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Effect of Various Metallurgical Parameters on the Flow and Fracture Behavior ofPolycrystalline NiAl Near the Brittle-to-Ductile Transition

机译:不同冶金参数对脆性 - 韧性转变附近多晶Nial流动和断裂行为的影响

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An investigation of the effect of various metallurgical parameters such asinterfaces, allowing additions, test temperature, and strain rate on the flow and fracture behavior of polycrystalline NiAl is summarized. From this study, a more complete understanding of the deformation and fracture behavior of polycrystalline NiAl near the brittle-to-ductile transition temperature has been developed. A mechanism for the BDTT is proposed that is based on the operation of localized dislocation climb processes that operate within the vicinity of the grain boundaries and provide the additional deformation mechanisms necessary for grain-to-grain compatibility during plastic deformation. Finally, methods for improving the low temperature mechanical behavior of NiAl were considered and reviewed within the context of the present knowledge of NiAl-based materials and the operative deformation and fracture mechanisms determined in this study. Special emphasis was placed on the use of second phases for improving low temperature properties.

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