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長庚大學 機械工程學系
左方清單
吳俊仲 教授
最高學歷:英國劍橋大學  工程博士
研究領域:微奈米接觸力學、 表面量測、 隨機振動、 碎形理論
聯絡方式:電話:(03)211-8800 分機 5335
     e-mail:jjwu@mail.cgu.edu.tw
實 驗 室:接觸力學實驗室   分機  5656

簡歷     

     ●學歷:

      英國劍橋大學 工程博士

      國立台灣大學 機械工程熱學組 碩士

      國立台灣大學 機械工程學系   學士

 ●經歷:

        長庚大學機械系 教授

         長庚大學機械系 副教授

        中國文化大學機械系 教授

         中國文化大學機械系 副教授

         工研院光電所 工程師

         經濟部工業局 技士

         中國石油公司 石油開採工程師

 

研究領域

         微奈米接觸力學、 表面量測、 隨機振動、 碎形理論

論文發表

1.          J.-J. Wu and Yu Ju Lin, "Numerical Analyses on the Adhesive Contact between a Sphere and a Longitudinal Wavy Surface, The Journal of Adhesion", Vol.91, No. 5, 2015.

2.          J.-J. Wu, "Numerical Simulation of the Adhesive Contact between a Slightly Wavy Surface and a Half-Space", Journal of Adhesion Science and Technology, Vol.26, 2012, pp.331–351.

3.          J.-J. Wu, "The Interactions between Spheres and between a Sphere and a Half-Space, Based on the Lennard–Jones Potential", Journal of Adhesion Science and Technology, Vol.26, 2012, pp.251–259.

4.           J.-J. Wu, “The jump-to-contact distance in atomic force microscopy measruement”, Journal of Adhesion, Vol. 86, 2010, pp. 1071-1085.

5.           J.-J. Wu, “Adhesive contact between a cylinder and a half-space”, Journal of Physics D: Applied Physics, Vol. 42, 2009, 155302.

6.           J.-J. Wu, “Modification of Hertzian behaviour in heavily loaded contact in the DMT regime”, Journal of Physics D: Applied Physics, Vol. 41, 2008, 185301.

7.           J.-J. Wu, “Easy-to-Implement Equations for Determining Adhesive Contact Parameters with the Accuracy of Numerical Simulations”, Tribology Letters, Vol. 30, 2008, pp. 99-105.

8.           J.-J. Wu, “Numerical analyses on elliptical adhesive contact”, Journal of Physics D: Applied Physics, Vol. 39, No. 9, 2006, pp. 1899-1907.

9.           J.-J. Wu, “Nanoadhesion between a rigid circular disc and an infinite elastic surface”, International Journal of Solids and Structures., Vol. 43, 2006, pp. 1624-1637.

10.       J.-J. Wu, “Adhesive contact between a nano-scale rigid sphere and an elastic half-space”, Journal of Physics D: Applied Physics, Vol. 39, No 2, pp. 351-358, 2006.

11.       J.-J. Wu, “Simulation of non-Gaussian surfaces with FFT”, Tribology International, Vol. 37, No. 4, pp. 339-346, 2004.

12.       J-J Wu, “Spectral analysis for the effects of stylus tip curvature on measuring isotropic surfaces”, Measurement of Science and Technology, Vol. 13, pp. 720-730, 2002.

13.       J-J Wu, “Simulation and analyses of anisotropic fractal surfaces”, Chaos, Solitons and Fractals, Vol. 13, No.9, pp. 1791-1806, 2002.

14.       J-J Wu, “The properties of asperities of real surfaces”, ASME, Journal of Tribolgoy. Vol. 123, Issue 4, pp. 872-883, 2001.

15.       J-J Wu, “Structure function and spectral density of fracral profiles”, Chaos, Solitons and Fractals, Vol. 12, No.13, pp. 2481-2492, 2001.

16.       J-J Wu, “Spectral analysis for the effects of stylus tip curvature on measuring fracral profiles”, Measurement of Science and Technology, Vol. 11, 2000, pp. 1369-1376.

17.       J-J Wu, “Simulation of rough surfaces with FFT”, Tribology International, Vol. 33, pp.47-58, 2000.

18.      J-J Wu, “Characterization of fractal surfaces”, Wear, Vol. 239, Iss. 1, pp.36-47, 2000.

19.      J-J Wu, ”Spectral analysis for the effect of stylus tip radius on measuring rough profiles”, Wear, Vol. 230, 1999, pp.194-200.

20.       J.A Greenwood and J-J Wu, "Elasto-hydrodynamic lubrication of central pivoted thrust bearings", Journal of Physics, Series D: Applied Physics, 28, 1995, pp.2371-2377.

Highly  Cited 著作(Max:5篇 Based on Google Scholar 2014/05):
  1. J.-J. Wu, ”Simulation of rough surfaces with FFT”, Tribology International, Vol. 33, pp.47-58, 2000. (citation = 120)
  2. J.-J. Wu, ”Characterization of fractal surfaces”,  Wear, Vol. 239, Iss. 1, pp.36-47, 2000. (citation = 67)
  3. J.-J. Wu, ”Spectral analysis for the effect of stylus tip radius on measuring rough profiles”, Wear, Vol. 230, pp.194-200, 1999. (citation =37)
  4. J.-J. Wu, “The properties of asperities of real surfaces”, ASME, Journal of Tribolgoy. Vol. 123, Issue 4, pp. 872-883, 2001.(citation =18)
  5. J.-J. Wu, “Simulation of non-Gaussian surfaces with FFT”, Tribology International, Vol. 37, No. 4, pp. 339-346, 2004. (citation=48)

 

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