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Effect of Volume Fraction and Size of Fine-Gamma Prime Particles on Raising the Creep Strength of a Ds Nickel-Base Superalloy

机译:细粒γ粒子体积分数和粒径对提高Ds镍基高温合金蠕变强度的影响

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The creep behavior of a directionally solidifified nickel-base superalloy, DKS3, has been investigated as a function of the volume fraction and size of the gamma-prime phase at 760 and 950 C. The dislocation structure and morphology of gamma-prime was examined by transmission electron microscopy at the primary, secondary and tertiary creep stages at 73.8 kgf/sq mm. Experimental results are described in terms of a high temperature creep model in the range of temperatures and applied stresses where shearing of the gamma-prime phase does not control the straining process.

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