CN216008019U - Inflatable sterilizing room - Google Patents

Inflatable sterilizing room Download PDF

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Publication number
CN216008019U
CN216008019U CN202021588922.6U CN202021588922U CN216008019U CN 216008019 U CN216008019 U CN 216008019U CN 202021588922 U CN202021588922 U CN 202021588922U CN 216008019 U CN216008019 U CN 216008019U
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inflatable
sterilization
disinfection
room
inlet
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刘其东
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Youji Construction Technology Development Shanghai Co ltd
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Youji Construction Technology Development Shanghai Co ltd
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Abstract

The utility model discloses an inflatable disinfection room for placing at least one disinfection substance generating device, which comprises an inflatable disinfection main body and at least one inflatable containing box, wherein the inflatable disinfection main body is provided with a disinfection channel, an inlet and an outlet which are communicated with the disinfection channel, wherein the inflatable accommodating box is provided with an accommodating space and a diffusion opening communicated with the accommodating space, the inflatable accommodating box is arranged on the inflatable disinfection main body in a way that the diffusion opening is communicated with the inflatable disinfection main body, the accommodating space is used for accommodating the disinfection substance generating device, and a disinfection substance generated by the disinfection substance generating device enters the disinfection channel of the inflatable disinfection main body from the diffusion opening so as to disinfect and sterilize a user passing through the disinfection channel.

Description

Inflatable sterilizing room
Technical Field
The utility model relates to a disinfection channel, in particular to an inflatable disinfection room.
Background
In order to reduce the spread of bacteria and viruses, disinfection and sterilization work is required in many public places to ensure the health and safety of personnel. Especially, in the epidemic period of infectious diseases, the disinfection and sterilization work is more important. For example, in a factory with a dense flow of people, in order to prevent people from unintentionally bringing viruses and bacteria remaining on clothes or hair into the factory when entering the factory and causing other people to be infected when coming into contact with other people, the factory usually arranges a disinfection machine at the entrance and exit of the factory, and people passing through the disinfection machine stand in front of the disinfection machine, and a nozzle of the disinfection machine sprays disinfection spray to disinfect the passing people, so as to reduce the spread of bacteria and viruses. However, the sterilizing machine has many problems in actual use.
First, the machines are heavy, difficult to move after being placed in a fixed position, requiring cooperation of multiple people to complete the transport. Secondly, the sterilizing machine is open, the sterilizing spray sprayed by the sterilizing machine is quickly taken away by air, and less sterilizing spray can stay on a user, so that the sterilizing and disinfecting effects are difficult to really play. Moreover, even if the sterilizing effect of the sterilizing spray is excellent, only the part of the person facing and close to the nozzle of the sterilizing machine can be sterilized, and the more comprehensive sterilization of the person is difficult. Therefore, the existing disinfection machine has low disinfection and sterilization efficiency in the use process, and the health safety of personnel is still difficult to ensure.
Although some users build a special disinfection channel for the disinfection machine by using the movable house plate in order to improve the disinfection efficiency of the disinfection machine in the using process, so as to limit the disinfection spray generated by the disinfection machine, ensure that the disinfection spray is filled in the disinfection shed, and more efficiently disinfect and sterilize personnel passing through the disinfection channel. However, the construction work needs to consume a lot of manpower and material resources, and the cost of the disinfection and sterilization work is increased. Moreover, the built disinfection tent is fixed in position, heavy in weight and difficult to integrally move, and the disinfection tent can only be moved after being detached again, so that the disinfection tent is lack of flexibility.
SUMMERY OF THE UTILITY MODEL
It is an object of the present invention to provide an inflatable sterilization room that sterilizes a passing user, preventing viruses and bacteria from invading the user's health.
It is another object of the present invention to provide an inflatable sterilization room, wherein the inflatable sterilization room can be rapidly switched between an expanded state and a storage state, so as to improve the efficiency of building and dismantling the inflatable sterilization room, thereby saving time and labor costs.
Another object of the present invention is to provide an inflatable sterilization room, wherein the inflatable sterilization room is quickly converted from the storage state to the expansion state by inflation, and the operation is simple, and can be completed by a single operation, thereby facilitating the user to quickly put into use and sterilize more users in time.
It is another object of the present invention to provide an inflatable sterilization room, wherein the inflatable sterilization room in the unfolded state has a three-dimensional structure with a sterilization passage, and is capable of confining a sterilization substance in the sterilization passage, thereby sterilizing and disinfecting a user entering the sterilization passage.
It is another object of the present invention to provide an inflatable sterilization room, wherein the inflatable sterilization room in the expanded state is lightweight and easy to move, and the flexibility of the inflatable sterilization room is improved.
It is another object of the present invention to provide an inflatable sterilization room, wherein the inflatable sterilization room is quickly transformed from the expanded state to the storage state by means of air release, and the inflatable sterilization room in the storage state has a small volume, a light weight, and is convenient to store and carry.
It is another object of the present invention to provide an inflatable sterilization room, wherein the inflatable sterilization room can be reused for a plurality of times, and is low in cost.
Another objective of the present invention is to provide an inflatable sterilizing room, wherein the inflatable sterilizing room has an inlet and an outlet connected to the sterilizing tunnel, and the inlet and the outlet are respectively disposed in a staggered manner to reduce air convection, ensure the concentration of the sterilizing material in the sterilizing tunnel, and facilitate to improve the sterilizing efficiency of the inflatable sterilizing room.
Another objective of the present invention is to provide an inflatable disinfection room, wherein the inflatable disinfection room comprises an inflatable disinfection body and an inflatable accommodation box, wherein the disinfection passage, the inlet and the outlet are formed in the inflatable disinfection body, the inflatable accommodation box has a diffusion opening and an accommodation space, the diffusion opening is communicated with the disinfection passage and the accommodation space of the inflatable disinfection body, the accommodation space allows a disinfection substance generator to be placed therein, and the disinfection substance generated by the disinfection substance generator enters the disinfection passage of the inflatable disinfection body through the diffusion opening to disinfect and sterilize a user passing through the disinfection passage.
It is another object of the present invention to provide an inflatable sterilization room, wherein the inflatable sterilization body of the inflatable sterilization room includes at least two first air columns and at least one first sealing layer, wherein the first sealing layer is disposed on the first air columns, and the first air columns support the first sealing layer after being filled with air, so as to form the sterilization passage between the first sealing layer and the first air columns and allow a user to pass through the sterilization passage.
Another object of the present invention is to provide an inflatable disinfection room, wherein the first sealing layer of the inflatable disinfection room is integrally formed between the adjacent first air pillars, and the inflatable disinfection room is of an integrated structure, which is beneficial to saving time for building and disassembling the inflatable disinfection room.
Another objective of the present invention is to provide an inflatable disinfection room, wherein the first sealing layer of the inflatable disinfection room is detachably covered on the first air column, and the first sealing layer is beneficial to protect the first air column while limiting the flow of the disinfection substance, so as to prevent the first air column from being damaged during the use process, and to improve the service life of the inflatable disinfection room.
According to one aspect of the present invention, there is further provided an inflatable sterilization room for housing at least one sterilization substance generating device, the inflatable sterilization room comprising:
an inflatable disinfectant body, wherein the inflatable disinfectant body has a disinfectant pathway and an inlet and an outlet communicated with the disinfectant pathway;
the inflatable accommodating box is provided with an accommodating space and a diffusion opening communicated with the accommodating space, the inflatable accommodating box is arranged in the inflatable disinfection main body in a mode that the diffusion opening is communicated with the inflatable disinfection main body, the accommodating space is used for accommodating the disinfection substance generating device, and disinfection substances generated by the disinfection substance generating device enter the disinfection channel of the inflatable disinfection main body from the diffusion opening.
According to one embodiment of the utility model, the inlet and the outlet of the inflatable disinfectant body are arranged offset.
According to one embodiment of the utility model, the inlet and the outlet are formed on opposite sides of the inflatable disinfectant body.
According to one embodiment of the utility model, the inlet and the outlet are formed on adjacent sides of the inflatable disinfectant body.
According to one embodiment of the utility model, the inlet and the outlet are arranged spaced apart on the same side of the inflatable disinfectant body.
According to one embodiment of the utility model, the inflatable disinfectant body has a shape selected from the group consisting of: the shape group comprises a cuboid, a cube, a hemisphere, a pyramid and a prismatic table.
According to one embodiment of the utility model, the inflatable containment box is arranged at the side or at the top of the inflatable disinfectant body.
According to one embodiment of the utility model, two or more inflatable containers are provided at intervals to the inflatable sanitizing body.
According to one embodiment of the utility model, the inflatable sterilization body comprises at least two first gas columns and at least one first closing layer, wherein the first gas columns have a first chamber and the first chamber of the first gas columns is allowed to be filled with gas, the first chambers of each of the first gas columns are communicated with each other, the first closing layer is arranged on the first gas columns, and the sterilization channel is formed between the first closing layer and the first gas columns.
According to one embodiment of the utility model, the first enclosure layer of the inflatable disinfectant body is integrally formed to the first gas column.
According to one embodiment of the utility model, the first enclosure of the inflatable disinfectant body is detachably covered to the first air column.
According to one embodiment of the present invention, the inflatable receiving box comprises at least two second air columns and at least one second sealing layer, wherein the second air columns have a second chamber, the second chamber of the second air columns is communicated with the first chamber of the first air column, and the second sealing layer is disposed on the second air columns, and the receiving space is formed between the second air columns and the second sealing layer.
According to one embodiment of the utility model, the second confinement layer of the inflatable containment box is integrally formed with the second air column.
According to one embodiment of the utility model, the second enclosure layer of the inflatable containment box is removably attached to the second air column.
According to one embodiment of the present invention, the inflatable sterilization room further comprises two curtain shields, wherein the curtain shields are operatively covering the inlet and the outlet.
According to an embodiment of the present invention, the inflatable sterilization room further comprises at least one partition curtain, wherein the partition curtain is disposed in the inflatable sterilization body between the inlet and the outlet, the partition curtain dividing the sterilization passage of the inflatable sterilization body and forming a guide opening between the partition curtain and the inflatable sterilization body, wherein the guide opening is communicated with the inlet and the outlet.
According to one embodiment of the utility model, the guide opening, the inlet and the outlet are arranged offset.
According to one embodiment of the present invention, the number of the partition curtains is implemented as at least two, and the adjacent partition curtains are disposed to be shifted.
Drawings
FIG. 1 is a perspective view of an inflatable sterilization room in accordance with a preferred embodiment of the present invention.
FIG. 2 is a perspective view of a portion of an inflatable sterilization room in accordance with a preferred embodiment of the present invention.
Fig. 3 is a schematic view of the use of the inflatable sterilization room according to the above preferred embodiment of the present invention.
Fig. 4 is a perspective view of the structure of the inflatable sterilization room according to another preferred embodiment of the present invention, showing that an inlet and an outlet of an inflatable sterilization body of the inflatable sterilization room are formed at two adjacent sides of the inflatable sterilization body.
Fig. 5 is a perspective view of the inflatable sterilization room according to another preferred embodiment of the present invention, showing an inflatable receiving box of the inflatable sterilization room being disposed on the top of the inflatable sterilization body.
FIG. 6 is a perspective view of the inflatable sterilization room, showing the inflatable sterilization room in a split configuration, according to another preferred embodiment of the present invention.
FIG. 7 is an exploded view of the air-filled disinfection room according to the preferred embodiment of the present invention.
FIG. 8 is a perspective view of the inflatable sterilization room according to another preferred embodiment of the present invention.
Fig. 9 is a schematic view of the use of the inflatable sterilization room according to the preferred embodiment of the present invention.
Detailed Description
The following description is presented to disclose the utility model so as to enable any person skilled in the art to practice the utility model. The preferred embodiments in the following description are given by way of example only, and other obvious variations will occur to those skilled in the art. The basic principles of the utility model, as defined in the following description, may be applied to other embodiments, variations, modifications, equivalents, and other technical solutions without departing from the spirit and scope of the utility model.
It will be understood by those skilled in the art that in the present disclosure, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in an orientation or positional relationship indicated in the drawings for ease of description and simplicity of description, and do not indicate or imply that the referenced devices or components must be constructed and operated in a particular orientation and thus are not to be considered limiting.
It is understood that the terms "a" and "an" should be interpreted as meaning that a number of one element or element is one in one embodiment, while a number of other elements is one in another embodiment, and the terms "a" and "an" should not be interpreted as limiting the number.
Referring to fig. 1 to 3 of the drawings, an inflatable sterilization room 100 according to a preferred embodiment of the present invention will be described in the following description, wherein the inflatable sterilization room 100 can be switched between an expanded state and a stored state, the inflatable sterilization room 100 in the expanded state has a three-dimensional structure with a sterilization passage 101 and can confine a sterilization substance in the sterilization passage 101, and the sterilization substance sterilizes and sterilizes a user passing through the sterilization passage 101 to reduce or eliminate viruses and bacteria carried by the user's clothes, skin or hair, thereby being beneficial to ensuring the user's health and effectively preventing the viruses carried by the user from being transmitted to other people.
Specifically, the inflatable sterilizing room 100 is rapidly switched from the storage state to the expansion state in an inflatable manner, the inflatable sterilizing room 100 in the expansion state is light in weight and convenient to move, and a user can easily move the inflatable sterilizing room 100 according to the use requirement. Further, the inflatable disinfection room is in the storage state through the mode of gassing from the expansion state changes to fast the storage state inflatable disinfection room 100 is small, conveniently carries and transports, has improved the practicality and the flexibility of inflatable disinfection room 100.
The inflatable sterilizing room 100 can be applied to the entrance and exit positions of places such as factories, communities, vegetable markets, supermarkets, stations, dining halls, scenic spots and hospitals, and can sterilize and disinfect users who enter and exit the places in time, so that the possibility that the users are infected with viruses or spread viruses in areas with dense people streams is reduced, and health and safety of the users are guaranteed by carps. It should be noted that the specific location of use of the inflatable sterilization room 100 is merely illustrative and should not be construed as limiting the scope and content of the inflatable sterilization room 100 of the present invention.
Referring to fig. 1 to 3, according to a preferred embodiment of the present invention, the inflatable sterilization room 100 further comprises an inflatable sterilization body 10 and an inflatable accommodation box 20, wherein the sterilization passage 101 is formed in the inflatable sterilization body 10, and the inflatable accommodation box 20 has a diffusion opening 201 and an accommodation space 202 communicated with the diffusion opening 201. The inflatable receiving box 20 is disposed on the inflatable sterilization body 10 in such a way that the diffusion opening 201 is communicated with the sterilization passage 101. The receiving space 202 of the inflatable receiving box 20 allows a disinfecting substance generating device 200 to be placed, the disinfecting substance generating device 200 generates the disinfecting substance toward the diffusion opening 201, and the disinfecting substance enters the disinfection passage 101 of the inflatable disinfection main body 10 through the diffusion opening 201 to timely disinfect and sterilize a user passing through the disinfection passage 101.
Preferably, the shape and volume of the accommodating space 202 of the inflatable accommodating box 20 are adapted to the shape and volume of the sterilizing material generating device 200, so as to prevent the accommodating space 202 from having a large idle space after the sterilizing material generating device 200 is placed in the accommodating space 202. In this way, it is advantageous to avoid the disinfecting substance generated by the disinfecting substance generating device 200 from being present in the accommodating space 202 of the inflatable accommodating box 20 in a large amount, so as to save the disinfecting substance, and simultaneously, to ensure the concentration of the disinfecting substance in the disinfecting passage 101 of the inflatable disinfecting main body 10 and the disinfecting efficiency of the inflatable disinfecting room 100.
Referring to fig. 1 to 4, in a specific example of the present invention, the inflatable receiving box 20 of the inflatable sterilization room 100 is disposed at the side of the inflatable sterilization body 10, such that the sterilizing substance generating device 200 generates the sterilizing substance toward the inside of the sterilization passage 101 in a manner of being held at the side of the inflatable sterilization body 10. Preferably, the inflatable accommodating box 20 is located at the lower portion of the inflatable sterilizing body 10, and the sterilizing material generated by the sterilizing material generating device 200 moves from bottom to top, so as to rapidly fill the sterilizing passage 101. Referring to the figure optionally, the inflatable receiving box 20 is disposed on the top of the inflatable sterilizing body 10, and the sterilizing material generating device 200 can generate the sterilizing material toward the head of the user entering the sterilizing passage 101, and the sterilizing material moves from top to bottom to reduce or destroy viruses and bacteria carried by the user.
Referring to fig. 1 to 7, in a specific example of the present invention, the inflatable receiving box 20 of the inflatable sterilizing compartment 100 is implemented as one to allow receiving one of the sterilizing substance generating devices 200. For example, but not limiting of, the sanitizing substance generating device 200 is placed in the receiving space 202 from the diffuser opening 201 of the inflatable receiving box 20. Preferably, the inflatable receiving box 20 is located near the inlet 102 of the inflatable sterilization body 10 to ensure the concentration of the sterilization substance near the inlet 102, so that most of the viruses and bacteria remaining on the user are rapidly destroyed when the user enters the sterilization tunnel 101 from the inlet 102, and the sterilization substance in the sterilization tunnel 101 is continuously sterilized during the movement of the user in the sterilization tunnel 101.
In another specific example of the present invention, the inflatable receiving box 20 is implemented in two or more, and two or more inflatable receiving boxes 20 are uniformly spaced apart from each other in the inflatable sterilizing body 10, so as to allow two or more sterilizing material generators 200 to be accommodated therein, and to facilitate the concentration of the sterilizing material to be uniformly maintained at different positions in the sterilizing tunnel 101. Furthermore, by increasing the number of the sterilizing substance generators 200, the efficiency of sterilization of the inflatable sterilizing compartment 100 can be increased. Of course, one of the inflatable containers 20 may also be implemented to allow for multiple of the sanitizing substance generating devices 200. It should be understood by those skilled in the art that the specific location and number of the inflatable pods 20 of the inflatable sterilization room 100 are merely illustrative and should not be construed as limiting the scope and content of the inflatable sterilization room 100 of the present invention.
It is worth mentioning that the type of the sterilizing substance is not limited, and the sterilizing substance may be implemented as a liquid, a gas, a light, or the like. Also, the type of the disinfecting substance generating device 200 is not limited, for example, but not limited to, the disinfecting substance generating device 200 is implemented as an atomization generator, and the disinfecting agent is atomized by the disinfecting substance generating device 200 and enters the disinfecting channel 101, fills the disinfecting channel 101, and is attached to the user entering the disinfecting channel 101 to achieve the disinfecting and sterilizing effect. It should be understood by those skilled in the art that the sanitizing substance and the sanitizing substance generating device are merely illustrative and should not be construed as limiting the scope and content of the inflatable sanitizer 100 of the present invention.
Further, the inflatable sterilization body 10 of the inflatable sterilization room 100 has an inlet 102 and an outlet 103, wherein the inlet 102 and the outlet 103 are respectively connected to the sterilization tunnel 101, and a user enters the sterilization tunnel 101 through the inlet 102, completes sterilization during movement of the user in the sterilization tunnel 101, and then leaves the inflatable sterilization room 100 through the outlet 103.
Referring to fig. 1 to 7, in one embodiment of the present invention, the inflatable sterilization body 10 and the inflatable accommodation box 20 of the inflatable sterilization room 100 in the unfolded state are shaped as a rectangular parallelepiped. It should be noted that the specific shape of the inflatable disinfection main body 10 and the inflatable accommodating box 20 of the inflatable disinfection room 100 in the unfolded state is not limited, and the inflatable disinfection main body 10 and the inflatable accommodating box 20 of the inflatable disinfection room 100 may be implemented as a regular three-dimensional structure such as a cube, a hemisphere, a pyramid, a prism, or other irregular three-dimensional structures. It should be understood by those skilled in the art that the particular configuration of the inflatable sterilization room 100 in the expanded state is merely illustrative and should not be construed as limiting the scope and content of the inflatable sterilization room 100 of the present invention.
In this particular embodiment of the inflatable sterilization room 100 of the present invention, the inlet 102 and the outlet 103 of the inflatable sterilization body 10 are disposed in a staggered manner, i.e., the inlet 102 and the outlet 103 of the inflatable sterilization body 10 are not completely opposite. Therefore, air convection is reduced, the flowing and taken away disinfecting substances of the air flowing in the disinfecting channel 101 are reduced, the concentration of the disinfecting substances in the disinfecting channel 101 is further ensured, and the improvement of the disinfecting efficiency of the inflatable disinfecting room 100 is facilitated.
Referring to fig. 1 to 3, preferably, the inlet 102 and the outlet 103 are formed on two opposite surfaces of the inflatable sterilization body 10, respectively. In this way, the concentration of the disinfecting substance in the disinfecting channel 101 of the inflatable disinfecting main body 10 is ensured, the path of the user walking in the disinfecting channel 101 is prolonged, the time of the disinfecting substance staying in the user is prolonged, and the disinfecting efficiency of the inflatable disinfecting room 100 is improved. Referring to fig. 4, alternatively, the inlet 102 and the outlet 103 are formed on two adjacent surfaces of the inflatable sterilizing body 10, respectively. Optionally, the inlet 102 and the outlet 103 of the inflatable disinfection body 10 are in the same position, that is, the inlet 102 is the outlet 103, and a user enters and exits the disinfection passage 101 of the inflatable disinfection body 10 from the same position. Optionally, the inlet 102 and the outlet 103 of the inflatable disinfectant body 10 are adjacently arranged on the same face of the inflatable disinfectant body 10. Optionally, the inlet 102 and the outlet 103 of the inflatable disinfectant body 10 may also be implemented to be oppositely disposed. It will be understood by those skilled in the art that the specific locations of the inlet 102 and the outlet 103 of the inflatable sterilization body 10 are merely exemplary and should not be construed as limiting the scope and content of the inflatable sterilization room 100 of the present invention.
Referring to fig. 1 to 3, the inflatable sterilization body 10 of the inflatable sterilization room 100 includes at least two first air columns 11 and at least one first closed layer 12, wherein the first closed layer 12 is disposed on the first air columns 11. The first air column 11 allows the air to be filled and released, and after the first air column 11 is filled with the air, the first air column 11 supports the first sealing layer 12, so that the inflatable sterilization body 10 forms a three-dimensional structure, and the sterilization passage 101 is formed between the first sealing layer 12 and the first air column 11, thereby the inflatable sterilization room 100 is maintained in the expanded state. The first enclosing layer 12 is capable of restricting the movement of the sterilizing substance, and the first enclosing layer 12 is less susceptible to corrosion by the sterilizing substance.
Further, the first air column 11 has a first chamber 110, the first chambers 110 of each first air column 11 are communicated with each other, after any one of the first air columns 11 is filled with gas, the first chambers 110 of the other first air columns 11 are also filled with gas, the inflatable sterilizing room 100 can be quickly switched from the storage state to the expansion state, the operation is simple, the construction of the inflatable sterilizing room 100 can be completed by one person, the inflatable sterilizing room is beneficial to quickly putting into use by a user, and more users can be sterilized in time. Similarly, after the first chamber 110 of any one of the first air pillars 11 is deflated, the first chambers 110 of the other first air pillars 11 are also deflated, and the inflatable sterilizing room 100 can be quickly switched from the expanded state to the stored state. The user can adjust the use state of the inflatable sterilizing room 100 at any time according to the use requirement, and the inflatable sterilizing room 100 can be used for many times, which is beneficial to reducing the use cost of the user.
Optionally, in a specific example of the present invention, before filling the gas, the chambers of each of the first gas columns 11 are communicated with each other to facilitate a user to quickly fill all of the first gas columns 11 with the gas, and after the chambers of each of the first gas columns 11 are filled with the gas, the chambers of each of the first gas columns 11 are isolated from each other, that is, the gas in each of the first gas columns 11 cannot flow into each other. In this way, in the using process, if any one of the first air columns 11 of the inflatable sterilizing main body 10 is damaged and deflated, the whole inflatable sterilizing room 100 will not collapse, and the safety performance of the inflatable sterilizing room 100 is improved.
Referring to fig. 1 to 3 and 5, in the specific embodiment of the inflatable sterilizing room 100 of the present invention, the first closed layer 12 of the inflatable sterilizing body 10 is integrally formed between two adjacent first air pillars 11, the inflatable sterilizing body 10 is a one-piece structure, and after the first air pillars 11 are filled with gas, the first air pillars 11 rapidly unfold the first closed layer 12, so that the inflatable sterilizing room 100 forms a three-dimensional structure. Thus, the time for constructing and disassembling the inflatable sterilizing room 100 is saved, and the inflatable sterilizing room 100 is also put into use quickly.
Referring to fig. 6 and 7, in another specific example of the present invention, the inflatable sterilization room 100 is a split structure. Specifically, the first closed layer 12 of the inflatable sterilization body 10 of the inflatable sterilization room 100 is detachably covered on the first air column 11. For example, but not limited to, the first sealing layer 12 is a sealing cover, the first air column 11 of the inflatable sterilization body 10 is erected into a frame structure of the inflatable sterilization room 100 after the inflation is completed, and the first sealing layer 12 is covered on the first air column 11 to form a three-dimensional structure with the sterilization passage 101. The first sealing layer 12 is beneficial to protecting the first air column 11 while limiting the flow of the sterilizing substance, so as to prevent the first air column 11 from being damaged in the using process, and to prolong the service life of the inflatable sterilizing room 100.
Referring to fig. 1, 5 to 7, preferably, the inflatable sterilization body 10 of the inflatable sterilization room 100 further includes two shielding curtains 13, wherein the two shielding curtains 13 are operatively covered on the inlet 102 and the outlet 103 of the inflatable sterilization body 10, and the shielding curtains 13 covering the inlet 102 and the outlet 103 of the inflatable sterilization body 10 can close the inlet 102 and the outlet 103, so as to reduce the diffusion of the sterilization substances in the sterilization passage 101 to the outside of the inflatable sterilization room 100, and further ensure the concentration of the sterilization substances in the sterilization passage 101, so as to ensure the sterilization efficiency of the inflatable sterilization room 100. For example, but not limited to, the curtain 13 is movably disposed on the first air column 11 or the first sealing layer 12, and the curtain 13 is moved left and right to expose or seal the inlet 102 and the outlet 103, so as to allow the user to enter and exit and ensure the concentration of the sterilizing material. Alternatively, the shutter 13 is allowed to be lifted and unfolded upward and to expose the inlet 102 when the shutter 13 is lifted upward, and the inlet 102 and the outlet 103 can be closed by unfolding the shutter 13 downward. It should be understood by those skilled in the art that the embodiment of the curtain 13 is not limited, and that the embodiment of the curtain 13 is merely exemplary and should not be construed as limiting the scope and content of the inflatable sterilization room 100 of the present invention.
Referring to fig. 1 to 3, the inflatable accommodating box 20 of the inflatable sterilizing room 100 includes at least one second air column 21 and at least one second sealing layer 22, wherein the second sealing layer 22 is disposed on the second air column 21. The second gas column 21 allows gas to be filled and discharged, and after the second gas column 21 is filled with gas, the second gas column 21 supports the second sealing layer 22, and the accommodating space 202 is formed between the second gas column 21 and the second sealing layer 22 to allow the sterilizing material generating device 200 to be accommodated. The second enclosing layer 22 is capable of restricting the movement of the sterilizing substance, and the second enclosing layer 22 is less susceptible to corrosion by the sterilizing substance.
Further, the second air column 21 has a second chamber 210, the second chambers 210 of each of the second air columns 21 are connected to each other, and the second chamber 210 of at least one of the second air columns 21 is connected to the first chamber 110 of at least one of the first air columns 11, after any one of the first air columns 11 or the second air column 21 is filled with air, the first chambers 110 of the other first air columns 11 and the second chambers 210 of the other second air columns 21 are also filled with air, so that the inflatable sterilization room 100 can be quickly switched from the storage state to the expansion state. Similarly, after the chamber 110 of any one of the first air column 11 and the second chamber 210 of the second air column 21 are deflated, the chambers 110 of the other first air column 11 and the second chambers 210 of the other second air column 21 are also deflated, and the inflatable sterilization room 100 can be quickly switched from the expanded state to the storage state. The user can adjust the use state of the inflatable sterilizing room 100 at any time according to the use requirement, and the inflatable sterilizing room 100 can be used for many times, which is beneficial to reducing the use cost of the user.
Optionally, in a specific example of the present invention, before filling with gas, the first chamber 110 of each of the first gas columns 11 and the second chamber 210 of each of the second gas columns 21 are communicated with each other, so as to facilitate a user to quickly fill all of the first gas columns 11 and the second gas columns 21 with gas; after the first chamber 110 of each of the first gas columns 11 and the second chamber 210 of each of the second gas columns 21 are filled with gas, the first chamber 110 of each of the first gas columns 11 and the second chamber 210 of each of the second gas columns 21 are isolated from each other, i.e., the gas in each of the first gas columns 11 and each of the second gas columns 21 cannot flow into each other. In this way, in the using process, if any one of the first air column 11 and/or the second air column 21 of the inflatable sterilization main body 10 is damaged and deflated, the whole inflatable sterilization room 100 will not collapse, and the safety performance of the inflatable sterilization room 100 is improved.
Referring to fig. 1 to 3 and 5, in the embodiment of the inflatable sterilization room 100 of the present invention, the second sealing layer 22 of the inflatable accommodation box 20 is integrally formed between two adjacent second air columns 21, the inflatable accommodation box 20 is a one-piece structure, and after the second air columns 21 are filled with air, the second air columns 21 rapidly open the second sealing layer 22 to allow accommodation of the sterilization substance generator 200. Thus, the time for constructing and disassembling the inflatable sterilizing room 100 is saved, and the inflatable sterilizing room 100 is also put into use quickly.
Referring to fig. 6 and 7, in another specific example of the present invention, the second closed layer 22 of the inflatable receiving box 20 of the inflatable sterilization room 100 is detachably covered on the second air column 21. For example, but not limited to, the second sealing layer 22 is a sealing cover, the second air column 21 of the inflatable accommodating box 20 is erected into a frame structure of the inflatable accommodating box 20 after the inflation is completed, and the second sealing layer 22 is covered on the second air column 21 to form a three-dimensional structure with the accommodating space 202. The second sealing layer 22 is beneficial to protecting the second air column 21 while limiting the flow of the sterilizing material, so as to prevent the second air column 21 from being damaged in the using process, and to prolong the service life of the inflatable sterilizing room 100.
Referring to fig. 8 and 9 of the specification, in another embodiment of the present invention, the inflatable sterilization room 100 further comprises at least one curtain 30, wherein the curtain 30 is retained in the sterilization passage 101 of the inflatable sterilization body 10, the first closed layer 12 at the top of the curtain 30 extends downward and partitions the sterilization passage 101, and a guide opening 301 is formed between the curtain 30 and the second closed layer 12 at the side. The guide opening 301, the disinfection tunnel 101, the inlet 102 and the outlet 103 are connected to each other, and a user can enter the disinfection tunnel 101 through the inlet 102 and exit the inflatable disinfection room 100 through the guide opening 301 from the outlet 103.
Further, the separation curtain 30 is located between the inlet 102 and the outlet 103, the separation curtain 30 separates the disinfection passage 101 of the inflatable disinfection body 10, and the inlet 102, the guide opening 301 and the outlet 103 are arranged in a staggered manner. On the one hand, the air flow is reduced, ensuring the concentration of the sterilizing substance in the sterilizing tunnel 101. On the other hand, guiding the user to walk along a non-straight line in the disinfection passage 101 prolongs the time that the user stays in the disinfection passage 101. In this way, the sterilization efficiency is improved.
Preferably, the separating curtain 30 is disposed between the inlet 102 and the outlet 103 opposite to each other, and blocks the flow of the air flow between the inlet 102 and the outlet 103, and the guide opening 301 and the inlet 102 and the outlet 103 are disposed in a staggered manner.
Preferably, the inlet 102 and the outlet 103 are arranged offset, the separating curtain 30 is arranged corresponding to the inlet 102, and the guide opening 301 corresponds to the outlet 103.
Preferably, the inlet 102 and the outlet 103 are arranged offset, the separating curtain 30 is arranged corresponding to the outlet 103, and the guide opening 301 corresponds to the inlet 102.
It should be noted that the specific number of the separating curtains 30 is not limited, the separating curtains 30 may be implemented as two, three or more than three, and two or more separating curtains 30 retained in the sterilizing channel 101 may be oppositely disposed or may be disposed in a staggered manner. For example, two adjacent separating curtains 30 are arranged in a staggered manner.
It will be appreciated by persons skilled in the art that the above embodiments are only examples, wherein features of different embodiments may be combined with each other to obtain embodiments which are easily conceivable in accordance with the disclosure of the utility model, but which are not explicitly indicated in the drawings.
It will be appreciated by persons skilled in the art that the embodiments of the utility model described above and shown in the drawings are given by way of example only and are not limiting of the utility model. The objects of the utility model have been fully and effectively accomplished. The functional and structural principles of the present invention have been shown and described in the examples, and any variations or modifications of the embodiments of the present invention may be made without departing from the principles.

Claims (18)

1. An inflatable disinfection room for placing at least one disinfection substance generating device, characterized in that the inflatable disinfection room comprises:
an inflatable disinfectant body, wherein the inflatable disinfectant body has a disinfectant pathway and an inlet and an outlet communicated with the disinfectant pathway; and
the inflatable accommodating box is provided with an accommodating space and a diffusion opening communicated with the accommodating space, the inflatable accommodating box is arranged in the inflatable disinfection main body in a mode that the diffusion opening is communicated with the inflatable disinfection main body, the accommodating space is used for accommodating the disinfection substance generating device, and disinfection substances generated by the disinfection substance generating device enter the disinfection channel of the inflatable disinfection main body from the diffusion opening.
2. The inflatable sterilization room of claim 1, wherein said inlet and said outlet of said inflatable sterilization body are offset.
3. The inflatable sterilization room of claim 2, wherein said inlet and said outlet are formed on opposite sides of said inflatable sterilization body.
4. The inflatable sterilization room of claim 2, wherein said inlet and said outlet are formed on adjacent sides of said inflatable sterilization body.
5. The inflatable sterilization room of claim 2, wherein said inlet and said outlet are spaced apart on the same side of said inflatable sterilization body.
6. The inflatable sterilization room of any of claims 1 to 5, wherein said inflatable sterilization body has a shape selected from the group consisting of: the shape group comprises a cuboid, a cube, a hemisphere, a pyramid and a prismatic table.
7. The inflatable sterilization room of any one of claims 1 to 5, wherein said inflatable containment box is disposed at a side or a top of said inflatable sterilization body.
8. The inflatable sterilization room of claim 7, wherein two or more of said inflatable containment cases are disposed in spaced relation to said inflatable sterilization body.
9. The inflatable sterilization room of any one of claims 1 to 5, wherein said inflatable sterilization body comprises at least two first air columns and at least one first sealing layer, wherein said first air columns have a first chamber, and said first chamber of said first air columns is allowed to be filled with gas, said first chamber of each of said first air columns is communicated with each other, said first sealing layer is disposed on said first air columns, and said sterilization passage is formed between said first sealing layer and said first air columns.
10. The inflatable sterilization room of claim 9, wherein the first confinement of the inflatable sterilization body is integrally formed with the first air column.
11. The inflatable sterilization room of claim 10, wherein said first enclosure of said inflatable sterilization body is removably covered to said first air column.
12. The inflatable sterilization room of claim 9, wherein said inflatable containment box comprises at least two second air columns and at least one second enclosure, wherein said second air columns have a second chamber, said second chamber of said second air columns being connected to said first chamber of said first air columns, said second enclosure being disposed in said second air columns and forming said containment space between said second air columns and said second enclosure.
13. The inflatable sterilization room of claim 12, wherein said second confinement of said inflatable containment box is integrally formed with said second air column.
14. The inflatable sterilization room of claim 12, wherein said second confinement of said inflatable containment box is removably attached to said second air column.
15. The inflatable sterilization room of any one of claims 1 to 5, further comprising two curtain shields, wherein said curtain shields are operatively positioned to cover said inlet and said outlet.
16. The inflatable sterilization room of claim 9, further comprising at least one divider disposed in said inflatable sterilization body, said divider positioned between said inlet and said outlet, said divider dividing said sterilization tunnel of said inflatable sterilization body and defining a guide opening between said divider and said inflatable sterilization body, wherein said guide opening is in communication with said inlet and said outlet.
17. The inflatable sterilization room of claim 16, wherein said guide opening, said inlet, and said outlet are offset.
18. The inflatable sterilization room of claim 16, wherein said number of division curtains is implemented as at least two, and adjacent division curtains are disposed with a dislocation.
CN202021588922.6U 2020-08-03 2020-08-03 Inflatable sterilizing room Active CN216008019U (en)

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Application Number Priority Date Filing Date Title
CN202021588922.6U CN216008019U (en) 2020-08-03 2020-08-03 Inflatable sterilizing room

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021588922.6U CN216008019U (en) 2020-08-03 2020-08-03 Inflatable sterilizing room

Publications (1)

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CN216008019U true CN216008019U (en) 2022-03-11

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