Development of Deformation Correction System for Edge Strip Composite Parts
LIU Baoming1, 2, XU Qinmei1, WANG Xiaokai3, HAN Qiangru3, BAI Yang1, HAN Zhiren1, 2
1. Shenyang Aerospace University, Shenyang 110136, China;
2. Key Laboratory of Fundamental Science for National Defence of Aeronautical Digital Manufacturing Process, Shenyang 110136, China;
3. AVIC Xi’an Aircraft Industry Group Company Ltd., Xi’an 710089, China
Composite materials have high specific strength, specific stiffness and designability, which have been widely used in aircraft manufacturing. However, due to the influence of springback deformation and other factors, the geometric accuracy of parts is low, and the problem of composite material deformation correction urgently needs to be solved. Aiming at how to standardize and rapidly build the mathematical model of composite material deformation correction process, this paper put forward the automatic tracking, the discrete points and so on to assist the generation of contour surface, proposed the merge sort method, interpolation search algorithm and so on to assist the generation of inner surface. Some surface processing methods used in mathematical model construction were listed, and the deformation correction system of composite parts was developed under CATIA environment. The overall efficiency is improved by 734.5% after modification, which shows that the method can construct the technological mathematical model efficiently and normatively, and improve the generation efficiency of technological mathematical model.
刘宝明,徐沁玫,王小凯,韩强儒,白扬,韩志仁. 缘条类复合材料零件变形修正系统的开发[J]. 航空制造技术, 2024, 67(17): 115-121.
LIU Baoming, XU Qinmei, WANG Xiaokai, HAN Qiangru, BAI Yang, HAN Zhiren. Development of Deformation Correction System for Edge Strip Composite Parts[J]. Aeronautical Manufacturing Technology, 2024, 67(17): 115-121.