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Combined Effects Of Grain Size And Recrystallization On The Tensile Properties Of Cryorolled Pure Vanadium

机译:晶粒尺寸和重结晶对低温冷轧纯钒拉伸性能的综合影响

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摘要

The effects of grain size and recrystallization on the tensile behavior of cryorolled pure vanadium were investigated. During equal channel angular pressing, the grain size was reduced from 100 μm to 0.2 μm in lamellar thickness; it was further reduced to 0.14 μm by an additional 60% cryorolling. The grain refinement was accompanied by enhancing the yield strength by 30%. Upon annealing, the cryorolled vanadium showed a gradual decrease of yield strength with increasing grain size, in accordance with the Hall-Petch (H-P) relation. The yield strengths of the unrecrystallized vanadium, however, were higher by about 50 MPa, than those expected by extrapolation of the Hall-Petch relation determined from the recrystal-lized samples. In the recrystallized condition, the tensile ductility of vanadium decreased gradually with a decrease in grain size to 1 μm, but further reduction in grain size had little influence on ductility. The insensitivity of ductility to the grain size below 1 μm apparently resulted from the counter-balancing effects of the reduced hardening capacity and increased hardening sources.
机译:研究了晶粒尺寸和重结晶对冷轧纯钒的拉伸行为的影响。在等通道角挤压过程中,片状厚度的晶粒尺寸从100μm减小到0.2μm;通过额外的60%低温冷轧将其进一步减小至0.14μm。晶粒细化的同时,屈服强度提高了30%。退火后,根据霍尔-Petch(H-P)关系,低温轧制钒显示出屈服强度随晶粒尺寸的增加而逐渐降低。然而,未重结晶的钒的屈服强度比根据由重结晶的样品确定的霍尔-普奇关系的外推法所期望的屈服强度高约50 MPa。在再结晶条件下,钒的拉伸延展性随着晶粒尺寸的减小而逐渐降低至1μm,但是晶粒尺寸的进一步减小对延展性的影响很小。延展性对小于1μm的晶粒的不敏感性显然是由于降低的硬化能力和增加的硬化源而产生的平衡效应。

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