https://scholars.lib.ntu.edu.tw/handle/123456789/425056
Title: | Annealing-induced indentation recovery in thin film metallic glasses: Effects of indenter tip geometry, film thickness and film composition | Authors: | Negussie A.T. Chu J.P. Diyatmika W. Lee C.M. Yu C.-C. Shen Y.L. Hsueh C.H. CHUN-HWAY HSUEH |
Keywords: | Annealing;Film composition;Indenter tip geometry;Thin film metallic glass | Issue Date: | 2015 | Journal Volume: | 261 | Start page/Pages: | 350-355 | Source: | Surface and Coatings Technology | Abstract: | Annealing-induced indentation recovery behaviours of sputtered Zr50Cu28Al14Ni8, Cu48Zr42Al6Ti4, Hf46Cu45Al6Ti3, and Fe65Ti13Co8Ni7B6Nb1 (in at. %) thin film metallic glasses (TFMGs) on silicon substrate are examined. Influences of indenter tip geometry, film thickness and film composition on indentation recovery of TFMGs have been studied. Nanoindentations are performed at room temperature with two three-sided pyramidal indenters (Berkovich and cube-corner), followed by annealing performed within the supercooled liquid temperatures. The results reveal that the extent of recovery of indentation by Berkovich indenter is higher than that of cube-corner owing to higher compressive stress underneath the Berkovich tip and larger radius of curvature of the indent left behind after Berkovich indentation. The numerical modelling of depth profile of Zr-based TFMG shows the blunter the indenter tip is the higher the recovery. The thicker film also shows larger recovery. In addition, because of the difference in bonding force among constituent elements, Zr-based TFMG exhibits larger recovery than Cu-, Hf- and Fe-based TFMGs. ? 2014 Elsevier B.V. |
URI: | https://scholars.lib.ntu.edu.tw/handle/123456789/425056 | ISSN: | 02578972 | DOI: | 10.1016/j.surfcoat.2014.10.068 |
Appears in Collections: | 材料科學與工程學系 |
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