首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Modeling and Simulation of Material Removal Rates and Profile Accuracy Control in Abrasive Flow Machining of the Integrally Bladed Rotor Blade and Experimental Perspectives
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Modeling and Simulation of Material Removal Rates and Profile Accuracy Control in Abrasive Flow Machining of the Integrally Bladed Rotor Blade and Experimental Perspectives

机译:材料去除速率材料去除率的建模与仿真在一体式叶片转子叶片的磨料流动加工中的仿真精度控制及实验视角

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摘要

Abrasive flow machining (AFM) technology is getting more and more interest by the industry and research community particularly in the context of increasing demands for postprocessing of the additively manufactured and complex components. It is essentially important to develop an industrial feasible approach to controlling and improving the profile accuracy (form and dimensional) of components as well as their surface roughness. In this paper, a multiscale multiphysics simulation-based approach is presented to model and simulate the AFM process against the component form and dimensional accuracy control in particular. The simulation is developed in COMSOL which is a multiphysics computational environment. Well-designed AFM experiment trials are carried out on a purposely configured blade "coupon" to further evaluate and validate the simulations. The AFM machine and specific machining media for the experiments are provided by the industrial collaboration company, with their further industrial inputs. Both the simulation and experimental trial results illustrate that the approach is applicable to the blade profile prediction and accuracy control, which is used as a foundation for developing the simulation-based AFM virtual machining system.
机译:磨料流动加工(AFM)技术在行业和研究社区越来越兴趣,特别是在增加对瘾地制造和复杂组分的需求的增加的背景下。制定控制和提高组件的轮廓精度(形式和尺寸)以及它们的表面粗糙度是重要的。在本文中,提出了一种多尺度多体仿真的方法,以模拟和模拟AFM处理,特别是尤其是组件形式和尺寸精度控制。仿真是在COMSOL中开发的,这是一种多职业计算环境。精心设计的AFM实验试验在故意配置的刀片“优惠券”上进行,以进一步评估和验证模拟。用于实验的AFM机器和特定的加工介质由工业协作公司提供,其进一步的工业投入提供。仿真和实验试验结果都说明了该方法适用于叶片轮廓预测和精度控制,其用作开发基于仿真的AFM虚拟加工系统的基础。

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