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Memory shape

Shape memory polymers are defined by their ability to store and recover strains when subjected to a particular thermo-mechanical cycle. Shape-memory polymers can recover their original shape by being heated above their transition temperature, which are defined by different phases in the materials. In particular, the shape- [Pg.162]

0 wt% of MWNTs. However, when the MWNT content reaches [Pg.164]

Better dispersion of MWNTs in the polymer matrix caused by the formation of the chemical bonds leads to uniform stress distribution and enhanced shape memory (23). Jana et al. prepared nanocomposites of PU and MWNTs via in-situ polymerization and conventional method (105). PU nanocomposites obtained via an in-situ method with PCL-g-MWNTs showed better shape recovery, compared to conventional nanocomposites. [Pg.164]

Goo et al. investigated the actuation durability of a conducting shape memory polyurethane/MWNT (CSMPU) actuator and concluded that the number of cycles at breaking decreased, as the actuation temperature increased (108). The possible reason is that more material degradation of CSMPU can be induced due to rapid and large movement of polymer chains as the actuation temperature increases. For a CSMPU actuator, the authors confirmed that an actuation temperature that is higher than the transition temperature produces a rapid response but low durability. [Pg.165]

Besides metal-complexation, hydrogen bonding can also be applied to fix a temporary shape and to create shape-memory materials [275-277]. [Pg.35]


PCTFEin [FLUORINECOMPOUNDS,ORGANIC - POLYCm.OROTRIFLUOROETTTfLENE] (Volll) -of shape-memory alloys [SITAPE-MEMORY ALLOYS] (Vol 21)... [Pg.874]

Shape anisotropy Shape control Shape factors Shape-memory alloys Shape-selective catalysis Shape selectivity Sharpless catalyst Shaving cream Shaving creams... [Pg.882]


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See also in sourсe #XX -- [ Pg.140 ]

See also in sourсe #XX -- [ Pg.140 ]

See also in sourсe #XX -- [ Pg.529 ]




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Alloys, metallic shape-memory

Applications medical devices based on shape memory polymers (SMPs)

Applications of shape memory materials in medical textiles

Austenite shape memory alloy

Austenite shape-memory phase

Biocompatible shape memory polymers

Carbon nanotube -polymers shape-memory

Classifying shape memory polymers classification by polymer structure

Classifying shape memory polymers classification by type of stimulus

Concept of biodegradable shape memory polymers

Cu-Al-Ni shape memory alloys

Cu-Zn-Al shape memory alloys

Degradable thermoplastic elastomers having shape memory properties

Elasticity shape memory alloy

Electrical Shape Memory Actuators

Electro-active shape memory polymers

Embolic applications of shape memory polyurethane scaffolds

Gels, shape-memory

Heat-triggered shape memory

Heat-triggered shape memory polymers

High performance shape memory polymers

Hyperbranched shape-memory polyurethanes

Importance —Shape-Memory Alloys

Indirect Actuation of Thermally-Induced Shape-Memory Effect

Light-activated shape memory polymers

Magnetically-active shape memory polymers

Martensite shape memory alloy

Martensite shape-memory phase transformations

Martensitic transformations shape-memory alloys

Mechanically adaptive shape memory

Moisture-induced shape memory effect

Molecular Mechanism of Shape-Memory Effect

NiTiNOL shape memory effect

Nickel-titanium shape memory alloys

Perspectives for Shape Memory Actuators

Perspectives. Novel crosslinked polyurethanes as shape-memory materials

Phase transformations shape-memory effect

Photoresponsive shape-memory polymers

Polymer Networks with Shape Memory Effect

Polymer alloy shape memory

Polyurethane Shape memory alloys

Polyurethane Shape memory applications

Polyurethane Shape memory effect

Polyurethane-based shape-memory polymers

Properties of Shape Memory Alloys

Pyridine containing supramolecular shape memory

Pyridine shape memory polyurethanes

Pyridine supramolecular shape memory polymer

Self-Healing Composites: Shape Memory Polymer-Based Structures, First Edition. Guoqiang

Shape Memory Applications

Shape Memory PU

Shape Memory Polyesters

Shape Memory Polymer Systems

Shape Memory Systems with Biodegradable Polyesters

Shape memory actuators

Shape memory aerogel

Shape memory alloy actuators

Shape memory alloy actuators position

Shape memory alloys

Shape memory alloys (SMA

Shape memory alloys and polymers

Shape memory alloys applications

Shape memory alloys properties

Shape memory assisted self-healing

Shape memory assisted self-healing SMASH)

Shape memory behavior

Shape memory behaviour

Shape memory ceramics

Shape memory chronic venous disorders

Shape memory coating and finishing techniques for smart textiles

Shape memory coil spring

Shape memory compression system

Shape memory effect

Shape memory effect contents

Shape memory effect deformation temperature

Shape memory effect results

Shape memory fibers

Shape memory finishing treatments

Shape memory finishing treatments smart textiles

Shape memory fixity

Shape memory foams

Shape memory fundamentals

Shape memory implant

Shape memory mechanism

Shape memory metals

Shape memory nanocomposite

Shape memory nanocomposite polymers

Shape memory phase transformations

Shape memory polymer biocompatibility

Shape memory polymer degradable

Shape memory polymer embolization

Shape memory polymer fibre

Shape memory polymer scaffolds

Shape memory polymer tissue engineering applications

Shape memory polymers applications

Shape memory polymers behaviour

Shape memory polymers biomedical

Shape memory polymers categories

Shape memory polymers chain structures

Shape memory polymers effect

Shape memory polymers heating

Shape memory polymers in medical textiles

Shape memory polymers inorganic nanocomposites

Shape memory polymers main applications

Shape memory polymers moisture-active

Shape memory polymers molecular mechanism

Shape memory polymers origin

Shape memory polymers other

Shape memory polymers phase change materials

Shape memory polymers phase change properties

Shape memory polymers phenoxy resins

Shape memory polymers properties, synthesis and applications

Shape memory polymers supramolecular switches

Shape memory polymers synthesis

Shape memory polymers textile applications

Shape memory polymers types

Shape memory polyurethane fibers

Shape memory polyurethane polymer fibers

Shape memory polyurethanes

Shape memory polyurethanes chemistry

Shape memory polyurethanes materials

Shape memory polyurethanes phase separation

Shape memory polyurethanes physically cross-linked

Shape memory polyurethanes thermal-mechanical properties

Shape memory pressure control

Shape memory programming

Shape memory properties

Shape memory properties chains

Shape memory properties memorization

Shape memory properties numbers

Shape memory properties recovery

Shape memory recovery

Shape memory thermoelastic behavior

Shape memory transition

Shape-memory CNT-polymers

Shape-memory alloys crystal structure

Shape-memory alloys stress-strain curve

Shape-memory alloys superelasticity

Shape-memory alloys transformation temperature

Shape-memory composites

Shape-memory cycle

Shape-memory effects processes involved

Shape-memory effects superelasticity

Shape-memory hydrogels

Shape-memory materials

Shape-memory materials biomedical applications

Shape-memory materials classification

Shape-memory materials composite system

Shape-memory materials devices

Shape-memory materials implantable devices

Shape-memory materials molecular mechanism

Shape-memory materials polymer

Shape-memory materials scaffolds

Shape-memory materials tissue engineering

Shape-memory polymers

Shape-memory polymers polyurethane

Shape-memory polymers thermal phase transition

Shape-memory stability

Shaped memory alloys

Shaped memory polymers

Smart materials shape memory alloys

Soft shape memory

Solid shape memory alloys

Stress-strain behavior shape-memory alloys

Subject shape-memory

Superelasticity, Pseudoelasticity, and the Shape Memory Effect

Supramolecular polymer networks shape memory

Supramolecular shape memory polymers

Supramolecular shape memory polymers containing pyridine

Supramolecular shape memory polymers properties

Supramolecular shape memory polymers structure

Temperature-responsive polymers shape-memory polymer

Tg-type shape memory fibers SEM image of PCL

Tg-type shape memory polymers

The Microstructure and Martensitic Transformation in a (Potentially) Shape-Memory Ni-AI-Ti-B Alloy

The future of shape memory polymer scaffolds

Thermally-induced shape memory effects

Thermoplastic shape-memory polymers

Thermoresponsive shape-memory polymers

Ti-Ni Shape Memory Alloys

TiNi Shape-Memory Alloys

TiNi-shape memory

Triple-shape memory polymers

Why shape memory polymer scaffolds

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