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Multiaxial fatigue life prediction of kiln roller under axis line deflection 被引量:1
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作者 沈意平 王送来 +1 位作者 李学军 B.S.DHILLON 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2010年第2期205-214,共10页
This paper investigates the multiaxial fatigue life of the roller in rolling contact with wheels with respect to axis line deflection. The multiaxial fatigue criteria proposed by Wang and Brown, together with the raln... This paper investigates the multiaxial fatigue life of the roller in rolling contact with wheels with respect to axis line deflection. The multiaxial fatigue criteria proposed by Wang and Brown, together with the ralnflow counting method and Miner- Palmgren's rule, are applied to the cumulative damage estimation and life prediction. As the axis line deflection of overlong kilns generally results in asymmetric load distribution on each roller, the load ratio is introduced to describe the deflection for quantitative stress analyses. The stress analyses are performed within the finite element code ANSYS. The tangential friction stress is calculated in terms :of the condition of the rolling contact area. By taking one roller as an example, the plotted fatigue life versus load ratio curve discovers how the axis line deflection affects the fatigue life. This study is significant to prevent the fatigue failure of the roller and can provide basis to adjust and optimize the axis line of the rotary kiln. 展开更多
关键词 multiaxial fatigue fatigue life axis. line deflection rolling contact
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Study on determination of stress level by seismic stress drops and the stress axis de-flections before and after large earthquakes 被引量:1
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作者 万永革 《Acta Seismologica Sinica(English Edition)》 EI CSCD 2006年第5期507-513,共7页
To obtain the stress level at the earthquake source, this paper sets forth the solution of the stress magnitude at the earthquake source by seismic stress drop and the stress axis deflections before and after large ea... To obtain the stress level at the earthquake source, this paper sets forth the solution of the stress magnitude at the earthquake source by seismic stress drop and the stress axis deflections before and after large earthquakes. The pre-seismic and post-seismic stress direction can be statistically determined by a large collection of foreshock and aftershock focal mechanism data while the stress drop can be determined through the source fracture inversion from seismic wave data or crust deformation data. The paper attempts to make a fundamental contribution to seismic dynamics. 展开更多
关键词 stress level seismic stress drop stress axis deflection
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