Portable chemical molecule compressed air sewer pipeline dredging device
The portable chemical molecular compressed air sewer cleaning device solves the problems of insufficient air pressure and high cost in existing technologies by using compressed air and plug granules or gel packs, achieving efficient and convenient sewer cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-02
- Publication Date
- 2026-03-10
AI Technical Summary
Existing pipe unblocking devices have insufficient air pressure, poor unblocking effect, are inconvenient to use, and are costly.
A portable chemical molecular compressed air drain cleaning device is used, which includes a chemical molecular compressed air main body, a triggering part, and an emitting part. The triggering mechanism causes compressed air to enter the pipe from the emitting part, and combined with plug particles or gel packs, it can achieve one-time unblocking.
It improves the unblocking effect, simplifies the usage steps, reduces costs, and achieves ease of use and efficient unblocking.
Smart Images

Figure CN223984067U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of pipe dredging equipment, and in particular to a pipe dredging device, especially a portable chemical molecular compressed air drain pipe dredging device. Background Technology
[0002] Pipes are the sewage pipes in home bathroom fixtures; only when the pipes are clear can the bathroom fixtures function properly. In daily life, people often encounter situations where pipes are blocked by obstructions. If the pipes cannot be cleared in time, the bathroom fixtures cannot be used normally. Without professional tools, sticks or wires are often used, but due to the winding nature of the pipes, the effectiveness of sticks and wires is limited. Hiring a professional drain cleaning company increases costs.
[0003] To address the problems of difficult and costly pipe dredging, the existing sewer cleaner (CN2046139U) discloses a sewer cleaner consisting of a punch (1) and a hose (2), which uses tap water to clean sewers. This sewer cleaner has the advantages of simple structure, small space occupation during use, no need for electricity, easy manufacturing, and low cost.
[0004] In addition, another existing technology, a fully automatic air-flushing toilet drain cleaner (CN2288222Y), discloses a fully automatic air-flushing toilet drain cleaner, which involves a hydraulic drain cleaning device integrated with the toilet. It uses tap water to generate compressed air by controlling four ball valves connected to compressed air cylinders and water supply pipes, thereby pushing the descaling agent through the high-pressure pipe into the bottom of the toilet and directly spraying it into the water trap to break up the blockage. Then, a powerful water jet is sprayed from the nozzle installed at the bottom of the toilet and aimed at the water trap. Combined with the flushing of the toilet bowl, it quickly eliminates daily blockages. It can also use a spatula to drive the blockage away from the water trap and close the drain outlet of the toilet bowl to introduce tap water pressure into the toilet pipe and quickly eliminate serious blockages.
[0005] However, in the process of implementing the technical solution in the prior art, the applicant discovered the following technical problems in the prior art:
[0006] Existing suction-type pipe-clearing devices often fail to achieve satisfactory results due to insufficient air pressure, requiring repeated pulling to be effective, which is inconvenient. Furthermore, the use of existing complex pipe-clearing tools or devices is costly. Utility Model Content
[0007] The technical problem to be solved by this utility model is to provide a portable chemical molecular compressed air drain pipe unblocking device, which solves the technical problems of poor unblocking effect, inconvenience of use and high cost in the prior art, and at least achieves one of the technical effects of easy use, improved unblocking effect and reduced use cost.
[0008] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:
[0009] A portable chemical molecular compressed air drain cleaning device comprises the following components:
[0010] A chemical molecule compressed air main body, wherein the interior of the chemical molecule compressed air main body is filled with compressed air;
[0011] A triggering unit is connected to the main body of the chemical molecule compressed air and is equipped with a triggering mechanism;
[0012] And a launching part, which is located at one end of the trigger part away from the main body of the chemical molecule compressed air and is provided with a sealing membrane, and the opening of the launching part matches the structure of the lower bathroom water inlet;
[0013] The process involves aligning the launching unit with the inlet of the bathroom pipe, operating the launching mechanism, and triggering compressed air to break through the sealing membrane of the launching unit from the main body of the chemical molecule compressed air and enter the inlet of the bathroom pipe.
[0014] Preferably, the main body of the chemical molecule compressed air adopts a cylindrical structure; the emitting part is an emitting tube.
[0015] Preferably, the triggering mechanism is a button-type triggering mechanism or a pull-type triggering structure.
[0016] More preferably, the triggering mechanism is a rotary triggering mechanism.
[0017] Preferably, the main body of the chemical molecule compressed air adopts a cylindrical structure; the triggering mechanism is a rotary triggering mechanism to form a compressed air emission structure.
[0018] Preferably, the launching part is a non-rigid tube structure.
[0019] More preferably, the launching unit consists of multiple launching channels.
[0020] In a particularly preferred embodiment, the main body of the chemically compressed air is further equipped with a plug-in granule package.
[0021] Preferably, the inner wall of the chemical molecule compressed air body near the emitter has a protrusion; the plug particle is placed on the protrusion.
[0022] Particularly preferred, the compressed air comprises an atomized pipe unclogging agent.
[0023] One or more technical solutions provided in this application have at least the following technical effects or advantages:
[0024] The above technical solution employs a portable chemical compressed air drain cleaning device composed of a main body, a trigger, and a transmitter. The main body is filled with compressed air, the trigger is connected to the main body, and the transmitter is located at the end of the trigger furthest from the main body. The opening of the transmitter matches the structure of the bathroom drain inlet. By aligning the transmitter with the drain inlet and operating the triggering mechanism, the sealing membrane is broken; this triggers compressed air to rush out from the main body and into the drain inlet through the transmitter's opening. The burst of compressed air disperses the blockage in the drain. The main body, trigger, and transmitter are made of paper, saving costs. A single-use dispensing action eliminates the need for repeated pulling, simplifying the process. This effectively solves the problems of poor unblocking effect, inconvenience, and high cost in existing technologies, achieving ease of use, improved unblocking effect, and reduced operating costs. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of this utility model;
[0026] Figure 2 This is a schematic diagram of the structure of the present invention when the launch is triggered by a rotary knob;
[0027] Figure 3 This is a schematic diagram of the structure of the present invention when the firing is triggered by a press.
[0028] Figure 4 This is a structural diagram of the present invention when a pull-triggered launch method is used;
[0029] Figure 5 This is a structural schematic diagram of an embodiment of the present invention using a plug-in granule package;
[0030] Figure 6 This is a structural diagram of an embodiment of the present invention using a non-fully rigid launching part.
[0031] In the figure, 100 is the main body of the compressed air containing chemical molecules; 110 is the sealing membrane; 200 is the trigger part; 210 is the piercing part; 300 is the emitting part; 310 is the emitting tube; 320 is the protrusion; 330 is the flexible structure; and 400 is the plug-in particle package. Detailed Implementation
[0032] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0033] Most drain cleaning tools on the market, especially those used for unclogging toilets, are simple suction-type tools that require multiple suction actions, causing inconvenience to users. Furthermore, insufficient air pressure generated during suction often affects the effectiveness of unclogging the drain.
[0034] The technical solution of this application provides a portable chemical molecular compressed air drain cleaning device, which solves the problems of poor unblocking effect, inconvenience of use and high cost in the prior art. The device achieves the beneficial effects of easy use, improved unblocking effect and reduced use cost by using the chemical molecular compressed air main body 100, triggering part 200 and emitting part 300.
[0035] The overall concept of the implementation scheme of this utility model to solve the above-mentioned technical problems is as follows:
[0036] A portable chemical molecular compressed air drain cleaning device, such as Figure 1 As shown, it consists of the following components:
[0037] The chemical molecule compressed air main body 100 is filled with compressed air, and the outlet of the chemical molecule compressed air main body 100 is provided with a sealing membrane 110.
[0038] The triggering part 200 is connected to the chemical molecule compressed air main body 100 and is equipped with a triggering mechanism;
[0039] The device includes an emitting section 300, which is located at the end of the chemical molecule compressed air main body 100 away from the trigger section 200 and is equipped with a sealing membrane 110. The opening of the emitting section 300 matches the structure of the lower bathroom water inlet. The thickness of the sealing membrane 110 is adapted to the compressed air to allow it to burst.
[0040] In this process, the launching unit 300 is aligned with the inlet of the bathroom pipe, and the launching mechanism is operated to break the sealing membrane 110. This triggers compressed air to rush from the chemical molecule compressed air body 100 through the original sealing membrane 110 of the launching unit 300 and enter the inlet of the bathroom pipe through the opening of the launching unit 300. The airflow impact caused by the compressed air can open or disperse the blockage in the pipe, and the chemical molecules decompose and dissolve the blockage, thereby achieving a clearing effect.
[0041] Portable chemical molecular compressed air drain cleaning device can adopt the structure and materials of compressed air. The cost of such structure and materials is only a few yuan, and it is easy to carry and store, saving costs and being convenient to use.
[0042] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.
[0043] A portable chemical molecular compressed air drain cleaning device comprises the following components:
[0044] The chemical molecule compressed air main body 100 is filled with compressed air, and the outlet of the chemical molecule compressed air main body 100 is provided with a sealing membrane 110.
[0045] The triggering part 200 is connected to the chemical molecule compressed air main body 100 and is equipped with a triggering mechanism;
[0046] And the launching part 300, which is located at the end of the chemical molecule compressed air main body 100 away from the trigger part 200 and is provided with a sealing membrane 110. The opening of the launching part 300 matches the structure of the lower bathroom water inlet.
[0047] The triggering part 200 is provided with a piercing element 210. The triggering part 200 can move relative to the chemical molecule compressed air main body 100 in a preset direction. When the triggering part 200 moves relative to the chemical molecule compressed air main body 100 in a preset direction, the piercing element 210 provided with the triggering part 200 moves accordingly. When the piercing element 210 pierces the sealing membrane 110, the compressed air rushes from the chemical molecule compressed air main body 100 through the original sealing membrane 110 of the emitting part 300 and enters the bathroom pipe inlet from the opening of the emitting part 300. The airflow impact caused by the compressed air can open or disperse the blockage in the pipe. The chemical molecules can dissolve the blockage, thereby clearing the pipe.
[0048] The triggering part 200 is provided with a piercing element 210. The chemical molecule compressed air main body 100 can move relative to the triggering part 200 in a preset direction. When the chemical molecule compressed air main body 100 moves relative to the triggering part 200 in the preset direction, the sealing membrane 110 moves accordingly. When the sealing membrane 110 is sprayed onto the piercing element 210, the piercing element 210 pierces the sealing membrane 110. The compressed air rushes from the chemical molecule compressed air main body 100 past the original sealing membrane 110 of the emitting part 300 and enters the bathroom pipe inlet from the opening of the emitting part 300. The airflow impact caused by the compressed air can open or disperse the blockage in the pipe. The chemical molecules can dissolve the blockage, thereby clearing the pipe.
[0049] Reference Figure 2As shown, the main body 100 of the chemically compressed air adopts a cylindrical structure; the launching part 300 is a launching tube 310, and the triggering mechanism is preferably a rotary triggering mechanism. The cylindrical structure of the main body 100 of the chemically compressed air, combined with the rotary triggering mechanism, forms a compressed air launching structure. Any non-ignition compressed air structure available on the market can be applied to the embodiments of this utility model.
[0050] Reference Figure 3 and Figure 4 The triggering mechanism can also be selected as a button-type triggering mechanism or a pull-type triggering structure.
[0051] Depending on the location of the blockage, the drain plug often needs to be extended to different places; the rigid 300-degree nozzle is not conducive to bending. (Refer to...) Figure 5 The non-rigid tube structure or the partially flexible structure 330 of the launching part 300 helps to further improve the plugging effect. For example, the flexible structure 330 is used in the part near the opening of the launching part 300 to better match the pipe inlet structure.
[0052] More specifically, the launch unit 300 consists of multiple launch tubes (not shown in the attached diagram).
[0053] When clearing pipes, in addition to sufficient impact air pressure, in some cases, auxiliary materials for unblocking are also needed to work in conjunction. The main body 100 of the chemical molecular compressed air is also equipped with a plug-blocking particle pack 400 or compressed plug-blocking particles. When the plug-blocking particles enter the pipe with the burst of compressed air, the corrosive force they generate helps to corrode and destroy the blockage. The impact of the compressed air combined with the plug-blocking particles can further improve the unblocking effect.
[0054] like Figure 6 As shown, a protrusion 320 is provided on the inner wall of the chemical molecule compressed air main body 100 near the emission part 300; the plug granule package 400 is placed on the protrusion 320.
[0055] Compressed air from the main body 100 of the chemical molecule compressed air rushes past the original sealing membrane 110 of the emitter 300, and bursts out of the plug-in particle package 400 or compressed plug-in particles from the protrusion 320 of the emitter 300, entering the bathroom pipe inlet through the opening. The airflow impact caused by the compressed air can open or disperse the blockage in the pipe, while the plug-in particles corrode and destroy the blockage, thereby improving the plugging effect.
[0056] In addition to using granular drain plugs (400), drain plug gel packs can also be used. The chemically compressed air main body 100 is equipped with a drain plug gel pack. For example, a gel is prepared using sodium hypochlorite and sodium hydroxide. These two substances react with water in the drain pipe to release gas. A surfactant then captures the gas as a dense foam, causing it to adhere evenly to the inside of the drain pipe, thereby removing the blockage. Compressed air delivers a drain plugging gel (e.g., a gel containing sodium hypochlorite and sodium hydroxide) to the blockage point. The sodium hypochlorite and sodium hydroxide react with water in the drain pipe to release gas, which is then captured as a dense foam by a surfactant, causing it to adhere evenly to the inside of the drain pipe, thereby removing the blockage.
[0057] The surfactant added to the drain cleaner is preferably an alkyl amine oxide, which is highly soluble in water and has excellent foaming and foam-stabilizing properties. It easily adheres to dirt, allowing the alkaline solution to more fully decompose grease, hair, and other blockages, thereby greatly improving the draining performance.
[0058] The gel can exist in different forms, such as a spray-on gel. A spray-on gel with a clogging function is encapsulated and placed on the inner wall of the compressed air body 100 near the emission part 300, where a protrusion 320 is provided. During emission, the spray-on gel with the clogging function reaches the blockage point with the compressed air, exhibiting good adhesion and a longer contact time, further enhancing the unclogging effect. Although gel-like substances easily adhere to toilet seats, are difficult to remove, and can leave safety hazards, and the product is highly alkaline, this invention allows the spray-on gel with the clogging function to be directly delivered to the blockage point by compressed air, eliminating the need to first pour or spray it onto the toilet bowl, thus eliminating these adverse effects.
[0059] Compressed air can propel the plug granules (400 or more) together to quickly clear blockages. To further improve the efficiency of clearing blockages, atomized nano-pipe cleaner is used as a component of the compressed air, combining the compressed air and pipe cleaner into one. When the compressed air is released, the pipe cleaner quickly reaches the blockage point. Under the combined action of air pressure and the gaseous pipe cleaner, rapid blockage clearance is achieved.
[0060] The preferred components of the drain cleaner are:
[0061] Trimethylchlorosilane bentonite, surfactants, foaming agents, composite drain cleaners, and composite auxiliary materials.
[0062] Drain cleaners are more preferably formulated with the following ingredients:
[0063] Hypochlorite, nano alkali metal hydroxide, sodium silicate, alkyl amine oxide, alkyl diphenyl ether disulfonate, fatty acid soap, fragrance.
[0064] Existing drain cleaners can be selected and adopted, prepared into atomized or gaseous compressed air, and the compressed air containing drain cleaner components is stored in the chemical molecular compressed air body 100.
[0065] The most cost-effective method is to use compressed air with atmospheric composition directly, and to physically unclog the pipe blockage by air pressure alone.
[0066] The portable chemical molecular compressed air drain cleaning device of this invention is low in cost and easy to use, and its cost of only a few yuan helps to reduce product costs.
[0067] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and these variations still fall within the protection scope of this utility model.
Claims
1. A portable chemical molecule compressed air sewer pipe unclogging device, characterized in that: The application relates to a chemical molecule compressed air body part, which comprises the following components: a chemical molecule compressed air body part, which is internally provided with compressed air; a trigger part, which is communicated with the chemical molecule compressed air body part and is provided with a trigger mechanism; and a launching part, which is arranged at one end of the trigger part away from the chemical molecule compressed air body part and is provided with a sealing film, and the opening of the launching part is matched with the structure of a bathroom pipeline inlet. Wherein, the launching part is aligned with the bathroom pipeline inlet, the trigger mechanism is operated, the compressed air from the chemical molecule compressed air body part breaks the sealing film of the launching part, and enters the bathroom pipeline inlet.
2. The portable chemical molecule compressed air sewer line unclogging device of claim 1, wherein: The chemical molecule compressed air body part adopts a cylindrical structure; and the launching part is a launching cylinder.
3. The portable chemical molecule compressed air sewer line unclogging device of claim 1, wherein: The trigger mechanism is a rotary trigger mechanism.
4. The portable chemical molecule compressed air drain line clearing device of claim 1, wherein: The trigger mechanism is a button trigger mechanism or a pulling trigger mechanism.
5. The portable chemical molecule compressed air sewer line unclogging device of claim 1, wherein: The chemical molecule compressed air body part adopts a cylindrical structure; and the trigger mechanism is a rotary trigger mechanism, so as to form a compressed air type launching structure.
6. The portable chemical molecule compressed air drain line clearing device of claim 1, wherein: The launching part is a non-rigid tube structure.
7. The portable chemical molecule compressed air drain line clearing device of claim 1, wherein: The chemical molecule compressed air body part is further provided with a through-plug particle bag and / or a sterilization and disinfection agent.
8. The portable chemical molecule compressed air drain line clearing device of claim 1, wherein: The launching part is composed of a plurality of launching pipelines.
9. The portable chemical molecule compressed air drain line clearing device of claim 7, wherein: The inner wall of the chemical molecule compressed air body part close to the launching part is provided with a protrusion; the through-plug particle bag is arranged on the protrusion; and the chemical molecule compressed air body part is further provided with a gel type pipeline clearing agent.
10. The portable chemical molecule compressed air drain line clearing device of claim 7, wherein: The composition of the compressed air comprises atomized pipeline clearing agents.
Citation Information
Patent Citations
Sewer dredging apparatus
CN2046139U
Full-automatic pneumatic flushing dredging device for toilet pipe
CN2288222Y