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- W2275197230 abstract "Functionally graded materials (FGMs) are microscopically inhomogeneous commonly manufactured from a blend of metals and ceramics with continuous composition gradation from pure ceramic on one surface to pure metal on the other surface. Dissimilar to fibermatrix composites, where cracking and debonding may take place at high temperatures due to the material properties mismatch at the interface of two discrete materials, the ceramic constituents of FGMs are capable of withstanding high temperature environments because of their better thermal resistance characteristics, while the metal constituents provide stronger mechanical performance and decrease the possibility of catastrophic fracture. FGMs are now developed for general use as structural components in high-temperature environments and high temperature changes [1]. Due to their special benefits of being able to withstand hightemperature environments while maintaining structural integrity, FGMs, whose material properties vary uniformly and continuously from one surface to the other by gradually varying the volume fraction of their constituent materials, have received substantial attention in various industries, particularly in high-temperature applications [2]. Shahsiah and Eslami [3] analyzed the thermal buckling of FGM cylindrical shell. The same authors [4] utilized the improved Donnell equations for the thermal instability analysis of * Postgraduate Student, Mechanical Engineering Department, I. A. U., South Tehran Branch, Tehran † Corresponding Author, Professor, Mechanical Engineering Department, Amirkabir University of Technology, Tehran, eslami@aut.ac.ir A. Hafezalkotob Postgraduate Student" @default.
- W2275197230 created "2016-06-24" @default.
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- W2275197230 date "2010-09-01" @default.
- W2275197230 modified "2023-09-26" @default.
- W2275197230 title "THERMOMECHANICAL BUCKLING OF SIMPLY SUPPORTED SHALLOW FGM SPHERICAL SHELLS WITH TEMPERATURE-DEPENDENT MATERIAL" @default.
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