Nonsymmetrical flow compensation using hydraulic accumulator in direct driven differential cylinder application

Alexander Järf, Tatiana Minav, Matti Pietola

Research output: Chapter in Book/Report/Conference proceedingConference contributionScientificpeer-review

11 Citations (Scopus)

Abstract

This paper presents a novel hydraulic setup, direct driven hydraulics (DDH), which consists of two pumps on a common axis driven by a servomotor. These pumps are directly connected to each chamber of a differential hydraulic cylinder. The pumps are dimensioned so that the respective nominal sizes corresponds to the expected flows of each cylinder chamber. However, the dimensioning of the pumps are slightly off, leading to an excess rise of pressure in the B-chamber. This paper investigates if the implementation of a hydraulic accumulator can mitigate this mismatch problem. A Matlab/Simulink model was created and utilized for simulating the optimal accumulator parameters for energy efficiency. The optimal alternative was implemented to the research setup and energy efficiency measurements are performed with various loads and different ambient temperatures. The results shows that this solution was a viable alternative and that the energy efficiency of this setup was improved.

Original languageEnglish
Title of host publication9th FPNI Ph.D. Symposium on Fluid Power, FPNI 2016
PublisherAmerican Society of Mechanical Engineers
Number of pages6
ISBN (Electronic)9780791850473
DOIs
Publication statusPublished - 2016
MoE publication typeA4 Article in a conference publication
EventFPNI Ph.D. Symposium on Fluid Power - Florianopolis, Brazil
Duration: 26 Oct 201628 Oct 2016
Conference number: 9

Conference

ConferenceFPNI Ph.D. Symposium on Fluid Power
Abbreviated titleFPNI
CountryBrazil
CityFlorianopolis
Period26/10/201628/10/2016

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    Järf, A., Minav, T., & Pietola, M. (2016). Nonsymmetrical flow compensation using hydraulic accumulator in direct driven differential cylinder application. In 9th FPNI Ph.D. Symposium on Fluid Power, FPNI 2016 [V001T01A011] American Society of Mechanical Engineers. https://doi.org/10.1115/FPNI2016-1516