2026 International Maha Fluid Power Conference

2026 International Maha Fluid Power Conference
Fluid Power and Motion Control Technology

Proceedings

2026 International Maha Fluid Power Conference
Fluid Power and Motion Control Technology

Editor: Lizhi Shang, Associate Professor, Department of Agricultural & Biological Engineering and School of Mechanical Engineering, USA

e-ISBN: 9788743816782

Available: September 2026

doi: https://doi.org/10.13052/rp-9788743816782


The 2026 International Maha Fluid Power Conference Proceedings features 16 papers focusing on key technological advancements in the design, optimization, and condition monitoring of modern hydraulic components and systems. The papers provide insights into tribological interfaces and lubrication dynamics, detailing how advanced multi-physics frameworks can simulate contact, fluid-structure interaction, and dynamic micro-motions in heavy-duty machinery. Several experiments and novel telemetry techniques are also employed to demonstrate how embedded sensors, telemetry technologies can capture high-frequency measurement such as pressure transients, structural deformations, and flow rates in-situ, and how measurements correlate with simulations. The papers were carefully selected by the scientific committees of the conference and subjected to thorough peer-review and refinement based on reviewers’ feedback. We hope the concepts, methodologies, and results presented in this edition of the Proceedings will positively contribute to the advancement of fluid power technology.
fluid power, motion control, tribology, sensors, off-road vehicle, simulation, condition monitoring

Article 2: How Fluid Power Research Can Contribute to a More Sustainable Construction Industry
by Prof. Dr. Olivier Reinertz, Christian Bertram, Prof. Dr. Katharina Schmitz
https://doi.org/10.13052/rp-9788743816782P02


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Article 4: Unsteady CFD Analysis of Alternating Flow Patterns in a Restrictive Orifice of a Pressure Regulator Valve
by Naoki Hirose, Seiei Masuda, Yasushi Matsunaga, Fumio Shimizu, Kazuhiro Tanaka, Takeshi Yamaguchi
https://doi.org/10.13052/rp-9788743816782P04


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Article 5: New Sensing Method for Cartridge Valves
by Massimiliano Ruggeri, Sara Baldoni, Chiara Gialluca, Christopher Rosi, Matteo Ferri, Luca Belsito
https://doi.org/10.13052/rp-9788743816782P05


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Article 13: Cylinder Block Deformation as Indicator for Cylinder Pressure in Axial Piston Units: A Novel Method Using Strain Gauges
by Karl Stübig, Luca Löding, Frank Geuer, Lars Leonhard, Dr.-Ing. Matthias Liermann, Sumeru Srinivasamurthy, Carsten Fiebing, Dr.-Ing. Robert Rahmfeld
https://doi.org/10.13052/rp-9788743816782P13


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