Szada-Borzyszkowska Monika Edyta, Kacalak Wojciech, Bohdal Łukasz, Szada-Borzyszkowski Wiesław
Department of Mechanical Engineering, Faculty of Mechanical Engineering and Energy, Koszalin University of Technology, Racławicka 15-17 Street, 75-620 Koszalin, Poland.
Branch of the KUT in Szczecinek, Koszalin University of Technology, 78-400 Szczecinek, Poland.
Materials (Basel). 2024 Apr 4;17(7):1666. doi: 10.3390/ma17071666.
Electrical steels are widely used in the electrical industry in the construction of many devices, e.g., power transformer cores and distribution transformers. An important parameter of electrical components that determines the efficiency of devices is energy loss during remagnetization. These losses are influenced, among other factors, by steel cutting processes. The common techniques for cutting electrical materials on industrial lines are mechanical cutting and laser cutting. High-pressure abrasive water jet (AWJ) cutting, unlike the technologies mentioned above, can ensure higher quality of the cut edge and limit the negative impact of the cutting process on the magnetic properties of sheet metal. However, the correct control of the process and the conditions of its implementation comprise a complex issue and require extensive scientific research. This work presents a new approach to cutting electric sheets, involving bundle cutting, which significantly increases the processing efficiency and the dimensional and shape accuracy of the cut details. The tests were carried out for bundles composed of a maximum of 30 sheets, ready to be joined in a stator and rotor in a motor. The influence of processing conditions on the quality of the cut edges of sheet metal, the width of the deformation zone, and the burr height were analyzed. The detailed analysis of the quality of the cut edges of electrical bundled sheets creates new possibilities for controlling the AWJ cutting process in order to obtain a product with the desired functional and operational properties.
电工钢广泛应用于电气工业中的许多设备制造,例如电力变压器铁芯和配电变压器。决定设备效率的电气元件的一个重要参数是再磁化过程中的能量损失。这些损失受多种因素影响,其中包括钢材切割工艺。工业生产线上切割电工材料的常用技术是机械切割和激光切割。与上述技术不同,高压磨料水射流(AWJ)切割可以确保更高的切割边缘质量,并限制切割过程对金属板材磁性能的负面影响。然而,正确控制该工艺及其实施条件是一个复杂的问题,需要进行广泛的科学研究。这项工作提出了一种切割电工薄板的新方法,即束状切割,它显著提高了加工效率以及切割零件的尺寸和形状精度。测试针对最多由30张薄板组成的束状材料进行,这些薄板准备用于电机的定子和转子连接。分析了加工条件对金属板材切割边缘质量、变形区宽度和毛刺高度的影响。对电工束状薄板切割边缘质量的详细分析为控制AWJ切割工艺创造了新的可能性,以便获得具有所需功能和使用性能的产品。