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首页> 外文期刊>International Journal of Mechanical Sciences >A computationally efficient hybrid model for simulating the additive manufacturing process of metals
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A computationally efficient hybrid model for simulating the additive manufacturing process of metals

机译:用于模拟金属添加剂制造过程的计算上有效的混合模型

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Additive manufacturing (AM) suffers from residual stress formation and part distortion. One way to improve AM is to use optimal process parameters that yield residual stress distribution that is less detrimental. A finite element analysis (FEA) based model can be used as a design tool to determine optimal process parameters. Being a design tool, such a model should not only predict the residual stress formation and part distortion accurately but should be capable of performing the simulation in a reasonable time as well. However, the traditional FEA models are either accurate but computationally very expensive as in the case of process-based models that captures the evolution of the temperature and stress/strain field or very fast but often inaccurate as in the case of inherent strain based (IST) based models which comprise a series of quasi-static stress-analyses. In this study, we demonstrate that a model that is both accurate and computationally less expensive can be developed by adopting a hybrid approach in which the spatial and temporal resolution of the field solutions over different regions of the part are selectively controlled depending on the expected levels of stress gradients in these regions. The new model, called Additive FEA Hybrid (AFEA-H) model, uses a previously reported Additive FEA (AFEA) framework [1] to combine a process-based model that has a high spatial and temporal resolution with an IST based model that has a low resolution. Numerical simulations performed for a few example problems demonstrate that the AFEA-H method can enhance the computational efficiency substantially without compromising solution accuracy.
机译:添加剂制造(AM)患有残留应力形成和部分畸变。提高AM的一种方法是使用最佳过程参数,从而产生残余的应力分布,这是不利的。基于有限元分析(FEA)的模型可用作确定最佳过程参数的设计工具。作为一种设计工具,这种模型不仅应该预测残余应力形成和零件失真,而且应该能够在合理的时间内进行模拟。然而,传统的FEA模型是准确的,但在基于过程的模型的情况下,计算方式非常昂贵,其捕获温度和应变场的演变或非常快,但通常不准确地如此基于菌株的情况(IST基于模型,包括一系列准静态应力分析。在这项研究中,我们证明可以通过采用混合方法来开发一种模型,其可以通过采用混合方法来开发,其中根据预期的水平选择性地控制部分不同区域的现场解决方案的场间和时间分辨率这些地区的应力梯度。新模型,称为添加剂FEA杂交(AFEA-H)模型,使用先前报道的添加剂FEA(AFEA)框架[1]来组合基于过程的模型,其具有具有基于IST的IST的高空间和时间分辨率低分辨率。对于几个示例问题执行的数值模拟表明,AFEA-H方法可以基本上提高计算效率而不会影响解决方案精度。

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