CN216756824U - Atomization mechanism for improving atomization effect - Google Patents
Atomization mechanism for improving atomization effect Download PDFInfo
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- CN216756824U CN216756824U CN202220373531.5U CN202220373531U CN216756824U CN 216756824 U CN216756824 U CN 216756824U CN 202220373531 U CN202220373531 U CN 202220373531U CN 216756824 U CN216756824 U CN 216756824U
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Abstract
The utility model discloses an atomization mechanism for improving atomization effect, which is characterized in that an air inlet cavity and an air outlet cavity are arranged in a shell, and the shell is also provided with an air inlet communicated with the air inlet cavity and an air outlet communicated with the air outlet cavity; the two sides of the atomizer are provided with a conical air inlet hole and a conical air outlet hole, and the atomizer is also provided with a conical atomizing channel which is communicated with the air inlet hole and the air outlet hole; still be equipped with the inlet channel of intercommunication atomizing passageway on the atomizer, inlet channel is equipped with the clamping mouth with the one end of atomizing passageway intercommunication. The utility model discloses a through set atomizing passageway to coniform, promote its downstream through compressed air when making its atomizing with compressed air contact offset when essential oil gets into atomizing passageway from the inlet channel, the liquid particle of big granule also can be along atomizing passageway and downstream to can avoid the liquid particle to remain in atomizing passageway.
Description
Technical Field
The utility model relates to atomization of a fragrance machine, in particular to an atomization mechanism for improving atomization effect.
Background
Most of the existing aromatherapy machine essential oil atomization is carried out by matching oil absorption cotton with ultrasonic waves and carrying out ultrasonic atomization, but the phenomenon that the oil absorption cotton is blocked to cause incapability of spraying and liquid accumulation at a nozzle can occur frequently in the actual use process;
also there are some champignon machines at present no longer adopt the ultrasonic wave to atomize, but on applying the champignon machine with spraying venturi's technique, thereby spray away to essential oil by the venturi effect with inspiratory liquid dependence venturi effect, but do not have any venturi and can make the size of the liquid particle who sprays away keep invariable, consequently can lead to the great granule of part size to remain in the atomizing intracavity when in actual use, and spun liquid particle size is great, the time of floating in the air is shorter, thereby champignon effect duration length. Therefore, an atomization mechanism for improving atomization effect is provided.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to solving the above problems and providing an atomization mechanism that improves atomization effect.
In order to achieve the above object, the present invention provides an atomization mechanism for improving atomization effect, which comprises a bottle body, an end cap installed on the bottle body, a housing installed on the end cap, and an atomizer installed between the housing and the end cap; the air conditioner is characterized in that an air inlet cavity and an air outlet cavity are arranged in the shell, and the shell is also provided with an air inlet communicated with the air inlet cavity and an air outlet communicated with the air outlet cavity; the two sides of the atomizer are provided with a conical air inlet hole and a conical air outlet hole, and the atomizer is also provided with a conical atomization channel which is communicated with the air inlet hole and the air outlet hole; still be equipped with the inlet channel of intercommunication atomizing passageway on the atomizer, inlet channel is equipped with the location mouth with the one end of atomizing passageway intercommunication.
Preferably, the communication end of the atomization channel and the air inlet hole is a small end, and the communication end of the atomization channel and the air outlet hole is a large end.
Further preferred, still be equipped with on the atomizer with the inlet channel intercommunication and be the tube seat that the slope set up, the tube seat is equipped with the arc spigot surface with the inlet channel junction.
Further preferably, the end cover is provided with a groove matched with the port of the bottle body and a positioning groove for positioning the position of the shell, the shell is provided with a positioning table matched with the positioning groove, and an oil flowing channel is formed between the shell and the end cover through the positioning table.
Further preferably, a concave table for limiting the installation of the atomizer is arranged in the air inlet cavity.
Further preferably, a sealing groove is further formed in the atomizer, and a sealing ring is installed in the sealing groove.
Further preferably, the end cover is further provided with a through hole for communicating the bottle body with the air outlet cavity and an air injection through hole for communicating the bottle body with the air inlet cavity, and the side wall of the air injection through hole is further provided with a hollow groove.
Further preferably, the diameter of the small end of the atomizing channel is 0.1-0.3 mm.
Further preferably, the angle of the arc-shaped guide surface is 100-150 °.
According to the utility model, the air inlet hole, the air outlet hole and the atomization channel are all arranged in a conical shape, the large end of the atomization channel is communicated with the air outlet hole, and the small end of the atomization channel is communicated with the air inlet hole, so that the caliber of compressed air is changed from large to small when the compressed air enters the atomization channel through the air inlet hole, the air pressure is enhanced, and when liquid is contacted with the compressed air, the atomization effect is better, the size of liquid particles is smaller, the floating time of the liquid particles in the air is prolonged, and the aromatherapy effect is better;
by arranging the atomizing channel into a conical shape, when the essential oil enters the atomizing channel from the liquid inlet channel, the essential oil is contacted with compressed air and collided to atomize the essential oil, and meanwhile, the essential oil is pushed to move downwards by the compressed air, large-particle liquid particles can also move downwards along the atomizing channel, so that the liquid particles can be prevented from being remained in the atomizing channel;
set up the location mouth through the one end at inlet channel and atomizing passageway intercommunication, the size of location mouth is less than inlet channel's size to when installation smart oil pipe, only need insert in the inlet channel with smart oil pipe one end through location mouth rather than port department formation extrusion install the completion promptly, install simple and convenient and fastness strong, can not drop easily. Set up the chamber of admitting air and going out the air cavity on the shell, and set up the air inlet that communicates with the chamber of admitting air on the shell, pass through the pipeline with the air pump during use and be connected the intracavity with the air inlet and pressurize to admitting air, the chamber of admitting air passes through atomizing channel and flows to atomizing channel and high-pressure gas contact behind atmospheric pressure transmission to the bottle with atmospheric pressure through the venturi effect with essential oil through pipe flow to inlet channel and become liquid spray with liquid atomization, spout in the bottle small-size liquid particle of back in through-hole department remove to go out the air of air cavity after through atmospheric pressure and spout and the air that diffuses, the liquid particle of big granule then remains in the bottle through self gravity.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic cross-sectional structure of the present invention;
FIG. 3 is a schematic view of the present invention with the bottle removed;
FIG. 4 is a schematic view of the end cap construction of the present invention;
FIG. 5 is a schematic cross-sectional view of an atomizer according to the present invention;
fig. 6 is a schematic view of the structure of the housing of the present invention.
Illustration of the drawings: 1. a bottle body; 2. an end cap; 21. a groove; 22. positioning a groove; 23. a through hole; 24. a gas injection through hole; 25. an empty groove; 3. a housing; 31. an air inlet cavity; 32. an air outlet cavity; 33. an air inlet; 34. an air outlet; 35. a positioning table; 36. a concave platform; 37. an oil feeding flow passage; 4. an atomizer; 41. an air inlet; 42. an air outlet; 43. an atomizing channel; 44. a liquid inlet channel; 45. positioning the opening; 46. a pipe groove; 47. an arc-shaped guide surface; 48. a sealing groove; 49. and (5) sealing rings.
Detailed Description
The atomizing mechanism for improving the atomizing effect according to the present invention will be further described with reference to the accompanying drawings.
Referring to fig. 1 to 6, an atomizing mechanism for improving an atomizing effect includes a bottle body 1, an end cap 2 installed on the bottle body 1 by ultrasonic welding, a housing 3 installed on the end cap 2 by ultrasonic welding, and an atomizer 4 installed on the housing 3 by ultrasonic welding and located between the housing 3 and the end cap 2; the air conditioner is characterized in that an air inlet cavity 31 and an air outlet cavity 32 are arranged in the shell 3, and an air inlet 33 communicated with the air inlet cavity 31 and an air outlet 34 communicated with the air outlet cavity 32 are also arranged on the shell 3; the two sides of the atomizer 4 are provided with a conical air inlet hole 41 and a conical air outlet hole 42, and the atomizer 4 is also provided with a conical atomizing channel 43 which is communicated with the air inlet hole 41 and the air outlet hole 42; the atomizer 4 is also provided with a liquid inlet channel 44 communicated with the atomizing channel 43, and one end of the liquid inlet channel 44 communicated with the atomizing channel 43 is provided with a positioning port 45; the air inlet hole 41, the air outlet hole 42 and the atomizing channel 43 are all arranged to be conical, the large end of the atomizing channel 43 is communicated with the air outlet hole 42, the small end of the atomizing channel 43 is communicated with the air inlet hole 41, so that the caliber of compressed air is changed from large to small when the compressed air enters the atomizing channel 43 through the air inlet hole 41, the air pressure is enhanced, when liquid is contacted with the compressed air, the atomizing effect is better, the size of liquid particles is smaller, the floating time of the liquid particles in the air is prolonged, and the aromatherapy effect is better; by setting the atomizing channel 43 in a conical shape, when the essential oil enters the atomizing channel 43 from the liquid inlet channel 44, the essential oil is contacted with the compressed air to atomize the essential oil and meanwhile, the essential oil is pushed by the compressed air to move downwards, and large liquid particles can also move downwards along the atomizing channel 43, so that the liquid particles can be prevented from remaining in the atomizing channel 43; through set up location mouth 45 in the one end of inlet channel 44 with atomizing passageway 43 intercommunication, the size of location mouth 45 is less than inlet channel 44's size to when installation essential oil pipe, only need insert essential oil pipe one end in inlet channel 44 through location mouth 45 rather than the port department form the extrusion and install the completion, install simple and convenient and fastness strong, can not drop easily.
Furthermore, the communication end of the atomization channel 43 with the air inlet 41 is a small end, and the communication end with the air outlet 42 is a large end; the large end of the atomizing channel 43 is communicated with the air outlet 42, and the small end of the atomizing channel 43 is communicated with the air inlet 41, so that the caliber of compressed air is changed from large to small when the compressed air enters the atomizing channel 43 through the air inlet 41, the air pressure is enhanced, and when liquid is contacted with the compressed air, the atomizing effect is better, and the size of liquid particles is smaller; the diameter of the small end of the atomization channel 43 is 0.1-0.3 mm, so that the size of liquid particles can reach 10-40 nanometers, the size is smaller, the atomization effect is better, the overall weight is lighter, and the floating time in the air is longer.
Further, a pipe groove 46 which is communicated with the liquid inlet channel 44 and is obliquely arranged is further arranged on the atomizer 4, and an arc-shaped guide surface 47 is arranged at the joint of the pipe groove 46 and the liquid inlet channel 44; through setting up the pipe chase 46 slope, and be equipped with arc guiding surface 47 with inlet channel 44 junction, the purpose is for making the bending department that the essential oil pipe was laid more level and smooth, and the body can not produce the bending because of turning to lead to the interior flow path of body to change and influence liquid transmission, thereby influence the atomization effect.
Furthermore, a groove 21 matched with the port of the bottle body 1 and a positioning groove 22 for positioning the position of the shell 3 are arranged on the end cover 2, and a positioning table 35 matched with the positioning groove 22 is arranged on the shell 3; an oil feeding flow passage 37 is formed between the housing 3 and the end cover 2 through the positioning table 35; the position of the end cover 2 arranged on the bottle body is limited through the arrangement of the groove 21, the positioning groove 22 and the positioning table 35, and the position of the shell 3 arranged on the end cover 2 is limited and positioned, so that the ultrasonic welding is facilitated and the accuracy of the installation position is ensured; through the setting of walking oil runner 37, when atomizing for a long time, liquid particle just can have some liquid particles that the size is great to remain on atomizer 4 bottom surface when atomizing passageway 43 blowout, can flow to walking oil runner 37 department along atomizer 4 bottom surface next door and form the hydrops after dropping in bottle 1.
Further, a concave table 36 for limiting the installation of the atomizer 4 is arranged in the air inlet cavity 31, and the installation position of the atomizer 4 is limited and positioned through the arrangement of the concave table 36.
Further, still be equipped with seal groove 48 on the atomizer 4, install sealing washer 49 in the seal groove 48, through the setting of seal groove 48 and sealing washer 49, increase the leakproofness of atomizer 4 and intake chamber 31 junction.
Furthermore, the end cover 2 is also provided with a through hole 23 for communicating the bottle body 1 with the air outlet cavity 32 and an air injection through hole 24 for communicating the bottle body 1 with the air inlet cavity 31, and the side wall of the air injection through hole 24 is also provided with a hollow groove 25; through the setting of dead slot 25, produce the interference to essential oil pipe when avoiding laying essential oil pipe.
The working process of the utility model is as follows: an air pump is connected with the air inlet 33 through a pipeline, air is supplied into the air inlet cavity 31 through the air pump to pressurize the air, and the essential oil in the bottle body is extruded through compressed air, so that the essential oil liquid is sucked to the liquid inlet channel 44 through the Venturi effect, flows to the atomizing channel 43 to be contacted with the compressed air to generate opposite flushing, then the liquid essential oil is atomized and sprayed into the bottle body 1, and the atomized liquid particles are pushed to enter the air outlet cavity 32 through the through holes 23 through the buoyancy of the liquid particles and the pressure of the compressed air and then are sprayed out through the air outlet 34;
when installing essential oil pipe, one end inserts into inlet channel 44 along tube seat 46 and continues to impel after, when essential oil pipe end portion removed to location mouth 45 department, forms the extrusion through location mouth 45 to essential oil pipe port department when continuing to impel to order about its pressurized deformation and block in location mouth 45 department, the other end then is in bottle 1, and essential oil pipe portion is in dead slot department, avoids jet-propelled through-hole 24 pore wall to produce the interference to essential oil pipe.
The scope of protection of the utility model is not limited to the above embodiments and variations thereof. The present invention is not limited to the above embodiments, but may be modified in various ways.
Claims (9)
1. An atomization mechanism for improving atomization effect comprises a bottle body (1), an end cover (2) arranged on the bottle body (1), a shell (3) arranged on the end cover (2) and an atomizer (4) arranged between the shell (3) and the end cover (2); the air conditioner is characterized in that an air inlet cavity (31) and an air outlet cavity (32) are arranged in the shell (3), and an air inlet (33) communicated with the air inlet cavity (31) and an air outlet (34) communicated with the air outlet cavity (32) are also arranged on the shell (3); the two sides of the atomizer (4) are provided with a conical air inlet hole (41) and a conical air outlet hole (42), and the atomizer (4) is also provided with a conical atomization channel (43) which is communicated with the air inlet hole (41) and the air outlet hole (42); still be equipped with liquid inlet channel (44) of intercommunication atomizing passageway (43) on atomizer (4), liquid inlet channel (44) and the one end of atomizing passageway (43) intercommunication are equipped with location mouth (45).
2. The atomizing mechanism for improving atomization effect according to claim 1, wherein: the communicating end of the atomization channel (43) and the air inlet hole (41) is a small end, and the communicating end of the atomization channel and the air outlet hole (42) is a large end.
3. The atomizing mechanism for improving atomization effect according to claim 1, wherein: still be equipped with on atomizer (4) and feed liquor channel (44) intercommunication and be tube seat (46) that the slope set up, tube seat (46) and feed liquor channel (44) junction are equipped with arc spigot surface (47).
4. The atomizing mechanism for improving atomization effect according to claim 1, wherein: be equipped with on end cover (2) with recess (21) of bottle (1) port looks adaptation and to shell (3) position play positioning function's constant head tank (22), be equipped with on shell (3) with constant head tank (22) looks adaptation location platform (35), make to be formed with between shell (3) and end cover (2) through location platform (35) and walk oily runner (37).
5. The atomizing mechanism for improving atomization effect according to claim 1, wherein: and a concave table (36) which has a limiting effect on the installation of the atomizer (4) is arranged in the air inlet cavity (31).
6. The atomization mechanism for improving atomization effect of claim 5, wherein: still be equipped with seal groove (48) on atomizer (4), install sealing washer (49) in seal groove (48).
7. The atomizing mechanism for improving atomization effect according to claim 1, wherein: the end cover (2) is also provided with a through hole (23) for communicating the bottle body (1) with the air outlet cavity (32) and an air injection through hole (24) for communicating the bottle body (1) with the air inlet cavity (31), and the side wall of the air injection through hole (24) is also provided with a hollow groove (25).
8. The atomizing mechanism for improving atomization effect according to claim 1, wherein: the diameter of the small end of the atomization channel (43) is 0.1-0.3 mm.
9. An atomizing mechanism for improving atomization effect as claimed in claim 3, wherein: the angle of the arc-shaped guide surface (47) is 100-150 degrees.
Priority Applications (1)
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CN202220373531.5U CN216756824U (en) | 2022-02-24 | 2022-02-24 | Atomization mechanism for improving atomization effect |
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CN202220373531.5U CN216756824U (en) | 2022-02-24 | 2022-02-24 | Atomization mechanism for improving atomization effect |
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CN216756824U true CN216756824U (en) | 2022-06-17 |
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CN202220373531.5U Active CN216756824U (en) | 2022-02-24 | 2022-02-24 | Atomization mechanism for improving atomization effect |
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