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首页> 外文期刊>Journal of Tribology >Elastic-plastic finite element analysis of nonsteady state partial slip wheel-rail rolling contact
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Elastic-plastic finite element analysis of nonsteady state partial slip wheel-rail rolling contact

机译:非稳态部分滑轨间滚动接触的弹塑性有限元分析

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A finite element analysis with the implementation of an advanced cyclic plasticity theory was conducted to study, the elastic-plastic deformation under the nonsteady state rolling contact between a wheel and a rail. The consideration of nonsteady state rolling contact was restricted to a harmonic variation of the wheel-rail normal contact force. The normal contact pressure was idealized as the Hertzian distribution, and the tangential force presented by Carter was used. Detailed rolling contact stresses and strains were obtained for repeated rolling contact. The harmonic variation of the normal (vertical) contact force results in a wavy rolling contact surface profile. The results can help understand the influence of plastic deformation on the rail corrugation initiation and growth. The creep-age or stick-slip condition greatly influences the residual stresses and strains. While the residual strains and surface displacements increased at a reduced rate with increasing rolling passes, the residual stresses stabilize after a limited number of rolling passes. The residual stresses and strains near the wave trough of the residual wavy deformation are higher than those near the wave crest.
机译:运用先进的循环可塑性理论进行了有限元分析,研究了车轮与钢轨在非稳态滚动接触下的弹塑性变形。非稳态滚动接触的考虑仅限于轮轨法向接触力的谐波变化。法向接触压力理想化为赫兹分布,并使用卡特提出的切向力。获得了详细的滚动接触应力和应变,以进行重复的滚动接触。法向(垂直)接触力的谐波变化会导致波浪形的滚动接触表面轮廓。结果可以帮助理解塑性变形对钢轨瓦楞起皱和生长的影响。蠕变或粘滑状态会极大地影响残余应力和应变。虽然残余应变和表面位移随着轧制道次的增加而降低,但残余应力在有限数量的轧制道次后稳定了。残余波浪形变形的波谷附近的残余应力和应变高于波峰附近的残余应力和应变。

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