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Microstructural manipulation and improved mechanical properties of a near a titanium alloy

机译:钛合金附近的显微组织处理和改善的机械性能

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摘要

In this study, a newly developed near a titanium alloy with a typical Widmannstatten as-cast microstructure was subjected to isothermal multidirectional forging (IMDF) at 15 degrees C below beta transus temperature. Microstructural observations reveal that the prior beta grain boundaries disappeared and alpha laths transformed into spheroids gradually with increasing the IMDF pass. Ultrafine alpha grains with an average grain size of 1.57 mu m was achieved after four-pass IMDF. Microstructural homogeneity was enhanced and the fraction of recrystallized grains increased remarkably with increasing IMDF pass. The spheroidization process of alpha laths is a result of the recrystallization during IMDF, including the dissociation of alpha laths and the migration of subgrains. Compared to the as-cast titanium alloy, both the tensile strength and elongation to failure at room temperature were improved, which is primarily attributed to the microstructure refinement and spheroidization of alpha laths. In addition to grain refinement, dislocation hardening and substructure strengthening are also the critical mechanisms for the increased strength observed in the samples after IMDP.
机译:在这项研究中,一种新近开发的具有典型Widmannstatten铸态显微组织的钛合金在低于β转变温度15摄氏度的条件下进行了等温多向锻造(IMDF)。显微组织观察表明,随着IMDF通过量的增加,先前的β晶界消失,α条带逐渐转变为球体。经过四道次IMDF后,获得了平均晶粒尺寸为1.57微米的超细α晶粒。随着IMDF通过量的增加,显微组织的均匀性得到提高,重结晶晶粒的比例显着增加。 α条带的球化过程是IMDF期间重结晶的结果,包括α条带的解离和亚晶粒的迁移。与铸态钛合金相比,室温下的拉伸强度和断裂伸长率均得到了改善,这主要归因于α板条的组织细化和球化。除了晶粒细化之外,位错硬化和亚结构强化也是IMDP后样品中观察到的强度增加的关键机制。

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