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首页> 外文期刊>International journal of surface engineering and interdisciplinary materials science >Hydrodynamic Behavior of the Sliding Surface with Semicircular Pores: Theoretical and MATLAB Considerations
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Hydrodynamic Behavior of the Sliding Surface with Semicircular Pores: Theoretical and MATLAB Considerations

机译:具有半圆形孔的滑动表面的流体力学行为:理论和MATLAB考虑

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摘要

A mathematical model, theoretical and numerical solutions are represented for non-contacting sliding surfaces with pores having a half-round form. The theoretically based expressions for the hydrodynamic pressure, the maximum positive pressure and the load capacity were obtained for a cell which includes the inside and outside of the pore areas. The cell and pore dimensions were studied in the range 7.5... 100 and 5... 20 micron respectively. The obtained expressions were validated with the MATLAB ODE-solver. It is shown that behavior of the sliding surfaces with semicircular pores can be achieved for the pores with pore radii-gap ratio about 0.5 ... 2 and the control cell dimensions to pore radii ratios about 3 ... 5. The rate of performance improvement becomes small above these values. In general, the optimum pore size decreases at higher pore cell-pore ratios and lower pore-gap ratio values.
机译:代表了具有半圆形孔的非接触滑动表面的数学模型,理论和数值解。对于包括孔隙区域的内部和外部的单元,获得了基于流体力学压力,最大正压力和负载能力的基于理论的表达式。研究的孔和孔尺寸分别在7.5 ... 100微米和5 ... 20微米的范围内。所获得的表达式已使用MATLAB ODE-solver进行了验证。结果表明,具有半圆形孔的滑动表面的行为对于孔半径比为约0.5 ... 2的孔和控制孔尺寸与孔半径比为约3 ... 5的孔而言,可以实现。这些值之上的改善很小。通常,最佳孔径在较高的孔单元-孔隙比和较低的孔隙比值下降低。

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