Rapid preparation method of LaB6 polycrystalline bulk cathode material
A cathode material and crystal block technology, which is applied in the field of rare earth boride cathode materials, can solve the problems of poor product mechanical properties and emission properties, unfavorable large-scale industrial production and application, complex nano powder preparation process, etc. Effects of industrial production, improved mechanical and emission properties, and short sintering time
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Embodiment 1
[0013] LaB 6 The powder is put into a graphite mold, pressurized and compacted, and put into an SPS sintering furnace for sintering. The sintering process is: the axial pressure is 30MPa, the atmosphere is high-purity argon (purity 99.999%), and the heating rate is 90°C / min. The temperature is raised at a high speed, the sintering temperature is 1400°C, the holding time is 20min, and it is cooled to room temperature with the furnace to obtain LaB 6 polycrystalline block.
[0014] From figure 1 It can be seen that the sintered body crystallizes well and is LaB 6 single-phase structure. From figure 2 It can be seen that LaB 6 The grains are uniform, and the fracture mode of the sample is transgranular fracture, which helps to increase the flexural strength of the sample. The relative density of the sample reaches 90.5%, and the Vickers hardness reaches 1548kg / mm 2 , the bending strength reaches 167.4MPa. The emission current density of the sample reaches 16.40A / cm at 15...
Embodiment 2
[0016] LaB 6 The powder is put into a graphite mold, pressurized and compacted, and then put into an SPS sintering furnace for sintering. The sintering process is: axial pressure 40MPa, the atmosphere is high-purity argon (purity 99.999%), and the heating rate is 150°C / min. Speed up the temperature, the sintering temperature is 1500°C, the holding time is 10min, and it is cooled to room temperature with the furnace to obtain LaB 6 polycrystalline block.
[0017] LaB 6 The polycrystalline block was analyzed as LaB by X-ray diffraction 6 single-phase structure. The relative density of the sample reaches 92.6%, and the Vickers hardness reaches 1580kg / mm 2 , the bending strength reaches 195.6MPa. The emission current density of the sample reaches 16.63A / cm at 1520°C 2 , the work function is 2.40eV.
Embodiment 3
[0019] LaB 6 The powder is put into a graphite mold, pressurized and compacted, and put into an SPS sintering furnace for sintering. The sintering process is: axial pressure 50MPa, vacuuming to 5Pa, heating at a heating rate of 200°C / min, and a sintering temperature of 1700 ℃, the holding time is 5min, and the furnace is cooled to room temperature to obtain LaB 6 polycrystalline block.
[0020] LaB 6 The polycrystalline block was analyzed as LaB by X-ray diffraction 6 single-phase structure. The relative density of the sample reaches 96.5%, and the Vickers hardness reaches 1720kg / mm 2 , the bending strength reaches 203.2MPa. The emission current density of the sample reaches 16.98A / cm at 1520°C 2 , the work function is 2.40eV.
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