Hybrid graded element model for transient heat conduction in functionally graded materials |
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Authors: | Lei-Lei Cao Qing-Hua Qin Ning Zhao |
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Affiliation: | 1. Key Laboratory for Road Construction Technology & Equipment of MOE, Chang??an University, 710064, Xi??an, China 2. Research School of Engineering, Australian National University, Canberra, ACT, 0200, Australia 3. School of Mechatronics, Northwestern Polytechnical University, 710072, Xi??an, China
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Abstract: | This paper presents a hybrid graded element model for the transient heat conduction problem in functionally graded materials (FGMs). First, a Laplace transform approach is used to handle the time variable. Then, a fundamental solution in Laplace space for FGMs is constructed. Next, a hybrid graded element is formulated based on the obtained fundamental solution and a frame field. As a result, the graded properties of FGMs are naturally reflected by using the fundamental solution to interpolate the intra-element field. Further, Stefest’s algorithm is employed to convert the results in Laplace space back into the time-space domain. Finally, the performance of the proposed method is assessed by several benchmark examples. The results demonstrate well the efficiency and accuracy of the proposed method. |
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Keywords: | Graded element model · Functionally graded materials · Hybrid FEM · Transient heat conduction |
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