Javascript must be enabled to continue!
Tough polymer gels reinforced by strain-induced crystallization
View through CrossRef
Abstract
Recently, we reported that strain-induced crystallization (SIC) of the polymer chains occurs in homogeneous polymer gels, such as slide-ring gels and Tri-/Tetra-PEG gels, with sufficiently high polymer concentrations. SIC significantly improves the mechanical toughness of homogeneous gels. Polymer crystals form and dissolve immediately after the polymer gels are stretched and unstretched. The quick formation and dissolution of the strain-induced crystals leads to elastic mechanical responses with minimal hysteresis under cyclic stretching. Tough and elastic polymer gels have potential applications in biomedical materials (ex. artificial ligaments and tendons) and soft electric devices (ex. soft actuators and flexible batteries) under repeated deformation.
Title: Tough polymer gels reinforced by strain-induced crystallization
Description:
Abstract
Recently, we reported that strain-induced crystallization (SIC) of the polymer chains occurs in homogeneous polymer gels, such as slide-ring gels and Tri-/Tetra-PEG gels, with sufficiently high polymer concentrations.
SIC significantly improves the mechanical toughness of homogeneous gels.
Polymer crystals form and dissolve immediately after the polymer gels are stretched and unstretched.
The quick formation and dissolution of the strain-induced crystals leads to elastic mechanical responses with minimal hysteresis under cyclic stretching.
Tough and elastic polymer gels have potential applications in biomedical materials (ex.
artificial ligaments and tendons) and soft electric devices (ex.
soft actuators and flexible batteries) under repeated deformation.
Related Results
Directed polymer crystallization at liquid interfaces
Directed polymer crystallization at liquid interfaces
Liquid-liquid and liquid-air interfaces are crucial to study amphiphile and colloidal self-assembly. Crystallization of polymers can also be regarded as a self-assembly process. In...
Nanogold and nanosilver hybrid polymer materials
Nanogold and nanosilver hybrid polymer materials
<p>Significant opportunities exist in both the scientific and industrial sectors for the development of new generation hybrid materials. These multifunctional hybrid material...
(Invited) Sliding Dynamics and Mechanical Properties of Slide-Ring Gels
(Invited) Sliding Dynamics and Mechanical Properties of Slide-Ring Gels
To overcome the trade-off relationship between stiffness and toughness of conventional polymer gels with covalent cross-links, introducing dynamical cross-links into polymer networ...
Polymer-laden homogeneous shear-driven turbulent flow: a model for polymer drag reduction
Polymer-laden homogeneous shear-driven turbulent flow: a model for polymer drag reduction
Drag reduction (DR) under a turbulent boundary layer implies the suppression of turbulent momentum flux to the wall, a large-eddy phenomenon. Our hypothesis is that the essential m...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Barrier Polymers
Barrier Polymers
AbstractBarrier polymers are used for many packaging and protective applications. As barriers they separate a system, such as an article of food or an electronic component, from an...
Extending Polymer Flooding Towards High-Temperature and High-Salinity Carbonate Reservoirs
Extending Polymer Flooding Towards High-Temperature and High-Salinity Carbonate Reservoirs
Abstract
Polymer flooding is a mature EOR technique successfully applied in both sandstone and carbonate reservoirs. ADNOC has developed a new EOR roadmap with the o...
Review of Magnetic Gels as Smart Materials
Review of Magnetic Gels as Smart Materials
Chapter 8 reviews magnetic gels. Zrinyi and co-workers were the first to develop magnetically active gels, the responses of which could be vastly accelerated by an imposed magnetic...

