Magnetic ring sintering process and sintering furnace
A sintering furnace and process technology, applied in the direction of furnace, furnace cooling, charge and other directions, can solve the problems of sintering atmosphere that cannot form a cycle, uneven heating of products, and poor utilization of heat energy, etc., to improve the cooling effect and improve the utilization of heat energy. rate, and the effect of inhibiting high temperature volatilization
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Embodiment 1
[0029] The magnetic ring sintering process of the present embodiment adopts such as Figure 1-5 The vacuum high-temperature bell jar kiln shown is used as a sintering furnace. First, the temperature in the sintering furnace is raised from room temperature to 1350-1400°C at a rate of 1.8-2.0°C / min. During the heating period, the sintering atmosphere of the sintering furnace is controlled in a conventional manner. , the sintering atmosphere is a nitrogen atmosphere with an oxygen content of 0.5%, and then keep it warm for 6-7h. During the cooling period, the sintering atmosphere of the sintering furnace is also controlled in a conventional manner. The sintering atmosphere is still a nitrogen atmosphere with an oxygen content of 0.5%. Finally, the temperature in the sintering furnace is lowered to 300°C in stages to complete the cooling. The cooling rate is 1.25-1.35°C / min.
Embodiment 2
[0031] The magnetic ring sintering process of the present embodiment adopts such as Figure 1-5 The vacuum high-temperature bell jar kiln shown is used as a sintering furnace. First, the temperature in the sintering furnace is raised from room temperature to 1350-1400°C at a rate of 2.0-2.5°C / min. During the heating period, the sintering atmosphere of the sintering furnace is controlled in a conventional manner. , the sintering atmosphere is a nitrogen atmosphere with an oxygen content of 35%, and then keep it warm for 6-7h. During the cooling period, the sintering atmosphere of the sintering furnace is also controlled in a conventional manner. The sintering atmosphere is still a nitrogen atmosphere with an oxygen content of 35%. Finally, the temperature in the sintering furnace is lowered to 300°C in stages to complete the cooling. The cooling rate is 1.35-1.65°C / min.
Embodiment 3
[0033] The magnetic ring sintering process of the present embodiment adopts such as Figure 1-5 The vacuum high-temperature bell jar kiln shown is used as a sintering furnace. First, the temperature in the sintering furnace is raised from room temperature to 1350-1400°C at a rate of 2.0-2.5°C / min. During the heating period, the sintering atmosphere of the sintering furnace is controlled in a conventional manner. , the sintering atmosphere is a nitrogen atmosphere with an oxygen content of 0.5%, and then keep it warm for 6-7 hours. During the cooling period, the sintering atmosphere of the sintering furnace is also controlled in a conventional manner. The sintering atmosphere is still a nitrogen atmosphere with an oxygen content of 35%. Finally, the temperature in the sintering furnace is lowered to 300°C in stages to complete the cooling. The cooling rate is 1.35-1.65°C / min.
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