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Experimental study on laser assisted belt grinding of shark-skin bio-inspired riblets under different surface roughness

机译:不同表面粗糙度下鲨皮肤生物启发RIBLET激光辅助皮带磨削的实验研究

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The surface integrity and structural characteristics of titanium alloy blades have great influence on the aerodynamic performance of aero-engines. It has been proved that shark-skin bio-inspired riblets can improve the aerodynamic performance of parts by 10%. At present, the process of this structure is mainly formed by laser, rolling, etc., and the above processing methods have low efficiency, poor surface integrity and other problems. Belt grinding is widely used in surface polishing of titanium alloy blades, which plays an important role in improving the surface integrity. However, it is difficult to guarantee the surface’s microstructure characteristics. Therefore, combining the advantages of laser processing, the U-shaped structure produced by laser assisted belt grinding processing of shark skin is proposed. Firstly, based on the characteristics of the structure, a laser assisted belt grinding processing method is proposed and the forming process of the surface structure is analyzed. Then the experiments of titanium alloy plates with different surface roughness were carried out. Finally, the U-shaped structure is analyzed by white light interferometer. The experimental results show that the ratio of depth to width ish/s=0.4~0.6, the surface structure is mainly U-shaped structure, and the machining error is less than 10%. So this method can be used for the processing of U-shaped structure.
机译:钛合金叶片的表面完整性和结构特征对航空发动机的空气动力学性能产生了很大的影响。已经证明,鲨鱼皮生物启发的Riblets可以提高零件的空气动力学性能10%。目前,该结构的方法主要由激光,轧制等形成,上述加工方法具有低效率,表面完整性和其他问题。皮带磨削广泛用于钛合金叶片的表面抛光,这在改善表面完整性方面起着重要作用。然而,难以保证表面的微观结构特性。因此,组合激光加工的优点,提出了由鲨鱼皮的激光辅助皮带磨削加工产生的U形结构。首先,基于结构的特性,提出了一种激光辅助皮带磨削处理方法,分析了表面结构的形成过程。然后进行具有不同表面粗糙度的钛合金板的实验。最后,通过白光干涉仪分析U形结构。实验结果表明,深度比为宽度为H / S = 0.4〜0.6,表面结构主要是U形结构,加工误差小于10%。因此,该方法可用于处理U形结构。

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