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Modeling of Kerf Profile Generated in Multi-Layered Laminate Composites with Abrasive Waterjet

机译:磨料水射流在多层层压复合材料中产生的切口轮廓建模

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Kerf profile generated by abrasive waterjet (AWJ) machining process has always been an interesting area as it dictates the quality of the part. However, due to the non-deterministic nature of the process, it is a challenging task to predict it. On the other hand, understanding and controlling the kerf profile in multi-layered structures (MLSs) is a further difficult task as various layers made of different materials respond to erosion in a different manner and results in a completely different kerf shape (barrel or x-shaped kerf profile) due to the material removal mechanisms dependency on the material property of the specific layers, jet divergence and position of specific layer. Therefore, it is important to understand and develop predictive models of resulting kerf profile in MLSs so that they can be used in controlling the accuracy of the resulting kerf which in turn dictates the final part accuracy. The attempts in this direction are very limited although some modeling efforts are reported in homogeneous materials (metals, ceramics). For the first time, an analytical model for predicting the kerf profile generated in MLS machining with AWJ was presented in this research work. Discretized form of Hashish model was used for determining depth of cut. The effect of jet divergence from the experimentally obtained values, upon passing through the upper layer has been considered. The developed predictive model was validated by the kerf shapes obtained from the experimental trials on metal-adhesive-rubber MLS. Kerf profiles obtained from the simulations have captured the resulted convergent-divergent (X-shaped) profile, while cutting metal-rubber laminate composite, effectively. Furthermore, the effectiveness of the proposed analytical model was demonstrated by generating the various kerf shapes generated at various jet traverse rates.
机译:磨料射流(AWJ)加工过程产生的切缝轮廓一直是一个有趣的领域,因为它决定了零件的质量。但是,由于该过程的不确定性,因此对其进行预测是一项艰巨的任务。另一方面,了解和控制多层结构(MLS)中的切口轮廓是另一项艰巨的任务,因为由不同材料制成的各层以不同的方式响应腐蚀并导致完全不同的切口形状(桶形或x形切口轮廓)是由于材料去除机制取决于特定层的材料属性,射流散度和特定层的位置而引起的。因此,重要的是要理解和开发MLS中最终切缝轮廓的预测模型,以便将它们用于控制最终切缝的精确度,从而决定最终零件的精度。尽管在均质材料(金属,陶瓷)中报告了一些建模工作,但在此方向上的尝试非常有限。这项研究工作首次提出了一种预测模型,该模型用于预测AWJ在MLS加工中产生的切缝轮廓。 Hashish模型的离散形式用于确定切深。已经考虑了通过上层时射流发散与实验获得的值的影响。已开发的预测模型已通过在金属粘合剂橡胶MLS上进行的实验试验获得的切口形状得到了验证。从模拟获得的切缝轮廓已捕获了最终的收敛-发散(X形)轮廓,同时有效地切割了金属-橡胶层压板复合材料。此外,通过生成以各种射流横越速率生成的各种切口形状,证明了所提出的分析模型的有效性。

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