Towards novel energy shunt inspired vibration suppression techniques: principles, designs and applications
X Huang, B Yang - Mechanical Systems and Signal Processing, 2023 - Elsevier
Vibration control is an overwhelmingly concerned issue that exists in many industrial fields
such as machinery, aerospace and civil engineering. Indeed, in terms of energy perspective …
such as machinery, aerospace and civil engineering. Indeed, in terms of energy perspective …
Smart materials in architecture for actuator and sensor applications: A review
M Sobczyk, S Wiesenhütter… - Journal of Intelligent …, 2022 - journals.sagepub.com
Severe challenges such as depletion of natural resources, natural catastrophes, extreme
weather conditions, or overpopulation require intelligent solutions especially in architecture …
weather conditions, or overpopulation require intelligent solutions especially in architecture …
Semi-active control of walking-induced vibrations in bridges using adaptive tuned mass damper considering human-structure-interaction
Tuned mass dampers (TMDs) are used to control pedestrian induced vibrations of
pedestrian bridges as traditional vibration control devices. A TMD can have a good control …
pedestrian bridges as traditional vibration control devices. A TMD can have a good control …
A review on structural configurations of magnetorheological fluid based devices reported in 2018–2020
D Hua, X Liu, Z Li, P Fracz, A Hnydiuk-Stefan… - Frontiers in …, 2021 - frontiersin.org
Magnetorheological fluid (MRF) is a kind of smart materials with rheological behavior
change by means of external magnetic field application, which has been widely adopted in …
change by means of external magnetic field application, which has been widely adopted in …
Design and optimization of a magnetorheological damper based on B-spline curves
Taking advantage of the magnetically controllable rheological properties of
magnetorheological (MR) fluid, MR dampers are widely used in many engineering fields …
magnetorheological (MR) fluid, MR dampers are widely used in many engineering fields …
A review on multi-physics numerical modelling in different applications of magnetorheological fluids
W Elsaady, SO Oyadiji… - Journal of Intelligent …, 2020 - journals.sagepub.com
Magnetorheological fluids involve multi-physics phenomena which are manifested by
interactions between structural mechanics, electromagnetism and rheological fluid flow. In …
interactions between structural mechanics, electromagnetism and rheological fluid flow. In …
Latching control: A wave energy converter inspired vibration control strategy
H Wang, S Zhu - Mechanical Systems and Signal Processing, 2024 - Elsevier
Latching control is a phase optimization control mechanism for improving the energy
conversion efficiency of a wave energy converter (WEC). This paper, for the first time …
conversion efficiency of a wave energy converter (WEC). This paper, for the first time …
An optimal NARX neural network identification model for a magnetorheological damper with force-distortion behavior
Q Liu, W Chen, H Hu, Q Zhu, Z Xie - Frontiers in Materials, 2020 - frontiersin.org
This paper presents an optimal NARX neural network identification model for a
magnetorheological (MR) damper with the force-distortion behavior. An intensive …
magnetorheological (MR) damper with the force-distortion behavior. An intensive …
Magnetorheological fluids: A concise review of composition, physicochemical properties, and models
Magnetorheological fluids (MRFs) are classified as intelligent materials whose rheological
and mechanical properties can be modified by interaction with an external magnetic field …
and mechanical properties can be modified by interaction with an external magnetic field …
Exploration of the nonlinear effect of pendulum tuned mass dampers on vibration control
Understanding the nonlinearity of pendulum tuned mass dampers (PTMDs) under large-
amplitude vibration is important to enhance control performance. Here, the nonlinear effects …
amplitude vibration is important to enhance control performance. Here, the nonlinear effects …