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Published in: Meccanica 1-2/2018

17-06-2017

Semi-analytic contact technique in a non-linear parametric model order reduction method for gear simulations

Authors: Niccolò Cappellini, Tommaso Tamarozzi, Bart Blockmans, Jakob Fiszer, Francesco Cosco, Wim Desmet

Published in: Meccanica | Issue 1-2/2018

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Abstract

In this work we present a novel method for the solution of gear contact problems in flexible multi-body. These problems are characterized by significant variation in the location and size of the contact area, typically requiring a high number of degrees of freedom to correctly capture deformation and stress fields. Therefore fully dynamic simulation is computationally prohibitive. To overcome these limitations, we exploit a combined analytic-numerical contact model within a parametric model order reduction (PMOR) scheme. The reduction space consists of a truncated set of eigenvectors augmented with a parameter dependent set of residual static shape vectors. Each static shape is computed by interpolating among a set of displacement modes of the interacting bodies, obtained from a series of precomputed static contact analyses. During the contact analyses, an analytic model based on the Hertz theory describes the teeth local deformation. We implement the proposed method in an in-house code and we apply it to spur and helical gears dynamic contact analyses. We compare the results with classical PMOR schemes highlighting how the combined use of the semi-analytic contact model allows to decrease further the model complexity as well as the computational burden, for both static and dynamic cases. Finally, we validate the methodology by means of a comparison with experimental data found in literature, showing that the numerical method is able to capture quantitatively the static transmission error measurements in case of both helical and spur geared transmission for different torque levels.

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Footnotes
1
In the remainder of this paper we will refer to \(\alpha\) and P of Eq. (20) respectively as Hertz-penetration gap and Hertz-contact force.
 
2
In the remaining of this paper the q-dependence of the matrices and vectors in Eq. (25) are implied for notational convenience.
 
3
Differently from the spur gear example, in case of aligned helical gears the complexity of the contact formulations does not vary along the angular pitch just as the number of gear axial sections in contact.
 
Literature
1.
go back to reference Andersson A, Vedmar L (2003) A dynamic model to determine vibrations in involute helical gears. J Sound Vib 260(2):195–212ADSCrossRef Andersson A, Vedmar L (2003) A dynamic model to determine vibrations in involute helical gears. J Sound Vib 260(2):195–212ADSCrossRef
2.
go back to reference Ascher UM, Petzold LR (1998) Computer methods for ordinary differential equations and differential-algebraic equations, vol 61. SIAM, Philadelphia Ascher UM, Petzold LR (1998) Computer methods for ordinary differential equations and differential-algebraic equations, vol 61. SIAM, Philadelphia
3.
go back to reference Blockmans B, Tamarozzi T, Naets F, Desmet W (2015) A nonlinear parametric model reduction method for efcient gearcontact simulations. Int J Numer Methods Eng 102(5):1162–1191CrossRefMATH Blockmans B, Tamarozzi T, Naets F, Desmet W (2015) A nonlinear parametric model reduction method for efcient gearcontact simulations. Int J Numer Methods Eng 102(5):1162–1191CrossRefMATH
4.
go back to reference Cai Y (1995) Simulation on the rotational vibration of helical gears in consideration of the tooth separation phenomenon (a new stiffness function of helical involute tooth pair). J Mech Des 117(3):460–469CrossRef Cai Y (1995) Simulation on the rotational vibration of helical gears in consideration of the tooth separation phenomenon (a new stiffness function of helical involute tooth pair). J Mech Des 117(3):460–469CrossRef
5.
go back to reference Chang L, Liu G, Wu L (2015) A robust model for determining the mesh stiffness of cylindrical gears. Mech Mach Theory 87:93–114CrossRef Chang L, Liu G, Wu L (2015) A robust model for determining the mesh stiffness of cylindrical gears. Mech Mach Theory 87:93–114CrossRef
6.
go back to reference Craig J (1987) A review of time-domain and frequency-domain component mode synthesis method. Int J Anal Exp Modal Anal 2(2):59–72 Craig J (1987) A review of time-domain and frequency-domain component mode synthesis method. Int J Anal Exp Modal Anal 2(2):59–72
7.
go back to reference Ding Ca, Zhang L, Zhou Fz, Zhu J, Zhao Sz (2001) Theoretical formula for calculation of line-contact elastic contact deformation. Tribol Beijing 21(2):135–138 Ding Ca, Zhang L, Zhou Fz, Zhu J, Zhao Sz (2001) Theoretical formula for calculation of line-contact elastic contact deformation. Tribol Beijing 21(2):135–138
8.
go back to reference Fiszer J, Tamarozzi T, Desmet W (2016) A semi-analytic strategy for the system-level modelling of flexibly supported ball bearings. Meccanica 51(6):1503–1532CrossRef Fiszer J, Tamarozzi T, Desmet W (2016) A semi-analytic strategy for the system-level modelling of flexibly supported ball bearings. Meccanica 51(6):1503–1532CrossRef
9.
go back to reference Guilbault R, Lalonde S, Thomas M (2012) Nonlinear damping calculation in cylindrical gear dynamic modeling. J Sound Vib 331(9):2110–2128ADSCrossRef Guilbault R, Lalonde S, Thomas M (2012) Nonlinear damping calculation in cylindrical gear dynamic modeling. J Sound Vib 331(9):2110–2128ADSCrossRef
10.
go back to reference Harris TA, Kotzalas MN (2006) Essential concepts of bearing technology, 5th edn. CRC Press, New York Harris TA, Kotzalas MN (2006) Essential concepts of bearing technology, 5th edn. CRC Press, New York
11.
go back to reference Heirman GHK, Tamarozzi T, Desmet W (2011) Static modes switching for more efficient flexible multibody simulation. Int J Numer Methods Eng 87(11):1025–1045CrossRefMATH Heirman GHK, Tamarozzi T, Desmet W (2011) Static modes switching for more efficient flexible multibody simulation. Int J Numer Methods Eng 87(11):1025–1045CrossRefMATH
12.
go back to reference Johnson KL (1987) Contact mechanics. Cambridge University Press, CambridgeMATH Johnson KL (1987) Contact mechanics. Cambridge University Press, CambridgeMATH
14.
go back to reference Kuang J, Yang Y (1992) An estimate of mesh stiffness and load sharing ratio of a spur gear pair. In: The 1992 ASME design technical conferences–6th international power transmission and gearing conference, Scottsdale, September 1992. Advancing Power Transmission into the 21st Century, vol 1. ASME, New York, pp 1–9 Kuang J, Yang Y (1992) An estimate of mesh stiffness and load sharing ratio of a spur gear pair. In: The 1992 ASME design technical conferences–6th international power transmission and gearing conference, Scottsdale, September 1992. Advancing Power Transmission into the 21st Century, vol 1. ASME, New York, pp 1–9
15.
go back to reference Kurokawa S, Ariura Y, Ogata A (1999) High precision measurement and analysis of transmission errors of gears under load. In: World congress on gearing and power transmission No 4, Paris, FRANCE, pp 1777–1788 Kurokawa S, Ariura Y, Ogata A (1999) High precision measurement and analysis of transmission errors of gears under load. In: World congress on gearing and power transmission No 4, Paris, FRANCE, pp 1777–1788
16.
go back to reference Özgüven HN, Houser DR (1988) Mathematical models used in gear dynamicsa review. J Sound Vib 121(3):383–411CrossRef Özgüven HN, Houser DR (1988) Mathematical models used in gear dynamicsa review. J Sound Vib 121(3):383–411CrossRef
17.
go back to reference Palermo A, Anthonis J, Mundo D, Desmet W (2014) A novel gear test rig with adjustable shaft compliance and misalignments part I: design. Springer, Berlin Palermo A, Anthonis J, Mundo D, Desmet W (2014) A novel gear test rig with adjustable shaft compliance and misalignments part I: design. Springer, Berlin
18.
go back to reference Puttock M, Thwaite E (1969) Elastic compression of spheres and cylinders at point and line contact. Commonwealth Scientific and Industrial Research Organisation, Australia. National Standards Laboratory. Technical paper Puttock M, Thwaite E (1969) Elastic compression of spheres and cylinders at point and line contact. Commonwealth Scientific and Industrial Research Organisation, Australia. National Standards Laboratory. Technical paper
19.
go back to reference Russo R, Brancati R, Rocca E (2009) Experimental investigations about the influence of oil lubricant between teeth on the gear rattle phenomenon. J Sound Vib 321(3):647–661ADSCrossRef Russo R, Brancati R, Rocca E (2009) Experimental investigations about the influence of oil lubricant between teeth on the gear rattle phenomenon. J Sound Vib 321(3):647–661ADSCrossRef
20.
go back to reference Shabana A (1989) Dynamics of multibody systems. Wiley, New YorkMATH Shabana A (1989) Dynamics of multibody systems. Wiley, New YorkMATH
21.
go back to reference Tamarozzi T, Blockmans B, Desmet W (2015) Dynamic stress analysis of the high-speed stage of a wind turbine gearbox using a coupled flexible multibody approach. In: CWD Conference for wind power drives, Aachen, Belgium Tamarozzi T, Blockmans B, Desmet W (2015) Dynamic stress analysis of the high-speed stage of a wind turbine gearbox using a coupled flexible multibody approach. In: CWD Conference for wind power drives, Aachen, Belgium
22.
go back to reference Tamarozzi T, Blockmans B, Desmet W (2015) On the applicability of static modes switching in gear contact applications. In: ASME 2015 international design engineering technical conferences and computers and information in engineering conference, vol 10 Tamarozzi T, Blockmans B, Desmet W (2015) On the applicability of static modes switching in gear contact applications. In: ASME 2015 international design engineering technical conferences and computers and information in engineering conference, vol 10
23.
go back to reference Tamarozzi T, Heirman G, Desmet W (2014) An on-line time dependent parametric model order reduction scheme with focus on dynamic stress recovery. Comput Methods Appl Mech Eng 268:336–358ADSMathSciNetCrossRefMATH Tamarozzi T, Heirman G, Desmet W (2014) An on-line time dependent parametric model order reduction scheme with focus on dynamic stress recovery. Comput Methods Appl Mech Eng 268:336–358ADSMathSciNetCrossRefMATH
24.
go back to reference Tamarozzi T, Ziegler P, Eberhard P, Desmet W (2013) On the applicability of static modes switching in gear contact applications. Multibody Syst Dyn 30:209–219CrossRef Tamarozzi T, Ziegler P, Eberhard P, Desmet W (2013) On the applicability of static modes switching in gear contact applications. Multibody Syst Dyn 30:209–219CrossRef
25.
go back to reference Toso A, Van Wermeskerken F, Cappellini N, Heirman G (2015) On the effect of lightweight gear blank topology on transmission dynamics. In: ASME 2015 international design engineering technical conferences and computers and information in engineering conference Toso A, Van Wermeskerken F, Cappellini N, Heirman G (2015) On the effect of lightweight gear blank topology on transmission dynamics. In: ASME 2015 international design engineering technical conferences and computers and information in engineering conference
26.
go back to reference Vijayakar SM (1993) Contact analysis of gears using a combined finite element and surface integral method. Gear Technol 10:26 Vijayakar SM (1993) Contact analysis of gears using a combined finite element and surface integral method. Gear Technol 10:26
27.
go back to reference Weber C, Banaschek K (1953) Schriftenreihe antriebstechnik, chap 11. Friedr. Vieweg & Sohn, Braunschweig Weber C, Banaschek K (1953) Schriftenreihe antriebstechnik, chap 11. Friedr. Vieweg & Sohn, Braunschweig
Metadata
Title
Semi-analytic contact technique in a non-linear parametric model order reduction method for gear simulations
Authors
Niccolò Cappellini
Tommaso Tamarozzi
Bart Blockmans
Jakob Fiszer
Francesco Cosco
Wim Desmet
Publication date
17-06-2017
Publisher
Springer Netherlands
Published in
Meccanica / Issue 1-2/2018
Print ISSN: 0025-6455
Electronic ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-017-0710-5

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