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Microstructure Evolution of Pure Nickel up to a High Strain Level during Equal-Channel Angular Pressing

机译:等通道角挤压过程中高应变水平纯镍组织的演变

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Nickel of 99.5% purity, with an initial grain size of ~ 23 μm, was subjeeted to equal-channel angular pressing (ECAP) up to a strain of ~ 12 at room temperature via route Be. Mechanical properties and microstructures are investigated by tensile tests, microhardness tests, TEM, and EBSD observations. Results of mechanical properties show that yield strength and tensile strength increase as strain increase up to a max value(σ_s~ l009 MPa, σ_b~ 1120 MPa) at ε~8, and microhardness reaches its maximum of~370HV after 12 passes. Analysis by TEM showed that grain size of pure nickel was severely refined from ~23 μm to several hundreds of nanometers after ECAP processing. Initial coarse grain are divided with lamellar boundaries and dislocation cell structures at low strain level, there has resulted in a homogenous and fine spacing of lamellar boundaries (~100 nm) after 4 passes of ECAP, low angle characters of those boundaries are revealed from corresponding SAED pattern; equiaxed grains of diameter with ~98 nm come out among lamellar boundaries after 12 passes.
机译:纯度为99.5%的镍,其初始晶粒尺寸约为23μm,在室温下通过路径Be进行等通道角挤压(ECAP)加工,直至应变达到〜12。通过拉伸试验,显微硬度试验,TEM和EBSD观察来研究机械性能和微观结构。力学性能结果表明,随着应变的增加,屈服强度和拉伸强度在ε〜8时达到最大值(σ_s〜l009 MPa,σ_b〜1120 MPa),并且在12次通过后显微硬度达到最大值〜370HV。 TEM分析表明,ECAP处理后,纯镍的晶粒尺寸从约23μm严重细化到数百纳米。初始粗晶粒在低应变水平下被层状边界和位错单元结构所分割,在经过4次ECAP后,层状边界的间距均匀且均匀(〜100 nm),这些边界的低角度特征从对应SAED模式;经过12次通过后,在层状边界之间出现了直径约〜98 nm的等轴晶粒。

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