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Effect of Strain Hardening on Unloading of a Deformable Sphere Loaded against a Rigid Flat – A Finite Element Study

机译:应变硬化对刚性平板上可变形球体卸载的影响-有限元研究

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The present study considers an elastic-plastic contact analysis during loading-unloading of a deformable sphere with a rigid flat using finite element method. The effect of strain hardening on the contact behavior of a non-adhesive frictionless elastic-plastic contact is analyzed using commercial finite element software ANSYS. To study the strain hardening effect different values of tangent modulus are considered by varying the hardening parameter. The range of hardening parameter is chosen in such a way that most of the practical materials belong in this range. The effect of strain hardening is explained through the results of simulations and compared with elastic perfectly plastic models as well as available loading-unloading models. Analysis has been carried out for deformations up to 200 times the critical interference. It is found that the contact parameters during loading-unloading are not of uniform nature within the range of hardening parameters used in this study. Increased strain hardening results in less residual strain and offer less resistance to full recovery of the original spherical shape. Multiple loading-unloading is also done for two extreme cases of hardening parameters to study the fluctuation of dimensionless interference during subsequent cycles. The contact parameters are found identical with first cycle of loading-unloading.
机译:本研究考虑了有限元方法在具有刚性平面的可变形球体的装卸过程中的弹塑性接触分析。使用商业有限元软件ANSYS分析了应变硬化对非粘性无摩擦弹塑性接触的接触行为的影响。为了研究应变硬化效果,可以通过改变硬化参数来考虑切线模量的不同值。选择硬化参数的范围,使得大多数实用材料都属于该范围。通过模拟结果解释了应变硬化的效果,并将其与弹性完美塑性模型以及可用的装卸模型进行了比较。已经进行了高达200倍临界干扰的变形分析。发现在本研究中使用的硬化参数范围内,装卸过程中的接触参数不是均匀的。增加的应变硬化导致较小的残余应变,并提供较小的抵抗力来完全恢复原始球形。还针对两种极端的强化参数进行了多次装卸,以研究后续循环中无量纲干涉的波动。发现接触参数与装卸的第一个周期相同。

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