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A study on the micromechanical behavior of Ti-55531 titanium alloy with lamellar microstructure by in-situ neutron diffraction

机译:用原位中子衍射与层状微观结构的Ti-55531钛合金微机械行为研究

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High strength titanium alloys are promising materials for heavy component parts in the aviation industry. The limited combination of strength and ductility requires an understanding of deformation and stress partitioning between constituent phases. The micromechanical behaviors of Ti-55531 titanium alloy with lamellar microstructure are investigated by in-situ neutron diffraction. The phase strain and lattice strain evolution of α and β phase at loading direction and transverse direction are determined. The results show that the micromechanical behaviors of oriented grains of α and β phase are obriously different. Furthermore, the stress partitioning between α and β phase during the deformation is clearly illustrated. It is found that the β matrix is subjected to higher stress than α precipitates. In addition, the intergranular and interphase microstress is quantitatively characterized. It is found that the intergranular microstress in the β phase grains is predominant among these microstresses. Combining the in-situ neutrou diffraction with microstructure characterization, the present work provides a guide for further microstructure optimization.
机译:高强度钛合金是航空工业中重型部件的有希望的材料。强度和延展性的有限组合需要了解构成阶段之间的变形和应力分配。通过原位中子衍射研究了Ti-55531钛合金与层状微观结构的微机械行为。确定了α和β相时α和β相的相应变和晶格应变的演变。结果表明,α和β相的定向晶粒的微机械行为对令人惊讶不同。此外,清楚地说明了变形期间的α和β相之间的应力分配。发现β基质受到比α沉淀物更高的应力。另外,具有定量表征晶间和间间微型结构。发现β相晶粒中的晶间微长长在这些微粒中是主要的。结合原位中非源衍射与微观结构表征,本作者提供了用于进一步微观结构优化的指南。

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