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Finite element modelling of abrasive water-jet machining (AWJM)

机译:磨料水射流加工(AWJM)的有限元建模

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摘要

Despite the large number of abrasive waterjet machining (AWJM) models developed so far, there still has been confusion bout the nature by which workpiece surfaces are eroded. The finite element method (FEM) could provide both qualitative and quantitative means in order to explain the AWJ erosion process. This paper presents an attempt to model the AWJM process using the powerful tool of the finite element method. The main objective is to develop an FE model which would enable to predict the depth of cut without any cutting experiments. The new model takes into account the precise representation of the constitutive behaviour of the workpiece material under AWJ dynamic loading conditions. Interaction of the abrasive particle with the workpiece material is traced at small time increments. The model accurately predicts the depth of cut as a result of AWJ impact and the results are in good agreement with experimental results.
机译:尽管到目前为止已开发出大量的磨料水射流加工(AWJM)模型,但仍然存在混淆工件表面侵蚀性质的困惑。有限元方法(FEM)可以提供定性和定量手段,以解释AWJ腐蚀过程。本文提出了使用功能强大的有限元工具对AWJM过程建模的尝试。主要目标是开发一个有限元模型,无需进行任何切割实验即可预测切割深度。新模型考虑了在AWJ动态载荷条件下工件材料本构行为的精确表示。以较小的时间增量跟踪磨料颗粒与工件材料的相互作用。该模型可准确预测由于AWJ冲击而产生的切削深度,并且该结果与实验结果非常吻合。

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