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Microstructure and Properties of Low Cost TC4 Titanium Alloy Plate

机译:低成本TC4钛合金板的组织和性能

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The changing law of microstructure and mechanical properties of low cost TC4 titanium alloy during deformation and annealing was investigated. The results show that the coarse cast dendritic structure of slab is broken to form rod-like or equiaxial α+β transformed microstructure by rolling deformation. After annealing, the microstructure of plate becomes uniform, moreover, the flake secondary α separates out and the amount of primary α phase decreases with the increase of annealing temperature and gradually tends to equiaxization. The tensile strength and ductility of plate show an increased tendency with deforming. When annealing temperature increases, the tensile strength firstly increases, and then reaches the maximum value at 820 °C, after that, it gradually decreases. The yield strength and reduction of area show decreasing trend as a whole, but the elongation has a little change. The plate has preferable matching of strength and ductile after annealing treatment at 750~820 °C for 1h in air.
机译:研究了低成本TC4钛合金变形和退火过程中组织和力学性能的变化规律。结果表明,板坯的粗铸枝晶组织通过轧制变形而破裂,形成棒状或等轴相的α+β相变组织。退火后,板的显微组织变得均匀,而且,片状次生α析出,且随着退火温度的升高,初生α相的数量减少,并逐渐趋于等轴化。板的拉伸强度和延展性显示出随变形增加的趋势。当退火温度升高时,抗张强度先升高,然后在820°C达到最大值,然后逐渐降低。屈服强度和面积减小总体上呈下降趋势,但伸长率变化不大。该板在750〜820°C的空气中退火1h后,具有较好的强度和延展性。

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