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- W1978296072 abstract "Metal/intermetallic layered composites were formed by a process recently developed in which a self-propagating, high-temperature synthesis reaction was initiated at the interface between dissimilar metal foils. After the reaction, one of the metal foils was entirely consumed, resulting in a metal/intermetallic laminar composite. This study details the tensile fracture characteristics of these unique composites. Fracture mechanism and failure energy were controlled by varying the intermetallic-to-metal volume ratio. Failure initiated with the formation of cracks in the intermetallic layer. For high intermetallic-to-metal ratios, the intermetallic crack release energy was too great to prevent cracks from propagating through the metal layer and propagating the crack into the adjacent intermetallic layers, leading to a fast, low energy fracture. For lower intermetallic-to-metal ratios, the metal layers adsorbed the intermetallic crack release energy and blunted the propagating crack. Final failure resulted by ductile fracture of the metal layer after extensive intermetallic cracking." @default.
- W1978296072 created "2016-06-24" @default.
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- W1978296072 date "1995-01-01" @default.
- W1978296072 modified "2023-10-16" @default.
- W1978296072 title "Fracture characteristics of metal/intermetallic laminar composites produced by reaction sintering and hot pressing" @default.
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- W1978296072 doi "https://doi.org/10.1016/0266-3538(95)00072-0" @default.
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