Multi-axial fatigue properties and life prediction under proportional and non-proportional loading at high temperature
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摘要: 利用薄壁圓管和缺口試樣,在MTS 809電液伺服材料試驗系統上對GH4169合金的高溫多軸疲勞特性進行了實驗研究.實驗采用對稱軸向和扭轉應變控制、比例與非比例循環加載,軸向與扭轉應變的相位差分別為0°,45°,90°.通過對薄壁圓管和缺口試樣的高溫多軸疲勞壽命特性分析,基于臨界面方法提出了一個的多軸疲勞壽命預測模型,在考慮臨界面上最大剪應變和正應變對多軸疲勞損傷貢獻的同時,還引入了應力狀態對多軸疲勞壽命的影響因素.應用新模型對GH4169合金高溫多軸疲勞壽命進行預測結果表明,該模型對于缺口試樣和薄壁圓管的高溫多軸疲勞壽命估算具有較高的準確性.Abstract: The multiaxial fatigue behavior of the notched specimens and thin wall tube specimens of GH4169 super alloy was investigated. Symmetric axial-torsional strain was controlled in fatigue tests at a high temperature of 650 ℃ by using a MTS 809 tension-torsional servo-controlled electro-hydraulic testing machine with proportional and non-proportional loading. The phases between axial strain and torsional strain were 0° in-phase (proportional) and 45°, 90° out-of-phase (non-proportional) respectively. Based on the critical approach, a model for multiaxial fatigue life prediction was established by combining maximum shear strain and normal strain on the critical plane, and the effect of stress state under the multiaxial cyclic loading condition on the fatigue life was taken into account. The results of life prediction show that the new fatigue life prediction model is validated with the experimental.
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Key words:
- GH4169 alloy /
- high temperature /
- multiaxial fatigue /
- non-proportional loading /
- life prediction
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