20 Multifunctional Solutions for Hydraulics and Structural Frameworks of Legged Robots: Self-Diagnostic Cartridge Valves, MRF and NiTi-Based Damping, Parametric Metamaterials, and Predictive Diagnostics

This document discloses twenty technical solutions for hydraulic drives, structural frameworks, and diagnostic systems of legged robots, unified by the design principle of a single physical element performing two or more functions simultaneously. These solutions encompass: self-diagnostic valves and seals utilizing impedance, piezoelectric, and NiTi mechanisms; damping and energy-recuperating structures based on magnetorheological fluids and liquid crystal elastomers; parametric metamaterial cells combining elastic, valving, and resonant functions; architectural designs for hardware-level hydraulic network survivability operating independently of electronics; cartridge interfaces with integrated opto-acoustic and electrochemical diagnostics; and a comprehensive structural joint architecture featuring three-level passive clamping and hydraulic lines routed internally through the load-bearing elements of a tensegrity framework.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22790222
Primary Topic
Robotic Locomotion and Control
Type
preprint
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20 Multifunctional Solutions for Hydraulics and Structural Frameworks of Legged Robots: Self-Diagnostic Cartridge Valves, MRF and NiTi-Based Damping, Parametric Metamaterials, and Predictive Diagnostics

Volodymyr Kotegov
Zenodo (CERN European Organization for Nuclear Research)
Robotic Locomotion and Control
preprint

20 Multifunctional Solutions for Hydraulics and Structural Frameworks of Legged Robots: Self-Diagnostic Cartridge Valves, MRF and NiTi-Based Damping, Parametric Metamaterials, and Predictive Diagnostics

Volodymyr Kotegov
preprint en

Abstract

This document discloses twenty technical solutions for hydraulic drives, structural frameworks, and diagnostic systems of legged robots, unified by the design principle of a single physical element performing two or more functions simultaneously. These solutions encompass: self-diagnostic valves and seals utilizing impedance, piezoelectric, and NiTi mechanisms; damping and energy-recuperating structures based on magnetorheological fluids and liquid crystal elastomers; parametric metamaterial cells combining elastic, valving, and resonant functions; architectural designs for hardware-level hydraulic network survivability operating independently of electronics; cartridge interfaces with integrated opto-acoustic and electrochemical diagnostics; and a comprehensive structural joint architecture featuring three-level passive clamping and hydraulic lines routed internally through the load-bearing elements of a tensegrity framework.

Zenodo (CERN European Organization for Nuclear Research)
Robotic Locomotion and Control
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20 Multifunctional Solutions for Hydraulics and Structural Frameworks of Legged Robots: Self-Diagnostic Cartridge Valves, MRF and NiTi-Based Damping, Parametric Metamaterials, and Predictive Diagnostics — Volodymyr Kotegov · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS