Effects of Processing Residual Stresses on Fatigue Crack Growth Behavior of Structural Materials: Experimental Approaches and Microstructural Mechanisms

被引:0
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作者
Christopher J. Lammi
Diana A. Lados
机构
[1] George W. Woodruff School of Mechanical Engineering,Department of Material Science and Engineering
[2] Georgia Institute of Technology,undefined
[3] Worcester Polytechnic Institute,undefined
关键词
Residual Stress; Crack Growth Rate; Fatigue Crack Growth; Stress Ratio; Crack Closure;
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学科分类号
摘要
Fatigue crack growth mechanisms of long cracks through fields with low and high residual stresses were investigated for a common structural aluminum alloy, 6061-T61. Bulk processing residual stresses were introduced in the material by quenching during heat treatment. Compact tension (CT) specimens were fatigue crack growth (FCG) tested at varying stress ratios to capture the closure and Kmax effects. The changes in fatigue crack growth mechanisms at the microstructural scale are correlated to closure, stress ratio, and plasticity, which are all dependent on residual stress. A dual-parameter ΔK–Kmax approach, which includes corrections for crack closure and residual stresses, is used uniquely to connect fatigue crack growth mechanisms at the microstructural scale with changes in crack growth rates at various stress ratios for low- and high-residual-stress conditions. The methods and tools proposed in this study can be used to optimize existing materials and processes as well as to develop new materials and processes for FCG limited structural applications.
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页码:87 / 107
页数:20
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