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Production of Sheet Half-Finished Products out of Titanium with Submicrocrystalline Structure and their Mechanical Properties

机译:用亚微米结构和机械性能生产薄板半成品的薄板半成品

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Processing to manufacture sheet half-finished products with Submicrocrystalline (SMC) structure out of the commercial titanium preforms produced by warm multiple isothermal forging was studied. It is shown that microstructure in performs is a mixed type. Submicron-sized grains and subgrains (0.1 μm), coarse grains (up to 1-2 μm), banded structure are observed. The texture in preforms is weak prominent. They have decreased density and higher strength than that in coarse-grained titanium and lower ductility. For cold rolling of ribbons and foils to prevent fracture, the preforms should be annealed at temperatures of recovery, which restrict grain growth. Ribbons, 0.8 mm in thick, and foils, 0.1 mm in thick, were produced from SMC titanium by rolling and their microstructure and mechanical properties were studied. During rolling the microstructure of ribbons and foils undergoes additional refinement, it becomes homogeneous and a basal type texture is formed. The type of texture does not depend on titanium grain size but in SMC titanium the formation of basal components of texture occurs at less strain. Ribbons and foils from titanium possess excellent mechanical properties, which are not below those of some two-phase titanium alloys.
机译:研究了用潜在的硫化物(SMC)结构制造板半成品的处理,从暖多等温锻造生产的商业钛预制件中。结果表明,执行的微观结构是混合类型。观察亚微米大小的晶粒和粗晶粒(高达1-2μm),带状结构。预制件中的纹理是突出的弱点。它们的密度降低和比粗粒钛的强度更高,延长延展性。对于丝带和箔的冷轧以防止裂缝,预成型件应在回收温度下退火,这限制了晶粒生长。通过轧制通过SMC钛生产厚度,0.8mm,厚度为0.1mm,厚度为0.1mm,并研究了它们的微观结构和机械性能。在滚动带和箔的微观结构期间经历额外的细化,它变成均匀,形成基础型纹理。质地的类型不依赖于钛晶粒尺寸,但在SMC钛中,形成质地的基础组分的形成在较低的菌株下发生。来自钛的丝带和箔具有优异的机械性能,这些性能不低于一些两相钛合金。

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