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首页> 外文期刊>Journal of Tribology >The Biomimetic Shark Skin Optimization Design Method for Improving Lubrication Effect of Engineering Surface
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The Biomimetic Shark Skin Optimization Design Method for Improving Lubrication Effect of Engineering Surface

机译:仿生鲨鱼皮优化设计方法提高工程表面润滑效果

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摘要

Nature has long been an important source of inspiration for mankind to develop artificial ways to mimic the remarkable properties of biological systems. In this work, a new method was explored to fabricate a biomimetic engineering surface comprising both the shark-skin, the shark body denticle, and rib morphology. It can help reduce water resistance and the friction contact area as well as accommodate lubricant. The lubrication theory model was established to predict the effect of geometric parameters of a biomimetic surface on tribological performance. The model has been proved to be feasible to predict tribological performance by the experimental results. The model was then used to investigate the effect of the grid textured surface on frictional performance of different geometries. The investigation was aimed at providing a rule for deriving the design parameters of a biomimetic surface with good lubrication characteristics. Results suggest that: (i) the increase in depression width ratio Λ decreases its corresponding coefficient of friction, and (ii) the small coefficient of friction is achievable when Λ is beyond 0.45. Superposition of depth ratio Γ and angle's couple under the condition of Λ < 0.45 affects the value of friction coefficient. It shows the decrease in angle decreases with the increase in dimension depth Γ.
机译:长期以来,大自然一直是人类开发模仿人类生物系统卓越特性的人工方式的重要灵感来源。在这项工作中,探索了一种新的方法来制造仿生工程表面,该表面既包括鲨鱼皮,鲨鱼牙齿,又包括肋骨形态。它可以帮助减少防水性和摩擦接触面积,并容纳润滑剂。建立润滑理论模型以预测仿生表面的几何参数对摩擦性能的影响。实验结果证明该模型是可行的。然后使用该模型研究网格纹理表面对不同几何形状的摩擦性能的影响。该研究旨在提供规则,以推导具有良好润滑特性的仿生表面的设计参数。结果表明:(i)凹陷宽度比Λ的增加减小了其对应的摩擦系数,并且(ii)当Λ超过0.45时,可获得较小的摩擦系数。在Λ<0.45的条件下,深度比Γ和角度对的叠加会影响摩擦系数。它表明角度的减小随着尺寸深度Γ的增加而减小。

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