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An Experimental Study on the Depth of Cut of Granite in Abrasive Waterjet Cutting

机译:磨料水射流切割花岗岩切深的实验研究

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摘要

Many studies investigating the cutting performances of waterjets for several kinds of materials such as steel, brass, glass, or aluminium are available. However, there are few studies focused on the rock cutting in the literature. In the present study, therefore, it is aimed at investigating the cuttability of granite by abrasive waterjet. The effect of process parameters and the textural properties of granites on the cut depth and surface quality were investigated. The design philosophy of Taguchi was followed to conduct the experiments. Analysis of variance (ANOVA) was used to evaluate the data obtained statistically. Major significant process factors affecting the cut depth of granite were determined. It was disclosed that the traverse speed was the most significant process parameters affecting the cut depth of granite. Additionally, it was found that the depth of cut and surface quality were strongly affected by the grain size and its boundaries with the grains surrounding. Furthermore, consistent relations between some physical and mechanical properties of the granite (e.g., the water absorption, microhardness, the specific bulk density, and the uniaxial compressive strength) and the depth of cut were observed.
机译:目前已有许多研究针对多种材料(例如钢,黄铜,玻璃或铝)的水刀切割性能进行研究。但是,在文献中很少有关于岩石切割的研究。因此,在本研究中,其目的是研究用磨料水射流切割花岗岩的可切割性。研究了工艺参数和花岗岩组织特性对切深和表面质量的影响。遵循田口的设计理念进行实验。方差分析(ANOVA)用于评估统计获得的数据。确定了影响花岗岩切割深度的主要重要工艺因素。据披露,横移速度是影响花岗岩切割深度的最重要的工艺参数。另外,发现切削深度和表面质量受晶粒尺寸及其与周围晶粒的边界的强烈影响。此外,观察到花岗岩的某些物理和机械性质(例如吸水率,显微硬度,比容密度和单轴抗压强度)与切深之间的一致关系。

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