CN113519914B - Electronic cigarette atomizing nozzle capable of increasing smoke quantity and adjusting injection angle - Google Patents

Electronic cigarette atomizing nozzle capable of increasing smoke quantity and adjusting injection angle Download PDF

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Publication number
CN113519914B
CN113519914B CN202110819496.5A CN202110819496A CN113519914B CN 113519914 B CN113519914 B CN 113519914B CN 202110819496 A CN202110819496 A CN 202110819496A CN 113519914 B CN113519914 B CN 113519914B
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China
Prior art keywords
grooved
plate
guide
slotted
guide post
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CN202110819496.5A
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CN113519914A (en
Inventor
吴凤桂
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Boxiang Technology Shenzhen Co ltd
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Boxiang Technology Shenzhen Co ltd
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Priority to CN202110819496.5A priority Critical patent/CN113519914B/en
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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps

Abstract

The invention relates to an electronic aerosolization spray head, in particular to an electronic aerosolization spray head capable of increasing smoke quantity and adjusting spray angle, which comprises an elliptical shell, a supporting plate, a slotted guide post, a pushing component and the like; the elliptical shell is fixedly provided with a supporting plate, the supporting plate is fixedly provided with a slotted guide post, at least one part of the slotted guide post is positioned in the elliptical shell, and the pushing assembly is arranged on the elliptical shell. Through fluting pulling strip upward movement promotion division board swing in opposite directions, the division board is with the inside isolation of fluting guide post, in the smog that produces in the prevention electron tobacco rod got into fluting guide post, smog can gather in the electron tobacco rod for in the smog that gathers in the later stage electron tobacco rod gets into fluting guide post fast through the one-way admission valve, in the user inhales the smog that gathers in the fluting guide post in the oral cavity, reached smog inhalation volume increase's effect, satisfied user demand.

Description

Electronic cigarette atomizing nozzle capable of increasing smoke quantity and adjusting injection angle
Technical Field
The invention relates to an electronic aerosolization spray head, in particular to an electronic aerosolization spray head capable of increasing smoke quantity and adjusting spray angle.
Background
The electronic atomizer is a so-called electronic cigarette, is a front name of a healthy electronic cigarette, is mainly used for replacing cigarettes, is powered by a battery rod through airflow induction or keys, is communicated with the atomizer, and can convert liquid nicotine in a cigarette bullet into fog to generate an atomization effect, so that the effect similar to smoking is achieved, and "swallowing and spitting" is realized.
The traditional electronic cigarette is an independent atomizer, the generated smoke amount is small, some factories adhere the atomizer and the suction nozzle part together according to the demands of customers to form a disposable atomizer, and the electronic cigarette and the smoke amount can be improved.
Disclosure of Invention
Aiming at the defects existing in the prior art, the invention aims to provide the electronic cigarette atomizing nozzle which can improve the smoke quantity of the electronic cigarette to achieve the effect of increasing the smoke suction quantity, can change the smoke discharging direction, effectively stimulates the sense of a user, and can increase the smoke quantity and adjust the spraying angle.
The utility model provides an electron smog shower nozzle of multiplicable smog volume and regulation injection angle, including oval casing, a supporting plate, the fluting guide post, pushing component, isolation subassembly, smog compression release subassembly, the subassembly that opens and shuts and take the rotatory exhaust cover of filter screen, fixed mounting has the backup pad on the oval casing, fixed mounting has fluting guide post in the backup pad, fluting guide post is at least partly to be located oval casing, pushing component locates on the oval casing, isolation subassembly sets up on fluting guide post, isolation subassembly is located oval casing, smog compression release subassembly is located on the isolation subassembly, smog compression release subassembly is located fluting guide post, the subassembly that opens and shuts sets up on fluting guide post, take the rotatory exhaust cover swivelling joint of filter screen in the backup pad.
Further, the pushing assembly comprises a support plate, a grooved swing rod, a first guide sleeve, a first grooved push plate, a tension spring and a silica gel protective sleeve, wherein the support plate is welded on the outer wall of the elliptical shell, the grooved swing rod is connected to the support plate in a rotating mode, the first guide sleeve is welded on one side of the grooved guide post, the first guide sleeve is connected with the first grooved push plate in a sliding mode, a square groove corresponding to the first grooved push plate is formed in the elliptical shell, the first grooved push plate is in limiting connection with the square groove, the first grooved push plate is in limiting fit with the grooved swing rod, a pair of tension springs are fixedly connected to the first guide sleeve, one end of each tension spring is connected with the first grooved push plate, the silica gel protective sleeve is fixedly mounted on the outer wall of the elliptical shell and made of silica gel material, and the support plate is located in the silica gel protective sleeve.
Further, the isolation assembly comprises supporting blocks, isolation plates, torsion springs, isolation frames, slotted pulling strips and first compression springs, the supporting blocks are uniformly distributed on the bottom surfaces of the slotted guide columns, the isolation plates are connected to the two supporting blocks in a common rotating mode, the torsion springs are symmetrically connected to the isolation plates, one ends of the torsion springs are connected with the supporting blocks, the isolation frames are connected to the slotted guide columns in a lifting mode, the isolation frames are in limit fit with the first slotted pushing plates, the slotted pulling strips are welded below the isolation frames, the slotted pulling strips are in limit fit with the isolation plates, one ends of the first compression springs are fixedly connected to the isolation frames, and the other ends of the first compression springs are connected with the slotted guide columns.
Further, the smoke compression pushing-out assembly comprises a grooved guide plate, an inclined plate, a second compression spring and a one-way air inlet valve, wherein the grooved guide plate is fixedly connected to the isolation frame, the inclined plate is symmetrically and slidably connected to the grooved guide plate, grooves corresponding to the inclined plate are formed in the grooved guide plate, the side surfaces of the inclined plate are mutually flush with the inner wall of the grooved guide column, one side of the inclined plate is fixedly connected with a pair of second compression springs, one ends of the second compression springs are connected with the grooved guide plate, and three one-way air inlet valves are arranged on the grooved guide plate at intervals.
The opening and closing assembly comprises a fixed guide plate, a second slotting push plate, a third compression spring, a driving gear, a first pushing rack, a baffle and a second pushing rack, wherein an installation cavity is formed in a slotting guide column, the fixed guide plate is welded on one side of the slotting guide column, the second slotting push plate is connected to the fixed guide plate in a lifting mode, the third compression spring is fixedly connected to the bottom surface of the fixed guide plate, one end of the third compression spring is connected with the second slotting push plate, the driving gear is rotatably connected in the installation cavity, the first pushing rack is connected with the first pushing rack in a sliding mode on the slotting guide column, the first pushing rack is meshed with the driving gear in a mutual mode, the first pushing rack is in limiting fit with the second slotting push plate, two baffles are connected on the slotting guide column in a sliding mode, one end of the first pushing rack is fixedly connected with one baffle, the second pushing rack is welded on the other baffle, and the second pushing rack is also meshed with the driving gear in a mutual mode.
The device is characterized by further comprising an air outlet angle adjusting assembly, wherein the air outlet angle adjusting assembly is arranged on the grooved guide post and comprises a gear ring, a fixed clutch shaft, a rotary gear, a short plate, a grooved pulley, a movable clutch shaft, a fourth compression spring, a second guide sleeve and a pushing groove rod frame, the gear ring is arranged on the inner wall of the rotary exhaust sleeve with the filter screen, the fixed clutch shaft is rotationally connected to the supporting plate, the rotary gear is welded to the fixed clutch shaft, the rotary gear is mutually engaged with the gear ring, the short plate is welded to one side of the grooved guide post, the grooved pulley is rotationally connected to the short plate, the movable clutch shaft is connected to the grooved pulley in a lifting manner, at least one part of the movable clutch shaft is positioned in the grooved pulley, the movable clutch shaft is mutually engaged with the fixed clutch shaft, a fourth compression spring is fixedly connected to the top surface of the grooved pulley, one end of the fourth compression spring is connected with the movable clutch shaft, the second guide sleeve is fixedly arranged on one side of the grooved guide post, the pushing groove rod frame is in limit fit on the second guide sleeve, one end of the pushing groove rod frame is connected with the second grooved push plate, and the pushing groove rod frame is mutually contacted with the grooved pulley.
The beneficial effects of the invention are as follows:
through fluting pulling strip upward movement promotion division board swing in opposite directions, the division board is with the inside isolation of fluting guide post, in the smog that produces in the prevention electron tobacco rod got into fluting guide post, smog can gather in the electron tobacco rod for in the smog that gathers in the later stage electron tobacco rod gets into fluting guide post fast through the one-way admission valve, in the user inhales the smog that gathers in the fluting guide post in the oral cavity, reached smog inhalation volume increase's effect, satisfied user demand.
The slotted guide post is opened through the opposite movement of the two baffles, and the smoke in the slotted guide post enters the rotary exhaust sleeve with the filter screen, so that a user can suck the smoke into the oral cavity through the exhaust port of the rotary exhaust sleeve with the filter screen, and the purpose of smoking is achieved.
The rotary gear drives the gear ring and the rotary exhaust sleeve with the filter screen to rotate, and the rotary exhaust sleeve with the filter screen can change the smoke discharging direction, so that smoke can enter different positions of the oral cavity of a user, and the sense organ of the user is effectively stimulated, so that the user can feel happy to different degrees.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic bottom perspective view of the present invention.
Fig. 3 is a schematic view of a partial perspective structure of the present invention.
Fig. 4 is a schematic perspective view of a first portion of the push assembly of the present invention.
Fig. 5 is a schematic view of a portion of a three-dimensional structure of an isolation assembly according to the present invention.
Fig. 6 is a schematic perspective view of the support plate and slotted guide post of the present invention.
Fig. 7 is a schematic perspective view showing a cross-sectional structure of the support plate and the slotted guide post of the present invention.
Fig. 8 is a schematic view of a second partial perspective view of the push assembly of the present invention.
Fig. 9 is a schematic perspective view of an isolation assembly according to the present invention.
Fig. 10 is a schematic perspective view of the smoke compressing and pushing assembly of the present invention.
Fig. 11 is a schematic partial perspective view of the opening and closing assembly of the present invention.
Fig. 12 is a partially disassembled perspective view of the air outlet angle adjusting assembly of the present invention.
Fig. 13 is a schematic perspective view of a rotary exhaust sleeve with a filter screen and a gear ring according to the present invention.
Fig. 14 is a schematic view of a partial perspective structure of an air outlet angle adjusting assembly according to the present invention.
The reference symbols in the drawings: 1: elliptical housing, 2: support plate, 3: slotted guide post, 4: pushing assembly, 41: support plate, 42: grooved swing link, 43: first guide sleeve, 44: first slotted push plate, 45: extension spring, 46: silica gel protective sheath, 5: isolation assembly, 51: support block, 52: separator, 53: torsion spring, 54: spacer, 55: slotting pull bar, 56: first compression spring, 6: smoke compression pushing assembly, 61: slotted guide plate, 62: inclined plate, 63: second compression spring, 64: unidirectional air inlet valve, 7: opening and closing assembly, 71: fixed deflector, 72: second slotted push plate, 73: third compression spring, 74: drive gear, 75: first push rack, 76: baffle, 77: second push rack, 78: installing a cavity, 8: rotary exhaust sleeve with filter screen, 9: air outlet angle adjusting component, 91: gear ring, 92: fixed clutch shaft, 93: rotating gear, 94: short plate, 95: sheave, 96: movable clutch shaft, 97: fourth compression spring, 98: second guide sleeve, 99: pushing the grooved bar frame.
Detailed Description
In order to make the object technical scheme and advantages of the present invention more apparent, the present invention will be further described in detail with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the invention.
Example 1
The utility model provides an electron smog spinning disk atomiser that can increase smog volume and adjust injection angle, as shown in fig. 1-14, including oval casing 1, backup pad 2, grooved guide post 3, promote the subassembly 4, keep apart subassembly 5, smog compression release subassembly 6, open and shut subassembly 7 and take filter screen rotation exhaust cover 8, fixed mounting has backup pad 2 on oval casing 1, fixed mounting has grooved guide post 3 on the backup pad 2, grooved guide post 3 is located oval casing 1 at least partly, promote the subassembly 4 and locate oval casing 1, keep apart the subassembly 5 setting on grooved guide post 3, be used for with grooved guide post 3 sealed isolation subassembly 5 be located oval casing 1, smog compression release subassembly 6 is located on isolation subassembly 5, smog compression release subassembly 6 is used for compressing smog in grooved guide post 3, smog compression release subassembly 6 is located grooved guide post 3, open and shut subassembly 7 sets up on grooved guide post 3, take filter screen rotation exhaust cover 8 rotation connection in backup pad 2 for discharging smog.
The pushing assembly 4 comprises a support plate 41, a grooved swing rod 42, a first guide sleeve 43, a first grooved push plate 44, a tension spring 45 and a silica gel protective sleeve 46, wherein the support plate 41 is welded on the outer wall of the elliptical shell 1, the grooved swing rod 42 is rotatably connected to the support plate 41, the first guide sleeve 43 is welded on one side of the grooved guide column 3, the first grooved push plate 44 is slidably connected to the first guide sleeve 43, a square groove corresponding to the first grooved push plate 44 is formed in the elliptical shell 1, the first grooved push plate 44 is in limiting connection with the square groove, the first grooved push plate 44 is in limiting fit with the grooved swing rod 42, the grooved swing rod 42 is used for pushing the first grooved push plate 44, a pair of tension springs 45 are fixedly connected to the first guide sleeve 43, one end of the tension spring 45 far away from the first guide sleeve 43 is connected with the first grooved push plate 44, the silica gel protective sleeve 46 is fixedly mounted on the outer wall of the elliptical shell 1, the support plate 41 is made of silica gel material, the support plate 41 is located in the silica gel protective sleeve 46, and the grooved swing rod 42 is located in the silica gel protective sleeve 46.
The isolation assembly 5 comprises supporting blocks 51, isolating plates 52, torsion springs 53, isolating frames 54, slotted pulling strips 55 and first compression springs 56, wherein the supporting blocks 51 are uniformly distributed on the bottom surface of the slotted guide column 3, the isolating plates 52 are connected to the two supporting blocks 51 in a common rotating mode, the isolating plates 52 are used for isolating the slotted guide column 3, the torsion springs 53 are symmetrically connected to the isolating plates 52, one ends of the torsion springs 53 far away from the isolating plates 52 are connected with the supporting blocks 51, the isolating frames 54 are connected to the slotted guide column 3 in a lifting mode, the isolating frames 54 are in limit fit with the first slotted push plates 44, the slotted pulling strips 55 are welded below the isolating frames 54, the slotted pulling strips 55 are in limit fit with the isolating plates 52, the slotted pulling strips 55 are used for pushing the isolating plates 52 to swing in opposite directions, one ends of the first compression springs 56 are fixedly connected to the isolating frames 54, the isolating frames 54 are used for sealing the slotted guide column 3, and one ends of the first compression springs 56 far away from the isolating frames 54 are mutually connected with the slotted guide column 3.
The smoke compression pushing-out assembly 6 comprises a grooved guide plate 61, a bevel board 62, a second compression spring 63 and a one-way air inlet valve 64, wherein the grooved guide plate 61 is fixedly connected to the isolation frame 54, the bevel board 62 is symmetrically and slidably connected to the grooved guide plate 61, the grooved guide plate 61 is used for compressing smoke in the grooved guide column 3, the grooved guide plate 61 is provided with a groove corresponding to the bevel board 62, the side surface of the bevel board 62 is mutually flush with the inner wall of the grooved guide column 3, one side of the bevel board 62 is fixedly connected with a pair of second compression springs 63, one end of the second compression spring 63 far away from the bevel board 62 is connected with the grooved guide plate 61, and three one-way air inlet valves 64 used for enabling smoke to rapidly enter the grooved guide column 3 are arranged on the grooved guide plate 61 at intervals.
The opening and closing assembly 7 comprises a fixed guide plate 71, a second slotted push plate 72, a third compression spring 73, a driving gear 74, a first pushing rack 75, a baffle 76 and a second pushing rack 77, wherein an installation cavity 78 is arranged in the slotted guide column 3, one side of the slotted guide column 3 is welded with the fixed guide plate 71, the fixed guide plate 71 is connected with the second slotted push plate 72 in a lifting manner, the bottom surface of the fixed guide plate 71 is fixedly connected with the third compression spring 73, one end of the third compression spring 73 far away from the fixed guide plate 71 is connected with the second slotted push plate 72, the driving gear 74 is rotatably connected in the installation cavity 78, the first pushing rack 75 is slidably connected with the first pushing rack 75, the first pushing rack 75 is mutually meshed with the driving gear 74, the first pushing rack 75 is in limit fit with the second slotted push plate 72, the second slotted push plate 72 is used for pulling the first pushing rack 75 and an upper device of the first pushing rack moves towards the direction far away from the silica gel 46, the second baffle 76 is slidably connected with the slotted guide column 3, the baffle 76 is fixedly connected with the slotted guide column 3, one end of the first pushing rack 75 is fixedly connected with the second baffle 77, one end of the first pushing rack 76 is mutually meshed with the second pushing rack 77, and the second pushing rack 77 is also mutually meshed with the second pushing rack 77.
When a user needs to smoke by using the device, the user puts the rotary exhaust sleeve 8 with the filter screen into the oral cavity, the user presses the slotted swing rod 42 downwards manually, the slotted swing rod 42 pushes the first slotted push plate 44 to move towards the direction close to the isolation frame 54, the tension spring 45 is stretched, the isolation frame 54 and the upper device of the isolation frame are pushed to move upwards by the first slotted push plate 44, the first compression spring 56 is compressed, the slotted guide plate 61 and the upper device of the slotted guide plate are moved upwards, and the slotted guide plate 61 compresses smoke in the slotted guide column 3. Meanwhile, the upward movement of the slotting pulling strip 55 can push the isolation plate 52 to swing in opposite directions, the isolation plate 52 isolates the inside of the slotting guide post 3, so that smoke generated in the electronic cigarette rod is prevented from entering the slotting guide post 3, the smoke can be gathered in the electronic cigarette rod, and the smoke amount exhausted in the later stage can be increased.
When the isolation frame 54 moves upwards to contact with the second slotted push plate 72, the isolation frame 54 pushes the second slotted push plate 72 to move upwards, the second slotted push plate 72 pulls the first push rack 75 and the upper device thereof to move away from the silica gel protective sleeve 46, the first push rack 75 drives the second push rack 77 and the upper device thereof to move towards the direction close to the silica gel protective sleeve 46 through the driving gear 74, the two baffles 76 move in opposite directions to open the slotted guide post 3, smoke in the slotted guide post 3 enters the rotary exhaust sleeve 8 with the filter screen, and a user sucks the smoke into an oral cavity through the exhaust port of the rotary exhaust sleeve 8 with the filter screen, so that the smoking aim is achieved.
When the smoke in the mouth of a user reaches a certain amount, the user loosens the grooved swing rod 42, the stretched stretching spring 45 resets to drive the first grooved push plate 44 to move and reset in the direction away from the isolation frame 54, the first grooved push plate 44 drives the isolation frame 54 and devices on the isolation frame 54 to move and reset downwards, the isolation frame 54 is separated from the second grooved push plate 72, the compressed third compression spring 73 resets to drive the second grooved push plate 72 and devices on the second grooved push plate 72 to reset, the isolation plate 52 does not block the grooved guide post 3 any more, the smoke gathered in the electronic cigarette rod rapidly enters the grooved guide post 3 through the one-way air inlet valve 64, so that the smoke gathered in the grooved guide post 3 is gathered, the operation is repeated, the user sucks the smoke gathered in the grooved guide post 3 into the mouth, the effect of increasing the smoke suction amount is achieved, and the user requirement is met.
Example 2
Based on embodiment 1, as shown in fig. 12-14, the device further comprises an air outlet angle adjusting assembly 9, the air outlet angle adjusting assembly 9 is arranged on the grooved guide post 3, the air outlet angle adjusting assembly 9 is used for changing the smoke discharging direction, the air outlet angle adjusting assembly 9 comprises a gear ring 91, a fixed clutch shaft 92, a rotary gear 93, a short plate 94, a grooved pulley 95, a movable clutch shaft 96, a fourth compression spring 97, a second guide sleeve 98 and a pushing groove rod frame 99, the gear ring 91 is arranged on the inner wall of the rotary exhaust sleeve 8 with a filter screen, the fixed clutch shaft 92 is rotatably connected to the supporting plate 2, the rotary gear 93 is welded on the fixed clutch shaft 92, the rotary gear 93 is engaged with the gear ring 91, the short plate 94 is welded on one side of the grooved guide post 3, the short plate 94 is rotatably connected with the grooved pulley 95, the movable clutch shaft 96 is connected to the grooved pulley 95 far away from the short plate 94 in a lifting manner, the movable clutch shaft 96 is used for pushing the fixed clutch shaft 92 and the rotary gear 93, at least one part of the movable clutch shaft 96 is positioned in the grooved pulley 95, the movable clutch shaft 96 is engaged with the fixed clutch shaft 92, the grooved pulley 95, the top surface of the grooved pulley 95 is fixedly connected to the grooved pulley 95, the fourth spring 97 is used for pushing the grooved pulley 95, the grooved pulley 95 is in a first end of the movable clutch shaft 95 is in a way far away from the grooved pulley 95 is matched with the grooved pulley 95, and the first spring frame 95 is pushed to the grooved pulley 95, one end of the grooved pulley 95 is in a way, which is in a movable groove 95 is matched with the groove 95, and the groove 95 is pushed, and far away from the groove 95.
When the second slotting push plate 72 moves upwards, the second slotting push plate 72 drives the pushing slot rod frame 99 to move upwards, the pushing slot rod frame 99 pushes the grooved wheel 95 and the upper device thereof to rotate anticlockwise, so that the movable clutch shaft 96 pushes the fixed clutch shaft 92 and the rotary gear 93 to rotate anticlockwise, the rotary gear 93 drives the gear ring 91 and the rotary exhaust sleeve 8 with the filter screen to rotate, the rotary exhaust sleeve 8 with the filter screen can rotate to change the exhaust smoke direction, smoke can enter different positions of the oral cavity of a user, the sense organs of the user are effectively stimulated, and the user can feel at different degrees. When the second slotted push plate 72 moves downwards to reset, the second slotted push plate 72 drives the push slot rod frame 99 to move downwards, the push slot rod frame 99 pushes the grooved wheel 95 and the device thereon to rotate clockwise, the fixed clutch shaft 92 pushes the movable clutch shaft 96 to move downwards, then the fixed clutch shaft 92 is separated from the movable clutch shaft 96, and the compressed fourth compression spring 97 resets to drive the movable clutch shaft 96 to move upwards.
The embodiments of the present invention have been described above with reference to the accompanying drawings, but the present invention is not limited to the above-described embodiments, which are merely illustrative and not restrictive, and many forms may be made by those having ordinary skill in the art without departing from the spirit of the present invention and the scope of the claims, which are all within the protection of the present invention.

Claims (1)

1. The utility model provides an electron smog spinning disk atomiser that can increase smog volume and adjust injection angle, a serial communication port, including oval casing (1), backup pad (2), fluting guide post (3), promote subassembly (4), isolate the subassembly (5), smog compression release subassembly (6), open and shut subassembly (7) and take filter screen rotatory exhaust cover (8), fixedly mounted support plate (2) on oval casing (1), fixedly mounted fluting guide post (3) on backup pad (2), fluting guide post (3) are located oval casing (1) at least partly, promote subassembly (4) locate on oval casing (1), isolate the subassembly (5) and set up on fluting guide post (3), isolate the subassembly (5) and be located oval casing (1), smog compression release subassembly (6) are located on isolate the subassembly (5), smog compression release subassembly (6) are located fluting guide post (3), open and shut subassembly (7) are set up on fluting guide post (3), take filter screen rotatory exhaust cover (8) swivelling joint on backup pad (2);
the pushing assembly (4) comprises a support plate (41), a grooved swing rod (42), a first guide sleeve (43), a first grooved push plate (44), a tension spring (45) and a silica gel protective sleeve (46), wherein the support plate (41) is welded on the outer wall of the elliptical shell (1), the grooved swing rod (42) is rotatably connected to the support plate (41), the first guide sleeve (43) is welded on one side of the grooved guide post (3), the first grooved push plate (44) is connected to the first guide sleeve (43) in a sliding mode, a square groove corresponding to the first grooved push plate (44) is formed in the elliptical shell (1), the first grooved push plate (44) is in limiting connection with the square groove, the first grooved push plate (44) is in limiting fit with the grooved swing rod (42), a pair of tension springs (45) are fixedly connected to the first guide sleeve (43), one end of each tension spring (45) is connected with the corresponding first grooved push plate (44), the silica gel protective sleeve (46) is fixedly arranged on the outer wall of the elliptical shell (1), the silica gel protective sleeve (46) is made of silica gel material, the support plate (41) is located in the silica gel protective sleeve (46), and the silica gel protective sleeve (42) is located in the same position of the swing rod (46);
the isolation assembly (5) comprises supporting blocks (51), isolating plates (52), torsion springs (53), isolating frames (54), slotted pulling strips (55) and first compression springs (56), wherein the supporting blocks (51) are uniformly distributed on the bottom surface of each slotted guide post (3), the isolating plates (52) are connected onto the two supporting blocks (51) in a rotating mode, the torsion springs (53) are symmetrically connected onto the isolating plates (52), one ends of the torsion springs (53) are connected with the supporting blocks (51), the isolating frames (54) are connected onto the slotted guide posts (3) in a lifting mode, the isolating frames (54) are in limit fit with the first slotted pushing plates (44), the slotted pulling strips (55) are welded below the isolating frames (54), the slotted pulling strips (55) are in limit fit with the isolating plates (52), one ends of the first compression springs (56) are fixedly connected onto the isolating frames (54), and the other ends of the first compression springs (56) are connected with the slotted guide posts (3) in an interconnecting mode.
The smoke compression pushing-out assembly (6) comprises a grooved guide plate (61), an inclined plate (62), a second compression spring (63) and a one-way air inlet valve (64), wherein the grooved guide plate (61) is fixedly connected to the isolation frame (54), the inclined plate (62) is symmetrically and slidingly connected to the grooved guide plate (61), grooves corresponding to the inclined plate (62) are formed in the grooved guide plate (61), the side surfaces of the inclined plate (62) are mutually flush with the inner wall of the grooved guide column (3), a pair of second compression springs (63) are fixedly connected to one side of the inclined plate (62), one end of each second compression spring (63) is connected with the grooved guide plate (61), and three one-way air inlet valves (64) are arranged on the grooved guide plate (61) at intervals;
the opening and closing assembly (7) comprises a fixed guide plate (71), a second slotted push plate (72), a third compression spring (73), a driving gear (74), a first pushing rack (75), a baffle plate (76) and a second pushing rack (77), a mounting cavity (78) is arranged in the slotting guide column (3), a fixed guide plate (71) is welded on one side of the slotting guide column (3), a second slotting push plate (72) is connected to the fixed guide plate (71) in a lifting mode, a third compression spring (73) is fixedly connected to the bottom surface of the fixed guide plate (71), one end of the third compression spring (73) is connected with the second slotting push plate (72), a driving gear (74) is rotatably connected in the mounting cavity (78), a first pushing rack (75) is slidingly connected to the slotting guide column (3), the first pushing rack (75) is meshed with the driving gear (74), the first pushing rack (75) is in limit fit with the second slotting push plate (72), two baffles (76) are slidingly connected to the slotting guide column (3), one end of the first pushing rack (75) is fixedly connected with one baffle (76), a second pushing rack (77) is welded on the other baffle (76), and the second pushing rack (77) is also meshed with the driving gear (74);
the device also comprises an air outlet angle adjusting component (9), the air outlet angle adjusting component (9) is arranged on the slotted guide column (3), the air outlet angle adjusting component (9) comprises a gear ring (91), a fixed clutch shaft (92), a rotary gear (93), a short plate (94), a grooved pulley (95), a movable clutch shaft (96), a fourth compression spring (97), a second guide sleeve (98) and a pushing grooved rod frame (99), the gear ring (91) is arranged on the inner wall of the rotary exhaust sleeve (8) with a filter screen, a fixed clutch shaft (92) is rotationally connected on the supporting plate (2), the rotary gear (93) is mutually engaged with the gear ring (91) and the short plate (94) is welded on one side of the slotted guide column (3), the short plate (94) is rotationally connected with the grooved pulley (95), the movable clutch shaft (96) is connected on the grooved pulley (95) in a lifting manner, at least one part of the movable clutch shaft (96) is positioned in the grooved pulley (95), the movable clutch shaft (96) is mutually engaged with the top surface of the fixed clutch shaft (92), the fourth compression spring (97) is fixedly connected with one end of the fourth compression spring (97), the second guide sleeve (98) is fixedly arranged on one side of the grooved guide column (3), a pushing groove rod frame (99) is matched on the second guide sleeve (98) in a limiting mode, one end of the pushing groove rod frame (99) is connected with the second grooved push plate (72), and the pushing groove rod frame (99) and the grooved wheel (95) are in contact with each other.
CN202110819496.5A 2021-07-20 2021-07-20 Electronic cigarette atomizing nozzle capable of increasing smoke quantity and adjusting injection angle Active CN113519914B (en)

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CN202110819496.5A CN113519914B (en) 2021-07-20 2021-07-20 Electronic cigarette atomizing nozzle capable of increasing smoke quantity and adjusting injection angle

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CN106235422A (en) * 2016-09-29 2016-12-21 深圳市博格科技有限公司 A kind of oil dripping type nebulizer and electronic cigarette
CN106418730A (en) * 2016-12-23 2017-02-22 郑州天舜电子技术有限公司 Electronic cigarette with blowing-type adjustment to smoke volume
CN108378427A (en) * 2018-04-26 2018-08-10 万利龙 hybrid electronic cigarette
WO2019242746A1 (en) * 2018-06-22 2019-12-26 湖南中烟工业有限责任公司 Electronic cigarette atomizer and electronic cigarette thereof
CN210248381U (en) * 2019-06-03 2020-04-07 惠州市新泓威科技有限公司 Electronic cigarette atomizer
CN111067146A (en) * 2020-01-10 2020-04-28 北京航空航天大学云南创新研究院 Quantitative suction type electronic cigarette capable of improving user experience
CN111887485A (en) * 2020-08-06 2020-11-06 重庆中烟工业有限责任公司 Internal rotation type heating non-combustion smoking set
CN212437275U (en) * 2020-04-23 2021-02-02 湖南中烟工业有限责任公司 Ultrasonic atomizer and electronic cigarette

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014071747A1 (en) * 2012-11-07 2014-05-15 Xiu Yunqiang Screw-driven slidable piercing electronic smoking set
CN106235422A (en) * 2016-09-29 2016-12-21 深圳市博格科技有限公司 A kind of oil dripping type nebulizer and electronic cigarette
CN106418730A (en) * 2016-12-23 2017-02-22 郑州天舜电子技术有限公司 Electronic cigarette with blowing-type adjustment to smoke volume
CN108378427A (en) * 2018-04-26 2018-08-10 万利龙 hybrid electronic cigarette
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CN210248381U (en) * 2019-06-03 2020-04-07 惠州市新泓威科技有限公司 Electronic cigarette atomizer
CN111067146A (en) * 2020-01-10 2020-04-28 北京航空航天大学云南创新研究院 Quantitative suction type electronic cigarette capable of improving user experience
CN212437275U (en) * 2020-04-23 2021-02-02 湖南中烟工业有限责任公司 Ultrasonic atomizer and electronic cigarette
CN111887485A (en) * 2020-08-06 2020-11-06 重庆中烟工业有限责任公司 Internal rotation type heating non-combustion smoking set

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