confined polymer
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2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Jin Huang ◽  
Yichao Xu ◽  
Shuanhu Qi ◽  
Jiajia Zhou ◽  
Wei Shi ◽  
...  

AbstractEnergy-dissipation elastomers relying on their viscoelastic behavior of chain segments in the glass transition region can effectively suppress vibrations and noises in various fields, yet the operating frequency of those elastomers is difficult to control precisely and its range is narrow. Here, we report a synergistic strategy for constructing polymer-fluid-gels that provide controllable ultrahigh energy dissipation over a broad frequency range, which is difficult by traditional means. This is realized by precisely tailoring the relaxation of confined polymer fluids in the elastic networks. The symbiosis of this combination involves: elastic networks forming an elastic matrix that displays reversible deformation and polymer fluids reptating back and forth to dissipate mechanical energy. Using prototypical poly (n-butyl acrylate) elastomers, we demonstrate that the polymer-fluid-gels exhibit a controllable ultrahigh energy-dissipation property (loss factor larger than 0.5) with a broad frequency range (10−2 ~ 108 Hz). Energy absorption of the polymer-fluid-gels is over 200 times higher than that of commercial damping materials under the same dynamic stress. Moreover, their modulus is quasi-stable in the operating frequency range.


2021 ◽  
Vol 154 (11) ◽  
pp. 114901
Author(s):  
S. Mohammad Hoseinpoor ◽  
Narges Nikoofard ◽  
Bae-Yeun Ha

2020 ◽  
Vol 180 (1-6) ◽  
pp. 1061-1094
Author(s):  
Bertrand Duplantier ◽  
Anthony J. Guttmann

2020 ◽  
Vol 23 ◽  
pp. 100519
Author(s):  
Aparna Beena Unni ◽  
Katarzyna Chat ◽  
Katarzyna Balin ◽  
Karolina Adrjanowicz

Polymer ◽  
2020 ◽  
Vol 199 ◽  
pp. 122501
Author(s):  
Aparna Beena Unni ◽  
Katarzyna Chat ◽  
Daniel Marques Duarte ◽  
Marcin Wojtyniak ◽  
Monika Geppert-Rybczyńska ◽  
...  

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