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A strategy for efficient and quality cutting of materials with abrasive waterjets considering the variation in orifice and focusing nozzle diameter

机译:考虑到节流孔和聚焦喷嘴直径的变化,使用磨料喷水机高效,高质量地切割材料的策略

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摘要

In Abrasive Waterjet (AWJ) cutting, orifice and focusing nozzle diameter undergo continuous change in their dimensions due to erosive nature of high velocity abrasive waterjet. This particular phenomenon can affect the efficiency and quality of the process. To achieve maximum efficiency and desired quality with this process, the parameters need to be optimally selected from time to time considering the changes in the dimensions of orifice and focusing nozzle. In an effort to develop strategies for this purpose and to build the knowledge base for adaptive control of the process, the present work aims to study the influence of orifice and focusing nozzle diameter variation on the performance of abrasive waterjets in cutting 6063-T6 aluminum alloy. The performance was assessed in terms of different parameters such as depth of cut, material removal rate, cutting efficiency, kerf geometry and cut surface topography. In order to maintain the desired performance, it is essential to monitor the condition of nozzles and suitably adjust the process parameters with a view to control the process. Towards the latter, the present work attempts to suggest a strategy that can aid in replacing the nozzles at an appropriate time for maintaining the performance of process within certain limits so as to maintain the precision in machining with abrasive waterjets.
机译:在磨料水刀(AWJ)中,由于高速磨料水刀的侵蚀性,孔口和聚焦喷嘴的直径尺寸会不断变化。这种特殊现象会影响过程的效率和质量。为了在此过程中获得最高效率和所需的质量,需要时常考虑孔口和聚焦喷嘴尺寸的变化,对参数进行最佳选择。为了开发用于此目的的策略并建立用于过程的自适应控制的知识库,本工作旨在研究节流孔和聚焦喷嘴直径变化对切割6063-T6铝合金时磨料水射流性能的影响。 。根据不同的参数(例如切割深度,材料去除率,切割效率,切缝几何形状和切割表面形貌)评估了性能。为了保持期望的性能,必须监控喷嘴的状态并适当地调整工艺参数以控制工艺。对于后者,本工作试图提出一种策略,该策略可以帮助在适当的时间更换喷嘴,以将工艺的性能保持在一定的范围内,从而在使用磨料水刀的加工中保持精度。

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