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Shape memory effect of polymeric composite materials filled with NiMnSbB shape memory alloy for textile materials
by
Ak it, Aysun
, Aydo du, Yıldırım
, Topel-Zeren, Esra
in
Alloys
/ Composite materials
/ composites
/ Crystal structure
/ Crystallography
/ Damping capacity
/ Electric arc melting
/ Phase transitions
/ polymer
/ Polymer matrix composites
/ Shape effects
/ Shape memory alloys
/ shape recovery
/ Smart materials
/ textile
2020
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Shape memory effect of polymeric composite materials filled with NiMnSbB shape memory alloy for textile materials
by
Ak it, Aysun
, Aydo du, Yıldırım
, Topel-Zeren, Esra
in
Alloys
/ Composite materials
/ composites
/ Crystal structure
/ Crystallography
/ Damping capacity
/ Electric arc melting
/ Phase transitions
/ polymer
/ Polymer matrix composites
/ Shape effects
/ Shape memory alloys
/ shape recovery
/ Smart materials
/ textile
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Shape memory effect of polymeric composite materials filled with NiMnSbB shape memory alloy for textile materials
by
Ak it, Aysun
, Aydo du, Yıldırım
, Topel-Zeren, Esra
in
Alloys
/ Composite materials
/ composites
/ Crystal structure
/ Crystallography
/ Damping capacity
/ Electric arc melting
/ Phase transitions
/ polymer
/ Polymer matrix composites
/ Shape effects
/ Shape memory alloys
/ shape recovery
/ Smart materials
/ textile
2020
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Shape memory effect of polymeric composite materials filled with NiMnSbB shape memory alloy for textile materials
Journal Article
Shape memory effect of polymeric composite materials filled with NiMnSbB shape memory alloy for textile materials
2020
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Overview
The aim of the study was to obtain a smart textile material with shape memory alloys. NiMn-based shape memory alloy was produced by arc melting system for this purpose. Phase transition temperatures of the fabricated alloy were determined by using differential scanning calorimeter (DSC). The crystallographic structure of the fabricated alloy was characterized by x-ray diffractometer (XRD). The fabricated shape memory alloy was converted to the particle form and filled into polymer matrix to obtain shape memory effect of this polymeric composite material. Polymeric composites (PCs) were produced in film form and shape training of PCs were studied under different conditions. The shape memory behavior of samples was investigated into the water for fast response during applying heat. Damping capacity of composites was measured by using dynamic mechanical analyzer (DMA) according to temperature rising. The shape recovery was observed under certain stimuli on the SMA filled polymeric composites.
Publisher
IOP Publishing
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