A multi-channel air purification system

Through a multi-channel air purification system, combined with an electrostatic adsorption mechanism and a flexible electrostatic dust removal filter, the problem that existing air purifiers cannot completely remove dust is solved, and efficient air purification and a highly functional system design are achieved.

CN115682267BActive Publication Date: 2025-05-16GUANGDONG JIULAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202211417988.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-14
Publication Date
2025-05-16
Estimated Expiration
2042-11-14

AI Technical Summary

Technical Problem

The existing air purifiers cannot completely remove dust from the air after filtering, and the filter element needs to be cleaned regularly, and its functionality is single.

Method used

A multi-channel air purification system is adopted, including a mesh-format dust removal filter system and a heat flow system. The air purification efficiency is improved through the combination of an electrostatic adsorption mechanism and a flexible electrostatic dust removal filter element, and the air temperature is increased through the heat flow system.

Benefits of technology

It realizes effective adsorption and removal of fine dust in the air, improves purification efficiency and quality, and has strong system functionality and is suitable for low temperature weather.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of air purification system technology, specifically to a multi-channel air purification system, comprising: a device base connected to the bottom of a housing, on which the entire air purification system is mounted; and a filter cotton plate assembly fixed to the left side of the device base and the housing. When the electrostatic field generator on the flexible electrostatic dust collector filter is energized with the overall system, it further increases the charge in the electrostatically charged airflow. Dust-laden gas is electrically separated when passing through the high-voltage electrostatic field. Dust particles combine with negative ions and become negatively charged. In the strong electric field, air molecules are ionized into positive ions and electrons. Electrons, while moving towards the positive electrode, encounter dust particles and dust in the airflow, causing the dust particles to become negatively charged and be adsorbed onto the positive electrode for collection. Thus, the airflow that originally passed through the spiral airflow channel comes into contact with the anode strips, allowing dust to be adsorbed onto the surface of the anode strips, thereby quickly achieving dust removal.
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Description

Technical Field

[0001] The present invention relates to the technical field of air purification systems, and in particular to a multi-channel air purification system. Background Art

[0002] Air purifiers are mainly used to purify the air. Existing air purifiers suck in the original air and transmit the polluted air into the filter element. After being filtered by the filter element, the pollution sources in the air are effectively removed.

[0003] During the use of existing air purifiers, dust will accumulate inside the filter element after filtering, so regular cleaning operations are required. However, the filter element cannot completely remove the dust in the air during actual use. The main reason is that the dust in the air passing through the filter element is rubbed by the air and carries static electricity. In this way, the dust will be carried out with the airflow, and tiny dust that is invisible to the naked eye will still exist in the purified area. In addition, the existing purification system is single-channel, so the functionality of the purification system is single.

[0004] The inventor aims at solving the above technical problems in view of the above status quo. Summary of the invention

[0005] In order to achieve the above-mentioned purpose, the main technical solutions adopted by the present invention include: a multi-channel air purification system, comprising:

[0006] The equipment base is connected to the bottom of the housing, and the entire air purification system is installed on the housing. The air filter cotton board assembly is fixed to the left side of the equipment base and the housing, and the forced air induced system is fixed to the right side of the air filter cotton board assembly;

[0007] A mesh dust removal and filtration system, the mesh dust removal and filtration system is fixedly connected to the right side of the forced air induced system, the mesh dust removal and filtration system comprises a grille mounting seat, the grille mounting seat is provided with sealing embedding grooves at equal distances, and also comprises an electrostatic adsorption mechanism, the electrostatic adsorption mechanism is arranged in a comb tooth shape, the electrostatic adsorption mechanism is inserted into the sealing embedding groove, and is detachably connected to the grille mounting seat;

[0008] A heat flow system, wherein the heat flow system is of n-shaped design, and comprises a vertical heat flow device and a longitudinal heat flow device, wherein the vertical heat flow device comprises a longitudinal heat flow device, wherein a vertical heating device is arranged inside the longitudinal heat flow device, wherein the longitudinal heat flow device comprises a top longitudinal heater, wherein an operation area panel is arranged on the top of the top longitudinal heater, and an air outlet is arranged on the right side of the top longitudinal heater;

[0009] A channel panel, the channel panel is arranged in a mounting opening on the right side of the housing, the channel panel is used to discharge the purified air, and the channel panel has an opening and closing state. When the channel panel is closed, the airflow enters the heat flow system, and when the channel panel is opened, the airflow is discharged from the channel panel;

[0010] The channel panel includes a square sleeve, a U-shaped frame is fixedly connected to the top of the square sleeve, a closed grille mechanism is arranged at an equal distance on the top of the square sleeve and inside the U-shaped frame, the closed grille mechanism includes a two-way rotation mechanism, the two-way rotation mechanism is arranged inside the closed grille mechanism, a driving mechanism assembly is arranged in the inner cavity of the square sleeve, the driving mechanism causes the two-way rotation mechanisms in the multiple closed grille mechanisms to move, and the two-way rotation mechanisms are provided with closed blades rotating in opposite directions.

[0011] In the multi-channel air purification system described in the present invention, optimally, the two-way rotating mechanism includes a through rotating rod, the through rotating rod passes through the square sleeve and is rotatable on the square sleeve, the bottom end of the through rotating rod is fixedly connected to the guide gear, the through rotating rod is sleeved with a fixing sleeve, the fixing sleeve is fixedly connected to the bottom of the inner wall of the closed grille mechanism, the top end of the through rotating rod is sleeved with a mounting ring, the mounting ring is sleeved with a fixing round seat, the fixing round seat is sleeved with an active rotating ring, the active rotating ring is provided with a driven ring, the driven ring and the driving rotating ring rotate in opposite directions, the top of the driven ring is fixedly connected with a linkage sleeve, the top of the linkage sleeve is fixedly connected with an adapter ring 1, a linkage rod is penetrated in the linkage sleeve, the bottom end of the linkage rod is fixedly connected to the top of the mounting ring, the top of the linkage rod passes through the adapter ring 1 and is fixedly connected to the inner wall of the adapter ring 2.

[0012] In the multi-channel air purification system described in the present invention, optimally, the electrostatic adsorption mechanism includes a mounting horizontal bar, a mesh plate vertical sealing strip is fixedly connected to one side of the mounting horizontal bar at equal distances, the mesh plate vertical sealing strip is abutted against the inner wall of the sealing embedding groove on all sides, the upper and lower sides of the left side of the mesh plate vertical sealing strip are fixedly connected to supporting strips, the left side of the mesh plate vertical sealing strip is fixedly connected to a vertical connecting strip, a dust removal panel is arranged between the mesh plate vertical sealing strip and the two supporting strips, and a space is arranged between the mesh plate vertical sealing strip and the dust removal panel.

[0013] In the multi-channel air purification system described in the present invention, optimally, a spiral channel 1 is provided on the dust removal panel, and a spiral channel 2 is provided at a corresponding position on the opposite side of the dust removal panel, the inner cavities of the spiral channel 1 and the spiral channel 2 are connected through a connecting opening, an inner entrance is provided on the left side of the inner cavity of the spiral channel 1, and a stop opening is provided on the right side of the inner cavity of the spiral channel 2, and a flexible core is provided in the inner sleeve of the spiral channel 1 and the spiral channel 2, and the flexible core includes a flexible electrostatic dust filter element 1 and a flexible electrostatic dust filter element 2, and the right end of the flexible electrostatic dust filter element 1 is fixedly connected to the flexible electrostatic dust filter element 2.

[0014] In the multi-channel air purification system described in the present invention, optimally, the flexible electrostatic dust removal filter element 1 includes flexible adsorption silica gel, the flexible adsorption silica gel is arranged in the spiral channel 1 and the spiral channel 2, the surface of the flexible adsorption silica gel is provided with an airflow spiral channel, the left end of the flexible adsorption silica gel is provided with an electrostatic field generator, the left end surface of the flexible adsorption silica gel is provided with a drying device, and an anode strip is provided in the airflow spiral channel.

[0015] In the multi-channel air purification system described in the present invention, optimally, vertical openings are provided on the inner wall of the installation port near the vertical heat flow device and the longitudinal heat flow device, a pressure membrane is provided in the vertical opening, a cutting cross is provided on the pressure membrane, and the edges of the cross cutting are in contact with each other.

[0016] In the multi-channel air purification system described in the present invention, optimally, the front and rear sides of the closed grille mechanism and the front and rear sides of the inner wall of the U-shaped frame are fixedly connected with protrusions, and the square sleeve is provided with sealing strips in the two closed grille mechanisms.

[0017] In the multi-channel air purification system described in the present invention, optimally, the drive mechanism assembly includes a forward and reverse motor, the output end of the forward and reverse motor is fixedly connected to a rotating rod, and a driving gear is fixedly connected to the rotating rod at an equal distance, and the teeth on the driving gear are meshed with the guide gear.

[0018] The present invention has at least the following beneficial effects:

[0019] 1. The grid-type dust removal and filtration system is used to absorb finer dust in the air. During the use of the electrostatic adsorption mechanism, the electrostatic adsorption mechanism is inserted into the sealing embedding groove to seal the sealing embedding groove. In this way, the airflow passing through the sealing embedding groove can completely remove the dust in the airflow under the action of the electrostatic adsorption mechanism. The use of the grid mounting seat in conjunction with the electrostatic adsorption mechanism allows the electrostatic adsorption mechanism to be disassembled regularly, which improves the convenience of cleaning.

[0020] 2. During the use of the electrostatic adsorption mechanism, there is a gap between the flexible core sleeved in spiral channel 1 and spiral channel 2 and the inner wall of the flexible core sleeved in spiral channel 1 and spiral channel 2. When the airflow passes through the gap, since spiral channel 1 and spiral channel 2 are respectively arranged on the front and rear sides of the dust removal panel, when the airflow passes through, it will flow irregularly along the cavity shape of spiral channel 1 and spiral channel 2, so that the passing airflow can contact the surface of the flexible core over a large area, which can improve the adsorption effect of dust in the airflow, thereby improving the efficiency and quality of purification. The overall dust removal panel is arranged between the vertical sealing strip of the mesh plate and the two supporting strips. When the electrostatic adsorption mechanism is taken out from the sealing embedding groove, it is more convenient. In the specific process of cleaning the electrostatic adsorption mechanism, the flexible core can be pulled out from spiral channel 1 and spiral channel 2, so that the dust on the flexible core can be effectively cleaned.

[0021] 3. When the electrostatic field generator on the flexible electrostatic dust removal filter element is energized with the overall system, the electrostatic field generator can further increase the charge in the statically charged airflow. The dust-containing gas is electrically separated when passing through the high-voltage electrostatic field. After the dust particles combine with negative ions and carry negative charge, the air molecules are ionized into positive ions and electrons in the strong electric field. When the electrons rush to the positive electrode, they encounter dust particles and the dust in the airflow at the same time, so that the dust particles are negatively charged and adsorbed to the positive electrode and collected. In this way, the airflow that originally passed through the spiral channel of the airflow contacts the anode strip, and then the dust can be adsorbed on the surface of the anode strip, so that the purpose of dust removal can be achieved quickly.

[0022] 4. When purifying the air, the channel panel is set to an open state, and the airflow is discharged from the channel panel to the outside. When the heat flow system is used, the channel panel is closed, and the airflow enters the heat flow system, and the air pressure in the cavity of the installation port increases, and the air pressure applies pressure to the pressure membrane. Since a cross cut is provided on the pressure membrane, the edges of the cross position are in contact, and the pressure membrane is in an open state after the compressed cross is compressed, so that the internal purified airflow can move from the pressure membrane to the heat flow system. When the airflow passes through the heat flow system, the internal heating element is turned on to increase the temperature of the airflow. In this way, the purification system can be used in low temperature weather and the temperature of the purified air can be increased. This has strong functionality and makes the heat flow system cleaner inside when in use.

[0023] 5. By setting the channel panel, when the channel panel is closed, the forward and reverse motors are started, and the output ends of the forward and reverse motors drive the rotating rod to rotate. The multiple driving gears on the rotating rod can drive the guide gear to rotate, and then the guide gear drives the through-rotating rod to rotate, and then the active rotating ring rotates. Since the through-rotating rod is provided with a gear ring to rotate, it is affected by the transmission gear, so that the gear ring above the transmission gear can rotate in the opposite direction to the lower direction, and then the driven ring and the active rotating ring rotate in opposite directions. At this time, the linkage sleeve connected to the driven ring rotates in the opposite direction, so that the driven ring and the adapter ring 1 rotate synchronously, so that one of the closing blades can rotate, and the other closing blade rotates in the opposite direction on the adapter ring 2 and the active rotating ring, and then the two closing blades can rotate out of the closed grille mechanism, and then the closing blade can contact with the protrusion and one side of the sealing strip, and then the closed grille mechanism can be closed, so that function switching can be performed. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0025] Figure 1 A schematic diagram of a multi-channel air purification system according to the present invention;

[0026] Figure 2 It is a partial exploded diagram of a multi-channel air purification system according to the present invention;

[0027] Figure 3 A schematic diagram of a channel panel in a multi-channel air purification system according to the present invention;

[0028] Figure 4 The present invention is a multi-channel air purification system Figure 6 Enlarged view of point A in the middle;

[0029] Figure 5 It is a schematic diagram of a driving mechanism assembly in a channel panel in a multi-channel air purification system according to the present invention;

[0030] Figure 6 A schematic diagram of closed blades in a multi-channel air purification system according to the present invention;

[0031] Figure 7 A cross-sectional view of a linkage set in a multi-channel air purification system according to the present invention;

[0032] Figure 8 The present invention is a multi-channel air purification system Figure 6 Enlarged view of point B in the middle;

[0033] Fig. 9 A schematic diagram of an electrostatic adsorption mechanism in a multi-channel air purification system according to the present invention;

[0034] Fig.10 A schematic diagram of a dust removal panel in a multi-channel air purification system according to the present invention;

[0035] Fig.11 It is a schematic diagram of a flexible electrostatic dust removal filter element in a multi-channel air purification system according to the present invention.

[0036] In the figure, 1 equipment base, 2 shell, 3 filter cotton board assembly, 4 forced air induced system, 5 top longitudinal heater, 6 operation area panel, 7 air outlet, 8 channel panel, 81 square sleeve, 82 U-shaped frame, 83 protrusion, 84 sealing strip, 85 forward and reverse motor, 86 rotating rod, 87 driving gear, 88 teeth, 89 guide gear, 810 through rotating rod, 811 linkage sleeve, 812 connecting piece, 813 closing blade, 814 fixed sleeve, 815 driven ring, 816 active rotating ring, 817 adapter ring one, 818 adapter ring two, 819 linkage rod, 820 fixed round seat, 821 mounting ring, 822 annular groove, 823 rotating shaft sleeve, 824 teeth ring, 825 transmission gear, 9 longitudinal heat flow device, 10 vertical heating device, 11 installation port, 12 grille mounting seat, 13 sealing embedding groove, 14 pressure membrane, 15 electrostatic adsorption mechanism, 151 mesh plate vertical sealing strip, 152 vertical connecting strip, 153 supporting strip, 154 dust removal panel, 155 installation horizontal strip, 156 inner entrance, 157 flexible electrostatic dust removal filter element 1, 158 spiral channel 1, 159 through-hole, 1510 spiral channel 2, flexible electrostatic dust removal filter element 2, 1512 stop port, 1513 electrostatic field generator, 1514 drying device, 1515 anode strip, 1516 airflow spiral channel, 1517 flexible adsorption silica gel. DETAILED DESCRIPTION

[0037] The following will describe the implementation methods of the present application in detail with the help of accompanying drawings and examples, so that the implementation process of how the present application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly. Example 1

[0038] like Figure 1-9 As shown, the present invention provides a multi-channel air purification system, comprising:

[0039] The equipment base 1 is connected to the bottom of the shell 2, and the entire air purification system is installed on the shell 2. The filter cotton board assembly 3 is fixed on the left side of the equipment base 1 and the shell 2, and the forced draft system 4 is fixed on the right side of the filter cotton board assembly 3; the forced draft system 4 is used to suck the purified air flowing through the room, and the sucked air flows from the filter cotton board assembly 3 on the left side of the forced draft system 4 to the right side. After the filter cotton board assembly 3 isolates the dust in the airflow, the micropores of the filter cotton board assembly 3 allow air to pass through. The forced draft system 4 is operated by multiple silent airflow fans.

[0040] The grid-type dust removal and filtration system is fixedly connected to the right side of the forced air induced draft system 4. The grid-type dust removal and filtration system includes a grille mounting seat 12, and sealing embedding grooves 13 are equidistantly provided on the grille mounting seat 12. The grid-type dust removal and filtration system also includes an electrostatic adsorption mechanism 15. The electrostatic adsorption mechanism 15 is arranged in a comb-tooth shape. The electrostatic adsorption mechanism 15 is inserted into the sealing embedding groove 13 and is detachably connected to the grille mounting seat 12.

[0041] The grid-type dust removal and filtration system is used to absorb finer dust in the air. During the use of the electrostatic adsorption mechanism 15, the electrostatic adsorption mechanism 15 is inserted into the sealing embedding groove 13 to seal the sealing embedding groove 13. In this way, the airflow passing through the sealing embedding groove 13 can completely remove the dust in the airflow under the action of the electrostatic adsorption mechanism 15. The grid mounting seat 12 is used in conjunction with the electrostatic adsorption mechanism 15, and the electrostatic adsorption mechanism 15 can be disassembled regularly, which improves the convenience of cleaning. Example 2

[0042] Reference Figure 8 and Fig. 9As shown, the electrostatic adsorption mechanism 15 includes a mounting horizontal bar 155, and a mesh plate vertical sealing strip 151 is fixedly connected to one side of the mounting horizontal bar 155 at an equal distance. The mesh plate vertical sealing strip 151 is abutted against the inner wall of the sealing embedding groove 13 on all sides, and the upper and lower sides of the left side of the mesh plate vertical sealing strip 151 are fixedly connected to supporting strips 153, and the left side of the mesh plate vertical sealing strip 151 is fixedly connected to a vertical connecting strip 152, a dust removal panel 154 is arranged between the mesh plate vertical sealing strip 151 and the two supporting strips 153, and a space is arranged between the mesh plate vertical sealing strip 151 and the dust removal panel 154. A spiral channel 158 is provided on the dust removal panel 154, and a spiral channel 2 1510 is provided at a corresponding position on the opposite side of the dust removal panel 154. The inner cavities of spiral channel 158 and spiral channel 2 1510 are connected through a connecting port 159. An inner entrance 156 is provided on the left side of the inner cavity of spiral channel 158, and a stop port 1512 is provided on the right side of the inner cavity of spiral channel 2 1510. A flexible core is provided in spiral channel 158 and spiral channel 2 1510. The flexible core includes a flexible electrostatic dust filter element 157 and a flexible electrostatic dust filter element 2 1511. The right end of the flexible electrostatic dust filter element 1 157 is fixedly connected to the flexible electrostatic dust filter element 2 1511.

[0043] During the use of the electrostatic adsorption mechanism 15, there is a gap between the flexible core sleeved in the spiral channel 1 158 and the spiral channel 2 1510 and the inner wall of the flexible core sleeved in the spiral channel 1 158 and the spiral channel 2 1510. When the airflow passes through the gap, since the spiral channel 1 158 and the spiral channel 2 1510 are respectively arranged on the front and rear sides of the dust removal panel 154, when the airflow passes, it will flow irregularly along the cavity shape of the spiral channel 1 158 and the spiral channel 2 1510, so that the passing airflow can contact the surface of the flexible core over a large area, which can improve the adsorption effect of dust in the airflow, thereby improving the purification efficiency and quality. The overall dust removal panel 154 is arranged between the vertical sealing strip 151 of the mesh plate and the two supporting strips 153. When the electrostatic adsorption mechanism 15 is taken out from the sealing embedding groove 13, it is more convenient. In the specific process of cleaning the electrostatic adsorption mechanism 15, the flexible core can be pulled out from the spiral channel 1 158 and the spiral channel 2 1510, so that the dust on the flexible core can be effectively cleaned.

[0044] Reference Fig.10 As shown, the flexible electrostatic dust removal filter element 157 includes a flexible adsorption silica gel 1517, and the flexible adsorption silica gel 1517 is arranged in the spiral channel 158 and the spiral channel 2 1510. An airflow spiral channel 1516 is arranged on the surface of the flexible adsorption silica gel 1517, an electrostatic field generator 1513 is arranged at the left end of the flexible adsorption silica gel 1517, a drying device 1514 is arranged on the left end surface of the flexible adsorption silica gel 1517, and an anode strip 1515 is arranged in the airflow spiral channel 1516.

[0045] In the above implementation process, when the electrostatic field generator 1513 on the flexible electrostatic dust removal filter element 157 is energized with the overall system, the electrostatic field generator 1513 can further increase the charge in the statically charged airflow, and the dust-containing gas is electrically separated when passing through the high-voltage electrostatic field. After the dust particles are combined with negative ions and carry negative charges, the air molecules are ionized into positive ions and electrons in the strong electric field. When the electrons rush to the positive electrode, they encounter dust particles and dust in the airflow at the same time, so that the dust particles are negatively charged and adsorbed to the positive electrode and collected. In this way, the airflow originally passing through the airflow spiral channel 1516 contacts the anode bar 1515, and then the dust can be adsorbed on the surface of the anode bar 1515, so that the purpose of dust removal can be quickly achieved. Example 3

[0046] A multi-channel air purification system includes a heat flow system, the heat flow system is in an n-shaped design, the heat flow system includes a vertical heat flow device and a longitudinal heat flow device, the vertical heat flow device includes a longitudinal heat flow device 9, a vertical heating device 10 is arranged inside the longitudinal heat flow device 9, the longitudinal heat flow device 9 includes a top longitudinal heater 5, an operation area panel 6 is arranged on the top of the top longitudinal heater 5, and an air outlet 7 is arranged on the right side of the top longitudinal heater 5;

[0047] Reference Figure 2 As shown, the channel panel 8 is arranged in a mounting opening 11 on the right side of the shell 2. The channel panel 8 is used to discharge the purified air, and the channel panel 8 has an opening and closing state. When the channel panel 8 is closed, the airflow enters the heat flow system. When the channel panel 8 is opened, the airflow is discharged from the channel panel 8. Vertical openings are provided on the inner wall of the mounting opening 11 near the vertical heat flow device and the longitudinal heat flow device. A pressure membrane 14 is provided in the vertical opening. A cross cut is provided on the pressure membrane 14, and the edges of the cross cut are in contact with each other.

[0048] When air purification is performed, the channel panel 8 is set to an open state, and the airflow is discharged from the channel panel 8 to the outside. When the heat flow system is used, the channel panel 8 is closed, and the airflow enters the heat flow system, and the air pressure in the inner cavity of the installation port 11 increases, and the air pressure applies pressure to the pressure membrane 14. Since a cross cut is provided on the pressure membrane 14, the edges of the cross cut are in contact with each other. After the cross is compressed, the pressure membrane 14 is in an open state, and the internal purified airflow can move from the pressure membrane 14 to the heat flow system. When the airflow passes through the heat flow system, the internal heating element is turned on to increase the temperature of the airflow. In this way, the purification system can be used in low temperature weather and the temperature of the purified air can be increased. This has strong functionality and makes the heat flow system cleaner inside when in use.

[0049] Reference Figure 3, Figure 4 , Figure 5 , Figure 6 and Figure 7 As shown, the channel panel 8 includes a square sleeve 81, a U-shaped frame 82 is fixedly connected to the top of the square sleeve 81, a closed grille mechanism is arranged at an equal distance on the top of the square sleeve 81 and inside the U-shaped frame 82, protrusions 83 are fixedly connected to the front and rear sides of the closed grille mechanism and the front and rear sides of the inner wall of the U-shaped frame 82, and a sealing strip 84 is arranged on the square sleeve 81 and inside the two closed grille mechanisms.

[0050] The closed grille mechanism includes a two-way rotating mechanism, which is arranged in the closed grille mechanism. The driving mechanism assembly is arranged in the inner cavity of the square sleeve 81. The driving mechanism causes the two-way rotating mechanisms in the multiple closed grille mechanisms to move, and the two-way rotating mechanisms are provided with closed blades 813 that rotate in opposite directions. The two-way rotating mechanism includes a through-rotating rod 810, which passes through the square sleeve 81 and can rotate on the square sleeve 81. The bottom end of the through-rotating rod 810 is fixedly connected to a guide gear 89, and a fixed sleeve 814 is sleeved on the through-rotating rod 810. The fixed sleeve 814 is fixedly connected to the bottom of the inner wall of the closed grille mechanism. The top end of the through-rotating rod 810 is sleeved with a mounting ring 821, and a fixed round seat 820 is sleeved on the mounting ring 821. The fixed round seat 820 is sleeved with an active rotating ring 816, and a driven ring 815 is provided on the active rotating ring 816. The driven ring 815 rotates in the opposite direction to the active rotating ring 816. The top of the driven ring 815 rotates in the opposite direction to the active rotating ring 816. A linkage sleeve 811 is fixedly connected, and an adapter ring 1 817 is fixedly connected to the top of the linkage sleeve 811. A linkage rod 819 is provided inside the linkage sleeve 811. The bottom end of the linkage rod 819 is fixedly connected to the top of the mounting ring 821. The top end of the linkage rod 819 passes through the adapter ring 1 817 and is fixedly connected to the inner wall of the adapter ring 2 818. The adapter ring 1 817 is rotatably connected to the adapter ring 2 818. The surfaces of the adapter ring 1 817 and the driven ring 815 are fixedly connected with the closing blade 813 through the connecting piece 812. The surfaces of the adapter ring 2 818 and the active rotating ring 816 are fixedly connected with the closing blade 813 through the connecting piece 812. The driving mechanism assembly includes a forward and reverse motor 85, and a rotating rod 86 is fixedly connected to the output end of the forward and reverse motor 85. A driving gear 87 is fixedly connected to the rotating rod 86 at an equal distance. The teeth 88 on the driving gear 87 mesh with the guide gear 89. A rotating shaft sleeve 823 is fixedly connected to the bottom of the driven ring 815, an annular groove 822 is provided on the top of the active rotating ring 816, the rotating shaft sleeve 823 is fixedly connected in the annular groove 822, and a gear ring 824 is fixedly connected to the bottom of the driven ring 815 and the bottom of the inner wall of the annular groove 822, and the two gear rings 824 are connected through a transmission gear 825.

[0051] By setting the channel panel 8, when the channel panel 8 is closed, the forward and reverse motor 85 is started, and the output end of the forward and reverse motor 85 drives the rotating rod 86 to rotate, and the multiple driving gears 87 on the rotating rod 86 can drive the guide gear 89 to rotate, and then the guide gear 89 drives the through-rotating rod 810 to rotate, and then the active rotating ring 816 rotates. Since the toothed ring 824 is arranged on the through-rotating rod 810 to rotate, it is affected by the transmission gear 825, so that the toothed ring 824 above the transmission gear 825 can rotate in the opposite direction to the lower direction, and then the driven ring 815 and the active rotating ring 816 are rotated. The ring 816 rotates in the opposite direction. At this time, the linkage sleeve 811 connected to the driven ring 815 rotates in the same direction, so that the driven ring 815 and the adapter ring 1 817 rotate synchronously, so that one of the closed blades 813 can rotate, and the other closed blade 813 rotates in the opposite direction on the adapter ring 2 818 and the active rotating ring 816, and then the two closed blades 813 can be rotated out of the closed grille mechanism, and then the closed blade 813 can contact the protrusion 83 and one side of the sealing strip 84, and then the closed grille mechanism can be closed, so that function switching can be performed.

[0052] The above description shows and describes several preferred embodiments of the present invention, but as before, it should be understood that the present invention is not limited to the form disclosed herein, and should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be modified within the scope of the invention concept of this article through the above teachings or the technology or knowledge of the relevant field. And the changes and modifications made by those skilled in the art do not depart from the spirit and scope of the present invention, and should be within the scope of protection of the claims attached to the present invention.

Claims

1. A multi-channel air purification system, characterized in that: include: The equipment base is connected to the bottom of the housing, and the entire air purification system is installed on the housing. The air filter cotton board assembly is fixed to the left side of the equipment base and the housing, and the forced air induced system is fixed to the right side of the air filter cotton board assembly; A mesh dust removal and filtration system, the mesh dust removal and filtration system is fixedly connected to the right side of the forced air induced system, the mesh dust removal and filtration system comprises a grille mounting seat, the grille mounting seat is provided with sealing embedding grooves at equal distances, and also comprises an electrostatic adsorption mechanism, the electrostatic adsorption mechanism is arranged in a comb tooth shape, the electrostatic adsorption mechanism is inserted into the sealing embedding groove, and is detachably connected to the grille mounting seat; A heat flow system, wherein the heat flow system is of n-shaped design, and comprises a vertical heat flow device and a longitudinal heat flow device, wherein the vertical heat flow device comprises a longitudinal heat flow device, wherein a vertical heating device is arranged inside the longitudinal heat flow device, wherein the longitudinal heat flow device comprises a top longitudinal heater, wherein an operation area panel is arranged on the top of the top longitudinal heater, and an air outlet is arranged on the right side of the top longitudinal heater; A channel panel, the channel panel is arranged in a mounting opening on the right side of the housing, the channel panel is used to discharge the purified air, and the channel panel has an opening and closing state. When the channel panel is closed, the airflow enters the heat flow system, and when the channel panel is opened, the airflow is discharged from the channel panel; The channel panel includes a square sleeve, a U-shaped frame is fixedly connected to the top of the square sleeve, a closed grille mechanism is arranged at an equal distance on the top of the square sleeve and inside the U-shaped frame, the closed grille mechanism includes a two-way rotation mechanism, the two-way rotation mechanism is arranged inside the closed grille mechanism, a driving mechanism assembly is arranged in the inner cavity of the square sleeve, the driving mechanism causes the two-way rotation mechanisms in the multiple closed grille mechanisms to move, and the two-way rotation mechanisms are provided with closed blades rotating in opposite directions.

2. A multi-channel air purification system according to claim 1, characterized in that: The two-way rotation mechanism includes a through rotating rod, which passes through the square sleeve and is rotatable on the square sleeve. The bottom end of the through rotating rod is fixedly connected to the guide gear, the through rotating rod is provided with a fixing sleeve, and the fixing sleeve is fixedly connected to the bottom of the inner wall of the closed grille mechanism. The top end of the through rotating rod is provided with a mounting ring, the mounting ring is provided with a fixing round seat, the fixing round seat is provided with an active rotating ring, and the active rotating ring is provided with a driven ring. The driven ring rotates in the opposite direction to the active rotating ring, and the top of the driven ring is fixedly connected with a linkage sleeve, and the top of the linkage sleeve is fixedly connected with an adapter ring 1, a linkage rod is provided inside the linkage sleeve, the bottom end of the linkage rod is fixedly connected to the top of the mounting ring, and the top of the linkage rod passes through the adapter ring 1 and is fixedly connected to the inner wall of the adapter ring 2.

3. The multi-channel air purification system according to claim 1, characterized in that: The electrostatic adsorption mechanism includes a mounting horizontal bar, one side of which is fixedly connected with a vertical sealing strip of the mesh panel at equal distances, the vertical sealing strip of the mesh panel abuts against the inner wall of the sealing embedding groove on all sides, the upper and lower sides of the left side of the vertical sealing strip of the mesh panel are fixedly connected with supporting strips, the left side of the vertical sealing strip of the mesh panel is fixedly connected with a vertical connecting strip, a dust removal panel is arranged between the vertical sealing strip of the mesh panel and the two supporting strips, and a space is arranged between the vertical sealing strip of the mesh panel and the dust removal panel.

4. The multi-channel air purification system according to claim 3, characterized in that: A spiral channel 1 is provided on the dust removal panel, and a spiral channel 2 is provided at a corresponding position on the opposite side of the dust removal panel. The inner cavities of the spiral channel 1 and the spiral channel 2 are connected through a connecting opening. An inner entrance is provided on the left side of the inner cavity of the spiral channel 1, and a stop opening is provided on the right side of the inner cavity of the spiral channel 2. Flexible cores are provided in the inner sleeves of the spiral channel 1 and the spiral channel 2. The flexible cores include a flexible electrostatic dust filter element 1 and a flexible electrostatic dust filter element 2. The right end of the flexible electrostatic dust filter element 1 is fixedly connected to the flexible electrostatic dust filter element 2.

5. The multi-channel air purification system according to claim 4, characterized in that: The flexible electrostatic dust removal filter element 1 includes flexible adsorption silica gel, and the flexible adsorption silica gel is arranged in the spiral channel 1 and the spiral channel 2. An airflow spiral channel is arranged on the surface of the flexible adsorption silica gel, an electrostatic field generator is arranged at the left end of the flexible adsorption silica gel, a drying device is arranged on the left end surface of the flexible adsorption silica gel, and an anode strip is arranged in the airflow spiral channel.

6. The multi-channel air purification system according to claim 1, characterized in that: The inner wall of the installation opening is provided with vertical openings near the vertical heat flow device and the longitudinal heat flow device. A pressure membrane is arranged in the vertical opening. A cutting cross is arranged on the pressure membrane, and the edges of the cross cuttings are in contact with each other.

7. The multi-channel air purification system according to claim 1, characterized in that: The front and rear sides of the closed grille mechanism and the front and rear sides of the inner wall of the U-shaped frame are fixedly connected with protrusions, and the square sleeve is provided with sealing strips in the two closed grille mechanisms.

8. The multi-channel air purification system according to claim 2, characterized in that: The driving mechanism assembly includes a forward and reverse motor, the output end of the forward and reverse motor is fixedly connected to a rotating rod, and a driving gear is fixedly connected to the rotating rod at an equal distance, and the teeth on the driving gear are meshed with the guide gear.

9. The multi-channel air purification system according to claim 2, characterized in that: The bottom of the driven ring is fixedly connected with a rotating shaft sleeve, the top of the active rotating ring is provided with an annular groove, the rotating shaft sleeve is fixedly connected in the annular groove, the bottom of the driven ring and the bottom of the inner wall of the annular groove are both fixedly connected with gear rings, and the two gear rings are connected through a transmission gear transmission.

10. The multi-channel air purification system according to claim 9, characterized in that: The adapter ring 1 is rotatably connected to the adapter ring 2, the adapter ring 1 and the surface of the driven ring are fixedly connected with closed blades through connecting pieces, and the adapter ring 2 and the surface of the active rotating ring are fixedly connected with closed blades through connecting pieces.

Citation Information

Patent Citations

  • Air purifier

    CN110617570A

  • Internal and external air exchange type formaldehyde purification treatment system and purification method thereof

    CN112915757A