CN210873026U - Medical disinfectant spraying bottle - Google Patents

Medical disinfectant spraying bottle Download PDF

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Publication number
CN210873026U
CN210873026U CN201921096163.9U CN201921096163U CN210873026U CN 210873026 U CN210873026 U CN 210873026U CN 201921096163 U CN201921096163 U CN 201921096163U CN 210873026 U CN210873026 U CN 210873026U
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CN
China
Prior art keywords
wing
cover wing
bottle
locking
nozzle
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201921096163.9U
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Chinese (zh)
Inventor
秦德菊
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Yongchuan Hospital of Chongqing Medical University
Original Assignee
Yongchuan Hospital of Chongqing Medical University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by Yongchuan Hospital of Chongqing Medical University filed Critical Yongchuan Hospital of Chongqing Medical University
Priority to CN201921096163.9U priority Critical patent/CN210873026U/en
Application granted granted Critical
Publication of CN210873026U publication Critical patent/CN210873026U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a medical disinfectant spray bottle, which comprises a spraying device, a bottle head and a bottle body, wherein the spraying device comprises a suction device arranged inside the bottle body and a press head positioned above the suction device, a press head installation cavity used as an installation press head is arranged in the bottle head, the outer wall of the bottle head is also provided with a nozzle which is connected with the press head in the press head installation cavity through a spray pipe, the front end of the nozzle is also provided with a protection device fixedly connected with the bottle head, the protection device is composed of a first cover wing and a second cover wing which are movably connected through a rotating shaft, the inner side of the first cover wing is connected with the inner side of the second cover wing through a spring, so as to prop open the first cover wing and the second cover wing, the first cover wing and the second cover wing which are locked through a locking piece are also arranged on the first cover wing, the rear end face of the first cover wing and the second cover wing are positioned on the same plane and are both abutted against the nozzle, the bottle body is arranged below the bottle head, the spring props open the first, the nozzle is exposed to work, and the rear end of the locked nozzle is tightly abutted against the nozzle to prevent the nozzle opening from being polluted.

Description

Medical disinfectant spraying bottle
Technical Field
The utility model belongs to the field of medical auxiliary articles, concretely relates to medical antiseptic solution spray bottle.
Background
At present, in most hospitals, nursing staff are not configured according to the national regulation of bed protection ratio of hospitals at all levels for the reasons of reducing bonus allocation, human resource cost expenditure and the like, so that the shortage of nursing staff is caused, and nurses carry out long-term overload work. At present, most of disinfectant spray bottles commonly used in hospitals are designed in a way that a bottle body is separated from a bottle cap, and nurses need to repeatedly take off the bottle cap and sleeve back the bottle cap when taking blood, performing various injections, transfusions and other operations for patients, so that the actions are complex, the time is wasted, and the working efficiency is low. In view of this fact, nurses have taken negative countermeasures to save time and improve efficiency, either by replacing the cap in time after use or by discarding it. Without a bottle cap, a hand can easily touch the nozzle, or the nozzle is mistakenly contacted with the placing table board, so that pathogens such as bacteria, viruses, fungi and the like can enter the disinfectant along the small hole at the nozzle to pollute the disinfectant.
SUMMERY OF THE UTILITY MODEL
Aiming at the technical problem existing in the prior art, the utility model provides a medical disinfectant spray bottle.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a medical disinfectant spray bottle comprises a spraying device, a bottle head and a bottle body, wherein the spraying device comprises a suction device arranged in the bottle body and a press head positioned above the suction device, a press head installation cavity is arranged in the bottle head and used for installing the press head, a nozzle is further arranged on the outer wall of the bottle head and connected with the press head in the press head installation cavity through a spray pipe, a protection device is further arranged at the front end of the nozzle and composed of a rotating shaft and a first cover wing and a second cover wing which are movably connected, wherein the rear end of the rotating shaft is fixedly connected with the bottle head, the inner side of the first cover wing is connected with the inner side of the second cover wing through a spring, so that the first cover wing and the second cover wing are opened, a locking piece is further arranged on the first cover wing and locks the opened first cover wing and the second cover wing, and the rear end faces of the first cover wing and the second cover wing are positioned on the same plane after being locked, and are all abutted against the nozzle, and the bottle body is screwed below the bottle head.
Further, the bottle head is formed by integrally forming an upper section, a middle section and a lower section which are sequentially distributed from top to bottom, the upper section, the middle section and the lower section are all cylindrical structures, the outer diameters of the upper section and the lower section are equal, the outer diameter of the middle section is smaller than that of the upper section, and the press head mounting cavities are distributed in the upper section and the middle section; the upper section is also provided with a through notch, the outer wall of the press head is fixedly connected with an upper locking block which extends out of the through notch, the upper locking block comprises a horizontal plate and a vertical plate, one end of the horizontal plate is vertically and fixedly connected with the outer wall of the press head, the other end of the horizontal plate is vertically and fixedly connected with the vertical plate, and the inner wall of the vertical plate is contacted with the outer wall of the middle section; the nozzles are distributed on the outer wall of the middle section; the lower section is provided with a lower locking block which can move movably and is detachably connected with the upper locking block to limit the movement of the lower locking block.
Further, the up end of hypomere still is equipped with circular spout and centers on the middle section distributes, the lower extreme of lower locking piece is connected with sliding block movable mounting in the spout, lower locking piece with the link of last locking piece is all seted up the connection breach of mutually supporting to the connection terminal surface of connecting the breach here still is equipped with the magnet piece and adsorbs mutually.
Furthermore, the locking piece comprises a convex locking piece and clamping holes distributed on the locking piece, the first cover wing and the second cover wing are both provided with a locking groove, and the locking piece is distributed below the locking groove; the inboard of first lid wing is equipped with a locking piece, the inboard of second lid wing is equipped with two locking pieces that distribute relatively, the downthehole swing joint of card of one of them locking piece on the second lid wing has movable lock handle, and this activity lock handle holding is in the locked groove, the rigid coupling has the card axle on the activity lock handle, the second is covered on the wing still the rigid coupling have fixed lock handle with the activity lock handle is relative, two locking pieces on the second lid wing distribute the activity lock handle with between the fixed lock handle, be equipped with the joint groove on the fixed lock handle, and mutually support the card hole of locking piece on the first lid wing of locking with the card axle, and the second is covered the card hole of another locking piece on the wing.
Furthermore, a lifting piece is fixedly connected to the surface of the movable lock handle.
Furthermore, the rear end faces of the first cover wing and the second cover wing are respectively provided with a semicircular sponge block, clamping grooves are formed in the semicircular sponge blocks, and the two clamping grooves in the first cover wing and the second cover wing in a closed state can be spliced to form a cylindrical channel to wrap the nozzle.
To sum up, the utility model has the advantages that: by adopting the structure, after the bottle body is filled with the disinfection liquid, the locking piece for locking the first cover wing and the second cover wing is opened, the first cover wing and the second cover wing connected with the rotating shaft are opened by the spring, the nozzle is exposed, and the liquid is sprayed out from the nozzle by pressing the press head. When not needing to spout disinfection liquid, hold first lid wing and second lid wing and be close to gradually to lock with the locking piece, the rear end face of first lid wing and second lid wing tightly supports the nozzle mouth under the locking state, keeps apart protection device for the nozzle mouth, avoids the nozzle to be touched by the hand mistake, and the possibility of isolated nozzle contact other pollution sources reduces the probability that the bacterium got into the bottle from the nozzle, reduces the risk of polluting the antiseptic solution. The protective device is fixedly connected with the bottle head through the rotating shaft and is arranged at the front end of the nozzle, and the protective device is a mechanism which can be opened movably or locked movably, so that the protective device is not required to be lost, and the nozzle can be continuously and effectively protected to avoid pollution.
Drawings
Fig. 1 is a schematic structural view of a medical disinfectant spray bottle provided by the utility model.
Fig. 2 is a schematic structural view of the bottle head in fig. 1.
Fig. 3 is a perspective view of the protection device of fig. 1.
Fig. 4 is a schematic perspective view of the rear end face of the middle bottle head of the present invention.
In the figure, 110-press head, 200-bottle head, 210-upper section, 211-pass notch, 220-middle section, 221-nozzle, 230-lower section, 231-sliding groove, 300-bottle body, 400-protecting device, 410-rotating shaft, 420-first cover wing, 430-second cover wing, 431-fixed lock handle, 440-spring, 450-locking groove, 500-locking piece, 510-locking piece, 511-locking hole, 600-upper lock block, 610-horizontal plate, 620-vertical plate, 700-lower lock block, 710-sliding block, 711-magnet block, 800-movable lock handle and 810-lifting piece.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand and understand, the present invention is further explained by combining with the specific drawings.
As shown in fig. 1 and 2, the present invention provides a medical disinfectant spray bottle, which comprises a spraying device, a bottle head 200 and a bottle body 300. The spraying device comprises a suction device (not shown in the figure) arranged in the bottle body 300 and a press head 110 positioned above the suction device, a press head mounting cavity is arranged in the bottle head 200 and used for mounting the press head 110, and a nozzle 221 is further arranged on the outer wall of the bottle head 200 and connected with the press head 110 in the press head mounting cavity through a spray pipe (not shown in the figure). The front end of the nozzle 221 is further provided with a protection device 400, the protection device 400 is formed by movably connecting a rotating shaft 410 with a first cover wing 420 and a second cover wing 430, wherein the rear end of the rotating shaft 410 is fixedly connected with the bottle head 200. The inner side of the first cover wing 420 is connected to the inner side of the second cover wing 430 by a spring 440, so that the first cover wing 420 and the second cover wing 430 are spread. The first cover wing 420 is further provided with a locking member 500 for locking the first cover wing 420 and the second cover wing 430 which are spread apart, and the rear end surfaces of the first cover wing 420 and the second cover wing 430 which are locked are positioned on the same plane and are both abutted against the nozzle 221. The bottle body 300 is screw-coupled below the bottle head 200.
With the above structure, after the bottle 300 is filled with the sterilizing liquid, the locking member 500 locking the first cover wing 420 and the second cover wing 430 is opened, the spring 440 expands the first cover wing 420 and the second cover wing 430 connected to the rotating shaft 410, the nozzle 221 is exposed, and the liquid is ejected from the nozzle 221 by pressing the button 110. When the spraying of the disinfection liquid is not needed, the first cover wing 420 and the second cover wing 430 are held by hands to gradually approach each other and are locked by the locking piece 500, the rear end faces of the first cover wing 420 and the second cover wing 430 are tightly abutted to the nozzle 221 port in the locking state, the nozzle 221 port is isolated by the protection device 400, the nozzle 221 is prevented from being touched by hands by mistake, the possibility that the nozzle 221 contacts other pollution sources is isolated, the probability that bacteria enter the bottle body 300 from the nozzle 221 is reduced, and the risk of polluting the disinfection liquid is reduced. The protective device 400 is fixedly connected with the bottle head 200 through the rotating shaft 410 at the front end of the nozzle 221, and the protective device 400 is a mechanism which can be opened movably or locked movably, so that the protective device 400 is not lost, and the nozzle 221 can be continuously and effectively protected to avoid pollution.
As shown in fig. 2 and 4, as an alternative embodiment, the bottle head 200 is integrally formed by an upper section 210, a middle section 220 and a lower section 230 which are sequentially distributed from top to bottom. The upper section 210, the middle section 220 and the lower section 230 are all cylindrical structures, wherein the outer diameters of the upper section 210 and the lower section 230 are equal, and the outer diameter of the middle section 220 is smaller than the outer diameter of the upper section 210. Press the head installation cavity distribute in upper segment 210 with inside the middle section 220, upper segment 210 still is equipped with through breach 211, press head 110 outer wall rigid coupling to have one to go up locking piece 600 follow stretch out in passing through breach 211, go up locking piece 600 and include horizontal plate 610 and riser 620, the one end of horizontal plate 610 with press the perpendicular rigid coupling of head 110 outer wall, the other end with the perpendicular rigid coupling of riser 620, and the inner wall of riser 620 with the outer wall contact of middle section 220. The nozzles 221 are distributed on the outer wall of the middle section 220. The lower segment 230 is provided with a movably movable lower lock block 700 which is detachably connected with the upper lock block 600 and used for limiting the movement of the lower lock block 700. The lower lock block 700 slides along the slide groove 231 and moves away from the upper lock block 600, the button 110 is pressed down to drive the upper lock block 600 to move downwards, and the nozzle 221 sprays the disinfection liquid to perform disinfection operation. The lower locking block 700 slides to be close to the upper locking block 600 until being connected with the upper locking block 600, so that the press head 110 is locked, the press head 110 cannot move due to the interference of the lower locking block 700, and the situation of mistakenly spraying liquid due to the fact that a bottle cap is not designed is avoided.
The upper end surface of the lower segment 230 is further provided with a circular sliding groove 231 distributed around the middle segment 220, and the lower end of the lower locking block 700 is connected with a sliding block 710 movably installed in the sliding groove 231. Lower locking piece 700 with the connection that goes up locking piece 600 all sets up the connection breach of mutually supporting to the connection terminal surface of connecting the breach still is equipped with magnet piece 711 and adsorbs mutually here, and magnet piece 711 adsorbs to be connected easily with locking piece 600 and lower locking piece 700 high-speed joint fixed, convenient the split moreover.
As shown in fig. 3, the locking member 500 includes a male locking piece 510, and a locking hole 511 distributed on the locking piece 510. The first cover wing 420 and the second cover wing 430 are respectively provided with a locking groove 450, and the locking members 500 are respectively distributed below the locking grooves 450. The inner side of the first flap 420 is provided with a locking member 500, and the inner side of the second flap 430 is provided with two locking members 500 which are oppositely distributed. A movable lock handle 800 is movably sleeved in the clamping hole 511 of one of the locking members 500 on the second cover wing 430, the movable lock handle 800 is accommodated in the lock groove 450, and a clamping shaft (not shown) is fixedly connected to the movable lock handle 800. A fixed lock handle 431 is further fixed to the second flap 430 to be opposite to the movable lock handle 800, and the two locking members 500 on the second flap 430 are distributed between the movable lock handle 800 and the fixed lock handle 431. The fixing lock handle 431 is provided with a locking groove (not shown), and the locking groove and the locking shaft cooperate to lock the locking hole 511 of the locking member 500 on the first cover wing 420 and the locking hole 511 of the other locking member 500 on the second cover wing 430. When the first cover wing 420 and the second cover wing 430 are locked, the first cover wing 420 and the second cover wing 430 are held by hands to be close to each other, the locking piece 500 on the first cover wing 420 and the locking hole 511 on the locking piece 500 on the second cover wing 430, on which the movable lock handle 800 is not installed, are overlapped, the two locking holes 511 are opposite to the locking grooves on the fixed lock handle 431, the locking shaft of the movable lock handle 800 is pressed to pass through the two locking holes 511 and then is clamped with the clamping grooves, so that the first cover wing 420 and the second cover wing 430 are locked, and the movable lock handle 800 is accommodated in the two locking grooves 450 in the locked state. When the first cover wing 420 and the second cover wing 430 are opened, the movable lock handle 800 is pulled outwards, the clamping shaft is separated from the clamping groove, the spring 440 expands the first cover wing 420 and the second cover wing 430, and the nozzle 221 is exposed to spray disinfectant normally.
The surface of the movable lock handle 800 is fixedly connected with a lifting piece 810, and the movable lock handle 800 is conveniently operated to be locked or unlocked by the aid of the lifting piece 810.
The rear end surfaces of the first cover wing 420 and the second cover wing 430 are respectively provided with a semicircular sponge block (not shown in the figure), the semicircular sponge blocks are provided with clamping grooves, and the two clamping grooves on the first cover wing 420 and the second cover wing 430 in a closed state can be spliced to form a cylindrical channel to wrap the nozzle 221. Under this protection state, when nozzle 221 is out of work, there is a sponge cylindrical channel to wrap up nozzle 221 lateral wall, and nozzle 221 openly is supported tightly by protection device 400, gives nozzle 221 more comprehensive pollution protection, helps promoting pollution prevention ability.
The above is only the embodiment of the present invention, not the limitation of the patent scope of the present invention, all the equivalent structures made by the contents of the specification and the drawings are directly or indirectly applied to other related technical fields, all the same principle is within the patent protection scope of the present invention.

Claims (6)

1. A medical disinfectant spray bottle is characterized in that: the spraying device comprises a spraying device, a bottle head and a bottle body, wherein the spraying device comprises a suction device arranged in the bottle body and a press head positioned above the suction device, a press head installation cavity is arranged in the bottle head and used for installing the press head, a nozzle is further arranged on the outer wall of the bottle head and connected with the press head in the press head installation cavity through a spray pipe, a protection device is further arranged at the front end of the nozzle and consists of a rotating shaft and a first cover wing and a second cover wing which are movably connected, the rear end of the rotating shaft is fixedly connected with the bottle head, the inner side of the first cover wing is connected with the inner side of the second cover wing through a spring, so that the first cover wing and the second cover wing are spread, a locking piece is further arranged on the first cover wing and locks the spread first cover wing and the second cover wing, and the rear end faces of the first cover wing and the second cover wing after being locked are positioned on the same plane, and are all abutted against the nozzle, and the bottle body is screwed below the bottle head.
2. The medical sterilizing fluid spray bottle of claim 1, wherein: the bottle head is formed by integrally forming an upper section, a middle section and a lower section which are sequentially distributed from top to bottom, wherein the upper section, the middle section and the lower section are all cylindrical structures, the outer diameters of the upper section and the lower section are equal, the outer diameter of the middle section is smaller than that of the upper section, and the press head installation cavity is distributed in the upper section and the middle section; the upper section is also provided with a through notch, the outer wall of the press head is fixedly connected with an upper locking block which extends out of the through notch, the upper locking block comprises a horizontal plate and a vertical plate, one end of the horizontal plate is vertically and fixedly connected with the outer wall of the press head, the other end of the horizontal plate is vertically and fixedly connected with the vertical plate, and the inner wall of the vertical plate is contacted with the outer wall of the middle section; the nozzles are distributed on the outer wall of the middle section; the lower section is provided with a lower locking block which can move movably and is detachably connected with the upper locking block to limit the movement of the lower locking block.
3. The medical sterilizing fluid spray bottle of claim 2, wherein: the up end of hypomere still is equipped with circular spout and centers on the middle section distributes, the lower extreme of lower locking piece is connected with sliding block movable mounting in the spout, the locking piece down with the link of last locking piece all sets up the connection breach of mutually supporting to connect the connection terminal surface of breach and still be equipped with the magnet piece here and adsorb mutually.
4. The medical sterilizing fluid spray bottle of claim 1, wherein: the locking piece comprises a convex locking piece and clamping holes distributed on the locking piece, a locking groove is formed in each of the first cover wing and the second cover wing, and the locking piece is distributed below the locking groove; the inboard of first lid wing is equipped with a locking piece, the inboard of second lid wing is equipped with two locking pieces that distribute relatively, the downthehole swing joint of card of one of them locking piece on the second lid wing has movable lock handle, and this activity lock handle holding is in the locked groove, the rigid coupling has the card axle on the activity lock handle, the second is covered on the wing still the rigid coupling have fixed lock handle with the activity lock handle is relative, two locking pieces on the second lid wing distribute the activity lock handle with between the fixed lock handle, be equipped with the joint groove on the fixed lock handle, and mutually support the card hole of locking piece on the first lid wing of locking with the card axle, and the second is covered the card hole of another locking piece on the wing.
5. The medical sterilizing fluid spray bottle of claim 4, wherein: the surface of the movable lock handle is fixedly connected with a lifting piece.
6. The medical sterilizing fluid spray bottle of claim 1, wherein: the rear end faces of the first cover wing and the second cover wing are respectively provided with a semicircular sponge block, clamping grooves are formed in the semicircular sponge blocks, and the two clamping grooves in the first cover wing and the second cover wing in a closed state can be spliced to form a cylindrical channel to wrap the nozzle.
CN201921096163.9U 2019-07-11 2019-07-11 Medical disinfectant spraying bottle Expired - Fee Related CN210873026U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921096163.9U CN210873026U (en) 2019-07-11 2019-07-11 Medical disinfectant spraying bottle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921096163.9U CN210873026U (en) 2019-07-11 2019-07-11 Medical disinfectant spraying bottle

Publications (1)

Publication Number Publication Date
CN210873026U true CN210873026U (en) 2020-06-30

Family

ID=71325554

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921096163.9U Expired - Fee Related CN210873026U (en) 2019-07-11 2019-07-11 Medical disinfectant spraying bottle

Country Status (1)

Country Link
CN (1) CN210873026U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200630