VENTILATOR
20230030268 · 2023-02-02
Assignee
Inventors
Cpc classification
A61M16/0003
HUMAN NECESSITIES
F04F5/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M2205/3592
HUMAN NECESSITIES
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M16/08
HUMAN NECESSITIES
A61M2016/102
HUMAN NECESSITIES
A61M16/1045
HUMAN NECESSITIES
F04F5/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M2206/20
HUMAN NECESSITIES
International classification
Abstract
A ventilator includes a ventilation body, the ventilation body includes a ventilation cavity and an air inlet end and an air outlet end communicating with the ventilation cavity, the ventilation body further includes an annular shell configured to form the ventilation cavity, the annular shell is formed with an annular cavity inside, an air inlet and an air outlet communicating with the annular cavity are disposed on the annular shell, the air outlet is communicated with the annular cavity and the ventilation cavity, the air outlet has a slit shape extending along a circumferential direction of the annular shell and is disposed to be capable to guide gas flows out towards the air outlet end. The ventilator may greatly increase the ventilation volume and the gas pressure, by using the ventilation body as mentioned above.
Claims
1. A ventilator, wherein, the ventilator comprises a ventilation body, the ventilation body comprises a ventilation cavity, an air inlet end and an air outlet end, wherein the air inlet end and the outlet end communicate with the ventilation cavity, the ventilation body further comprises an annular shell configured to form the ventilation cavity, the annular shell is formed with an annular cavity inside, an air inlet and an air outlet communicate with the annular cavity and are disposed on the annular shell, the air outlet is communicated with the annular cavity and the ventilation cavity, and the air outlet has a slit shape extending along a circumferential direction of the annular shell and is configured to guide gas flows out towards the air outlet end.
2. The ventilator according to claim 1, wherein, the air outlet is disposed close to the air inlet end; and/or a first side edge of the air outlet close to the air inlet end is disposed to bend and extend towards a second side edge of the air outlet, and the first side edge is closer to a central axis of the annular shell in a radial direction of the annular shell compared with the second side edge.
3. The ventilator according to claim 2, wherein, the second side edge of the air outlet is disposed to bend and extend in a direction away from the first side edge; and/or a minimum spacing between the first side edge of the air outlet and the second side edge is less than 2 mm.
4. The ventilator according to claim 2, wherein, a width of the annular cavity gradually decreases along a direction from the air inlet end to the air outlet end; and/or a diameter of the ventilation cavity gradually increases along a direction from the air inlet end to the air outlet end.
5. The ventilator according to claim 1, wherein the ventilator comprises a base and a power motor, the base is formed with a cavity inside, an air inlet hole and an air outlet hole communicate with the cavity and are disposed on the base, the power motor is disposed inside the cavity, the annular shelf is installed on the base, and the air inlet sealingly communicates with the air outlet hole.
6. The ventilator according to claim 5, wherein, the ventilator comprises a buffer part, wherein the buffer part is located inside the cavity and disposed to surround the power motor; and/or the base comprises a bottom wall and a surrounding wall configured to form the cavity, wherein a top opening of the cavity forms the air outlet hole, and the air inlet hole is disposed on the surrounding wall.
7. The ventilator according to claim 6, wherein, the power motor is formed to have a column shape, the buffer part is formed to have a cylinder shape and clamped between the power motor and the surrounding wall, and the buffer part is air-permeable.
8. The ventilator according to claim 5, wherein, the ventilator comprises a main control component, the main control component is disposed in the cavity and configured to control the operation of the power motor, and the main control component is communicatively connected with a control terminal.
9. The ventilator according to claim 1, wherein, the ventilator comprises a heat-humidity exchanger, the heat-humidity exchanger is installed at the air outlet end; and/or the ventilator comprises a filter apparatus, the filter apparatus is disposed at the air inlet end.
10. The ventilator according to claim 1, wherein, the ventilator comprises a breathing mask provided with a breathing cavity, the ventilation body is connected with the breathing mask and the air outlet end is made to be sealed and communicating with the breathing cavity.
11. The ventilator according to claim 3, wherein, a width of the annular cavity gradually decreases along a direction from the air inlet end to the air outlet end, and/or a diameter of the ventilation cavity gradually increases along a direction from the air inlet end to the air outlet end.
12. The ventilator according to claim 2, wherein the ventilator comprises a base and a power motor, the base is formed with a cavity inside, an air inlet hole and an air outlet hole communicate with the cavity and are disposed on the base, the power motor is disposed inside the cavity, the annular shell is installed on the base, and the air inlet sealingly communicates with the air outlet hole.
13. The ventilator according to claim 3, wherein the ventilator comprises a base and a power motor, the base is formed with a cavity inside, an air inlet hole and an air outlet hole communicate with the cavity and are disposed on the base, the power motor is disposed inside the cavity, the annular shell is installed on the base, and the air inlet sealingly communicates with the air outlet hole.
14. The ventilator according to claim 4, wherein the ventilator comprises a base and a power motor, the base is formed with a cavity inside, an air inlet hole and an air outlet hole communicate with the cavity and are disposed on the base, the power motor is disposed inside the cavity, the annular shell is installed on the base, and the air inlet sealingly communicates with the air outlet hole.
15. The ventilator according to claim 6, wherein, the ventilator comprises a main control component, the main control component is disposed in the cavity and configured to control the operation of the power motor, and the main control component is communicatively connected with a control terminal.
16. The ventilator according to claim 7, wherein, wherein, the ventilator comprises a main control component, the main control component is disposed in the cavity and configured to control the operation of the power motor, and the main control component is communicatively connected with a control terminal.
17. The ventilator according to claim 2, wherein, the ventilator comprises a heat-humidity exchanger, the heat-humidity exchanger is installed at the air outlet end; and/or the ventilator comprises a filter apparatus, the filter apparatus is disposed at the air inlet end.
18. The ventilator according to claim 3, wherein, the ventilator comprises a heat-humidity exchanger, the heat-humidity exchanger is installed at the air outlet end; and/or the ventilator comprises a filter apparatus, the filter apparatus is disposed at the air inlet end.
19. The ventilator according to claim 4, wherein, the ventilator comprises a heat-humidity exchanger, the heat-humidity exchanger is installed at the air outlet end, and/or the ventilator comprises a filter apparatus, the filter apparatus is disposed at the air inlet end.
20. The ventilator according to claim 5, wherein, the ventilator comprises a heat-humidity exchanger, the heat-humidity exchanger is installed at the air outlet end, and/or the ventilator comprises a filter apparatus, the filter apparatus is disposed at the air inlet end.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure or the prior art, the figures that are required to describe the embodiments or the prior art will be briefly introduced below. Apparently, the figures that are described below are embodiments of the present disclosure, and a person skilled in the art can obtain other figures according to these figures without paying creative work.
[0028] The attached figures are configured to provide further understanding of the present disclosure, and to be part of the specification and are used to explain the present disclosure with the detailed description of the embodiments, but it does not limit the present disclosure. In the attached figures.
[0029]
[0030]
[0031]
[0032]
[0033]
EXPLANATIONS OF LABELS OF THE ATTACHED FIGURES
[0034] 10—ventilation body, 11—ventilation cavity, 12—air inlet end, 13—air outlet end, 14—annular shell, 15—annular cavity, 16—air inlet, 17—air outlet, 171—one side edge, 172—the other side edge, 20—base, 21—cavity, 22—air inlet hole, 23—air outlet hole, 24—bottom wall, 25—surrounding wall, 30—power motor, 40—buffer part.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0035] In order to make the objects, the technical solutions and the advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be clearly and completely described below with reference to the drawings of the embodiments of the present disclosure. Apparently, the described embodiments are merely certain embodiments of the present disclosure, rather than all of the embodiments. All of the other embodiments that a person skilled in the art obtains on the basis of the embodiments of the present disclosure without paying creative work fall within the protection scope of the present disclosure.
[0036] The following is a detailed description of the specific implementation of the present disclosure in combination with the attached drawings. It should be understood that the specific implementation described herein are intended only to illustrate and explain the present disclosure and are not intended to limit the present disclosure.
[0037] In the present disclosure, in the absence of a statement to the contrary, locational terms such as “top, bottom” are usually used to refer to the locations shown in the attached figures “Inside, outside” refer to the inside and the outside of each part relative to its own contour.
[0038] The present disclosure provides a ventilator, the ventilator includes a ventilation body 10, the ventilation 10 includes a ventilation cavity 11 and an air inlet end 12 and an air outlet end 13 communicating with the ventilation cavity 11, the ventilation body 10 further includes an annular shell 14 configured to form the ventilation cavity 11, inside the annular shell 14 is formed with an annular cavity 15, an air inlet 16 and an air outlet 17 communicating with the annular cavity 15 are disposed on the annular shell 14, the air outlet 17 is communicated with the annular cavity 15 and the ventilation cavity 11, the air outlet 17 has a slit shape extending along a circumferential direction of the annular shell 14 and is disposed to be capable to guide gas flows out towards the air outlet 13 end.
[0039] In the above, the annular shell 14 may include an inner surrounding wall and an outer surrounding wall configured to form the annular cavity 15, two ends of the inner surrounding wall and the outer surrounding wall are sealed and connected to form as an entirety, the ventilation cavity 11 is formed by the inner surrounding wall, the air outlet 17 is disposed on the inner surrounding wall and the air inlet 16 is disposed on the outer surrounding wall (referring to
[0040] The ventilator of the present disclosure by using the ventilation body 10 of the technical solutions as mentioned above, during usage, after entering the annular gas cavity 15 through the air inlet 16, the gas may form a vortex in the annular gas cavity 15 and fills the annular gas cavity 15, and then flow out to the ventilation cavity 11 through the air outlet 17, which may effectively increase the gas flow. Moreover, since the air outlet 17 has a slit shape, the gas pressure may be greatly increased. In addition, under the guidance of the air outlet 17, the gas may flow towards the air outlet end 13 after entering the ventilation cavity 11, to form a negative pressure on one side of the air inlet end 12 of the ventilation body 10 (as referring to
[0041] In the present disclosure, in order to form a larger negative pressure on one side of the air inlet end 12 of the ventilation body 10, to further increase the ventilation volume, as referring to
[0042] In the present disclosure, in order to achieve the guidance function of the air outlet 17 as mentioned above, as referring to
[0043] Further, as referring to
[0044] In the present disclosure, in order to further increase the pressure of the gas flowing out from the air outlet 17, as a preferable option, a minimum spacing between the side edge 171 and the other side edge 172 of the air outlet 17 is less than 2 mm, such as 1 mm.
[0045] In the present disclosure, as a preferable option, as referring to
[0046] In the present disclosure, as shown in
[0047] Wherein, the gas may be accelerated into the annular cavity 15 through a cyclone accelerator of the power motor, thus an exhausting speed of the air outlet 17 of the ventilation body 10 may be increased several times, to further increase a negative pressure of one side of the air inlet end 12 of the ventilation body 10, to make the ventilation volume to increase several times.
[0048] Wherein, in order to reduce the running noise of the power motor 30, the ventilator may further include a buffer part 40, the buffer part 40 is located inside of the cavity 21 and disposed to surround the power motor 30.
[0049] In the above, the base 20, the power motor 30 and the buffer part 40 may be provided with any suitable structures. According to an embodiment of the present disclosure, as shown in
[0050] Wherein, a plurality of air inlet hole 22 may be disposed on the base 20, as shown in
[0051] In the present disclosure, the ventilator may further include a main control component, the main control component is disposed in the cavity 21 and configured to control the operation of the power motor 30, and is communicatively connected with a control terminal. Wherein, the control terminal may be an APP located at a PC terminal or a mobile terminal, the main control component may communicate with the APP through Bluetooth, infrared, WIFI and data lines and so forth, patients may achieve controlling the power motor 30 through operating the APP. In addition, the main control component may be disposed to be capable to detect data, such as gas flow, gas pressure, gas temperature and humidity, blood-oxygen concentration and gas composition and so forth, and send these data to the APP, to facilitate interactions at any moment between doctors and patients, to achieve the intelligent medical treatment.
[0052] In addition, the ventilator of the present disclosure may also have a humidification function. For example, a heat-humidity exchanger may be disposed at the air outlet end 13 of the ventilation body 10. During usage, the heat-humidity exchanger may retain a part of the moisture and the heat in the patient's exhaled gas, and which may be returned to the respiratory tract as during the process that the patient inhales gas.
[0053] In the present disclosure, the ventilator may further include a filter apparatus, the filter apparatus is disposed at the air inlet end 12 of the ventilation body 10 in order to filter the gas entering the ventilation cavity 11 and ensure safety of the inhaled gas.
[0054] When the ventilator of the present disclosure is used, the air outlet end 13 of the ventilation body 10 may be directly aligned to the patient's mouth and/or nose, that is, the ventilator does not require wearing an additional respirator mask. Under this condition, in order to increase comfort, the ventilation body 10 may be made of flexible materials, such as silica gel. Certainly, in other embodiments, the ventilator may also include a breathing mask with a breathing cavity, the ventilation body 10 may be connected with the breathing mask and the air outlet end 13 is sealed and communicated with the breathing cavity. Wherein, the ventilation body 10 may be directly installed on the breathing mask, or it may be connected to the breathing mask through a ventilation tube.
[0055] The ventilator of the present disclosure has the following advantages: a large ventilation volume, a large gas pressure, low energy consumption, a low air fluctuation, a low noise, fewer parts and components, a simple structure, a small volume, easy to carry, convenient production and maintenance and various ways to use.
[0056] The preferred embodiment of the present disclosure is described in detail above in combination with the attached drawings. However, the present disclosure is not limited to the specific details of the above embodiment. Within the scope of the technical idea of the present disclosure, a plurality of simple variations the technical solutions of the present disclosure can be carried out, and these simple variations fall within the scope of protection of the present disclosure.
[0057] It should also be noted that the specific technical features described in the above specific embodiments may be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, the present disclosure does not specify the various possible combinations.
[0058] In addition, any combination of different embodiments of the present disclosure shall be deemed to be disclosed in the present disclosure as long as they do not violate the ideas of the present disclosure.
[0059] The device embodiments described above is only schematic, the units illustrated as separated parts may be or may not be separated physically, and the parts shown in unit may be or may not be a physical unit. That is, the parts may be located at one place or distributed in multiple network units. A skilled person in the art may select part or all modules therein to realize the objective of achieving the technical solution of the embodiment. Those of ordinary skill in the art can understand and implement it without creative effort.
[0060] The term “one embodiment”, “an embodiment”, or “one or more embodiments” herein means that the particular features, structures, or features described in combination with embodiments are included in at least one embodiment disclosed herein. Also, note that the examples of words “in an embodiment” here do not necessarily all refer to the same embodiment.
[0061] A great deal of detail is provided in the manual provided here. However, it is understood that this disclosed embodiment can be practiced without such specific details. In some instances, known methods, structures and techniques are not detailed so as not to obscure the understanding of this specification.
[0062] In a claim, no reference symbol between parentheses shall be constructed to restrict the claim. The word “include” does not exclude the existence of elements or steps not listed in the claim. The word “one” or “one” before a component does not preclude the existence of more than one such component. This exposure can be implemented with the help of hardware including several different components and with the help of properly programmed computers. In listing the unit claims of several devices, several of these devices can be embodied by the same hardware item. The use of the words first, second, and third does not indicate any order. These words can be interpreted as names.
[0063] Finally, it should be noted that the above embodiments are only used to illustrate, and not to limit, the disclosed technical solution; notwithstanding the detailed description of the present disclosure with reference to the foregoing embodiments, ordinary technical personnel in the field should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent substitutions to some of the technical features thereof; such modifications or substitutions shall not separate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the disclosed embodiments.