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Home > 系所成員 > 楊仲家 教授系所成員
姓名: 楊仲家
職稱: 教授
學歷: 美國西北大學博士
研究專長: 1.營建材料
研究室:營建材料實驗室
研究室電話: 02-24622192#6421
辦公室電話: 02-24622192#6406
E-mail: ccyang@mail.ntou.edu.tw

近期著作:

  1. C. C. Yang*, C. H. Liang, 2014“Determining the steady-state chloride migrationcoefficient of ITZ in mortar by using the acceleratedchloride migration test”, J. Chinese Ins. Eng., 37(7), pp. 892-898,(SCI).
  2. C. C. Yang*, C. H. Liang, 2014“A modified colourimetric method to determine the chloride profile of concretefrom the ponding test”, J. Chinese Ins. Eng., 37(4), pp. 419-427,(SCI).
  3. K.T. Lin, C. C. Yang*, 2014, “A simplified method to determine the chloride migration coefficient of concrete by the electric current in steady state”, Computers and Concrete, 13(1), pp. 117-133, (SCI)
  4. C.C. Yang* and S.H. Weng, 2013“A multi-phase model for predicting the effective chloride migration coefficient of ITZ in cement-based materials”,Advances in Concrete Construction, 1(3), 239-252.
  5. C. C. Yang*, S. H.Weng, 2013 “A three-phase model for predicting the effective chloride migration coefficient of ITZ in cement-based materials”, Mag. Con. Res. 64(1), pp. 1-9, IF=0.5,(SCI).
  6. Yu-Sheng Chen, Hui-Jen Chiu, Yi-Wen Chan, Yung-Chang Chang, C. C. Yang*, 2013 “The correlation between air-borne salt and chlorides cumulated on concrete surface in the marine atmosphere zone in north Taiwan”, J. of Marine Science and Technology 21(1), pp. 24-34, IF=0.483, (SCI).
  7. 4. C. C. Yang*, Y. M. Tsai, KC. Yang, 2012 “The relationship between migration time in ACMT and ponding time in ponding test for cementitious materials”,J. Marine Sci. Tec.,20(3), pp. 281-289, IF=0.483,(SCI).
  8. 5. S. H.Weng, C. C. Yang*, S. W. Cho, K. C. Yang, 2012“Thestudy of chloride ion transport behavior of mortar under different storing environment temperatures”, J. Marine Sci. Tec.,20(3), pp. 290-294, IF=0.483,(SCI).
  9. 6. Yu-Sheng Chen, Ming-Chih Li, Yi-Wen Chan, Chung-Chia Yang*, 2012,“The relationship between accelerated migration time in ACMT and ponding time in ponding test for cement-based materials,” Journal of Marine Science and Technology, Vol. 20, No. 1, pp. 1-8, IF=0.483, (SCI).
  10. 7. Yu-Sheng Chen*, Hui-Jen Chiu, Yi-Wen Chan, Yung-Chang Chang, and Chung-Chia Yang, 2012, “Prediction model of air-borne salt distribution in the coastal region of northern Taiwan,” Journal of Marine Science and Technology, Vol. 20, No. 3, pp. 259-268, IF=0.483, (SCI).
  11. 8. Y. W. Chan, C. C. Yang, 2012, “Preface”, Journal of Marine Science and Technology, Vol. 20, No. 3, pp. 259-268, IF=0.483, (SCI).
  12. 9. C. C. Yang*, S. H.Weng, 2011 “Effect of 95 degrees C temperature on the chloride-migration of concrete using electrical field,” Materials Chemistry and Physics, Vol. 125, No. 2-3, pp. 876–882, IF=2.234, (SCI)
  13. 10. C. C. Yang*, and K. T. Lin, 2011, “A rapid method to determine the chloride profile in cement-based materials by using electrical field,” J. of the Chinese institute of engineers, Vol. 34, No. 6, pp. 759-768, IF=0.295,(SCI)

 

專書:

  1. C. C. Yang*, S. C. Chiang,Concrete Materials: Properties, Performance and Applications, Editor: Jeffrey Thomas Sentowski,Chapter 11, The Rapid Methods for Determination of Chloride Migration Coefficient in Cement-Based Materials Using Accelerated Chloride Migration Test,   ISBN 978-1-60741-250-2, Nova Science Publishers, 2009.
  2. C. C. Yang*, S. W. Cho, Y. M. Tsai, Cement Concrete and Composites, Chapter:The chloride migration coefficient of percolated interfacial zone in cementitious materials, Nova Science Publishers, 2010.

近期計畫:

年度 計畫名稱 核定金額單位
103 研發改良快速氯離子滲透試驗(RCPT)以評估添加礦物材料(飛灰、爐石及爐灰)之混凝土耐久性 科技部
104 混凝土耐久性試驗法-RCPT試體前處理之改良 科技部
105 結合實驗室及現地曝曬試驗資料探討濱海地區混凝土耐久性 科技部