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AWJ PEFORMANCE CHARACTERSITICS AT 600 MPa

机译:AWJ性能特征在600 MPa

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Increasing the pressure of abrasive waterjet, while fixing the jet power, increases the jet's power density and thus the cutting speed may increase. This was observed for steel, aluminum, and stone cutting. It was also observed that the kerf taper is less for higher pressure jets. Increasing the pressure while keeping the jet diameter fixed will increase both the power and the power density. This will result in increase cutting speed and less taper. The operating cost of the AWJ process consists mainly of the costs of abrasives, nozzle wear, utility, and maintenance of equipment. The cost per unit length of material (specific cost) is determined based on the cutting speed. It was found that the main advantage of increasing pressure is increasing the cutting speed or reducing the abrasive consumption per unit time or unit length of cut. The highest savings are obtained when the speed is maximized by increasing the pressure and the abrasive flow rate. Several study cases were addressed in this paper using assumptions and simple models to generalize the analysis. The analysis indicates that increasing the pressure from 400 MPa to 600 MPa may result in cost per unit length saving of over 30%.
机译:增加磨料水射精的压力,同时固定喷射功率,增加了喷射的功率密度,因此切割速度可能增加。这对于钢,铝和石材切割观察到这一点。还观察到,Kerf锥度对更高的压力射流较小。增加压力,同时保持喷射直径固定的,将增加功率和功率密度。这将导致切割速度和较少的锥度。 AWJ进程的运营成本主要包括磨料,喷嘴磨损,效用和设备维护的成本。根据切削速度确定每单位材料长度(特定成本)的成本。结果发现,增加压力的主要优点是增加切割速度或减少每单位时间或单位切割的磨料消耗。当通过增加压力和磨料流速时,当速度最大化时获得最高的节省。本文使用假设和简单模型在本文中解决了几种研究案例,以概括分析。分析表明,将400 MPa的压力增加到600MPa可能导致每单位长度的成本,节省超过30%。

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