Background
With the increasing development of automobiles, consumers pay more and more attention to the comfort level of the environment in the automobile, and the smell in the automobile also has certain influence on the comfort level. Since interior materials in a vehicle emit odor, in order to improve the odor in the vehicle, a user generally places an air freshener in the vehicle.
If the air freshener is placed in the automobile, after the air freshener is unsealed, fragrance can be continuously emitted outwards no matter whether the automobile is in a use state, and the waste of spices is serious. In addition, when the user wants to change another scent, the air freshener of a new scent type needs to be changed.
On one hand, if a user wants to change the odor type in the vehicle, the user needs to carry a plurality of air fresheners with different odor types, and the change is complicated; on the other hand, after the air freshener with a new fragrance type is replaced, the originally used air freshener still releases the perfume outwards because the air freshener cannot be sealed, so that the problems of perfume waste and perfume mixing are caused.
Disclosure of Invention
The invention aims to provide a vehicle-mounted fragrance device to solve the technical problems that in the prior art, fragrance in a vehicle is complex to replace, waste is easy to occur, and fragrance is mixed.
The invention provides a vehicle-mounted fragrance device, which comprises: a casing with a fragrance-emitting opening, a plurality of fragrance bottles are arranged in the casing, and a fragrance-changing mechanism and a driving mechanism are arranged in the casing,
the incense changing mechanism comprises a rotating core and a sleeve sleeved outside the rotating core, a plurality of first through holes are axially arranged on the sleeve at intervals, the first through holes are communicated with the incense bottles in a one-to-one correspondence manner, the rotating core is provided with second through holes corresponding to the first through holes in a one-to-one correspondence manner, when one of the second through holes is communicated with the corresponding first through hole, the rest second through holes and the corresponding first through holes are not communicated, and the rotating core is provided with an incense outlet communicated with the inner cavity of the shell;
the driving mechanism is connected with the rotating core to drive the rotating core to rotate.
In the above technical scheme, further, the housing is communicated with an outward delivery pipeline, and the outward delivery pipeline is communicated with an air outlet pipeline in an air conditioning system of an automobile.
In any one of the above technical solutions, further, the casing has an air inlet, an air draft mechanism is arranged in the casing, an air inlet of the air draft mechanism is communicated with an inner cavity of the casing, and an air outlet of the air draft mechanism is communicated with the fragrance emitting opening of the casing.
In the above technical solution, further, a grille plate is installed at an air inlet of the housing.
In any of the above technical solutions, further, an incense storage box is installed in the casing, the incense storage box has a plurality of openings, each incense bottle is located in the incense storage box, a bottle mouth of each incense bottle is in one-to-one correspondence with each opening of the incense storage box, and the bottle mouth of each incense bottle is in communication with the corresponding first through hole through the corresponding opening.
In any one of the above technical solutions, further, the incense storage box further comprises a communication pipeline, and the opening of the incense storage box is connected with the corresponding first through hole on the sleeve through the communication pipeline.
In any one of the above technical solutions, further, store up fragrant box with the casing can be dismantled and be connected, the lateral wall that stores up fragrant box is provided with the fixture block, the casing is provided with locking mechanism, locking mechanism includes fastener and deblocking spare, the fastener with deblocking spare all stretches out the casing, the fastener with connect through first elastic component between the casing, deblocking spare with connect through second elastic component between the casing, deblocking spare is used for promoting the fastener to casing inside removal, the fastener with the fixture block.
In any of the above technical solutions, further, the side wall of the housing is provided with a slide rail, and the side wall of the fragrance storage box is provided with a slide block, and the slide block is located in the slide rail and is in sliding fit with the slide rail.
In any one of the above technical solutions, further, a wedge-shaped contact is disposed in the fragrance storage box, the wedge-shaped contact is located inside an opening of the fragrance storage box, a tip of the wedge-shaped contact faces a direction away from the opening, and a maximum diameter of the wedge-shaped contact is smaller than a diameter of the opening of the fragrance storage box.
Compared with the prior art, the vehicle-mounted fragrance device has the following advantages:
the vehicle-mounted fragrance device can be applied to automobiles, and can be used for containing various fragrances with different smells due to the fact that the vehicle-mounted fragrance device comprises various fragrance bottles. The driving mechanism drives the rotary core to rotate, so that the second through hole of the rotary core is communicated with one of the first through holes and is communicated with one of the fragrance bottles, and fragrance of the fragrance bottle enters the shell through the rotary core and enters the vehicle through the shell. When needing to change fragrant smell in the car, actuating mechanism continues to drive and changes the core rotation for originally being in the fragrant bottle of open mode and changing into closed condition, and make on the core of changeing another first through-hole and the second through-hole intercommunication that corresponds, thereby with another fragrant bottle intercommunication, make originally the fragrant bottle of using sealed, no longer give off fragrance to the car in, but another fragrant bottle gives off fragrance to the car in, thereby change the fragrant smell in the car.
In conclusion, the fragrant mechanism that this application provided makes the operation that changes fragrant smell in the car comparatively simple, and after changing fragrant smell, the fragrant bottle that originally uses is in encapsulated situation, avoids constantly giving off of spices to avoid the waste of spices, also can avoid mixing fragrant.
The invention also aims to provide an automobile to solve the technical problems that in the prior art, the fragrance in the automobile is complex to replace, and waste and mixed fragrance are easy to occur.
In order to achieve the purpose, the technical scheme of the invention is realized as follows:
the utility model provides an automobile, includes the automobile body, be provided with air conditioning system in the automobile body, install the glove box in the automobile body, install above-mentioned technical scheme in the glove box on-vehicle fragrance device, the fragrant mouth that looses of on-vehicle fragrance device's casing with air conditioning system's air-out pipeline intercommunication.
The vehicle and the vehicle-mounted fragrance device have the same advantages compared with the prior art, and the description is omitted.
Detailed Description
The technical solutions of the present invention will be described clearly and completely with reference to the accompanying drawings, and it should be understood that the described embodiments are some, but not all embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example one
As shown in fig. 1 to 9, the vehicle-mounted fragrance apparatus according to the embodiment of the present invention includes: a housing 80 having a scent dispensing opening, a plurality of scent bottles 12 being disposed within the housing 80, and a scent exchange mechanism 20 and a drive mechanism 30 being mounted, wherein:
trade fragrant mechanism 20 including changeing core 22 and the cover locate changeing the sleeve 21 outside core 22, be provided with a plurality of first through-holes along axial interval on the sleeve 21, a plurality of first through-holes and a plurality of fragrant bottles 12 one-to-one intercommunication, the quantity of first through-hole is the same with the quantity of fragrant bottle 12. The rotary core 22 is provided with a plurality of second through holes 221, the plurality of second through holes 221 are in one-to-one correspondence with the plurality of first through holes, when one of the second through holes 221 is in a communication state with the corresponding first through hole, the remaining second through holes 221 and the respective corresponding first through holes are in a non-communication state, and the rotary core 22 is provided with a fragrance outlet hole communicated with the inner cavity of the housing 80.
The driving mechanism 30 is connected to the rotary core 22 to drive the rotary core 22 to rotate.
It should be noted that, when one of the second through holes 221 is in a communicating state with the corresponding first through hole, the remaining second through holes 221 and the corresponding first through holes of the second through holes are in a non-communicating state.
For example, when the number of the first through holes and the number of the second through holes are three, for convenience of description, the three first through holes are respectively referred to as a first through hole a, a first through hole b, and a first through hole c, and the upper second through holes are respectively referred to as a second through hole a, a second through hole b, and a second through hole c. The first through hole a and the second through hole a are correspondingly arranged, the first through hole b and the second through hole b are correspondingly arranged, and the first through hole c and the second through hole c are correspondingly arranged. When the first through hole a and the second through hole a are in a communicated state, the first through hole b and the second through hole b are in a non-communicated state, and the first through hole c and the second through hole c are in a non-communicated state. Similarly, when the first through hole b and the second through hole b are in a communicated state, the first through hole a and the second through hole a are in a non-communicated state, and the first through hole c and the second through hole c are in a non-communicated state. When the first through hole c and the second through hole c are in a communicated state, the first through hole b and the second through hole b are not communicated, and the first through hole a and the second through hole a are not communicated.
In the present embodiment, the plurality of second through holes 221 are distributed at intervals in the axial direction of the rotating core 22, and the centers of different second through holes 221 are respectively located at different generatrices on the rotating shaft 22.
The vehicle-mounted fragrance device provided by the embodiment of the invention can be applied to automobiles, and can be used for containing various fragrances with different smells due to the fact that the vehicle-mounted fragrance device comprises various fragrance bottles 12. In use, the driving mechanism 30 drives the rotary core 22 to rotate, so that the second through hole 221 of the rotary core 22 is communicated with one of the first through holes and is communicated with one of the fragrance bottles 12, and fragrance of the fragrance bottle 12 enters the housing 80 through the rotary core 22 and enters the vehicle through the housing 80. When the fragrance in the vehicle needs to be changed, the driving mechanism 30 continues to drive the rotary core 22 to rotate, so that the fragrance bottle 12 which is originally in the opening state is changed into the closing state, and the other first through hole on the rotary core 22 is communicated with the corresponding second through hole 221 so as to be communicated with the other fragrance bottle 12, so that the fragrance bottle 12 which is originally used is sealed, the fragrance is not emitted to the vehicle, but the fragrance is emitted to the vehicle by the other fragrance bottle 12, and the fragrance in the vehicle is changed.
In conclusion, the operation that the fragrant smell mechanism that this application provided makes the fragrant smell change in the car is comparatively simple, and after changing fragrant smell, the fragrant bottle 12 that originally uses is in encapsulated situation, avoids constantly giving off of spices to avoid the waste of spices, also can avoid mixing fragrant.
In the above technical solution, further, the housing 80 is communicated with the delivery duct 50, and the delivery duct 50 is communicated with an air outlet duct in an air conditioning system of an automobile. With the arrangement, the fragrance emitted from the casing 80 enters the air outlet pipeline of the air conditioning system in the automobile through the air outlet pipeline 50 and enters the carriage along with the air discharged by the air conditioning system.
In a preferred embodiment of this embodiment, the casing 80 has an air inlet, an air exhausting mechanism 60 is disposed in the casing 80, an air inlet of the air exhausting mechanism 60 is communicated with the inner cavity of the casing 80, and an air outlet of the air exhausting mechanism 60 is communicated with the fragrance emitting opening of the casing 80. The air extracting mechanism 60 extracts the fragrance inside the housing 80 to the fragrance emitting opening of the housing 80 so that the fragrance is discharged through the fragrance emitting opening. The ventilation mechanism 60 increases the flow rate of the gas in the casing 80, and accelerates the discharge rate of the fragrance. When the fragrance-emitting opening of the casing 80 is communicated with the delivery pipeline 50, the air draft mechanism 60 sends fragrance in the casing 80 into the delivery pipeline 50, so that the fragrance can enter the air outlet pipeline of the air conditioning system more quickly, and the fragrance emitting speed in the carriage is improved.
In order to facilitate the gas flow, the housing 80 has an air inlet, which may be composed of a plurality of small-caliber openings, or the air inlet is a large-caliber opening, and a grid plate is installed at the air inlet, which divides the air inlet into a plurality of small-caliber openings, so as to enhance the structural strength at the air inlet while increasing the total air inlet area of the air inlet.
In one embodiment, the scent dispensing opening of the housing 80 is disposed on a top surface of the housing 80, and the air inlet opening of the housing 80 is disposed on a side surface of the housing 80.
In one embodiment of this embodiment, a screen may be provided at the air inlet to filter dust or other particulate matter to improve the quality of the gas entering the housing 80 and thus the quality of the gas emitted via the on-board fragrance apparatus.
In the vehicle-mounted fragrance device provided in the present embodiment, the number of fragrance bottles 12 is plural, specifically, the number of fragrance bottles 12 is two or more. The size of the included angle between the axes of the adjacent second through holes 221 is related to the aperture and the number of the fragrance bottles 12. In a preferred embodiment, if the number of the fragrance bottles 12 is N, the included angle between the axes of the adjacent second through holes 221 is not more than 360/(N +1) degrees at most. In the present embodiment, the axis of the second through hole 221 refers to a line segment passing through the center of the second through hole 221 and perpendicular to the plane where the second through hole 221 is located.
For example, when three bottles 12 are provided, correspondingly, the number of the first through holes on the sleeve 21 is three, three second through holes 221 are provided on the rotary core 22, and an included angle between axes of two adjacent second through holes 221 does not exceed 90 degrees.
In a preferred embodiment of the present embodiment, the axes of the three second through holes 221 are perpendicular to each other, that is, the axes of the three second through holes 221 on the rotary core 22 are perpendicular to each other. In the preparation process, a first second through hole 221 is drilled on the side surface of the rotating core 22, then the rotating core 22 is rotated by 90 degrees around the axis of the rotating core, and a second through hole 221 is drilled at a certain distance along the length direction; then, the rotating core 22 is rotated by 90 degrees around its own axis along the same direction, and a third second through hole 221 is drilled at a distance along the length direction. Because the first through holes are in the same orientation, when the first second through hole 221 of the rotating core 22 is communicated with the first through hole, the other two second through holes 221 are not communicated with the two first through holes; after the rotating core 22 is rotated by 90 degrees, the second through hole 221 is communicated with the second first through hole, and the other two second through holes 221 are not communicated with the two first through holes; after the rotating core 22 continues to rotate for 90 degrees again along the same direction, the third second through hole 221 is communicated with the third first through hole, and the other two second through holes 221 are not communicated with the two first through holes; after the rotating core 22 continues to rotate again by 90 degrees along the same direction, the three second through holes 221 are not communicated with the three first through holes, and at the moment, the vehicle-mounted fragrance device is in a closed state.
Of course, the included angle between the axes of the three second through holes 221 may be selected according to the diameter of the second through holes 221, and when the diameter of the second through holes 221 is relatively small, the included angle between adjacent second through holes 221 may be less than ninety degrees. The relatively small diameter ensures that the previous second through hole 221 has been rotated to a region completely out of correspondence with the first through hole when the rotation is less than 90 degrees.
In a preferred embodiment of this embodiment, a fragrance storage box 10 is installed in the housing 80, the fragrance storage box 10 has a plurality of openings, the bottle mouth of each fragrance bottle 12 is in one-to-one correspondence with each opening of the fragrance storage box 10, and the bottle mouth of each fragrance bottle 12 is in correspondence with the corresponding first through hole through the corresponding opening of the fragrance storage box 10.
In any of the above technical solutions, further, the vehicle-mounted fragrance device further includes a communication pipe 70, and the opening of the fragrance storage box 10 and the corresponding first through hole on the sleeve 21 are connected through the communication pipe 70. Specifically, the number of the openings of the fragrance storage box 10 is equal to the number of the communication channels 70, the number of the first through holes, and the number of the second through holes 221, which is the maximum number of the fragrance bottles 12 that can be placed in the fragrance storage box 10. For example, when the number of openings in the fragrance cartridge 10 is three, and a maximum of three fragrance bottles 12 can be placed in the fragrance cartridge 10, the vehicle-mounted fragrance apparatus can switch between a maximum of three different fragrances. The opening of each fragrance storage box 10 is correspondingly communicated with a first through hole through a communication pipeline 70, and a second through hole 221 is arranged at the position of the rotary core 22 corresponding to each first through hole.
Each communicating pipe 70 may be a separate tubular structure, and both ends of each communicating pipe are respectively communicated with the opening and the first through hole of the corresponding fragrance storage box 10. Alternatively, the plurality of communication ducts 70 are of unitary construction. For example, a communicating structure is provided between the incense storage box 10 and the sleeve 21, the communicating structure may be an integrated block structure, a plurality of cavities penetrating the communicating structure are provided in the communicating structure, and each cavity forms each communicating conduit 70.
In order to facilitate the removal of the fragrance storage box 10 from the housing 80 for replacing the bottle 12 in the fragrance storage box 10, the fragrance storage box 10 is detachably connected to the housing 80, as shown in fig. 5 to 9, in a preferred embodiment of the present embodiment, the outer side wall of the fragrance storage box 10 is provided with a latch 11, the housing 80 is provided with a locking mechanism, the locking mechanism comprises a latch 94 and an unlocking member 93, the latch 94 and the unlocking member 93 both extend out of the housing 80, the latch 94 is connected to the housing 80 through a first elastic member 91, the unlocking member 93 is connected to the housing 80 through a second elastic member 92, and the unlocking member 93 is slidably connected to the housing. The latch 11 can be engaged with the engaging member 94, so that the fragrance storage box 10 is connected to the housing 80, when the fragrance storage box 10 is taken down, the unlocking member 93 is pressed, the unlocking member 93 pushes the engaging member 94 towards the inside of the housing 80, so that the engaging member 94 is separated from the latch 11, and then the fragrance storage box 10 is separated from the housing 80.
In the direction shown in fig. 5, the fragrance storage box 10 is installed on the left side of the casing 80, the latch 11 is installed on the right side surface of the fragrance storage box 10, the engaging member 94 extends out of the left side surface of the casing 80 to the left, the first elastic member 91 is arranged along the horizontal direction, the right side is connected with the casing 80, and the left side is connected with the engaging member 94; the second elastic member 92 is disposed in a vertical direction, and has a top end connected to the housing 80 and a bottom end connected to the unlocking member 93. Further, the housing 80 is provided with a card slot, an opening of which faces downward. After the incense storage box 10 is clamped in place, the top area of the incense storage box 10 extends into the clamping groove.
The top surface of the latch 11 has an inclined surface, the bottom surface of the engaging member 94 has an inclined surface, and the inclined surface of the top surface of the latch 11 and the inclined surface of the bottom surface of the engaging member 94 have the same inclination angle. The top surface of the unlocking member 93 is an inclined surface, and the inclined surface of the top surface of the unlocking member 93 and the inclined surface of the bottom surface of the engaging member 94 have the same inclination angle. According to the arrangement, when the fragrance storage box 10 is pushed upwards at the right lower side, the top surface of the clamping block 11 is in contact with the bottom surface of the clamping piece 94, the clamping block 11 pushes the clamping piece 94 towards the right side in the upward movement process, at the moment, the first elastic piece 91 compresses to store force, after the clamping block 11 moves to the position above the clamping piece 94, the top area of the fragrance storage box 10 extends into the clamping groove, the clamping piece 94 extends out of the shell 80 under the pushing of the first elastic piece 91 and moves to the position below the clamping block 11, the bottom surface of the clamping block 11 is in contact with the top surface of the clamping piece 94, so that the fragrance storage box 10 is prevented from moving downwards, the clamping groove can prevent the fragrance storage box 10 from moving along the horizontal direction, and at the moment, the fragrance storage box.
In the unlocking process, the unlocking piece 93 is pushed upwards, the unlocking piece 93 moves upwards relative to the shell 80, the inclined plane of the top surface of the unlocking piece 93 is in contact with the inclined plane of the bottom surface of the clamping piece 94, in the process that the unlocking piece 93 continues to move upwards, the unlocking piece 93 pushes the clamping piece 94 to move towards the inner side of the shell, the contact area of the clamping piece 94 and the clamping block 11 is gradually reduced until the clamping block 11 is separated from the clamping piece 94, and the incense storage box 10 moves downwards so as to be separated from the shell 80. The second elastic member 92 compresses the accumulated force during the upward movement of the unlocking member 93, and after the unlocking member 93 is released, the second elastic member 92 pushes the unlocking member 93 to move downward to return to the original position.
As shown in fig. 5 and 9, the engaging member 94 includes an engaging portion 941 and a pushing portion 942, the engaging portion 941 is connected to the pushing portion 942, the pushing portion 942 is located on a side surface of the engaging portion 941, a thickness of the pushing portion 942 is greater than a thickness of the engaging portion 941, and a distance that the engaging portion 941 extends out of the housing 80 is greater than a distance that the pushing portion 942 extends out of the housing 80. The bottom surfaces of the engaging portion 941 and the pushing portion 942 have inclined surfaces, the inclined surface of the top surface of the latch 11 has the same inclination angle as the inclined surface of the bottom surface of the engaging portion 941, and the inclined surface of the top surface of the unlocking member 93 has the same inclination angle as the inclined surface of the bottom surface of the pushing portion 942. With this arrangement, the engaging piece 94 and the unlocking piece 93 are closer to each other, thereby facilitating the unlocking operation.
To facilitate the installation of the second elastic member 92, as shown in fig. 7, a fixing block 95 is disposed on a side surface of the housing 80, the fixing block 95 is located beside the engaging member 94, and a top end of the second elastic member 92 is fixedly connected to a bottom surface of the fixing hole. As shown in fig. 9, fixing blocks 95 are respectively provided on both sides of the engaging member 94, and the unlocking member 93 is connected to the two fixing blocks 95 through two elastic members.
As shown in fig. 9, a hook is provided at a side surface of the unlocking member 93, and the hook is used to limit the unlocking member 93 so as to control the maximum distance that the unlocking member 93 extends out of the housing 80.
Further, a slide rail 82 is provided on the side wall of the housing 80 along the vertical direction, a slider 14 is provided on the side wall of the fragrance storage box 10, and during the upward movement of the fragrance storage box 10 along the housing 80, the slider 14 extends into the slide rail 82 and moves along the slide rail 82. So configured, the cooperation of the slide rail 82 and the slider 14 defines the position of the fragrance cartridge 10 during the mounting and dismounting of the fragrance cartridge 10, so that the fragrance cartridge 10 can only move along the extending direction of the slide rail 82.
As shown in fig. 7, two sliding rails 82 are oppositely disposed on two sides of the side wall of the housing 80, the sliding rails 82 include grooves, and openings of the grooves of the two sliding rails 82 are opposite. As shown in fig. 8, two fixing blocks 95 are arranged on the fragrance storage box along the vertical direction, the fixing holes include flanges, and the extending directions of the two flanges are opposite. The flange extends into the recess when the cartridge 10 is assembled to the housing 80.
To facilitate the replacement of the fragrance bottles 12 in the fragrance storage box 10, in one embodiment of this embodiment, the fragrance storage box 10 includes a box body and a holder on which the fragrance bottles 12 are placed, the holder being removably connected to the fragrance storage box 10 by a locking mechanism, an unlocking member 93 in the locking mechanism extending out of the housing 80. Specifically, be provided with the buckle on the bracket, be provided with the draw-in groove on the box body, locking mechanism is including deblocking spare 93, and deblocking spare 93's one end stretches out the box body, and the other end is located the draw-in groove, behind buckle and the draw-in groove block on the bracket, the bracket is connected with the box body. Pressing unlocking piece 93 for unlocking piece 93 removes in the draw-in groove, thereby releases the buckle in the draw-in groove, thereby makes bracket and box body separation.
Further, a sealing structure is arranged between the bracket and the box body, and after the bracket is clamped with the box body, the fragrance bottles 12 in the fragrance storage box 10 are respectively positioned in separate sealing spaces so as to avoid fragrance mixing. The sealing structure can be a sealing ring or a sealing strip.
Specifically, be provided with the baffle in the box body of storing up fragrant box 10, the baffle separates the box body for a plurality of spaces, is provided with spacing on the bracket, and spacing separates the bracket for a plurality of positions of bearing, and each bears the position and all can place a fragrant bottle 12. After the bracket is connected with the box body, the limiting strips and the partition plates are in one-to-one involution, so that the incense storage box 10 is divided into a plurality of independent spaces, each independent space is correspondingly provided with an opening, and the bottle mouth of the incense bottle 12 is communicated with the opening.
To facilitate the installation of a new fragrance bottle 12, as a sealing membrane is typically provided at the mouth of the new fragrance bottle 12, a wedge-shaped contact 13 is provided within the fragrance cartridge 10, the wedge-shaped contact 13 being located inside the opening of the fragrance cartridge 10, and the tip of the wedge-shaped contact 13 facing away from the opening, the maximum diameter of the wedge-shaped contact 13 being smaller than the diameter of the opening of the fragrance cartridge 10, as shown in fig. 1. Specifically, the wedge-shaped contact 13 is mounted inside the opening of the fragrance box 10 through the connecting frame, and after the wedge-shaped contact 13 is inserted into the fragrance bottle 12, the fragrance of the fragrance bottle 12 flows out through the gap between the wedge-shaped contact 13 and the opening of the fragrance bottle 12 and flows to the opening of the fragrance box 10 through the gap of the connecting frame.
So set up, when putting into storage fragrant box 10 with new fragrant bottle 12, impel the bottleneck towards wedge contact 13, the seal membrane of bottleneck is punctured to wedge contact 13 to make and need not earlier to open the seal membrane before installation fragrant bottle 12, can open the seal membrane through wedge contact 13 at the in-process of installing fragrant bottle 12 to store up fragrant box 10, the installation effectiveness is high, convenient operation.
In one embodiment of this embodiment, the drive mechanism 30 includes a motor that is directly coupled to the rotary core 22. Alternatively, the motor may be coupled to the rotary core 22 via a linkage mechanism, which may include a gear set or a set of drive gears. For example, as shown in fig. 2, the motor is connected to the rotary core 22 through a gear set, the gear set includes two gears 40, one gear 40 is sleeved on the output shaft of the motor, the other gear 40 is sleeved on the rotary core 22, and the two gears 40 are engaged so that the motor can drive the rotary core 22 to rotate. By adjusting the gear ratio of the two gears 40, a speed reduction can be achieved. Since the motor is connected to the rotary core 22 through a gear train, the output shaft of the motor need not be coaxial with the rotary core 22. When the gears 40 in the gear set are bevel gears, the output shaft of the motor need not be parallel to the rotary core 22.
When the motor passes through the transmission wheelset to be connected with commentaries on classics core 22, the transmission wheelset includes the action wheel, follows the driving wheel and connects in the action wheel and follow the drive belt between the driving wheel, and the action wheel suit is on the motor, from the driving wheel suit on changeing core 22, and the motor drives the action wheel and rotates, and the action wheel passes through the drive belt and drives from the driving wheel rotation to the rotation of drive commentaries on classics core 22. The arrangement is such that the distance between the motor and the rotary core 22 can be relatively longer.
In summary, a suitable connection mode can be selected according to the relative position between the motor and the rotating core 22, so that the vehicle-mounted fragrance device is more compact in structure and occupies a smaller space.
As shown in fig. 4, the motor is located in the area between the air draft mechanism 60 and the fragrance storage box 10, the output shaft of the motor is parallel to the rotary core 22, and the output shaft of the motor is connected with the rotary core 22 through a gear set.
In any of the above embodiments, further, a fixing clip 81 is mounted on the outside of the housing 80 to facilitate mounting the vehicle-mounted fragrance device in the vehicle. The housing 80 is detachably mounted in the vehicle compartment, in particular in the glove box, by means of a retaining clip 81.
In addition, the side of the housing 80 may be further provided with mounting holes through which bolts may be inserted to fix the housing 80 to the glove box by the bolts.
In this embodiment, the driving mechanism 30 may be connected to a control switch, and the control switch is used to control the start and stop of the driving mechanism 30, so as to control the start and stop of the vehicle-mounted fragrance mechanism and the fragrance conversion. The control switch may be mounted outside the housing or in other areas within the vehicle cabin.
Example two
The second embodiment of the invention provides an automobile which comprises an automobile body, wherein an air conditioning system is arranged in the automobile body, a glove box is arranged in the automobile body, the vehicle-mounted fragrance device provided by the first embodiment is arranged in the glove box, and a fragrance diffusing opening of a shell of the vehicle-mounted fragrance device is communicated with an air outlet pipeline of the air conditioning system.
The vehicle provided by the second embodiment has the same advantages as the vehicle-mounted fragrance device provided by the first embodiment with respect to the prior art, and details are not repeated herein.
The driving mechanism in the vehicle-mounted fragrance mechanism can be connected with a whole vehicle Control system (ECU) of the automobile, so that the opening and closing of the vehicle-mounted fragrance mechanism and the replacement of fragrance are controlled through a touch screen or keys beside an instrument panel. Or the driving mechanism can be connected with a control system of an air conditioning system of the automobile, so that the opening and closing of the vehicle-mounted fragrance mechanism and the replacement of fragrance types are controlled through an air conditioning control panel.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; while the invention has been described in detail and with reference to the foregoing embodiments, it will be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; and the modifications or the substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present invention.