Płodzień Marcin, Żyłka Łukasz, Żak Krzysztof, Wojciechowski Szymon
Department of Manufacturing Techniques and Automation, The Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, W. Pola Str. 2, 35-959 Rzeszow, Poland.
Department of Manufacturing and Materials Engineering, Faculty of Mechanical Engineering, Opole University of Technology, Mikolajczyka Str. 5, 42-271 Opole, Poland.
Materials (Basel). 2023 Jul 27;16(15):5288. doi: 10.3390/ma16155288.
An experimental study of the abrasive water jet cutting process of Inconel 718 alloy samples with varying values of cutting speed, abrasive flow rate and cutting material height was carried out. Surface roughness and waviness were measured at different cutting depths, and the variation of the kerf angle was studied. It was shown that the depth of cut has the greatest effect on roughness and waviness. The height of the sample has no impact on the roughness and waviness at a particular depth of cut. As the depth of cut increases, in most cases, roughness and waviness increase as well. It has been proven that the cutting speed has a negligible effect on surface roughness, but it has a significant effect on surface waviness. The waviness, on the other hand, depends only slightly on the abrasive flow. It has been proven that the kerf angle does not depend on the abrasive flow. The kerf angle depends mainly on the height of the sample. The models were developed for the parameters of roughness Ra and Rz, waviness Wa and Wz and kerf angle. All models were calculated without separating the surface into smooth and rough cutting regions.
对不同切割速度、磨料流量和切割材料高度的Inconel 718合金样品进行了磨料水射流切割过程的实验研究。在不同切割深度下测量了表面粗糙度和波纹度,并研究了切口角度的变化。结果表明,切割深度对粗糙度和波纹度的影响最大。在特定切割深度下,样品高度对粗糙度和波纹度没有影响。随着切割深度的增加,在大多数情况下,粗糙度和波纹度也会增加。已经证明,切割速度对表面粗糙度的影响可以忽略不计,但对表面波纹度有显著影响。另一方面,波纹度仅略微依赖于磨料流量。已经证明,切口角度不依赖于磨料流量。切口角度主要取决于样品的高度。针对粗糙度Ra和Rz、波纹度Wa和Wz以及切口角度的参数建立了模型。所有模型的计算均未将表面划分为光滑和粗糙切割区域。