Anti-freezing device for double-pipe heat exchanger and manufacturing method of anti-freezing device
A technology of an antifreeze device and a manufacturing method, which is applied in the directions of heat exchange equipment safety device, heat exchanger type, indirect heat exchanger, etc. Precise installation, good air-tightness and water-tightness
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Embodiment 1
[0040] Such as figure 1 , an anti-freezing device for a casing heat exchanger includes an inner pipe 1 and an outer casing 2, wherein the casing heat exchanger is composed of a concentric inner pipe 1 and an outer casing 2, and the fluids in the inner pipe are respectively The inner tube 1 is a water pipe filled with water, the outer tube 2 is a fluorine tube, and the annulus between the inner tube and the outer tube is filled with fluorine.
[0041] Such as figure 2 Several inflatable elastic balls 3 are arranged at equal intervals inside the inner tube 1 shown. In this embodiment, an inflatable elastic ball 3 is provided for every quarter of the coil distance. The diameter of the inflatable elastic ball 3 described in the rubber ball is half the diameter of the inner tube of the casing heat exchanger. It is butyl rubber. Butyl rubber is a kind of synthetic rubber synthesized from isobutylene and a small amount of isoprene. It has good chemical stability and thermal stabil...
Embodiment 2
[0053] Embodiment 2 is basically the same as Embodiment 1, except that the total volume of the inflatable elastic ball 3 is different. Optimizing because it needs to obtain the best and most stable volume, it is calculated that the volume of the water body actually increases when it freezes, so that the total volume requirement of the inflatable elastic ball 3 can be calculated according to the pressure difference between the inside and outside of the pressure, according to the inflation elasticity The formula for calculating the volume of ball 3 is as follows:
[0054] V = C × e 1 - 1 + P 1 1 + P 2
[0055] The inflation press...
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