Articles:2023,Vol:28,Issue(3):129-144
Citation:
LEI Dongyue. Automation Technology in Welding Seam Welding Machining Design[J]. International Journal of Plant Engineering and Management, 2023, 28(3): 129-144

Automation Technology in Welding Seam Welding Machining Design
LEI Dongyue
School of General Engineering, Beihang University, Beijing 100080, China
Abstract:
With the continuous development of society, the gradual improvement of mechanical automation technology has been introduced into the production of many enterprises in China, which has had a great impact on the increase of China's gross national product. Applying mechanical automation technology greatly saves labor cost, improves working efficiency and the production level of enterprises, effectively promotes the development of enterprises, and increases the enterprise's income. In addition, mechanical automation technology is closely related to product production-related technology and plays a very important role in the innovation of enterprise products. This article will briefly introduce the design and application of automation technology in welding seam welding design, and understand the development background, research status, current application and simulation design.
Key words:    automation technology    welding seam welding   
Received: 2023-03-08     Revised:
DOI: 10.13434/j.cnki.1007-4546.2023.0301
Corresponding author:     Email:
Author description:
Service
PDF(271KB) Free
Print
Authors
LEI Dongyue

References:
[1] ELANGOVAN M, THENARASU M, NARAYANAN S. et al. Design of flexible spot-welding cell for Body-In-White (BIW) assembly[J]. Periodicals of Engineering and Natural Sciences, 2018,6(2):23-38.
[2] FAN J, JING F, FANG Z. et al. Automatic recognition system of welding seam type based on SVM method[J]. The International Journal of Advanced Manufacturing Technology, 2017,92:989-999.
[3] GIBSON B T, LAMMLEIN D H, PRATER T J. et al. Friction stir welding:Process, automation, and control[J]. Journal of Manufacturing Processes, 2014,16(1):56-73.
[4] GUO W, ZHU Y, HE X. A robotic grinding motion planning methodology for a novel automatic seam bead grinding robot manipulator[J]. IEEE Access, 2020,8:75288-75302.
[5] GUO X, ZONG S, SHEN Z. et al. Mechanical behavior of in-service axial compression angle steel members strengthened by welding[J]. Journal of Building Engineering, 2020,32,101736.
[6] HE Y, YU Z, LI J. et al. Discerning weld seam profiles from strong arc background for the robotic automated welding process via visual attention features[J]. Chinese Journal of Mechanical Engineering, 2020,33(1):1-12. (in Chinese)
[7] KONG X, YANG Q, LI B. et al. Numerical study of strengths of spot-welded joints of steel[J]. Materials & Design, 2008,29(8):1554-1561.
[8] KUN P E N G, CUI H C, LU F G. et al. Mechanical properties and wear resistance of aluminum composite welded by electron beam[J]. Transactions of Nonferrous Metals Society of China, 2011,21(9):1925-1931. (in Chinese)
[9] LU Z, FAN J, HOU Z. et al. Automatic 3D seam extraction method for welding robot based on monocular structured light[J]. IEEE Sensors Journal, 2021,21(14):16359-16370.
[10] WANG B, HU S J, SUN L. et al. Intelligent welding system technologies:State-of-the-art review and perspectives[J]. Journal of Manufacturing Systems, 2020,56:373-391.
[11] WANG J. Development and prospect on fully mechanized mining in Chinese coal mines[J]. International Journal of Coal Science & Technology, 2014,1:253-260. (in Chinese)
[12] ZHANG H, HOU Y, ZHAO J. et al. Automatic welding quality classification for the spot welding based on the Hopfield associative memory neural network and Chernoff face description of the electrode displacement signal features[J]. Mechanical Systems and Signal Processing, 2017,85:1035-1043.
[13] ZHANG L, MIN J, WANG B. et al. Constitutive model of friction stir weld with consideration of its inhomogeneous mechanical properties[J]. Chinese Journal of Mechanical Engineering, 2016,29(2):357-364.
[14] ZHOU B, PYCHYNSKI T, REISCHL M. et al. Machine learning with domain knowledge for predictive quality monitoring in resistance spot welding[J]. Journal of Intelligent Manufacturing, 2022,33(4):1139-1163.
[15] ZHOU B, SVETASHOVA Y, BYEON S. et al. Predicting quality of automated welding with machine learning and semantics:A bosch case study[C]//In Proceedings of the 29th ACM International Conference on Information & Knowledge Management, 2020,10:2933-2940.
[16] CHEN M K. Discussion on the application of automation welding equipment in the manufacturing of engineering machinery[J]. Science and Technology Innovation and Application, 2018,227(7):159-160. (in Chinese)
[17] CUI Y, LIU S Q, GAO D J, et al. Automatic welding process for the side beam of the subway bogie[J]. Welding Machine, 2017,47(7):69-72. (in Chinese)
[18] FAN Y B, BI Y K, FU Y, et al. Development of automated welding process for the air spring seat plate of the bogie[J]. Welding Machine, 2017,47(9):98-100. (in Chinese)
[19] FAN Y B, FU Y. Development and application of automated continuous welding process for the double-layer weld of the circular ring[J]. Locomotive & Rolling Stock Technology, 2017(5):9-10. (in Chinese)
[20] LI W J, LIU D M, WANG S G. Discussion on welding deformation control scheme of the bogie frame of high-speed EMU[J]. China Chemical Industry Trading, 2018(10):227. (in Chinese)
[21] LI W C. Exploration of quality control of mechanical automation technology in production and manufacturing[J]. Building Materials and Decoration, 2020(10):175-176. (in Chinese)
[22] LIU H Y. Analysis on the application of automated welding equipment in the manufacturing of engineering machinery[J]. China Metal Bulletin, 2018,99(3):112-114. (in Chinese)
[23] SHEN H J, WANG Z D, LI T. Research and development of welding process for railway vehicle frame assembly[J]. Welding Machine, 2019,49(6):71-73. (in Chinese)
[24] SONG H C, LIU F F. Application of welding and cutting equipment in the high-efficiency welding of engineering machinery manufacturing[J]. Chemical Industry Management, 2018,487(16):160. (in Chinese)
[25] SU Z W. Development and application of automatic profiled welding device[J]. Technology and Market, 2019,(3) (in Chinese)
[26] SUN W L. Design principles and development trends of mechanical design, manufacturing and automation[J]. Heilongjiang Science, 2020,11(8):142-144. (in Chinese)
[27] ZHANG Z, MA C F. Application of automation welding equipment in the manufacturing of engineering machinery[J]. Science and Technology Innovation, 2018(5):184-185. (in Chinese)