2019
DOI: 10.1002/stc.2326
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Modeling, simulation, and validation of a pendulum-pounding tuned mass damper for vibration control

Abstract: Summary This paper proposes a new passive control device, pendulum‐pounding tuned mass damper (PPTMD), to mitigate the response of lightly damped structures under various excitations. The proposed PPTMD consists of a tuned pendulum mass and a pounding boundary next to the equilibrium position of the pendulum mass. Moreover, a layer of viscoelastic materials called high energy‐dissipation rubber is attached on the pounding boundary to dissipate the vibration energy through impacts. A simplified impact force mod… Show more

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Cited by 51 publications
(23 citation statements)
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References 52 publications
(106 reference statements)
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“…Control techniques mainly include passive, active and semi-active control. Many studies and practices show that common passive control devices, such as the Tuned Mass Damper (TMD), have been commonly adopted due to their design simplicity, good control effectiveness and low cost [15][16][17][18][19][20]. The Particle Dampers (PDs) [21], Frictional Tuned Mass Damper (FTMD) [22,23] and Tuned Liquid Damper (TLD) [24,25] are also the most commonly used passive control techniques in earthquake engineering.…”
Section: Introductionmentioning
confidence: 99%
“…Control techniques mainly include passive, active and semi-active control. Many studies and practices show that common passive control devices, such as the Tuned Mass Damper (TMD), have been commonly adopted due to their design simplicity, good control effectiveness and low cost [15][16][17][18][19][20]. The Particle Dampers (PDs) [21], Frictional Tuned Mass Damper (FTMD) [22,23] and Tuned Liquid Damper (TLD) [24,25] are also the most commonly used passive control techniques in earthquake engineering.…”
Section: Introductionmentioning
confidence: 99%
“…PZT transducers can exchange energy between mechanical energy and electrical energy [10,11], and therefore, they can work as an actuator to general stress or ultrasonic waves or a sensor to detect such waves [12,13,14,15]. PZTs are often used to build vibrations sensors, such as accelerometers, for vibration detection and control [16,17], as well as ultrasonic transducers [18,19,20] and acoustic emission probes [21,22,23] for SHM. Furthermore, this type of transducer can be bonded onto a structural surface or embedded in a concrete or composite structure during the structural fabrication process.…”
Section: Introductionmentioning
confidence: 99%
“…In this case, the tuned mass behaves like a classical TMD, which suppress the vibration of the main mass by giving it a restoring force against its motion direction. However, if the motion of the main mass exceeds a certain level, the tuned mass will impact on the delimiter and kinetic energy will be dissipated during this collision process [33,34]. The PTMD has been applied for mitigating the undesired vibration of a variety of structures, including long span power transmission tower–line systems [33,35], subsea pipeline structures [36,37,38,39], offshore platforms [40,41], high rise buildings [42,43,44,45], long span bridges [46,47], suspended building piping systems [19], and traffic signal poles [48,49].…”
Section: Introductionmentioning
confidence: 99%