한국생산제조학회 학술지 영문 홈페이지
[ Article ]
Journal of the Korean Society of Manufacturing Technology Engineers - Vol. 33, No. 3, pp.133-140
ISSN: 2508-5107 (Online)
Print publication date 15 Jun 2024
Received 22 Apr 2024 Revised 30 May 2024 Accepted 31 May 2024
DOI: https://doi.org/10.7735/ksmte.2024.33.3.133

아크용접, 레이저 특수용접, 저항용접, 브레이징․솔더링 및 용접주변기기 등 용접접합 장치산업의 충격반응함수에 관한 연구

안덕현a ; 김옥환b, *
Study on Impulse-Response Function of Arc Welding, Laser and Special Welding, Resistance Welding, and Brazing, Soldering and Welding Peripherals
An, Duck-Hyuna ; Kim, Ok-Hwanb, *
aGraduate school of Mechanical Engineering, Kongju National University
bMechanical Engineering, Kongju National University

Correspondence to: *Tel.: +82-41-521-9248 E-mail address: owkim@kongju.ac.kr (Ok Hwan Kim).

Abstract

The purpose of this study is to study the impulse response function of the welding and joining equipment industry, including arc welding, laser special welding, resistance welding, brazing, soldering, and welding peripheral equipment. The global welding and joining equipment industry is experiencing an increase in demand for welding and joining equipment as consumers prefer automated equipment over manual equipment, and in particular, the demand for arc welding, laser special welding, resistance welding, brazing/soldering, and welding peripheral equipment is increasing. Welding robots and automation are emerging as alternatives to replace the labor shortage in the welding and joining market. To conduct this study, we reviewed previous studies on the welding and joining equipment industry and analyzed the industrial effects of the welding and joining equipment industry by applying vector autoregression and impulse response functions. Through this, we aim to diagnose the problems of previous studies and suggest future research directions.

Keywords:

Arc welding, Laser special welding, Resistance welding, Brazing/Soldering and welding peripherals, Vector autoregression, Impact response function

References

  • Grand View Research, 2024, viewed 20 May 2024, Market Analysis Report: Welding Equipment Market Size, Share & Trends Analysis Report By Type (Automatic), By Technology (Arc Welding, Resistance Welding), By End-Use, By Region, And Segment Forecasts, 2024-2030, <https://www.grandviewresearch.com/industry-analysis/welding-equipment-market, >.
  • Wang, Q., Jiao, W., Wang, P., Zhang, Y., 2020, A Tutorial on Deep Learning-Based Data Analytics in Manufacturing through a Welding Case Study, J. Manuf. Process., 63 2-13. [https://doi.org/10.1016/j.jmapro.2020.04.044]
  • Global Information, 2024, viewed 20 May 2024, Global Welding Materials Market 2023-2030, <https://www.giikorea.co.kr/report/dmin1316307-global-welding-materials-market.html, >.
  • Mahadevan R R., Jagan, A., Pavithran, L. Shrivastava, A., Selvaraj, S. K., 2021, Intelligent Welding by Using Machine Learning Techniques, Mater. Today: Proceedings, 46 7402-7410. [https://doi.org/10.1016/j.matpr.2020.12.1149]
  • Kim, S. D., Lee, H., Jeong, E. H., Kong, J. E., 2021, New Market Entry Strategies of Industrial Goods Wholesalers: A Case of Sinkang Korea Inc., Regional industry research, 44:4 557-576. [https://doi.org/10.33932/rir.44.4.25]
  • Utech, D., 2013, viewed 15 May 2024, Driving Toward Greater Energy Security, The White House, <https://obamawhitehouse.archives.gov/blog/2013/11/13/driving-toward-greater-energy-security, >.
  • Xu, T., Shi, Y., Cui, Y., Liang, Z., 2022, Effects of Magnetic Fields in Arc Welding, Laser Welding, and Resistance Spot Welding: A Review, Adv. Eng. Mater., 25:5 2200682. [https://doi.org/10.1002/adem.202200682]
  • Brätz, O., Klett, J., Wolf, T., Henkel, K. -M., Maier, H. J., Hassel, T., 2022, Introduction Heating in Underwater Wet Welding: Thermal Input, Microstructure and Diffusible Hydrogen Content, Materials, 15:4 1417. [https://doi.org/10.3390/ma15041417]
  • Lee, S., Cheon, J., Kim, C., 2020, Global Market Analysis for Welding Power and Welding Robot (I), J. Weld. and Join., 38:3 300-304. [https://doi.org/10.5781/JWJ.2020.38.3.10]
Duck-Hyun An

Graduate School Student in the Division of Mechanical Engineering of Kongju National University. His field of specialization are Fracture Mechanics(Dynamic Impact), Impact Fracture of Composite Material), Fatigue & Strength Evaluation, and Durability & Optimum Design.

Ok-Hwan Kim

Professor in the Department of Mechanical & Automotive Engineering, Kongju National University. His field of specialization are Fracture Mechanics(Dynamic Impact), Impact Fracture of Composite Material), Fatigue & Strength Evaluation, Durability & Optimum Design, and Design & Analysis of Machine & Automobile.