LIQUID ATOMIZING DEVICE
20200001024 ยท 2020-01-02
Assignee
Inventors
Cpc classification
A61M11/02
HUMAN NECESSITIES
B05B7/1272
PERFORMING OPERATIONS; TRANSPORTING
B05B7/0012
PERFORMING OPERATIONS; TRANSPORTING
A61M11/002
HUMAN NECESSITIES
A61M16/14
HUMAN NECESSITIES
B05B7/0433
PERFORMING OPERATIONS; TRANSPORTING
A61M15/0001
HUMAN NECESSITIES
International classification
A61M11/02
HUMAN NECESSITIES
A61M16/14
HUMAN NECESSITIES
Abstract
A liquid atomizing device includes a medical solution cup connected to an air pump, and an output cover installed onto the medical solution cup and including an atomizing socket formed in the outer cover, and the top of the atomizing socket cover has a linear opening and a drainage groove for increasing the flow of a medical solution. When the medical solution is guided to flow upwardly through the drainage and sprayed from a specially designed linear opening to the outside through the drainage groove due to a high speed airflow, the medical solution is collided with a barrier rod disposed above the linear opening to form an atomized medical solution, and the linear opening has the effect of atomizing the medical solution stably.
Claims
1. A liquid atomizing device, comprising a medical solution cup coupled to an external air pump, and an output cover detachably installed onto the medical solution cup, and the medical solution cup having a medical solution storage tank, and the medical solution storage tank having a jet pipe protruded upwardly from the tank bottom of the medical solution storage tank, and the top of the jet pipe having a conical nozzle, and the output cover having an output flow passage formed therein and communicated to the outside, and an external atomizing socket disposed under the output flow passage and capable of sheathing the jet pipe, and a gap formed between the inner periphery of the atomizing socket and the outer periphery of the jet pipe for filling the medical solution stored in the medical solution storage tank into the gap, characterized in that the top inner periphery of the atomizing socket has a tapered portion superimposed on the top outer periphery of the conical nozzle to block the gap, and a linear opening formed at the top surface of the atomizing socket above the tapered portion for increasing the flow of the medical solution, and the linear opening includes two long sides and two short sides disposed between both ends of the two long sides; a drainage groove is formed separately at the inner periphery of the two corresponding long sides, and the two drainage grooves are extended downwardly from the linear opening and communicated to the gap through the inner periphery of the tapered portion, so that the medical solution in the gap can be passed through the drainage groove and then sprayed to the outside; a support is extended upwardly and separately from the outer sides of the two short sides and coupled to the output flow passages on both sides, and a parallel barrier rod is disposed above the linear opening and between the two supports for atomizing the medical solution after the medical solution is impacted; and the two short sides are extended downwardly to form an expansion slot with the outer periphery of the conical nozzle, and the two expansion slots are substantially tapered downward and the bottom of the expansion slot is proximate to the outer periphery of the bottom of the conical nozzle for preventing the airflow in an opposite direction from flowing through the two expansion slots and injecting downwardly into the gap to disturb the medical solution that flows upwardly inside the gap to the drainage groove.
2. The liquid atomizing device of claim 1, wherein the two expansion slots have a bottom near the outer periphery of the conical nozzle and maintaining a crevice smaller than the gap.
3. The liquid atomizing device of claim 1, wherein the two expansion slots have a bottom abutting the outer periphery of the conical nozzle and isolated from the gap.
4. The liquid atomizing device of claim 1, wherein the two drainage grooves of the top tapered portion of the atomizing socket are in a straight flat shape or an upwardly tapered shape.
5. The liquid atomizing device of claim 1, wherein the barrier rod has a bump formed at the bottom of the barrier rod and facing the top of the draining groove and capable of bearing the impact of the medical solution.
6. The liquid atomizing device of claim 1, wherein the output cover is integrally formed with the atomizing socket.
7. The liquid atomizing device of claim 1, wherein the jet pipe has a bottom extended to an outer side of the medical solution cup for coupling the air pump.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0035] To make it easier for our examiner to understand the objective, technical characteristics, structure, innovative features, and performance of the invention, we use preferred embodiments together with the attached drawings for the detailed description of the invention.
[0036] With reference to
[0037] In the figures, the output cover 2 is installed onto a tank opening 111 of the medical solution storage tank 11 of the medical solution cup 1, and the output cover 2 has an output flow passage 21 formed therein and communicated to the outside, and an atomizing socket 3 disposed under the output flow passage 21 and sheathed on the jet pipe 12 and the conical nozzle 13, wherein the output cover 2 and the atomizing socket 3 are integrally formed by in-mold injection molding.
[0038] The atomizing socket 3 has a top 31 and a bottom 32, and a gap t formed between the inner periphery 30 of the atomizing socket 3 (or an internal socket wall) and the outer periphery 120 of the jet pipe 12 (or an external socket wall) and upwardly communicated to the bottom of the medical solution storage tank 11, so that the medical solution can be filled into the gap t according to a capillary action.
[0039] With reference to
[0040] Wherein, the corresponding two long sides 3021 of the linear opening 302 have a drainage groove 303 formed separately on both sides of the inner periphery 30 and extended downwardly from the long side 3021 of the linear opening 302, and communicated to the gap t through the inner periphery 30 of the tapered portion 301, wherein the two drainage grooves 303 of the tapered portion 301 at the top 31 of the atomizing socket 3 is substantially in a straight flat shape or an upwardly tapered shape, so that the medical solution in the gap t can be sprayed to the outside through the two drainage grooves 303.
[0041] A support 4 is extended vertically upward from the outer side of the two short sides 3022 of the linear opening 302 and coupled to both sides of the output flow passage 21, and a barrier rod 33 is disposed between the two supports 4 and above the linear opening 302, and extended parallel to the linear opening 302, and the bottom of the barrier rod 33 is provided to be collided for atomizing the medical solution.
[0042] In addition, the inner sides of the two short sides 3022 are extended downwardly to form an expansion slot 3023 with the outer periphery of the conical nozzle 13, and the two expansion slots 3023 are tapered downward and have a bottom proximate to the outer periphery of the conical nozzle 13 and maintain a crevice a (smaller than the gap t) with the gap t (as shown in
[0043] In addition, the inner side 41 of the two supports 4 is aligned evenly with the corresponding inner side of the two short sides 3022, so that the two long sides 3021 can be extended to both edges of the top surface of the tapered portion 301 to expand the linear opening 302 to a maximum length.
[0044] In a feasible embodiment, the barrier rod 33 has a bump 34 disposed at the bottom of the barrier rod 33 and facing the top of the drainage groove 303 for bearing the impact of the medical solution. The bump 34 increases the area of the bottom of the barrier rod 33 for bearing the impact of the medical solution in order to promote the atomization of the medical solution.
[0045] In
[0046] In
[0047] In addition, the two expansion slots 3023 are formed between the inner sides of the two short sides 3022 of the linear opening 302 and the outer periphery of the conical nozzle 13 and tapered downward, and the bottom of the two expansion slots 3023 maintains a crevice a (smaller than the width of the gap) with the gap t, or the bottom of the two expansion slots 3023 is separated from the gap t to prevent the airflow in an opposite direction from filling upwardly from the bottom of the two expansion slots 3023 into the gap t to disturb and hinder the medical solution in the gap t from flowing upwardly to the drainage groove 303. The long-strip shaped continuously opened structure of the linear opening 302 increases the area for passing and spraying the atomized medical solution to the outside without affecting the content of the medical solution filled in the gap t while improving the stability of producing the atomized medical solution.
[0048] While the invention has been described by way of example and in terms of a preferred embodiment, it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.