Environment-friendly suspended ceiling structure

By designing an internal circulation filtration device and utilizing wind power to achieve air filtration and internal circulation, the problems of stagnant air and dust ingress in the ceiling structure are solved, achieving environmentally friendly and efficient air filtration and circulation functions.

CN120968174AActive Publication Date: 2025-11-18CSCEC STRAIT CONSTR & DEV
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Patent Information

Application Number
CN202510901416.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2025-11-18
Estimated Expiration
2045-07-01

AI Technical Summary

Technical Problem

The existing ceiling structure makes it difficult for indoor air to circulate, and opening windows or using exhaust fans will bring in dust, lacking air filtration and circulation functions.

Method used

Design a green and environmentally friendly ceiling structure that includes an internal circulation filtration device. It utilizes an air intake component, a filter component, a linkage end, a pull-open structure, a dustproof air outlet, and an air outlet pipe to achieve air filtration and internal circulation through wind power as a power source. A dust collection box collects dust.

Benefits of technology

It achieves indoor air filtration and internal circulation, prevents dust from entering the ceiling cavity, saves energy, simplifies the control unit, is easy to operate, and is environmentally friendly and efficient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a green and environment-friendly suspended ceiling structure, which belongs to the technical field of environment-friendly suspended ceiling structures, and structurally comprises suspenders, a keel is horizontally hung between the suspenders, a ceiling structure is horizontally hung on the bottom surface of the keel, and a plurality of internal circulation mounting cavities are formed in the side of the ceiling structure; an internal circulation filtering device is mounted in the internal circulation mounting cavity, and an environment-friendly suspended ceiling structure is formed through the assembling design of the internal circulation filtering device formed by the structural combination design of an air suction assembly, a filtering assembly, a linkage end, a pulling and closing structure, a dustproof air outlet nozzle, an air outlet pipe fitting, a dust collection box and an air suction nozzle in a ceiling structure cavity; wherein the air suction assembly provides a negative-pressure air suction function for the negative-pressure air suction end, the filtering assembly has a dust filtering function and adopts wind energy to automatically and slowly rotate to synchronously brush and sweep a filtering screen, and the whole internal circulation filtering device only adopts one exhaust fan as a power source, is simple and convenient to operate and is more environment-friendly.
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Description

TECHNICAL FIELD

[0001] The present application relates to a kind of green ceiling structure, belong to ceiling structure technical field. BACKGROUND

[0002] Ceiling is also called ceiling, ceiling, and is widely used in decoration engineering.

[0003] The existing ceiling structure is only simply decorated ceiling, and has no other functions, when the room is closed, indoor air is not easy to flow, it can be relatively hot, and over long time using air extractor to draw air from outside into indoor or opening door and window to enhance the flow of indoor air, dust will be brought in, so that the room is prone to dust, to overcome the above-mentioned shortcomings, the present application provides a kind of green ceiling structure. SUMMARY

[0004] To overcome the deficiencies of the prior art, the present application aims to provide a kind of green ceiling structure to solve the existing problems.

[0005] To achieve the above-mentioned purpose, the present application is realized by the following technical scheme: a kind of green ceiling structure, its structure includes suspender, and suspender is horizontally hung with keel between, and the bottom surface of keel is horizontally hung with ceiling structure, the side of the ceiling structure is provided with a plurality of internal circulation installation cavities, and the bottom surface of the internal circulation installation cavity is provided with air inlet, cleaning port and air outlet nozzle port, and the cleaning port is hinged with lid, and the internal circulation installation cavity is provided with internal circulation filter device. The internal circulation filter device includes air suction assembly, and the right side of the air suction assembly cavity is provided with filter assembly, and the left side of the air suction assembly is transversely connected with linkage end, the lower end of the left side of the linkage end is transversely provided with pull-in structure, the lower end of the pull-in structure is connected with dustproof air outlet nozzle for being sleeved on the air outlet nozzle port, the left side of the linkage end is also transversely connected with air outlet pipe, and the lower end of the air outlet pipe extends to the top surface of the air outlet nozzle port after the right side, the lower end of the air suction assembly is connected with dust collection box, and the dust collection box is located above the cleaning port, and the right end of the air suction assembly is connected with air suction nozzle for being sleeved on the air inlet by air inlet hose.

[0006] Further improvement is that the air suction assembly includes shell, and the middle part of the shell cavity is provided with air extractor, and the bottom surface of the shell is provided with dust discharge port, the lower end of the dust discharge port is connected with dust collection hopper for connecting dust collection box, and the left and right sides of the shell are through provided with first air inlet and first air outlet.

[0007] Further improvement, the filter assembly includes a filter frame fixed on the left side of the dust exhaust port, the right side of the filter frame is provided with a filter screen, and the right end of the filter frame is transversely sleeved with a wind energy rotating part, the right side of the wind energy rotating part is connected with a brush, and the left side of the brush is movably and softly abutted with the right side of the filter screen to clean dust. The wind energy rotating part includes a rotating shaft, the left side of the shaft body of the rotating shaft is provided with a clamping edge, the right side of the clamping edge is nested with a pressing rotary disc, the right side of the pressing rotary disc is abutted with a first spring, and the tail part of the right side of the rotating shaft is provided with a negative pressure rotary fan blade.

[0008] Further improvement, the linkage end includes a gas cavity sliding seat, the gas cavity sliding seat is transversely movably sleeved with a gas collection sliding seat group in the cavity, and the upper end of the gas collection sliding seat group is transversely movably inserted with a first sliding rod, and the right end of the rod body of the first sliding rod is sleeved with a second spring for automatically pushing right after the gas collection sliding seat group has no wind kinetic energy.

[0009] Further improvement, the middle part of the gas cavity sliding seat is provided with a gas cavity, the right side of the gas cavity is provided with a second air inlet communicated with the first air outlet, and the right side of the bottom surface of the gas cavity is provided with a second air outlet communicated with the air outlet pipe.

[0010] Further improvement, the gas collection sliding seat group includes a sliding frame, the middle part of the sliding frame is provided with a wind collection through hole, and the left end of the wind collection through hole is connected with a wind collection bag.

[0011] Further improvement, the pull-together structure includes an L-shaped pull rod movably sleeved in the movable port, the tail part of the left side of the L-shaped pull rod is movably sleeved with a stabilizing support, and the lower end of the rod body of the L-shaped pull rod is movably connected with a plurality of pull ropes.

[0012] Further improvement, the dustproof air outlet nozzle includes an air outlet cover plate, the air outlet cover plate is in the shape of a rectangle, and a plurality of air blowing ports are spaced apart on the air outlet cover plate. The hole cover is composed of a fixed seat and a hole cover, and a reset spring is sleeved at the hinge between the fixed seat and the hole cover.

[0013] Further improvement, the air outlet pipe includes an L-shaped air pipe mounted on the second air outlet, and a plurality of flat air tubes are connected to the lower end of the L-shaped air pipe.

[0014] The beneficial effects of the present application are: The present application provides a kind of green ceiling structure, by the structure combination design of suction component, filter component, linkage end, pull together structure, dustproof air outlet nozzle, air outlet pipe, dust collection box and suction nozzle in the assembly design of ceiling structure cavity, constitute a kind of green ceiling structure, wherein suction component provides negative pressure air extraction function for negative pressure air extraction end, and filter component has the function of filtering dust and using wind energy to automatically rotate slowly to carry out synchronous sweeping to filter screen, prevent filter screen from dust blockage, also can make the dust filtered automatically fall into dust collection box and be collected, and linkage end also uses wind energy as power source, linkage pull together structure is pushed and pulled to left, can open each hinged sealing hole cover piece on dustproof air outlet nozzle synchronously, make air outlet pipe interval shunt after filtering air, can be one-to-one corresponding from each air outlet re-inflow indoor, drive indoor air flow, realize the filtering internal circulation operation of indoor air, and hole cover piece automatic reset function can prevent dust in air from passing through each air outlet and entering the top cavity of ceiling structure when no operation.

[0015] In addition, the filter component and linkage end described above use wind energy as power source, so there is no need for additional independent drive end, effectively saving energy consumption, and there is no need to install complex electronic control unit, the entire internal circulation filter device only uses a air extractor as power source, easy to operate, more green. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a schematic view of the present application green ceiling structure; Figure 2 It is a schematic view of the internal circulation filter device structure of the present application; Figure 3 It is a schematic view of the ceiling structure structure of the present application; Figure 4 It is a schematic view of the suction component structure of the present application; Figure 5 It is a schematic view of the filter component structure of the present application; Figure 6 It is a schematic view of the wind energy rotating piece structure of the present application; Figure 7 It is a schematic view of the linkage end structure of the present application; Figure 8 It is a schematic view of the gas collection slide seat group structure of the present application; Figure 9 It is a schematic view of the pull together structure and dustproof air outlet nozzle structure of the present application; Figure 10 It is a schematic view of the air outlet pipe structure of the present application. DETAILED DESCRIPTION

[0017] The technical means, creative features, purposes and effects of the present application are described in detail below with reference to the specific embodiments.

[0018] Please refer to Figures 1-10 The present application provides a kind of green ceiling structure of environmental protection: its structure includes boom 1, and boom 1 is hoisted with keel 2 between horizontally, and keel 2 bottom surface hoists ceiling structure 3 with horizontally, the edge side of ceiling structure 3 is equipped with multiple internal circulation installation cavities 31, and internal circulation installation cavities 31 bottom surface is equipped with air inlet 32, cleaning port 33 and air outlet nozzle port 35, and cleaning port 33 is hinged with lid 34, internal circulation filter device 4 is installed in internal circulation installation cavities 31, internal circulation filter device 4 includes suction assembly 41, and suction assembly 41 cavity right side is provided with filter assembly 42, and suction assembly 41 left side is transversely connected with linkage end 43, linkage end 43 left side lower end is transversely provided with pull-together structure 44, pull-together structure 44 lower end is connected with dustproof air outlet nozzle 45 for being sleeved on air outlet nozzle port 35, linkage end 43 left side lower end is also transversely connected with air outlet pipe 46, and air outlet pipe 46 lower end extends to the top surface rear side of air outlet nozzle port 35 one side after interval, suction assembly 41 lower end is connected with dust collection box 47, and dust collection box 47 is located above cleaning port 33, suction assembly 41 right end is connected with suction nozzle 48 for being sleeved on air inlet 32 through air inlet hose.

[0019] Said suction assembly 41 includes shell 411, and shell 411 cavity middle part is provided with exhaust fan 412, and shell 411 bottom surface right end is equipped with dust discharge port 413, dust discharge port 413 lower end is connected with dust collection hopper 414 for being connected with dust collection box 47, shell 411 left and right sides are through and are equipped with first air inlet 415 and first air outlet 416.

[0020] Said filter assembly 42 includes filter frame 421 fixed to the left side of dust discharge port 413, and filter frame 421 right side is provided with filter screen 422, and filter frame 421 right end is transversely sleeved with wind energy rotating part 423, wind energy rotating part 423 right side is connected with brush 424, and brush 424 left side surface and filter screen 422 right side surface movable softness abutment clean dust, wind energy rotating part 423 includes rotating shaft 4231, and rotating shaft 4231 shaft body left side is provided with clamping edge 4232, and clamping edge 4232 right side surface is nested with abutting rotation disc 4233, abutting rotation disc 4233 right side surface is abutted with first spring 4234, rotating shaft 4231 right side tail part is provided with negative pressure rotating fan blade 4235.

[0021] The linkage end 43 comprises a gas cavity sliding seat 431, and a gas collection sliding seat group 432 is movably sleeved in the cavity of the gas cavity sliding seat 431, and a first sliding rod 433 is movably inserted into the upper end of the gas collection sliding seat group 432, and a second spring 434 is sleeved on the right end of the first sliding rod 433 for automatically pushing the gas collection sliding seat group 432 to the right after no wind power.

[0022] A gas cavity 4311 is formed in the middle of the gas cavity sliding seat 431, a second air inlet 4312 is formed in the right side of the gas cavity 4311 and communicates with the first air outlet 416, and a second air outlet 4313 is formed in the right side of the bottom surface of the gas cavity 4311 and communicates with the air outlet pipe 46, and a movable port 4314 is transversely formed in the left side of the bottom surface of the gas cavity 4311.

[0023] The gas collection sliding seat group 432 comprises a sliding carriage 4321, and a wind collecting port 4322 is formed in the middle of the sliding carriage 4321, and a wind collecting bag 4323 is connected to the left end of the wind collecting port 4322, and a sliding rod port 4324 is formed in the upper end of the sliding carriage 4321, and a plurality of pulleys 4325 are arranged at intervals on the top and bottom sides of the sliding carriage 4321, and the bottom surface of the sliding carriage 4321 movably engages with the top surface of the second air outlet 4313.

[0024] The pull-together structure 44 comprises an L-shaped pull rod 441 movably sleeved in the movable port 4314, and a stabilizing support 442 is movably sleeved on the left side tail of the L-shaped pull rod 441, and a plurality of pull ropes 443 are connected at intervals on the lower end of the rod body of the L-shaped pull rod 441, and a four-sided elastic cloth 444 is sleeved on the right end of the rod body of the L-shaped pull rod 441 for sealing the movable port 4314 against air leakage.

[0025] The dustproof air outlet nozzle 45 comprises an air outlet cover plate 451, and the air outlet cover plate 451 is in the shape of a rectangle, and a plurality of air blowing ports 452 are formed at intervals on the air outlet cover plate 45, and a hole cover 453 movably engages with the top surface of each air blowing port 452, and the hole cover 453 is connected to the lower end of the pull rope 443 on the right side of the top surface of the hole cover 453, and the hole cover 453 is hinged by a fixed seat 4531 and a hole cover 4532, and a reset spring 4533 is sleeved on the hinge between the fixed seat 4531 and the hole cover 4532.

[0026] The air outlet pipe 46 comprises an L-shaped air pipe 461 mounted on the second air outlet 4313, and a plurality of flat air pipes 462 are connected at intervals on the lower end of the L-shaped air pipe 461, and the lower end of each flat air pipe 462 extends obliquely to the upper side of the rear side of the air blowing port 452, and a fixed frame 463 is arranged on the left side of the L-shaped air pipe 461.

[0027] Working principle: When the ceiling structure of the present application opens the indoor circulation to make the indoor air flow, by opening the air extractor 412, the air suction nozzle 48 generates negative pressure to the indoor air, when the air flows into the first air inlet 415, the dust in the air is filtered at the filter screen 422, so that the dust is isolated on the right side surface of the filter screen 422, and the gas flowing into the first air inlet 415 at the same time also blows the negative pressure rotating fan blade 4235 on the wind energy rotating part 423, which slowly rotates the wind energy rotating part 423 under the driving of the wind energy, so that the brush 424 rotates and sweeps the dust on the right side surface of the filter screen 422 as the center, so that the dust falls into the dust collecting hopper 414 and enters the dust collecting box 47. It should be noted that the design of the first spring 4234 always has a leftward pushing force on the brush 424, so that the brush 424 is always in soft abutment with the filter screen 422, and there is no problem of abutment due to the long-term use and wear of the brush 424, which can also reduce the rotating speed of the wind energy rotating part 423, so that the brush 424 realizes slow rotation. Then, after the filtered air passes through the first air outlet 416 and the second air inlet 4312, it enters the air cavity 4311, and the wind energy first flows horizontally through the air collecting port 4322, blows the air collecting bag 4323 to the left, and makes the air collecting slide group 432 move to the left under the action of the pulley 4325. At this time, the second spring 434 is in a tight state, providing a rightward pushing force for the air collecting slide group 432 to move right after losing wind energy power. After the air collecting slide group 432 moves to the left, it also synchronously links the L-shaped pull rod 441 to move leftward. When the L-shaped pull rod 441 moves leftward, each pull rope 443 is pulled leftward, so that the hole cover 4532 on each hole cover part 453 is opened upward. After the wind energy of the air cavity 4311 pushes the air collecting slide group 432 to the left, it flows from the second air outlet 4313 and is blown out from each flat air pipe 462 through the air outlet pipe 46, and then reenters the indoor air through the air outlet 452 with the hole cover 4532 opened, so that the air does not flow into the indoor air from the top surface cavity of the ceiling structure 3, preventing the dust in the top surface cavity of the ceiling structure 3 from being brought into the indoor air, and realizing the automatic filtering and dust removal indoor circulation operation.

[0028] It should be noted that in order to expand the area of the dustproof air outlet 45, a rectangular design is adopted, and the design of each hole cover part 453 seals and protects the air outlet 452 to prevent dust in the air from entering the top surface cavity of the ceiling structure 3 through the air outlet 452. If the dustproof air outlet 45 is designed in a rectangular shape, the sealing effect is poor, and dust is easy to run into the top surface cavity of the ceiling structure 3, and then the air in the indoor circulation is brought into the indoor air.

[0029] In addition, when the air suction fan 412 stops rotating, the synchronous air energy rotating member 423 also stops rotating, and the air collecting bag 4323 on the air collecting slide seat group 432 will not be pulled to the left, at this time, the second spring 434 in a taut state will provide a rightward pushing force to reset the air collecting slide seat group 432 to the right, the synchronous linkage L-shaped pull rod 441 moves to the right, the hole cover member 453 automatically seals and covers the air blowing port 452, so that the dust in the air cannot pass through the air blowing port 452 into the top cavity of the ceiling structure 3.

[0030] The above shows and describes the basic principles and main features of the present application and the advantages of the present application. It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, the scope of the present application is defined by the appended claims rather than the above description, and it is intended to encompass all variations falling within the meaning and scope of the equivalent elements of the claims. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0031] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A green and environmentally friendly suspended ceiling structure, comprising suspension rods, wherein a keel is horizontally suspended between the suspension rods, and a ceiling structure is horizontally suspended from the bottom surface of the keel, characterized in that: The ceiling structure has multiple internal circulation installation cavities on its sides, and the bottom surface of the internal circulation installation cavities is provided with air inlets, cleaning inlets and air outlets at intervals. A cover is hinged to the cleaning inlet. An internal circulation filter device is installed inside the internal circulation installation cavity. The internal circulation filtration device includes an air intake component, and a filter component is arranged on the right side of the air intake component cavity. A linkage end is laterally connected to the left side of the air intake component. A pull-open structure is laterally arranged at the lower left side of the linkage end. The lower end of the pull-open structure is connected at multiple points to dustproof air outlets for fitting onto the air outlet opening. An air outlet pipe is also laterally connected to the lower left side of the linkage end. The lower end of the air outlet pipe extends at intervals to the side of the rear of the top surface of the air outlet opening. A dust collection box is connected to the lower end of the air intake component, and the dust collection box is located above the cleaning opening. An air intake nozzle for fitting onto the air inlet is connected to the right end of the air intake component through an air intake hose.

2. The green and environmentally friendly ceiling structure according to claim 1, characterized in that: The air intake assembly includes a housing, and a fan is provided in the middle of the housing cavity. A dust discharge port is provided at the right end of the bottom surface of the housing. A dust collection hopper for connecting to a dust collection box is connected to the lower end of the dust discharge port. A first air inlet and a first air outlet are provided through the left and right sides of the housing.

3. The green and environmentally friendly ceiling structure according to claim 2, characterized in that: The filter assembly includes a filter frame fixed to the left side of the dust outlet, a filter screen is provided on the right side of the filter frame, and a wind power rotating component is horizontally sleeved on the right end of the filter frame. A brush is connected to the right side of the wind power rotating component, and the left side of the brush moves and softly abuts against the right side of the filter screen to clean the dust. The wind power rotating component includes a rotating shaft, and a retaining edge is provided on the left side of the rotating shaft body. A pressure rotating disk is nested on the right side of the retaining edge. A first spring is abutted against the right side of the pressure rotating disk. A negative pressure rotating fan blade is provided at the right tail of the rotating shaft.

4. The green and environmentally friendly ceiling structure according to claim 3, characterized in that: The linkage end includes an air cavity slide, and an air collecting slide assembly is laterally movably sleeved inside the air cavity slide. A first slide rod is laterally movably inserted at the upper end of the air collecting slide assembly. A second spring is sleeved on the right end of the first slide rod for automatically pushing the air collecting slide assembly to the right when there is no wind kinetic energy.

5. The green and environmentally friendly ceiling structure according to claim 4, characterized in that: The air chamber slide has an air chamber in the middle, and a second air inlet connected to the first air outlet is opened on the right side of the air chamber. A second air outlet for connecting to the air outlet pipe is opened on the right side of the bottom surface of the air chamber, and a movable opening is opened laterally on the left side of the bottom surface of the air chamber.

6. The green and environmentally friendly ceiling structure according to claim 5, characterized in that: The air collecting slide assembly includes a slide frame, and an air collecting port is provided through the middle of the slide frame. An air collecting bag is connected to the left end of the air collecting port. A slide rod port is provided at the upper end of the slide frame. Multiple pulleys are provided at intervals on both sides of the top and bottom of the slide frame. The bottom surface of the slide frame and the top surface of the second air outlet are covered by a movable gap.

7. The green and environmentally friendly ceiling structure according to claim 6, characterized in that: The pull-opening structure includes an L-shaped pull rod that is movably sleeved inside the opening. A stabilizing bracket is movably sleeved on the left tail of the L-shaped pull rod, and multiple pull ropes are connected at intervals to the lower end of the L-shaped pull rod. A four-sided elastic cloth is sleeved on the right end of the L-shaped pull rod to prevent air leakage from the opening.

8. The green and environmentally friendly ceiling structure according to claim 7, characterized in that: The dustproof air outlet includes an air outlet cover plate, which is rectangular in shape and has multiple air blowing ports spaced apart. Each air blowing port has a hole cover piece movably covering its top surface. The right side of the top surface of the hole cover piece is connected to the lower end of the pull rope. The hole cover is composed of a fixed base and a hole cover hinged together, and a return spring is sleeved at the hinge between the fixed base and the hole cover.

9. A green and environmentally friendly ceiling structure according to claim 8, characterized in that: The air outlet fitting includes an L-shaped air duct installed on the second air outlet, and the lower end of the L-shaped air duct is connected with multiple flat air pipes at intervals, and the lower end of each flat air pipe extends obliquely to the side above the rear of the air outlet. A fixing bracket is provided on the left side of the L-shaped air duct.

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