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Simultaneous Improvement in the Strength and Formability of Commercially Pure Titanium via Twinning-induced Crystallographic Texture Control

机译:通过孪晶诱导的晶体织构控制同时提高商业纯钛的强度和可成型性

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摘要

The rolling texture formed in the conventional cold rolling process of commercially pure titanium (CP-Ti) for producing a metal sheet significantly limits the potential applications of CP-Ti sheets in various industrial sectors by impairing the formability. Here, we report that by exploiting a twinning-induced crystallographic texture modification, the rolling texture can be weakened and dispersed effectively, leading to a simultaneous improvement in the formability and yield strength. A two-stage cold rolling process was designed with intermediate annealing at a late stage of the conventional cold rolling process to generate deformation twins. The intermediate annealing drove the activation of {112¯2} twin and {112¯2} – {101¯2} double twin in the second stage of the rolling process by removing the internal reaction stress developed in the first stage of the rolling process through recrystallization, and the crystallographic feature of the {112¯2} twinned region, i.e., {112¯2} twin texture, was effective for <a> type slips and {101¯2} twinning to accommodate a through-thickness strain as well as for reducing the planar anisotropy. This enhanced thinning capability and reduced planar anisotropy in the {112¯2} twin texture led to an improvement of the formability. We demonstrated the feasibility of the suggested two-stage cold rolling process with ASTM grade 2 CP-Ti.
机译:在用于生产金属板的商业纯钛(CP-Ti)的常规冷轧工艺中形成的轧制织构通过损害可成形性而大大限制了CP-Ti板在各种工业领域的潜在应用。在这里,我们报告说,通过利用孪晶诱导的晶体学织构改性,可以有效地弱化和分散轧制织构,从而同时改善了可成形性和屈服强度。设计了两阶段的冷轧工艺,在常规冷轧工艺的后期进行中间退火,以产生变形孪晶。中间退火驱动了 { 11 2 2 } 双胞胎和 { 11 2 ¯ 2 } { 10 1 2 } 双胞胎在轧制过程的第二阶段通过消除内部反应力在轧制过程的第一阶段通过重结晶而开发,并且 { 11 2 2 } 孪生区域,即 { 11 2 ¯ 2 } 孪生纹理,对于类型传票和 { 10 1 2 } 孪生以适应厚度方向的应变并减小平面各向异性。 { 11 2 2 } 孪生纹理导致可成形性的提高。我们证明了采用ASTM 2级CP-Ti进行建议的两阶段冷轧工艺的可行性。

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