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Very high cycle fatigue for single phase ductile materials:microplasticity and energy dissipation

机译:单相延性材料的极高循环疲劳:微塑性和能量耗散

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The DISFAT project is a ongoing French project financially supported by the French National Agency ANR.It aims at a deeper understanding of mechanisms leading to crack initiation in ductile metals in Very High Cycle Fatigue (VHCF).The VHCF regime is associated with stress amplitudes lower than the conventional fatigue limit and numbers of cycles higher than 109.Tests were conducted using an ultrasonic technique at loading frequency of 20 kHz.The mechanisms leading to crack initiation express via slip bands at the specimen surface and self-heating due to intrinsic dissipation.Thermal maps were used to estimate the mean dissipation and its change with number of cycles and stress amplitudes in case of pure copper polycrystals.At the same time,the surface relief changes due to plasticity were characterized using optical and scanning electronic microscopes.A good correlation was found between slip band initiation and dissipation.Dissipation and slip band amount always increased over the number of cycles.At very small stress amplitudes,no slip band appeared up to 108 cycles but the material was found to dissipate energy.These results reveal that the material never reached a steady state.Therefore it could break at higher number of cycles.
机译:DISFAT项目是法国国家机构ANR资助的一项正在进行中的法国项目,旨在更深入地了解导致超高周疲劳(VHCF)的韧性金属中裂纹萌生的机制.VHCF机制与应力幅值较低相关超过了常规疲劳极限,并且循环次数大于109.使用超声波技术在20 kHz的加载频率下进行了测试。导致裂纹萌生的机制是通过试样表面的滑移带表达的,以及由于固有耗散而导致的自热。使用热图估算纯铜多晶情况下的平均耗散及其随循环次数和应力幅度的变化。同时,使用光学和扫描电子显微镜表征了由于塑性导致的表面起伏变化。被发现在滑移带开始和耗散之间。耗散和滑移带数量总是在一定数量上增加。在极小的应力振幅下,在108个循环内没有出现滑动带,但发现该材料耗散了能量。这些结果表明该材料从未达到稳态,因此在更高的循环次数下可能会破裂。

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