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首页> 外文期刊>International Journal of Fatigue >Effect Of Axial Ratcheting Deformation On Torsional Low Cycle Fatigue Life Of Lead-free Solder Sn-3.5ag
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Effect Of Axial Ratcheting Deformation On Torsional Low Cycle Fatigue Life Of Lead-free Solder Sn-3.5ag

机译:轴向棘轮变形对无铅锡Sn-3.5ag扭转低周疲劳寿命的影响

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Multiaxial fatigue tests were conducted on Sn-3.5Ag solder specimens under axial/torsional loading at room temperature. It was found that the ratcheting strain increased while the fatigue life decreased with the increase of axial stress and shear strain amplitude. A power relationship of ratcheting strain rate versus fatigue life was observed. Equivalent strain approach and critical plane approaches were evaluated with fatigue life data obtained in the tests. Since those approaches excluded the consideration of the ratcheting strain and mean stress, the methods for fatigue life prediction were improper for multiaxial fatigue with ratcheting strain. Coffin model, considered the effect of ratcheting on fatigue life depending on the ratio of ratcheting strain to material ductility, brought the fatigue life predictions on non-conservative side if the ratcheting deformation was large. For this reason, a model with the maximum shear strain range and axial ratcheting strain rate was proposed as a new damage parameter. The new model could not only describe the fatigue life in torsion test, but also predicted torsional fatigue life of the lead-free solder with axial ratcheting.
机译:在室温下在轴向/扭转载荷下对Sn-3.5Ag焊料样品进行了多轴疲劳测试。发现随着轴向应力和剪切应变幅值的增加,棘轮应变增加而疲劳寿命降低。观察到棘轮应变率与疲劳寿命的幂关系。用在测试中获得的疲劳寿命数据评估了等效应变方法和临界平面方法。由于这些方法都没有考虑棘轮应变和平均应力,因此疲劳寿命预测方法不适用于棘轮应变的多轴疲劳。棺材模型考虑了棘轮效应对疲劳寿命的影响,这取决于棘轮应变与材料延展性的比率,如果棘轮变形较大,则将疲劳寿命预测推向非保守侧。因此,提出了具有最大剪切应变范围和轴向棘轮应变速率的模型作为新的损伤参数。新模型不仅可以描述扭转试验中的疲劳寿命,而且可以预测无铅焊料轴向棘轮的扭转疲劳寿命。

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