Shape memory characteristics of porous Ti-Ni-Mo alloys prepared by solid state sintering

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초록

Ti50Ni49.7Mo0.3, TisoNi(49.6)Mo(0.4) and Ti50Ni49.5Mo0.5 alloy fibers were prepared by a melt overflow process. Two-step B2-R-B19' transformation was observed in the rapidly solidified Ti-Ni-Mo fibers. Upon increasing the Mo-content from 0.3 to 0.5 at.%, the austenite transformation finish temperature (A(f)) of R -> B2 decreased from 43 to -42 degrees C. Porous shape memory alloy pellets with 75% porosity were fabricated by a vacuum sintering technology, using the alloy fibers. Mechanical properties and shape memory effect of the highly porous TisoNi(49.6)Mo(0.4) alloy, of which Af is lower than room temperature, were investigated using a compressive test. The plateau of a stress-strain curve was observed at about 2 MPa and resulted in 5% elongation associated with stress-induced martensitic transformation. It was also found that a recovered strain was 1.8% on heating after the compressive deformation. Because of the high porosity of this specimen, an elastic modulus of 0.91 GPa could be obtained. (C) 2016 Elsevier Ltd. All rights reserved.

키워드

Intermetallic compoundsX-ray diffractionDifferential scanning calorimetry (DSC)Mechanical propertiesElastic propertiesTRANSFORMATIONBEHAVIORPHASE
제목
Shape memory characteristics of porous Ti-Ni-Mo alloys prepared by solid state sintering
저자
Kim, Yeon-wookJo, Byeong-guYoung, SungNam, Tae-hyun
DOI
10.1016/j.materresbull.2016.03.007
발행일
2016-10
유형
Article
저널명
Materials Research Bulletin
82
페이지
45 ~ 49