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Quality of the Cut Surfaces Processed by AWJC as a Function of the Distance between the Cutting Head and Working Sample

机译:由AWJC处理的切割表面的质量作为切割头和工作样本之间的距离的函数

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Water jet cutting is one of the newest techniques in non-conventional machining processes. It is a flexible technology since the same equipment can be used to cut virtually any material, such as stainless steel, high-nickel alloys and polymer composites (usually, for these materials, the water jet is mixed with an abrasive material, the process being known as abrasive water jet cutting AWJC). Compared with the classical technologies, water jet cutting presents the following advantages: very low side forces during machining, it is rapid, it is a silent process, low thermal distortion, good cutting accuracy and minimal burrs. To optimize the process, it is necessary to analyze the influence of process parameters on the quality of cut. The aim of this paper is to analyze the influence of distance between the cutting head and the working sample on the quality of cut, quantified by the following parameters: kerf width at the jet inlet, jet outlet, deviation from perpendicularity, inclination angle and roughness.
机译:水射流切割是非传统加工过程中最新的技术之一。它是一种灵活的技术,因为相同的设备几乎可以用于切割任何材料,如不锈钢,高镍合金和聚合物复合材料(通常,对于这些材料,水射流与磨料材料混合,过程是被称为磨料水射流切割AWJC)。与经典技术相比,水射流切割呈现以下优点:在加工过程中非常低,它是迅速的,它是一种沉默的过程,低热失真,良好的切割精度和最小的毛刺。为了优化该过程,有必要分析过程参数对切割质量的影响。本文的目的是分析切割头与工作样本之间的距离对切割质量的影响,通过以下参数量化:射流入口处的Kerf宽度,喷射出口,偏离垂直度,倾斜角度和粗糙度。

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