile, Fatigue and Fracture Properties of Nickel Alloy Nimonic 80A

机译:电子束焊接工艺对镍合金尼芯80A微观结构,拉伸,疲劳性能的影响

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The purpose of this study was to evaluate rotary bending high-cycle fatigue properties and crack growth of Nimonic 80A-based metal and electron beam-welded joints. All the tests were performed at room temperature. Fracture surfaces under high-cycle fatigue and fatigue crack growth were observed by scanning electron microscopy. Microstructure, hardness and tensile properties were also evaluated in order to understand the effects on the fatigue results obtained. It was found that the tensile properties, hardness and high-cycle fatigue properties of the welded joint are lower than the base metal. The fracture surface of the high-cycle fatigue shows that fatigue crack initiated from the surface under the high stress amplitude and from the subsurface under the low stress amplitude. The effect of the welding process on the statistical fatigue data was studied with a special focus on probabilistic life prediction and probabilistic lifetime limits. The fatigue crack growth rate versus stress intensity factor range data were obtained from the fatigue crack growth tests. From the results, it was evident that the fatigue crack growth rates of the welded are higher than the base metal. The mechanisms and fracture modes of fatigue crack growth of welded specimens were found to be related to the stress intensity factor range Delta K. In addition, the effective fatigue crack propagation thresholds and mismatch of welded joints were described and discussed.
机译:本研究的目的是评估旋转弯曲的高循环疲劳性能和弯曲的80A基金属和电子束焊接接头的裂纹生长。所有测试在室温下进行。通过扫描电子显微镜观察在高循环疲劳和疲劳裂纹生长下的断裂表面。还评估了微观结构,硬度和拉伸性能,以了解获得的疲劳结果的影响。发现焊接接头的拉伸性能,硬度和高循环疲劳性能低于基础金属。高循环疲劳的裂缝表面表明,疲劳裂纹从高应力幅度和低应力幅度下的地下引发的疲劳裂纹。研究了焊接过程对统计疲劳数据的影响,特别侧重于概率寿命预测和概率寿命限制。从疲劳裂纹生长试验中获得疲劳裂纹生长速率与应力强度因子范围数据。从结果中,显而易见的是,焊接的疲劳裂纹生长速率高于基础金属。发现焊接试样的疲劳裂纹生长的机制和裂缝模式与应力强度因子范围ΔK相关。此外,描述并讨论了焊接接头的有效疲劳裂纹传播阈值和不匹配。

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