通过TB18钛合金在不同温度和保温时间的条件下β晶粒尺寸的变化,研究了新型超高强TB18钛合金β晶粒的长大行为。结果表明,加热温度及保温时间对TB18钛合金β晶粒长大行为具有重要影响:β晶粒尺寸随加热温度及保温时间的增加而增加,且92...通过TB18钛合金在不同温度和保温时间的条件下β晶粒尺寸的变化,研究了新型超高强TB18钛合金β晶粒的长大行为。结果表明,加热温度及保温时间对TB18钛合金β晶粒长大行为具有重要影响:β晶粒尺寸随加热温度及保温时间的增加而增加,且920℃为合金的粗化温度。通过Beck公式计算了晶粒长大参数,采用Arrhenius公式计算了晶粒长大激活能。TB18钛合金β晶粒长大指数n为0.13~0.26,β晶粒长大激活能为34.27~60.58 k J/mol。展开更多
Isothermal and isochronal annealing was conducted to study the thermal stability of the nanocrystalline in the surface layer of Mg alloy AZ91D induced by high-energy shot peening(HESP) .Field emission scanning electro...Isothermal and isochronal annealing was conducted to study the thermal stability of the nanocrystalline in the surface layer of Mg alloy AZ91D induced by high-energy shot peening(HESP) .Field emission scanning electron microscope(FESEM) and X-ray diffractometer were used to characterize the microstructure.Results showed that nanocrystalline produced by HESP on the surface layer of the magnesium alloy AZ91D was 60-70 nm on average.The nanocrystalline could remain stable at about 100℃,and grew up slowly between 100℃ and 200℃.When the annealing temperature reached 300℃,the growth rate of the nanocrystalline increased significantly.The kinetic coefficient n of the nanocrystalline growth was calculated to be 2-3 and the grain growth activation energy Q=39.7 kJ/mol,far less than the self-diffusion activation energy of magnesium atoms in the coarse polycrystalline material.展开更多
文摘通过TB18钛合金在不同温度和保温时间的条件下β晶粒尺寸的变化,研究了新型超高强TB18钛合金β晶粒的长大行为。结果表明,加热温度及保温时间对TB18钛合金β晶粒长大行为具有重要影响:β晶粒尺寸随加热温度及保温时间的增加而增加,且920℃为合金的粗化温度。通过Beck公式计算了晶粒长大参数,采用Arrhenius公式计算了晶粒长大激活能。TB18钛合金β晶粒长大指数n为0.13~0.26,β晶粒长大激活能为34.27~60.58 k J/mol。
文摘Isothermal and isochronal annealing was conducted to study the thermal stability of the nanocrystalline in the surface layer of Mg alloy AZ91D induced by high-energy shot peening(HESP) .Field emission scanning electron microscope(FESEM) and X-ray diffractometer were used to characterize the microstructure.Results showed that nanocrystalline produced by HESP on the surface layer of the magnesium alloy AZ91D was 60-70 nm on average.The nanocrystalline could remain stable at about 100℃,and grew up slowly between 100℃ and 200℃.When the annealing temperature reached 300℃,the growth rate of the nanocrystalline increased significantly.The kinetic coefficient n of the nanocrystalline growth was calculated to be 2-3 and the grain growth activation energy Q=39.7 kJ/mol,far less than the self-diffusion activation energy of magnesium atoms in the coarse polycrystalline material.