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Foam accumulators: packaging and weight reduction for mobile applications
Author(s) -
Manuel Rexer,
Peter Kloft,
Frank Bauer,
Jakob Hartig,
Peter F. Pelz
Publication year - 2020
Language(s) - English
Resource type - Conference proceedings
DOI - 10.25368/2020.26
Subject(s) - hydraulic accumulator , accumulator (cryptography) , reduction (mathematics) , materials science , mechanical engineering , environmental science , nuclear engineering , computer science , engineering , mathematics , geometry , algorithm
Standardized parts like hydraulic accumulators are used in nearly every hydraulic system, in many cases even several. Therefore, even small changes in size and weight of accumulators can save considerable material costs. In mobile applications, hydraulic accumulators are used among others in hydro-pneumatic suspension systems. There is a strong focus on miniaturization and weight reduction, as the components always have to be transported with the vehicle. Energy density and energy content of conventional hydraulic accumulators cannot be maximized at the same time. This limitation can be overcome by adding a heat capacity with large surface into the gas volume of the accumulator. The heat capacity enlarges the isothermal frequency range and therefore enlarges the energy density of the accumulator at the given frequency and the given size. In this paper an experimental comparison of conventional hydraulic accumulators and accumulators with foam inserts shows, that at a specific frequency band, the stiffness of foam filled accumulators is significantly lower than of conventional accumulators. The energy density is about 11 % higher than in conventional accumulators. Consequently, a space reduction of about 18 % is possible.

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