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  1. Journal of Applied Sciences
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  3. 1351-1361
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Journal of Applied Sciences

Year: 2007 | Volume: 7 | Issue: 10 | Page No.: 1351-1361
DOI: 10.3923/jas.2007.1351.1361

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ASCI
Research Article

Study of an Engineering Mixed Contact: Part II-Results for Isosceles Triangle Surface Ridges

Yongbin Zhang
Zhejiang Jinlei Electronic and Mechanical Co Ltd. Zhejiang Province, Peoples Republic of China

This research presents the results for isosceles triangle surface ridges obtained from the analysis. For the modeled contact, the load-carrying capacities and contact stiffness of different types of contact areas in the whole contact as well as of the whole contact are obtained for different surface ridge geometry parameter values. The contact pressure distributions, respectively in the conventional hydrodynamic lubricated area and the physical adsorbed boundary layer lubricated area in the present modeled contact are discussed. The temperature rises on the direct surface contact area in the present contact are also calculated for the selected operating conditions when the Poisson ratios, Young`s moduli of elasticity and compressive yielding strengths of the contact surfaces are, respectively taken as insensitive to the contact surface temperature rise.
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How to cite this article

Yongbin Zhang, 2007. Study of an Engineering Mixed Contact: Part II-Results for Isosceles Triangle Surface Ridges. Journal of Applied Sciences, 7: 1351-1361.

DOI: 10.3923/jas.2007.1351.1361

URL: https://scialert.net/abstract/?doi=jas.2007.1351.1361

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References


  1. Zhang, Y.B. and G.S. Lu, 2005. Flow factor for molecularly thin fluid films in one-dimensional flow due to fluid discontinuity. J. Mol. Liq., 116: 43-50.
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  2. Zhang, Y.B., 2006. Boundary lubrication-An important lubrication in the following time. J. Mol. Liq., 128: 56-59.
    CrossRef

  3. Zhang, Y.B., 2006. Contact-fluid interfacial slippage in hydrodynamic lubricated contacts. J. Mol. Liq., 128: 99-104.
    Direct Link

  4. Zhang, Y.B., 2006. Flow factor of non-continuum fluids in one-dimensional contact. Industr. Lubri. Trib., 58: 151-169.
    Direct Link

  5. Zhang, Y.B., 2006. Flow factor approach to molecularly thin hydrodynamic film lubrication. J. Mol. Liq., 128: 60-64.
    CrossRef

  6. Zhang, Y., 2007. Study of an engineering mixed contact: Part I-theoretical analysis. J. Applied Sci., 7: 1249-1259.
    CrossRefDirect Link

Keywords


  • physical adsorbed boundary layer
  • Engineering mixed contact
  • dry contact
  • hydrodynamic contact
  • oxidized chemical boundary layer

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