Study on turbulence control method and surface quality analysis of softness abrasive flow machining

Chen Li, F. Dong, Jun Zhao
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引用次数: 0

Abstract

To improve mould structural surface quality, the softness abrasive flow (SAF) finishing method is proposed. By setting restrained component to the mould surface, restrained flow passage can be set up. In the flow passage, micro force and quantity cutting for the tiny scale structural surface is realised by using the turbulence wall effect of SAF. Dynamical model of SAF is established based on liquid-solid two-phase flow coupling theory. Semi-annular flow passage is taken as the research object, and turbulent parameters with different flow passages are analysed by using standard k-e turbulent model and discrete phase model (DPM), which is used for describing the influence to turbulent state caused by different boundary conditions, meanwhile, the optimisation design of finishing parameters can be obtained. Finishing platform is constructed, and finishing experiment results show that with the SAF method, the roughness machined is less than Ra 62 nm.
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软磨料流加工湍流控制方法及表面质量分析研究
为提高模具结构表面质量,提出了软性磨粒流(SAF)精加工方法。通过在模具表面设置约束元件,可以设置约束流道。在流道中,利用射流射流的湍流壁效应,实现了对微小尺度结构表面的微力和定量切削。基于液固两相流耦合理论,建立了SAF的动力学模型。以半环形流道为研究对象,采用标准k-e湍流模型和离散相模型(DPM)对不同流道的湍流参数进行了分析,用于描述不同边界条件对湍流状态的影响,同时得到精加工参数的优化设计。搭建了精加工平台,精加工实验结果表明,采用SAF方法加工的表面粗糙度小于Ra 62 nm。
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来源期刊
International Journal of Abrasive Technology
International Journal of Abrasive Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
13
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