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Development of a Material Model for Visco-elastic Abrasive Medium in Abrasive Flow Machining

机译:磨料流加工中粘弹性磨料材料模型的建立

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Abrasive Flow Machining (AFM) uses the visco-elastic properties of a polymeric carrier, combined with abrasive grains, as a tool for machining of difficult to reach geometries, such as holes or cavities. Due to the design of the workpiece holding device and variable flow rates, the complex shear modulus of the polymer can locally be influenced and thus a targeted removal on the workpiece can be produced. As a result there is a reproducible material removal, causing requested polishing, deburring or edge rounding. Due to shear thinning and visco-elastic behavior of the tool, the process simulation for AFM is very complex and has not been implemented yet including an exact physical material model. Initial machining parameters so far are based on experience and extensive experimental research. This publication gives an insight into the investigation of modeling the abrasive media in AFM by adapting the standard Maxwell model of elastomers and extending it to the Generalized Maxwell model. Assuming the material removal of the process being caused by the shear stressed dependent bonding of the abrasive grains, a fundamental material model, easy to be integrated in conventional simulation programs, is developed and presented in this paper.
机译:磨料流加工(AFM)将聚合物载体的粘弹性与磨粒结合在一起,用作加工难以到达的几何形状(例如孔或腔)的工具。由于工件保持装置的设计和可变的流量,聚合物的复数剪切模量会受到局部影响,因此可以在工件上进行有针对性的去除。结果,可去除的材料被去除,导致要求的抛光,去毛刺或倒圆角。由于工具的剪切变稀和粘弹性,因此AFM的过程模拟非常复杂,尚未实现,包括精确的物理材料模型。到目前为止,初始加工参数基于经验和广泛的实验研究。该出版物通过适应标准的弹性体麦克斯韦模型并将其扩展到广义麦克斯韦模型,深入研究了在AFM中对磨料进行建模的研究。假设该过程中的材料去除是由磨粒的剪切应力相关键合引起的,则开发并提出了一种基本材料模型,该模型易于集成到常规仿真程序中。

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