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For:
Chluba C
, Siemsen K, Bechtold C, Zamponi C, Selhuber-Unkel C, Quandt E, Lima de Miranda R.
Microfabricated bioelectrodes on self-expandable NiTi thin film devices for implants and diagnostic instruments.
Biosens Bioelectron
2020;
153
:112034. [PMID:
31989946
DOI:
10.1016/j.bios.2020.112034
]
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Citation(s) in
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Impact Index Per Article: 1.3
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[Received: 10/14/2019]
[Revised: 01/12/2020]
[Accepted: 01/16/2020]
[Indexed: 12/30/2022]
Number
Cited by Other Article(s)
1
Fabrication of Thermal Plasma Sprayed NiTi Coatings Possessing Functional Properties.
COATINGS
2021. [DOI:
10.3390/coatings11050610
]
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Citation(s) in
RCA
: 11
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[Indexed: 11/16/2022]
Abstract
Thick NiTi shape memory alloy coatings (300–500 µm) were produced on graphite and AISI 304 substrates by radio frequency inductively-coupled plasma spray technology (RF-ICP) from feedstock NiTi powders. Their microstructure as well as chemical and phase composition were characterized and a methodology for the characterization of functional shape memory properties of the thick coatings was developed. The coatings exhibited cubic to monoclinic martensitic transformation and shape memory effect. The presented results prove that NiTi coatings with functional thermomechanical properties can be easily produced on structural materials by RF-ICP. Further optimization will be needed to prepare NiTi coatings with better microstructural and chemical homogeneity.
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