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Microstructures and mechanical deformation behaviors of ultrafine-grained commercial pure (grade 3) Ti processed by two-step severe plastic deformation

机译:经两步剧烈塑性变形处理的超细晶粒商业纯(3级)Ti的组织和力学变形行为

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摘要

Ultrafine-grained (UFG) commercial pure (CP, grade 3) Ti was produced using two-step severe plastic deformation, eight passes equal channel angular extrusion (ECAE) and cold rolling (CR) at liquid nitrogen temperature (LNT). Microstructural evolution and mechanical behaviors of UFG CP-Ti have been systematically investigated. After eight passes ECAE, the grain size was refined to sub-micron scale, smaller than 0.5 μm. Subsequent CR at LNT or RT for both UFG and coarse-grained (CG) specimens led to further refinement of structure, dramatically intensifying (0002) peak, and the preferred orientation along the (0002) crystal plane is formed at the expense of other crystal plane. After eight passes ECAE and CR at LNT, the ultimate tensile strength of UFG CP-Ti (grade 3) is 1218 MPa, and an elongation of 12.6%. Strain hardening behaviors of UFG CP-Ti (grade 3) during tensile deformation at RT have been analyzed.
机译:使用两步剧烈塑性变形,八道次等通道角挤压(ECAE)和液氮温度(LNT)的冷轧(CR)生产超细晶粒(UFG)商业纯钛(CP,3级)Ti。 UFG CP-Ti的组织演变和力学行为已得到系统研究。经过八次ECAE处理后,晶粒尺寸被细化至亚微米级,小于0.5μm。 UFG和粗颗粒(CG)样品在LNT或RT处的随后CR导致结构的进一步细化,极大地增强了(0002)峰,并沿着(0002)晶面形成了首选取向,但其他晶体却以牺牲为代价飞机。在LNT处通过ECAE和CR八次后,UFG CP-Ti(3级)的极限抗拉强度为1218 MPa,伸长率为12.6%。分析了UFG CP-Ti(3级)在室温拉伸变形过程中的应变硬化行为。

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