Hazard of blue light emitted during tungsten inert gas welding of aluminum alloys

被引:0
|
作者
Nakashima H. [1 ]
Takahashi J. [1 ]
Utsunomiya A. [2 ]
Fujii N. [1 ]
Okuno T. [3 ]
机构
[1] Polytechnic University of Japan, Japan
[2] Polytechnic Center Shizuoka, Japan
[3] Tokyo Metropolitan University, Japan
来源
Keikinzoku Yosetsu/Journal of Light Metal Welding | 2019年 / 57卷 / 12期
关键词
Aluminum alloys; Blue light; EŠective radiance; Hazard; TIG welding;
D O I
10.11283/jlwa.57.7
中图分类号
学科分类号
摘要
Blue light emitted from the arc welding process can cause photoretinopathy. Since the hazard level of blue light depends upon the welding variables, it is important to identify the hazard levels of blue light under various conditions. Here, we experimentally evaluated the hazard levels of blue light emitted from the tungsten inert gas (TIG) welding of aluminum alloys. In addition, the protective performance of filter plates and automatic welding filters that complied respectively with the Japanese Industrial Standard (JIS) and Welding Engineering Society Standard (WES) were considered. In this study, the hazard level of blue light is evaluated in terms of eŠective blue light radiance defined in the American Conference of Governmental Industrial Hygienists Guidelines. We have measured the eŠective blue light radiance in the range of 1.1-7.3 W/(cm2・sr). The measured eŠective blue light radiance is observed to depend upon the type of electrode used and increases with increase in welding currents. We thus suggest that the hazard levels of blue light emitted from TIG welding of aluminum alloys can be sufficiently reduced using a JIS T8141 filter plate and a WES 9010 automatic welding filter. © 2019 Japan Light Metal Welding and Construction Assoc.. All rights reserved.
引用
收藏
页码:507 / 514
页数:7
相关论文
共 50 条
  • [1] Hazard of ultraviolet radiation emitted in gas tungsten arc welding of aluminum alloys
    Nakashima, Hitoshi
    Utsunomiya, Akihiro
    Fujii, Nobuyuki
    Okuno, Tsutomu
    INDUSTRIAL HEALTH, 2016, 54 (02) : 149 - 156
  • [2] Blue-Light Hazard From Gas Metal Arc Welding of Aluminum Alloys
    Nakashima, Hitoshi
    Takahashi, Jyunya
    Fujii, Nobuyuki
    Okuno, Tsutomu
    ANNALS OF WORK EXPOSURES AND HEALTH, 2017, 61 (08) : 965 - 974
  • [3] How to choose an appropriate protective gas to improve the performance of the metal inert gas (MIG) and tungsten inert gas (TIG) welding of the alloys of aluminum
    Fortain, J.M.
    Gadrey, S.
    Rivista Italiana della Saldatura, 2011, 63 (02): : 145 - 158
  • [4] ANALYSIS AND COMPARISON OF ALUMINUM ALLOY WELDED JOINTS BETWEEN METAL INERT GAS WELDING AND TUNGSTEN INERT GAS WELDING
    Zhao, Lei
    Guan, Yingchun
    Wang, Qiang
    Cong, Baoqiang
    Qi, Bojin
    SURFACE REVIEW AND LETTERS, 2015, 22 (06)
  • [5] Comparative study of friction stir welding and tungsten inert gas welding of pure aluminum
    Suri, Atul
    Prashant, R. S. S.
    Raj, K. Hans
    2013 INTERNATIONAL CONFERENCE ON ENERGY EFFICIENT TECHNOLOGIES FOR SUSTAINABILITY (ICEETS), 2013,
  • [6] Tungsten inert gas welding of dissimilar metals aluminum to titanium with aluminum based wire
    Li, Lei
    Zhao, Baisen
    Wu, Xiaojun
    MATERIALS RESEARCH EXPRESS, 2019, 6 (05):
  • [7] Effects of filler on the microstructure and corrosion of similar and dissimilar gas inert tungsten arc welding aluminum alloys joints
    Elshafey Ahmed Gadallah
    Mohamed Ibrahim Abd El Aal
    Abdelkarim Yousif Mohamed
    Hossam Hemdan El-Fahhar
    Scientific Reports, 13
  • [8] Thorium exposure during tungsten inert gas welding with thoriated tungsten electrodes
    Gäfvert, T
    Pagels, J
    Holm, E
    RADIATION PROTECTION DOSIMETRY, 2003, 103 (04) : 349 - 357
  • [9] Characterization of welded assemblies by tungsten inert gas (TIG) welding of 7075 t6 aluminum alloys
    Temmar, Mustapha
    Hadji, Mohamed
    Sellam, Mohamed
    UPB Scientific Bulletin, Series B: Chemistry and Materials Science, 2011, 73 (01): : 203 - 212
  • [10] Ultrasonic vibration assisted tungsten inert gas welding of dissimilar magnesium alloys
    Yang, Fangzhou
    Zhou, Jie
    Ding, Rongrong
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2018, 34 (12) : 2240 - 2245