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High Strain Deformation Processing of Ni-W Alloys

机译:Ni-W合金的高应变变形加工

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This paper discusses the potential of Ni-W alloys of differing initial microstructures, for high-strain cold deformation processing, and thus their suitability for development as heavily deformed, high strength in situ composites. Varying initial phase morphologies and tungsten volume fractions were produced by variations in initial processing. Liquid-phase sintered structures, containing 48 vol.% W, can be cold rolled to true strains of 2.4. They presumably could be cold worked further, but size limitations imposed by our processing capability prevented that being done in this study, Likewise, low volume fraction (of less than 15 vol.%) tungsten alloys, produced by casting of a hypoeutectic nickel-rich alloy and by transient liquid-phase sintered Ni-W structure. In contrast, as-cast arc melted alloys cannot be cold drawn to any extent at room temperature. They can not be made capable of limited drawability by subjecting them to a coarsening heat treatment, which also spheroidizes eutectic tungsten to some extent, prior to cold working.

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