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CFD aided design and experimental validation of an innovative Air Assisted Pure Water Jet cutting system

机译:CFD辅助设计和创新的空气辅助纯水喷射切割系统的实验验证

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摘要

Water jet cutting has always been a promising technology because of its extreme simplicity and flexibility, even if it often suffers a lack of control on its process parameters, especially if compared to technologies such as laser cutting or electro-discharge machining. Recent studies have showed how the presence of water inside the orifice causes disturbances and instabilities which systematically affect the jet structure, both during the jet formation and the cutting process. These disturbances can be neglected in industrial applications, but they can play a relevant role in case of high-precision water jet machining. The aim of the research presented in this paper is to develop an innovative system able to modify the orifice flow field by means of a simple modification of the standard cutting head geometry; the system allows the controlled injection of air inside the primary orifice to prevent the jet instabilities and to adapt the level of jet coherence to the specific machining operation. The fluid dynamics aspects of the outflow process are investigated by means of a 3D numerical simulation with the Ansys Fluent CFD solver, while considerable experimental efforts are provided in order to validate the numerical model and finally evaluate the system performances on real case studies.
机译:水射流切割由于其极端的简单性和灵活性而一直是一种有前途的技术,即使它经常缺乏对其工艺参数的控制,尤其是与激光切割或放电加工等技术相比时。最近的研究表明,孔内水的存在如何引起扰动和不稳定性,从而在射流形成和切割过程中系统地影响射流结构。这些干扰在工业应用中可以忽略不计,但是在高精度喷水加工中它们可以发挥重要作用。本文提出的研究目的是开发一种创新的系统,该系统能够通过简单修改标准切割头的几何形状来修改孔口流场。该系统允许以受控的方式将空气注入主孔内,以防止射流不稳定,并使射流连贯性水平适应特定的加工操作。通过Ansys Fluent CFD求解器的3D数值模拟,研究了流出过程的流体动力学方面,同时提供了大量的实验工作来验证数值模型并最终在实际案例研究中评估系统性能。

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