Instant opening device for molten liquid in high-temperature high-pressure container
A high-temperature and high-pressure, open-device technology, applied in pressure vessels, gas/liquid distribution and storage, fixed-capacity gas storage tanks, etc., can solve problems such as difficulty in controlling heat preservation time, and the performance of high temperature and high pressure resistance needs to be improved, and achieves good application status. , Control the heat preservation time, the effect of good heat preservation time
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specific Embodiment approach 1
[0023] Specific Embodiment 1: The instant opening device for the molten liquid in the high-temperature and high-pressure container of this embodiment includes a reactor 1, a tablet 4, a nozzle 5, a nozzle bracket 6, a sealing pretensioner 8, an upper slide 10, a lower slide 11 and a drag The device 9 is provided with two-stage stepped circular holes along the thickness direction of the bottom of the reactor 1, the first stepped circular hole 2 is located on the upper part of the second stepped circular hole 3 and the diameter of the first stepped circular hole 2 is larger than the second stepped circular hole 3 in diameter;
[0024] The nozzle bracket 6 is composed of a disc-shaped frame body part 6-1 and a cylindrical part 6-2 to form a coaxial integrated structure, and an insertion hole 6-3 is opened along the central axis of the nozzle bracket 6, and the end surface of the cylindrical part 6-2 There is a ring groove 6-4, the nozzle bracket 6 is inserted into the two-stage s...
specific Embodiment approach 2
[0029] Specific embodiment two: the difference between this embodiment and specific embodiment one is that the material of the nozzle 5 is graphite, W, graphite / Cu (graphite copper infiltration), W / Cu (tungsten copper infiltration), C / C, HfB 2 Ultra-high temperature ceramics, ZrB 2 Ultra-high temperature ceramics, TaB 2 Ultra-high temperature ceramics, TiB 2 Ultra-high temperature ceramics, ZrC ultra-high temperature ceramics, HfC ultra-high temperature ceramics, TaC ultra-high temperature ceramics or TiC ultra-high temperature ceramics.
[0030] Each part of the nozzle in this embodiment can be made of different materials.
specific Embodiment approach 3
[0031] Specific embodiment three: the difference between this embodiment and specific embodiment one or two is that the lower surface of the disc-shaped frame body part 6-1 of the nozzle holder 6 has a sealing ring groove, and a first sealing ring groove is arranged in the sealing ring groove. Circle 7.
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