CN219829635U - Novel floor heating pipeline washs device - Google Patents

Novel floor heating pipeline washs device Download PDF

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Publication number
CN219829635U
CN219829635U CN202320618157.5U CN202320618157U CN219829635U CN 219829635 U CN219829635 U CN 219829635U CN 202320618157 U CN202320618157 U CN 202320618157U CN 219829635 U CN219829635 U CN 219829635U
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floor heating
heating pipeline
steel ball
water diversion
sponge
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CN202320618157.5U
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Chinese (zh)
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刘志勇
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Individual
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Individual
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Abstract

The utility model relates to the technical field of floor heating pipeline cleaning, and particularly discloses a novel floor heating pipeline cleaning device which comprises a sponge steel ball, a sponge steel ball ejector and a plurality of inclined tee joints arranged at the inlet and outlet positions of the floor heating pipeline, wherein a first outlet of each inclined tee joint is connected with a first water diversion port and a second water diversion port respectively, output ends of the first water diversion port and the second water diversion port are connected with a first water diversion device and a second water diversion device respectively, output ends of the first water diversion device and the second water diversion device are connected with a geothermal pipe, a second outlet of each inclined tee joint is connected with a sewage draining pipe and a sponge steel ball collector.

Description

Novel floor heating pipeline washs device
Technical Field
The utility model relates to the technical field of floor heating pipeline cleaning, and particularly discloses a novel floor heating pipeline cleaning device.
Background
The floor heating pipeline is commonly used in northern cities and is used for realizing house heat preservation, the working principle of the floor heating pipeline is that hot water flows, heat is driven to flow, and then house heat preservation is realized, so that geothermal heating is widely adopted by modern buildings because of a plurality of advantages, but scaling and accumulation are easy to occur on the inner wall of the floor heating pipeline after the floor heating pipeline is used for 2-3 years, so that water flow is insufficient, heat dissipation is insufficient, and heating effect is affected. Therefore, the floor heating pipe should be cleaned and maintained after 2-3 years of use. At present, floor heating cleaning technologies appearing in the market mainly have two kinds: a small sponge ball is driven into a floor heating pipeline by an air pump so as to achieve the purpose of cleaning sundries on the wall of a friction pipe. The defects of the method are as follows: the operation is complicated, the sponge ball can not necessarily flow smoothly to the sponge ball is not good to put into, needs to dismantle corresponding pipeline, and another technique adopts the electronic pulse pump, utilizes the air pump to combine the running water, produces high-pressure rivers with strong pressure with air-water mixing medium and assaults the pipeline rapidly, forms the pulse shock wave at the moment, has reached the cleaning action. The defects of the method are as follows: the cleaning is incomplete, and because the water pressure of the floor heating is about 0.8 kg, the floor heating can only clean the sink and float, so the inventor proposes a novel floor heating pipeline cleaning device in view of the fact.
Disclosure of Invention
The utility model aims to solve the problem that the traditional floor heating pipeline cleaning device cannot thoroughly clean the floor heating pipeline.
In order to achieve the above object, the present utility model provides the following basic scheme:
the utility model provides a novel ground heating pipeline washs device, includes sponge steel ball, sponge steel ball catapult and installs a plurality of tee bend to one side in ground heating pipeline import and export position, first export of tee bend to one side connects first water knockout drum and second water knockout drum respectively, first water knockout drum and second water knockout drum output have connect first water knockout drum and second water knockout drum respectively, first water knockout drum and second water knockout drum output termination have the geothermal pipe, drain and sponge steel ball collector have been connected to tee bend's second export to one side.
The principle and effect of this basic scheme lie in:
1. compared with the prior art, the device does not need to be externally connected with any mechanical structure, realizes the cleaning of the pipeline by utilizing the pressure of the floor heating pipeline, is efficient and effective, is simple to operate, and can well solve the problem of dirt of the floor heating pipeline.
2. Compared with the prior art, the device designs the sponge steel ball, the sponge steel ball ejector and a plurality of inclined tee joints arranged at the inlet and outlet positions of the floor heating pipeline, and structurally improves the positions of the inclined tee joints, and designs the drain pipe and the sponge steel ball collector, so that the whole floor heating system is not affected, and the problem of affecting the floor heating system can be better solved.
3. Compared with the prior art, compared with the traditional sponge ball, the sponge ball not only has the capability of absorbing dirt for the sponge ball, but also is smoother in flow because the body is the steel ball, and the steel ball has certain strength and has certain good effect on dirt sinking due to matching with the sponge.
Furthermore, the inlet and outlet positions of the floor heating pipeline are Y-shaped, and two groups of main switches are arranged on the inlet and outlet positions of the floor heating pipeline.
Further, the inside of the inclined tee joint close to the inlet and outlet positions of the ground heating pipeline is provided with a branch switch.
Further, a connecting switch is arranged on the drain pipe.
Further, the sponge steel ball comprises a steel ball body, grooves formed in the periphery of the steel ball body and a plurality of sponges fixedly connected in the grooves.
Further, the size of the steel ball body is smaller than the calibers of the first water diversion port and the second water diversion port, and the sponge is in an unabsorbed state when not in use.
Further, the geothermal pipes on the first water separator and the second water separator are connected with the ground-paved rear end part.
Further, the sponge steel ball collector is the combination form of cover net structure and spheroid structure, and the outside of sponge steel ball collector is the spheroid structure, the spheroid structure includes hollow sphere, opens the opening that is used for receiving the sponge steel ball on hollow sphere and sets up the crashproof sponge in hollow sphere inside, hollow sphere is the fretwork design and is used for discharging sewage.
Further, the net sleeving structure is arranged in the sphere structure, the net sleeving structure is a steel rope net, and the steel rope net is arranged in the hollow sphere.
Further, the anti-collision sponge is attached to the inner wall of the hollow sphere.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the description of the embodiments will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic diagram illustrating an installation principle of a novel floor heating pipeline cleaning device according to an embodiment of the present utility model;
fig. 2 shows a schematic installation diagram of a wire mesh of a novel floor heating pipeline cleaning device according to an embodiment of the utility model.
Detailed Description
In order to further describe the technical means and effects adopted by the present utility model for achieving the intended purpose, the following detailed description will refer to the specific implementation, structure, characteristics and effects according to the present utility model with reference to the accompanying drawings and preferred embodiments.
Reference numerals in the drawings of the specification include: the device comprises a first water separator 1, a second water separator 2, a geothermal pipe 3, a second water separator 4, a first water separator 5, an inclined tee 6, a sponge steel ball 7, a sewage drain pipe 8, a connecting switch 9, a sponge steel ball collector 10, a geothermal pipe inlet and outlet 11, a main switch 12, a separating switch 13, a net sleeving structure 14 and a steel cable net 15.
Examples are shown in fig. 1 and 2:
the utility model provides a novel floor heating pipeline washs device, including sponge steel ball 7, sponge steel ball 7 catapult and install a plurality of tee bend 6 to one side at floor heating pipeline import and export 11 positions, the first export of tee bend 6 connects first water knockout drum 5 and second water knockout drum 4 respectively, and first water knockout drum 1 and second water knockout drum 2 have been connected respectively to first water knockout drum 5 and second water knockout drum 4 output, and first water knockout drum 1 and second water knockout drum 2 output end has ground heat pipe 3, and the second export of tee bend 6 has connect blow off pipe 8 and sponge steel ball collector 10.
As shown in fig. 1, the floor heating pipeline inlet and outlet 11 is generally arranged above the ground, so that improvement is carried out from the floor heating pipeline inlet and outlet 11, the floor heating pipeline inlet and outlet 11 is of Y-shaped design, two groups of main switches 12 are arranged at the floor heating pipeline inlet and outlet 11, and the purpose of designing the two groups of main switches 12 is to: the forward flow or the reverse flow of the sponge steel ball 7 can be realized;
then, the inclined tee 6 is connected to two sides of the inlet and outlet 11 positions of the ground heating pipeline, if two ground heating pipelines are connected to the inlet and outlet 11 positions of the ground heating pipeline, the positions of the ground heating pipelines are integrated to correspond to the Y-shaped design, the first water diversion port 5 and the second water diversion port 4 are connected in the upward direction, the first water diversion device 1 and the second water diversion device 2 are connected, then the ground heating pipes 3 are connected through the first water diversion device 1 and the second water diversion device 2, then the ground heating pipes 3 are normally paved, and the ground heating pipes 3 on the first water diversion device 1 and the second water diversion device 2 are paved with ground rear end connection to realize whole house heating.
The inside of the inclined tee 6, which is close to the inlet and outlet 11 of the floor heating pipeline, is provided with a sub-switch 13, and the sub-switch 13 is mainly matched with the main switch 12 to realize forward flow or reverse flow of the sponge steel ball 7;
then, as shown in fig. 1, in the improvement of the scheme, a connecting switch 9 is arranged on a drain pipe 8, a sponge steel ball 7 comprises a steel ball body, a groove formed on the periphery of the steel ball body and a plurality of sponges fixedly connected in the groove, the size of the steel ball body is smaller than the calibers of a first water diversion port 5 and a second water diversion port 4, and the sponges are in an unabsorbed state when not in use;
the sponge steel ball collector 10 is in a combined shape of a net sleeving structure and a sphere structure, the outside of the sponge steel ball collector 10 is in a sphere structure, the sphere structure comprises a hollow sphere, and an anti-collision sponge arranged in the hollow sphere through an opening formed in the hollow sphere and used for receiving the sponge steel ball 7, and the hollow sphere is hollow and is used for discharging sewage. The net sleeving structure is arranged in the sphere structure, the net sleeving structure is a steel rope net, the steel rope net is arranged in the hollow sphere, and the anti-collision sponge is attached to the inner wall of the hollow sphere.
The specific implementation process comprises the following steps:
in the first step, a main switch 12 is opened, for example, the left main switch 12 is shown in fig. 1, then the pressure is sent to the left inclined tee 6, a sponge steel ball 7 is put into the inlet of the inclined tee 6, a connecting switch 9 on a drain pipe 8 on the left side is closed, the sponge steel ball 7 enters the first water diversion port 5 in a proper direction, the first water diversion device 1 returns to the second water diversion device 2 through the geothermal pipe 3 to enter the other inclined tee 6 from the second water diversion port 4, and then is discharged from the drain pipe 8, the sponge steel ball 7 is collected by a sponge steel ball collector 10, and the cleaning function of the geothermal pipe 3 is realized in the flowing process of the sponge steel ball 7.
In the second step, the same procedure as in the first step is followed for opening the right master switch 12.
The device solves the problem that the traditional floor heating pipeline cleaning device cannot thoroughly clean the floor heating pipeline.
The present utility model is not limited to the above embodiments, but is capable of modification and variation in detail, and other modifications and variations can be made by those skilled in the art without departing from the scope of the present utility model.

Claims (10)

1. Novel floor heating pipeline washs device, its characterized in that: the device comprises a sponge steel ball, a sponge steel ball catapult and a plurality of inclined tee joints arranged at the inlet and outlet positions of a ground heating pipeline, wherein a first outlet of each inclined tee joint is respectively connected with a first water diversion port and a second water diversion port, the output ends of the first water diversion port and the second water diversion port are respectively connected with a first water diversion device and a second water diversion device, the output ends of the first water diversion device and the second water diversion device are connected with a geothermal pipe, and a second outlet of each inclined tee joint is connected with a sewage drain pipe and a sponge steel ball collector.
2. The novel floor heating pipeline cleaning device according to claim 1, wherein the inlet and outlet positions of the floor heating pipeline are of a Y-shaped design, and two groups of main switches are arranged at the inlet and outlet positions of the floor heating pipeline.
3. The novel floor heating pipeline cleaning device according to claim 2, wherein the inclined tee joint is provided with a sub-switch in the interior close to the inlet and outlet positions of the floor heating pipeline.
4. The novel floor heating pipeline cleaning device according to claim 1, wherein the drain pipe is provided with a connecting switch.
5. The novel floor heating pipeline cleaning device according to claim 1, wherein the sponge steel ball comprises a steel ball body, grooves formed in the periphery of the steel ball body and a plurality of sponges fixedly connected in the grooves.
6. The novel floor heating pipeline cleaning device according to claim 5, wherein the size of the steel ball body is smaller than the caliber of the first water diversion port and the caliber of the second water diversion port, and the sponge is in an unabsorbed state when not in use.
7. The novel floor heating pipe cleaning device according to claim 1, wherein the geothermal pipes on the first water separator and the second water separator are connected with the rear end of the floor.
8. The novel floor heating pipeline cleaning device according to claim 1, wherein the sponge steel ball collector is in a combined shape of a net sleeving structure and a sphere structure, the outer part of the sponge steel ball collector is in a sphere structure, the sphere structure comprises a hollow sphere, and an anti-collision sponge arranged inside the hollow sphere and provided with an opening for receiving the sponge steel ball on the hollow sphere, and the hollow sphere is hollowed and designed for discharging sewage.
9. The novel floor heating pipeline cleaning device according to claim 8, wherein the mesh structure is arranged inside a sphere structure, the mesh structure is a wire mesh, and the wire mesh is arranged inside a hollow sphere.
10. The novel floor heating pipeline cleaning device according to claim 8, wherein the anti-collision sponge is attached to the inner wall of the hollow sphere.
CN202320618157.5U 2023-03-22 2023-03-22 Novel floor heating pipeline washs device Active CN219829635U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320618157.5U CN219829635U (en) 2023-03-22 2023-03-22 Novel floor heating pipeline washs device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320618157.5U CN219829635U (en) 2023-03-22 2023-03-22 Novel floor heating pipeline washs device

Publications (1)

Publication Number Publication Date
CN219829635U true CN219829635U (en) 2023-10-13

Family

ID=88247964

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320618157.5U Active CN219829635U (en) 2023-03-22 2023-03-22 Novel floor heating pipeline washs device

Country Status (1)

Country Link
CN (1) CN219829635U (en)

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