Gas-water separator for decontamination device

文档序号:1699216 发布日期:2019-12-13 浏览:23次 中文

阅读说明:本技术 用于洗消器的气水分离器 (Gas-water separator for decontamination device ) 是由 李珂娴 何颖 王海军 于 2019-08-23 设计创作,主要内容包括:本发明公开了一种用于洗消器的气水分离器,包括构成一封闭腔体的上罩和下壳,上罩的一侧面连接有用于连接洗消头的进气接管,下壳的底部连接有用于连接抽吸风机的排气接管,封闭腔体内固定有疏液管道,且疏液管道穿设下壳,疏液管道内固定有螺旋管,螺旋管包括空心管和绕空心管螺旋设置的螺旋轨道,螺旋轨道的顶部连通进气接管,疏液管道的底部构成疏液收集器,螺旋轨道的底部置于疏液收集器上方,疏液管道的底部设有用于连接疏液泵的疏液口,疏液口连通疏液收集器,疏液口处固定有疏液液位开关,封闭腔体内固定有排气滤芯,排气滤芯与排气接管连接。本发明采用旋风离心结构,使空气中水分分离,气水分离器体积小,携带方便。(The invention discloses a gas-water separator for a decontamination device, which comprises an upper cover and a lower cover which form a closed cavity, wherein one side surface of the upper cover is connected with an air inlet connecting pipe for connecting a decontamination head, the bottom of the lower cover is connected with an exhaust connecting pipe for connecting a suction fan, a lyophobic pipeline is fixed in the closed cavity and penetrates through the lower cover, a spiral pipe is fixed in the lyophobic pipeline, the spiral pipe comprises a hollow pipe and a spiral track spirally arranged around the hollow pipe, the top of the spiral track is communicated with the air inlet connecting pipe, the bottom of the lyophobic pipeline forms a lyophobic collector, the bottom of the spiral track is arranged above the lyophobic collector, a lyophobic opening for connecting a lyophobic pump is arranged at the bottom of the lyophobic pipeline, the lyophobic opening is communicated with the lyophobic collector, a lyophobic liquid level switch is fixed at the lyophobic opening, an exhaust filter element is fixed in the closed cavity, and the. The invention adopts a cyclone centrifugal structure to separate water from air, and the gas-water separator has small volume and convenient carrying.)

1. The utility model provides a gas-water separator for washing ware that disappears, its characterized in that, it includes upper shield and inferior valve that constitutes a closed cavity, a side of upper shield is connected with and is used for connecting the takeover that admits air that washes the head that disappears, the bottom of inferior valve is connected with and is used for connecting the exhaust takeover of suction fan, the internal lyophobic pipeline that is fixed with of closed cavity, just the lyophobic pipeline wears to establish the inferior valve, lyophobic pipeline internal fixation has the spiral pipe, the spiral pipe includes hollow tube and the spiral track around hollow tube spiral setting, the spiral track's top intercommunication is admitted air and is taken over, the bottom of lyophobic pipeline constitutes lyophobic collector, lyophobic collector top is arranged in to spiral track's bottom, lyophobic pipeline's bottom is equipped with the lyophobic mouth that is used for connecting the lyophobic pump, lyophobic mouth intercommunication lyophobic collector, lyophobic mouth department is fixed with lyophobic liquid level switch, an exhaust filter element is fixed in the closed cavity and connected with an exhaust connecting pipe.

2. The gas-water separator for a decontamination apparatus of claim 1, wherein the gas inlet connection tube is connected to a connector of the decontamination head through a hose, and the connector is communicated with an internal cavity of the decontamination head.

3. The gas-water separator for a decontamination device as defined in claim 1, wherein the bottom of the lower shell is provided with a lyophobic hole.

Technical Field

The invention relates to the technical field of decontamination devices, in particular to a gas-water separator for a decontamination device.

Background

The existing gas-water separator of the decontamination device separates moisture in air by gravity, and needs a large volume, so that the gas-water separator has a large volume and is inconvenient to carry.

disclosure of Invention

Aiming at the problems and the defects in the prior art, the invention provides a novel gas-water separator for a decontamination device.

The invention solves the technical problems through the following technical scheme:

The invention provides a gas-water separator for a decontamination device, which is characterized by comprising an upper cover and a lower cover which form a closed cavity, wherein one side surface of the upper cover is connected with an air inlet connecting pipe for connecting a decontamination head, the bottom of the lower cover is connected with an air outlet connecting pipe for connecting a suction fan, a lyophobic pipeline is fixed in the closed cavity and penetrates through the lower cover, a spiral pipe is fixed in the lyophobic pipeline, the spiral pipe comprises a hollow pipe and a spiral track spirally arranged around the hollow pipe, the top of the spiral track is communicated with the air inlet connecting pipe, the bottom of the lyophobic pipeline forms a lyophobic collector, the bottom of the spiral track is arranged above the lyophobic collector, a lyophobic opening for connecting a lyophobic pump is arranged at the bottom of the lyophobic pipeline, the lyophobic opening is communicated with the lyophobic collector, and a lyophobic liquid level switch is fixed at the lyophobic opening, an exhaust filter element is fixed in the closed cavity and connected with an exhaust connecting pipe.

Preferably, the air inlet connecting pipe is connected with a port of the decontamination head through a hose, and the port is communicated with an inner cavity of the decontamination head.

Preferably, the bottom of the lower shell is provided with a lyophobic hole.

On the basis of the common knowledge in the field, the above preferred conditions can be combined randomly to obtain the preferred embodiments of the invention.

The positive progress effects of the invention are as follows:

The invention adopts a cyclone centrifugal structure to separate water from air, and the gas-water separator has small volume and convenient carrying.

Drawings

FIG. 1 is a schematic structural diagram of a gas-water separator according to a preferred embodiment of the present invention.

FIG. 2 is an exploded view of the gas-water separator according to the preferred embodiment of the present invention.

FIG. 3 is a sectional view of a gas-water separator according to a preferred embodiment of the present invention.

Detailed Description

In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention.

As shown in fig. 1-3, the embodiment provides a gas-water separator for a decontamination device, which comprises an upper cover 1 and a lower shell 2 forming a closed cavity, wherein one side surface of the upper cover 1 is connected with an air inlet connection pipe 3 for connecting a decontamination head, the bottom of the lower shell 2 is connected with an exhaust connection pipe 4 for connecting a suction fan, a lyophobic pipeline 5 is fixed in the closed cavity, the lyophobic pipeline 5 penetrates through the lower shell 2, a spiral pipe 6 is fixed in the lyophobic pipeline 5, the spiral pipe 6 comprises a hollow pipe 61 and a spiral track 62 spirally arranged around the hollow pipe 61, the top of the spiral track 62 is communicated with the air inlet connection pipe 3, the bottom of the lyophobic pipeline 5 forms a lyophobic collector 7, the bottom of the spiral track 62 is arranged above the lyophobic collector 7, the bottom of the lyophobic pipeline 7 is provided with a lyophobic opening 8 for connecting a lyophobic pump, the lyophobic port 8 is communicated with a lyophobic collector 7, a lyophobic liquid level switch 9 is fixed at the lyophobic port 8, an exhaust filter element 10 is fixed in the closed cavity, the exhaust filter element 10 is connected with the exhaust connecting pipe 4, and a lyophobic hole 11 is formed in the bottom of the lower shell 2.

The air inlet connecting pipe 3 is connected with a connector of the decontamination head through a hose, the connector of the decontamination head is communicated with an inner cavity of the decontamination head, and the bottom end of the inner cavity of the decontamination head faces to the surface of a contaminated body or the surface of a wound.

The suction fan is started to provide negative pressure, waste liquid on the surface of a contaminated body or a wound flows to the air inlet connecting pipe 3 along an inner cavity of the decontamination head and a connector of the decontamination head, the waste liquid in the air inlet connecting pipe 3 flows to the spiral track 62, the waste liquid flows to the lyophobic collector 7 along the spiral track 62 in a spiral moving mode, the lyophobic liquid level switch 9 is controlled to be opened, the lyophobic pump is controlled to open the lyophobic pump, the waste liquid in the lyophobic collector 7 is pumped away by the lyophobic pump, and the waste liquid scattered in the closed cavity flows out through the lyophobic hole. The gas in the waste liquid flows to the lyophobic collector 7 along the waste liquid and then moves upwards along the hollow pipe 61, the gas in the waste liquid is absorbed and filtered by the exhaust filter element 10 after coming out of the hollow pipe 61, and the gas absorbed and filtered by the exhaust filter element 10 is discharged through the exhaust connecting pipe 4.

While specific embodiments of the invention have been described above, it will be appreciated by those skilled in the art that these are by way of example only, and that the scope of the invention is defined by the appended claims. Various changes and modifications to these embodiments may be made by those skilled in the art without departing from the spirit and scope of the invention, and these changes and modifications are within the scope of the invention.

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