Pipe joint water knockout drum
Technical Field
The utility model relates to a pipe joint water separator, and belongs to the technical field of floor heating equipment.
Background
Because geothermal heating does not occupy space area, is widely applied to thousands of households, and the water separator is a core component of geothermal heating work, and because the water separator of a metal structure is easy to corrode, the pipeline is blocked, and maintenance and even replacement are often required. The inventor applies for various parts of the water separator, and the materials of the parts are hard plastic structures, so that the processing cost is low, the inner wall cannot be corroded, and the service life of the water separator is long.
The main body of the water separator is provided with a plurality of branch structures, and the branches are provided with stop valves for controlling the connection or disconnection of the pipelines. However, the existing water separator body is directly connected with the stop valve, when one stop valve is blocked or damaged, the whole water separator needs to be replaced, so that the replacement cost is high, and the service life is reduced as a whole.
Disclosure of Invention
The technical problem to be solved by the utility model is to provide the tubular joint water separator, wherein the branch pipeline of the tubular joint water separator is directly in a tubular structure, the stop valve is in sealing clamping connection with the branch pipeline, when the stop valve is damaged, the stop valve is only required to be taken down and only required to be replaced, so that the replacement cost is reduced, and the overall service life of the water separator is prolonged.
In order to solve the problems, the pipe joint water separator has the following specific technical scheme that a plurality of branch pipes are arranged at the lower end of a water separator main body, the branch pipes and the water separator main body are of an integrated structure, a spherical stop valve is clamped on each branch pipe in a sealing way, and a geothermal pipe is clamped on the lower end of the spherical stop valve in a sealing way.
The upper and lower parts of the spherical stop valve are respectively provided with a quick connector, the quick connector at the upper end is in sealed connection with the branch pipe, and the quick connector at the lower end is in sealed connection with the geothermal pipe.
The outer circumference of the branch pipeline is provided with an annular groove, a Y-shaped sealing ring and a clamping sleeve are arranged in the quick connector, an expansion groove and rectangular teeth are arranged on the clamping sleeve, one end of the quick connector is in threaded connection with the spherical stop valve, the other end of the quick connector is inserted into the branch pipeline or the geothermal pipeline, and the rectangular teeth are positioned in the annular groove of the branch pipeline.
The lower edge of the annular groove is provided with a downward gradient of 5-10 degrees.
The pipe joint water separator provided by the application has the following advantages that:
1. Because the main body of the water separator is only provided with the branch pipeline, the main body processing of the water separator is simplified, and the processing cost is reduced;
2. the spherical stop valve is independently installed and is respectively clamped with the branch pipeline and the geothermal pipe, so that the maintenance is convenient, and the replacement cost is low if the spherical stop valve is damaged.
Drawings
FIG. 1 is a schematic cross-sectional connection of a pipe joint water separator.
Fig. 2 is an enlarged view of a partial structure of the water separator.
Figure 3 is a schematic cross-sectional view of the ferrule.
Detailed Description
As shown in figures 1 and 2, the pipe joint water separator is characterized in that a plurality of branch pipes 2 are arranged at the lower end of a water separator main body 1, the branch pipes 2 and the water separator main body 1 are of an integrated structure, a spherical stop valve 3 is clamped on each branch pipe 2 in a sealing manner, and a thermal pipeline 4 is clamped at the lower end of the spherical stop valve 3 in a sealing manner.
The upper and lower parts of the spherical stop valve 3 are respectively provided with a quick connector 5, the quick connector 5 at the upper end is in sealed connection with the branch pipe 2, and the quick connector 5 at the lower end is in sealed connection with the geothermal pipe 4. The upper and lower parts of the spherical stop valve 3 are respectively provided with a quick connector 5, so that quick connection with the branch pipeline 2 and the geothermal pipeline 4 is realized, and the disassembly and assembly efficiency is improved.
As shown in figure 3, the clamp sleeve 13 is provided with an expansion groove 14 and rectangular teeth 15, one end of the quick connector 5 is in threaded connection with the spherical stop valve 3, the other end of the quick connector 5 is inserted into the branch pipeline 2 or the geothermal pipeline 4, and the rectangular teeth 15 are positioned in the annular groove 11 of the branch pipeline 2. When the quick connector 5 and the outer shell of the spherical stop valve 3 are continuously screwed in, the expansion groove 14 is formed in the clamping sleeve 13 to be continuously closed, and the expansion groove is pressed on the outer circumference of the branch pipe 2 or the geothermal pipeline 4 through the rectangular teeth 15, so that the locking step is realized, and meanwhile, the sealing performance of the quick connector 5 is improved by utilizing the Y-shaped sealing ring 12 in the quick connector 5. The sleeve structure is disclosed in 2023, 6 and 16 days, patent number 202321539742.2, sleeve of pipe joint for pipe connection and matched lock nut, and the sleeve structure can be tightly clamped with an external pipeline and has better sealing performance.
An annular groove 11 is formed in the outer circumference of the branch pipeline 2, the annular groove 11 is matched with the rectangular teeth 15, and a downward gradient of 5-10 degrees is formed in the lower edge of the annular groove 11. So that the rectangular teeth 15 can be separated along the slope, and the effect of more labor saving in disassembly is achieved.