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FE Simulation of the residual stress reduction in industrial-sized T-section component during a newly proposed manufacturing process

机译:新建议制造过程中工业大小部件组分残余应力降低的FE模拟

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This paper focused on FE simulations of the residual stress distributions and evolutions during a newly established manufacturing process (i.e. Solution heat treatment, Cold rolling and Constrained ageing) for the 1:1 industrial-sized aircraft T-section component, which is a problematic component that is currently experiencing the residual stress-induced distortion issue. The integrated FE simulation included three sub-models (i) quenching, (ii) 1.5% cold rolling and (iii) T74 constrained ageing, using two sets of validated constitutive equations. The evolutions and distributions of the residual stress after quenching, cold rolling and constrained ageing were predicted. The simulation results showed that using the given process parameters, the distribution of the residual stresses from quenching was completely reversed and reduced. The final residual stresses in the transverse (σx) and thickness direction (σy) were reduced to ~ 0 MPa. The final residual stress in the rolling direction (σz) followed a “parabolic” distribution, with tensile stresses at the surface while uniform compression stresses ( ~ 140 MPa) at the core. This distribution is expected to benefit the subsequent machining distortion control. The predicted residual stress distributions after each processing stage further verified the effectiveness of the manufacturing process in producing low and controllable residual stresses and provide direct simulation results for industrial-sized components, which are valuable for future industrial application.
机译:本文集中于在新建立的制造过程(即溶液热处理,冷轧和约束)中的残留应力分布和演进中的FE模拟,这是一个有问题的组件的1:1工业大小的飞机T型段组分目前正在经历残留的应力诱导的失真问题。集成的Fe模拟包括三个子模型(I)淬火,(ii)1.5%冷轧和(iii)T74约束老化,使用两组验证的本构方程式。预测了淬火,冷轧和约束老化后残余应力的进化和分布。仿真结果表明,使用给定的工艺参数,从淬火的残余应力分布完全反转并降低。横向(σx)和厚度方向(σy)的最终残余应力降低至〜0MPa。轧制方向(σz)的最终残余应力沿着“抛物线”分布,在表面处具有拉伸应力,而核心的均匀压缩应力(〜140MPa)。预计该分布将有利于随后的加工失真控制。在每个处理阶段之后的预测残余应力分布进一步验证了制造过程在产生低可控的残余应力时的有效性,并为工业大小的部件提供直接仿真结果,这对于未来的工业应用有价值。

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