CN219071402U - Disinfection entrance guard - Google Patents
Disinfection entrance guard Download PDFInfo
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- CN219071402U CN219071402U CN202320119818.XU CN202320119818U CN219071402U CN 219071402 U CN219071402 U CN 219071402U CN 202320119818 U CN202320119818 U CN 202320119818U CN 219071402 U CN219071402 U CN 219071402U
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- sliding
- access control
- entrance guard
- wiping part
- wiping
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
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Abstract
The utility model provides a disinfection access control, which belongs to the technical field of weak current engineering and comprises an access control body, wherein the front surface of the access control body is sequentially provided with a display screen, a key area and a card swiping area from top to bottom, the access control body is provided with a containing cavity above the key area or below the card swiping area, a placing cavity is further arranged in the access control body, and the side wall of the placing cavity is provided with a spraying port communicated with the containing cavity; the disinfection entrance guard also comprises a wiping part, a disinfection mechanism and a driving mechanism; the wiping part is arranged in the accommodating cavity; the wiping part has elasticity; the disinfection mechanism is arranged in the placing cavity, is communicated with the spraying port through a pipeline and is suitable for spraying disinfectant to the wiping part; the driving mechanism is arranged on the front surface of the door control body; spraying disinfectant to the wiping part through the disinfecting mechanism, wiping and disinfecting the key area and the card swiping area through the wiping part, and reducing viruses carried on the entrance guard body; therefore, the situation that a user infects viruses when using the access control can be reduced, and potential safety hazards can be reduced.
Description
Technical Field
The utility model belongs to the technical field of weak current engineering, and particularly relates to a disinfection access control.
Background
The entrance guard refers to the forbidden authority of the door and is the guard and the guard of the door. The entrance guard is arranged at the position of the cell unit door or the cell gate, so that the situation that external personnel enter the cell can be reduced, and the potential safety hazard can be reduced. In the using process of the access control, after a user swipes a card or manually inputs a password, the cell unit door or the cell gate can be opened. However, the door is opened by either swiping a card or manually inputting a password, so that a plurality of users can operate the same door control. When one of the users carries a virus that can be transmitted through an object, the subsequent user can be infected with the virus, and potential safety hazards exist.
Disclosure of Invention
The embodiment of the utility model provides a disinfection access control, which aims to reduce the condition that a user infects viruses through the access control.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a disinfection entrance guard, including the entrance guard body, the front of entrance guard body has display screen, button region and area of punching the card from top to bottom in proper order, the entrance guard body is equipped with the chamber of holding in the top of button region or the below of area of punching the card, still be equipped with in the entrance guard body and place the chamber, place the lateral wall in chamber have with hold the shower mouth of chamber intercommunication; the disinfection entrance guard further comprises:
a wiping part arranged in the accommodating cavity; the wiping part has elasticity and has a degree of freedom suitable for sliding along the up-down direction so as to wipe the key area and the card swiping area;
the disinfection mechanism is arranged in the placing cavity, is communicated with the spraying port through a pipeline and is suitable for spraying disinfectant to the wiping part; and
the driving mechanism is arranged on the front surface of the access control body; the driving mechanism comprises a sliding part which is suitable for sliding along the up-down direction and a driving end which is connected with the sliding part;
the wiping part is connected with the sliding part through a first elastic piece, and when the sliding part slides along the up-down direction, the wiping part is suitable for sliding towards the direction close to the sliding part so as to enable the wiping part to slide out of the accommodating cavity and wipe the key area and the card swiping area.
In one possible implementation manner, the key protrudes out of the front surface of the door control body, the bottom of the wiping part is provided with an avoidance groove suitable for avoiding the key, and the avoidance groove of the wiping part is provided with a plurality of soft bristles;
when the wiping part wipes the key area, the soft bristles of the avoidance groove are contacted with the surface of the key.
In one possible implementation, the driving mechanism further includes:
the sliding rail is arranged on one side of the front face of the entrance guard body along the up-down direction; the sliding rail is provided with a sliding groove which is arranged along the up-down direction on one side of the wiping part, and the sliding part is in sliding fit with the sliding groove;
the screw is rotationally arranged in the chute; the sliding part is provided with a threaded hole in threaded fit with the screw rod; and
the rotary power piece is connected to the door control body; the driving end of the rotary power piece is suitable for penetrating through the sliding rail and is connected with one end of the screw rod.
In one possible implementation, the outside of the wiping part has a first closing plate adapted to close the opening of the containing cavity;
the outer side of the first sealing plate is provided with a transversely arranged extension part, and the end part of the extension part extends into the sliding groove and is connected with the sliding part through a first elastic piece;
wherein, have the space that is suitable for the extension slip between extension and the slip portion.
In one possible implementation manner, a guide rod is fixedly arranged on the extension part, a guide groove suitable for being in sliding fit with the guide rod is formed in the sliding part, and the first elastic piece is sleeved on the guide rod.
In one possible implementation manner, two sliding rails are respectively positioned at two sides of the front face of the access control body, and sliding parts are respectively arranged in the two sliding grooves;
the screw is rotatably arranged in one of the sliding grooves, a guide column is arranged in the other sliding groove, and the guide column is arranged in parallel with the screw; the sliding part which is in sliding fit with the guide post is provided with a through hole which is suitable for passing through the guide post.
In one possible implementation manner, the placing cavity is communicated with one side of the access control body, the access control body is detachably provided with a second sealing plate at an opening of the placing cavity, and the sterilizing mechanism comprises:
a disinfectant container disposed within the placement cavity; the disinfectant container is used for containing disinfectant;
the water pump is connected in the placing cavity, and a liquid inlet of the water pump is communicated with the disinfectant container through a pipeline;
the spray head is arranged in the spray opening and is communicated with a liquid outlet of the water pump through a pipeline; and
a securing structure secured within the placement cavity, the securing structure adapted to clamp the disinfectant container to secure the disinfectant container.
In one possible implementation, the fixing structure includes:
a sleeve;
the arc clamping plates are arranged at intervals along the circumferential direction of the sleeve; each of said arcuate clamping plates having a degree of freedom adapted to slide diametrically along said sleeve to clamp said disinfectant container; and
and the two ends of the second elastic piece are respectively connected with the arc clamping plate and the sleeve so as to provide clamping force for the arc clamping plate.
In one possible implementation manner, the top of the arc-shaped clamping plate is provided with a first guiding inclined plane, the first guiding inclined plane is inclined from the inner side of the arc-shaped clamping plate to the outer side of the arc-shaped clamping plate, and the inner side end of the first guiding inclined plane is a low end.
In one possible implementation, the accommodating chamber has a second guiding inclined surface adapted to incline outwards on both the upper and lower sides, and the second guiding inclined surface is used for sliding the wiping part into or out of the accommodating chamber.
In the embodiment of the application, when the user finishes swiping a card or finishes inputting a key, the disinfection mechanism sprays disinfectant to the wiping part, so that the wiping part can be soaked; the wiping part can slide on the front surface of the entrance guard body along the up-down direction under the drive of the driving mechanism, and then the wiping part can wipe the key area and the card swiping area on the front surface of the entrance guard, so that the key area and the card swiping area can be disinfected, and viruses of the key area and the card swiping area can be reduced. When the next user uses the access control, the condition of virus infection can be reduced, so that the potential safety hazard can be reduced.
Compared with the prior art, the disinfection entrance guard provided by the utility model has the advantages that the disinfection mechanism sprays the disinfectants on the wiping part, and the wiping part wipes and disinfects the key area and the card swiping area, so that viruses carried on the entrance guard body can be reduced; therefore, the situation that a user infects viruses when using the access control can be reduced, and potential safety hazards can be reduced.
Drawings
Fig. 1 is a schematic diagram of a disinfection gate inhibition provided in an embodiment of the present utility model;
fig. 2 is a schematic diagram of a driving mechanism part of a disinfection gate inhibition provided by an embodiment of the present utility model;
FIG. 3 is an enlarged schematic view of portion A of FIG. 2;
fig. 4 is a schematic view of a wiping part of a disinfection gate inhibition provided by an embodiment of the utility model;
FIG. 5 is an enlarged schematic view of portion B of FIG. 4;
fig. 6 is a schematic diagram of a sliding portion of a disinfection gate inhibition provided by an embodiment of the present utility model;
FIG. 7 is a schematic view of a placement cavity portion of a disinfection gate inhibition system according to an embodiment of the present utility model;
FIG. 8 is an enlarged schematic view of portion C of bitmap 7;
fig. 9 is a schematic diagram of a fixed structure part of a disinfection gate inhibition provided by an embodiment of the utility model.
Reference numerals illustrate: 1. an access control body; 11. a display screen; 12. a key region; 13. a card swiping area; 14. a receiving chamber; 15. a placement cavity; 16. a spray port; 17. a second guiding inclined surface; 18. a second sealing plate; 2. a wiping part; 21. an avoidance groove; 22. a first sealing plate; 23. an extension; 24. a guide rod; 3. a sterilizing mechanism; 31. a spray head; 32. a fixed structure; 321. a sleeve; 322. an arc clamping plate; 323. a second elastic member; 324. a first guiding inclined surface; 325. a guide post; 4. a driving mechanism; 41. a sliding part; 411. a guide groove; 42. a first elastic member; 43. a slide rail; 431. a chute; 44. a screw; 45. and protecting the shell.
Detailed Description
In order to make the technical problems, technical schemes and beneficial effects to be solved more clear, the utility model is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Referring to fig. 1 to 9, a disinfection gate inhibition provided by the present utility model will now be described. The disinfection access control device comprises an access control body 1, wherein the front surface of the access control body 1 is sequentially provided with a display screen 11, a key area 12 and a card swiping area 13 from top to bottom, the access control body 1 is provided with a containing cavity 14 above the key area 12 or below the card swiping area 13, a placing cavity 15 is further arranged in the access control body 1, and the side wall of the placing cavity 15 is provided with a spraying port 16 communicated with the containing cavity 14; the disinfection entrance guard also comprises a wiping part 2, a disinfection mechanism 3 and a driving mechanism 4; the wiping part 2 is arranged in the accommodating cavity 14; the wiping part 2 has elasticity and has a degree of freedom suitable for sliding in the up-down direction to wipe the key area 12 and the card swiping area 13; the disinfection mechanism 3 is arranged in the placing cavity 15, and the disinfection mechanism 3 is communicated with the spraying port 16 through a pipeline and is suitable for spraying disinfectant to the wiping part 2; the driving mechanism 4 is arranged on the front surface of the door control body 1; the driving mechanism 4 includes a sliding portion 41 adapted to slide in the up-down direction, and a driving end connected to the sliding portion 41; wherein, the wiping part 2 and the sliding part 41 are connected by the first elastic member 42, and when the sliding part 41 slides along the up-down direction, the wiping part 2 is suitable for sliding towards the sliding part 41 so as to enable the wiping part 2 to slide out of the accommodating cavity 14 and wipe the key area 12 and the card swiping area 13. The accommodation chamber 14 has second guide inclined surfaces 17 adapted to be inclined outward on both upper and lower sides, and the second guide inclined surfaces 17 are used to slide the wiping part 2 into or out of the accommodation chamber 14.
In the embodiment of the application, when the user finishes swiping a card or finishes inputting a key, the disinfection mechanism 3 sprays disinfectant to the wiping part 2, so that the wiping part 2 can be soaked; the wiping part 2 can slide on the front surface of the entrance guard body 1 in the up-down direction under the drive of the driving mechanism 4, and the wiping part 2 can wipe the key area 12 and the card swiping area 13 on the front surface of the entrance guard, so that the key area 12 and the card swiping area 13 can be disinfected, and viruses of the key area 12 and the card swiping area 13 can be reduced. When the next user uses the access control, the condition of virus infection can be reduced, so that the potential safety hazard can be reduced.
Compared with the prior art, the disinfection entrance guard provided by the utility model has the advantages that the disinfection mechanism 3 sprays the disinfectant on the wiping part 2, and the wiping part 2 wipes and disinfects the key area 12 and the card swiping area 13, so that viruses carried on the entrance guard body 1 can be reduced; therefore, the situation that a user infects viruses when using the access control can be reduced, and potential safety hazards can be reduced.
After the door is opened, the door is kept in an opened state for a certain period of time, and then the door is automatically closed. When the door is in the open state, the user does not need to swipe the card again, and the wiping part 2 can complete the sterilization of the key area 12 and the swipe area 13 in the above-described time interval. After the door is automatically closed, the user cannot be influenced to swipe a card or press keys on the door control body 1.
In some embodiments, as shown in fig. 1 to 9, the key protrudes out of the front surface of the door control body 1, the bottom of the wiping part 2 is provided with an avoidance groove 21 suitable for avoiding the key, and the avoidance groove 21 of the wiping part 2 is provided with a plurality of soft bristles (not shown in the figure); wherein, when the wiping part 2 wipes the key area 12, the soft brush hair of the avoidance groove 21 is contacted with the surface of the key.
By way of example, when the key on the door control body 1 is in a form of protruding out of the surface of the door control body 1, the avoidance groove 21 is formed in the wiping part 2, so that the key can be avoided, and the situation that the wiping part 2 presses the key is reduced; by arranging soft bristles on the side wall of the avoidance groove 21, the surface of the key can be wiped, and then the surface of the key can be disinfected.
Although the sliding portion 41 and the wiping portion 2 are connected by the first elastic member 42, the first elastic member 42 functions to allow the wiping portion 2 to slide into the accommodating chamber 14, so that the sterilizing mechanism 3 sprays the sterilizing agent to the wiping portion 2. When the wiping part 2 slides out of the accommodating cavity 14 and contacts with the front surface of the entrance guard body 1, the first elastic piece 42 is used for providing a pressing force for the wiping part 2, so that the inner side of the wiping part 2 always abuts against the front surface of the entrance guard body 1; when the inner side of the wiping part 2 is abutted against the front surface of the entrance guard body 1, the bottom of the avoidance groove 21 does not provide a pressing force to the key, so that the condition that the wiping part 2 presses the key does not occur when the wiping part 2 wipes the key region 12. In addition, part of the soft brush hair is in contact with the front surface of the door control body 1, so that the area which cannot be wiped can be reduced while the key is avoided.
In some embodiments, as shown in fig. 1-9, the drive mechanism 4 further includes a slide rail 43, a screw 44, and a rotary power member; the slide rail 43 is arranged on one side of the front surface of the door control body 1 along the up-down direction; the slide rail 43 has a slide groove 431 opened in the up-down direction on a side facing the wiping part 2, and the slide part 41 is slidably engaged with the slide groove 431; the screw 44 is rotatably arranged in the chute 431; the sliding part 41 is provided with a threaded hole in threaded fit with the screw 44; the rotary power piece is connected to the door control body 1; the driving end of the rotary power member is adapted to pass through the slide rail 43 and is connected to one end of the screw 44.
It should be noted that the rotary power member may be a driving motor, and the driving motor is fixed on the front surface of the door control body 1 and is located at one end of the sliding rail 43. The present embodiment is described by taking the case of being disposed at the tip. The driving motor drives the screw 44 to rotate, so that the sliding part 41 can slide on the sliding rail 43, and then the wiping part 2 is driven to slide, so that the wiping part 2 disinfects the key area 12 and the card swiping area 13 of the access control body 1. The top end of the sliding rail 43 is provided with a protective shell 45, the protective shell 45 is fixed on the front surface of the door control body 1, and the driving motor is arranged in the protective shell 45; through the arrangement, the driving motor can be protected.
In some embodiments, as shown in fig. 1 to 9, the outside of the wiping part 2 has a first closing plate 22, the first closing plate 22 being adapted to close the opening of the containing cavity 14; the outer side of the first sealing plate 22 is provided with a transversely arranged extension part 23, and the end part of the extension part 23 extends into a sliding groove 431 and is connected with the sliding part 41 through a first elastic piece 42; wherein, a space suitable for the extension 23 to slide is provided between the extension 23 and the sliding portion 41. The extension part 23 is fixedly provided with a guide rod 24, the sliding part 41 is provided with a guide slot 411 which is suitable for sliding fit with the guide rod 24, and the first elastic piece 42 is sleeved on the guide rod 24. The extension 23 is fixed to the first closing plate 22.
The disinfectant can be 75% alcohol; the first sealing plate 22 is fixedly connected with the wiping part 2, and when the wiping part 2 is positioned in the accommodating cavity 14, the first sealing plate 22 seals the opening of the accommodating cavity 14, so that the alcohol volatilized to the outside can be reduced.
Illustratively, the first resilient member 42 is a spring that is sleeved on the guide rod 24; both ends of the spring are connected to the extension 23 and the sliding portion 41, respectively. The extension 23 is engaged with the guide slot 411 of the sliding portion 41 by the guide bar 24, so that the sliding direction of the extension 23 can be guided, thereby facilitating the sliding of the wiping portion 2 into or out of the accommodating chamber 14.
In some embodiments, as shown in fig. 1 to 9, two slide rails 43 are provided, the two slide rails 43 are respectively located at two sides of the front surface of the door control body 1, and sliding parts 41 are respectively provided in the two slide grooves 431; the screw 44 is rotatably arranged in one of the sliding grooves 431, and a guide post is arranged in the other sliding groove 431 and is parallel to the screw 44; the sliding part 41, which is slidably fitted with the guide post, has a through hole adapted to pass through the guide post. By the above arrangement, the lateral sliding of the wiping part 2 can be made more stable, and thus the wiping part 2 can be easily slid into or out of the accommodation chamber 14.
In some embodiments, as shown in fig. 1 to 9, the placing cavity 15 is communicated with one side of the entrance guard body 1, the entrance guard body 1 is detachably provided with a second sealing plate 18 at an opening of the placing cavity 15, and the sterilizing mechanism 3 comprises a sterilizing agent container (not shown), a water pump (not shown), a spray nozzle 31 and a fixing structure 32; the disinfectant container is arranged in the placing cavity 15; the disinfectant container is used for containing disinfectant; the water pump is connected in the placing cavity 15, and a liquid inlet of the water pump is communicated with the disinfectant container through a pipeline; the spray head 31 is arranged in the spray opening 16, and the spray head 31 is communicated with a liquid outlet of the water pump through a pipeline; a securing structure 32 is secured within the placement cavity 15, the securing structure 32 being adapted to clamp the disinfectant container to secure the disinfectant container.
It should be noted that the second sealing plate 18 is connected with the entrance guard body 1 through bolts, specifically, the entrance guard body 1 has a plurality of threaded holes at the peripheral position of the opening of the placement cavity 15, and the second sealing plate 18 has a through hole aligned with the threaded holes; after the through holes in the second sealing plate 18 are aligned with the threaded holes in the door control body 1, the second sealing plate 18 is fixed on the door control body 1 through bolts.
Illustratively, the disinfectant container is filled with 75% alcohol, and the water pump is used for providing power, so that the alcohol in the disinfectant container can be sprayed onto the wiping part 2 through the spray head 31, and the wiping part 2 can wipe the alcohol to the key area 12 and the card swiping area 13 of the entrance guard body 1 conveniently, so that the key area 12 and the card swiping area 13 can be disinfected.
In addition, after the alcohol in the disinfectant container has been used, the second closure plate 18 is removed and the disinfectant container is replaced.
In some embodiments, as shown in fig. 1-9, the securing structure 32 includes a sleeve 321, a number of arcuate clamping plates 322, and a second resilient member 323; a plurality of arc clamping plates 322 are arranged at intervals along the circumferential direction of the sleeve 321; each arcuate clamping plate 322 has a degree of freedom adapted to slide diametrically along the sleeve 321 to clamp the disinfectant container; the second elastic member 323 is connected at both ends thereof to the arc clamping plate 322 and the sleeve 321, respectively, to provide a clamping force to the arc clamping plate 322. The top of the arc clamping plate 322 is provided with a first guiding inclined surface 324, the first guiding inclined surface 324 inclines from the inner side of the arc clamping plate 322 to the outer side of the arc clamping plate 322, and the inner side end of the first guiding inclined surface 324 is a lower end.
Illustratively, the arc clamping plate 322 is fixedly provided with a guide post 325, the guide post 325 is arranged along the diameter direction of the sleeve 321, and one end of the guide post 325 passes through the sleeve 321; the second elastic member 323 is a spring, the spring is sleeved on the guide post 325, and two ends of the spring are fixedly connected with the outer sides of the guide post 325 and the sleeve 321 respectively. When the disinfectant container is placed in the sleeve 321, the arc-shaped clamping plate 322 clamps the disinfectant container under the elastic force of the spring, so that the disinfectant container can be fixed in the placing cavity 15. By providing the first guide ramp 324 at the top of the arcuate clamp plate 322, the first guide ramp 324 is capable of guiding the disinfectant container when the disinfectant container is placed within the sleeve 321, thereby facilitating the securement of the disinfectant container within the sleeve 321.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.
Claims (10)
1. The disinfection entrance guard comprises an entrance guard body, wherein the front surface of the entrance guard body is sequentially provided with a display screen, a key area and a card swiping area from top to bottom, and the disinfection entrance guard is characterized in that a containing cavity is arranged above the key area or below the card swiping area, a placing cavity is further arranged in the entrance guard body, and the side wall of the placing cavity is provided with a spraying opening communicated with the containing cavity; the disinfection entrance guard further comprises:
a wiping part arranged in the accommodating cavity; the wiping part has elasticity and has a degree of freedom suitable for sliding along the up-down direction so as to wipe the key area and the card swiping area;
the disinfection mechanism is arranged in the placing cavity, is communicated with the spraying port through a pipeline and is suitable for spraying disinfectant to the wiping part; and
the driving mechanism is arranged on the front surface of the access control body; the driving mechanism comprises a sliding part which is suitable for sliding along the up-down direction and a driving end which is connected with the sliding part;
the wiping part is connected with the sliding part through a first elastic piece, and when the sliding part slides along the up-down direction, the wiping part is suitable for sliding towards the direction close to the sliding part so as to enable the wiping part to slide out of the accommodating cavity and wipe the key area and the card swiping area.
2. The disinfection entrance guard of claim 1, wherein the key protrudes out of the front face of the entrance guard body, the bottom of the wiping part is provided with an avoidance groove suitable for avoiding the key, and the avoidance groove of the wiping part is provided with a plurality of soft bristles;
when the wiping part wipes the key area, the soft bristles of the avoidance groove are contacted with the surface of the key.
3. A disinfecting access control as recited in claim 1, wherein the drive mechanism further comprises:
the sliding rail is arranged on one side of the front face of the entrance guard body along the up-down direction; the sliding rail is provided with a sliding groove which is arranged along the up-down direction on one side of the wiping part, and the sliding part is in sliding fit with the sliding groove;
the screw is rotationally arranged in the chute; the sliding part is provided with a threaded hole in threaded fit with the screw rod; and
the rotary power piece is connected to the door control body; the driving end of the rotary power piece is suitable for penetrating through the sliding rail and is connected with one end of the screw rod.
4. A disinfecting access control as recited in claim 3, wherein the outside of the wiper portion has a first closure panel adapted to close the opening of the receiving cavity;
the outer side of the first sealing plate is provided with a transversely arranged extension part, and the end part of the extension part extends into the sliding groove and is connected with the sliding part through a first elastic piece;
wherein, have the space that is suitable for the extension slip between extension and the slip portion.
5. A disinfecting access control as recited in claim 4, wherein said extension portion is fixedly provided with a guide bar, said sliding portion has a guide slot adapted for sliding engagement with said guide bar, and said first resilient member is disposed over said guide bar.
6. A disinfecting access control as recited in claim 3, wherein said two slide rails are respectively located on both sides of said front face of said access control body, and sliding portions are provided in both of said slide grooves;
the screw is rotatably arranged in one of the sliding grooves, a guide column is arranged in the other sliding groove, and the guide column is arranged in parallel with the screw; the sliding part which is in sliding fit with the guide post is provided with a through hole which is suitable for passing through the guide post.
7. A disinfecting access control as recited in any one of claims 1-6, wherein the placement chamber is in communication with a side of the access control body, the access control body being removably provided with a second closure panel at the opening of the placement chamber, the disinfecting mechanism comprising:
a disinfectant container disposed within the placement cavity; the disinfectant container is used for containing disinfectant;
the water pump is connected in the placing cavity, and a liquid inlet of the water pump is communicated with the disinfectant container through a pipeline;
the spray head is arranged in the spray opening and is communicated with a liquid outlet of the water pump through a pipeline; and
a securing structure secured within the placement cavity, the securing structure adapted to clamp the disinfectant container to secure the disinfectant container.
8. A disinfecting access control as recited in claim 7, wherein the securing structure comprises:
a sleeve;
the arc clamping plates are arranged at intervals along the circumferential direction of the sleeve; each of said arcuate clamping plates having a degree of freedom adapted to slide diametrically along said sleeve to clamp said disinfectant container; and
and the two ends of the second elastic piece are respectively connected with the arc clamping plate and the sleeve so as to provide clamping force for the arc clamping plate.
9. The entrance guard of claim 8, wherein the top of said arc-shaped clamp plate has a first guiding slope, said first guiding slope sloping from the inside of said arc-shaped clamp plate to the outside of said arc-shaped clamp plate, and the inside end of said first guiding slope being a lower end.
10. A disinfecting access control as recited in any one of claims 1 to 6, wherein the upper and lower sides of the housing have second guide ramps adapted to be inclined outwardly, said second guide ramps being adapted to slide the wiping portion into or out of the housing.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320119818.XU CN219071402U (en) | 2023-01-28 | 2023-01-28 | Disinfection entrance guard |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320119818.XU CN219071402U (en) | 2023-01-28 | 2023-01-28 | Disinfection entrance guard |
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CN219071402U true CN219071402U (en) | 2023-05-26 |
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Family Applications (1)
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CN202320119818.XU Active CN219071402U (en) | 2023-01-28 | 2023-01-28 | Disinfection entrance guard |
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2023
- 2023-01-28 CN CN202320119818.XU patent/CN219071402U/en active Active
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