An atomization device based on sitting and lying in multiple scenes
The design of the L-shaped casing and liquid dispensing mechanism solves the problems of uneven drug solution ratio and leakage in various scenarios such as sitting and lying down, and realizes rapid cleaning and uniform mixing of drug solution, improving the ease of use and therapeutic effect of the nebulizer.
Patent Information
- Application Number
- CN202510242862.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2045-03-03
AI Technical Summary
Existing medical nebulizers suffer from uneven drug concentration and leakage when used in sitting or lying positions, and the main unit design leads to unstable drug efficacy and difficulty in achieving rapid cleaning.
It adopts an L-shaped chassis design, combined with an electric telescopic rod and a liquid filling mechanism. The ratio of medicine and water is achieved through a T-shaped chute and adjustment mechanism, and leakage is prevented through an annular groove and sealing plate structure. The electric telescopic rod enables rapid cleaning of the medicine cartridge.
It achieves uniform drug solution ratio and rapid cleaning, avoids unstable drug efficacy and leakage problems, and improves the ease of use and therapeutic effect of the nebulizer.
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Figure CN120053820B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of medical nebulizer technology, specifically relating to a nebulizer device for use in multiple scenarios, including sitting and lying down. Background Technology
[0002] A medical nebulizer is a device that transforms liquid medications into fine droplets, allowing patients to receive treatment via inhalation. It is commonly used for respiratory conditions such as bronchitis and asthma. The principle behind it is to use ultrasound or compressed air to atomize liquid medications into fine particles, enabling the medication to penetrate deep into the lungs and exert its therapeutic effect rapidly. Through nebulized inhalation, patients can directly receive medication in their airways, improving drug bioavailability and therapeutic efficacy.
[0003] Chinese Patent Application No. 202410638714.9 discloses a medical piezoelectric grid-type nebulized respiratory drug delivery device, including a nebulizer body. One upper end of the nebulizer body has a receiving and lowering groove, and the bottom of the receiving and lowering groove has a connecting through hole. The other end of the nebulizer body has a positioning insertion hole, and symmetrical movable guide insertion holes are provided on both sides of the receiving and lowering groove. When using the nebulizer, it is placed on a flat table, and then the nebulization delivery tube is installed on the nebulizer body. Pushing the support operating plate upwards and then pushing the operating moving plate fixes the nebulizer body and simultaneously provides auxiliary fixation for the nebulization delivery tube, preventing it from separating from the nebulizer body under external force. This ensures the stability and safety of the nebulizer body during use and also guarantees the firmness of the connection between the nebulization delivery tube and the nebulizer body.
[0004] When using a nebulizer, a main unit and a nebulized mask are usually required for convenient nebulization in various scenarios, such as sitting or lying down. However, compared to handheld nebulizers, using a main unit makes it inconvenient to adjust the drug solution ratio, and uneven mixing during the ratio preparation process can lead to unstable drug efficacy. At the same time, avoiding leakage during the drug solution ratio preparation and addition process is also crucial to ensuring the correct ratio. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides an atomizing device suitable for use in multiple scenarios, including sitting and lying down. This invention enables rapid and deep cleaning without disassembling the cartridge. Through the addition mechanism, this invention can quickly and accurately mix the medicine and water, ensuring the uniformity of the medicine mixture and allowing for rapid replenishment of the mixed medicine. This invention comprehensively avoids leakage problems during the process of uniformly mixing the medicine, thus preventing any impact on the final ratio.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A nebulizer for use in multiple scenarios, including sitting and lying down, includes an L-shaped housing. An air pump is installed inside one side of the L-shaped housing, and an electric telescopic rod is installed inside the other side. An air cover is inserted into the top of the L-shaped housing, and the air outlet at the top of the air cover is connected to the nebulizer mask through a hose.
[0008] An air inlet box is fixedly installed on the top of the L-shaped casing inside the air hood. A cartridge is installed on the top of the air inlet box, and one end of the air inlet box is fixedly connected to the air pump via an air pipe. A first conical tube is fixedly connected to the bottom of the cartridge. A second conical tube is fixedly connected to the top periphery of the first conical tube via a fixing rod. The second conical tube is sleeved on the outside of the first conical tube. The support rod at the telescopic end of the electric telescopic rod passes through the air inlet box and the first conical tube, and a partition is fixedly connected to the end of the support rod. A liquid dispensing mechanism is movably installed on the outside of the cartridge.
[0009] Furthermore, the liquid addition mechanism includes a dosing tank and a water tank fixedly connected by a fixing ring; the side wall of the cartridge is symmetrically provided with T-shaped grooves, and the left and right side walls of the T-shaped grooves are provided with slide tracks; the dosing tank and the water tank are slidably connected to the corresponding T-shaped grooves, and the fixing ring is slidably connected to the slide tracks; the upper part of the T-shaped groove is provided with a liquid inlet that communicates with the cartridge, and both the dosing tank and the water tank are provided with liquid outlets.
[0010] Furthermore, when the dosing tank and water tank are located in the middle of the upper layer of the T-shaped chute, half of the liquid outlet is connected to the liquid inlet; when the fixing ring is rotated, the changes in the two initial liquid outlets connected to the liquid inlet are opposite; when the dosing tank and water tank are located at the upper edge of the T-shaped chute and at the lower layer of the T-shaped chute, the liquid outlets are completely closed.
[0011] Furthermore, a top plate is slidably connected to the lower layer of the T-shaped chute, and a slide rod is fixedly connected to the bottom of the top plate. The slide rod passes through the bottom of the T-shaped chute and a limiting block is fixed at the end of the slide rod. A return spring is sleeved on the slide rod, and both ends of the top plate are slidably connected to the chute through sliders.
[0012] Furthermore, an annular slide is fixedly provided on the inner side wall of the cartridge case, and an annular groove is rotatably connected inside the annular slide. A docking ring is symmetrically fixedly connected to the bottom of the annular groove. A plurality of first connecting holes are evenly opened on the lower side wall of the docking ring. An adjustment mechanism is slidably connected to the docking ring.
[0013] Furthermore, the adjustment mechanism includes two L-shaped tubes respectively fixedly connected to one side of the dosing tank and the water tank. The L-shaped tubes are slidably connected to the corresponding docking rings, and the ends of the docking rings are fixedly provided with sealing plates. The L-shaped tubes and the side near the sealing plate are provided with a plurality of second connecting holes. The two L-shaped tubes are fixedly connected to a conical retaining ring, and the upper end of the conical retaining ring is in contact with the inner wall of the cartridge.
[0014] Furthermore, when the dosing tank and water tank are located on the upper layer of the T-shaped chute, the sealing plate fits against the bottom of the annular groove; when the dosing tank and water tank are located on the lower layer of the T-shaped chute, the first connecting hole and the second connecting hole are connected.
[0015] Furthermore, the top center of the air intake box has a connecting port that is fixedly connected to the first conical tube; the bottom center of the air intake box is fixedly connected to a receiving pipe, and the support rod is located inside the receiving pipe.
[0016] Furthermore, both the dosing tank and the water tank have hinged covers on their tops.
[0017] Furthermore, the outer walls of the dosing tank and the water tank are jointly fixedly connected to the operating ring.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] (1) The present invention controls the support rod to raise and lower the partition block by means of the extension end of the electric telescopic rod. Since the second conical tube is higher than the first conical tube, the top of the second conical tube can be selectively closed. When polar atomization is required, the partition block is opened to perform atomization operation. When the cartridge needs to be cleaned, the partition block is closed to the top of the second conical tube, so that the gas from the air pump can enter the cartridge in reverse between the first and second conical tubes. Deep agitation and cleaning are performed by blowing air, so that the cartridge can be quickly and deeply cleaned without disassembling the cartridge.
[0020] (2) Through the cooperation of the liquid addition mechanism, the present invention can quickly and proportionally mix the medicine and water, and ensure the uniformity of the mixing ratio of the medicine. Specifically, the present invention uses the cooperation of the T-shaped chute with the dosing tank 41 and the water tank. The dosing tank and the water tank slide symmetrically in the corresponding T-shaped chute. When the dosing tank and the water tank are located in the middle of the upper layer of the T-shaped chute, half of the outlet of the dosing tank and the water tank are connected to the inlet. The dosing tank and the water tank have the same dispensing speed, thereby achieving a 1:1 ratio. When it is necessary to change different ratios, the dosing tank 41 and the water tank only need to slide symmetrically horizontally in the upper layer of the T-shaped chute, thereby achieving rapid proportional mixing of medicine and water. Through the coordination of the liquid addition mechanism and the adjustment mechanism, while achieving the liquid addition ratio, the annular groove structure design ensures that the liquid medicine and water entering the cartridge do not fall directly to the bottom of the cartridge, but first enter the annular groove for transition, thereby ensuring the full mixing of the liquid medicine and water and avoiding uneven liquid medicine ratios in the sprayed solution. At the same time, after the liquid addition is completed, the dosing tank and the water tank are pressed into the lower layer of the T-shaped chute. At this time, the adjustment mechanism is driven to move down, and the L-shaped pipe moves down synchronously to connect the first connecting hole and the second connecting hole, thereby realizing the rapid replenishment of the liquid medicine mixed in the annular groove by discharging it into the bottom of the cartridge through the first connecting hole and the second connecting hole.
[0021] (3) The present invention uses the cooperation of L-shaped tube, connecting ring and sealing plate. When the sealing plate is attached to the bottom of the annular groove, a vertical seal is formed. At this time, the first connecting hole and the second connecting hole are not connected, thus forming a horizontal seal. By combining the horizontal seal and the vertical seal, the leakage problem in the process of uniform drug ratio is comprehensively avoided, thus affecting the final ratio. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the physical structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0023] Figure 2 This is a schematic diagram of the overall structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0024] Figure 3 This is a schematic diagram of the dispersion structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0025] Figure 4 This is a schematic diagram of the cross-sectional structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0026] Figure 5 This is a partial cross-sectional structural diagram of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0027] Figure 6 This is a schematic diagram of the adjustment mechanism of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0028] Figure 7 This is a schematic diagram of the telescopic mechanism structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0029] Figure 8 This is a schematic diagram of the liquid dispensing mechanism of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0030] Figure 9 This is a schematic diagram of the cartridge structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0031] Figure 10 This is a schematic diagram of the electric telescopic rod structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0032] Figure 11 This is a schematic diagram of the air intake box structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0033] Figure 12 This is a schematic diagram of the internal structure of the cartridge of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0034] Figure 13This is a schematic diagram of the annular groove structure of an atomizing device for use in multiple scenarios, including sitting and lying down, according to the present invention.
[0035] The attached figures are labeled as follows:
[0036] L-shaped chassis - 100; air hood - 200; air outlet - 210; hose - 220; atomizing mask - 230; cartridge - 300; first conical tube - 310; second conical tube - 320; annular slide - 330; T-shaped chute - 340; slide - 341; liquid inlet - 350; liquid dosing mechanism - 400; dosing tank - 410; water tank - 420; operating ring - 430; fixing ring - 440; Adjustment mechanism - 500; L-shaped tube - 510; conical retaining ring - 520; sealing plate - 530; second connecting hole - 540; air inlet box - 600; air passage pipe - 610; connecting port - 620; receiving pipe - 630; electric telescopic rod - 700; partition block - 710; annular groove - 800; docking ring - 810; first connecting hole - 811; top plate - 900; sliding rod - 910; return spring - 920. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to embodiments. Of course, the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0038] Although the steps in this invention are arranged with reference numerals, this is not intended to limit the order of the steps. Unless the order of the steps is explicitly stated or the execution of a step requires other steps as a basis, the relative order of the steps can be adjusted. It is understood that the term "and / or" as used herein refers to and covers any and all possible combinations of one or more of the associated listed items.
[0039] Example
[0040] like Figures 1 to 13 As shown, an atomizing device for use in multiple scenarios, including sitting and lying down, includes an L-shaped housing 100. An air pump is installed inside one side of the L-shaped housing 100, and an electric telescopic rod 700 is installed inside the other side. An air cover 200 is inserted into the top of the L-shaped housing 100, and the air outlet 210 at the top of the air cover 200 is connected to the atomizing mask 230 through a hose 220.
[0041] An air inlet box 600 is fixedly installed on the top of an L-shaped housing 100 located inside the air hood 200. A cartridge 300 is connected to the top of the air inlet box 600. One end of the air inlet box 600 is fixedly connected to an air pump via an air pipe 610. A first conical tube 310 is fixedly connected to the bottom of the cartridge 300. A second conical tube 320 is fixedly connected to the top periphery of the first conical tube 310 via a fixing rod. The second conical tube 320 is sleeved outside the first conical tube 310. The support rod at the telescopic end of the electric telescopic rod 700 passes through the air inlet box 600 and the first conical tube 310, and a partition block 710 is fixedly connected to the end of the support rod. A liquid dispensing mechanism 400 is movably installed on the outside of the cartridge 300.
[0042] The present invention, through the separate design of the L-shaped housing 100, the hose 220, and the nebulizing mask 230, allows patients who need nebulization to use it in multiple scenarios. They only need to fix the L-shaped housing 100 in place, and by wearing the nebulizing mask 230, they can perform nebulization either sitting or lying down, thus making the nebulization operation convenient.
[0043] This invention uses the telescopic end of the electric telescopic rod 700 to control the raising and lowering of the partition block 710. Since the second conical tube 320 is higher than the first conical tube 310, the top of the second conical tube 320 can be selectively sealed. When polar atomization is required, the partition block 710 is opened for atomization. When the cartridge 300 needs cleaning, the partition block 710 is sealed to the top of the second conical tube 320, allowing gas from the air pump to enter the cartridge 300 in reverse between the first and second conical tubes 310 and perform deep agitation cleaning through blowing, thus achieving rapid deep cleaning without disassembling the cartridge 300. Simultaneously, this invention, in conjunction with the liquid addition mechanism 400, can quickly and accurately proportion the medicine and water, ensuring the uniformity of the medicine mixture and thus guaranteeing the precision of the treatment effect, which will be described in detail later.
[0044] It is worth noting that the atomization principle of this invention is achieved by an air pump inflating the first conical tube 310. The medicine is inside the cartridge 300 and blocked by the partition 710, thereby forming a Venturi effect, causing the medicine to be sprayed out between the second conical tube 320 and the first conical tube 310 to form an atomization effect. Then, it is inhaled by the human body through the hose 220 and the atomizing mask 230.
[0045] Furthermore, a drain outlet with a valve is fixedly provided on the lower side of one side of the cartridge 300 for draining water after cleaning.
[0046] Furthermore, the liquid addition mechanism 400 includes a dosing tank 410 and a water tank 420 fixedly connected by a fixing ring 440; the side wall of the cartridge 300 is symmetrically provided with T-shaped grooves 340, and the left and right side walls of the T-shaped grooves 340 are provided with slides 341; the dosing tank 410 and the water tank 420 are slidably connected to the corresponding T-shaped grooves 340, and the fixing ring 440 is slidably connected to the slides 341; the upper part of the T-shaped groove 340 is provided with a liquid inlet 350 and communicates with the cartridge 300; both the dosing tank 410 and the water tank 420 are provided with liquid outlets.
[0047] Furthermore, when the dosing tank 410 and the water tank 420 are located in the middle of the upper layer of the T-shaped chute 340, half of the liquid outlet is connected to the liquid inlet 350; when the fixing ring 440 is rotated, the changes in the two initial liquid outlets connected to the liquid inlet 350 are opposite; when the dosing tank 410 and the water tank 420 are located at the upper edge of the T-shaped chute 340 and at the lower layer of the T-shaped chute 340, the liquid outlets are completely closed.
[0048] This invention utilizes the cooperation of a T-shaped chute 340 with a dosing tank 41 and a water tank 420. The dosing tank 410 and the water tank 420 slide symmetrically within the corresponding T-shaped chute 340. When the dosing tank 410 and the water tank 420 are located in the middle of the upper layer of the T-shaped chute 340, half of the outlet of the dosing tank 410 and the water tank 420 are connected to the inlet 350, and the dispensing speed of the dosing tank 410 and the water tank 420 is the same, thereby achieving a 1:1 mixing ratio. When it is necessary to change to a different mixing ratio, the dosing tank 410 and the water tank 420 only need to slide symmetrically horizontally on the upper layer of the T-shaped chute 340, thereby achieving rapid proportional mixing of the medicine and water.
[0049] It is worth noting that when the dosing tank 410 and the water tank 420 are located at the upper edge of the T-shaped chute 340 and at the lower layer of the T-shaped chute 340, the liquid outlets are completely closed. At this time, the mixing operation is paused, which facilitates the subsequent addition of liquid to the dosing tank 410 and the water tank 420. Furthermore, since the dosing tank 410 and the water tank 420 slide rapidly, the changes in proportion during the sliding process are negligible. In addition, the liquid flow rate can be controlled by setting the size of the liquid outlet and the liquid inlet 350, thereby reducing the mixing error. This is a conventional setting and will not be described in detail here.
[0050] Furthermore, a top plate 900 is slidably connected to the lower layer of the T-shaped slide groove 340, and a slide rod 910 is fixedly connected to the bottom of the top plate 900. The slide rod 910 passes through the bottom of the T-shaped slide groove 340 and a limiting block is fixed at the end of the slide rod 910. A return spring 920 is sleeved on the slide rod 910, and both ends of the top plate 900 are slidably connected to the slide rail 341 through sliders.
[0051] It is worth noting that the reset spring 920 of the present invention can be selectively set with elastic strength, thereby ensuring that the dosing tank 41 and the water tank 420 will not fall into the lower layer of the T-shaped slide 340 when sliding on the upper layer of the T-shaped slide 340. This will not be described in detail here.
[0052] Furthermore, an annular slide 330 is fixedly provided on the inner side wall of the cartridge 300, and an annular groove 800 is rotatably connected in the annular slide 330. A docking ring 810 is symmetrically fixedly connected to the bottom of the annular groove 800. A plurality of first connecting holes 811 are evenly opened on the lower side wall of the docking ring 810. An adjustment mechanism 500 is slidably connected to the docking ring 810.
[0053] Furthermore, the adjustment mechanism 500 includes two L-shaped tubes 510 respectively fixedly connected to one side of the dosing tank 410 and the water tank 420. The L-shaped tubes 510 are slidably connected to the corresponding docking rings 810, and the ends of the docking rings 810 are fixedly provided with sealing plates 530. The L-shaped tubes 510 and the side near the sealing plates 530 are evenly provided with a plurality of second connecting holes 540. The two L-shaped tubes 510 are jointly fixedly connected to a conical retaining ring 520, and the upper end of the conical retaining ring 520 is in contact with the inner side wall of the cartridge 300.
[0054] Furthermore, when the dosing tank 410 and the water tank 420 are located on the upper layer of the T-shaped chute 340, the sealing plate 530 fits against the bottom of the annular groove 800; when the dosing tank 410 and the water tank 420 are located on the lower layer of the T-shaped chute 340, the first connecting hole 811 and the second connecting hole 540 are connected.
[0055] This invention, through the cooperation of the liquid addition mechanism 400 and the adjustment mechanism 500, achieves the liquid addition ratio while, through the structural design of the annular groove 800, ensures that the liquid medicine and water entering the cartridge 300 do not fall directly to the bottom of the cartridge 300, but first enter the annular groove 800 for transition, thereby ensuring the full mixing of the liquid medicine and water and avoiding uneven proportions of the sprayed liquid medicine. At the same time, after the liquid addition is completed, the dosing tank 410 and the water tank 420 are pressed into the lower layer of the T-shaped chute 340. At this time, the adjustment mechanism 500 is driven to move down, and the L-shaped tube 510 moves down synchronously to connect the first connecting hole 811 and the second connecting hole 540, thereby realizing the rapid replenishment of the liquid medicine mixed in the annular groove 800 by draining it into the bottom of the cartridge 300 through the first connecting hole 811 and the second connecting hole 540.
[0056] The conical retaining ring 520 of this invention can prevent the medicine from splashing and affecting the medicine composition of the medicine cartridge 300 when the medicine is added in the proportion, and can also guide the mist to prevent the mist from affecting the liquid in the annular groove 800, thereby further improving the mixing uniformity of the medicine.
[0057] It is worth noting that, through the cooperation of the L-shaped tube 510, the connecting ring 810, and the sealing plate 530, a vertical seal is formed when the sealing plate 530 is in contact with the bottom of the annular groove 800. At this time, the first connecting hole 811 and the second connecting hole 540 are not connected, thus forming a horizontal seal. By combining the horizontal and vertical seals, leakage problems during the process of uniformly mixing the medicine solution are comprehensively avoided, thereby affecting the final ratio. Furthermore, sealing rubber and other structures can be provided on the surface of the sealing plate 830 to improve the sealing performance. The sealing rubber is a conventional setting and will not be described in detail here.
[0058] Furthermore, the top center of the air intake box 600 is provided with a connecting port 620 and the connecting port 620 is fixedly connected to the first conical tube 310; the bottom center of the air intake box 600 is fixedly connected to a receiving pipe 630, and the support rod is located inside the receiving pipe 630.
[0059] While the air intake box 600 guides the gas, it does not affect the electric telescopic rod 700's control of the partition block 710 to achieve lifting and lowering operations.
[0060] It is worth noting that the air pump and the electric telescopic rod 700 of this invention are both powered by an external power source, which is a conventional setting and will not be described in detail here.
[0061] Furthermore, both the dosing tank 410 and the water tank 420 are hinged to have lids on their tops. These lids facilitate the dosing of liquids into the dosing tank 410 and the water tank 420.
[0062] Furthermore, the outer walls of the dosing tank 410 and the water tank 420 are jointly fixedly connected to the operating ring 430. The operating ring 430 facilitates the operator's control of the liquid dosing mechanism 400.
[0063] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make several improvements and modifications without departing from the inventive concept of the present invention, and these all fall within the protection scope of the present invention.
Claims
1. An atomization device based on sitting and lying multi-scene use, characterized in that, Including L type machine case (100), one side inside L type machine case (100) installs air pump, the other side inside installs electric telescopic rod (700);The top of L type machine case (100) is inserted with air cover (200), and the air outlet (210) at the top of air cover (200) is connected with atomizing face guard (230) through hose (220); The top of L type machine case (100) inside air cover (200) is fixedly installed with air inlet tank (600), and the top of air inlet tank (600) is communicatively installed with medicine cartridge (300), and one end of air inlet tank (600) is fixedly communicated with air pump through air pipe (610);The bottom of medicine cartridge (300) is fixedly communicated with first conical pipe (310), and the top periphery of first conical pipe (310) is fixedly connected with second conical pipe (320) through fixed rod, and second conical pipe (320) is sleeved outside first conical pipe (310);The support rod of telescopic end of electric telescopic rod (700) passes through air inlet tank (600) and first conical pipe (310), and the end of support rod is fixedly connected with partition block (710);The outside of medicine cartridge (300) movably installs liquid adding mechanism (400); The liquid adding mechanism (400) includes medicine adding tank (410) and water adding tank (420) fixedly connected through fixed ring (440);The side wall of medicine cartridge (300) is fixedly provided with T-shaped sliding groove (340) symmetrically, and the left and right side walls of T-shaped sliding groove (340) are provided with sliding channel (341), and medicine adding tank (410) and water adding tank (420) are slidingly connected with corresponding T-shaped sliding groove (340), and fixed ring (440) is slidingly connected with sliding channel (341);The upper layer of T-shaped sliding groove (340) is provided with liquid inlet (350) and is communicated with medicine cartridge (300), and the upper layer of T-shaped sliding groove (340) is provided with liquid inlet (350) and is communicated with medicine cartridge (300), and the upper layer of T-shaped sliding groove (340) is provided with liquid inlet (350) and is communicated with medicine cartridge (300).
2. The atomization device based on sitting and lying multi-scene use according to claim 1, characterized in that, When medicine adding tank (410) and water adding tank (420) are located in the middle of the upper layer of T-shaped sliding groove (340), half of the liquid outlet is communicated with liquid inlet (350);When rotating fixed ring (440), the size of the two liquid outlets communicated with liquid inlet (350) changes in opposite directions;When medicine adding tank (410) and water adding tank (420) are located at the edge of the upper layer of T-shaped sliding groove (340) and in the lower layer of T-shaped sliding groove (340), all the liquid outlets are closed.
3. The atomization device based on sitting and lying multi-scene use according to claim 1, characterized in that, The lower layer of T-shaped sliding groove (340) is slidingly connected with top plate (900), the bottom of top plate (900) is fixedly connected with slide rod (910), slide rod (910) passes through the bottom of T-shaped sliding groove (340), and limit block is fixedly arranged at the end of slide rod (910);Reset spring (920) is sleeved on slide rod (910), and the both ends of top plate (900) are slidingly connected with sliding channel (341) through slide block.
4. The atomization device based on sitting and lying multi-scene use according to claim 1, characterized in that, The inner side wall of the medicine cartridge (300) is fixed with an annular slide (330), an annular groove (800) is rotatably connected in the annular slide (330), the inner bottom of the annular groove (800) is fixedly and symmetrically communicated with a butt joint ring (810), a plurality of first communication holes (811) are uniformly arranged in the side wall of the butt joint ring (810); the butt joint ring (810) is slidably connected with an adjusting mechanism (500).
5. The atomization device based on sitting and lying multi-scene use according to claim 4, characterized in that, The adjusting mechanism (500) comprises two L-shaped pipes (510) fixedly connected on one side of the medicine adding box (410) and the water adding box (420) respectively, the L-shaped pipes (510) are slidably connected with the corresponding butt joint rings (810), and the end portions of the butt joint rings (810) are fixedly provided with sealing plates (530); a plurality of second communication holes (540) are uniformly arranged on one side of the L-shaped pipe (510) close to the sealing plate (530); the two L-shaped pipes (510) are fixedly connected with a conical blocking ring (520) together, and the upper end of the conical blocking ring (520) is attached to the inner side wall of the medicine cartridge (300).
6. The atomization device based on sitting and lying multi-scene use according to claim 5, characterized in that, When the medicine adding box (410) and the water adding box (420) are located on the upper layer of the T-shaped slide groove (340), the sealing plate (530) is attached to the bottom of the annular groove (800); when the medicine adding box (410) and the water adding box (420) are located on the lower layer of the T-shaped slide groove (340), the first communication holes (811) and the second communication holes (540) are communicated.
7. The atomization device based on sitting and lying multi-scene use according to claim 1, characterized in that, The top of the air inlet box (600) is provided with a communication port (620) in the middle, and the communication port (620) is fixedly communicated with the first conical pipe (310); the bottom of the air inlet box (600) is fixedly communicated with a receiving pipe (630), and the supporting rod is located in the receiving pipe (630).
8. The atomization device based on sitting and lying multi-scene use according to claim 1, characterized in that, The top of the medicine adding box (410) and the water adding box (420) is hingedly provided with a box cover.
9. The atomization device based on sitting and lying multi-scene use according to claim 1, characterized in that, The outer side walls of the medicine adding box (410) and the water adding box (420) are fixedly connected with an operating ring (430) together.
Citation Information
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