磁性剪切增稠抛光跨尺度材料去除预测
A cross-scale material removal prediction model for magnetorheological shear thickening polishing
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| DOI |
https://doi.org/10.1016/j.jmatprotec.2024.118569 |
| 刊名 |
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| 年,卷(期) |
2024, 332() |
| 作者 |
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| 作者单位 |
山东理工大学
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| 摘要 |
传统的抛光方法在处理复杂表面时难以达到理想的抛光效果。磁性切增稠抛光(MRSTP)方法因其具有剪切增稠和磁化增强的双重刺激响应,为复杂表面的抛光提供了一种有效的解决方案。然而,现有的模型由于磁场和流场的耦合而无法阐明 MRSTP 中的跨尺度材料去除机制。在本研究中,提出了一种综合模型来解决预测 MRSTP 中复杂表面的跨尺度材料去除速率(MRR)的挑战。通过使用磁流体力学方法,采用解析法和有限差分法来求解 MRSTP 过程中的压力分布。通过引入压力分布,基于主动磨料颗粒的压痕理论,为工件表面的任意点开发了一个 MRR 预测模型。通过考虑流体压力下的弹性与塑性变形,探讨了材料去除机制。实验验证显示,理论值与实验值的 MRR 之间存在 14.9% 的相对误差。对航空发动机叶片榫头的实验表明,所建立的 MRR 模型非常适合应用于复杂表面。本研究最终揭示了结合磁场和流场的 MRSTP 的材料去除机制,为预测复杂表面的 MRR 提供了新的基础。
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| Abstract |
Conventional polishing methods face significant challenges for achieving excellent performance on complex surfaces. The magnetorheological shear thickening polishing (MRSTP) method, with its dual-stimulus response of shear thickening and magnetization enhancement, offers an effective solution for polishing complex surfaces. However, existing models fail to elucidate the cross-scale material removal mechanisms in MRSTP owing to the coupling of magnetic and flow fields. In this study, a comprehensive model was proposed to address the the challenge of predicting the cross-scale material removal rate (MRR) in MRSTP for complex surfaces. Analytical and finite difference methods were employed to solve the pressure distribution during the MRSTP process using magnetohydrodynamics. By incorporating the pressure distribution, an MRR predictive model was developed for arbitrary points on the workpiece surface based on the indentation theory for active abrasive grains. The material removal mechanism was explored by considering elastic and plastic deformation under fluid pressure. The experimental validation showed a relative error of 14.9 % between the theoretical and experimental MRR. Ex periments on aero-engine blade tenons demonstrated that the established MRR model is well suited for appli cation to complex surfaces. This study ultimately reveals the material removal mechanism of MRSTP with coupled magnetic and flow field, providing a new foundation for predicting MRR on complex surfaces.
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| 关键词 |
磁性剪切增稠抛光 材料去除 复杂曲面 流体动力学
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| KeyWord |
Magnetorheological shear thickening polishing Material removal model Complex surfaces Fluid dynamics
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| 基金项目 |
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| 页码 |
118569- |
Yebing Tian, Zhen Ma, Xifeng Ma, Ling Li, Jiwang Yan..
磁性剪切增稠抛光跨尺度材料去除预测 [J].
Journal of Materials Processing Technology.
2024; 332; ().
118569 - .