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Controlling of compliant grinding for low-rigidity components

Yang, Yue; Li, Haonan; Liao, Zhirong; Axinte, Dragos; Zhu, Wule; Beaucamp, Anthony

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Authors

Yue Yang

Haonan Li

DRAGOS AXINTE dragos.axinte@nottingham.ac.uk
Professor of Manufacturing Engineering

Wule Zhu

Anthony Beaucamp



Abstract

© 2020 Elsevier Ltd The machining of low-rigidity components (e.g. thin-walled) with compliant tools presents accuracy challenges as both sides in contact are being deformed. The controlling method presented in this paper enables, for the first time, to obtain the desired and uniform material removal rate by controlling the nominal tool offset when two bodies (workpiece and tool) are compliant in grinding. A contact deformation model is proposed to predict the relation between the nominal and actual tool offsets. The function of nominal tool offsets and material removal rates is obtained based on the calibration tests. Spot grinding tests have been performed for the validation of the calculated material removal rates, normal grinding forces and spot sizes, presenting position-dependent characteristics. The controlling method has been tested for the case of continuous grinding the whole area of a circular aluminium thin wall. The surfaces ground under the time-variant tool offsets (proposed approach) reach the desired removal depth with an average error of ≤10% and achieve 11.2 μm–24.2 μm (P–V) accuracy in the elastic domain, compared with the error of 76.8%~113.7% and accuracy of 42.6 μm–50.1 μm (P–V) in the circumstance of constant tool offsets (conventional approach).

Citation

Yang, Y., Li, H., Liao, Z., Axinte, D., Zhu, W., & Beaucamp, A. (2020). Controlling of compliant grinding for low-rigidity components. International Journal of Machine Tools and Manufacture, 152, https://doi.org/10.1016/j.ijmachtools.2020.103543

Journal Article Type Article
Acceptance Date Mar 4, 2020
Online Publication Date Mar 6, 2020
Publication Date May 1, 2020
Deposit Date Apr 16, 2020
Publicly Available Date Mar 7, 2021
Journal International Journal of Machine Tools and Manufacture
Print ISSN 0890-6955
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 152
Article Number 103543
DOI https://doi.org/10.1016/j.ijmachtools.2020.103543
Keywords Mechanical Engineering; Industrial and Manufacturing Engineering
Public URL https://nottingham-repository.worktribe.com/output/4251500
Publisher URL https://www.sciencedirect.com/science/article/abs/pii/S0890695519314099?via%3Dihub

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