Nose washing device capable of recycling waste liquid
By setting up a collection piece on the nose rinse tube sleeve of the nose scrubber, the waste liquid is recovered and guided, and the compression and suffocation problems of the existing nose scrubber during use are solved, improving the cleaning efficiency and collection effect.
Patent Information
- Application Number
- CN202421535569.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-02
AI Technical Summary
The existing nasal scrubber will produce a sense of compression and suffocation to the nasal cavity when used, and the return water pipe can guide the waste liquid to the main body of the return water device at a limited speed, resulting in a long cleaning process and increasing the user's movement frequency.
A nasal scrubber that can recycle waste liquid is designed. By providing a collector on the nose tube sleeve, the collector has a waste liquid cavity, and the waste liquid cavity is connected to the water inlet end of the return water device body through the collector to realize the recycling and guidance of waste liquid.
The design reduces the feeling of oppression and suffocation on the user, facilitates outdoor use, avoids waste liquids pollute the environment, has better collection effect, and improves cleaning efficiency.
Smart Images

Figure CN223026371U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of nasal washers, in particular to a nasal washer capable of recycling waste liquid. Background Art
[0002] A nasal washer is a tool for flushing the nasal cavity. It usually uses a certain pressure or suction, or gravity, or mechanical pressure to send physiological saline into the nostrils, flowing through the part of the nasal vestibule exposed outside the head, the sinuses, the nasal passages, around the nasopharynx, or discharging from one nostril or from the mouth. Through the above paths, with the help of the bactericidal effect of physiological saline itself and the impact force of the water flow, the pathogenic substances and dirt accumulated in the nasal cavity are discharged, so as to restore the normal physiological environment of the nasal cavity, restore the self-detoxification function of the nasal cavity, and achieve the purpose of protecting the nasal cavity.
[0003] Publication (Announcement) Number: CN219480850 discloses a nasal washer device capable of recycling sewage, including a main body, a nasal washer assembly, a main body of the return water device, a sewage tank, a return water pipe, a soft rubber sleeve, a cover, a nasal irrigation tube sleeve, a storage groove, a dental irrigation tube sleeve, function buttons, a switch button, a water storage tank, a water inlet end, a drain port. A nasal washer assembly is provided on one side of the main body, and a main body of the return water device is installed on the nasal washer assembly; the main body of the return water device includes a sewage tank, and a water inlet end is provided on one side of the top of the sewage tank, and a return water pipe is inserted on the water inlet end; the top end of the return water pipe is sleeved with a soft rubber sleeve that matches it, and the soft rubber sleeve is provided with a hole that matches the upper pipe orifice of the return water pipe; the bottom end of the return water pipe is adaptively clamped or threadedly connected to the water inlet end on the sewage tank, and the return water pipe is interconnected with the sewage tank through the water inlet end; a drain port communicating with the sewage tank is opened on one side of the bottom end of the sewage tank; a cover is installed on the drain port; the sewage flushed from the nasal cavity by the nasal washer assembly enters the sewage tank through the return water pipe, without the need to go to a specific location to clean the nasal cavity, which is more convenient to use, and the sewage can also be discharged by opening the cover on the sewage tank and using the drain port. When using this nasal washer device, the nasal irrigation tube sleeve is inserted into one nostril and the return water pipe is inserted into the other nostril, that is, the nasal irrigation tube sleeve flushes the saline into the nostril, and the saline will flow out from the other nostril after flushing. When flowing out, the waste liquid is recycled by the return water pipe, so as to prevent the waste liquid from being randomly discharged when the user is cleaning outside, but there are defects. That is, when in use, the nasal irrigation tube sleeve and the return water pipe are inserted into two nostrils at the same time. Such a method will cause an obvious sense of compression on the nasal cavity, and the user will feel a sense of suffocation when the saline passes through. Moreover, the speed of the return water pipe guiding the waste liquid to the main body of the return water device is also limited, resulting in a long cleaning process, which also increases the actions of the user inserting and pulling out the nasal irrigation tube sleeve and the return water pipe repeatedly when in use (that is, the user's breath-holding time is limited). Content of the Utility Model
[0004] The present utility model aims to solve the drawbacks of the above-mentioned prior art, and provides a nasal washer capable of recycling waste liquid to solve the above problems.
[0005] The technical solution adopted by the present utility model to solve its technical problems: This nasal washer capable of recycling waste liquid includes a main body and a nasal washer assembly disposed on one side of the main body. A waste water recycling device main body is installed on the nasal washer assembly. The nasal washer assembly has a nasal irrigation tube sleeve located at the top. A collection member is provided on the nasal irrigation tube sleeve and is simultaneously connected to the water inlet end of the waste water recycling device main body. The collection member has a waste liquid cavity for receiving waste liquid. After receiving the waste liquid, the waste liquid is discharged into the waste water recycling device main body through the part of the collection member connected to the water inlet end of the waste water recycling device main body.
[0006] Further improvement: When the collection member is disposed on the nasal irrigation tube sleeve, the nasal irrigation tube sleeve is located at an eccentric position of the collection member.
[0007] Further improvement: The collection member includes a lower blocking portion forming the waste liquid cavity and a side blocking portion disposed around the lower blocking portion in a circular shape. The lower blocking portion is provided with a jack for disposing the collection member on the nasal irrigation tube sleeve and an insertion tube located on one side of the jack and connected to the water inlet end of the waste water recycling device main body.
[0008] Further improvement: A waterproof member is disposed in the jack and can cover a part of the nasal irrigation tube sleeve when the lower blocking portion is disposed on the nasal irrigation tube sleeve.
[0009] Further improvement: The waterproof member is divided into a sliding portion and a covering portion along the assembly direction. The nasal irrigation tube sleeve has a clearance fit with the sliding portion and a tight fit with the covering portion.
[0010] Further improvement: The width of the covering portion gradually decreases along the assembly direction.
[0011] Further improvement: A positioning piece is disposed on the insertion tube to quickly define its final assembly position on the waste water recycling device main body.
[0012] The beneficial effects of the present utility model are:
[0013] The present utility model receives waste liquid by disposing a collection member on the nasal irrigation tube sleeve. This method not only does not cause a sense of oppression to the user as in the prior art, but also is convenient for outdoor use, can avoid waste liquid from polluting the environment, and the collection member is made of rubber material and can adhere to the skin surface during use, so that the nostril for discharging waste liquid can be close to the collection member and does not interfere with the insertion of the nasal irrigation tube sleeve into the nostril, resulting in better collection effect. Description of the Drawings
[0014] Figure 1 is a schematic structural diagram of the present utility model;
[0015] Figure 2 is a schematic front structural diagram of the present utility model;
[0016] Figure 3 This is a full-sectional structural schematic diagram of the collection component of the present utility model. Specific embodiments
[0017] The present utility model will be further described below in conjunction with the accompanying drawings:
[0018] Referring to the accompanying drawings: This nasal washer for recyclable waste liquid includes a main body 1 and a nasal washer component 2 provided on one side of the main body 1. A return water device main body 3 is provided on the nasal washer component 2. The nasal washer component 2 has a nasal irrigation tube sleeve 21 at the top. A collection component 4 that is simultaneously connected to the water inlet end of the return water device main body 3 is provided on the nasal irrigation tube sleeve 21. The collection component 4 has a waste liquid cavity 41 for receiving waste liquid. After receiving the waste liquid, the waste liquid is discharged into the return water device main body 3 through the part of the collection component 4 that is connected to the water inlet end of the return water device main body 3. The principle of the present utility model is that the collection component 4 is directly provided on the nasal irrigation tube sleeve 21, so that the collection component 4 can cover the range where the waste liquid flows out, thereby enabling the collection component 4 to collect the waste liquid. This method not only does not cause a sense of oppression to the user as in the prior art, but also is convenient for use outdoors, can avoid environmental pollution caused by the waste liquid, and the collection component 4 is made of rubber material and can adhere to the skin surface during use, so that the nostrils for discharging the waste liquid can be close to the collection component 4 and will not interfere with the insertion of the nasal irrigation tube sleeve 21 into the nostrils, resulting in better collection effect.
[0019] When the collection component 4 is provided on the nasal irrigation tube sleeve 21, the nasal irrigation tube sleeve 21 is located at an eccentric position of the collection component 4. Although the collection component 4 is made of rubber material and can adapt to the interference of the face through deformation, excessive deformation will cause the volume of the collection component 4 to decrease and affect the collection. Therefore, the eccentric setting method is used to reduce the deformation caused by the interference of the face on the collection component 4.
[0020] The collection component 4 includes a lower blocking part 42 that forms the waste liquid cavity 41 and a side blocking part 43 that is arranged in a circle around the lower blocking part 42. A jack 42-a for setting the collection component 4 on the nasal irrigation tube sleeve 21 and an insertion tube 42-b that is located on one side of the jack 42-a and is connected to the water inlet end of the return water device main body 3 are provided on the lower blocking part 42. Such a setting can form a semi-closed waste liquid cavity 41 for receiving waste liquid. The lower blocking part 42 is used to prevent the waste liquid from flowing downward, the side blocking part 43 is used to prevent the waste liquid from flowing around, the jack 42-a is used to realize the connection between the collection component 4 and the nasal irrigation tube sleeve 21, and the insertion tube 42-b realizes the connection between the collection component 4 and the return water device main body 3. In this way, while realizing the connection, it can also be used as a drainage component to guide the waste liquid into the sewage tank of the return water device main body 3.
[0021] A waterproof member 5 is provided inside the jack 42-a. When the lower blocking portion 42 is disposed on the nasal irrigation tube sleeve 21, the waterproof member 5 can cover a part of the nasal irrigation tube sleeve 21. The waterproof member 5 is used to increase the sealing performance of the jack 42-a and prevent waste liquid from flowing out of the jack 42-a.
[0022] The waterproof member 5 is divided into a sliding portion 51 and a covering portion 52 along the assembly direction. The nasal irrigation tube sleeve 21 has a clearance fit with the sliding portion 51 and a tight fit with the covering portion 52. The sliding portion 51 allows the nasal irrigation tube sleeve 21 to pass through quickly, while the covering portion 52 covers a part of the nasal irrigation tube sleeve 21 and achieves a tight fit, eliminating the fitting clearance generated therebetween, thereby achieving a tight sealing fit.
[0023] The width of the covering portion 52 gradually decreases along the assembly direction. Such a setting makes the covering portion 52 have a conical configuration, that is, wider at the top and narrower at the bottom. Then, when the nasal irrigation tube sleeve 21 passes through the narrow part, an outward extrusion force will be generated on the covering portion 52, forcing the covering portion 52 to deform, so that the covering portion 52 can closely fit on the nasal irrigation tube sleeve 21.
[0024] A positioning piece 42-b1 for quickly defining the final assembly position of the insertion tube 42-b on the main body 3 of the water return device is provided on the insertion tube 42-b. That is, when the insertion tube 42-b is inserted into the main body 3 of the water return device, the positioning piece 42-b1 will contact the upper end surface of the main body 3 of the water return device and generate a resistance to prevent the insertion tube 42-b from moving further downward when contacting, thereby quickly defining the final assembly position of the insertion tube 42-b on the main body 3 of the water return device.
[0025] Although the present utility model has been illustrated and described by referring to the preferred embodiments, those of ordinary skill in the art should understand that various changes in form and details may be made within the scope of the claims.
Claims
1. A nasal washer capable of recycling waste liquid, comprising a main unit (1), and a nasal washer assembly (2) arranged on one side of the main unit (1), wherein a water return device body (3) is arranged on the nasal washer assembly (2), characterized in that: The nasal washing device assembly (2) comprises a nasal washing tube sleeve (21) located at the top, and a collecting member (4) connected to the water inlet end of the water return device body (3) is arranged on the nasal washing tube sleeve (21), and the collecting member (4) comprises a waste liquid chamber (41) for receiving waste liquid, and after receiving the waste liquid, the waste liquid chamber (41) discharges the waste liquid into the water return device body (3) through the portion of the collecting member (4) connected to the water inlet end of the water return device body (3).
2. The nasal washer capable of recycling waste liquid according to claim 1, characterized in that: When the collecting member (4) is arranged on the nasal irrigation tube sleeve (21), the nasal irrigation tube sleeve (21) is located at an eccentric position of the collecting member (4).
3. The nasal washer capable of recycling waste liquid according to claim 2, characterized in that: The collecting member (4) comprises a lower stopper (42) forming a waste liquid chamber (41), and a side stopper (43) arranged around the lower stopper (42) in a circle, and the lower stopper (42) is provided with a plug hole (42-a) for enabling the collecting member (4) to be arranged on the nasal flushing tube sleeve (21), and a plug pipe (42-b) located on one side of the plug hole (42-a) and connected to the water inlet end of the water return device body (3).
4. The nasal washer capable of recycling waste liquid according to claim 3, characterized in that: The insertion hole (42-a) is provided with a waterproof component (5) which can cover a portion of the nasal flushing tube sleeve (21) when the lower stopper (42) is arranged on the nasal flushing tube sleeve (21).
5. The nasal washer capable of recycling waste liquid according to claim 4, characterized in that: The waterproof component (5) is divided into a sliding portion (51) and a covering portion (52) along the assembly direction, and the nose flushing tube sleeve (21) is loosely matched with the sliding portion (51) and tightly matched with the covering portion (52).
6. The nasal washer capable of recycling waste liquid according to claim 5, characterized in that: The width of the covering portion (52) gradually decreases along the assembling direction.
7. The nasal washer capable of recycling waste liquid according to claim 3, characterized in that: The insert pipe (42-b) is provided with a positioning piece (42-b1) for quickly defining its final assembly position on the water return device body (3).
Citation Information
Patent Citations
Nasal irrigator device capable of recycling sewage
CN219480850U