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Mechanical Properties Anisotropy of Isothermally Forged and Precipitation Hardened Inconel 718 Disk

机译:等温锻造和沉淀硬化的Inconel 718盘的力学性能各向异性

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The present work describes the tensile and cyclic flow behavior of the as-received disk of Inconel 718 in solution treated and precipitation hardened condition at different locations and orientations. The disk shows moderately high values of anisotropy index indicating significant difference in uniform true strain along radial and tangential orientations. The tensile true stress–plastic strain curves exhibit two slopes defined by Ludwigson relation [( sigma = K_{1} varepsilon^{{n_{1} }} + exp (K_{2} + n_{2} varepsilon ) )]. The low-strain regime during tensile test is associated with low-strain localization between broad annealing twins and slips, while high-strain regime is related to the presence of large volume fraction of deformation twins and high-strain localization between narrow deformation twins. It appears that both the γ′ and γ″ play a critical role during low deformation regime while the role of γ″ precipitates becomes significant in high-strain regime. The stabilized cyclic true stress–plastic strain curves follow Ludwik relationship (σ = Kε n ) similar to that of high-strain regime of two-slope tensile curves. The true stress–strain curves show softening during cyclic test in comparison to that of monotonic condition and are independent of sample orientations and locations. The lower degree of cyclic softening associated with radial-oriented sample can be attributed to the alignment of δ-phase precipitates normal to the loading direction. The low ductility and low work-hardening exponent of radial-oriented sample in web region have been explained based on the dislocation storage capacity and dynamic recovery coefficient using Kock–Mecking–Estrin analysis.
机译:本工作描述了Inconel 718的原样圆盘在固溶处理和沉淀硬化条件下在不同位置和方向的拉伸和循环流动行为。圆盘显示出适度的各向异性指数值,表明沿径向和切线方向的均匀真实应变存在显着差异。拉伸真实应力-塑性应变曲线表现出两个由Ludwigson关系定义的斜率[(sigma = K_ {1} varepsilon ^ {{{n_ {1}}} + exp(K_ {2} + n_ {2} varepsilon))]。拉伸试验中的低应变状态与宽退火孪晶和滑动之间的低应变局部化有关,而高应变状态与变形孪生的大体积分数的存在和窄变形孪生之间的高应变局部化有关。似乎在低变形状态下γ'和γ''都起着关键作用,而在高应变状态下γ''析出物的作用变得显着。稳定的循环真实应力-塑性应变曲线遵循Ludwik关系(σ=Kεn),类似于高应力状态的两坡度拉伸曲线。与单调条件相比,真实的应力-应变曲线在循环测试期间显示出软化,并且与样品的方向和位置无关。与径向取向的样品相关的循环软化程度较低,可以归因于垂直于加载方向的δ相析出物的排列。基于位错存储量和动态回复系数,使用Kock-Mecking-Estrin分析解释了网状区域中径向取向样品的低延展性和低加工硬化指数。

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    《Metallurgical and Materials Transactions A》 |2015年第3期|1140-1153|共14页
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    RDAQA (M) c/o Defence Research and Development Organisation">(1);

    RDAQA (M) c/o Defence Research and Development Organisation">(1);

    Defence Metallurgical Research Laboratory">(2);

    Department of Metallurgical Engineering Jawaharlal Nehru Technological University">(3);

    Defence Metallurgical Research Laboratory">(2);

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