Wang et al., 2014 - Google Patents
Development of hydraulically driven shaking table for damping experiments on shock absorbersWang et al., 2014
- Document ID
- 4511543961005923406
- Author
- Wang S
- Wang J
- Xie W
- Zhao J
- Publication year
- Publication venue
- Mechatronics
External Links
Snippet
The hydraulically driven shaking table has been developed for damping characteristic experiments on shock absorbers in this paper. The damping characteristics and corresponding experiments on the double-tube hydraulic absorber are analyzed firstly, and …
- 239000006096 absorbing agent 0 title abstract description 78
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16F—SPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
- F16F9/00—Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
- F16F9/32—Details
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Feng et al. | Identification and compensation of non-linear friction for a electro-hydraulic system | |
Niksefat et al. | Design and experimental evaluation of a robust force controller for an electro-hydraulic actuator via quantitative feedback theory | |
Truong et al. | Force control for hydraulic load simulator using self-tuning grey predictor–fuzzy PID | |
Czop et al. | A high-frequency first-principle model of a shock absorber and servo-hydraulic tester | |
CN105700347B (en) | A kind of hydraulic motor default capabilities tracking and controlling method containing Hysteresis compensation | |
Yuan et al. | Robust MPC–PIC force control for an electro-hydraulic servo system with pure compressive elastic load | |
Wang et al. | Development of hydraulically driven shaking table for damping experiments on shock absorbers | |
Liem et al. | A feedforward neural network fuzzy grey predictor-based controller for force control of an electro-hydraulic actuator | |
He et al. | Adaptive robust dead-zone compensation control of electro-hydraulic servo systems with load disturbance rejection | |
Skjong et al. | Model-based control designs for offshore hydraulic winch systems | |
Kogler et al. | Energy efficient linear drive axis using a hydraulic switching converter | |
Konieczny et al. | Bench tests of slow and full active suspensions in terms of energy consumption | |
Du et al. | Performance analysis of an energy-efficient variable supply pressure electro-hydraulic motion control system | |
Li et al. | Characterization and modeling of a novel electro-hydraulic variable two-terminal mass device | |
Zang et al. | Extended sliding mode observer based robust adaptive backstepping controller for electro-hydraulic servo system: Theory and experiment | |
Xie et al. | Motion control of pneumatic muscle actuator using fast switching valve | |
Nieto et al. | Unbalanced machinery vibration isolation with a semi-active pneumatic suspension | |
Lin et al. | Multi-cylinder electrohydraulic digital loading technology for reproduction of large load | |
Schmidt | Robust Control of Industrial Hydraulic Cylinder Drives-with Special Reference to Sliding Mode-& Finite-Time Control | |
Fales | Stability and performance analysis of a metering poppet valve | |
Bai et al. | Improving electro-hydraulic system performance by double-valve actuation | |
Man et al. | Hydraulic impulse-testing system with pressure difference feedback from a second-stage valve | |
Zhipeng et al. | Development of a novel high pressure electronic pneumatic pressure reducing valve | |
Pellegrini et al. | Physical modeling of a nonlinear semi-active vehicle damper | |
Andersen et al. | A low order adaptive control scheme for hydraulic servo systems |