CN213432354U - Novel atomizing cup for adjusting atomized particles - Google Patents

Novel atomizing cup for adjusting atomized particles Download PDF

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Publication number
CN213432354U
CN213432354U CN202021697299.8U CN202021697299U CN213432354U CN 213432354 U CN213432354 U CN 213432354U CN 202021697299 U CN202021697299 U CN 202021697299U CN 213432354 U CN213432354 U CN 213432354U
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atomizing cup
arc
fixed
plectane
atomizing
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CN202021697299.8U
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林苍发
石江涛
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Xiamen Dahton Meditech Co ltd
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Xiamen Dahton Meditech Co ltd
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Abstract

The utility model relates to an adjust novel atomizing cup of atomizing granule, including the atomizing cup, be fixed with on the atomizing cup lateral wall and atomize the inside play fog pipe that communicates of cup, the bowl cover bottom of atomizing cup is connected with revolves the post, it is fixed with the fog blocking cover on the position of column bottom to revolve the post outer wall to be close to revolve, it is equipped with the adjusting part who is used for adjusting the atomizing granule size jointly to revolve the post and cover with the fog blocking. This application is through setting up adjusting part to this staff controls the atomizing particle size of atomizing cup through adjusting part, makes this hand-held type atomizer can adjust the atomizing particle with different liquid medicines, is favorable to drug effect full play, so that improve and diagnose the effect.

Description

Novel atomizing cup for adjusting atomized particles
Technical Field
The application relates to the technical field of atomizers, in particular to a novel atomizing cup for adjusting atomized particles.
Background
Respiratory diseases are one of the diseases which are frequently contacted in daily life of residents in China, and almost every person suffers from common respiratory diseases such as cough, cold, bronchitis, asthma and the like. Respiratory diseases mainly occur in the throat, trachea, bronchi and lungs of human body, and the diseases are manifested as cough, phlegm, asthma, inflammation, etc.
The aerosol inhalation type treatment has gradually become the best treatment means in the international treatment guidelines for respiratory diseases such as tracheitis, chronic obstructive pulmonary disease, asthma and the like. The aerosol inhalation therapy includes various modes such as water dissolving, powder, etc., and aerosol therapy is one of them.
The existing Chinese patent with publication number CN208959018U discloses a medical drug administration atomizing cup, which comprises an atomizing cup body, wherein the atomizing cup body comprises an upper cup body and a lower cup body, the side wall of the upper cup body is provided with a mist outlet, the top of the upper cup body is provided with an air inlet, the air inlet is provided with an adjusting valve cover, the inner side of the air inlet extends downwards to form an air inlet pipe, the side wall of the air inlet pipe, which is far away from the mist outlet, is provided with an air inlet, and the bottom of the air inlet pipe is; the center of the bottom of the lower cup body is provided with an air inlet nozzle which is arranged towards the fog baffle plate, and a space between the bottom of the lower cup body and the side part of the lower cup body outside the air inlet nozzle forms a medicine storage groove; the top of the air inlet nozzle is provided with an air inlet hole, the outer side of the air inlet nozzle is coated with a flow path forming cover, the flow path forming cover is detachably connected with the air inlet nozzle, the top of the flow path forming cover is provided with a jet hole facing the air inlet hole, the inner wall of the flow path forming cover is provided with an imbibing groove, and the imbibing groove and the outer wall of the air inlet nozzle jointly form an imbibing channel.
However, the inventor believes that the technical scheme has the following defects: to different liquid medicines, the size of the atomized particles will produce great influence on the atomization treatment effect, and the size of the atomized particles of the atomizing cup is not easy to control, thus being not beneficial to improving the diagnosis and treatment effect.
SUMMERY OF THE UTILITY MODEL
In order to facilitate adjusting the atomizing particle size to improve the diagnosis and treatment effect of different liquid medicines, the application provides a novel atomizing cup of adjusting atomizing particle.
The application provides a adjust novel atomizing cup of atomized particles adopts following technical scheme:
the utility model provides an adjust novel atomizing cup of atomized particles, includes the atomizing cup, be fixed with on the atomizing cup lateral wall with the inside play fog pipe that communicates of atomizing cup, the bowl cover bottom of atomizing cup is connected with revolves the post, it is fixed with the mist shield to revolve the post outer wall on being close to the position of revolving the post bottom, revolve the post and cover with the mist shield and be equipped with the adjusting part who is used for adjusting the atomized particles size jointly.
This application further sets up to, adjusting part includes and fixes lower plectane and cover with atomizing cup inner wall laminating and revolve the post on and with revolve the fixed plectane of post, the lower terminal surface of plectane is fixed with the up end of blocking the fog cover down, divide into four regions, every region down on the plectane all seted up a plurality of fog holes down on the plectane, four regions play fog hole aperture on the plectane is even to be changed, and in every region a plurality of fog hole apertures on the plectane are equal down, go up the plectane and seted up out the fog mouth with down on the position that one of them region of plectane corresponds.
This application further sets up to, it judges the subassembly to be provided with the gear on the plectane, the gear is judged the subassembly and is included the dead lever fixed with the bottom surface of last plectane, set up slide bar on the dead lever, keep away from the arc fixed of one end of dead lever and cover with the slide bar and locate the elastic component on the slide bar between arc and dead lever, set up the perforation of being connected with the slide bar slides on the dead lever, it is protruding that plectane axis one side is down oriented to the arc, run through on the plectane down set up supply the dead lever slide the spout of connecting and with arc complex arc draw-in groove, the arc draw-in groove sets up the juncture in ple.
The application is further configured such that the resilient member is a spring.
This application further sets up to, slide bar, arc and elastic component on the subassembly are judged to the gear all are equipped with two, and about the axis symmetry of dead lever sets up.
The application further provides that a diameter of the cross-sectional circle of the fixed bar is less than a width of the chute.
In summary, the present application includes at least one of the following beneficial technical effects:
1. in the application, by arranging the adjusting assembly, the size of the atomized particles of the atomizing cup body can be conveniently controlled by a worker through the adjusting assembly, so that the handheld atomizer can adjust the atomized particles for different liquid medicines, the drug effect can be fully exerted, and the diagnosis and treatment effect can be improved;
2. in the application, when the size of the atomized particles is adjusted by using the adjusting assembly, a worker only needs to screw the cup cover of the atomizing cup body to rotate the rotary column connected with the bottom of the cup cover, so that the upper circular plate fixed with the rotary column rotates, the mist outlet on the upper circular plate corresponds to different areas of the lower circular plate, and the size of the atomized particles is adjusted due to different apertures of the mist outlet holes on different areas of the lower circular plate;
3. in this application, judge the subassembly through setting up the gear, the juncture of the adjacent region of lower plectane all sets up the arc draw-in groove, when the staff revolves soon the post soon through the bowl cover, the plectane drives the dead lever down, the slide bar, arc and elastic component synchronous motion, when the position of arc corresponds with the arc draw-in groove of next region, under the elastic action of elastic component, the arc surface that fixed rod axis one side was kept away from to the arc is supported tightly with the arc draw-in groove of next region of lower plectane, with this rotation to the bowl cover has played the resistance effect, thereby be convenient for the staff knows that the dead lever has moved to next region from the arc draw-in groove of last region, so that the staff carries out the accurate regulation to the atomizing particle size.
Drawings
FIG. 1 is a schematic plan view of an embodiment of the present application;
FIG. 2 is a schematic illustration of an explosive structure according to an embodiment of the present application;
FIG. 3 is a schematic structural diagram of a lower circular plate according to an embodiment of the present application;
FIG. 4 is a schematic structural diagram of an upper circular plate according to an embodiment of the present application;
FIG. 5 is a schematic structural diagram of an adjustment assembly of an embodiment of the present application;
fig. 6 is an enlarged schematic view of a in fig. 5.
Description of reference numerals: 1. an atomizing cup body; 11. a cup cover; 12. a mist outlet pipe; 2. rotating the column; 21. a mist shield; 3. an adjustment assembly; 31. a lower circular plate; 311. a mist outlet; 32. an upper circular plate; 321. a mist outlet; 4. a gear determination component; 41. fixing the rod; 42. a slide bar; 43. an arc-shaped plate; 44. an elastic member; 5. a chute; 6. an arc-shaped clamping groove.
Detailed Description
The present application is described in further detail below with reference to the attached drawings.
As shown in fig. 1-5, a novel atomizing cup for adjusting atomized particles comprises an atomizing cup body 1, a cup cover 11, a mist outlet pipe 12, a rotary column 2, a mist shield 21, an adjusting component 3 and a gear determining component 4. The cup cover 11 covers the opening at the upper end of the atomizing cup body 1, the mist outlet pipe 12 is arranged obliquely upwards, and the lower end of the mist outlet pipe 12 is fixed with the side wall of the atomizing cup body 1 and communicated with the atomizing cup body 1 so as to spray the liquid medicine atomized by the atomizing cup body 1 for patients to use.
As shown in figure 1, the axis of the rotary column 2 is superposed with the axis of the atomizing cup body 1, and the upper end of the rotary column 2 is connected with the bottom of the cup cover 11. The upper end and the lower end of the fog-proof cover 21 are both open, and the upper end opening of the fog-proof cover 21 is fixed with the outer wall of the rotary column 2 at a position close to the bottom of the rotary column 2.
As shown in fig. 1-3, the adjusting assembly 3 is commonly disposed on the spin column 2 and the mist shield 21 for adjusting the size of the atomized particles, and the adjusting assembly 3 includes a lower circular plate 31 and an upper circular plate 32. The lower circular plate 31 has a circular ring plate-shaped structure, the axis of the lower circular plate 31 coincides with the axis of the atomizing cup body 1, the side wall of the lower circular plate 31 is attached and fixed to the side wall of the atomizing cup body 1, the lower end surface of the lower circular plate 31 is fixed to the upper end surface of the mist shield 21, and a plurality of mist outlet holes 311 are formed through the lower circular plate 31. The lower circular plate 31 is divided into four areas, the apertures of the plurality of mist outlet holes 311 in each area are equal, and the apertures of the mist outlet holes 311 in the adjacent lower circular plate 31 are uniformly changed, so that the mist outlet particles of the novel atomizing cup are divided into four gears with different sizes.
As shown in fig. 1 and 4, the upper circular plate 32 is also a circular ring plate structure, the axis of which coincides with the axis of the spin column 2, the upper circular plate 32 is sleeved on the spin column 2 and fixed with the spin column 2, the bottom surface of the upper circular plate 32 is attached to the upper surface of the lower circular plate 31, and a mist outlet 321 is opened at a position corresponding to one area of the upper circular plate 32 and the lower circular plate 31, so that the liquid medicine particles passing through the plurality of mist outlet holes 311 on the area of the lower circular plate 31 are discharged from the mist outlet 321, while the liquid medicine particles flowing out from the mist outlet holes 311 on the other area of the lower circular plate 31 cannot be discharged, thereby making the size of the liquid medicine particles atomized by the novel atomizing cup uniform.
As shown in fig. 1 to 5, the upper circular plate 32 is provided with a shift position determining assembly 4, and the shift position determining assembly 4 includes a fixing lever 41, a sliding lever 42, an arc-shaped plate 43, and an elastic member 44. The fixing rod 41 is a round rod structure, the axis of the fixing rod is vertical, the upper end of the fixing rod 41 is fixed with the bottom surface of the upper circular plate 32 near the edge of the upper circular plate 32, and the lower circular plate 31 is provided with a sliding chute 5 for the sliding connection of the fixing rod 41. The sliding rods 42 are round rod-shaped structures, the axes of the sliding rods 42 are perpendicular to and intersected with the axis of the fixing rod 41, through holes (not shown in the figure) connected with the sliding rods 42 in a sliding mode are formed in the fixing rod 41, the number of the sliding rods 42 is two, and the two sliding rods 42 are symmetrically arranged about the axis of the fixing rod 41. The arc-shaped plates 43 are of plate-shaped structures with arc-shaped cross sections, the arc-shaped plates 43 protrude towards one side of the axis of the lower circular plate 31, the arc-shaped surfaces, away from one side of the axis of the lower circular plate 31, of the arc-shaped plates 43 are fixed with one ends, away from the axis of the fixing rod 41, of the sliding rods 42, the number of the arc-shaped plates 43 is two, the two arc-shaped plates 43 are symmetrically arranged relative to the axis of the fixing rod 41, and arc-shaped clamping grooves 6 matched with the arc-shaped plates 43 are. The elastic members 44 are springs, and are sleeved on the sliding rod 42 between the arc-shaped plate 43 and the fixing rod 41, one end of each elastic member 44 is fixed to the side wall of the fixing rod 41, the other end of each elastic member 44 is fixed to the arc-shaped plate 43, the number of the elastic members 44 is two, and the two elastic members 44 are symmetrically arranged about the axis of the fixing rod 41. Through setting up the gear and judging subassembly 4, the juncture of the adjacent region of lower plectane 31 all sets up arc draw-in groove 6, when the staff revolves the spiral column 2 through the rotatory twisting of bowl cover 11, lower plectane 31 drives dead lever 41, slide bar 42, arc 43 and elastic component 44 synchronous motion, when the position of arc 43 corresponds with the arc draw-in groove 6 in next region, under the elastic action of elastic component 44, arc 43 keeps away from the arc surface of dead lever 41 axis one side and supports tightly with the arc draw-in groove 6 in next region of lower plectane 31, with this rotation to bowl cover 11 has played the resistance effect, thereby be convenient for the staff knows dead lever 41 and has moved to next region from the arc draw-in groove 6 in last region, so that the staff carries out the accurate regulation to the granule size.
As shown in fig. 6, the diameter of the cross section circle of the fixing rod 41 is smaller than the width of the sliding groove 5, so that the worker can rotate the cup cover 11 continuously, and the gear position determining assembly 4 moves from the arc-shaped slot 6 on the upper circular plate 31 to the arc-shaped slot 6 on the lower circular plate 31.
The use principle of the embodiment is as follows: through setting up adjusting part 3 to this staff controls atomizing particle size of atomizing cup 1 through adjusting part 3, makes this hand-held type atomizer can adjust atomizing particle with different liquid medicines, is favorable to drug effect full play, so that improve and diagnose the effect.
When the size of the atomized particles is adjusted by using the adjusting component 3, a worker only needs to screw the cup cover 11 of the atomizing cup body 1 to rotate the rotary column 2 connected with the bottom of the cup cover 11, so that the upper circular plate 32 fixed with the rotary column 2 rotates, the mist outlet 321 on the upper circular plate 32 corresponds to different areas of the lower circular plate 31, and the size of the atomized particles is adjusted due to different apertures of the mist outlet holes 311 on different areas of the lower circular plate 31.
Through setting up the gear and judging subassembly 4, the juncture of the adjacent region of lower plectane 31 all sets up arc draw-in groove 6, when the staff revolves the spiral column 2 through the rotatory twisting of bowl cover 11, lower plectane 31 drives dead lever 41, slide bar 42, arc 43 and elastic component 44 synchronous motion, when the position of arc 43 corresponds with the arc draw-in groove 6 in next region, under the elastic action of elastic component 44, arc 43 keeps away from the arc surface of dead lever 41 axis one side and supports tightly with the arc draw-in groove 6 in next region of lower plectane 31, with this rotation to bowl cover 11 has played the resistance effect, thereby be convenient for the staff knows dead lever 41 and has moved to next region from the arc draw-in groove 6 in last region, so that the staff carries out the accurate regulation to the granule size.
The above embodiments are only used to illustrate the technical solutions of the present application, and not to limit the same; although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions in the embodiments of the present application.

Claims (6)

1. The utility model provides an adjust novel atomizing cup of atomizing granule, includes atomizing cup (1), be fixed with on atomizing cup (1) lateral wall with atomizing cup (1) inside play fog pipe (12) of intercommunication, characterized by: the atomizing cup is characterized in that a rotary column (2) is connected to the bottom of a cup cover (11) of the atomizing cup body (1), a mist blocking cover (21) is fixed on the position, close to the bottom of the rotary column (2), of the outer wall of the rotary column (2), and an adjusting assembly (3) used for adjusting the size of atomized particles is jointly arranged on the rotary column (2) and the mist blocking cover (21).
2. The new atomizing cup for conditioning atomized particles as set forth in claim 1, wherein: adjusting part (3) including with atomizing cup (1) inner wall laminating and fixed lower plectane (31) and cover locate revolve post (2) on and with revolve post (2) fixed last plectane (32), the lower terminal surface of plectane (31) is fixed with the up end of blocking fog cover (21) down, divide into four regions down on plectane (31), every region all seted up a plurality of fog holes (311) down on plectane (31), four regions play fog hole (311) aperture uniform variation down on plectane (31), and in every region a plurality of fog holes (311) aperture on plectane (31) are equal down, go up plectane (32) and down plectane (31) and seted up out fog mouth (321) on the position that one of them region corresponds.
3. The new atomizing cup for conditioning atomized particles as set forth in claim 2, wherein: the upper circular plate (32) is provided with a gear determination assembly (4), the gear determination assembly (4) comprises a fixed rod (41) fixed with the bottom surface of the upper circular plate (32), a sliding rod (42) arranged on the fixed rod (41), an arc-shaped plate (43) fixed with one end of the sliding rod (42) far away from the fixed rod (41), and an elastic part (44) sleeved on the sliding rod (42) between the arc-shaped plate (43) and the fixed rod (41), the fixed rod (41) is provided with a through hole which is connected with the sliding rod (42) in a sliding way, the arc-shaped plate (43) protrudes towards one side of the axis of the lower circular plate (31), a sliding groove (5) for the fixed rod (41) to slide and connect and an arc-shaped clamping groove (6) matched with the arc-shaped plate (43) are arranged on the lower circular plate (31) in a penetrating way, the arc-shaped clamping groove (6) is arranged at the junction of the adjacent areas of the lower circular plate (31).
4. The new atomizing cup for conditioning atomized particles as set forth in claim 3, wherein: the elastic member (44) is a spring.
5. The new atomizing cup for conditioning atomized particles as set forth in claim 3, wherein: the gear position determining assembly (4) is provided with two sliding rods (42), two arc-shaped plates (43) and two elastic pieces (44), and the two sliding rods, the two arc-shaped plates and the two elastic pieces are symmetrically arranged relative to the axis of the fixed rod (41).
6. The new atomizing cup for conditioning atomized particles as set forth in claim 5, wherein: the diameter of the cross section circle of the fixing rod (41) is smaller than the width of the sliding chute (5).
CN202021697299.8U 2020-08-14 2020-08-14 Novel atomizing cup for adjusting atomized particles Active CN213432354U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113907430A (en) * 2021-09-28 2022-01-11 深圳市真味生物科技有限公司 Surface acoustic wave electronic atomization device with adjustable smoke particle size

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113907430A (en) * 2021-09-28 2022-01-11 深圳市真味生物科技有限公司 Surface acoustic wave electronic atomization device with adjustable smoke particle size

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