Double-channel atomization device
By using the upper and lower flow modules and clamping components of the dual-channel atomizing device, ultrasonic atomized disinfectant is used to disinfect aviation oxygen supply masks in all directions, solving the problems of high disinfectant consumption and incomplete cleaning in existing technologies, and achieving efficient and stable disinfection results.
Patent Information
- Application Number
- CN202422272086.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Existing methods for disinfecting aviation oxygen supply masks consume a large amount of disinfectant, expose the disinfection space to excessive contact with the outside environment, and leave liquid residue on the mask surface due to water leakage, resulting in incomplete cleaning.
The device employs a dual-channel atomization system, utilizing an ultrasonic atomizer to atomize disinfectant into particles. These particles are then passed through an atomization module and clamping assembly that allow for vertical flow, disinfecting the face mask and oxygen supply lines. The clamping assembly secures the face mask, and the atomized disinfectant enters the face mask cavity and lines from top to bottom or bottom to top. Any overflowing disinfectant disinfects the outside of the face mask and is then discharged.
It improved the disinfection effect, reduced the amount of disinfectant used, ensured the comprehensive disinfection of masks and oxygen supply lines, and improved disinfection efficiency and stability.
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Figure CN223654210U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of aviation oxygen supply mask maintenance, specifically relates to a double -channel atomization device. BACKGROUND
[0002] After aviation oxygen supply mask is used for many times, oral bacteria are easy to breed on the mask, which can cause certain harm to the health of the user, and the aviation oxygen supply mask needs to be sterilized and disinfected urgently, in the prior art, disinfectants such as chlorine-containing disinfectants, peracetic acid, acidic oxidizing potential water and the like are usually used to soak, wipe or spray the mask.
[0003] Among many prior arts, Chinese patent application CN117679544B discloses a respiratory mask disinfection device, which comprises a box body mechanism, a lifting type automatic draining mechanism and a reciprocating lifting control mechanism, the box body mechanism comprises a disinfection box body, a gas supply assembly and an automatic sealing assembly, the gas supply assembly and the automatic sealing assembly are arranged on the disinfection box body.
[0004] However, the patent application directly soaks the mask with disinfectant, which consumes a large amount of disinfectant, the disinfection space is in contact with the outside world too much, and the draining of water leaves attached liquid on the surface of the mask, which is not completely clean.
[0005] Based on this, the utility model designs a double -channel atomization device to solve the above -mentioned problems. UTILITY MODEL CONTENTS
[0006] In view of the above-mentioned shortcomings of the prior art, the utility model provides a double -channel atomization device.
[0007] To achieve the above purpose, the utility model realizes the following technical scheme:
[0008] A double -channel atomization device, comprising an atomization box, the upper end of the atomization box is connected with a connecting assembly for transmitting atomized disinfectant, the upper end of the connecting assembly is connected with an atomization assembly for up and down flow disinfection, the atomization assembly comprises an upper atomization module and a lower atomization module, the upper atomization module is connected with the connecting assembly, a plurality of groups of clamping assemblies are installed on the upper end of the upper atomization module at equal intervals, the lower atomization module is connected with the connecting assembly, and the lower atomization module is installed on the lower end of the upper atomization module.
[0009] Further, the atomization box adopts an ultrasonic atomizer.
[0010] Further, the connecting assembly comprises connecting hose one and connecting hose two; one end of the connecting hose one is fixedly connected to the upper end of the atomization box, the other end of the connecting hose one is connected with the upper end of the upper atomization module, one end of the connecting hose two is fixedly connected to the lower end right side of the connecting hose one, the other end of the connecting hose two is connected with the lower end of the lower atomization module.
[0011] Further, the upper atomization module comprises an atomization cavity, a transverse plate, an atomization mask cavity air inlet hole, a connecting pipe and a liquid discharge pipe; the lower atomization module is installed at the front lower end of the atomization cavity, the transverse plate is fixedly installed at the inner top of the atomization cavity, the atomization mask cavity air inlet hole is arranged on the upper side of the inner wall of the middle part of the atomization cavity, the connecting pipe is fixedly installed at the rear lower end of the atomization cavity, the connecting pipe is communicated with the upper end of the connecting hose one, the liquid discharge pipe is fixedly installed at the lower end of the atomization cavity, and the lower end of the transverse plate is connected with the clamping assembly.
[0012] Further, the lower atomization module comprises a porous atomization pipe, an atomization oxygen supply pipeline air inlet pipe and an air exhaust hole; the porous atomization pipe is fixedly connected with the front end of the connecting hose two, the lower end of the atomization oxygen supply pipeline air inlet pipe is fixedly connected with the porous atomization pipe, the atomization oxygen supply pipeline air inlet pipe passes through the bottom of the atomization cavity and is fixedly connected with the lower end of the atomization cavity, and the air exhaust hole is arranged on the inner wall of the lower side of the atomization cavity.
[0013] Further, the atomization oxygen supply pipeline air inlet pipe is provided with five groups.
[0014] Further, the clamping assembly is provided with five groups.
[0015] Further, the clamping assembly comprises a ball, a torsional spring, a rebound plate, a connecting plate, a fixed plate and a pull rod; the ball is fixedly connected with the transverse plate, one end of the torsional spring is fixedly connected to the inner wall of the ball, the other end of the torsional spring is fixedly connected with the upper end of the rebound plate, one end of the connecting plate is fixedly connected with the lower end of the rebound plate, the other end of the connecting plate is fixedly connected with the rear end of the fixed plate, and the upper end of the pull rod is fixedly connected with the lower end of the fixed plate.
[0016] Compared with the prior art, the utility model has the advantages that: 1, when using, if atomization is needed, the atomization box transmits the atomized disinfectant to the atomization assembly through the connecting assembly, the clamping assembly fixedly clamps the oxygen supply mask, the atomized disinfectant is sent to the mask cavity of the oxygen supply mask, the atomized disinfectant enters the oxygen supply pipeline from top to bottom and flows into the lower atomization module, the lower atomization module sends the atomized disinfectant to the oxygen supply pipeline of the mask, and the atomized disinfectant enters the mask cavity along the oxygen supply pipeline, the overflowed atomized disinfectant continues to disinfect the outside of the mask, and the subsequent atomized disinfectant is discharged, so that the disinfection effect of the oxygen supply mask is improved.
[0017] 2, The utility model discloses when using, liquid disinfectant is added in atomization box, and the high -frequency vibration is converted into fog particle after electrifying, and fog particle carries out subsequent atomization treatment, when needing to transmit atomization disinfectant, connect the hose no. 1 with the atomization box and produce the atomization disinfectant transmission to the upper atomization module, and connect the hose no. 2 with the atomization disinfectant transmission to the lower atomization module;
[0018] 3, The utility model discloses when using, when needing to disinfect face shield cavity, atomization disinfectant is transmitted to the back chamber of atomization cavity from the connecting hose no. 1, then from the back chamber along the air inlet hole of atomization face shield cavity enters the face shield cavity, and the atomization disinfectant enters the oxygen supply pipeline of face shield from top to bottom and flows into the lower atomization module, and the overflowed atomization disinfectant disinfects the outside of face shield and discharges, and the condensed liquid disinfectant is discharged from the liquid discharge pipe, when needing to disinfect the oxygen supply pipeline, the atomization disinfectant is transmitted to the multi -hole atomization pipe from the connecting hose no. 2, and flows into the oxygen supply pipeline from the hole of the atomization oxygen supply pipeline air inlet pipe, and enters the face shield cavity along the oxygen supply pipeline from bottom to top, and the overflowed atomization disinfectant disinfects the outside of face shield and discharges from the air vent hole;
[0019] 4, The utility model discloses when using, the atomization oxygen supply pipeline air inlet pipe is connected with five oxygen supply pipelines, and more oxygen supply face shields are disinfected, and five groups of clamping assemblies fix more oxygen supply face shields, and the disinfection efficiency is improved;
[0020] 5, The utility model discloses when using, when needing to clamping fixed oxygen supply face shield, pull down the pull rod, and the pull rod drives the fixed plate to descend, and the fixed plate drives the connecting plate to descend, and the connecting plate drives the rebound plate to descend, and the torsional spring is compressed when the rebound plate is stretched downward, and after stopping stretching, the torsional spring rebounds and recovers, and drives the rebound plate to recover into the horizontal state, and the upper part of oxygen supply face shield is placed between the rebound plate and the horizontal plate, and the lower part of oxygen supply face shield is located above the fixed plate, loosen the pull rod, and the rebound plate rebounds upward, and clamps the oxygen supply face shield with the horizontal plate, and the rebound plate drives the connecting plate to rise, and the connecting plate drives the fixed plate to rise, and the fixed plate drives the pull rod to rise, and the sidewall of oxygen supply face shield is clamped on the both sides of fixed plate, so that the oxygen supply face shield is more stable when atomizing. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical scheme in the embodiments of the present utility model or prior art, below will be to the drawings needed to use in the embodiment or prior art description simple introduction. Obviously, the drawings in the following description only some embodiments of the present utility model, for those skilled in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.
[0022] Figure 1 For the three-dimensional of a double channel atomization device of the present utility model Figure 1 ;
[0023] Figure 2A front view of the double-channel atomization device of the utility model;
[0024] Figure 3 A right view of the double-channel atomization device of the utility model;
[0025] Figure 4 A perspective view of the double-channel atomization device of the utility model Figure 2 ;
[0026] Figure 5 A perspective view of the double-channel atomization device of the utility model Figure 3 ;
[0027] Figure 6 It is the A-A direction section view along Figure 2 ;
[0028] Figure 7 It is the enlarged view of B in Figure 6 .
[0029] The numbers in the figure respectively represent:
[0030] 1, atomization box; 2, connecting assembly; 21, connecting hose one; 22, connecting hose two; 3, atomization assembly; 31, upper atomization module; 311, atomization cavity; 312, horizontal plate; 313, atomization face mask cavity air inlet hole; 314, connecting pipe; 315, liquid discharge pipe; 316, box door; 32, lower atomization module; 321, porous atomization pipe; 322, atomization oxygen supply pipeline air inlet pipe; 323, air vent; 4, clamping assembly; 41, spherical ball; 42, torsional spring; 43, rebound plate; 44, connecting plate; 45, fixed plate; 46, pull rod. DETAILED DESCRIPTION
[0031] To make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0032] In the following description, "left", "right", "front", "rear", "upper", "lower" are oriented with the perspective direction of the front view.
[0033] Embodiment one: in some embodiments, please refer to the Figures 1-7The utility model discloses a double -channel atomization device, including the atomization box 1, the upper end of atomization box 1 is connected with the connecting component 2 for transmission atomization sterilizing agent, the upper end of connecting component 2 is connected with the atomization component 3 for up and down flow communication sterilization, the atomization component 3 includes upper atomization module 31 and lower atomization module 32, upper atomization module 31 is connected with connecting component 2, and the upper end of upper atomization module 31 is installed with multiple groups of interval distribution's clamping component 4, and lower atomization module 32 is connected with connecting component 2, and lower atomization module 32 is installed in the lower end of upper atomization module 31.
[0034] The utility model discloses when using, when needing atomization, the atomization box 1 will atomization sterilizing agent be transmitted to the atomization component 3 through connecting component 2, and clamping component 4 fixedly clamps the oxygen mask, and the atomization sterilizing agent is sent to the mask cavity of oxygen mask, and the atomization sterilizing agent enters the oxygen pipeline from top to bottom and flows into lower atomization module 32, and lower atomization module 32 sends the atomization sterilizing agent to the oxygen pipeline of mask, and along the oxygen pipeline enters the mask cavity, and the overflowed atomization sterilizing agent continues to disinfect the outside of mask, and the subsequent discharge atomization sterilizing agent improves the disinfection effect of oxygen mask.
[0035] The atomization box 1 adopts an ultrasonic atomizer.
[0036] The utility model discloses when using, liquid sterilizing agent is added in the atomization box 1, and after electrifying, the mist particle is converted into mist particle through high frequency vibration, and the mist particle carries out subsequent atomization treatment.
[0037] The connecting component 2 includes connecting hose one 21 and connecting hose two 22, one end of the connecting hose one 21 is fixedly connected to the upper end of the atomization box 1, the other end of the connecting hose one 21 is connected to the upper end of the upper atomization module 31, one end of the connecting hose two 22 is fixedly connected to the lower end right side of the connecting hose one 21, and the other end of the connecting hose two 22 is connected to the lower end of the lower atomization module 32.
[0038] The utility model discloses when using, when needing transmission atomization sterilizing agent, the connecting hose one 21 transmits the atomization sterilizing agent generated by the atomization box 1 to the upper atomization module 31, and the connecting hose two 22 transmits the atomization sterilizing agent to the lower atomization module 32.
[0039] The upper atomization module 31 includes an atomization cavity 311, a horizontal plate 312, an atomization mask cavity air inlet hole 313, a connecting pipe 314 and a liquid discharge pipe 315, the lower atomization module 32 is installed at the front lower end of the atomization cavity 311, the horizontal plate 312 is fixedly installed at the inner top of the atomization cavity 311, the atomization mask cavity air inlet hole 313 is arranged on the upper side of the middle inner wall of the atomization cavity 311, the connecting pipe 314 is fixedly installed at the rear lower end of the atomization cavity 311, the connecting pipe 314 is communicated with the upper end of the connecting hose one 21, the liquid discharge pipe 315 is fixedly installed at the lower end of the atomization cavity 311, and the lower end of the horizontal plate 312 is connected with the clamping component 4.
[0040] The utility model discloses when using, when needing to disinfect the face shield cavity, atomization disinfectant is transmitted to the rear chamber of atomization cavity 311 from the connecting hose one 21 from the connecting pipe 314, and then enters the face shield cavity from the rear chamber along the atomization face shield cavity air inlet hole 313, and the atomization disinfectant enters the oxygen supply pipeline of face shield from top to bottom, and flows into the lower atomization module 32, and the overflowed atomization disinfectant disinfects the outside of face shield and discharges, and the condensed liquid disinfectant is discharged from the liquid discharge pipe 315.
[0041] The lower atomization module 32 includes porous atomization pipe 321, atomization oxygen supply pipeline air inlet pipe 322 and exhaust hole 323, the porous atomization pipe 321 is fixedly connected with the front end of connecting hose two 22, the lower end of atomization oxygen supply pipeline air inlet pipe 322 is fixedly connected with porous atomization pipe 321, atomization oxygen supply pipeline air inlet pipe 322 passes through the bottom of atomization cavity 311 and is fixedly connected with the lower end of atomization cavity 311, and the exhaust hole 323 is arranged on the inside wall of the lower side of atomization cavity 311.
[0042] The utility model discloses when using, when needing to disinfect the oxygen supply pipeline, atomization disinfectant is transmitted to the porous atomization pipe 321 from the connecting hose two 22, and flows into the oxygen supply pipeline from the hole along the atomization oxygen supply pipeline air inlet pipe 322, and enters the face shield cavity from bottom to top along the oxygen supply pipeline, and the overflowed atomization disinfectant disinfects the outside of face shield, and discharges from the exhaust hole 323.
[0043] The atomization oxygen supply pipeline air inlet pipe 322 is equipped with five groups.
[0044] The utility model discloses when using, and the atomization oxygen supply pipeline air inlet pipe 322 is connected with five oxygen supply pipelines, and more oxygen supply face shields are handled to improve the use efficiency.
[0045] The clamping assembly 4 is equipped with five groups.
[0046] The utility model discloses when using, and five clamping assemblies 4 fix more oxygen supply face shields, and improve the disinfection efficiency.
[0047] The clamping assembly 4 includes spherical ball 41, torsional spring 42, rebound plate 43, connecting plate 44, fixed plate 45 and pull rod 46, the spherical ball 41 is fixedly connected with horizontal plate 312, one end of torsional spring 42 is fixedly connected on the inner wall of spherical ball 41, the other end of torsional spring 42 is fixedly connected with the upper end of rebound plate 43, one end of connecting plate 44 is fixedly connected with the lower end of rebound plate 43, the other end of connecting plate 44 is fixedly connected with the rear end of fixed plate 45, and the upper end of pull rod 46 is fixedly connected with the lower end of fixed plate 45.
[0048] The utility model discloses when using, when need to clamp fixed oxygen supply mask, pull down pull rod 46, and pull rod 46 drives fixed plate 45 to descend, and fixed plate 45 drives connecting plate 44 to descend, and connecting plate 44 drives rebound plate 43 to descend, and torsional spring 42 is compressed when pulling down rebound plate 43, and after stopping stretching, torsional spring 42 rebounds and recovers, drives rebound plate 43 to recover into horizontal state, and the upper portion of oxygen supply mask is placed between rebound plate 43 and horizontal plate 312, and the lower portion of oxygen supply mask is located above fixed plate 45, and loosen pull rod 46, and rebound plate 43 bounces up, and with horizontal plate 312 clamps oxygen supply mask, and rebound plate 43 drives connecting plate 44 to rise, and connecting plate 44 drives fixed plate 45 to rise, and fixed plate 45 drives pull rod 46 to rise, and the lateral wall of oxygen supply mask is clamped to the both sides of fixed plate 45, and oxygen supply mask is more stable when atomizing.
[0049] In some embodiments, as shown in FIG. 2, the upper atomization module 31 further comprises a box door 316, which is hinged to the front end of the atomization cavity 311. Figure 5
[0050] In use, to ensure that the disinfection process reduces external pollution, the box door 316 closes the front end space of the atomization cavity 311, and only the through holes and through pipes are kept for the flow of the atomized disinfectant.
[0051] In some embodiments, as shown in FIG. 3, the fixed plate 45 is provided with an arc-shaped portion, which is configured to match the curvature of the oxygen supply mask. Figures 1-6
[0052] In use, the shell of the oxygen supply mask is in the shape of a circular arc, and the fixed plate 45 cooperates with the circular arc to stably fit the mask so that the mask does not shake back and forth, and the disinfection process proceeds steadily.
[0053] The above embodiments are only used to illustrate the technical solutions of the utility model, and not to limit them. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for some technical features. Such modifications or replacements will not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the utility model.
Claims
1. A dual-channel atomizing device, comprising an atomizing box (1), characterized in that: The upper end of the atomizing box (1) is connected to a connecting component (2) for transmitting atomized disinfectant, and the upper end of the connecting component (2) is connected to an atomizing component (3) for vertical flow disinfection. The atomizing component (3) includes an upper atomizing module (31) and a lower atomizing module (32). The upper atomizing module (31) is connected to the connecting component (2). Multiple sets of equally spaced clamping components (4) are installed on the upper end of the upper atomizing module (31). The lower atomizing module (32) is connected to the connecting component (2) and is installed at the lower end of the upper atomizing module (31).
2. The dual-channel atomizing device according to claim 1, characterized in that, The atomizing box (1) uses an ultrasonic atomizer.
3. The dual-channel atomizing device according to claim 2, characterized in that, The connecting assembly (2) includes a first connecting hose (21) and a second connecting hose (22); One end of the first connecting hose (21) is fixedly connected to the upper end of the atomizing box (1), and the other end of the first connecting hose (21) is connected to the upper end of the upper atomizing module (31). One end of the second connecting hose (22) is fixedly connected to the lower right side of the first connecting hose (21), and the other end of the second connecting hose (22) is connected to the lower end of the lower atomizing module (32).
4. The dual-channel atomizing device according to claim 3, characterized in that, The upper atomizing module (31) includes an atomizing chamber (311), a horizontal plate (312), an air inlet (313) for the atomizing mask chamber, a connecting pipe (314), and a drain pipe (315). The lower atomizing module (32) is installed at the lower front end of the atomizing chamber (311). The horizontal plate (312) is fixedly installed at the top inner part of the atomizing chamber (311). The air inlet (313) of the atomizing mask cavity is opened on the upper side of the inner wall in the middle of the atomizing chamber (311). The connecting pipe (314) is fixedly installed at the lower rear end of the atomizing chamber (311). The connecting pipe (314) is connected to the upper end of the connecting hose (21). The drain pipe (315) is fixedly installed at the lower end of the atomizing chamber (311). The lower end of the horizontal plate (312) is connected to the clamping assembly (4).
5. The dual-channel atomizing device according to claim 4, characterized in that, The upper atomizing module (31) also includes a door (316). The door (316) is hinged to the front end of the atomizing chamber (311).
6. The dual-channel atomizing device according to claim 5, characterized in that, The lower atomizing module (32) includes a porous atomizing tube (321), an atomizing oxygen supply pipeline inlet pipe (322), and an exhaust port (323). The porous atomizing tube (321) is fixedly connected to the front end of the connecting hose 2 (22), the lower end of the atomizing oxygen supply pipeline inlet pipe (322) is fixedly connected to the porous atomizing tube (321), the atomizing oxygen supply pipeline inlet pipe (322) passes through the bottom of the atomizing chamber (311) and is fixedly connected to the lower end of the atomizing chamber (311), and the exhaust port (323) is opened on the lower inner wall of the atomizing chamber (311).
7. The dual-channel atomizing device according to claim 6, characterized in that, The oxygen supply pipeline inlet pipe (322) is provided with five sets.
8. The dual-channel atomizing device according to claim 7, characterized in that, The clamping assembly (4) has five sets.
9. The dual-channel atomizing device according to claim 8, characterized in that, The clamping assembly (4) includes a ball (41), a torsion spring (42), a spring plate (43), a connecting plate (44), a fixing plate (45), and a pull rod (46). The sphere (41) is fixedly connected to the horizontal plate (312), one end of the torsion spring (42) is fixedly connected to the inner wall of the sphere (41), the other end of the torsion spring (42) is fixedly connected to the upper end of the rebound plate (43), one end of the connecting plate (44) is fixedly connected to the lower end of the rebound plate (43), the other end of the connecting plate (44) is fixedly connected to the rear end of the fixed plate (45), and the upper end of the pull rod (46) is fixedly connected to the lower end of the fixed plate (45).
10. The dual-channel atomizing device according to claim 9, characterized in that, The arc-shaped portion of the fixing plate (45) is designed to match the shape of the oxygen supply mask.
Citation Information
Patent Citations
A respiratory mask disinfection device
CN117679544B