Media Summary: Scientists at the University of Rochester have created a new type of 'super polymer' that could prove an extremely useful ... Timelapse of a mechanical test for the analyse of the elastocaloric effect. This experiment shows the transition from austenite to ... See more examples of this material in action: Polymers that visibly change ...

Shape Memory Cycle Involving Strain - Detailed Analysis & Overview

Scientists at the University of Rochester have created a new type of 'super polymer' that could prove an extremely useful ... Timelapse of a mechanical test for the analyse of the elastocaloric effect. This experiment shows the transition from austenite to ... See more examples of this material in action: Polymers that visibly change ... Bill demonstrates the temperature-dependent Students: Xiao Qiao, Issei Suzuki, Wee-chin (Kelvin)Wong Advisors: Dr. Shu Yang and Dr. Daniel Gianola Department of ... Monitoring temperature increase during necking and propagation.

Switching of Fe3O4 magnetic chains in polyurethane

Photo Gallery

Shape Memory Cycle Involving Strain Induced Crystallization
Straining cycles of a shape memory alloy (NiTi) #2
Mitch Anthamatten Explains a Shape-Memory Cycle Involving Strain Induced Crystallization
Nitinol: The Shape Memory Effect and Superelasticity
Senior Design 2011: Shape Memory Polymer Micro Pillars for Super-Strong Dry Adhesion
Testing of the shape memory effect in a rubber-like shape memory polymer
Stress induced crystallization in TPU observed by optical and infrared lens
Switching of magnetic chains in shape memory polymer
Cardiovascular Applications of Shape Memory Alloys
Simulation of shape-memory polymers
Your Body Heat Changes This Polymer | HowStuffWorks NOW
Vascular Shape Memory Polymer (SMP)
View Detailed Profile
Shape Memory Cycle Involving Strain Induced Crystallization

Shape Memory Cycle Involving Strain Induced Crystallization

Scientists at the University of Rochester have created a new type of 'super polymer' that could prove an extremely useful ...

Straining cycles of a shape memory alloy (NiTi) #2

Straining cycles of a shape memory alloy (NiTi) #2

Timelapse of a mechanical test for the analyse of the elastocaloric effect. This experiment shows the transition from austenite to ...

Mitch Anthamatten Explains a Shape-Memory Cycle Involving Strain Induced Crystallization

Mitch Anthamatten Explains a Shape-Memory Cycle Involving Strain Induced Crystallization

See more examples of this material in action: https://www.youtube.com/watch?v=50zu5HSdlLc Polymers that visibly change ...

Nitinol: The Shape Memory Effect and Superelasticity

Nitinol: The Shape Memory Effect and Superelasticity

Bill demonstrates the temperature-dependent

Senior Design 2011: Shape Memory Polymer Micro Pillars for Super-Strong Dry Adhesion

Senior Design 2011: Shape Memory Polymer Micro Pillars for Super-Strong Dry Adhesion

Students: Xiao Qiao, Issei Suzuki, Wee-chin (Kelvin)Wong Advisors: Dr. Shu Yang and Dr. Daniel Gianola Department of ...

Testing of the shape memory effect in a rubber-like shape memory polymer

Testing of the shape memory effect in a rubber-like shape memory polymer

Highly elastic at room temperature.

Stress induced crystallization in TPU observed by optical and infrared lens

Stress induced crystallization in TPU observed by optical and infrared lens

Monitoring temperature increase during necking and propagation.

Switching of magnetic chains in shape memory polymer

Switching of magnetic chains in shape memory polymer

Switching of Fe3O4 magnetic chains in polyurethane

Cardiovascular Applications of Shape Memory Alloys

Cardiovascular Applications of Shape Memory Alloys

Materials in BioEngineering.

Simulation of shape-memory polymers

Simulation of shape-memory polymers

The

Your Body Heat Changes This Polymer | HowStuffWorks NOW

Your Body Heat Changes This Polymer | HowStuffWorks NOW

... https://www.youtube.com/watch?v=AZyq3TqskAY Mitch Anthamatten Explains a

Vascular Shape Memory Polymer (SMP)

Vascular Shape Memory Polymer (SMP)

Embedded in this

Programming a crystalline shape memory polymer network with thermo- and photo-reversible bonds

Programming a crystalline shape memory polymer network with thermo- and photo-reversible bonds

Programming a crystalline