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首页> 外文期刊>Advances in Mechanical Engineering >The fluid control mechanism of bionic structural heterogeneous composite materials and its potential application in enhancing pump efficiency:
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The fluid control mechanism of bionic structural heterogeneous composite materials and its potential application in enhancing pump efficiency:

机译:仿生结构异质复合材料的流体控制机理及其在提高泵效率中的潜在应用:

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摘要

Studies have shown that the structure of dolphin skin controls fluid media dynamically. Gaining inspiration from this phenomenon, a kind of bionic structural heterogeneous composite material was designed. The bionic structural heterogeneous composite material is composed of two materials: a rigid metal base layer with bionic structures and an elastic polymer surface layer with the corresponding mirror structures. The fluid control mechanism of the bionic structural heterogeneous composite material was investigated using a fluid–solid interaction method in ANSYS Workbench. The results indicated that the bionic structural heterogeneous composite material’s fluid control mechanism is its elastic deformation, which is caused by the coupling action between the elastic surface material and the bionic structure. This deformation can decrease the velocity gradient of the fluid boundary layer through changing the fluid–solid actual contact surface and reduce the frictional force. The bionic structural heterogeneou...
机译:研究表明,海豚皮肤的结构可以动态控制流体介质。从这种现象中得到启发,设计了一种仿生结构异质复合材料。仿生结构异质复合材料由两种材料组成:具有仿生结构的刚性金属基础层和具有相应镜面结构的弹性聚合物表面层。在ANSYS Workbench中使用流固耦合方法研究了仿生结构异质复合材料的流体控制机理。结果表明,仿生结构异质复合材料的流体控制机制是其弹性变形,这是由弹性表面材料与仿生结构之间的耦合作用引起的。这种变形可以通过改变流体-固体实际接触表面来减小流体边界层的速度梯度,并减小摩擦力。仿生结构异质性

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