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2024 | OriginalPaper | Buchkapitel

Experimental Evaluation of the Impact of ETF on System Efficiency

verfasst von : Hailiang Sun, Jie Li, Xuyan Jia

Erschienen in: Proceedings of China SAE Congress 2023: Selected Papers

Verlag: Springer Nature Singapore

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Abstract

The electric transmission fluid (ETF) can improve the system efficiency of the electric drive unit (EDU). However, there is no unified method to evaluate the corresponding performance of ETF in the industry, which leads to misdirection in production development. This paper analyzes the factors affecting system efficiency, redefines the scope of system efficiency, innovatively introduces the power consumption of the electronic oil pump into the calculation of system efficiency, and redefines the calculation formula for system efficiency. The paper also explains the influence of ETF viscosity and heat transfer performance in the stator cooling process and suggests the need to set reasonable boundary conditions and operating conditions to comprehensively evaluate ETF performance. The paper examines the reasons for the low repeatability and discrimination in ETF efficiency testing and suggests a remedy by continuously gauging steady-state conditions and calculating the system efficiency in terms of work. The paper develops a test procedure for evaluating ETF and validates it by putting 12 ETFs to the test on the same EDU. The results show that ETF can have a significant impact on the system efficiency of the EDU under different operating conditions, cycles, and boundary conditions, especially in the common speed range of the vehicle and at low temperatures. Low-viscosity ETF can increase system efficiency by more than 1.5% compared to high viscosity reference ETF. The verification results demonstrate that ETF viscosity is not the only element affecting system efficiency and that comparatively low-viscosity ETF does not always perform better.

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Literatur
1.
Zurück zum Zitat Kwak, Y., Cleveland, C., et al.: Understanding base oils and lubricants for electric drivetrain applications. In: JSAE 20199085, SAE 2019-01-2337 (2019) Kwak, Y., Cleveland, C., et al.: Understanding base oils and lubricants for electric drivetrain applications. In: JSAE 20199085, SAE 2019-01-2337 (2019)
5.
Zurück zum Zitat T/CSAE 143-2020 Test and assessment specifications for integrated electric drive system of battery electric passenger cars T/CSAE 143-2020 Test and assessment specifications for integrated electric drive system of battery electric passenger cars
6.
Zurück zum Zitat QC/T 1022-2015 Technical specification for reduction gearbox of battery electric passenger cars QC/T 1022-2015 Technical specification for reduction gearbox of battery electric passenger cars
7.
Zurück zum Zitat GB/T 18488.2–2015 Drive motor system for electric vehicles—Part 2: Test methods GB/T 18488.2–2015 Drive motor system for electric vehicles—Part 2: Test methods
8.
Zurück zum Zitat QC/T 568.1-2018 The specification & bench test methods for manual transmission (MT) assembly QC/T 568.1-2018 The specification & bench test methods for manual transmission (MT) assembly
Metadaten
Titel
Experimental Evaluation of the Impact of ETF on System Efficiency
verfasst von
Hailiang Sun
Jie Li
Xuyan Jia
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-0252-7_96

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