WO2022047829A1 - 一种基于物联网的技术的新风净化一体机 - Google Patents

一种基于物联网的技术的新风净化一体机 Download PDF

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Publication number
WO2022047829A1
WO2022047829A1 PCT/CN2020/115094 CN2020115094W WO2022047829A1 WO 2022047829 A1 WO2022047829 A1 WO 2022047829A1 CN 2020115094 W CN2020115094 W CN 2020115094W WO 2022047829 A1 WO2022047829 A1 WO 2022047829A1
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Prior art keywords
air
pipe
wall
fixedly connected
fresh air
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PCT/CN2020/115094
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English (en)
French (fr)
Inventor
莫永祺
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浙江美臣环境科技有限公司
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Publication of WO2022047829A1 publication Critical patent/WO2022047829A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • F24F11/58Remote control using Internet communication
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/28Arrangement or mounting of filters

Definitions

  • the invention belongs to the technical field of an all-in-one fresh air purification machine, in particular to an all-in-one fresh air purification machine based on the technology of the Internet of Things.
  • Negative ion air purifier is an environment-optimized electrical appliance that uses its own negative ions to purify, dust, deodorize and sterilize the air.
  • the difference of the air purifier is that negative ions are used as the action factor to actively capture harmful substances in the air, while the traditional air purifier uses a fan to extract air and uses a filter to filter dust to purify the air, which is called passive adsorption filter type.
  • Purification principle for the introduction of the fresh air purification integrated machine, please refer to the issue: Yang Xianfei, Xu Laichun, Chen Zhaobin, Analysis of the Standard System of Household Fresh Air Purification Machine, Household Appliances, 2020(02), however, at present, the electric scroll compressor is still There are certain problems, including the following aspects:
  • the ventilation range of the all-in-one fresh air purifier in the prior art is limited, and a fresh air purifier is only limited to purifying the air in a single room, thus limiting the use range of the fresh air purifier.
  • the cost of the fresh air purifier is too high, which is an unrealistic problem for ordinary people's families.
  • impurities are easily accumulated in the fresh air purifier, thereby reducing the service life of the fresh air purifier.
  • the company has designed and developed an integrated fresh air purification machine based on the technology of the Internet of Things to solve the above technical problems.
  • the present invention proposes an all-in-one fresh air purification machine based on the technology of the Internet of Things.
  • the present invention is mainly used to solve the problem that the ventilation range of the current all-in-one fresh air purification machine is limited. It is limited to purify the air in a single room, which limits the scope of use of the fresh air purifier. At the same time, if the fresh air purifier is arranged in each room, the cost is too high, which is an unrealistic problem for ordinary families.
  • an all-in-one fresh air purification machine based on the Internet of Things technology described in the present invention includes a body and a diffusion device; a diffusion disc is fixedly connected to the upper surface of the body, and the diffusion The disc is communicated with the air vent of the body; uniformly arranged ventilation pipes are installed in the inner wall of the diffuser, and control valves are installed in the inner wall of the ventilation pipes, and the control valves are all communicated with the remote control signal; the inner wall of each ventilation pipe A trachea is installed, and the trachea is used to connect the diffusion device; a diffusion device is installed at the other end of each of the trachea, and the diffusion device can be installed in different rooms; each of the diffusion devices includes a fixed plate; The upper surface of the fixed plate is fixed with evenly arranged fixed columns, and the fixed columns are used to be fixed with the wall in the room; each of the fixed plates is fixed with an installation pipe in the inner wall, and the installation pipe is connected with
  • a plate group a first air box is slidably connected in the cavity of each swash plate group, and the first air box is fixedly connected with the auxiliary ring through a spring; the opposite side of each first air box is opposite to the first air box.
  • the inner wall of the air box is provided with evenly arranged first long grooves, and the first long grooves are all designed to penetrate the first air box; the inner wall of the bottom of each of the first air boxes is provided with evenly arranged short grooves, and the short grooves are all arranged.
  • each of the air block cavities is provided with uniformly arranged first through holes; the inner wall of each of the first air boxes is fixedly connected with a partition plate, and the partition plate is placed in the first air box Center position; a second air box is arranged on both sides of each of the partitions, and the internal structure of the second air box is exactly the same as that of the first air box; each of the second air boxes is connected to the The first air box is fixedly connected; a long tube is fixedly connected below each of the support plates, and the long tubes are connected with the rotating tube; the outer surface of each of the long tubes is fixedly connected to the bottom end face of the support plate with a ring light, And the ring light is in communication with the remote control signal; a fan blade is fixedly connected to the outer surface of the long tube under each of the ring lights; an adsorption layer is fixedly connected to the outer surface of the long tube under each of the fan blades, and the adsorption layer is A cavity is opened inside, and the cavity is communicated
  • the ventilation range of the all-in-one fresh air purifier in the prior art is limited, and a fresh air purifier is only limited to purifying the air in a single room, thus limiting the use range of the fresh air purifier.
  • the rooms are equipped with fresh air purifiers, and the cost is too high. It is an unrealistic problem for ordinary people's families.
  • the fresh air purifier made by the present invention can deliver the purified gas to each room by setting a diffusion device, thereby improving the performance of the air purifier.
  • the scope of use of the fresh air purifier can also save costs.
  • the on-off of the ventilation pipe By controlling the on-off of the ventilation pipe, the on-off of the purified gas can be realized in each room, so as to prevent the gas from being transported to the unused room, thereby increasing the At the same time, the dust generated in the room can also be effectively collected, so that the air quality in the room can be further improved.
  • the fresh air purifier made by the present invention first install the diffusion device through the fixed column on the fixed plate In a different room, start the fresh air purifier. When the fresh air purifier is started, the gas purified by the fresh air purifier will be transported to the diffuser plate. Since the ventilation pipe installed in the diffuser plate is provided with a control valve, it can be controlled by the remote control. The on-off of the ventilation pipe can control the delivery of gas to different rooms.
  • the inner wall of the support plate is fixed with evenly arranged turbine discs corresponding to each other. During the process of jetting the arc tube, the turbine disc can be blown to rotate, and the support plate can be driven to rotate during the rotation of the turbine disc. Because the arc tube is facing the back side The auxiliary ring is fixedly connected. When the gas in the auxiliary ring is too much, the gas will flow into the cavity of the inclined plate group through the evenly arranged air groove group. When the air pressure in the cavity of the swash plate group increases, the first air box will be pushed out of the support plate.
  • the cavity in the air block will correspond to the air channel.
  • the gas flowing into the first air box through the first long groove will flow into the cavity in the air block through the air channel. , and then sprayed to the outside through the evenly arranged first through holes.
  • the range of the air block can be increased, so that the gas can be diffused in the room more comprehensively, thereby improving the The quality of the air in the room, and at the same time cooperate with the support plate to drive the rotation of the first air box, so that the degree of gas diffusion can be improved, thereby further improving the quality of the air in the room, and at the same time, the dust in the room will not be blown up.
  • the gas in the first air box will flow into the second air box. Since the internal structure of the second air box is the same as that of the first air box, the second air box can be partially pushed out of the first air box. At the same time, in the process of jetting the second air box, the diffusion range of the gas can be increased, so that the purified gas can be quickly filled in the room, thereby improving the air quality in the room. Since the outer surface of the long pipe is fixed with fan blades , during the rotation of the support plate, it can be Drive the fan blade to rotate, and the gas diffusion can be blown during the rotation of the fan blade, thereby further improving the degree of gas diffusion.
  • the gas in the installation pipe can pass through the second through hole in the adsorption layer.
  • the hole flows in, and the rotation of the fan blades can improve the diffusion degree of the gas.
  • the ring light is installed at the bottom of the support plate, the room can be illuminated.
  • the fresh air purifier is ventilating, the first liquid tank and the second The liquid tank will slide to the initial state. At this time, the gas in the room will flow into the long pipe through the second through hole, and then flow into the fresh air purifier through the long pipe for ventilation.
  • a collection bin is engaged with the bottom of each of the long pipes through threads; a uniformly arranged filter layer is fixedly connected to the cavity of each of the adsorption layers, and the filter layers correspond to the second through holes;
  • Each of the filter layers is provided with a cavity, and the cavity is communicated with the lower part of the filter layer; each of the filter layers is fixedly connected with a hose, and the hose is connected with the cavity in the filter layer; each The hoses all extend into the collection bin;
  • the gas will flow into the adsorption layer through the second through hole. Since there is a cavity in the filter layer installed in the cavity of the adsorption layer, the gas flowing into the adsorption layer will pass through the filter layer. Into the long tube, the impurity particles in the air will remain in the cavity of the filter layer. Since the hose fixed in the cavity of the filter layer is connected to the cavity of the filter layer, the impurities in the cavity of the filter layer will follow part of the gas into the hose. Inside, the gas flowing into the hose flows into the collection bin. During this process, the impurities in the gas in the room can be collected, so as to prevent the impurities from flowing into the fresh air purifier, thereby affecting the purification effect of the fresh air purifier. Improve the service life of the fresh air purifier.
  • each of the long pipes is provided with evenly arranged chutes, and the permeable layers are fixedly connected with the sliding blocks in the sliding grooves; each of the sliding blocks is connected with the sliding grooves through a spring; The permeable layer is placed above the adsorption layer in the initial state;
  • the permeable layer can block the impurities in the collection bin, thereby preventing the impurities from flowing into the fresh air purifier, thereby affecting the purification process of the fresh air purifier.
  • the permeable layer can be pushed to move below the adsorption layer. During this process, impurities can be prevented from flowing into the adsorption layer, thereby polluting the air quality in the room.
  • the fresh air purifier is changing In the process of gas flow, since the pressure on the permeable layer disappears, the permeable layer moves back to the top of the adsorption layer under the action of the spring pressure.
  • the gas flowing into the long tube from the adsorption layer needs to pass through the permeable layer.
  • Improve the collection of impurities in the room air thereby further preventing impurities from flowing into the fresh air purifier, affecting the process of the fresh air purifier purifying the gas, and at the same time improving the service life of the fresh air purifier.
  • a section plate is slidably connected to the outer surface of the long tube on the opposite side of each of the chute; the outer surface of each section plate is rotatably connected to a liquid tank; the inner wall of each long tube is provided with a The first liquid holes are evenly arranged; the second liquid holes are evenly arranged in the inner wall of each segment plate; the inner wall of each of the permeable layers is fixed with an extrusion block through a long rod, and the extrusion blocks are In the chute; an airbag is fixedly connected in each of the chute, and the airbag includes part of the first liquid hole design;
  • the extrusion block When working, because the permeable layer is fixed with the extrusion block through the long rod, the extrusion block will be driven to move downward during the downward movement of the permeable layer, and the air bag will be squeezed during the downward movement of the extrusion block.
  • the gas in the air bag Through the first liquid hole and the second liquid hole communicating with the liquid tank, the gas in the air bag will flow into the liquid tank, and the gas flowing into the liquid tank can spray the liquid in the liquid tank through the first liquid hole and the second liquid hole, During this process, the collected impurities can be sprayed, so that the impurities can be solidified into blocks, preventing the impurities from floating everywhere and floating into the fresh air purifier.
  • Move down when the owner sees the collection bin moving downward, he will clean up the impurities in the collection bin and replenish the liquid tank with liquid. In this process, it can prevent too much impurities in the collection bin and affect the collection process.
  • a communication pipe is fixedly connected in the inner wall of the machine body, and the communication pipe can be installed on the perforated window glass; the outer surface of the communication pipe is connected with evenly arranged suction cups by threaded rotation, and the number of suction cups is two;
  • the connecting pipe When working, since the connecting pipe can be installed on the perforated glass, it can prevent the fresh air purifier from needing to punch holes in the wall during the installation process, which is laborious and laborious. By using the matching glass window, the fresh air purifies The machine can also move the position, thereby reducing the limitations of the fresh air purifier.
  • the connecting pipe When the connecting pipe is inserted into the glass hole, turn the suction cup at this time, and the suction cup can be adsorbed on the glass. In this process, it can prevent the connecting pipe and the glass hole. gaps, so that the gas in the room flows out of the outside world, thereby reducing the quality of the air in the room.
  • a filter plate is hinged at the nozzle of the connecting pipe through a rotating shaft, and the filter plate shields the nozzle design of the connecting pipe; the filter plate is connected to the nozzle through a spring; the right side of the filter plate passes through the inner wall of the connecting pipe A scraper is rotatably connected to the rotating shaft; a filter screen is fixedly connected to the right side of the scraper; an arc-shaped groove is formed under the filter screen;
  • the connecting pipe mouth is connected with a filter plate through the rotation of the rotating shaft, the external impurities can be filtered during the air extraction process of the fresh air purifier, so as to prevent excessive impurities in the air and affect the service life of the fresh air purifier.
  • the filter plate Since the filter plate is fixed with the connecting pipe by the spring, the filter plate can be driven to collide with the connecting pipe during the air extraction process of the connecting pipe. During this process, the impurities on the filter plate can be shaken off, thereby preventing the influence of excessive impurities.
  • the extraction process of the connecting pipe when the gas passes through the filter plate, it will blow the scraper to rotate.
  • the filter screen can be scratched, and the impurities in the filter screen can be hung down during the process. Part of the gas flows out through the arc groove, which can further improve the filtering effect of the external gas in the process.
  • the fresh air purifier made by the present invention can transport the purified gas into each room by setting the diffusion device, so that the use range of the fresh air purifier can be improved, and the cost can be saved at the same time. Realize the on-off of the purified gas in each room, so as to prevent the gas from being transported to the unused room, thereby increasing the cost, and at the same time, it can effectively collect the dust generated in the room, which can further improve the Air quality in the room.
  • the permeable layer can block the impurities in the collection bin, thereby preventing the impurities from flowing into the fresh air purifier, thereby affecting the fresh air purifier.
  • the fresh air purifier when the fresh air purifier is in the process of jetting, due to the pressure of the gas, it can push the permeable layer to move below the adsorption layer. In this process, impurities can be prevented from flowing into the adsorption layer, thereby polluting the air quality in the room.
  • the permeable layer moves back to the top of the adsorption layer under the action of the spring pressure. At this time, the gas flowing into the long pipe from the adsorption layer needs to pass through the permeable layer. In this process, the collection of impurities in the air of the room can be further improved, thereby further preventing impurities from flowing into the fresh air purifier, affecting the process of purifying the gas of the fresh air purifier, and at the same time improving the service life of the fresh air purifier.
  • Fig. 1 is the main body figure of the present invention
  • Fig. 2 is the sectional view of the present invention
  • Figure 3 is a cross-sectional view of the diffusion device of the present invention.
  • Fig. 4 is a partial enlarged view at A in Fig. 3;
  • Fig. 5 is a partial enlarged view at B in Fig. 3;
  • Fig. 6 is a partial enlarged view at C in Fig. 3;
  • Fig. 7 is a sectional view at D-D in Fig. 3;
  • Fig. 8 is a partial enlarged view at E in Fig. 7;
  • body 1 diffuser plate 11, ventilation pipe 12, air pipe 13, suction cup 14, communication pipe 15, filter plate 16, filter screen 17, scraper 18, diffusion device 2, fixed plate 21, installation pipe 22, arc Pipe 23, rotating pipe 24, support plate 241, turbine disk 25, auxiliary ring 26, air groove group 27, swash plate group 28, first air box 3, first long groove 31, air block 33, first through hole 34 , the second air box 35, the ring light 36, the fan blade 37, the long tube 4, the collection bin 41, the adsorption layer 42, the second through hole 43, the hose 44, the permeable layer 45, the liquid tank 46, the extrusion block 47, Airbag 48 and filter layer 49 .
  • FIG. 1 to FIG. 8 an all-in-one fresh air purification machine based on the technology of the Internet of Things according to the present invention is described as follows.
  • an all-in-one fresh air purification machine based on the technology of the Internet of Things includes a body 1 and a diffusion device 2; the upper surface of the body 1 is fixed with a diffusion plate 11, and the diffusion The plate 11 is communicated with the air vent of the body 1; the inner wall of the diffuser plate 11 is provided with uniformly arranged ventilation pipes 12, and the inner wall of the ventilation pipe 12 is equipped with control valves, and the control valves are all communicated with the remote control signal;
  • a trachea 13 is installed in the inner wall of the ventilation pipe 12, and the trachea 13 is used to connect the diffusion device 2; the other end of each of the trachea 13 is equipped with a diffusion device 2, and the diffusion device 2 can be installed in different rooms;
  • Each of the diffusing devices 2 includes a fixed plate 21 ; the upper surface of each fixed plate 21 is fixed with evenly arranged fixed columns, and the fixed columns are used to be fixed with the wall in the room; the inner wall of each of the fixed plates 21 An
  • a support plate 241 is fixed on the outer surface of each of the rotating pipes 24, and the support plate 241 and the rotating pipe 24 are perpendicular to each other; the bottom of each arc-shaped pipe 23 is fixed in the inner wall of the support plate 241
  • turbine disks 25 and the turbine disks 25 and the arc-shaped tubes 23 correspond to each other; each of the turbine disks 25 is fixed with an auxiliary ring 26 on the upper surface of the support plate 241 on the back side, and the auxiliary rings 26 are mutually connected with the fixed disk 21.
  • each auxiliary ring 26 is provided with evenly arranged air groove groups 27; the opposite side of each air groove group 27 is fixedly connected to the inner wall of the support plate 241 with evenly arranged inclined plates Group 28; the cavity of each swash plate group 28 is slidably connected with a first air box 3, and the first air box 3 is fixedly connected with the auxiliary ring 26 through a spring; each of the first air boxes 3 is opposite to each other One side is provided with first long grooves 31 evenly arranged in the inner wall of the first air box 3, and the first long grooves 31 are designed to pass through the first air box 3; each of the first air boxes 3 has a bottom inner wall.
  • each of the missing grooves is hinged with a gas block 33 through a rotating shaft; each of the gas blocks 33 is provided with There is a cavity, and after the air block 33 is rotated, the cavity and the air passage correspond to each other; the cavity of each air block 33 is provided with uniformly arranged first through holes 34 ; the inner wall of each first air box 3 A partition is fixed in the middle, and the partition is placed in the center of the first air box 3; each of the two sides of the partition is provided with a second air box 35, and the internal structure of the second air box 35 is the same as that of the first air box 35.
  • each of the second air boxes 35 is fixedly connected to the first air box 3 through a spring; a long tube 4 is fixed under each of the support plates 241 , and the long tube 4 All communicate with the rotating pipe 24; the outer surface of each long pipe 4 is on the support plate
  • the bottom end face of 241 is fixedly connected with a ring light 36, and the ring light 36 is communicated with the remote control signal; each of the ring lights 36 is fixed with a fan blade 37 on the outer surface of the long tube 4; each of the fan blades 37 Below the outer surface of the long tube 4 is fixedly connected an adsorption layer 42, and a cavity is opened in the adsorption layer 42, and the cavity is communicated with the long tube 4; the inner wall of each adsorption layer 42 is provided with uniformly arranged the second through hole 43;
  • the ventilation range of the all-in-one fresh air purifier in the prior art is limited, and a fresh air purifier is only limited to purifying the air in a single room, thus limiting the use range of the fresh air purifier.
  • the rooms are equipped with fresh air purifiers, and the cost is too high. It is an unrealistic problem for ordinary families.
  • the fresh air purifier made by the present invention can deliver the purified gas to each room by setting the diffusion device 2, so that it can be The use range of the fresh air purifier can be improved, and the cost can be saved at the same time.
  • the on-off of the purified gas can be realized in each room, so as to prevent the gas from being transported to the unused room, thereby The cost is increased, and the dust generated in the room can also be effectively collected, so that the air quality in the room can be further improved.
  • the diffusion device 2 is installed in a different room, and then the fresh air purifier is started. When the fresh air purifier is started, the gas purified by the fresh air purifier will be transported to the diffusion plate 11. Because the ventilation pipe 12 installed in the diffusion plate 11 is provided with a control Therefore, the remote control can be used to control the opening and closing of the ventilation pipe 12, so as to control the delivery of gas to different rooms.
  • the gas enters the ventilation pipe 12 When the gas enters the ventilation pipe 12, it will flow into the installation pipe 22 in the diffusion device 2 through the air pipe 13, and flow into the installation pipe.
  • the gas in 22 will be ejected through the evenly arranged arc pipes 23.
  • the evenly arranged turbine disks 25 are fixedly connected to each other in the inner wall of the support plate 241, the turbine disk 25 can be blown to rotate during the jetting process of the arc pipe 23. , during the rotation of the turbine disk 25, the support plate 241 can be driven to rotate.
  • the auxiliary ring 26 is fixedly connected to the back side of the arc tube 23, when there is too much gas in the auxiliary ring 26, the gas will pass through the evenly arranged air grooves. 27 flows into the cavity of the swash plate group 28.
  • the first air box 3 Since the first air box 3 is connected to the cavity of the swash plate group 28 through a spring sliding, when the air pressure in the cavity of the swash plate group 28 increases, the first air box 3 will be released. The box 3 partially pushes out the support plate 241.
  • the air block 33 in the missing groove of the first air box 3 rotates under the action of gravity.
  • the air block 33 rotates.
  • the cavity in 33 will correspond to the air passage. At this time, the gas flowing into the first air box 3 through the first long groove 31 will flow into the cavity in the air block 33 through the air passage, and then pass through the uniformly arranged No.
  • a through hole 34 is sprayed to the outside, and in the process, by pushing out the first air box 3, the range of the air block 33 can be increased, so that the gas can be diffused in the room more comprehensively, thereby improving the quality of the air in the room At the same time, it cooperates with the support plate 241 to drive the rotation of the first air box 3, so that the diffusion degree of the gas can be improved, thereby further improving the quality of the air in the room, and at the same time, the dust in the room will not be blown up.
  • the first air box 3 After the swash plate group 28 is extended, the gas in the first air box will flow into the second air box 35.
  • the second air box 35 can be divided into two parts.
  • the first air box 3 is pushed out separately, and the diffusion range of the gas can be increased during the jetting process of the second air box 35, so that the purified gas can be quickly filled in the room, thereby improving the air quality in the room.
  • the outer surface of the tube 4 is fixed with a fan blade 37, which can drive the fan blade 37 to rotate during the rotation of the support plate 241, and can blow gas diffusion during the rotation of the fan blade 37, thereby further improving the degree of gas diffusion.
  • a second through hole 43 is opened in the layer 42, the gas in the installation pipe 22 can flow in through the second through hole 43 in the adsorption layer 42, and the rotation of the fan blade 37 can improve the degree of gas diffusion, because the support plate 241 A ring light 36 is installed at the bottom, so that the room can be illuminated.
  • the fresh air purifier is ventilating, the first liquid tank 46 and the second liquid tank 46 will slide to the initial state, and the gas in the room will pass through the first liquid tank.
  • the two through holes 43 flow into the long pipe 4 , and the ventilation is performed by flowing into the fresh air purifier through the long pipe 4 .
  • each long tube 4 is engaged with a collection bin 41 through threads; a uniformly arranged filter layer 49 is fixed in the cavity of each adsorption layer 42, and the filter layer 49 correspond to the second through holes 43; each of the filter layers 49 is provided with a cavity, and the cavity is communicated with the lower part of the filter layer 49; each of the filter layers 49 is fixedly connected with a hose 44, and the hoses 44 communicate with the inner cavity of the filter layer 49; each of the hoses 44 extends into the collection bin 41;
  • the gas will flow into the adsorption layer 42 through the second through hole 43. Since the filter layer 49 installed in the cavity of the adsorption layer 42 has a cavity, the gas flows into the adsorption layer 42. The gas will flow into the long pipe 4 through the filter layer 49, and the impurity particles in the air will remain in the cavity of the filter layer 49. Since the hose 44 fixed in the cavity of the filter layer 49 is connected with the cavity of the filter layer 49, the filter layer 49 The impurities in the cavity will follow part of the gas into the hose 44, and the gas flowing into the hose 44 will flow into the collection bin 41.
  • the impurities in the gas in the room can be collected, thereby preventing the impurities from flowing into the fresh air.
  • the purifier which affects the purification effect of the fresh air purifier, and at the same time can improve the service life of the fresh air purifier.
  • each long tube 4 is provided with evenly arranged chute, and the permeable layer 45 is fixed in the chute through the slider; each slider is connected by a spring connected with the chute; each of the permeable layers 45 is placed above the adsorption layer 42 in the initial state;
  • the permeable layer 45 can block the impurities in the collection bin 41, thereby preventing the impurities from flowing into the fresh air purifier, thereby affecting the purification of the fresh air purifier.
  • the permeable layer 45 can be pushed to move below the adsorption layer 42, in this process, impurities can be prevented from flowing into the adsorption layer 42, thereby polluting the air quality in the room , when the fresh air purifier is in the process of ventilation, because the pressure on the permeable layer 45 disappears, the permeable layer 45 moves back to the top of the adsorption layer 42 under the action of the spring pressure, and at this time flows from the adsorption layer 42 into the long pipe 4 The gas needs to pass through the permeable layer 45.
  • the collection of impurities in the room air can be further improved, thereby further preventing impurities from flowing into the fresh air purifier, affecting the process of the fresh air purifier purifying the gas, and at the same time improving the fresh air purifier. service life.
  • each chute is connected to the outer surface of the long pipe 4 through a spring sliding connection with a segment plate; the outer surface of each segment plate is rotatably connected with a liquid tank 46; each The inner wall of the long pipe 4 is provided with uniformly arranged first liquid holes; the inner wall of each segment plate is provided with evenly arranged second liquid holes; the inner wall of each of the permeable layers 45 is fixedly connected by a long rod. Extrusion blocks 47, and the extrusion blocks 47 are all placed in the chute; an airbag 48 is fixedly connected in each of the chute, and the airbag 48 includes part of the first liquid hole design;
  • the extrusion block 47 will be driven to move downward during the downward movement of the permeable layer 45, and the extrusion block 47 will be squeezed during the downward movement of the extrusion block 47.
  • the air bag 48 is pressed, because the air bag 48 communicates with the liquid tank 46 through the first liquid hole and the second liquid hole, the gas in the air bag 48 will flow into the liquid tank 46.
  • the gas flowing into the liquid tank 46 can pass the liquid in the liquid tank 46 through.
  • the first liquid hole and the second liquid hole are sprayed out.
  • the collected impurities can be sprayed, so that the impurities can be solidified into blocks and prevent the impurities from floating everywhere into the fresh air purifier.
  • the collection bin 41 will gradually move downward under the action of gravity.
  • the householder sees the collection bin 41 moving downward, he will clean up the impurities in the collection bin 41 and replenish the liquid tank 46 with liquid.
  • the impurities in the collection bin 41 can be prevented from being too much, which affects the collection process.
  • a communication pipe 15 is fixedly connected to the inner wall of the body 1, and the communication pipe 15 can be installed on the perforated window glass; the suction cups 14, and the number of suction cups 14 is two;
  • the communication pipe 15 can be installed on the perforated glass, it can prevent the fresh air purifier from needing to punch holes in the wall during the installation process, which is laborious and laborious.
  • the purifier can also be moved, thereby reducing the limitations of the fresh air purifier.
  • the suction cup 14 is rotated at this time, and the suction cup 14 can be adsorbed on the glass, which can prevent the connecting pipe and the glass during this process. There are gaps between the holes, allowing the air in the room to flow out of the outside world, thereby reducing the quality of the air in the room.
  • a filter plate 16 is hinged at the nozzle of the connecting pipe through a rotating shaft, and the filter plate 16 blocks the nozzle design of the connecting pipe; the filter plate 16 is connected to the nozzle through a spring; the filtering A scraper 18 is rotatably connected to the inner wall of the connecting pipe on the right side of the plate 16 through a rotating shaft; the right side of the scraper 18 is fixedly connected with a filter screen 17 ;
  • the filter plate 16 Since the filter plate 16 is fixedly connected to the connecting pipe by the spring, the filter plate 16 can be driven to collide with the connecting pipe during the pumping process of the connecting pipe, and the impurities on the filter plate 16 can be shaken off during this process, thereby preventing Excessive impurities affect the pumping process of the connecting pipe. When the gas passes through the filter plate 16, it will blow the scraper 18 to rotate.
  • the filter screen 17 can be scratched, and the filter can be removed during this process.
  • the impurities in the net 17 hang down, and part of the gas flows out through the arc-shaped groove, which can further improve the filtering effect of the external gas in the process.
  • the fresh air purifier made by the present invention When working, when using the fresh air purifier made by the present invention, first install the diffusion device 2 in different rooms through the fixed column on the fixed plate 21, and then start the fresh air purifier. When the fresh air purifier is started, the fresh air purifier purifies. The gas will be delivered to the diffuser plate 11. Since the ventilation pipe 12 installed in the diffuser plate 11 is provided with a control valve, the remote control can be used to control the on-off of the ventilation pipe 12. When the gas enters the ventilation pipe 12, it will pass through the air pipe 13. The gas flowing into the installation pipe 22 in the diffusion device 2 will be ejected through the evenly arranged arc-shaped pipes 23.
  • the turbine disk 25 can be blown to rotate, and the support plate 241 can be driven to rotate during the rotation of the turbine disk 25. Since the arc-shaped pipe 23 is fixedly connected to the back side with the auxiliary ring 26, when the auxiliary ring 26 is inside the auxiliary ring 26 When there is too much gas, the gas will flow into the cavity of the inclined plate group 28 through the evenly arranged air groove groups 27.
  • the first air box 3 Since the first air box 3 is connected to the cavity of the inclined plate group 28 through spring sliding, when the cavity of the inclined plate group 28 is connected When the air pressure inside increases, the first air box 3 will be partially pushed out of the support plate 241 at this time.
  • the air block 33 in the missing groove of the first air box 3 will be under the force of gravity.
  • the cavity in the air block 33 Under the action of rotation, when the air block 33 rotates, the cavity in the air block 33 will correspond to the air channel, and the gas flowing into the first air box 3 through the first long groove 31 will flow into the air block through the air channel.
  • the gas in the first air box will flow into the second air box 35, Since the internal structure of the second air box 35 is the same as that of the first air box 3 , the second air box 35 can be partially pushed out of the first air box 3 , and at the same time, the gas diffusion range can be improved during the jetting process of the second air box 35 , so that the purified gas can be quickly filled in the room, thereby improving the air quality in the room. Since the outer surface of the long pipe 4 is fixed with the fan blade 37, the fan blade 37 can be driven to rotate during the rotation of the support plate 241.
  • the gas in the installation pipe 22 can pass through the adsorption layer 42.
  • the two through holes 43 flow in, and the rotation of the fan blades 37 can improve the degree of gas diffusion.
  • the bottom of the support plate 241 is installed with a ring light 36, the room can be illuminated.
  • the fresh air purifier is ventilating, the first The first liquid tank 46 and the second liquid tank 46 will slide to the initial state. At this time, the gas in the room will flow into the long pipe 4 through the second through hole 43, and then flow into the fresh air purifier through the long pipe 4 for ventilation.

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Abstract

一种基于物联网的技术的新风净化一体机,属于新风净化一体机技术领域;包括机体(1)和扩散装置(2);所述机体(1)上表面固连有扩散盘(11),且扩散盘(11)与机体(1)通风口连通;所述扩散盘(11)内壁中安装有均匀布置的通风管(12),且通风管(12)内壁中均安装有控制阀;每个所述通风管(12)内壁中均安装有气管(13),且气管(13)用于连接扩散装置(2);每个所述气管(13)另一端均安装有扩散装置(2),且扩散装置(2)可安装在不同的房间内;主要用于解决目前的新风净化一体机的换气范围有限,一台新风净化机仅限于对单独的一个房间进行空气净化,从而限制新风净化机的使用范围,同时若在每个房间都布置新风净化机,成本又太高,对于普通老百姓家庭来说不太现实的问题。

Description

一种基于物联网的技术的新风净化一体机 技术领域
本发明属于新风净化一体机技术领域,具体的说是一种基于物联网的技术的新风净化一体机。
背景技术
随着经济的发展,现在环境污染问题变得越来越严重,污染源也趋向于多样化。室外的雾霾PM2.5等大气污染已经不再是局部地区的偶发现象,正变得越来越常见。同时室内因为装修或者家具等甲醛、苯、有机挥发物等污染也越来越常见了。如何改善室内空气质量对于现代人来说正变得越来越重要,负离子空气净化器是一种利用自身产生的负离子对空气进行净化、除尘、除味、灭菌的环境优化电器,其与传统的空气净化器的不同之处是以负离子作为作用因子,主动出击捕捉空气中的有害物质,而传统的空气净化器是风机抽风,利用滤网过滤粉尘来净化空气,称为被动吸附过滤式的净化原理,关于新风净化一体机的介绍,可参见刊期:杨贤飞,许来春,陈赵斌,家用新风净化机标准体系解析,日用电器,2020(02),但是,目前电动涡旋压缩机仍存在一定的问题,具体包括以下方面:
现有技术中的新风净化一体机的换气范围有限,一台新风净化机只仅限于对单独的一个房间进行空气净化,从而限制的新风净化机的使用范围,同时若在每个房间都布置新风净化机,成本又太高对于普通老百姓家庭来说不太现实的问题,同时新风净化机内容易堆积杂质,从而降低新风净化机的使用寿命。
现有技术中也有一些关于新风净化一体机的方案,如专利号:201510039423.9,专利名称为一种新风净化一体机的方案,该技术方案通过将气体输入地板静压箱,在通过地板出风口流出,可以提高气体的扩散范围,但是气体在流出的过程中会将地板上的灰尘吹入空气中,从而再次污染气体。
鉴于此,为了克服上述技术问题,本公司设计研发了一种基于物联网的技术的新风净化一体机,解决了上述技术问题。
发明内容
为了弥补现有技术的不足,本发明提出的一种基于物联网的技术的新风净化一体机,本发明主要用于解决目前的新风净化一体机的换气范围有限,一台新风净化机只仅限于对单独的一个房间进行空气净化,从而限制的新风净化机的使用范围,同时若在每个房间都 布置新风净化机,成本又太高对于普通老百姓家庭来说不太现实的问题。
本发明解决其技术问题所采用的技术方案是:本发明所述的一种基于物联网的技术的新风净化一体机,包括机体和扩散装置;所述机体上表面固连有扩散盘,且扩散盘与机体通风口连通;所述扩散盘内壁中安装有均匀布置的通风管,且通风管内壁中均安装有控制阀,且控制阀均与遥控器信号连通;每个所述通风管内壁中均安装有气管,且气管用于连接扩散装置;每个所述气管另一端均安装有扩散装置,且扩散装置可安装在不同的房间内;每个所述扩散装置包括固定盘;每个所述固定盘上表面均固连有均匀布置的固定柱,且固定柱用于与房间内墙体固定;每个所述固定盘内壁中固连有安装管,且安装管均与气管连通;每个所述安装管均贯穿固定盘设计;每个所述固定盘下方于安装管内壁中固连有均匀布置的弧形管,且弧形管均朝安装管方向倾斜设计;每个所述安装管下方于安装管内壁中均设有转管,且转管均与安装管转动连接;每个所述转管外表面均固连有支撑板,且支撑板与转管相互垂直;每个所述弧形管下方于支撑板内壁中均固连有涡轮盘,且涡轮盘与弧形管相互对应;每个所述涡轮盘向背一侧于支撑板上表面固连有辅助环,且辅助环均与固定盘相互贴合;每个所述辅助环内壁中均开设有均匀布置的气槽组;每个所述气槽组相背一侧于支撑板内壁中均固连有均匀布置的斜板组;每个所述斜板组空腔内均滑动连接有第一气箱,且第一气箱均通过弹簧与辅助环固连;每个所述第一气箱相对一侧于第一气箱内壁中开设有均匀布置的第一长槽,且第一长槽均贯通第一气箱设计;每个所述第一气箱底部内壁中开设有均匀布置的缺槽,且缺槽均通过气道与第一气箱内空腔连通;每个所述缺槽内均通过转轴铰接有气块;每个所述气块内均开设有空腔,且气块转动后空腔与气道相互对应;每个所述气块空腔内均开设有均匀布置的第一通孔;每个所述第一气箱内壁中均固连有隔板,且隔板置于第一气箱中心位置;每个所述隔板两侧位置均设有第二气箱,且第二气箱的内部结构与第一气箱内部结构完全相同;每个所述第二气箱均通过弹簧与第一气箱固连;每个所述支撑板下方均固连有长管,且长管均与转管连通;每个所述长管外表面于支撑板底部端面均固连有环形灯,且环形灯与遥控器信号连通;每个所述环形灯下方于长管外表面均固连有扇叶;每个所述扇叶下方于长管外表面均固连有吸附层,且吸附层内开设有空腔,且空腔与长管连通;每个所述吸附层空腔内壁中开设有均匀布置的第二通孔;
工作时,现有技术中的新风净化一体机的换气范围有限,一台新风净化机只仅限于对单独的一个房间进行空气净化,从而限制的新风净化机的使用范围,同时若在每个房间都布置新风净化机,成本又太高对于普通老百姓家庭来说不太现实的问题,本发明制作的新 风净化机通过设置扩散装置可以将净化后的气体输送至每个房间内,从而可以提高新风净化机的使用范围,同时还可以节约成本,通过控制通风管的通断可以实现对每个房间的输送净化后气体的通断,从而可以防止气体输送至不使用的房间内,从而增大成本,同在还可以有效的对房间内产生的灰尘进行收集,从而可以进一步提高房间内的空气质量,在使用本发明制作的新风净化机时,首先通过固定盘上的固定柱将扩散装置安装在不同的房间内,然后启动新风净化机,当新风净化机启动后新风净化机净化的气体会输送至扩散盘内,由于扩散盘内安装的通风管内设有控制阀,从而可以利用遥控器控制通风管的通断,从而可以控制对不同房间进行输送气体,当气体进入通风管后会通过气管流入扩散装置内的安装管内,流入安装管内的气体会通过均匀布置的弧形管喷出,由于支撑板内壁中固连有均匀布置的涡轮盘相互对应,在弧形管喷气的过程中可以吹动涡轮盘转动,在涡轮盘转动的过程中可以带动支撑板转动,由于弧形管向背一侧固连有辅助环,当辅助环内的气体过多时,气体会通过均匀布置的气槽组流入斜板组空腔内,由于斜板组空腔内通过弹簧滑动连接有第一气箱,当斜板组空腔内的气压增大时,此时会将第一气箱部分推出支撑板,当第一气箱移出斜板组后,第一气箱缺槽内的气块在重力的作用下发生转动,当气块转动后,气块内的空腔会与气道相互对应,此时通过第一长槽流入第一气箱内的气体会通过气道流入气块内的空腔内,然后在通过均匀布置的第一通孔喷至外界,在此过程中通过对第一气箱的推出,可以提高气块喷气的范围,从而可以使气体更全面的扩散在房间内,进而提高房间内空气的质量,同时配合支撑板带动第一气箱的转动,从而可以提高气体的扩散程度,进而进一步提高房间内空气的质量,同时还不会将房间内的灰尘吹起,当第一气箱伸出斜板组后,一气箱内的气体会流入第二气箱内,由于第二气箱与第一气箱的内部结构相同,从而可以将第二气箱部分推出第一气箱,同时在第二气箱喷气的过程中可以提高气体的扩散范围,从而可以使净化后的气体快速的填充在房间内,进而提高房间内的空气质量,由于长管外表面固连有扇叶,在支撑板转动的过程中可以带动扇叶转动,在扇叶转动的过程中可以吹动气体扩散,从而进一步提高气体的扩散程度,由于吸附层内开设有第二通孔,安装管内的气体可以通过吸附层内的第二通孔流入,在配个扇叶的转动可以提高气体的扩散程度,由于支撑板底部安装有环形灯,从而可以对房间照明,当新风净化机在换气时,此时第一液箱与第二液箱会滑动至初始状态,此时房间内的气体会通过第二通孔流入长管内,在通过长管流入新风净化机内进行换气。
优选的,每个所述长管底部均通过螺纹啮合有收集仓;每个所述吸附层空腔内均固连有均匀布置的过滤层,且过滤层均与第二通孔相互对应;每个所述过滤层内均开设有空腔, 且空腔均与过滤层下方连通;每个所述过滤层内均固连有软管,且软管均与过滤层内空腔连通;每个所述软管均延伸至收集仓内;
工作时,在新风净化机换气的过程中,气体会通过第二通孔流入吸附层内,由于吸附层空腔内安装的过滤层内开设有空腔,流入吸附层的气体会通过过滤层流入长管内,空气中的杂质颗粒会残留在过滤层空腔内,由于过滤层空腔内固连的软管与过滤层空腔连通,过滤层空腔内的杂质会跟随部分气体流入软管内,流入软管内的气体在流入收集仓内,在此过程中可以将房间内气体内的杂质进行收集,从而防止杂质流入新风净化机内,从而影响新风净化机的净化效果,同时还可以提高新风净化机的使用寿命。
优选的,每个所述长管内壁中均开设有均匀布置的滑槽,且滑槽内通过滑块固连有渗透层;每个所述滑块均通过弹簧与滑槽连接;每个所述渗透层初始状态下置于吸附层上方;
工作时,由于长管滑槽内通过滑块滑动连接有渗透层,渗透层可以对收集仓内的杂质进行阻挡,从而防止杂质流入新风净化机内,从而影响新风净化机的净化过程,当新风净化机在喷气的过程中,由于气体具有压力,从而可以推动渗透层移动至吸附层下方,在此过程中可以防止杂质流入吸附层内,从而污染房间内的空气质量,当新风净化机在换气的过程中,由于渗透层承受的压力消失了,渗透层在弹簧压力的作用下回移动至吸附层上方,此时从吸附层流入长管内的气体需要通过渗透层,在此过程中可以进一步提高对房间空气内的杂质的收集,从而进一步防止杂质流入新风净化机内,影响新风净化机净化气体的过程,同时还可以提高新风净化机的使用寿命。
优选的,每个所述滑槽相背一侧于长管外表面通过弹簧滑动连接有节板;每个所述节板外表面转动连接有液箱;每个所述长管内壁中开设有均匀布置的第一液孔;每个所述节板内壁中开设有均匀布置的第二液孔;每个所述渗透层内壁中通过长杆固连有挤压块,且挤压块均至于滑槽内;每个所述滑槽内均固连有气囊,且气囊包括部分第一液孔设计;
工作时,由于渗透层通过长杆固连有挤压块,在渗透层向下移动的过程会带动挤压块向下移动,在挤压块向下移动的过程中会挤压气囊,由于气囊通过第一液孔与第二液孔与液箱连通,气囊内的气体会流入液箱内流入液箱内的气体可以将液箱内的液体通过第一液孔与第二液孔喷出,在此过程中可以对收集的杂质进行喷洒,从而可以使杂质凝固成块,防止杂质随处飘散飘入新风净化机内,当收集箱内的液体和杂质过多时,收集仓受到重力的作用会逐渐向下移动,当户主看到收集仓向下移动时,会对收集仓内的杂质进行清理,并对液箱补充液体,在此过程中可以防止收集仓内的杂质过多,影响收集过程。
优选的,所述机体内壁中固连有连通管,且连通管可以安装在打孔的窗户玻璃上;所 述连通管外表面通过螺纹转动连接有均匀布置的吸盘,且吸盘数量为二;
工作时,由于连通管可以安装在打孔的玻璃上,在此过程中可以防止新风净化机在安装的过程中还需要对墙壁进行打孔,从而费事费力,通过使用配套的玻璃窗,新风净化机还可以移动位置,从而降低新风净化机的局限性,当连通管插入玻璃孔内时,此时转动吸盘,吸盘可以吸附在玻璃上,在此过程中可以防止连接管与玻璃孔之间有缝隙,从而使房间内的气体流出外界,进而降低房间内的空气的质量。
优选的,所述连接管管口处通过转轴铰接有过滤板,且过滤板遮挡连接管管口设计;所述过滤板通过弹簧与管口连接;所述过滤板右侧于连接管内壁中通过转轴转动连接有刮板;所述刮板右侧固连有过滤网;所述过滤网下方开设有弧形槽;
工作时,由于连接管管口处通过转轴转动连接有过滤板,在新风净化机抽气的过程中可以对外界的杂质进行过滤,从而防止空气中的杂质过多,影响新风净化机的使用寿命,由于过滤板通过弹簧与连接管固连,在连接管抽气的过程中可以带动过滤板与连接管相撞,在此过程中可以将过滤板上的杂质抖落,从而防止杂质过多影响连接管的抽气过程,当气体经过过滤板时,会吹动刮板转动,在刮板转动的过程中可以对过滤网进行剐蹭,在此过程中可以将过滤网的杂质挂落,在与部分气体通过弧形槽流出,在此过程中可以进一步提高对外界气体的过滤效果。
本发明的有益效果如下:
1.本发明制作的新风净化机通过设置扩散装置可以将净化后的气体输送至每个房间内,从而可以提高新风净化机的使用范围,同时还可以节约成本,通过控制通风管的通断可以实现对每个房间的输送净化后气体的通断,从而可以防止气体输送至不使用的房间内,从而增大成本,同在还可以有效的对房间内产生的灰尘进行收集,从而可以进一步提高房间内的空气质量。
2.本发明通过设置渗透层,由于长管滑槽内通过滑块滑动连接有渗透层,渗透层可以对收集仓内的杂质进行阻挡,从而防止杂质流入新风净化机内,从而影响新风净化机的净化过程,当新风净化机在喷气的过程中,由于气体具有压力,从而可以推动渗透层移动至吸附层下方,在此过程中可以防止杂质流入吸附层内,从而污染房间内的空气质量,当新风净化机在换气的过程中,由于渗透层承受的压力消失了,渗透层在弹簧压力的作用下回移动至吸附层上方,此时从吸附层流入长管内的气体需要通过渗透层,在此过程中可以进一步提高对房间空气内的杂质的收集,从而进一步防止杂质流入新风净化机内,影响新风净化机净化气体的过程,同时还可以提高新风净化机的使用寿命。
附图说明
下面结合附图对本发明作进一步说明。
图1是本发明的主体图;
图2是本发明的剖视图;
图3是本发明的扩散装置的剖视图;
图4是图3中A处局部放大图;
图5是图3中B处局部放大图;
图6是图3中C处局部放大图;
图7是图3中D-D处剖视图;
图8是图7中E处局部放大图;
图中:机体1、扩散盘11、通风管12、气管13、吸盘14、连通管15、过滤板16、过滤网17、刮板18、扩散装置2、固定盘21、安装管22、弧形管23、转管24、支撑板241、涡轮盘25、辅助环26、气槽组27、斜板组28、第一气箱3、第一长槽31、气块33、第一通孔34、第二气箱35、环形灯36、扇叶37、长管4、收集仓41、吸附层42、第二通孔43、软管44、渗透层45、液箱46、挤压块47、气囊48、过滤层49。
具体实施方式
使用图1-图8对本发明所述的一种基于物联网的技术的新风净化一体机进行如下说明。
如图1-图8所示,本发明所述的一种基于物联网的技术的新风净化一体机,包括机体1和扩散装置2;所述机体1上表面固连有扩散盘11,且扩散盘11与机体1通风口连通;所述扩散盘11内壁中安装有均匀布置的通风管12,且通风管12内壁中均安装有控制阀,且控制阀均与遥控器信号连通;每个所述通风管12内壁中均安装有气管13,且气管13用于连接扩散装置2;每个所述气管13另一端均安装有扩散装置2,且扩散装置2可安装在不同的房间内;每个所述扩散装置2包括固定盘21;每个所述固定盘21上表面均固连有均匀布置的固定柱,且固定柱用于与房间内墙体固定;每个所述固定盘21内壁中固连有安装管22,且安装管22均与气管13连通;每个所述安装管22均贯穿固定盘21设计;每个所述固定盘21下方于安装管22内壁中固连有均匀布置的弧形管23,且弧形管23均朝安装管22方向倾斜设计;每个所述安装管22下方于安装管22内壁中均设有转管24,且 转管24均与安装管22转动连接;每个所述转管24外表面均固连有支撑板241,且支撑板241与转管24相互垂直;每个所述弧形管23下方于支撑板241内壁中均固连有涡轮盘25,且涡轮盘25与弧形管23相互对应;每个所述涡轮盘25向背一侧于支撑板241上表面固连有辅助环26,且辅助环26均与固定盘21相互贴合;每个所述辅助环26内壁中均开设有均匀布置的气槽组27;每个所述气槽组27相背一侧于支撑板241内壁中均固连有均匀布置的斜板组28;每个所述斜板组28空腔内均滑动连接有第一气箱3,且第一气箱3均通过弹簧与辅助环26固连;每个所述第一气箱3相对一侧于第一气箱3内壁中开设有均匀布置的第一长槽31,且第一长槽31均贯通第一气箱3设计;每个所述第一气箱3底部内壁中开设有均匀布置的缺槽,且缺槽均通过气道与第一气箱3内空腔连通;每个所述缺槽内均通过转轴铰接有气块33;每个所述气块33内均开设有空腔,且气块33转动后空腔与气道相互对应;每个所述气块33空腔内均开设有均匀布置的第一通孔34;每个所述第一气箱3内壁中均固连有隔板,且隔板置于第一气箱3中心位置;每个所述隔板两侧位置均设有第二气箱35,且第二气箱35的内部结构与第一气箱3内部结构完全相同;每个所述第二气箱35均通过弹簧与第一气箱3固连;每个所述支撑板241下方均固连有长管4,且长管4均与转管24连通;每个所述长管4外表面于支撑板241底部端面均固连有环形灯36,且环形灯36与遥控器信号连通;每个所述环形灯36下方于长管4外表面均固连有扇叶37;每个所述扇叶37下方于长管4外表面均固连有吸附层42,且吸附层42内开设有空腔,且空腔与长管4连通;每个所述吸附层42空腔内壁中开设有均匀布置的第二通孔43;
工作时,现有技术中的新风净化一体机的换气范围有限,一台新风净化机只仅限于对单独的一个房间进行空气净化,从而限制的新风净化机的使用范围,同时若在每个房间都布置新风净化机,成本又太高对于普通老百姓家庭来说不太现实的问题,本发明制作的新风净化机通过设置扩散装置2可以将净化后的气体输送至每个房间内,从而可以提高新风净化机的使用范围,同时还可以节约成本,通过控制通风管12的通断可以实现对每个房间的输送净化后气体的通断,从而可以防止气体输送至不使用的房间内,从而增大成本,同在还可以有效的对房间内产生的灰尘进行收集,从而可以进一步提高房间内的空气质量,在使用本发明制作的新风净化机时,首先通过固定盘21上的固定柱将扩散装置2安装在不同的房间内,然后启动新风净化机,当新风净化机启动后新风净化机净化的气体会输送至扩散盘11内,由于扩散盘11内安装的通风管12内设有控制阀,从而可以利用遥控器控制通风管12的通断,从而可以控制对不同房间进行输送气体,当气体进入通风管 12后会通过气管13流入扩散装置2内的安装管22内,流入安装管22内的气体会通过均匀布置的弧形管23喷出,由于支撑板241内壁中固连有均匀布置的涡轮盘25相互对应,在弧形管23喷气的过程中可以吹动涡轮盘25转动,在涡轮盘25转动的过程中可以带动支撑板241转动,由于弧形管23向背一侧固连有辅助环26,当辅助环26内的气体过多时,气体会通过均匀布置的气槽组27流入斜板组28空腔内,由于斜板组28空腔内通过弹簧滑动连接有第一气箱3,当斜板组28空腔内的气压增大时,此时会将第一气箱3部分推出支撑板241,当第一气箱3移出斜板组28后,第一气箱3缺槽内的气块33在重力的作用下发生转动,当气块33转动后,气块33内的空腔会与气道相互对应,此时通过第一长槽31流入第一气箱3内的气体会通过气道流入气块33内的空腔内,然后在通过均匀布置的第一通孔34喷至外界,在此过程中通过对第一气箱3的推出,可以提高气块33喷气的范围,从而可以使气体更全面的扩散在房间内,进而提高房间内空气的质量,同时配合支撑板241带动第一气箱3的转动,从而可以提高气体的扩散程度,进而进一步提高房间内空气的质量,同时还不会将房间内的灰尘吹起,当第一气箱3伸出斜板组28后,一气箱内的气体会流入第二气箱35内,由于第二气箱35与第一气箱3的内部结构相同,从而可以将第二气箱35部分推出第一气箱3,同时在第二气箱35喷气的过程中可以提高气体的扩散范围,从而可以使净化后的气体快速的填充在房间内,进而提高房间内的空气质量,由于长管4外表面固连有扇叶37,在支撑板241转动的过程中可以带动扇叶37转动,在扇叶37转动的过程中可以吹动气体扩散,从而进一步提高气体的扩散程度,由于吸附层42内开设有第二通孔43,安装管22内的气体可以通过吸附层42内的第二通孔43流入,在配个扇叶37的转动可以提高气体的扩散程度,由于支撑板241底部安装有环形灯36,从而可以对房间照明,当新风净化机在换气时,此时第一液箱46与第二液箱46会滑动至初始状态,此时房间内的气体会通过第二通孔43流入长管4内,在通过长管4流入新风净化机内进行换气。
作为本发明的一种实施方式,每个所述长管4底部均通过螺纹啮合有收集仓41;每个所述吸附层42空腔内均固连有均匀布置的过滤层49,且过滤层49均与第二通孔43相互对应;每个所述过滤层49内均开设有空腔,且空腔均与过滤层49下方连通;每个所述过滤层49内均固连有软管44,且软管44均与过滤层49内空腔连通;每个所述软管44均延伸至收集仓41内;
工作时,在新风净化机换气的过程中,气体会通过第二通孔43流入吸附层42内,由于吸附层42空腔内安装的过滤层49内开设有空腔,流入吸附层42的气体会通过过滤层 49流入长管4内,空气中的杂质颗粒会残留在过滤层49空腔内,由于过滤层49空腔内固连的软管44与过滤层49空腔连通,过滤层49空腔内的杂质会跟随部分气体流入软管44内,流入软管44内的气体在流入收集仓41内,在此过程中可以将房间内气体内的杂质进行收集,从而防止杂质流入新风净化机内,从而影响新风净化机的净化效果,同时还可以提高新风净化机的使用寿命。
作为本发明的一种实施方式,每个所述长管4内壁中均开设有均匀布置的滑槽,且滑槽内通过滑块固连有渗透层45;每个所述滑块均通过弹簧与滑槽连接;每个所述渗透层45初始状态下置于吸附层42上方;
工作时,由于长管4滑槽内通过滑块滑动连接有渗透层45,渗透层45可以对收集仓41内的杂质进行阻挡,从而防止杂质流入新风净化机内,从而影响新风净化机的净化过程,当新风净化机在喷气的过程中,由于气体具有压力,从而可以推动渗透层45移动至吸附层42下方,在此过程中可以防止杂质流入吸附层42内,从而污染房间内的空气质量,当新风净化机在换气的过程中,由于渗透层45承受的压力消失了,渗透层45在弹簧压力的作用下回移动至吸附层42上方,此时从吸附层42流入长管4内的气体需要通过渗透层45,在此过程中可以进一步提高对房间空气内的杂质的收集,从而进一步防止杂质流入新风净化机内,影响新风净化机净化气体的过程,同时还可以提高新风净化机的使用寿命。
作为本发明的一种实施方式,每个所述滑槽相背一侧于长管4外表面通过弹簧滑动连接有节板;每个所述节板外表面转动连接有液箱46;每个所述长管4内壁中开设有均匀布置的第一液孔;每个所述节板内壁中开设有均匀布置的第二液孔;每个所述渗透层45内壁中通过长杆固连有挤压块47,且挤压块47均至于滑槽内;每个所述滑槽内均固连有气囊48,且气囊48包括部分第一液孔设计;
工作时,由于渗透层45通过长杆固连有挤压块47,在渗透层45向下移动的过程会带动挤压块47向下移动,在挤压块47向下移动的过程中会挤压气囊48,由于气囊48通过第一液孔与第二液孔与液箱46连通,气囊48内的气体会流入液箱46内流入液箱46内的气体可以将液箱46内的液体通过第一液孔与第二液孔喷出,在此过程中可以对收集的杂质进行喷洒,从而可以使杂质凝固成块,防止杂质随处飘散飘入新风净化机内,当收集箱内的液体和杂质过多时,收集仓41受到重力的作用会逐渐向下移动,当户主看到收集仓41向下移动时,会对收集仓41内的杂质进行清理,并对液箱46补充液体,在此过程中可以防止收集仓41内的杂质过多,影响收集过程。
作为本发明的一种实施方式,所述机体1内壁中固连有连通管15,且连通管15可以 安装在打孔的窗户玻璃上;所述连通管15外表面通过螺纹转动连接有均匀布置的吸盘14,且吸盘14数量为二;
工作时,由于连通管15可以安装在打孔的玻璃上,在此过程中可以防止新风净化机在安装的过程中还需要对墙壁进行打孔,从而费事费力,通过使用配套的玻璃窗,新风净化机还可以移动位置,从而降低新风净化机的局限性,当连通管15插入玻璃孔内时,此时转动吸盘14,吸盘14可以吸附在玻璃上,在此过程中可以防止连接管与玻璃孔之间有缝隙,从而使房间内的气体流出外界,进而降低房间内的空气的质量。
作为本发明的一种实施方式,所述连接管管口处通过转轴铰接有过滤板16,且过滤板16遮挡连接管管口设计;所述过滤板16通过弹簧与管口连接;所述过滤板16右侧于连接管内壁中通过转轴转动连接有刮板18;所述刮板18右侧固连有过滤网17;所述过滤网17下方开设有弧形槽;
工作时,由于连接管管口处通过转轴转动连接有过滤板16,在新风净化机抽气的过程中可以对外界的杂质进行过滤,从而防止空气中的杂质过多,影响新风净化机的使用寿命,由于过滤板16通过弹簧与连接管固连,在连接管抽气的过程中可以带动过滤板16与连接管相撞,在此过程中可以将过滤板16上的杂质抖落,从而防止杂质过多影响连接管的抽气过程,当气体经过过滤板16时,会吹动刮板18转动,在刮板18转动的过程中可以对过滤网17进行剐蹭,在此过程中可以将过滤网17的杂质挂落,在与部分气体通过弧形槽流出,在此过程中可以进一步提高对外界气体的过滤效果。
具体工作流程如下:
工作时,在使用本发明制作的新风净化机时,首先通过固定盘21上的固定柱将扩散装置2安装在不同的房间内,然后启动新风净化机,当新风净化机启动后新风净化机净化的气体会输送至扩散盘11内,由于扩散盘11内安装的通风管12内设有控制阀,从而可以利用遥控器控制通风管12的通断,当气体进入通风管12后会通过气管13流入扩散装置2内的安装管22内,流入安装管22内的气体会通过均匀布置的弧形管23喷出,由于支撑板241内壁中固连有均匀布置的涡轮盘25相互对应,在弧形管23喷气的过程中可以吹动涡轮盘25转动,在涡轮盘25转动的过程中可以带动支撑板241转动,由于弧形管23向背一侧固连有辅助环26,当辅助环26内的气体过多时,气体会通过均匀布置的气槽组27流入斜板组28空腔内,由于斜板组28空腔内通过弹簧滑动连接有第一气箱3,当斜板组28空腔内的气压增大时,此时会将第一气箱3部分推出支撑板241,当第一气箱3移出斜板组28后,第一气箱3缺槽内的气块33在重力的作用下发生转动,当气块33转动后, 气块33内的空腔会与气道相互对应,此时通过第一长槽31流入第一气箱3内的气体会通过气道流入气块33内的空腔内,然后在通过均匀布置的第一通孔34喷至外界,当第一气箱3伸出斜板组28后,一气箱内的气体会流入第二气箱35内,由于第二气箱35与第一气箱3的内部结构相同,从而可以将第二气箱35部分推出第一气箱3,同时在第二气箱35喷气的过程中可以提高气体的扩散范围,从而可以使净化后的气体快速的填充在房间内,进而提高房间内的空气质量,由于长管4外表面固连有扇叶37,在支撑板241转动的过程中可以带动扇叶37转动,在扇叶37转动的过程中可以吹动气体扩散,从而进一步提高气体的扩散程度,由于吸附层42内开设有第二通孔43,安装管22内的气体可以通过吸附层42内的第二通孔43流入,在配个扇叶37的转动可以提高气体的扩散程度,由于支撑板241底部安装有环形灯36,从而可以对房间照明,当新风净化机在换气时,此时第一液箱46与第二液箱46会滑动至初始状态,此时房间内的气体会通过第二通孔43流入长管4内,在通过长管4流入新风净化机内进行换气。
以上显示和描述了本发明的基本原理、主要特征和优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。

Claims (6)

  1. 一种基于物联网的技术的新风净化一体机,其特征在于:包括机体(1)和扩散装置(2);所述机体(1)上表面固连有扩散盘(11),且扩散盘(11)与机体(1)通风口连通;所述扩散盘(11)内壁中安装有均匀布置的通风管(12),且通风管(12)内壁中均安装有控制阀,且控制阀均与遥控器信号连通;每个所述通风管(12)内壁中均安装有气管(13),且气管(13)用于连接扩散装置(2);每个所述气管(13)另一端均安装有扩散装置(2),且扩散装置(2)可安装在不同的房间内;每个所述扩散装置(2)包括固定盘(21);每个所述固定盘(21)上表面均固连有均匀布置的固定柱,且固定柱用于与房间内墙体固定;每个所述固定盘(21)内壁中固连有安装管(22),且安装管(22)均与气管(13)连通;每个所述安装管(22)均贯穿固定盘(21)设计;每个所述固定盘(21)下方于安装管(22)内壁中固连有均匀布置的弧形管(23),且弧形管(23)均朝安装管(22)方向倾斜设计;每个所述安装管(22)下方于安装管(22)内壁中均设有转管(24),且转管(24)均与安装管(22)转动连接;每个所述转管(24)外表面均固连有支撑板(241),且支撑板(241)与转管(24)相互垂直;每个所述弧形管(23)下方于支撑板(241)内壁中均固连有涡轮盘(25),且涡轮盘(25)与弧形管(23)相互对应;每个所述涡轮盘(25)向背一侧于支撑板(241)上表面固连有辅助环(26),且辅助环(26)均与固定盘(21)相互贴合;每个所述辅助环(26)内壁中均开设有均匀布置的气槽组(27);每个所述气槽组(27)相背一侧于支撑板(241)内壁中均固连有均匀布置的斜板组(28);每个所述斜板组(28)空腔内均滑动连接有第一气箱(3),且第一气箱(3)均通过弹簧与辅助环(26)固连;每个所述第一气箱(3)相对一侧于第一气箱(3)内壁中开设有均匀布置的第一长槽(31),且第一长槽(31)均贯通第一气箱(3)设计;每个所述第一气箱(3)底部内壁中开设有均匀布置的缺槽,且缺槽均通过气道与第一气箱(3)内空腔连通;每个所述缺槽内均通过转轴铰接有气块(33);每个所述气块(33)内均开设有空腔,且气块(33)转动后空腔与气道相互对应;每个所述气块(33)空腔内均开设有均匀布置的第一通孔(34);每个所述第一气箱(3)内壁中均固连有隔板,且隔板置于第一气箱(3)中心位置;每个所述隔板两侧位置均设有第二气箱(35),且第二气箱(35)的内部结构与第一气箱(3)内部结构完全相同;每个所述第二气箱(35)均通过弹簧与第一气箱(3)固连;每个所述支撑板(241)下方均固连有长管(4),且长管(4)均与转管(24)连通;每个所述长管(4)外表面于支撑板(241)底部端面均固连有环形灯(36),且环形灯(36)与遥控器信号连通;每个所述环形灯(36)下方于长管(4)外表面均固连有扇叶(37);每个所述扇叶(37)下方于长管(4)外表面均固连有吸附层(42),且吸附层(42)内开设有空腔,且空腔与长管(4)连通;每个所述吸附层(42)空腔内壁中开设有均匀布置的第二通孔(43)。
  2. 根据权利要求1所述的一种基于物联网的技术的新风净化一体机,其特征在于:每个所述长管(4)底部均通过螺纹啮合有收集仓(41);每个所述吸附层(42)空腔内均固连有均匀布置的过滤层(49),且过滤层(49)均与第二通孔(43)相互对应;每个所述过滤层(49)内均开设有空腔,且空腔均与过滤层(49)下方连通;每个所述过滤层(49)内均固连有软管(44),且软管(44)均与过滤层(49)内空腔连通;每个所述软管(44)均延伸至收集仓(41)内。
  3. 根据权利要求2所述的一种基于物联网的技术的新风净化一体机,其特征在于:每个所述长管(4)内壁中均开设有均匀布置的滑槽,且滑槽内通过滑块固连有渗透层(45);每个所述滑块均通过弹簧与滑槽连接;每个所述渗透层(45)初始状态下置于吸附层(42)上方。
  4. 根据权利要求3所述的一种基于物联网的技术的新风净化一体机,其特征在于:每个所述滑槽相背一侧于长管(4)外表面通过弹簧滑动连接有节板;每个所述节板外表面转动连接有液箱(46);每个所述长管(4)内壁中开设有均匀布置的第一液孔;每个所述节板内壁中开设有均匀布置的第二液孔;每个所述渗透层(45)内壁中通过长杆固连有挤压块(47),且挤压块(47)均至于滑槽内;每个所述滑槽内均固连有气囊(48),且气囊(48)包括部分第一液孔设计。
  5. 根据权利要求1所述的一种基于物联网的技术的新风净化一体机,其特征在于:所述机体(1)内壁中固连有连通管(15),且连通管(15)可以安装在打孔的窗户玻璃上;所述连通管(15)外表面通过螺纹转动连接有均匀布置的吸盘(14),且吸盘(14)数量为二。
  6. 根据权利要求5所述的一种基于物联网的技术的新风净化一体机,其特征在于:所述连接管管口处通过转轴铰接有过滤板(16),且过滤板(16)遮挡连接管管口设计;所述过滤板(16)通过弹簧与管口连接;所述过滤板(16)右侧于连接管内壁中通过转轴转动连接有刮板(18);所述刮板(18)右侧固连有过滤网(17);所述过滤网(17)下方开设有弧形槽。
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