A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings

Since current studies on the leakage flow of precision couplings are based on the ideal smooth surface, neglecting the influence of geometric structures of machined surfaces, here we proposed a non-ideal geometry-based approach in this paper to perform a more accurate prediction on the fitting perfo...

Full description

Bibliographic Details
Main Authors: Qiu Chan, Liu Zhenyu, Peng Xiang, Tan Jianrong
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8485288/
id doaj-c6bf4480c4db43fb9b83f2f7a4e2e96f
record_format Article
spelling doaj-c6bf4480c4db43fb9b83f2f7a4e2e96f2021-03-29T21:31:38ZengIEEEIEEE Access2169-35362018-01-016582045821210.1109/ACCESS.2018.28743868485288A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision CouplingsQiu Chan0Liu Zhenyu1https://orcid.org/0000-0003-2463-4553Peng Xiang2Tan Jianrong3State Key Laboratory of CAD&CG, Zhejiang University, Hangzhou, ChinaState Key Laboratory of CAD&CG, Zhejiang University, Hangzhou, ChinaKey Laboratory of E&M, Zhejiang University of Technology, Hangzhou, ChinaState Key Laboratory of CAD&CG, Zhejiang University, Hangzhou, ChinaSince current studies on the leakage flow of precision couplings are based on the ideal smooth surface, neglecting the influence of geometric structures of machined surfaces, here we proposed a non-ideal geometry-based approach in this paper to perform a more accurate prediction on the fitting performance and the leakage characteristic of precision couplings. Firstly, a non-ideal geometric surface model of precision couplings is established by fractal function that characterizes both the dimensional discrepancy and the form error of key fitting surfaces, and theoretical calculation formulas based on the non-ideal geometric model are proposed afterward to predict the fitting performance and the leakage flow rate of precision couplings. Then, the influence of various factors on the leakage flow is also analyzed by the CFD approach. Simulation results and experimental results are compared to the theoretical calculation results, so the prediction approach proposed in this paper is verified to be feasible and accurate. Finally, the proposed approach is applied to the assembly analysis of spool valve of electro-hydraulic servo valve.https://ieeexplore.ieee.org/document/8485288/Annular clearancedimensional discrepancyfitting accuracyform errorleakage flow
collection DOAJ
language English
format Article
sources DOAJ
author Qiu Chan
Liu Zhenyu
Peng Xiang
Tan Jianrong
spellingShingle Qiu Chan
Liu Zhenyu
Peng Xiang
Tan Jianrong
A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings
IEEE Access
Annular clearance
dimensional discrepancy
fitting accuracy
form error
leakage flow
author_facet Qiu Chan
Liu Zhenyu
Peng Xiang
Tan Jianrong
author_sort Qiu Chan
title A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings
title_short A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings
title_full A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings
title_fullStr A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings
title_full_unstemmed A Non-Ideal Geometry Based Prediction Approach of Fitting Performance and Leakage Characteristic of Precision Couplings
title_sort non-ideal geometry based prediction approach of fitting performance and leakage characteristic of precision couplings
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description Since current studies on the leakage flow of precision couplings are based on the ideal smooth surface, neglecting the influence of geometric structures of machined surfaces, here we proposed a non-ideal geometry-based approach in this paper to perform a more accurate prediction on the fitting performance and the leakage characteristic of precision couplings. Firstly, a non-ideal geometric surface model of precision couplings is established by fractal function that characterizes both the dimensional discrepancy and the form error of key fitting surfaces, and theoretical calculation formulas based on the non-ideal geometric model are proposed afterward to predict the fitting performance and the leakage flow rate of precision couplings. Then, the influence of various factors on the leakage flow is also analyzed by the CFD approach. Simulation results and experimental results are compared to the theoretical calculation results, so the prediction approach proposed in this paper is verified to be feasible and accurate. Finally, the proposed approach is applied to the assembly analysis of spool valve of electro-hydraulic servo valve.
topic Annular clearance
dimensional discrepancy
fitting accuracy
form error
leakage flow
url https://ieeexplore.ieee.org/document/8485288/
work_keys_str_mv AT qiuchan anonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT liuzhenyu anonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT pengxiang anonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT tanjianrong anonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT qiuchan nonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT liuzhenyu nonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT pengxiang nonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
AT tanjianrong nonidealgeometrybasedpredictionapproachoffittingperformanceandleakagecharacteristicofprecisioncouplings
_version_ 1724192803761684480