CN210408870U - Medical suspension device and cantilever thereof - Google Patents

Medical suspension device and cantilever thereof Download PDF

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Publication number
CN210408870U
CN210408870U CN201822224152.6U CN201822224152U CN210408870U CN 210408870 U CN210408870 U CN 210408870U CN 201822224152 U CN201822224152 U CN 201822224152U CN 210408870 U CN210408870 U CN 210408870U
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China
Prior art keywords
cantilever
fan
air inlet
purification module
air
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CN201822224152.6U
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Inventor
周荣
钟南山
何师聪
韩才旭
杨昆
黄茜华
杨丽
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Guangzhou Angel Biosafety Co ltd
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Guangzhou Angel Biosafety Co ltd
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  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

The utility model discloses a medical linkage and cantilever thereof, wherein, medical linkage includes interconnect's tower head and cantilever, the cantilever is including casing, fan and the purification module that is equipped with air inlet and gas outlet, the air inlet corresponds the sick bed head of a bed setting to and form airflow channel between the gas outlet, the fan is located in order to form the negative pressure with air inlet department in the airflow channel, it is right in airflow channel to purify the module locate airflow channel in the gas purify. Adopt the technical scheme of the utility model, at medical linkage built-in fan and purification module, can make the patient head top in operating room or ICU ward produce the negative pressure to in time absorb and purify the gas of patient's exhalation, simultaneously, also can continuously improve the room air quality. In addition, the existing equipment is arranged in the fan and the purification module, so that the space can be saved, and the space utilization rate of a ward is improved.

Description

Medical suspension device and cantilever thereof
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a medical linkage and cantilever thereof.
Background
Infectious diseases, in particular pathogenic bacteria and viruses, can be transmitted through the flowing air, resulting in infectious diseases that are transmitted to others, and this characteristic is a great threat to persons in contact with the patient, in particular to medical personnel.
With the increase in the level of medical services, a wider variety of medical equipment is also entering hospitals. In order to more hygienically and conveniently utilize the medical devices, a medical crane tower or a medical crane bridge is generally adopted in places with higher hygienic requirements, such as a hospital ward and an operating room, so as to facilitate the concentration and transportation of various medical devices, and the medical crane tower or the medical crane bridge is essential air supply medical devices in a modern operating room or an ICU ward of the hospital. How to utilize medical tower crane or medical draw bridge to build a clean environment in hospital's modernized operating room or ICU ward is the problem that the utility model discloses need consider.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a medical linkage and cantilever thereof.
The utility model provides a cantilever for medical linkage, wherein, the cantilever is including casing, fan and the purification module that is equipped with air inlet and gas outlet, form airflow channel between air inlet and the gas outlet, the fan forms the air current via air inlet to gas outlet, it is right in airflow channel is located to the purification module airflow in the airflow channel purifies.
Preferably, the fan is located in the airflow channel, an inlet of the fan is communicated with the air inlet, an outlet of the fan is communicated with the air outlet, and the purification module is arranged between the fan and the air inlet or between the fan and the air outlet.
Preferably, the purification module comprises a primary filter screen, an electrostatic disinfection and sterilization layer, an electrostatic adsorption layer and an efficient filter screen which are sequentially arranged according to the airflow direction.
Preferably, the housing of the cantilever is provided with an openable cover plate, and the purification module can be removed from or inserted into the cantilever when the cover plate is opened.
Preferably, the fan and the purification module are mounted in a housing mounted in the cantilevered housing.
The utility model also provides a medical linkage, include according to above arbitrary one the cantilever.
Preferably, the cantilever comprises a first cantilever rod and a second cantilever rod, and the air inlet and the air outlet are both arranged in the first cantilever rod.
Preferably, the cantilever comprises a first cantilever rod and a second cantilever rod, the air inlet is arranged in the first cantilever rod, the air outlet is arranged in the second cantilever rod, and the first cantilever rod and the second cantilever rod are connected through a hollow connecting piece.
The utility model provides a technical scheme can include following beneficial effect:
the utility model discloses a medical linkage and cantilever, purifier thereof, wherein, medical linkage includes interconnect's tower head and cantilever, the cantilever is including casing, fan and the purification module that is equipped with air inlet and gas outlet, the air inlet corresponds the sick bed head of a bed setting to and form airflow channel between the gas outlet, the fan is located in order to form the negative pressure with air inlet department in the airflow channel, it is right in airflow channel to purify the module locate airflow channel's interior gas purifies. Adopt the technical scheme of the utility model, at medical linkage built-in fan and purification module, can make the patient head top in operating room or ICU ward produce the negative pressure to in time absorb and purify the gas of patient's exhalation, simultaneously, also can continuously improve the room air quality. In addition, the existing equipment is arranged in the fan and the purification module, so that the space can be saved, and the space utilization rate of a ward is improved.
Drawings
Fig. 1 is a schematic structural composition diagram of the medical suspension device of the present invention;
fig. 2 is a front view schematically showing the overall structure of the medical suspension device of the present invention;
FIG. 3 is a schematic view of the top of the cantilever according to the present invention;
FIG. 4 is a schematic view of the bottom of the cantilever according to the present invention;
FIG. 5 is a schematic view of the internal structure of the cantilever according to the present invention;
FIG. 6 is a schematic structural view of a purification apparatus of the present invention;
fig. 7 is another schematic structural diagram of the purification device of the present invention.
Detailed Description
In order to understand the features and technical contents of the present invention in more detail, the following description is given in conjunction with the accompanying drawings, which are only used for reference and not for limiting the present invention.
Fig. 1 is the structure composition schematic diagram of the medical suspension device of the utility model, as shown in fig. 1, a medical suspension device 100 can be used for operating room and ICU ward, and it includes interconnect's tower head 10 and cantilever 20, wherein, cantilever 20 is including casing 21, fan 24 and the purification module 25 that is equipped with air inlet 22 and gas outlet 23, form airflow channel between air inlet 22 and the gas outlet 23, fan 24 forms the air current via air inlet 22 to gas outlet 23, it is right to locate in the airflow channel and to purify the gas in the airflow channel.
The utility model discloses in, the position of air inlet 22 on cantilever 20 is corresponding to patient's head position, and the gas that carries with the infectious source of patient's exhalation can be all inhaled through air inlet 22 under the effect of negative pressure in the airflow channel, avoid the loss of patient's exhalation gas.
In a preferred embodiment, the gas exhaled by the patient enters the purification module 25 after being introduced into the gas flow channel through the gas inlet 22, the gas exhaled by the patient is effectively sterilized and disinfected by the purification module 25 and converted into clean air, and then is discharged into the air through the gas outlet 23 by the fan 24, so that the gas in the environment can be recycled, the safety of medical staff can be ensured when the patient communicates with the medical staff, cross infection among patients in the same ward can be avoided, the air quality in the ward can be ensured, and a good environment can be provided for the patient.
In a preferred embodiment, the blower 24 and the purification module 25 can be combined to form a modular design, and the combined module can be directly fixed in the airflow path by fixing structures, such as screws. Of course, the blower 24 and the purification module 25 may be provided separately.
The utility model discloses the medical linkage who uses can be divided into medical tower crane in operating room and the medical draw bridge of ICU according to the difference of using the scene, specifically explains below the example.
Referring to fig. 2, the medical suspension device 100 shown in fig. 2 is an ICU medical suspension bridge, which includes a tower head 10 and a boom 20 connected up and down. The tower head 10 comprises a first tower head 11 and a second tower head 12 which are symmetrically arranged, the top ends of the first tower head and the second tower head can be hung on a ceiling of a ward, and two ends of the cantilever 20 are respectively connected with the lower ends of the first tower head 11 and the second tower head 12. The dry terminal 30 and the wet terminal 40 are respectively two combined parts, the dry terminal 30 and the wet terminal 40 are movably hung at two ends of the cantilever 20, and the dry terminal 30 and the wet terminal 40 are separated and do not contact. The dry terminal 30 includes medical monitoring instrument platforms, input terminals for oxygen, air, suction, power and network, and optionally functional columns and functional boxes. Likewise, the wet terminal 40 includes a liftable infusion stand and an infusion pump stand, and a function post and a function box are selectively provided. The dry and wet terminals 30 and 40 are both connected to the boom 20 by a davit 50, the davit 50 being provided with pneumatic brake elements.
Referring to fig. 3 to 5, the cantilever 20 has a substantially diamond-shaped appearance design, and can be formed in one step by using an aluminum alloy mold, so that the cantilever has high load-carrying capacity. Cantilever 20 is including casing 21, fan 24 and the purification module 25 that is equipped with air inlet 22 and gas outlet 23, form airflow channel between air inlet 22 and the gas outlet 23, fan 24 can locate in the airflow channel so that air inlet 22 department forms the negative pressure, purification module 25 locate in the airflow channel and right gas in the airflow channel purifies.
In a preferred embodiment, the air inlet 22 is located on the lower housing 21 of the cantilever 20, which corresponds to the head of the ICU bed, and the air outlet 23 is located on the upper housing 21 of the cantilever 20 corresponding to the air inlet 22. In order to achieve the best effect of the present invention, the air inlet 22 is located at the bedside of the patient bed as far as possible, but the air outlet 23 is not limited to be located at the upper position of the cantilever 20, and may be located at the lateral position or the lower position of the cantilever 20. In a preferred embodiment, the air inlet 22 is provided with a first filter 221, and the air outlet 23 is provided with a second filter 231, so as to perform a further purification function, and the air inlet 22 and the air outlet 23 can be decorated.
In a preferred embodiment, the purification module 25 is located between the air inlet 22 and the fan 24, the air inlet 22 is communicated with the purification module 25, the purification module 25 is communicated with the inlet of the fan 24, and the outlet of the fan 24 is communicated with the air outlet 23. Furthermore, the purification module 25 can also be located between the fan 24 and the air outlet 23, which will not be described in detail herein.
In a preferred embodiment, the purification module 25 includes a primary filter screen, an electrostatic disinfection layer, an electrostatic adsorption layer and a high-efficiency filter screen, which are arranged in sequence according to the airflow flowing direction. The air outlet 23 is located behind the efficient filter screen, absorbs air through the air inlet 22, enters the air flow channel and is conveyed, the air sequentially passes through the primary filter screen, the electrostatic disinfection and sterilization layer, the electrostatic adsorption layer and the efficient filter screen when reaching the purification module 25, clean air is obtained, the efficiency in the purification process is very high, and the purified air is discharged and conveyed through the air flow channel by the fan 24. Of course, the purification module 25 can have other embodiments, for example, the purification module 25 includes a primary filter screen, a sterilization module, and a high efficiency filter screen.
In a preferred embodiment, the fixing device 26 is disposed inside the airflow channel for fixing the purification module 25, the fixing device 26 includes an openable cover plate 261 disposed on the casing 21 of the cantilever 20 and a fixing portion 262 disposed inside the airflow channel, the purification module 25 is disposed in a drawer-type structure and is drawably disposed inside the fixing portion 262 to block the airflow channel, and the cover plate 261 is disposed in a drawing direction of the purification module 25. When the purification module 25 needs to be drawn out and replaced, the purification module 25 can be taken out only by opening the cover plate 261. Further, inside purification module 25, primary filter screen, static disinfection and sterilization layer, static adsorbed layer and high efficiency filter screen set up to drawer type structure respectively, and the telescopic setting can change whole purification module 25 in purifying module 25 after taking out purification module 25, also can purify the layer and change respectively at different levels in purification module 25, and whole operation process is simple reliable, provides very simple and convenient later maintenance mode, convenient to use for the user.
In a preferred embodiment, an openable maintenance top plate (not shown) is disposed at a position of the casing 21 of the cantilever 20 corresponding to the blower 24, and the maintenance top plate is opened when the blower 24 needs to be taken out. Of course, when the blower 24 and the purification module 25 are designed to be modularly combined, the design of the maintenance ceiling may be eliminated, and the fixing device 26 may be retained, and the fixing device 26 may be designed to correspond to the modularly combined blower 24 and purification module 25. Meanwhile, the combined module of the fan 24 and the purification module 25 may also be a drawer type structure, and the fan 24 or the purification module 25 may be drawn out separately.
In a preferred embodiment, the fan 24 and the purification module 25 are mounted in a housing mounted in the housing 21 of the cantilever 20, resulting in a modular design of the fan 24 and the purification module 25.
Further, in order to reduce noise and vibration when the fan 24 is started, the airflow channel is provided with a plurality of noise reduction plates (not shown) which are arranged in parallel in a staggered manner along the airflow direction, and when airflow flows, sound waves can be reflected back and forth between the noise reduction plates which are arranged in a staggered manner, so that the noise generated by the air in the airflow channel is reduced, and the smoothness of the air in the airflow channel is ensured.
In a preferred embodiment, the medical suspension device further comprises a control unit (not shown), the control unit comprises a main control module, a detection module and a control panel arranged on the medical suspension device, the control panel is electrically connected with the main control module, and the main control module is respectively electrically connected with the detection module and the fan. Control host system through control panel, conveniently control and adjust the operating condition of fan, carry out real-time detection to the air quality state around the patient by detection module, and feed back the air quality who detects to host system department, confirm the comparison back to this air quality value by host system, adjust the rotational speed of fan, in order to ensure to provide comfortable rest environment for the patient under the prerequisite of practicing thrift the energy consumption and guaranteeing the air quality.
The utility model also provides a medical tower crane for operating room, because the technical scheme is similar, just do not show any more. In a preferred embodiment, the medical tower crane for the operating room comprises a tower head and a cantilever which are connected with each other, the cantilever comprises a first cantilever rod and a second cantilever rod, the first cantilever rod comprises a shell provided with an air inlet and an air outlet, a fan and a purification module, an air flow channel is formed between the air inlet and the air outlet, the fan is arranged in the air flow channel to form negative pressure at the air inlet, and the purification module is arranged in the air flow channel and purifies air in the air flow channel. In another preferred embodiment, the air inlet is disposed on the first cantilever bar, the air outlet is disposed on the second cantilever bar, the blower includes a first blower and a second blower, the first blower is disposed at the first cantilever bar, the second blower is disposed at the second cantilever bar, and the first cantilever bar and the second cantilever bar are connected through a hollow connecting member.
The utility model also provides a cantilever for medical linkage, please refer to the foregoing description, and the description is not repeated here.
Referring to fig. 6, the present invention further provides a purification device 60 for a medical suspension device, the purification device 60 includes a housing 61 having a first opening 62 and a second opening 63, a fan 24 and a purification module 25, an airflow channel is formed between the first opening 62 and the second opening 63, the fan 24 forms an airflow from the first opening 62 to the second opening 63, and the purification module 25 is disposed in the airflow channel and purifies the airflow in the airflow channel.
In a preferred embodiment, the fan 24 is located in the airflow path, the inlet of the fan 24 is in communication with the first opening 62, the outlet of the fan 24 is in communication with the second opening 63, and the purification module 25 is disposed between the fan 24 and the first opening 62 or between the fan 24 and the second opening 63.
In a preferred embodiment, the purification device 60 further comprises a control unit 64, wherein the control unit 64 comprises a main control module, a detection module and a control panel disposed on the medical suspension device, and the connection relationship of the components is described in the foregoing description, which will not be repeated herein.
Referring to fig. 7, in a preferred embodiment, the fan 24 is located in the airflow path, and the internal structure of the purification module 25 can be separately configured, for example, the purification module 25 includes a primary filter screen 251, a sterilization module 252 and a high efficiency filter screen 253, the primary filter screen 251 is installed at the first opening 62, and the sterilization module 252 and the high efficiency filter screen 253 are sequentially arranged between the fan 24 and the second opening 63 according to the airflow direction. Also, the purification apparatus 60 further includes a control unit 64.
The utility model provides a technical scheme can include following beneficial effect:
the utility model discloses a medical linkage and cantilever, purifier thereof, wherein, medical linkage includes interconnect's tower head and cantilever, the cantilever is including casing, fan and the purification module that is equipped with air inlet and gas outlet, the air inlet corresponds the sick bed head of a bed setting to and form airflow channel between the gas outlet, the fan is located in order to form the negative pressure with air inlet department in the airflow channel, it is right in airflow channel to purify the module locate airflow channel's interior gas purifies. Adopt the technical scheme of the utility model, at medical linkage built-in fan and purification module, can make the patient head top in operating room or ICU ward produce the negative pressure to in time absorb and purify the gas of patient's exhalation, simultaneously, also can continuously improve the room air quality. In addition, the existing equipment is arranged in the fan and the purification module, so that the space can be saved, and the space utilization rate of a ward is improved.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application.
The utility model discloses between the technical scheme who records, under the condition of conflict, can make up wantonly.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention.

Claims (8)

1. The utility model provides a cantilever for medical linkage, wherein, the cantilever is including casing, fan and the purification module that is equipped with air inlet and gas outlet, form airflow channel between air inlet and the gas outlet, the fan forms the air current via air inlet to gas outlet, it is right to purify in the airflow channel module locates the airflow channel the air current in the airflow channel purifies.
2. The cantilever of claim 1, wherein the blower is located in an airflow path, an inlet of the blower is in communication with the air inlet, an outlet of the blower is in communication with the air outlet, and the purification module is disposed between the blower and the air inlet or between the blower and the air outlet.
3. The cantilever according to claim 2, wherein the purification module comprises a primary filter screen, an electrostatic disinfection and sterilization layer, an electrostatic adsorption layer and a high efficiency filter screen which are arranged in sequence according to the air flow direction.
4. The cantilever according to claim 1, wherein the housing of the cantilever is provided with an openable cover plate, the purification module being removable from or insertable into the cantilever when the cover plate is opened.
5. The cantilever according to claim 1, wherein the fan and the purification module are mounted in a housing mounted in the cantilever housing.
6. A medical suspension device comprising a cantilever according to any of claims 1-5.
7. The medical suspension device according to claim 6, wherein the cantilever comprises a first cantilever bar and a second cantilever bar, the air inlet and the air outlet both being provided in the first cantilever bar.
8. The medical suspension device of claim 6, wherein the cantilever comprises a first cantilever bar and a second cantilever bar, the air inlet is disposed in the first cantilever bar, the air outlet is disposed in the second cantilever bar, and the first cantilever bar and the second cantilever bar are connected by a hollow connector.
CN201822224152.6U 2018-12-26 2018-12-26 Medical suspension device and cantilever thereof Active CN210408870U (en)

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Application Number Priority Date Filing Date Title
CN201822224152.6U CN210408870U (en) 2018-12-26 2018-12-26 Medical suspension device and cantilever thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822224152.6U CN210408870U (en) 2018-12-26 2018-12-26 Medical suspension device and cantilever thereof

Publications (1)

Publication Number Publication Date
CN210408870U true CN210408870U (en) 2020-04-28

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111526854A (en) * 2018-12-26 2020-08-11 广州安捷生物安全科技股份有限公司 Medical suspension device and cantilever and purification device thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111526854A (en) * 2018-12-26 2020-08-11 广州安捷生物安全科技股份有限公司 Medical suspension device and cantilever and purification device thereof
CN111526854B (en) * 2018-12-26 2022-02-11 呼研所生物安全科技(广州)股份有限公司 Medical suspension device and cantilever and purification device thereof

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