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An experimental study on the dimensional accuracy of holes made by abrasive waterjet machining of Hardox steels

机译:高渗钢磨削水射流加工孔尺寸精度的实验研究

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The manufacturing process of special steels like Hardox is usually difficult. Abrasive waterjet cutting (AWJ) is one of the machining processes which can be used in this case, with good results, as proved in previous research of the authors. This paper presents an experimental study on the influence of the AWJ main process parameters to the dimensional accuracy of holes manufactured in Hardox steels. The experiments were conducted using a L8(24) fractional factorial design matrix considering four parameters: the traverse speed, the part thickness, the hole dimension and the material type. Based on the measurement of the dimensions of the holes, the influence of those parameters was revealed and analyzed. The manufacturing time was also registered, as this parameter directly influences the production cost. Further research aims developing a mathematical model which will be a useful tool in workshop process planning.
机译:像硬酷一样的特殊钢的制造过程通常很困难。磨料水射流切割(AWJ)是在这种情况下可以使用的加工过程之一,效果良好,如前所述的作者所证明。本文介绍了AWJ主要过程参数对硬氧木索钢制造孔尺寸精度的实验研究。考虑到四个参数,使用L8(24)分数阶段设计矩阵进行实验:横向速度,零件厚度,孔尺寸和材料类型。基于孔的尺寸的测量,揭示并分析了这些参数的影响。制造时间也注册,因为此参数直接影响生产成本。进一步的研究旨在开发一个数学模型,该模型将成为研讨会流程规划中的有用工具。

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