Engine Oxygen Enrichment Carbon Deposits Cleaner

By designing an engine oxygen-enhancing carbon deposition cleaner containing oscillating elements and characteristic air permeability holes, the problems of reduced air intake and inconvenient installation caused by structural defects in the prior art are solved, and the effects of improving combustion efficiency, reducing fuel consumption and reducing exhaust pollution are achieved.

CN109339987BActive Publication Date: 2025-06-13GUANGZHOU HENGQIU IMPORT & EXPORT TRADING LTD CORP
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Patent Information

Application Number
CN201811357664.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2018-11-14
Publication Date
2025-06-13
Estimated Expiration
2038-11-14

AI Technical Summary

Technical Problem

The existing engine oxygen-enhancing sheets have structural defects, resulting in reduced air intake, inconvenient installation, and ineffective in improving combustion efficiency and reducing exhaust pollution.

Method used

A well-structured engine oxygen-enhancing carbon deposition cleaner is designed, which contains the main body and installation frame of oscillating elements that can produce far-infrared characteristics. The main body is provided with plum-shaped cross-sectional breathable holes and grooves, and the mounting frame has through holes and notches to improve air flow smoothness.

Benefits of technology

By increasing the air flow rate and pressure, more oxygen is provided, molecular activation efficiency is enhanced, combustion efficiency is improved, fuel consumption and carbon deposits are reduced, and harmful substances in the exhaust gas are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an engine oxygen-increasing carbon deposit cleaner, which includes a main body containing oscillation elements with the property of generating far-infrared rays inside. A number of first air vents are provided on the main body. The opening sizes of both ends of the first air vents are different, and a number of grooves are provided on the side walls of the first air vents. The larger end of the first air vent in the above-mentioned embodiment is used for air intake, and the smaller end is used for air outlet. In this way, the air flow rate and pressure passing through the first air vent can be increased, achieving a supercharging effect to provide more oxygen. The setting of the grooves can increase the contact area between the air and the main body, improve the efficiency of molecular activation, and at the same time can reduce the air intake cross-section blocking area of the entire main body and increase the air flow rate. When the air flows through the periphery of the main body and the first air vents, the far-infrared rays generated by the oscillation elements in the main body perform molecular activation treatment on the oxygen in the air, enabling it to better combine with fuel molecules, improving the combustion efficiency, reducing fuel consumption, and reducing the generation of carbon deposits.
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Description

Technical Field

[0001] The present invention relates to an engine oxygenation and carbon deposit cleaner. Background Art

[0002] The development of the automotive industry has brought prosperity and convenience to mankind, but relatively many problems have also been created. One of them is the problem of vehicle exhaust emissions. The daily excessive emissions of motor vehicles have caused serious air pollution, threatening human health and the quality of human life.

[0003] In order to improve the combustion efficiency, there are sheets on the market that perform molecular activation treatment on oxygen through far-infrared rays. However, the existing sheets have defects in structure, which will greatly reduce the air intake volume, and there are also inconveniences in installation. Therefore, the present invention provides a structurally perfect engine oxygenation and carbon deposit cleaner to solve the above problems. Summary of the Invention

[0004] In order to solve the above problems, the present invention provides a structurally perfect engine oxygenation and carbon deposit cleaner.

[0005] The technical solution adopted by the present invention to solve its technical problems is as follows:

[0006] The engine oxygenation and carbon deposit cleaner includes a main body containing oscillation elements with the property of generating far-infrared rays. A number of first air-permeable holes are provided on the main body. The sizes of the two openings at both ends of the first air-permeable holes are different, and a number of grooves are provided on the side wall of the first air-permeable holes.

[0007] The grooves penetrate through the first air-permeable holes.

[0008] The cross-section of the first air-permeable holes is in the shape of a plum blossom.

[0009] The present invention further includes a mounting frame containing oscillation elements with the property of generating far-infrared rays. A number of mounting through-holes for mounting the main body are provided on the mounting frame.

[0010] Second air-permeable holes are provided on the mounting frame, and the second air-permeable holes are located around the mounting holes.

[0011] A number of notches are evenly distributed around the mounting frame.

[0012] A number of plug-in columns that can be plugged into the automotive air intake fins are provided on the back of the mounting frame.

[0013] A number of protrusions are provided on the back of the mounting part, and the protrusions abut against the automotive air intake fins after the mounting frame is mounted on the automotive air intake fins.

[0014] The plug-in columns are perpendicular to the protrusions.

[0015] The main body is rectangular, the mounting through-hole is also rectangular, positioning columns are arranged on the side of the main body, and positioning grooves are arranged at the positions corresponding to the positioning columns on the mounting through-hole.

[0016] The beneficial effects of the above-mentioned embodiment are as follows: the larger end of the first ventilation hole in the above-mentioned embodiment is used for air intake, and the smaller end is used for air outlet. In this way, the air flow rate and pressure passing through the first ventilation hole can be increased, achieving a supercharging effect to provide more oxygen. The setting of the groove can increase the contact area between the air and the main body, improve the efficiency of molecular activation, and at the same time can reduce the blocking area of the intake cross-section of the entire main body, increasing the air flow rate. When the air flows through the periphery of the main body and the first ventilation hole, the far-infrared rays generated by the oscillation elements in the main body perform molecular activation treatment on the oxygen in the air, enabling it to better combine with fuel molecules, improving the combustion efficiency, reducing fuel consumption, reducing the generation of carbon deposits, reducing harmful substances in the exhaust gas, with a simple and perfect structure and remarkable effects. Description of the Drawings

[0017] The present invention will be further described below with reference to the drawings and embodiments:

[0018] Figure 1 is a schematic diagram of the main body;

[0019] Figure 2 is a schematic diagram of an embodiment of the present invention. Detailed Embodiments

[0020] Referring to Figure 1 , the present invention is an engine oxygen-increasing carbon deposit cleaner, including a main body 1 containing oscillation elements with the property of generating far-infrared rays inside. A plurality of first ventilation holes 2 are arranged on the main body 1. The two ends of the first ventilation hole 2 have different opening sizes, and a plurality of grooves 3 are arranged on the side wall of the first ventilation hole 2. The larger end of the first ventilation hole 2 in the above-mentioned embodiment is used for air intake, and the smaller end is used for air outlet. In this way, the air flow rate and pressure passing through the first ventilation hole 2 can be increased, achieving a supercharging effect to provide more oxygen. The setting of the groove 3 can increase the contact area between the air and the main body 1, improve the efficiency of molecular activation, and at the same time can reduce the blocking area of the intake cross-section of the entire main body 1, increasing the air flow rate. When the air flows through the periphery of the main body 1 and the first ventilation hole 2, the far-infrared rays generated by the oscillation elements in the main body 1 perform molecular activation treatment on the oxygen in the air, enabling it to better combine with fuel molecules, improving the combustion efficiency, reducing fuel consumption, reducing the generation of carbon deposits, reducing harmful substances in the exhaust gas, with a simple and perfect structure and remarkable effects; it is found in actual experimental comparison that the fuel consumption of a car equipped with the above-mentioned engine oxygen-increasing carbon deposit cleaner can be reduced by 24.5%, and no carbon deposits are generated in the engine.

[0021] Among them, the main body 1 can be made of soft plastic material for easy cutting. The oscillation element can be mixed into the raw material during the production process of the main body 1 or painted on the outer surface of the main body 1 after the main body 1 is formed. The oscillation element can be germanium element, nano metal, graphene powder, radium powder, etc.; preferably, the groove 3 penetrates through the first ventilation hole 2, so as to increase the smoothness of air flow and the overall contact area. The cross-section of the groove 3 is arc-shaped and evenly distributed, so that the cross-section of the first ventilation hole 2 is in the shape of a plum blossom, which can greatly increase the contact area with air.

[0022] As shown in the figure, the present invention further includes a mounting frame 4 containing an oscillation element with the property of generating far-infrared rays inside. The mounting frame 4 has a number of mounting through holes 5 for mounting the main body 1. The mounting frame 4 is made of soft plastic for easy cutting to be suitable for different automobiles; the main body 1 is installed in the mounting through hole 5 and can be fixed by glue if desired.

[0023] As shown in the figure, in order to further reduce the air intake cross-section blocking area of this embodiment, the mounting frame 4 has second ventilation holes 6. The second ventilation holes 6 are located around the mounting holes. The second ventilation holes 6 are strip-shaped, providing more channels for air to pass through without affecting the structural strength, and reducing the overall wind resistance.

[0024] As shown in the figure, a number of notches 7 are evenly distributed around the mounting frame 4. The setting of the notches 7 can accelerate the air flow and increase the contact area between the mounting frame 4 and air, improving the molecular activation efficiency.

[0025] As shown in the figure, a number of plug-in posts 8 that can be plugged into the automobile air intake fins are provided on the back of the mounting frame 4. Connecting with the automobile air intake fins through the plug-in posts 8 is quick and convenient. Since the effective action range of the far-infrared rays generated by the oscillation element is about ten centimeters, all the air entering the automobile air intake fins has been effectively molecularly activated.

[0026] As shown in the figure, a number of protrusions 9 are provided on the back of the mounting part. The protrusions 9 abut against the automobile air intake fins after the mounting frame is installed on the automobile air intake fins; by providing the protrusions 9, there is a certain gap between the mounting frame and the automobile air intake fins to facilitate the inflow of supplementary air and ensure the engine's air intake requirement; as an optimized embodiment, the plug-in posts are perpendicular to the protrusions, so as to prevent the protrusions from falling into the air filter and ensure there is a gap between the mounting frame and the air filter. In addition, the plug-in posts 8 can also be provided on some of the protrusions 9, so as to streamline the layout. The width of the plug-in posts 8 is smaller than the width of the protrusions 9.

[0027] As shown in the figure, the main body 1 is rectangular, the mounting through hole 5 is also rectangular, a positioning post 10 is arranged on the side of the main body 1, a positioning groove 11 is arranged at the position corresponding to the positioning post 10 of the mounting through hole 5, the positioning posts 10 are located at the four corners of the main body 1, and the positioning posts 10 are quasi-cylindrical; this structure can prevent the problem that the main body 1 is likely to fall off when the mounting frame 4 is bent.

Claims

1. Engine oxygen-increasing carbon deposit cleaner, characterized in that it includes a main body containing oscillation elements with the property of generating far-infrared rays inside. A number of first ventilation holes are provided on the main body. The opening sizes at both ends of the first ventilation holes are different, and a number of grooves are provided on the side wall of the first ventilation holes; it further includes a mounting frame containing oscillation elements with the property of generating far-infrared rays inside. The mounting frame has a number of mounting through holes for mounting the main body. The mounting frame has second ventilation holes located around the mounting holes. A number of notches are evenly distributed around the mounting frame. A number of plug-in columns that can be plugged into the automotive air intake fins are provided on the back of the mounting frame. A number of protrusions are provided on the back of the mounting frame, and the protrusions abut against the automotive air intake fins after the mounting frame is mounted to the automotive air intake fins. The plug-in columns are perpendicular to the protrusions.

2. The engine oxygen-increasing carbon deposit cleaner according to claim 1, characterized in that the grooves penetrate the first ventilation holes.

3. The engine oxygen-increasing carbon deposit cleaner according to claim 1, characterized in that the cross-section of the first ventilation hole is plum blossom-shaped.

4. The engine oxygen-increasing carbon deposit cleaner according to claim 1, characterized in that the main body is rectangular, the mounting through holes are also rectangular, positioning columns are provided on the side of the main body, and positioning grooves are provided at the positions corresponding to the positioning columns on the mounting through holes.

Citation Information

Patent Citations

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  • Car optimization gasket that admits air

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  • Engine oxygenation deposited carbon cleaner

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    TWM551227U