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Modelling of Abrasive Water Jet Cutting with Controlled Depth for Near-Net-Shape Fabrication

机译:近净形加工的深度控制磨料水射流切割建模

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摘要

Near-net-shape fabrication of difficult to machine materials is a promising application for the abrasive water jet technology. An effective implementation can be achieved by controlling the kerf depth and cutting off defined material fragments. A model for controlled cutting is introduced to make the machining process design more effective for different materials. An empirical model was combined with the process’ physical behavior, allowing the prediction of the kerf geometry using a minimum number of predictors and thus initial trials. The model tested with metal matrix composites, reveals the capability of transferring knowledge to new materials using few initial trials.
机译:难加工材料的近最终形状制造是磨料射流技术的一个有前途的应用。通过控制切缝深度并切下定义的材料碎片,可以实现有效的实现。引入了用于可控切割的模型,以使加工工艺设计对于不同的材料更加有效。将经验模型与过程的物理行为相结合,可以使用最少数量的预测变量进行切口几何形状的预测,从而进行初步试验。用金属基复合材料测试的模型显示了只需很少的初步试验就能将知识转移到新材料上的能力。

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