Acoustic Black Holes (ABHs) have been shown to provide significant vibration damping in both beams and plates. Although effective, the performance of ABHs has been shown to be limited at lower frequencies, where the local modes of the ABH dominate the structural response. Previously, integrating active control into the taper of an ABH beam termination has been explored and the resulting active ABH (AABH) has been shown to perform very well; namely it has been shown that the reflection coefficient can be controlled almost perfectly over a broad range of frequencies. In this paper, active components have been integrated into ABHs embedded in a plate and a multichannel feedforward control strategy has been presented that can be used to control...
International audienceThe design of lightweight and stiff structures with high vibration damping pro...
Acoustic Black Holes (ABHs) have been shown to produce significant vibration damping in both beams a...
International audienceThe design of lightweight and stiff structures with attractive vibration dampi...
Acoustic Black Holes (ABHs) have been shown to provide significant vibration damping in both beams a...
An Acoustic Black Hole (ABH) is a lightweight and compact damping solution, which can be realised as...
Acoustic Black Holes (ABHs) can be realised as tapered structural features that focus and absorb vib...
Acoustic black holes (ABHs) are tapered structural features that can achieve high levels of structur...
Acoustic Black Holes (ABHs) are tapered features that can either be surface mounted or embedded into...
Acoustic black holes (ABHs) are commonly realised as structural features that can be used for effect...
Acoustic black holes (ABHs) are tapered structural features that can achieve high levels of structur...
Acoustic Black Holes (ABHs) are structural features that are typically realised by introducing a tap...
Acoustic black holes are structural features that are realised by tapering the thickness of a beam o...
This paper investigates the vibrational behaviour and attenuation performance of a plate connected t...
The plate embedded with acoustic black hole (ABH) indentations is potential for structural vibration...
International audienceThe Acoustic Black Hole (ABH) effect refers to a special vibration damping tec...
International audienceThe design of lightweight and stiff structures with high vibration damping pro...
Acoustic Black Holes (ABHs) have been shown to produce significant vibration damping in both beams a...
International audienceThe design of lightweight and stiff structures with attractive vibration dampi...
Acoustic Black Holes (ABHs) have been shown to provide significant vibration damping in both beams a...
An Acoustic Black Hole (ABH) is a lightweight and compact damping solution, which can be realised as...
Acoustic Black Holes (ABHs) can be realised as tapered structural features that focus and absorb vib...
Acoustic black holes (ABHs) are tapered structural features that can achieve high levels of structur...
Acoustic Black Holes (ABHs) are tapered features that can either be surface mounted or embedded into...
Acoustic black holes (ABHs) are commonly realised as structural features that can be used for effect...
Acoustic black holes (ABHs) are tapered structural features that can achieve high levels of structur...
Acoustic Black Holes (ABHs) are structural features that are typically realised by introducing a tap...
Acoustic black holes are structural features that are realised by tapering the thickness of a beam o...
This paper investigates the vibrational behaviour and attenuation performance of a plate connected t...
The plate embedded with acoustic black hole (ABH) indentations is potential for structural vibration...
International audienceThe Acoustic Black Hole (ABH) effect refers to a special vibration damping tec...
International audienceThe design of lightweight and stiff structures with high vibration damping pro...
Acoustic Black Holes (ABHs) have been shown to produce significant vibration damping in both beams a...
International audienceThe design of lightweight and stiff structures with attractive vibration dampi...