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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >The effect of prior annealing on high temperature flow properties of and microstructural evolution in SPF grade IN718 superalloy
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The effect of prior annealing on high temperature flow properties of and microstructural evolution in SPF grade IN718 superalloy

机译:预先退火对SPF级IN718高温合金高温流动性能和组织演变的影响

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High temperature flow properties of superplastic forming grade IN718 superalloy, annealed at 1198-1273 K for 15 min-5 h, were investigated. Tensile specimens of grain sizes (d_o) 2.9-16.9 μm were deformed at constant strain rate of 5 x 10~(-5) s~(-1) and by differential strain rate test technique over the strain rate range of ~2.5 x 10~(-6) to 3 x 10~(-2) s~(-1) at 1198 K. The stress-strain curves exhibited flow hardening followed by flow softening. While tensile ductility was found to increase the peak stress generally decreased with the decrease in grain size. Flow hardening was attributed to concomitant grain growth in the fine-grained (d_o = 2.9-4.3 μm) samples and to deformation-induced precipitation in the coarse grained (d_o = 16.9 μm) sample. The occurrence of flow softening, in these two cases, was due to cavitation and precipitate coarsening. log(stress)-log(strain rate) curves delineated superplastic behavior with strain rate sensitivity index (m) ~0.7 and the maximum ductility was found to be 579%. However, the higher strain rates and coarser grains led to a loss of superplasticity, with m ≈ 0.2.
机译:研究了在1198-1273 K退火15 min-5 h的超塑性成形等级IN718高温合金的高温流动性能。晶粒尺寸(d_o)2.9-16.9μm的拉伸试样在5 x 10〜(-5)s〜(-1)的恒定应变率下并通过微分应变率测试技术在约2.5 x 10的应变率范围内变形在1198 K时为〜(-6)到3 x 10〜(-2)s〜(-1)。应力-应变曲线显示出流动硬化,然后流动软化。虽然发现拉伸延展性增加,但峰值应力通常随晶粒尺寸的减小而减小。流动硬化归因于细颗粒(d_o = 2.9-4.3μm)样品中晶粒的伴随增长,以及粗颗粒(d_o = 16.9μm)样品中变形引起的沉淀。在这两种情况下,流软化的发生是由于空化和沉淀物变粗。对数(应力)-对数(应变率)曲线描绘了超塑性行为,应变率敏感性指数(m)〜0.7,最大延展性为579%。然而,较高的应变率和较粗的晶粒导致超塑性的损失,m≈0.2。

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