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Mathematical Analysis of Clutch Thermal Energy during Automatic Shifting Coupled with Input Torque Truncation (CROSBI ID 689745)

Prilog sa skupa u časopisu | izvorni znanstveni rad | međunarodna recenzija

Zhang, Yijing ; Fujii, Yuji ; Hippalgaonkar, Rohit ; Cvok, Ivan ; Ivanovic, Vladimir ; Deur, Joško ; Ranogajec, Vanja ; Mathematical Analysis of Clutch Thermal Energy during Automatic Shifting Coupled with Input Torque Truncation // SAE technical paper series. 2020. doi: 10.4271/2020-01-0967

Podaci o odgovornosti

Zhang, Yijing ; Fujii, Yuji ; Hippalgaonkar, Rohit ; Cvok, Ivan ; Ivanovic, Vladimir ; Deur, Joško ; Ranogajec, Vanja ;

engleski

Mathematical Analysis of Clutch Thermal Energy during Automatic Shifting Coupled with Input Torque Truncation

A step-ratio automatic transmission alters torque paths for gearshifting through engagement and disengagement of clutches. It enables torque sources to run efficiently while meeting driver demand. Yet, clutch thermal energy during gearshifting is one of the contributors to the overall fuel loss. In order to optimize drivetrain control strategy, including the frequency of shifts, it is important to understand the cost of shift itself. In a power-on upshift, clutch thermal energy is primarily dissipated during inertia phase. The interaction between multiple clutches, coupled with input torque truncation, makes the decomposition of overall energy loss less obvious. This paper systematically presents the mathematical analysis of clutch thermal energy during the inertia phase of a typical single- transition gearshift. In practice, a quicker shift is generally favored, partly because the amount of energy loss is considered smaller. However, the analysis reveals that there is a critical input torque truncation level, as a function of transmission output torque, where a shorter shift actually results in a larger energy penalty. Numerical simulations of gearshifting as well as vehicle testing are conducted to examine clutch thermal energy characteristics above and below the critical input torque truncation level.

automatic transmission ; mathematical analysis

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Podaci o prilogu

2020-01-0967

2020.

nije evidentirano

objavljeno

10.4271/2020-01-0967

Podaci o matičnoj publikaciji

SAE technical paper series

0148-7191

Podaci o skupu

WCX SAE World Congress Experience

ostalo

21.04.2020-23.04.2020

Detroit (MI), Sjedinjene Američke Države

Povezanost rada

Strojarstvo

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