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The Effects of Elastic Modulus Coefficient and Linear Expansion Coefficient of Overhead Conductor on Sag Behavior

가공전선의 이도거동에서 탄성계수와 선팽창계수의 영향

  • 김병걸 (한국전기연구원 재료응용연구단) ;
  • 김상수 (한국전기연구원 재료응용연구단) ;
  • 왕윤찬 (한국전력공사 중앙교육원)
  • Published : 2008.10.01

Abstract

The effects of elastic modulus coefficient and linear expansion coefficient of overhead distribution power line(ACSR $58 mm^2$) on sag behavior in distribution line have been investigated to clarify the difference between specification and experimental level. The elastic modulus coefficients of Al wire and steel wire were $5,182.6 kgf/mm^2,\;18,348.8 kgf/mm^2$, respectively Therefore, the computational composition elastic modulus coefficient of the power line was $7,063.5 kgf/mm^2$, while that of experimentally measured was $7681.1 kgf/mm^2$. As a result, we found that elastic modulus coefficient which was experimentally measured was higher than that of computational by 8.7 %. However, when planner designs the sag of disoibution line, the elastic modulus coefficient of power line $8,400 kgf/mm^2$ should be generally adopted. These two different using values lead to the sag difference of 0.62 m. The other results will be discussed.

Keywords

References

  1. 緖方淸一, "架空送電線 機械的 特性", 第 471號, p. 3, 1993
  2. W. J. McG. Tegart and A. Giffins, "The Hot Deformation of Austenite", John B. Ballance (Ed) 3rd, AIME, New York, p. 1, 1977
  3. 심응보, 우정욱, 최종기, "송전설계기준 제․개정 및 보완연구", 한국전력공사 전력연구원 기술보고서, 제5장, p. 192, 2001
  4. 심응보, 우정욱, 최종기, "송전설계기준 제․개정 및 보완연구", 한국전력공사 전력연구원 기술보고서, 제5장, p. 198, 2001
  5. M. B. Adeyemi, R. A. Stark, and G. F. Modlen, "Heat Treatment 79", Society, p. 122, 1980
  6. J. M. potter and R. A. Millard, "Advance in X-Ray Analysis", V20, ed., H. McMurdie, Plenum Press, p. 309, 1977
  7. 김상수, 김병걸, 박수동, "증용량저이도 송전선(STACIR/AW)용 인바강선의 피로특성에 미치는 경년열화의 효과", 한국전기전자재료학회 2004하계학술대회논문집, p. 1274, 2004
  8. S. Sasaki, T. Takebe, K. Miyazaki, M. Yokota, K. Sato, and S. Yoshida, "ZTACIR-new extra-heat resistant galvanized invar-reinforced aluminum alloy conductor", Sumitomo Electric Technical Review, No. 22, p. 46, 1983
  9. 박수동, 김병걸, 김상수, "STACIR/AW 410 $mm_2$ 송전선의 이도거동", 한국전기전자재료학회 2004하계학술대회논문집, p. 1262, 2004