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Crack-Free Joint in a Ni-Al2O3 FGM System Using Three-Dimensional Modeling

Authors
Park, Jong HaLee, Jae ChulRyu, Sae HeeJung, Kyu BongSong, Han-BokYun, Joon ChulChoa, Yong HoAhn, Sung HoonLee, Caroline Sunyong
Issue Date
Jul-2009
Publisher
Japan Institute of Metals
Keywords
finite element method (FEM); functionally graded material (FGM); linear mixture rule; maximum principal stress theory; Ni-Al2O3 joint; thermal residual stress
Citation
Materials Transactions, v.50, no.7, pp 1875 - 1880
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
Materials Transactions
Volume
50
Number
7
Start Page
1875
End Page
1880
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/41060
DOI
10.2320/matertrans.M2009041
ISSN
1345-9678
1347-5320
Abstract
With the recent emphasis on the importance of successfully joining materials, researchers have tried to join metals and ceramics with different coefficient, of thermal expansion (CTEs) by using the functionally graded material (FGM) method. This involves inserting interlayers with composition gradients that range from one material to the other, thereby minimizing the stress caused by differences in CTE values. In this Study, the FGM that included 10 layers of Ni-Al2O3 with eight inter-layers was studied. Previous studies have focused on controlling the composition of inter-layers and optimizing the dispersion process to prevent cracks. Thermal stress was reduced by varying the weights of the inter-layers and increasing the green-body density by using several powder sizes. The powders were well-dispersed during fabrication by using simultaneous dispersion and dry processes followed by a cold isostatic press (CIP) and pressure-less sintering in an inert atmosphere. As a result, a crack-free Ni-Al2O3 FGM joint was obtained. The residual stress in each layer was calculated to predict cracks using ANSYS simulation and maximum principal stress criterion; experimental values matched simulation results. In addition, an oriented Vickers indentation test was used to assess the quality of the joint. Crack-paths were not deflected across the interface, indicating good bond strength between interfaces. Sample density was measured using the Archimedes method; the sintered joint was less dense than its theoretical density but was denser than the results obtained by using previous methods. [doi:10.2320/matertrans.M2009041]
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