Energy-saving type outpatient inoculation room air purification equipment and use method thereof
By designing an energy-saving outpatient vaccination room air purification equipment with a combination structure of mounting frame and shell, the problems of inconvenience in disassembly and loose bolts are solved, rapid disassembly and installation are achieved, and filter element replacement efficiency is improved.
Patent Information
- Application Number
- CN202510238400.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing outpatient vaccination room air purification equipment needs to be removed as a whole during disassembly and maintenance, resulting in loose bolts and easy to fall off; the filter element is fixed inside the equipment, making it inconvenient to disassemble.
An energy-saving outpatient vaccination room air purification equipment is designed, adopting a combined structure of a mounting frame and a shell. The filter element is fixed by a fixed pressure plate and a positioning column. The shell is quickly disassembled and installed through a T-shaped card block and a slot, a positioning card strip and a slot.
It realizes rapid disassembly and installation of the equipment, avoids the problems of bolts loosening and falling, and improves the efficiency of filter element replacement.
Smart Images

Figure CN119983442A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of outpatient air purification, and in particular to energy-saving outpatient vaccination room air purification equipment and a use method thereof. Background Art
[0002] As a place with dense crowds and high mobility, the outpatient vaccination room is easy for patients and medical staff to be exposed to various bacteria and viruses. Medical staff and patients walk and breathe in the indoor environment for a long time, which causes a large number of bacteria, viruses and dust particles suspended in the indoor environment to float around, causing cross-infection between medical staff and patients. It is necessary to place air purification equipment in the outpatient vaccination room to purify the air in the outpatient vaccination room, reduce the suspended bacteria, viruses and dust particles in the outpatient vaccination room, reduce the risk of cross-infection, and remove harmful gases and odors in the outpatient vaccination room to improve the air quality.
[0003] The existing outpatient vaccination room air purification equipment is generally fixed on the wall as an integrated structure. When the outpatient vaccination room air purification equipment is disassembled, inspected and cleaned, the outpatient vaccination room air purification equipment needs to be removed from the wall as a whole. Frequent disassembly of the outpatient vaccination room air purification equipment causes the bolts fixing the outpatient vaccination room air purification equipment to the wall to loosen, which can easily cause the outpatient vaccination room air purification equipment to fall from the wall. At the same time, the filter element is generally fixed inside the outpatient vaccination room air purification equipment, and the filter element is not quick and convenient to disassemble and clean. Therefore, improvement is needed.
[0004] Based on this, the present invention designs an energy-saving outpatient vaccination room air purification device and a method of using the same to solve the above problems. Summary of the invention
[0005] The purpose of the present invention is to provide an energy-saving outpatient vaccination room air purification equipment and a method of using the same, so as to solve the problem that the existing outpatient vaccination room air purification equipment proposed in the above background technology is generally fixed on the wall as an integrated structure. When the outpatient vaccination room air purification equipment is disassembled, inspected and cleaned, the outpatient vaccination room air purification equipment needs to be removed from the wall as a whole. Frequent disassembly of the outpatient vaccination room air purification equipment causes the bolts fixing the outpatient vaccination room air purification equipment to the wall to become loose, which easily causes the outpatient vaccination room air purification equipment to fall from the wall. At the same time, the filter element is generally fixed inside the outpatient vaccination room air purification equipment, and the filter element is not quick and convenient enough when being disassembled and cleaned.
[0006] To achieve the above object, the present invention provides the following technical solutions:
[0007] An energy-saving outpatient vaccination room air purification device comprises a mounting frame, a shell is provided on one side of the mounting frame, an exhaust mechanism is fixedly installed inside the shell, an exhaust motor is provided inside the shell at the top of the exhaust mechanism, a fixed structure is fixedly installed inside the shell at the bottom of the exhaust mechanism, a filter element is provided on the bottom surface of the fixed structure, an end cover is provided at the bottom end of the shell, a rubber clamp is fixedly installed on the surface of the end cover, and a spray disinfection mechanism is fixedly installed on the top of the shell surface.
[0008] As a further solution of the present invention, fixed end plates are symmetrically fixed on both sides of the mounting frame, T-shaped slots are symmetrically provided at the bottom of one side of the mounting frame, a positioning slot is provided at the central position of the top of the mounting frame, an exhaust port is provided at the central position of the surface of the mounting frame, and an elastic pad is fixedly installed on the surface of the mounting frame on the T-shaped slot side.
[0009] As a further solution of the present invention, a T-shaped block is symmetrically fixedly installed on the bottom of one side of the shell, the position of the T-shaped block corresponds to the position of the T-shaped slot, and the T-shaped block and the T-shaped slot have the same shape, and a positioning strip is fixedly installed on the shell at the top center position of one side of the T-shaped block, the positioning strip corresponds to the position of the positioning slot, and the positioning strip has the same shape as the positioning slot, an air inlet is provided at the bottom of the shell surface, an air outlet 1 is provided at the center position of the shell surface, and an air outlet 2 is provided at a position on one side of the shell corresponding to the air outlet 1.
[0010] As a further solution of the present invention, the exhaust mechanism includes a wind wheel, a mounting top plate is rotatably installed on the top end of the wind wheel, and the mounting top plate is fixedly connected to the inside of the shell, a mounting base is rotatably installed on the bottom end of the wind wheel, and the mounting base is fixedly connected to the inside of the shell, and a cross slot is provided on the top end of the wind wheel.
[0011] As a further solution of the present invention, a fixed top plate is fixedly installed on the top of the exhaust motor, and the fixed top plate is connected to the top of the outer casing by bolts, and a cross plug is fixedly installed on the output end of the bottom of the exhaust motor, and the position of the cross plug corresponds to that of the cross slot, and the cross plug and the cross slot have the same shape.
[0012] As a further solution of the present invention, the fixing structure includes a cross mounting plate, a mounting column is fixedly installed at the central position of the bottom of the cross mounting plate, a fixed pressure plate is provided at the bottom end of the mounting column, six positioning columns are fixedly installed at equal angles on the corresponding sides of the cross mounting plate and the fixed pressure plate, and the positions of the positioning columns on the opposite sides of the cross mounting plate and the fixed pressure plate correspond, a fixing button is provided at the bottom of the fixed pressure plate, and the top end of the fixing button passes through the fixed pressure plate and is threadedly connected to the bottom end of the mounting column.
[0013] As a further solution of the present invention, a mounting hole is provided through the center of the filter element, and six positioning holes are provided at equal angles at both ends of the filter element, and the positions of the positioning holes correspond to those of the positioning posts.
[0014] As a further solution of the present invention, the spraying and disinfecting mechanism includes a booster water pump, a conduit 1 is provided at the output end of the booster water pump, and one end of the conduit 1 is connected to an arc-shaped spray strip, the arc-shaped spray strip is fixedly connected to the surface of the outer shell at the top of the air outlet 1, a conduit 2 is provided at the input end of the booster water pump, a disinfection bottle is provided at one end of the conduit 2, a fixed clip is provided on the surface of the disinfection bottle, and the fixed clip is fixedly connected to the surface of the outer shell, a pad is provided at the bottom of the disinfection bottle, and the pad is fixedly connected to the surface of the outer shell.
[0015] A method for using an energy-saving outpatient vaccination room air purification device, the method comprising the following steps:
[0016] Use expansion bolts to pass through the fixed end plate to fix the mounting bracket to the specified position of the wall, so that the exhaust port on the surface of the mounting bracket corresponds to the position of the hole pre-opened in the wall, remove the end cover from the bottom of the housing, take a new filter element, insert the filter element into the housing, so that the filter element is sleeved on the surface of the mounting column, push the filter element into the housing until the filter element is tightly attached to the cross mounting plate, adjust the position of the filter element inside the housing, so that the positioning jack at one end of the filter element is stuck on the surface of the positioning column at the bottom of the cross mounting plate, and then cover the fixed pressure plate on the other end of the filter element, so that the positioning column on the surface of the fixed pressure plate is inserted into the positioning jack at the other end of the filter element, tighten the fixing screw button to pass through the fixed pressure plate and connect it with the mounting column, so that the fixing screw button is tightly attached to the surface of the fixed pressure plate, and the filter element is clamped and fixed between the cross mounting plate and the fixed pressure plate, and then the end cover is clamped at the bottom of the housing, so that the rubber clamping ring on the surface of the end cover is squeezed and deformed on the inner wall of the housing, thereby clamping and fixing the end cover to the bottom of the housing;
[0017] Suspend the exhaust motor on the top of the shell so that the cross plug at the bottom of the exhaust motor corresponds to the cross slot position at the top of the exhaust mechanism, insert the exhaust motor into the top of the shell, tighten the bolts to fix the fixed top plate on the top of the shell, so that the cross plug is clamped and fixed inside the cross slot, inject an appropriate amount of disinfectant into the disinfection bottle, insert the second catheter into the disinfection bottle, and at the same time, clamp the disinfection bottle into the fixed clamp so that the bottom of the disinfection bottle rests on the top of the pad, move the shell so that the T-shaped block corresponds to the T-shaped slot, push the shell close to the mounting frame so that the T-shaped block is inserted into the T-shaped slot, and at the same time, the shell is close to the mounting frame so that the elastic card pad is squeezed and deformed between the mounting frame and the shell, control the shell to slide down on the surface of the mounting frame, so that the T-shaped block is clamped into the corresponding T-shaped slot, and at the same time, the positioning card strip on the top of the shell is clamped into the positioning slot, and the shell is lifted up under the rebound action of the elastic card pad so that the T-shaped block is clamped and fixed inside the T-shaped slot;
[0018] Start the exhaust motor and drive the wind wheel to rotate between the mounting top plate and the mounting bottom frame under the connection of the cross plug block and the cross slot, so that the outside air flows into the shell from the air inlet, and the air flowing into the shell is filtered by the filter element and flows to the wind wheel, and is discharged to the air outlet 1 and the air outlet 2 under the rotation of the wind wheel. At the same time, start the booster water pump to pour the disinfectant in the disinfection bottle into the booster water pump through the conduit 2, and then input into the arc spray strip through the conduit 1 through the booster water pump through the booster water pump to be sprayed out from the arc spray strip. At the same time, the airflow blown out from the air outlet 1 drives the mist disinfectant sprayed by the arc spray strip to float to a distance, thereby expanding the disinfection range of the device and quickly disinfecting and purifying the room.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] 1. The present invention is provided with a fixed pressure plate, a fixed screw button, a filter element, a housing and a mounting frame, the housing is lifted up on the surface of the mounting frame, the T-shaped card block is driven to move up inside the corresponding T-shaped card slot until the T-shaped card block moves to the top of the T-shaped card slot, the housing is moved away from the mounting frame, the T-shaped card block is pulled out from the inside of the T-shaped card slot, so that the housing is conveniently removed from the surface of the mounting frame on the wall, the end cover is pressed to open the bottom of the housing, the fixed screw button is twisted to separate from the mounting column, the fixed pressure plate is moved away from the filter element, the filter element is slid on the mounting column away from the cross mounting plate, the filter element is pulled out from the inside of the housing, and a new filter element is inserted into the inside of the housing to make the filter element The core sleeve is on the surface of the mounting column, the mobile fixed pressure plate is tightly attached to the bottom of the filter element, and the fixing screw is tightened to fix the fixed pressure plate tightly to the bottom of the filter element, so that the filter element is fixed between the cross mounting plate and the fixed pressure plate, which is convenient for replacing the filter element. After the replacement is completed, the end cover is fixed to the bottom of the shell, and the movable shell is pressed against the surface of the mounting frame at the same time, so that the T-shaped clamping block is inserted into the corresponding T-shaped slot, and the movable shell slides down on the surface of the mounting frame. Under the rebound action of the elastic clamping pad, the shell is lifted away from the mounting frame, so that the T-shaped clamping block is clamped and fixed inside the T-shaped slot, which is convenient for clamping and connecting the shell and the mounting frame.
[0021] 2. The present invention is provided with a wind wheel, an exhaust motor, a booster water pump, an arc-shaped spray bar, a disinfection bottle and a fixed clamp. After injecting a proper amount of disinfectant into the disinfection bottle, the disinfection bottle is clamped into the fixed clamp so that the disinfection bottle is placed on the top of the pad. At the same time, the second conduit is inserted into the disinfection bottle. The exhaust motor is started to control the wind wheel to rotate inside the shell, so that the indoor air flows into the shell from the bottom of the shell, and then is discharged to the first and second air outlets through the wind wheel. At the same time, the booster water pump is started to pressurize the disinfectant liquid in the disinfection bottle and input it into the arc-shaped spray bar, so that the disinfectant liquid is sprayed out from the arc-shaped spray bar in the form of mist. The air discharged from the first air outlet blows toward the mist-shaped disinfectant liquid, and blows the disinfectant liquid to a distance, thereby expanding the dispersion range of the disinfectant sprayed by the arc-shaped spray bar, so that the indoor environment can be disinfected and purified to the greatest extent. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings required for describing the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without paying creative work.
[0023] Figure 1 It is a schematic diagram of the combined cross-sectional structure of the present invention;
[0024] Figure 2 It is a schematic diagram of the structure of the mounting frame and the elastic card pad of the present invention;
[0025] Figure 3 It is a cross-sectional structural schematic diagram of the housing, the wind wheel and the exhaust motor of the present invention;
[0026] Figure 4 It is a schematic cross-sectional structure diagram of the housing and the positioning card strip of the present invention;
[0027] Figure 5 It is a schematic diagram of the unfolded structure of the wind wheel and the exhaust motor of the present invention;
[0028] Figure 6 It is a schematic diagram of the unfolded structure of the cross mounting plate, mounting column and fixed pressing plate of the present invention;
[0029] Figure 7 It is a schematic diagram of the structure of the filter element of the present invention;
[0030] Figure 8 It is a schematic diagram of the structure of the end cover of the present invention;
[0031] Fig. 9 It is a schematic structural diagram of the booster water pump, arc-shaped spray bar and disinfection bottle of the present invention.
[0032] In the accompanying drawings, the components represented by the reference numerals are listed as follows:
[0033] 1. Mounting frame; 101. Fixed end plate; 102. T-shaped card slot; 103. Positioning card slot; 104. Exhaust port; 105. Elastic card pad; 2. Housing; 201. T-shaped card block; 202. Positioning card strip; 203. Air inlet; 204. Air outlet 1; 205. Air outlet 2; 3. Exhaust mechanism; 301. Wind wheel; 302. Mounting top plate; 303. Mounting bottom frame; 304. Cross slot; 4. Exhaust motor; 401. Fixed top plate; 402. Cross plug block; 5. Fixed structure; 501. Cross mounting plate; 502. Mounting column; 503. Fixed pressure plate; 504. Positioning column; 505. Fixed screw button; 6. Filter element; 601. Mounting hole; 602. Positioning socket; 7. End cover; 701. Rubber clamp; 8. Spraying and disinfecting mechanism; 801. Booster pump; 802. Conduit 1; 803. Arc spray strip; 804. Conduit 2; 805. Disinfection bottle; 806. Fixed clamp; 807. Pad. DETAILED DESCRIPTION
[0034] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0035] See also Figure 1 , the present invention provides a technical solution:
[0036] An energy-saving outpatient vaccination room air purification device comprises a mounting frame 1, a shell 2 is provided on one side of the mounting frame 1, an exhaust mechanism 3 is fixedly installed inside the shell 2, an exhaust motor 4 is provided inside the shell 2 at the top of the exhaust mechanism 3, a fixed structure 5 is fixedly installed inside the shell 2 at the bottom of the exhaust mechanism 3, a filter element 6 is provided on the bottom surface of the fixed structure 5, an end cover 7 is provided at the bottom end of the shell 2, a rubber clamp 701 is fixedly installed on the surface of the end cover 7, and a spray disinfection mechanism 8 is fixedly installed on the top of the surface of the shell 2.
[0037] During operation, after fixing the mounting frame 1 at the designated position of the wall, the end cap 7 is removed from the bottom of the housing 2, the filter element 6 is moved and inserted into the housing 2, so that the filter element 6 is clamped and fixed at the bottom of the fixing structure 5, and then the end cap 7 is clamped at the bottom of the housing 2, so that the rubber clamp ring 701 on the surface of the end cap 7 is squeezed and deformed on the inner wall of the housing 2, so that the end cap 7 is clamped and fixed at the bottom of the housing 2; the exhaust motor 4 is moved and suspended on the top of the housing 2, so that the exhaust motor 4 and the exhaust mechanism 3 are in corresponding positions, and then the exhaust motor 4 is inserted into the top of the housing 2, so that the exhaust motor 4 is correspondingly close to the top of the exhaust mechanism 3, and then the housing 2 is fixed closely to the surface of the mounting frame 1. The exhaust motor 4 is started to draw indoor air into the housing 2, and the indoor air is discharged from the exhaust mechanism 3 to the outside of the housing 2 after being filtered by the filter element 6, and at the same time, the spraying and disinfection mechanism 8 is started to spray a mist of disinfectant, and the air discharged from the housing 2 blows toward the mist of disinfectant, so that the disinfectant floats far away, thereby achieving a large-scale disinfection of the indoor environment.
[0038] like Figure 2-3 As shown, as a further solution of the present invention, fixed end plates 101 are symmetrically fixedly installed on both sides of the mounting frame 1, T-shaped card slots 102 are symmetrically arranged at the bottom of one side of the mounting frame 1, and a T-shaped card block 201 is symmetrically fixedly installed at the bottom of one side of the housing 2, and the position of the T-shaped card block 201 corresponds to the position of the T-shaped card slot 102, and the T-shaped card block 201 and the T-shaped card slot 102 have the same shape and are installed in a matching snap-fit manner. A positioning card slot 103 is provided at the central position of the top of the mounting frame 1, and a positioning card strip 202 is fixedly installed at the central position of the top of the housing 2 on one side of the T-shaped card slot 201, and the positioning card strip 202 corresponds to the position of the positioning card slot 103, and the positioning card strip 202 and the positioning card slot 103 have the same shape and are installed in a matching snap-fit manner; an elastic card pad 105 is fixedly installed on the surface of the mounting frame 1 on the side of the T-shaped card slot 102.
[0039] Place the shell 2 close to one side of the mounting frame 1, insert the T-shaped block 201 into the corresponding T-shaped slot 102, push the shell 2 to slide down the surface of the mounting frame 1, and make the positioning strip 202 snap into the positioning slot 103, to ensure that the shell 2 will not be misaligned when fixed on the surface of the mounting frame 1. At the same time, the elastic pad 105 is squeezed and deformed between the shell 2 and the mounting frame 1, and the shell 2 is lifted away from the mounting frame 1, so that the shell 2 drives the T-shaped block 201 and the positioning strip 202 to move inside the corresponding T-shaped slot 102 and the positioning slot 103, thereby clamping and fixing the shell 2 on the surface of the mounting frame 1.
[0040] like Figure 4As shown, as a further solution of the present invention, an air inlet 203 is provided at the bottom of the surface of the outer shell 2, an air outlet 1 204 is provided at the central position of the surface of the outer shell 2, an air outlet 205 is provided on one side of the outer shell 2 at a position corresponding to the air outlet 1 204, and an air exhaust port 104 is provided at the central position of the surface of the mounting frame 1, and the air outlet 205 corresponds to the position of the exhaust port 104.
[0041] When the shell 2 is fixed on the surface of the mounting frame 1, the position of the second air outlet 205 corresponds to that of the exhaust port 104, so that the air discharged from the second air outlet 205 inside the shell 2 is discharged into the room from the exhaust port 104, and at the same time, the filtered air discharged from the first air outlet 204 is controlled to be blown into the room, a part of the filtered air is discharged from the first air outlet 204 into the room for circulation, and a part of the filtered air is discharged from the second air outlet 205 to the outside, so that the fine pollutants in the filtered air are discharged, thereby improving the indoor air environment and keeping the indoor air fresh and clean.
[0042] like Figure 5 As shown, as a further solution of the present invention, the exhaust mechanism 3 includes a wind wheel 301, and a mounting top plate 302 is rotatably mounted on the top of the wind wheel 301, and the mounting top plate 302 is fixedly connected to the inside of the housing 2; a mounting base 303 is rotatably mounted on the bottom of the wind wheel 301, and the mounting base 303 is fixedly connected to the inside of the housing 2. A fixed top plate 401 is fixedly mounted on the top of the exhaust motor 4, and the fixed top plate 401 is connected to the top of the housing 2 by bolts, and a cross plug 402 is fixedly mounted on the output end of the bottom of the exhaust motor 4, and a cross slot 304 is provided on the top of the wind wheel 301, and the cross plug 402 corresponds to the position of the cross slot 304, and the cross plug 402 and the cross slot 304 have the same shape.
[0043] Insert the exhaust motor 4 into the top of the outer shell 2, so that the cross plug block 402 at the output end of the exhaust motor 4 corresponds to the cross slot 304 at the top of the wind wheel 301, and then tighten the bolts to fix the fixed top plate 401 to the top of the outer shell 2. Start the exhaust motor 4 and control the wind wheel 301 to rotate inside the outer shell 2 under the connection between the cross plug block 402 and the cross slot 304, so that the outside air is sucked in from the air inlet 203 at the bottom of the outer shell 2, filtered by the filter element 6, and then discharged from the air outlet 1 204 and the air outlet 2 205.
[0044] like Figure 6As shown, as a further solution of the present invention, the fixing structure 5 includes a cross mounting plate 501, a mounting column 502 is fixedly installed at the central position of the bottom of the cross mounting plate 501, a fixed pressure plate 503 is provided at the bottom end of the mounting column 502, six positioning columns 504 are fixedly installed at equal angles on the corresponding sides of the cross mounting plate 501 and the fixed pressure plate 503, and the positions of the positioning columns 504 on the opposite sides of the cross mounting plate 501 and the fixed pressure plate 503 correspond; a fixing screw 505 is provided at the bottom of the fixed pressure plate 503, and the top end of the fixing screw 505 passes through the fixed pressure plate 503 and is threadedly connected to the bottom end of the mounting column 502.
[0045] like Figure 7 A mounting hole 601 is provided at the central position of the filter element 6 , and six positioning holes 602 are provided at equal angles at both ends of the filter element 6 , and the positions of the positioning holes 602 correspond to those of the positioning posts 504 .
[0046] Insert the filter element 6 into the housing 2 so that the mounting hole 601 in the middle of the filter element 6 is sleeved on the surface of the mounting column 502, push the filter element 6 close to the cross mounting plate 501, so that the positioning hole 602 at the top of the filter element 6 is stuck on the surface of the positioning column 504 corresponding to the bottom of the cross mounting plate 501, and then place the fixed pressure plate 503 tightly on the other end of the filter element 6, so that the positioning column 504 on the surface of the fixed pressure plate 503 is stuck in the positioning hole 602 corresponding to the surface of the filter element 6, tighten the fixing screw 505 to pass through the fixed pressure plate 503 and connect it with the mounting column 502, so that the fixing screw 505 is pressed against the surface of the fixed pressure plate 503, thereby pressing and fixing the filter element 6 between the cross mounting plate 501 and the fixed pressure plate 503, so as to facilitate the disassembly and installation of the filter element 6.
[0047] like Figure 8 As shown, as a further solution of the present invention, the spraying and disinfecting mechanism 8 includes a booster water pump 801, the output end of the booster water pump 801 is provided with a conduit 1 802, and one end of the conduit 1 802 is connected with an arc-shaped spray bar 803, and the arc-shaped spray bar 803 is fixedly connected to the surface of the shell 2 and located at the top of the air outlet 1 204; the input end of the booster water pump 801 is provided with a conduit 2 804, and one end of the conduit 2 804 is provided with a disinfection bottle 805. A fixed clip 806 is provided on the surface of the disinfection bottle 805, and the fixed clip 806 is fixedly connected to the surface of the shell 2, and a pad 807 is provided at the bottom of the disinfection bottle 805, and the pad 807 is fixedly connected to the surface of the shell 2;
[0048] After injecting a proper amount of disinfectant into the disinfection bottle 805, insert the second conduit 804 into the disinfection bottle 805, move the disinfection bottle 805 to be clamped into the fixed clamp 806, and fix the disinfection bottle 805 under the rebound action of the fixed clamp 806, so that the disinfection bottle 805 is placed on the top of the pad 807, and start the booster water pump 801 to make the disinfectant in the disinfection bottle 805 sucked into the booster water pump 801 from the second conduit 804, and then input into the arc spray strip 803 from the first conduit 802 after being pressurized by the booster water pump 801, so that the disinfectant is sprayed out from the arc spray strip 803 in the form of mist to purify and disinfect the indoor environment.
[0049] A method for using an energy-saving outpatient vaccination room air purification device, the method comprising the following steps:
[0050] Use expansion bolts to pass through the fixed end plate 101 to fix the mounting frame 1 to the specified position of the wall, so that the exhaust port 104 on the surface of the mounting frame 1 corresponds to the position of the hole pre-opened on the wall, remove the end cover 7 from the bottom of the housing 2, take a new filter element 6, insert the filter element 6 into the housing 2, put the filter element 6 on the surface of the mounting column 502, push the filter element 6 into the housing 2 until the filter element 6 is tightly attached to the cross mounting plate 501, adjust the position of the filter element 6 inside the housing 2, so that the positioning hole 602 at one end of the filter element 6 is stuck in the positioning column 504 at the bottom of the cross mounting plate 501 Surface, and then cover the other end of the filter element 6 with the fixed pressure plate 503, so that the positioning column 504 on the surface of the fixed pressure plate 503 is inserted into the positioning socket 602 at the other end of the filter element 6, and tighten the fixing screw 505 to pass through the fixed pressure plate 503 and connect with the mounting column 502, so that the fixing screw 505 is closely attached to the surface of the fixed pressure plate 503, and the filter element 6 is clamped and fixed between the cross mounting plate 501 and the fixed pressure plate 503, and then the end cover 7 is clamped at the bottom end of the shell 2, so that the rubber clamping ring 701 on the surface of the end cover 7 is squeezed and deformed on the inner wall of the shell 2, so that the end cover 7 is clamped and fixed to the bottom end of the shell 2;
[0051] The exhaust motor 4 is suspended on the top of the shell 2, so that the cross plug 402 at the bottom of the exhaust motor 4 corresponds to the cross slot 304 at the top of the exhaust mechanism 3, the exhaust motor 4 is inserted into the top of the shell 2, and the bolts are tightened to fix the fixed top plate 401 on the top of the shell 2, so that the cross plug 402 is clamped and fixed inside the cross slot 304, and after injecting an appropriate amount of disinfectant into the disinfection bottle 805, the conduit 2 804 is inserted into the disinfection bottle 805, and the disinfection bottle 805 is clamped into the fixed clamp 806, so that the bottom of the disinfection bottle 805 is placed on the top of the pad 807, and the shell 2 is moved. Make the T-shaped block 201 correspond to the T-shaped slot 102, push the shell 2 close to the mounting frame 1 so that the T-shaped block 201 is inserted into the T-shaped slot 102, and at the same time, the shell 2 is close to the mounting frame 1 so that the elastic card pad 105 is squeezed and deformed between the mounting frame 1 and the shell 2, and the shell 2 is controlled to slide down on the surface of the mounting frame 1 so that the T-shaped block 201 is inserted into the corresponding T-shaped slot 102, and at the same time, the positioning strip 202 on the top of the shell 2 is inserted into the positioning slot 103, and the shell 2 is lifted up under the rebound effect of the elastic card pad 105 so that the T-shaped block 201 is clamped and fixed in the T-shaped slot 102;
[0052] Start the exhaust motor 4, and under the connection between the cross plug block 402 and the cross slot 304, drive the wind wheel 301 to rotate between the mounting top plate 302 and the mounting base 303, so that the outside air flows into the shell 2 from the air inlet 203, and the air flowing into the shell 2 is filtered by the filter element 6 and flows to the wind wheel 301, and is discharged to the air outlet 1 204 and the air outlet 2 205 under the rotation of the wind wheel 301. At the same time, start the booster water pump 801 to make the disinfectant in the disinfection bottle 805 pour into the booster water pump 801 through the conduit 2 804, and then after the boost of the booster water pump 801, it is input into the arc spray strip 803 through the conduit 1 802 and sprayed out from the arc spray strip 803. At the same time, the airflow blown out from the air outlet 1 204 drives the mist disinfectant sprayed by the arc spray strip 803 to float to a distance, thereby expanding the disinfection range of the device and quickly disinfecting and purifying the room.
Claims
1. An energy-saving outpatient vaccination room air purification device, comprising a mounting frame (1), characterized in that: A housing (2) is provided on one side of the mounting frame (1); an exhaust mechanism (3) is fixedly installed inside the housing (2); an exhaust motor (4) is provided inside the housing (2) at the top of the exhaust mechanism (3); a fixed structure (5) is fixedly installed inside the housing (2) at the bottom of the exhaust mechanism (3); a filter element (6) is provided on the bottom surface of the fixed structure (5); an end cover (7) is provided at the bottom end of the housing (2); a rubber clamp (701) is fixedly installed on the surface of the end cover (7); and a spraying and disinfecting mechanism (8) is fixedly installed on the top of the surface of the housing (2).
2. The energy-saving outpatient vaccination room air purification equipment according to claim 1 is characterized in that: Fixed end plates (101) are symmetrically fixedly mounted on both sides of the mounting frame (1), a T-shaped card slot (102) is symmetrically arranged at the bottom of one side of the mounting frame (1), a positioning card slot (103) is arranged at the central position of the top of the mounting frame (1), an exhaust port (104) is arranged at the central position of the surface of the mounting frame (1), and an elastic card pad (105) is fixedly mounted on the surface of the mounting frame (1) located on one side of the T-shaped card slot (102).
3. The energy-saving outpatient vaccination room air purification equipment according to claim 2 is characterized in that: A T-shaped card block (201) is symmetrically fixedly mounted on the bottom of one side of the shell (2), the T-shaped card block (201) corresponds to the position of the T-shaped card slot (102), and the T-shaped card block (201) and the T-shaped card slot (102) have the same shape, a positioning card strip (202) is fixedly mounted on the shell (2) at the top center of one side of the T-shaped card block (201), the positioning card strip (202) corresponds to the position of the positioning card slot (103), and the positioning card strip (202) and the positioning card slot (103) have the same shape, an air inlet (203) is provided at the bottom of the surface of the shell (2), an air outlet 1 (204) is provided at the center of the surface of the shell (2), and an air outlet 2 (205) is provided at a position on one side of the shell (2) corresponding to the air outlet 1 (204).
4. The energy-saving outpatient vaccination room air purification equipment according to claim 1 is characterized in that: The exhaust mechanism (3) comprises a wind wheel (301), a mounting top plate (302) being rotatably mounted on the top end of the wind wheel (301), and the mounting top plate (302) being fixedly connected to the inside of the housing (2), a mounting base frame (303) being rotatably mounted on the bottom end of the wind wheel (301), and the mounting base frame (303) being fixedly connected to the inside of the housing (2), and a cross slot (304) being provided on the top end of the wind wheel (301).
5. The energy-saving outpatient vaccination room air purification equipment according to claim 4 is characterized in that: A fixed top plate (401) is fixedly installed on the top of the exhaust motor (4), and the fixed top plate (401) is connected to the top of the housing (2) by bolts. A cross plug block (402) is fixedly installed on the output end of the bottom of the exhaust motor (4), and the position of the cross plug block (402) corresponds to that of the cross slot (304), and the cross plug block (402) and the cross slot (304) have the same shape.
6. The energy-saving outpatient vaccination room air purification equipment according to claim 1 is characterized in that: The fixing structure (5) comprises a cross mounting plate (501), a mounting column (502) is fixedly mounted at the central position of the bottom of the cross mounting plate (501), a fixed pressure plate (503) is provided at the bottom end of the mounting column (502), six positioning clamping columns (504) are fixedly mounted at equal angles on the corresponding sides of the cross mounting plate (501) and the fixed pressure plate (503), and the positions of the positioning clamping columns (504) on the opposite sides of the cross mounting plate (501) and the fixed pressure plate (503) correspond to each other, a fixing screw button (505) is provided at the bottom of the fixed pressure plate (503), and the top end of the fixing screw button (505) passes through the fixed pressure plate (503) and is threadedly connected to the bottom end of the mounting column (502).
7. The energy-saving outpatient vaccination room air purification equipment according to claim 6 is characterized in that: A mounting hole (601) is provided at the central position of the filter element (6), and six positioning holes (602) are provided at equal angles at both ends of the filter element (6), and the positions of the positioning holes (602) correspond to those of the positioning posts (504).
8. The energy-saving outpatient vaccination room air purification equipment according to claim 3 is characterized by: The spraying and disinfecting mechanism (8) comprises a booster water pump (801), the output end of the booster water pump (801) is provided with a conduit 1 (802), and one end of the conduit 1 (802) is connected to an arc-shaped spray strip (803), the arc-shaped spray strip (803) is fixedly connected to the surface of the shell (2) and located at the top of the air outlet 1 (204), the input end of the booster water pump (801) is provided with a conduit 2 (804), one end of the conduit 2 (804) is provided with a disinfection bottle (805), the surface of the disinfection bottle (805) is provided with a fixed clip (806), and the fixed clip (806) is fixedly connected to the surface of the shell (2), and the bottom of the disinfection bottle (805) is provided with a pad (807), and the pad (807) is fixedly connected to the surface of the shell (2).
9. A method for using an energy-saving outpatient vaccination room air purification device, according to any one of claims 1 to 8, characterized in that: The method of use comprises the following steps: Use expansion bolts to pass through the fixed end plate (101) to fix the mounting frame (1) at the designated position on the wall, so that the exhaust port (104) on the surface of the mounting frame (1) corresponds to the position of the hole pre-opened on the wall, remove the end cover (7) from the bottom of the housing (2), take a new filter element (6), insert the filter element (6) into the housing (2), so that the filter element (6) is sleeved on the surface of the mounting column (502), push the filter element (6) into the housing (2) until the filter element (6) is tightly attached to the cross mounting plate (501), adjust the position of the filter element (6) inside the housing (2), so that the positioning hole (602) at one end of the filter element (6) is stuck on the positioning column (504) at the bottom of the cross mounting plate (501) The filter element (6) is fixedly mounted on the surface of the filter element (6), and the fixed pressure plate (503) is covered on the other end of the filter element (6), so that the positioning clamping column (504) on the surface of the fixed pressure plate (503) is inserted into the positioning plug hole (602) on the other end of the filter element (6), and the fixing screw (505) is tightened to pass through the fixed pressure plate (503) and connected to the mounting column (502), so that the fixing screw (505) is closely attached to the surface of the fixed pressure plate (503), and the filter element (6) is clamped and fixed between the cross mounting plate (501) and the fixed pressure plate (503), and then the end cover (7) is clamped on the bottom end of the housing (2), so that the rubber clamping ring (701) on the surface of the end cover (7) is squeezed and deformed on the inner wall of the housing (2), thereby clamping and fixing the end cover (7) on the bottom end of the housing (2); The exhaust motor (4) is suspended on the top of the housing (2) so that the cross plug (402) at the bottom of the exhaust motor (4) corresponds to the cross slot (304) at the top of the exhaust mechanism (3). The exhaust motor (4) is inserted into the top of the housing (2). The bolts are tightened to fix the fixed top plate (401) on the top of the housing (2) so that the cross plug (402) is clamped and fixed inside the cross slot (304). After injecting an appropriate amount of disinfectant into the disinfection bottle (805), the conduit 2 (804) is inserted into the disinfection bottle (805). At the same time, the disinfection bottle (805) is clamped into the fixed clamp (806) so that the bottom of the disinfection bottle (805) is placed on the top of the pad (807). The housing (2) is moved so that the T The T-shaped card block (201) corresponds to the T-shaped card slot (102), and the housing (2) is pushed close to the mounting frame (1) so that the T-shaped card block (201) is inserted into the T-shaped card slot (102). At the same time, the housing (2) is pressed close to the mounting frame (1) so that the elastic card pad (105) is squeezed and deformed between the mounting frame (1) and the housing (2), and the housing (2) is controlled to slide down on the surface of the mounting frame (1) so that the T-shaped card block (201) is inserted into the corresponding T-shaped card slot (102). At the same time, the positioning card strip (202) on the top of the housing (2) is inserted into the positioning card slot (103). Under the rebound effect of the elastic card pad (105), the housing (2) is lifted up so that the T-shaped card block (201) is clamped and fixed in the T-shaped card slot (102); The exhaust motor (4) is started to drive the wind wheel (301) to rotate between the mounting top plate (302) and the mounting bottom frame (303) under the connection between the cross plug block (402) and the cross slot (304), so that the outside air flows into the housing (2) from the air inlet (203), and the air flowing into the housing (2) is filtered by the filter element (6) and flows to the wind wheel (301), and is discharged to the first air outlet (204) and the second air outlet (205) under the rotation of the wind wheel (301). The booster water pump (801) is started to pour the disinfectant in the disinfection bottle (805) into the booster water pump (801) through the second conduit (804), and then the disinfectant is input into the arc-shaped spray bar (803) through the first conduit (802) after being pressurized by the booster water pump (801) and sprayed out from the arc-shaped spray bar (803). At the same time, the airflow blown out from the first air outlet (204) drives the mist disinfectant sprayed from the arc-shaped spray bar (803) to drift to a distant place, thereby expanding the disinfection range of the device and performing rapid disinfection and purification treatment on the room.