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The Mechanical Properties of the Geochang Granite

거창화강암의 역학적 특성에 관한 연구

  • 김명균 (청주대학교 토목공학과)
  • Received : 2014.12.12
  • Accepted : 2015.01.20
  • Published : 2015.02.28

Abstract

The Geochang granite widely used in construction works is one of the most popular dimension stones in Korea. In order to evaluate the physical properties of rock, a lot of laboratory tests for the Geochang granite were conducted to find unit weight, absorption ratio, P wave velocity, S wave velocity, uniaxial compressive strength, Young's modulus, Poisson's ratio, tensile strength, cohesion, friction angle and point load strength index. The uniaxial compressive strength of the Geochang granite was 19.5 times tensile strength and also 8.6 times cohesion, besides P wave velocity was 1.5 times S wave velocity. Correlation analyses were also conducted to find the correlation among 11 different physical properties, where the uniaxial compressive strength showed Pearson correlation coefficient of more than 0.8 with Poisson's ratio, point load strength index and Young's modulus, respectively. Regression analyses were finally conducted by means of both linear and multiple analysis and the brief results including coefficient of determination of more than 0.7 were presented.

거창화강암은 국내 주요 석재자원의 하나로서 토목 및 건축사업에 널리 사용되고 있다. 본 연구에서는 거창화강암을 대상으로 수많은 실내시험을 실시하여 암석의 단위중량, 흡수율, P파 속도, S파 속도, 일축압축강도, 인장강도, 영률, 포아송비, 점착력, 내부마찰각, 점하중강도지수 등의 물리적 성질을 조사하였다. 일축압축강도는 인장강도의 19.5배, 점착력의 8.6배이고, P파 속도는 S파 속도의 1.5배 수준이었다. 실험결과로 얻어진 각종 물성간의 상호관계를 분석하였으며, 일축압축강도는 포아송비, 점하중강도지수, 영률과 0.8 이상의 피어슨 상관계수를 보였다. 또한, 단순회귀분석과 다중회귀분석을 통해 물성간의 각종 회귀식을 구하였으며, 특히 결정계수 0.7이상의 회귀식을 정리하여 나타내었다.

Keywords

References

  1. Choi, J.B., Jwa, Y.J., Kim, K.K. and Hwang, G.C., 2006, Analyses of mineral composition of Geochang granitic rocks for stone specification, J. Miner. Soc. Korea, 19.4, 363-381.
  2. Geochang granite resource center, 2011, http://www.granite.go.kr/?pid=aI02, accessed on November 20, 2014.
  3. Han, M., Kim, S.W., Yang, K.H. and Kim, J.S., 2010, Petrological study of the dioritic and granitic rocks from Geochang area, Jour. Petrol. Soc. Korea, 19.3, 167-180.
  4. Heo, J.S., 2011, A study on the physical and chemical deterioration of Geochang granite, MS thesis of Gyeongsang national univ., Korea, p.34-41.
  5. Jwa, Y.J., Choi, J.B., Kim, K.K., Kim, J.S. and Hwang, G.C., 2007, Quality standard of Geochang granite stone, Jour. Petrol. Soc. Korea, 16.1, 38-45.
  6. Kang, M.H., 2010, A study on the relationship between the microcracks and compressive strength of Geochang granites, MS thesis of Gyeongsang national uni., Korea, p. 20-25.
  7. Kim, J.W., Kim, M.S., Kim, P.G., Nor, S.J., Park, C., Jo, Y.D. and Park, S.G., 2012, The mechanical properties of limestones distributed in Jecheon, Tunnel and Underground Space, 22.5, 354-364. https://doi.org/10.7474/TUS.2012.22.5.354
  8. Kim, T.Y. and Kim, M.K., 1992, A study on physical and geochemical properties of granitic building stone in Korea, J. KSMER, 29.5, 287-298.
  9. Kim, Y.J., Cho, D.L. and Park, Y.S., 1989, K-Ar ages and major mineral compositions of the mesozoic igneous rocks in the vicinity of the Geochang area, Jour. Korean Inst. Mining Geol., 22.2, 117-127.
  10. KSRM, 2005, Standard method for sampling and preparation of rock test specimen, Tunnel and Underground Space, 15.2, 81-84.
  11. KSRM, 2005, Standard test method for uniaxial compressive strength of rock, Tunnel and Underground Space, 15.2, 85-86.
  12. KSRM, 2006, Standard test method for indirect tensile strength of rock by the Brazilian test, Tunnel and Underground Space, 16.4, 279-280.
  13. KSRM, 2006, Standard test method for triaxial compression of rock, Tunnel and Underground Space, 16.6, 433-436.
  14. KSRM, 2007, Standard test method for point load strength test of rock, Tunnel and Underground Space, 17.2, 75-82.
  15. Lee, C.I., Lee, H.K., Ryu, C.H. and Yang, H.S., 1982, A study on the mechanical properties of major rocks distributed in Korea (1st Report), J. KSMER, 19.4, 260-267.
  16. Lee, C.O., Hong, S.S., Lee, B.T., Kim, G.S. and Yun, H.S., 2006, Spatial distribution of the dimension stone quarries in Korea, Jour. Petrol. Soc. Korea, 15.3, 154-166.
  17. Lee, H.K., Lee, C.I. and Yang, H.S., 1983, A study on the mechanical properties of major rocks distributed in Korea (2nd Report), J. KSMER, 20.2, 101-109.
  18. Lee, H.K. and Yang, H.S., 1997, Advanced rock mechanics, Publishing department of SNU, Korea, 119-120.
  19. Nor, S.J., 2013, A study on the correlationship of physical properties of Geochang granite, MS thesis of Cheongju Univ., Korea.
  20. Park, C., Cheon, D.S., Jung, Y.B., Song, W.K., Sunwoo, C. and Kim, B.C., 2008, Mechanical properties of rocks in Dokdo, Tunnel and Underground Space, 18.1, 69-79.
  21. Seo, Y.S. and Park, D.W., 2003, Mechanical anisotropy of Jurassic granite in Korea, The Journal of Engineering Geology, 13.2, 257-266.

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