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Parameter optimization of five-axis polishing using abrasive belt flap wheel for blisk blade

机译:使用磨料带挡板吹叶轮的五轴抛光参数优化

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摘要

AbstractConsidering the weak rigidity of blisk blades and the limited accessibility of blisk tunnels, polishing blisk blades is difficult when using tools with poor flexibility and large dimension. Hence, to reduce the Surface roughness (SR) of a blisk blade, five-axis polishing method with Abrasive belt flap wheel (ABFW) is employed to polish the blisk blade based on the analysis of the blisk structure and advantages of ABFW polishing. Polishing experiments based on central composite design are performed using ABFW. Response surface method (RSM) is employed to establish a predictive model between SR and various parameters, including ABFW size, contact force, spindle speed, and feed rate. Analysis of variance is then performed to evaluate the proposed model. The degree of influence of each factor on SR after polishing using ABFW is determined by plotting main effects. The interactions of polishing factors on SR are analyzed by RSM. Optimal parameters are obtained by response surface optimization. Finally, an experiment on blisk blade polishing using ABFW on a five-axis polishing machine is carried out for confirmation. Results indicate that the surface quality of the blisk blade after polishing is significantly improved, with SR being less than 0.4 μm.
机译:<标题>摘要 ara>考虑薄刀片弱刚度和眨眼隧道的有限可访问性,使用具有较差较差和大维度的工具时,抛光钝刀片很困难。因此,为了减少眨眼的表面粗糙度(SR),采用具有磨料带挡板轮(ABFW)的五轴抛光方法,以基于对闪烁结构的分析和ABFW抛光的优点来抛光钝刀片。使用ABFW进行基于中央复合设计的抛光实验。响应面方法(RSM)用于建立SR和各种参数之间的预测模型,包括ABFW尺寸,接触力,主轴速度和进料速率。然后执行对方差分析以评估所提出的模型。通过绘制主要效应来确定使用ABFW抛光后SR对SR的每个因素对SR的影响程度。通过RSM分析抛光因子对SR的相互作用。通过响应表面优化获得最佳参数。最后,进行了使用ABFW在五轴抛光机上的眨眼抛光的实验进行确认。结果表明,抛光后眨眼的表面质量显着提高,Sr小于0.4μm。

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