Number of the records: 1  

Deformation infrared calorimetry for materials characterization applied to study cyclic superelasticity in NiTi wires

  1. SYS0563585
    LBL
      
    01000a^^22220027750^450
    005
      
    20240103230952.3
    014
      
    $a 85098687721 $2 SCOPUS
    014
      
    $a 000633027500002 $2 WOS
    017
    70
    $a 10.1016/j.matdes.2020.109406 $2 DOI
    100
      
    $a 20221108d m y slo 03 ba
    101
    0-
    $a eng
    102
      
    $a GB
    200
    1-
    $a Deformation infrared calorimetry for materials characterization applied to study cyclic superelasticity in NiTi wires
    215
      
    $a 23 s.
    300
      
    $a Dvojí afiliace
    463
    -1
    $1 001 cav_un_epca*0447731 $1 011 $a 0264-1275 $e 1873-4197 $1 200 1 $a Materials and Design $v Roč. 199, Feb (2021) $1 210 $c Elsevier
    608
      
    $a Article
    610
      
    $a heat Sources
    610
      
    $a deformation calorimetry
    610
      
    $a NiTi wires
    610
      
    $a strain Localization
    610
      
    $a superelasticity
    610
      
    $a functional fatigue
    700
    -1
    $3 cav_un_auth*0345574 $a Alarcón Tarquino $b Eduardo $p FZU-D $i Funkční materiály $j Functional Materials $y CO $z K $T Fyzikální ústav AV ČR, v. v. i.
    701
    -1
    $3 cav_un_auth*0243555 $a Heller $b Luděk $p FZU-D $i Funkční materiály $j Functional Materials $T Fyzikální ústav AV ČR, v. v. i.
    856
      
    $u https://hdl.handle.net/11104/0335495 $9 RIV
Number of the records: 1  

  This site uses cookies to make them easier to browse. Learn more about how we use cookies.