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Dissipated energy-based fatigue lifetime calculation under multiaxial plastic thermo-mechanical loading

机译:多轴塑性热机械载荷下基于耗能的疲劳寿命计算

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摘要

The paper concerns the metallic material lifetime calculation under arbitrary multiaxial thermo-mechanical fatigue loading. An energy-based damage operator approach (eDOA) is introduced. In such an approach, fatigue lifetime is continuously computed by the Prandtl type damage operator. The dissipated energy of plastic deformation is applied as a damage parameter that is obtained at any moment by the recently developed multiaxial energy operator approach. Strain-life curves are transformed into energy-cycle damage curves in order to associate the damage parameter with the fatigue lifetime. The present approach is validated on turbocharger housing. A satisfactory evaluation of the fatigue lifetime is obtained even though visco-plasticity and mean stress correction are not addressed yet.
机译:本文涉及在任意多轴热机械疲劳载荷下的金属材料寿命计算。引入了基于能量的破坏算子方法(eDOA)。在这种方法中,疲劳寿命由Prandtl型损坏算子连续计算。塑性变形的耗散能量被用作损伤参数,该损伤参数可通过最新开发的多轴能量算子方法随时获得。应变寿命曲线被转换为能量循环损伤曲线,以使损伤参数与疲劳寿命相关联。本方法在涡轮增压器壳体上得到验证。即使尚未解决粘塑性和平均应力校正问题,也可以获得令人满意的疲劳寿命评估。

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