Shape memory polymers and their composites in aerospace applications: a review
Полимеры с памятью формы и их композиты в аэрокосмических применениях: обзор
2014-01-09
SCID: 54.1/njvk6xne
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aerospace applicationsdeployable structuresmorphing wingsshape memory polymer compositesshape memory polymers
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Abstract (AI)
As a new class of smart materials, shape memory polymers and their composites (SMPs and SMPCs) can respond to specific external stimulus and remember the original shape. There are many types of stimulus methods to actuate the deformation of SMPs and SMPCs, of which the thermal- and electro-responsive components and structures are common. In this review, the general mechanism of SMPs and SMPCs are first introduced, the stimulus methods are then discussed to demonstrate the shape recovery effect, and finally, the applications of SMPs and SMPCs that are reinforced with fiber materials in aerospace are reviewed. SMPC hinges and booms are discussed in the part on components; the booms can be divided again into foldable SMPC truss booms, coilable SMPC truss booms and storable tubular extendible member (STEM) booms. In terms of SMPC structures, the solar array and deployable panel, reflector antenna and morphing wing are introduced in detail. Considering the factors of weight, recovery force and shock effect, SMPCs are expected to have great potential applications in aerospace.
Key Findings
1
Aerospace structural applications include solar arrays, deployable panels, reflector antennas, and morphing wings.
2
Fiber-reinforced SMPCs are reviewed for aerospace components including hinges, foldable and coilable truss booms, and STEM booms.
3
SMPCs are considered promising for aerospace because of their low weight, recovery-force capability, and reduced shock during deployment.
4
Shape memory polymers and composites recover their programmed original shapes in response to specific external stimuli.
5
Thermal and electrical actuation are identified as the most common stimulus methods for activating SMP and SMPC deformation and recovery.
Research Object
Shape memory polymers and their fiber-reinforced composites used in aerospace components and structures
Research Subject
Stimulus-induced shape recovery, actuation mechanisms, and aerospace deployment applications of shape memory polymers and their composites
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2014-01-09
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