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Published in: Forschung im Ingenieurwesen 3/2019

01-09-2019 | Originalarbeiten/Originals

Investigation of transient response motion of differential planetary gear train during reverse rotation and starting by using high-speed camera monitoring

Authors: Tomoki Fukuda, Masao Nakagawa, Toshiki Hirogaki, Eiichi Aoyama

Published in: Forschung im Ingenieurwesen | Issue 3/2019

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Abstract

Planetary gear trains (PGTs) have been used in various applications, including hybrid and electric vehicles, owing to their advantages such as compactness, light weight, and large torque-to-weight ratio; however, recently, their transient response, such as sudden stop in differential usage when applied to cooperative robots (CRs), has emerged as a critical issue. It is difficult to elucidate the motion mechanism of PGTs, due to differing meshing conditions among internal and external meshing, the large number of meshing points, and simultaneous rotation and revolution. Therefore, few experimental investigations concerning PGT transient responses have been performed worldwide.
This study aims to elucidate the transient response, in particular in the case of reverse rotation, considering the critical issues pertaining to the use of PGTs in CRs. Transient response has three continuous phases: braking, stopping, and starting. A novel gear train, named 2K-HV PGT, having a clear acrylic carrier, was developed to enable direct observation of the planet gear motion, because it is otherwise impossible to observe the inner mechanisms of the conventional 2K-H PGT. Direct observations of the novel PGT were recorded using a high-speed camera.
The observations of the transient responses showed differences in the switching times or stopping phases, due to differences in the moments of inertia and torsional rigidities among the PGT components. The transient response of reverse rotation did not occur instantaneously, but rather gradually within a certain time band.

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Literature
1.
go back to reference Ohn H, Yu S, Min K (2010) Spark timing and fuel injection strategy for combustion stability on HEV powertrain. Control Eng Pract 18(11):1272–1284CrossRef Ohn H, Yu S, Min K (2010) Spark timing and fuel injection strategy for combustion stability on HEV powertrain. Control Eng Pract 18(11):1272–1284CrossRef
2.
go back to reference Liu J, Peng H, Filipi Z (2005) Modeling and analysis of the Toyota hybrid system. International Conference on Advanced Intelligent Mechatronics, pp 24–28 Liu J, Peng H, Filipi Z (2005) Modeling and analysis of the Toyota hybrid system. International Conference on Advanced Intelligent Mechatronics, pp 24–28
3.
go back to reference Ishibashi A, Haidar MA, Sonoda K (1997) Theoretical efficiency of planetary gear drives with two degrees-of freedom. J JSME 63(611):2518–2525 (in Japanese)CrossRef Ishibashi A, Haidar MA, Sonoda K (1997) Theoretical efficiency of planetary gear drives with two degrees-of freedom. J JSME 63(611):2518–2525 (in Japanese)CrossRef
5.
go back to reference Wu X, Parker RG (2008) Modal properties of planetary gears with an elastic continuum ring gear. J Appl Mech 75:031014–1–031014–12 Wu X, Parker RG (2008) Modal properties of planetary gears with an elastic continuum ring gear. J Appl Mech 75:031014–1–031014–12
6.
go back to reference Parker RG (2000) A physical explanation for the effectiveness of planet phasing to suppress planetary gear vibration. J Sound Vib 236:561–573CrossRef Parker RG (2000) A physical explanation for the effectiveness of planet phasing to suppress planetary gear vibration. J Sound Vib 236:561–573CrossRef
7.
go back to reference Aoyama E, Hirogaki T, Uenishi Y, Yamada K, Nakata Y (2000) Monitoring of rotational behavior on spiral bevel gears. J JSME 66(644):1284–1290 (in Japanese)CrossRef Aoyama E, Hirogaki T, Uenishi Y, Yamada K, Nakata Y (2000) Monitoring of rotational behavior on spiral bevel gears. J JSME 66(644):1284–1290 (in Japanese)CrossRef
8.
go back to reference Arai N, Kawamoto S, Hirogaki T, Uenishi Y, Arakawa N, Toyama K (1993) Study on the speed variation of Oerlikon-type bevel gears. J JSME 59(560):1204–1209 (in Japanese)CrossRef Arai N, Kawamoto S, Hirogaki T, Uenishi Y, Arakawa N, Toyama K (1993) Study on the speed variation of Oerlikon-type bevel gears. J JSME 59(560):1204–1209 (in Japanese)CrossRef
9.
go back to reference Fukuda T, Nakagawa M, Syota M, Hirogaki T, Aoyama E (2018) Investigation of planet gear motion in a planetary gear train with direct high speed monitoring. Proceeding of the ASME IDETC/CIE 2018 (DETC2018–85505)CrossRef Fukuda T, Nakagawa M, Syota M, Hirogaki T, Aoyama E (2018) Investigation of planet gear motion in a planetary gear train with direct high speed monitoring. Proceeding of the ASME IDETC/CIE 2018 (DETC2018–85505)CrossRef
10.
go back to reference Nakagawa M, Nishida D, Fukuda T, Hirogaki T, Aoyama E (2018) Investigation of planet gear instant center of rotation under three-axis driving differential planetary gear train with graphical analysis using high speed camera. J JSME 84(866):1–11 (in Japanese) Nakagawa M, Nishida D, Fukuda T, Hirogaki T, Aoyama E (2018) Investigation of planet gear instant center of rotation under three-axis driving differential planetary gear train with graphical analysis using high speed camera. J JSME 84(866):1–11 (in Japanese)
11.
go back to reference Imai S, Ishida A (1990) Measurement of instant center on motion of temporomandibular, driving performance of magnetic planetary gears with dual-input and single-output functionality. J Med Electron Biol Eng 28(1):18–24 (in Japanese) Imai S, Ishida A (1990) Measurement of instant center on motion of temporomandibular, driving performance of magnetic planetary gears with dual-input and single-output functionality. J Med Electron Biol Eng 28(1):18–24 (in Japanese)
12.
go back to reference Suzuki K, Morita T (2010) From the basics of mechanism, pp 36–49 (in Japanese) Suzuki K, Morita T (2010) From the basics of mechanism, pp 36–49 (in Japanese)
Metadata
Title
Investigation of transient response motion of differential planetary gear train during reverse rotation and starting by using high-speed camera monitoring
Authors
Tomoki Fukuda
Masao Nakagawa
Toshiki Hirogaki
Eiichi Aoyama
Publication date
01-09-2019
Publisher
Springer Berlin Heidelberg
Published in
Forschung im Ingenieurwesen / Issue 3/2019
Print ISSN: 0015-7899
Electronic ISSN: 1434-0860
DOI
https://doi.org/10.1007/s10010-019-00356-3

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