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Effect of mold temperature and casting dimension on microstructure and tensile properties of counter-gravity casting Ti-6Al-4V alloys

机译:模具温度和铸造尺寸对反重力铸造Ti-6Al-4V合金组织和拉伸性能的影响

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The cast Ti-6Al-4V alloy bars with different section sizes were fabricated by investment casting at counter-gravity condition with the mold temperatures of 300 °C and 650 °C, respectively. The microstructure of the alloy was observed by means of OM and SEM, and the effect of mold temperature and casting dimension on tensile properties was studied. Results show that equiaxed grains are obtained regardless of the casting dimension. β grain size tends to increase with an increase in mold temperature. Hot isostatic pressing of the alloy was carried out for tensile properties' comparison. Room temperature tensile test results show that Ti-6Al-4V alloy produced via counter-gravity casting has good balance of strength and ductility after hot isostatic pressing (HIP). The alloy shows higher ductility due to the elimination of porosity. In both cast and HIP status, the tensile strength is inclined to decrease with an increase in mold temperature, while the ductility is prone to slightly increase. Both the strength and ductility tend to decrease with an increase in the casting dimension.
机译:通过分别在300℃和650℃的模具温度下在反重力条件下进行熔模铸造来制造截面尺寸不同的铸造Ti-6Al-4V合金棒。通过OM和SEM观察合金的微观结构,研究了铸型温度和铸件尺寸对拉伸性能的影响。结果表明,与铸件尺寸无关,均获得了等轴晶粒。 β晶粒尺寸随着模具温度的升高趋于增加。对合金进行热等静压以进行拉伸性能比较。室温拉伸试验结果表明,通过反重力铸造生产的Ti-6Al-4V合金在热等静压(HIP)后具有良好的强度和延展性平衡。由于消除了孔隙,该合金显示出更高的延展性。在铸造和HIP状态下,拉伸强度都随着模具温度的升高而降低,而延展性则倾向于略微提高。强度和延展性都倾向于随铸件尺寸的增加而降低。

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