Protective sleeve for oxygen inhalation humidification bottle
By designing a protective sleeve for the oxygen humidification bottle and using a base and clamping mechanism to fix the humidification bottle, the problem of condensate dripping was solved, and condensate collection and safety were improved.
Patent Information
- Application Number
- CN202423069082.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-12
AI Technical Summary
During oxygen therapy, condensation from the humidification bottle can easily drip, potentially causing patient discomfort and damage to medical equipment. Existing solutions, such as towels or plastic bags, are prone to falling off or shifting, and cannot effectively collect the condensation.
A protective cover for an oxygen humidification bottle was designed, including a base, a cover, and a clamping mechanism. The clamping mechanism secures the humidification bottle, the base collects condensate, the cover is detachably connected to the base, the collection tank stores condensate, and a door lock mechanism ensures stability.
It effectively prevents condensation from dripping, reducing the impact on patients and equipment, and facilitates the collection and disposal of condensation, thus improving safety during use.
Smart Images

Figure CN223586368U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical auxiliary devices, in particular to an oxygen humidification bottle protective sleeve. BACKGROUND
[0002] When oxygen is clinically used, a humidification bottle needs to be used, which mainly functions to humidify dry oxygen. After a patient uses the oxygen humidification bottle for a long time, condensate water will be generated on the outer body of the humidification bottle, which may drip on the patient or medical equipment, not only causing discomfort to the patient, but also possibly increasing the risk of damage to the medical equipment and affecting the diagnosis and treatment of the patient's condition. In order to avoid the dripping of condensate water, in the medical institution where the inventors work, a towel or a plastic bag is mainly used to cover the humidification bottle to collect the condensate water in the plastic bag or absorb it on the towel. However, during the use of the towel or the plastic bag, the towel and the plastic bag have the possibility of falling off or moving, and there is also a certain gap between the towel or the plastic bag and the humidification bottle. When a large amount of condensate water is collected, the condensate water may also overflow and drip from the above gap. CONTENT OF THE UTILITY MODEL
[0003] The purpose of the present application is to provide an oxygen humidification bottle protective sleeve to solve the problem of condensate water dripping. To this end, the present application provides the following technical solutions:
[0004] An oxygen humidification bottle protective sleeve, comprising a bottom support, a protective sleeve and a clamping mechanism; the protective sleeve is a shell with open upper and lower ends for surrounding the oxygen humidification bottle; the bottom support is in the shape of a groove and can be detachably connected to the lower end of the protective sleeve; the clamping mechanism is provided with two, comprising a sliding rail, a sliding block, a clamping jaw and an adjusting screw; the sliding rail is fixedly connected to the upper part of the protective sleeve and penetrates the side wall of the protective sleeve; the sliding block is installed on the sliding rail and can slide on the sliding rail to partially extend from the end of the sliding rail in the protective sleeve; the adjusting screw is threadedly connected to the end of the sliding rail outside the protective sleeve and is used to push the sliding block to slide after being rotated; the clamping jaw is provided in the protective sleeve and is fixedly connected to the extended end of the sliding block, and the clamping jaws of the two clamping mechanisms are oppositely arranged, so as to be capable of being clamped on the upper part of the oxygen humidification bottle.
[0005] In at least one embodiment, the sliding rail is a long strip-shaped block, the top surface of which is provided with a first sliding groove with one open end and one closed end along the length direction, and the two side surfaces are provided with two second sliding grooves with both ends closed; the adjusting screw is connected to the closed end of the first sliding groove; the sliding block is slidably provided in the first sliding groove, and the two sides thereof are provided with protruding anti-dropping blocks which are slidably provided in the second sliding grooves.
[0006] In some embodiments, the lower part of the sheath is a cylindrical lower sleeve, and two mirror-image clamping grooves are formed on the two sides of the lower sleeve, the clamping groove comprises a first groove section formed upward from the lower edge of the lower sleeve, a second groove section extending transversely from the upper end of the first groove section, and a recessed groove section formed at the end of the second groove section; the bottom support is a circular groove body capable of being sleeved on the outer lower end of the lower sleeve, and two vertically arranged hanging ears are fixedly connected to the top of the side wall of the circular groove body, and the inner side of the hanging ears is provided with protruding clamping blocks, and the two clamping blocks can slide along the two clamping grooves respectively and are hung in the recessed groove section.
[0007] In at least one embodiment, the upper part of the sheath is a hollow circular truncated cone-shaped upper sleeve, the upper sleeve and the lower sleeve are coaxially arranged, and the clamping mechanism is arranged on the upper sleeve.
[0008] In at least one embodiment, a liquid collecting groove in the shape of a circular ring is formed on the inner bottom surface of the bottom support.
[0009] In some embodiments, the sheath is divided into two parts connected by a hinge.
[0010] In at least one embodiment, a hinge is connected between the side edges of the two parts of the sheath, and a door lock mechanism is arranged between the other side edges; the door lock mechanism comprises two clamping seats, a clamping pin, a sliding push piece, a limiting block and a spring; the two clamping seats are fixedly connected to the outer sides of the two parts of the sheath respectively, and are close to each other, and a through groove is further formed in the top of the clamping seats; one end of the clamping pin is hingedly connected to one of the through grooves, the clamping pin can be clamped in both of the through grooves at the same time, and the non-hinged end of the clamping pin can extend out of the other through groove; the sliding push piece is slidably mounted on the clamping pin; the limiting block is fixedly connected to the non-hinged end of the clamping pin; the spring is sleeved on the clamping pin and located between the sliding push piece and the limiting block.
[0011] In at least one embodiment, the hinge is long and strip-shaped and is made of soft material, and is fixedly connected to the edges of the two parts of the sheath respectively.
[0012] In at least one embodiment, the sliding push piece comprises a center ring sleeved on the clamping pin, and two wing plates symmetrically arranged on the upper and lower ends of the center ring.
[0013] In at least one embodiment, the clamping pin is flat and long, and a through hole adapted to the shape of the clamping pin is formed in the center of the center ring.
[0014] Compared with the prior art, the present application at least realizes the following beneficial effects:
[0015] The oxygen inhalation humidification bottle protective sleeve comprises a bottom support, a protective sleeve and a clamping mechanism, the clamping mechanism is used for clamping the neck of the humidification bottle to avoid the whole device from falling, the bottom support and the protective sleeve are detachably connected, the humidification bottle can be covered, so that the condensed water generated in the oxygen inhalation process can be collected in the bottom support, and the bottom support can be detached to pour the collected condensed water, thereby solving the problem that the condensed water easily drips onto the patient or medical equipment. BRIEF DESCRIPTION OF DRAWINGS
[0016] One or more embodiments of the present application will now be described, by way of example only, with reference to the accompanying drawings:
[0017] Figure 1 is a perspective view of an embodiment of the present application;
[0018] Figure 2 is a front view of an embodiment of the present application;
[0019] Figure 3 is a rear view of an embodiment of the present application;
[0020] Figure 4 is a top view of an embodiment of the present application;
[0021] Figure 5 is a structural schematic view of an embodiment of the present application after removing the bottom support;
[0022] Figure 6 is a structural schematic view of the bottom support of an embodiment of the present application;
[0023] Figure 7 is a structural schematic view of the clamping mechanism of an embodiment of the present application;
[0024] Figure 8 and Figure 9 are respectively a perspective view and a front view of the door lock mechanism of an embodiment of the present application.
[0025] The reference signs in the drawings are as follows: 100, bottom support; 110, hanging ear; 120, clamping block; 130, liquid collecting groove; 200, protective sleeve; 210, lower sleeve body; 220, upper sleeve body; 230, clamping groove; 231, first groove section; 232, second groove section; 233, recess section; 240, hinge; 300, clamping mechanism; 310, sliding rail; 311, first sliding groove; 312, second sliding groove; 320, sliding block; 321, anti-dropping block; 330, clamping jaw; 340, adjusting screw; 400, door lock mechanism; 410, clamping seat; 411, through groove; 420, clamping pin; 430, sliding tab; 431, center ring; 432, wing plate; 440, limiting block; 450, spring. DETAILED DESCRIPTION
[0026] The application will be described in greater detail with reference to the accompanying drawings, in which exemplary embodiments are shown. It should be understood that the application can be implemented in many different forms and should not be construed as limited to the embodiments set forth herein. These embodiments are provided so that this disclosure will be complete and fully convey the application's concept to those skilled in the art.
[0027] In the description of the present application, it should be understood that the terms "center", "transverse", "longitudinal", "front", "back", "left", "right", "up", "down", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the scope of protection of the present application.
[0028] As shown in Figures 1-7 In at least one embodiment of the present application, the oxygen inhalation humidification bottle protective sleeve includes a bottom support 100, a sheath 200, and a clamping mechanism 300. The sheath 200 is a shell that surrounds the oxygen inhalation humidification bottle with open upper and lower ends. The bottom support 100 is a groove-shaped body that is detachably connected to the lower end of the sheath 200. The clamping mechanism 300 is provided with two, including a sliding rail 310, a sliding block 320, a clamping jaw 330, and an adjusting screw 340; the sliding rail 310 is fixedly connected to the upper part of the sheath 200 and penetrates through the side wall of the sheath 200; the sliding block 320 is installed on the sliding rail 310 and can slide on the sliding rail 310, and then partially extends out of the end of the sliding rail 310 inside the sheath 200; the adjusting screw 340 is threadedly connected to the end of the sliding rail 310 outside the sheath 200, which is used to rotate and push the sliding block 320 to slide; the clamping jaw 330 is provided inside the sheath 200 and is fixedly connected to the extended end of the sliding block 320, and the clamping jaws 330 of the two clamping mechanisms 300 are oppositely arranged, so as to be capable of clamping the upper part of the oxygen inhalation humidification bottle.
[0029] Among them, the bottom support 100 and the sheath 200 can be made of light transparent materials, such as transparent plastic, to reduce weight and facilitate observation of the collection status of condensed water. The clamping jaw 330 is generally clamped to the neck of the humidification bottle when in use, so its thickness should not be too large to facilitate clamping; as shown in the figure, the clamping jaw 330 is in the shape of a C.
[0030] Further, the slide rail 310 is a long strip-shaped block, the top surface of which is provided with a first slide groove 311 with one end open and one end closed along the length direction, and the two side surfaces of which are provided with two second slide grooves 312 with both ends closed; the adjusting screw 340 is connected to the closed end of the first slide groove 311; the sliding block 320 is slidably arranged in the first slide groove 311, and the two sides of the sliding block 320 are provided with protruding anti-dropping blocks 321 which are slidably arranged in the second slide grooves 312. In this way, by arranging the first slide groove 311, the second slide grooves 312 and the anti-dropping blocks 321, the smooth sliding of the sliding block 320 can be ensured, and the sliding block 320 can also be prevented from falling off during use.
[0031] The specific detachable connection mode between the base 100 and the sheath 200 can be selected from a threaded connection, clamping and the like. With reference to Figures 1-3 and Figures 5-6 , the application further provides a specific detachable connection mode, i.e., the lower part of the sheath 200 is a cylindrical lower sleeve 210, and the two sides of the lower sleeve 210 are provided with mirror-image clamping grooves 230, the clamping grooves 230 including a first groove section 231 which is upwardly arranged from the lower edge of the lower sleeve 210, a second groove section 232 which is laterally extended from the upper end of the first groove section 231, and a recessed groove section 233 which is arranged at the end of the second groove section 232; the base 100 is a circular groove which can be sleeved on the outer lower end of the lower sleeve 210, and the top end of the side wall of the circular groove is fixedly connected with two vertically arranged hanging ears 110, the inner side of each hanging ear 110 is provided with a protruding clamping block 120, and the two clamping blocks 120 can be respectively slid along the two clamping grooves 230 and hung in the recessed groove section 233.
[0032] Further, the upper part of the sheath 200 is a hollow circular truncated cone-shaped upper sleeve 220, the upper sleeve 220 and the lower sleeve 210 are coaxially arranged, and the clamping mechanism 300 is arranged on the upper sleeve 220. In this way, the shape of the entire sheath 200 is adapted to the shape of a common humidification bottle, which is more conducive to the use of the clamping mechanism.
[0033] Further, the inner bottom surface of the base 100 is provided with a circular annular liquid collecting groove 130, so as to store more condensed water. The liquid collecting groove 130 can also be provided with a sponge or other absorbent material which can be taken out.
[0034] In an alternative embodiment, the sheath 200 is divided into two parts which are rotatably connected, so as to facilitate the opening of the sheath 200 and the sleeving of the sheath 200 on the humidification bottle.
[0035] Specifically, the sheath 200 is connected with a hinge 240 between the side edges of the two halves, and is provided with a door lock mechanism 400 between the other side edges; the door lock mechanism 400 comprises two clamping seats 410, a clamping pin 420, a sliding tab 430, a limiting block 440 and a spring 450; the two clamping seats 410 are fixedly connected to the outer sides of the two halves of the sheath 200, and are close to each other, and a through slot 411 is further formed in the top of each clamping seat 410; one end of the clamping pin 420 is hingedly connected to one of the through slots 411, the clamping pin 420 can be clamped in the two through slots 411 at the same time, and the non-hinged end of the clamping pin 420 can extend out of the other through slot 411; the sliding tab 430 is slidably installed on the clamping pin 420; the limiting block 440 is fixedly connected to the non-hinged end of the clamping pin 420; and the spring 450 is sleeved on the clamping pin 420 and located between the sliding tab 430 and the limiting block 440.
[0036] More specifically, the hinge of the clamping pin 420 is achieved by providing a hole at the hinged end of the clamping pin 420, and then fixing a shaft in the two inner sides of the through slot 411, so that the clamping pin 420 can rotate around the shaft.
[0037] More specifically, the hinge 240 is long and strip-shaped and is made of soft material (such as rubber), and is fixedly connected to the edges of the two halves of the sheath 200. The hinge 240 is made of soft material, which not only ensures that it can be used as a rotating connecting member, but also has a certain waterproof function. If this type of hinge 240 is used in the sheath 200 with the upper part being a hollow circular truncated cone and the lower part being a cylindrical lower sleeve 210, the long and soft hinge 240 is only applied to the cylindrical lower sleeve 210.
[0038] More specifically, the sliding tab 430 comprises a center ring 431 sleeved on the clamping pin 420 and two wing plates 432 symmetrically arranged on the upper and lower ends of the center ring 431; in this way, the sliding tab 430 can be slid by pulling the wing plates 432. The clamping pin 420 is a flat and long strip, and a through hole is formed in the center of the center ring 431 and is adapted to the shape of the clamping pin 420; in this way, the sliding tab 430 can be prevented from rotating randomly during sliding.
[0039] In use, the sliding tab 430 is pulled open, and then the clamping pin 420 is rotated upward, so that the door lock mechanism 400 is unlocked, and the sheath 200 can be further opened. When it is necessary to lock the door lock mechanism 400, the clamping pin 420 is clamped in the two through slots 411 at the same time, and the elastic force of the spring 450 can be used for locking, so as to prevent the sheath 200 from being opened randomly.
[0040] It should be understood that all the above examples are exemplary rather than limiting, and various modifications or variations of the specific embodiments described above can be made by those skilled in the art under the concept of the present application, and should be within the scope of protection of the present application.
Claims
1. An oxygen absorbing humidification bottle protective sleeve characterized by, The utility model provides an oxygen uptake humidification bottle fixing device, which comprises a base (100), a sheath (200) and a clamping mechanism (300), the sheath (200) is a shell with open upper and lower ends for surrounding an oxygen uptake humidification bottle, the base (100) is a groove body and is detachably connected to the lower end of the sheath (200), the clamping mechanism (300) is provided with two and comprises a sliding rail (310), a sliding block (320), a clamping jaw (330) and an adjusting screw (340), the sliding rail (310) is fixedly connected to the upper part of the sheath (200) and penetrates the side wall of the sheath (200), the sliding block (320) is installed on the sliding rail (310) and can slide on the sliding rail (310) and then partially extend from the end of the sliding rail (310) in the sheath (200), the adjusting screw (340) is threadedly connected to the end of the sliding rail (310) outside the sheath (200) and is used for pushing the sliding block (320) to slide after being rotated, the clamping jaw (330) is arranged in the sheath (200) and is fixedly connected to the extended end of the sliding block (320), and the clamping jaws (330) of the two clamping mechanisms (300) are oppositely arranged so as to be capable of being clamped on the upper part of the oxygen uptake humidification bottle.
2. The oxygen humidification bottle boot of claim 1, wherein, The sliding rail (310) is a long strip block, the top surface of the sliding rail (310) is provided with a first sliding groove (311) with one end open and one end closed along the length direction, and the two side surfaces of the sliding rail (310) are provided with two second sliding grooves (312) with both ends closed, the adjusting screw (340) is connected to the closed end of the first sliding groove (311), and the sliding block (320) is slidably arranged in the first sliding groove (311) and is provided with protruding anti-disengagement blocks (321) on the two sides, the anti-disengagement blocks (321) are slidably arranged in the second sliding grooves (312).
3. The oxygen humidification bottle boot of claim 1, wherein, The lower part of the sheath (200) is a lower sleeve body (210) in a cylindrical shape, and the two sides are provided with mirror image arranged clamping grooves (230), the clamping groove (230) comprises a first groove segment (231) arranged upward from the lower end of the lower sleeve body (210), a second groove segment (232) extending transversely from the upper end of the first groove segment (231), and a recessed groove segment (233) arranged at the tail end of the second groove segment (232), the base (100) is a circular groove body capable of being sleeved outside the lower end of the lower sleeve body (210), and the top end of the side wall is fixedly connected with two vertically arranged hanging ears (110), the inner side of the hanging ear (110) is provided with a protruding clamping block (120), and the two clamping blocks (120) can be respectively slid along the two clamping grooves (230) and hung in the recessed groove segment (233).
4. The oxygen humidification bottle boot of claim 3, wherein: The upper part of the sheath (200) is an upper sleeve body (220) in a hollow circular truncated cone shape, the upper sleeve body (220) and the lower sleeve body (210) are coaxially arranged, and the clamping mechanism (300) is arranged on the upper sleeve body (220).
5. The oxygen humidification bottle boot of claim 3, wherein: The inner bottom surface of the base (100) is provided with a circular ring-shaped liquid collecting groove (130).
6. The oxygen humidification bottle boot of claim 1, wherein: The sheath (200) is divided into two parts which are rotatably connected.
7. The oxygen humidification bottle boot of claim 6, wherein: The hinge (240) is connected between the side edges of the two halves of the sheath (200), and the door lock mechanism (400) is arranged between the other side edges; the door lock mechanism (400) comprises two clamping seats (410), a clamping pin (420), a sliding push piece (430), a limiting block (440) and a spring (450); the two clamping seats (410) are fixedly connected to the outer sides of the two halves of the sheath (200) and close to each other, and the top of each clamping seat (410) is provided with a through slot (411); one end of the clamping pin (420) is hinged in one of the through slots (411), the clamping pin (420) can be clamped in the two through slots (411) at the same time, and the non-hinged end of the clamping pin (420) can be extended from the other through slot (411); the sliding push piece (430) is slidably installed on the clamping pin (420); the limiting block (440) is fixedly connected to the non-hinged end of the clamping pin (420); the spring (450) is sleeved on the clamping pin (420) and located between the sliding push piece (430) and the limiting block (440).
8. The oxygen humidification bottle boot of claim 7, wherein: The hinge (240) is long strip-shaped and made of soft material, and is fixedly connected to the edges of the two halves of the sheath (200).
9. The oxygen humidification bottle boot of claim 7, wherein: The sliding push piece (430) comprises a center ring (431) sleeved on the clamping pin (420) and two wing plates (432) symmetrically arranged on the upper and lower ends of the center ring (431).
10. The oxygen humidification bottle boot of claim 9, wherein: The clamping pin (420) is a flat long strip, and the center of the center ring (431) is provided with a through hole matched with the shape of the clamping pin (420).