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Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test
The AlON transparent ceramic cantilever beams containing twin and grain boundaries were fabricated by focused ion beam (FIB) technique. The deformation behaviors were investigated by measurement of the load and displacement dependence of cantilever beams from micro bending tests. Young’s modulus of...
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Main Authors: | , , , , , , , , , |
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Format: | Default Article |
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2019
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Online Access: | https://hdl.handle.net/2134/37931 |
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author | Maomao Ding Stuart Robertson Tun Wang Lingcong Fan Zehan Sun Benjamin Maerz Robert Crookes Jianjun Xie Ying Shi Houzheng Wu |
author_facet | Maomao Ding Stuart Robertson Tun Wang Lingcong Fan Zehan Sun Benjamin Maerz Robert Crookes Jianjun Xie Ying Shi Houzheng Wu |
author_sort | Maomao Ding (7126865) |
collection | Figshare |
description | The AlON transparent ceramic cantilever beams containing twin and grain boundaries were fabricated by focused ion beam (FIB) technique. The deformation behaviors were investigated by measurement of the load and displacement dependence of cantilever beams from micro bending tests. Young’s modulus of AlON transparent ceramics was calculated from load and displacement curves, the results of which were consistent with results of previous works. Moreover, the bonding strengths of twin lamella boundary, twin boundary and normal grain boundary in AlON transparent ceramics were 5.00 GPa, 5.05 GPa and 4.81 GPa respectively. |
format | Default Article |
id | rr-article-9236795 |
institution | Loughborough University |
publishDate | 2019 |
record_format | Figshare |
spelling | rr-article-92367952019-05-29T00:00:00Z Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test Maomao Ding (7126865) Stuart Robertson (5731799) Tun Wang (5019287) Lingcong Fan (7126868) Zehan Sun (7126871) Benjamin Maerz (2567320) Robert Crookes (7126433) Jianjun Xie (518895) Ying Shi (115282) Houzheng Wu (1258329) Materials engineering not elsewhere classified Mechanical engineering not elsewhere classified AlON Cantilever Grain boundaries Mechanical properties Materials Engineering not elsewhere classified Mechanical Engineering The AlON transparent ceramic cantilever beams containing twin and grain boundaries were fabricated by focused ion beam (FIB) technique. The deformation behaviors were investigated by measurement of the load and displacement dependence of cantilever beams from micro bending tests. Young’s modulus of AlON transparent ceramics was calculated from load and displacement curves, the results of which were consistent with results of previous works. Moreover, the bonding strengths of twin lamella boundary, twin boundary and normal grain boundary in AlON transparent ceramics were 5.00 GPa, 5.05 GPa and 4.81 GPa respectively. 2019-05-29T00:00:00Z Text Journal contribution 2134/37931 https://figshare.com/articles/journal_contribution/Characterization_of_micro_mechanical_properties_of_AlON_ceramic_by_cantilever_bending_test/9236795 CC BY-NC-ND 4.0 |
spellingShingle | Materials engineering not elsewhere classified Mechanical engineering not elsewhere classified AlON Cantilever Grain boundaries Mechanical properties Materials Engineering not elsewhere classified Mechanical Engineering Maomao Ding Stuart Robertson Tun Wang Lingcong Fan Zehan Sun Benjamin Maerz Robert Crookes Jianjun Xie Ying Shi Houzheng Wu Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test |
title | Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test |
title_full | Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test |
title_fullStr | Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test |
title_full_unstemmed | Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test |
title_short | Characterization of micro‐mechanical properties of AlON ceramic by cantilever bending test |
title_sort | characterization of micro‐mechanical properties of alon ceramic by cantilever bending test |
topic | Materials engineering not elsewhere classified Mechanical engineering not elsewhere classified AlON Cantilever Grain boundaries Mechanical properties Materials Engineering not elsewhere classified Mechanical Engineering |
url | https://hdl.handle.net/2134/37931 |