We propose that ballooning can be controlled, enriched and amplified by using rubbery networks of aligned molecular rods known as liquid crystal elastomers (LCEs). Firstly, LCEs are promising artificial muscles, showing large spontaneous deformations in response to heat and light. In LCE balloons, spontaneous deformations can trigger classic ballooning, either as phase separation (at constant volume) or a volume jump (at constant pressure), resulting in greatly magnified actuation strains. Secondly, even at constant temperature, LCEs have unusual mechanics augmented by soft modes of deformation in which the nematic director rotates within the elastomer. These soft modes enrich the mechanics of LCE balloons, which can also “balloon” between ...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
In nature, twisting motions of many organisms enable complex mechanical function such as swimming, c...
Liquid crystal elastomers (LCEs) are rubber-like solids that spontaneously deform under stimuli such...
Nematic elastomers are programmable soft materials that display large, reversible and predictable de...
Nematic elastomers are programmable soft materials that display large, reversible, and predictable d...
Soft actuator is a promising candidate for replacing a traditional rigid materials-based actuator wh...
Soft actuator is a promising candidate for replacing a traditional rigid materials-based actuator wh...
Nematic elastomer balloons with inflation-induced axial contraction and shear/torsion effect can be ...
Liquid crystal elastomers (LCEs) are fascinating materials in which the elasticity of polymer networ...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
We demonstrate, for the First time, the low voltage-driven-electromechanical effectsin liquid crysta...
In nature, twisting motions of many organisms enable complex mechanical function such as swimming, c...
Liquid crystalline elastomers combine the ordering properties of liquid crystals with elasticity of ...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
In nature, twisting motions of many organisms enable complex mechanical function such as swimming, c...
Liquid crystal elastomers (LCEs) are rubber-like solids that spontaneously deform under stimuli such...
Nematic elastomers are programmable soft materials that display large, reversible and predictable de...
Nematic elastomers are programmable soft materials that display large, reversible, and predictable d...
Soft actuator is a promising candidate for replacing a traditional rigid materials-based actuator wh...
Soft actuator is a promising candidate for replacing a traditional rigid materials-based actuator wh...
Nematic elastomer balloons with inflation-induced axial contraction and shear/torsion effect can be ...
Liquid crystal elastomers (LCEs) are fascinating materials in which the elasticity of polymer networ...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
We demonstrate, for the First time, the low voltage-driven-electromechanical effectsin liquid crysta...
In nature, twisting motions of many organisms enable complex mechanical function such as swimming, c...
Liquid crystalline elastomers combine the ordering properties of liquid crystals with elasticity of ...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
In nature, twisting motions of many organisms enable complex mechanical function such as swimming, c...