Affiliation:
1. Beijing Institute of Technology
Abstract
Abstract
Electrode wear (EW) during the electrical discharge machining (EDM) process determines surface topography accuracy. In this paper, an automatic evaluation method is proposed by integrating image segmentation and three-dimensional (3D) registration (IS-3DR) to evaluate the EW more accurately. First, the original two-dimensional (2D) image and the 3D point cloud were derived from a laser microscope image, and the 2D worn area was determined by automatic recognition and segmentation. Then, 3D registration between the 3D point cloud and the 2D worn area was utilized to qualitatively define the 3D EW area. Finally, the 3D EW volume was obtained quantitatively through microelement calculation based on the 3D EW area and the shape fitting of the original electrode. The results showed that the intersection over union (IOU) of image segmentation was higher than 97.5%, compared with the manually labeled image segmentation method. The reliability of the proposed IS-3DR evaluation method was confirmed. Additionally, EDM experiments are carried out to verify the proposed IS-3DR evaluation method. The impact of various discharge parameters on EW was illustrated in detail.
Publisher
Research Square Platform LLC