Perfume candle lamp

By introducing components such as adjustment guide rods, volatilizers and atomizers into the perfume candle lamps, the positions of the bullet head and luminous sheets are dynamically adjusted, and the problem of small contact area between aromatherapy and air is solved, achieving uniform diffusion of fragrance and simulation effect of candle burning is achieved, and user experience is improved.

CN120444600APending Publication Date: 2025-08-08宁波锒升工艺品有限公司
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Patent Information

Application Number
CN202510541138.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

During the evaporation of aromatherapy, the contact area between the aromatherapy and the air is small, and it is impossible to create an aroma atmosphere in the air in a timely and quickly, and it lacks ornamentality and fun.

Method used

By introducing a combination of adjustment guide rod, volatilizer, atomizer and luminous sheet into the perfume candle lamp, the adjuster controls the dynamic position adjustment of the bullet and luminous sheet, simulates the candle flame sway and smoke dissipation during the candle burning process, and increases the contact area and contact time of perfume mist and air.

Benefits of technology

It achieves uniform diffusion of the fragrance, enhances the ornamentality and fun of the product, enhances the user experience, simulates the real effect of candle burning, and provides a soft lighting atmosphere.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of lighting devices, in particular to a perfume candle lamp which comprises a main body shell, a perfume bottle is limited in the main body shell, a bullet head is arranged on the main body shell corresponding to the perfume bottle, and a light-emitting element used for emitting light and lighting is further connected to the main body shell. The perfume volatilization function and the lighting function are ingeniously combined, the perfume is provided, meanwhile, the soft lighting atmosphere is created, the positions of the bullet head and the light-emitting piece are dynamically adjusted through the adjuster, the contact area and the contact time of perfume mist and air can be effectively increased, diffusion of the perfume is promoted, and the perfume volatilization effect is improved. And the air can be more uniformly distributed in the air, so that the user experience is improved.
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Description

Technical Field

[0001] The present invention relates to the field of lighting devices, and in particular to a scented candle lamp. Background Art

[0002] In recent years, people have placed increasing emphasis on the comfort of their homes, leading to the widespread use of fragrance products. Scented candle lamps, as a common fragrance carrier, are popular among consumers for their natural and elegant qualities. They not only beautify the living environment while enhancing mood through their fragrance, but also provide a tranquil lighting atmosphere, promoting relaxation and sleep.

[0003] However, traditional scented candle lamps still have some shortcomings during use. Technicians in related fields have also carried out a lot of optimization on related scented candle lamps. In order to make a more accurate comparison, for example, Chinese patent publication number CN119468154A discloses an aromatherapy candle lamp, including a lamp base, an aromatherapy component and an energy supply component; when in use, the lamp solves the problem of frequent battery replacement in existing scented candle lamps by installing a card board, a lithium battery and a connecting module.

[0004] However, the above-mentioned aromatherapy candle lamps still have some shortcomings in actual use:

[0005] The above-mentioned aromatherapy candle lamp is combined with the aromatherapy component and the energy supply component to form the effect of evaporating aroma while providing a lighting atmosphere. However, in actual use, since the positions of the aromatherapy bowl and the candle light are relatively fixed, in the process of guiding the aroma to evaporate, it only heats the aroma in the aromatherapy bowl to promote the aroma to evaporate quickly into the air. The movement path of the aroma from the aromatherapy bowl to the air is relatively fixed, and the contact area between the volatilized aroma and the air is small, and the aroma atmosphere cannot be created in the air quickly and promptly.

[0006] Therefore, based on the above-stated viewpoints, there is still room for improvement in existing scented candle lamps. Summary of the Invention

[0007] To solve the above problems, the present invention provides a scented candle lamp, comprising a main body housing, a perfume bottle being positioned within the main body housing, a bullet-shaped head being provided on the main body housing corresponding to the perfume bottle, and a light-emitting element for illuminating light being further connected to the main body housing, the light-emitting element comprising:

[0008] The battery module is located on the main shell and is used for energy supply.

[0009] The light-emitting sheet is located on the bullet head and is controlled by the electrical signal of the battery module.

[0010] The adjusting guide rod is inserted into the perfume bottle and is limited to be matched with the bullet head on the main body shell.

[0011] Preferably, the adjusting guide rod is hollow inside to form a guide cavity, and a volatilizing stick corresponding to the bullet head is limit-connected in the guide cavity. The volatilizing stick is limit-inserted in the perfume bottle to guide the perfume to be atomized and emitted from the bullet head.

[0012] Preferably, the battery module includes a storage battery confined within a main body shell, and a functional circuit board electrically connected to the storage battery is also confined within the main body shell.

[0013] Preferably, a mounting seat is provided on the adjusting guide rod, the bullet head limit is connected to the mounting seat, the mounting seat upper limit has a guide tube and an atomizing piece that cooperate with the bullet head, and the atomizing piece is controlled by the electrical signal of the functional circuit board.

[0014] Preferably, an aromatherapy base connected to the perfume bottle is further provided in the main shell, and a bottle mouth plug penetrated by an adjustable guide rod is provided on the aromatherapy base, and the volatilizing rod is limited by the adjustable guide rod between the perfume bottle and the atomizing piece.

[0015] Preferably, the volatile stick is made of soft material and has a certain degree of flexible deformation ability.

[0016] Preferably, the interior of the bullet head is hollow and connected to the guide tube, and a number of through holes are evenly formed on the bullet head to connect the interior with the outside.

[0017] Preferably, several of the through holes are opened on the upper side of the bullet head.

[0018] Preferably, the outer edge of the atomizing plate is sleeved with a sealing ring limited on the mounting seat.

[0019] Preferably, a fixed base is further provided on the lower side of the main body shell, and the fixed base is connected with a plug interface and a switch corresponding to the battery and the functional circuit board.

[0020] In summary, this application includes at least one of the following beneficial technical effects:

[0021] 1. The present invention cleverly combines perfume volatilization with lighting functions to create a soft lighting atmosphere while providing fragrance. By dynamically adjusting the position of the bullet head and the light-emitting sheet through the regulator, the contact area and contact time between the perfume mist and the air can be effectively increased, promoting the diffusion of the fragrance and making it more evenly distributed in the air, thereby enhancing the user experience.

[0022] 2. The present invention adjusts the positions of the bullet head and the light-emitting sheet through a regulator so that the bullet head and the light-emitting sheet swing continuously, and then guides the atomized perfume to be discharged from the bullet head, simulating the effect of swaying candlelight and smoke escaping when a candle is burning, thereby enhancing the interest and viewing value of the product.

[0023] 3. The present invention coordinates the adjustment screw, the driven slider, the guide disc, the connecting slide rod and the limiting sleeve, so that the user can control the swing amplitude of the bullet head and the light-emitting sheet by driving the rotation of the adjustment screw, thereby adjusting the speed of fragrance diffusion and the intensity of the lighting atmosphere according to personal preferences or usage scenarios, further enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The present invention will be further described below with reference to the accompanying drawings and examples.

[0025] Figure 1 It is a structural schematic diagram of the present invention.

[0026] Figure 2 It is a schematic structural diagram of the light-emitting element of the present invention.

[0027] Figure 3 It is an exploded view of part of the workpiece of the present invention.

[0028] Figure 4 It is a structural schematic diagram of the battery module of the present invention.

[0029] Figure 5 It is a structural schematic diagram of the regulator of the present invention.

[0030] Figure 6 It is a structural schematic diagram of the adjusting guide rod of the present invention.

[0031] Figure 7 It is a structural schematic diagram of the bullet head of the present invention.

[0032] Figure 8 It is a structural schematic diagram of the driven gear block of the present invention.

[0033] Figure 9 This invention Figure 8 A magnified view of center.

[0034] In the figure, 1. main body shell; 10. perfume bottle; 11. bullet head; 110. through hole; 12. volatile stick; 13. mounting base; 14. guide tube; 15. atomizing piece; 16. aromatherapy base; 17. bottle stopper; 18. sealing ring; 19. fixed base; 2. light-emitting element; 20. battery module; 200. battery; 201. functional circuit board; 202. plug interface; 203. switch; 21. light-emitting piece; 22. adjusting guide rod; 220. limiting sleeve; 221. connecting sleeve; 3. regulator; 30. connecting ring; 31. driving motor; 32. driven rotating rod; 33. driving rotating block; 34. adjusting sleeve; 35. guide gear ring; 350. driven gear block; 36. adjusting screw; 360. driven slider; 361. guide disc; 362. guide groove; 363. connecting slide rod. DETAILED DESCRIPTION

[0035] The following is combined with Figure 1 To the attached Figure 9 The embodiments of the present invention are described in detail.

[0036] The embodiment of the present application discloses a perfume candle lamp, which is mainly used in the process of using the perfume candle lamp, and technically achieves the effect of satisfying the user's needs while volatilizing the perfume aroma and providing a lighting atmosphere; in particular, during use, the position of the bullet head and the light-emitting sheet is continuously adjusted through the cooperation of the regulator with the bullet head and the light-emitting sheet to achieve the effect of simulating the swaying candle flame during the burning process of the candle, thereby enhancing the user's experience; further, the present application also guides the discharge of perfume mist through a number of through holes on the bullet head, thereby cooperating with the swaying of the bullet head and the light-emitting sheet to simulate the smoke escape effect during the burning process of the candle, further enhancing the user's experience.

[0037] Example 1: Reference Figure 1 and Figure 2 As shown, a scent candle lamp comprises a main housing 1, with a perfume bottle 10 positioned within the main housing 1. A bullet-shaped head 11 is provided on the main housing 1 corresponding to the perfume bottle 10. A light-emitting element 2 is also connected to the main housing 1 for illuminating. During use, the perfume bottle 10 is restrained within the main housing 1, aligned with the bullet-shaped head 11 above and below. The perfume solution in the perfume bottle 10 evaporates toward the bullet-shaped head 11, from which it then dissipates into the air. During this process, the light-emitting element 2 is activated to simulate candlelight. The interaction between the perfume bottle 10 and the light-emitting element 2 provides both a pleasant aroma and a soft lighting effect.

[0038] Reference Figure 2 and Figure 3 As shown, the light-emitting element 2 is used for luminous illumination; specifically, the light-emitting element 2 includes:

[0039] The battery module 20 is located on the main housing 1 for energy supply.

[0040] The light-emitting sheet 21 is located on the bullet head 11 and is controlled by the electrical signal of the battery module 20 .

[0041] The adjusting guide rod 22 is inserted into the perfume bottle 10 and is limited to the bullet head 11 on the main shell 1 to correspond to the bullet head 11, and is used to guide the perfume to escape upward and to connect and install the bullet head 11.

[0042] During use, the battery module 20 controls the lighting of the light-emitting sheet 21 and guides the perfume solution in the perfume bottle 10 to the bullet head 11 for accumulation and then volatilization, thereby achieving the multi-purpose effect of providing a fragrance atmosphere and a lighting environment, thereby increasing the practical performance of the device.

[0043] Reference Figures 3 to 6 As shown, in order to guide the perfume solution in the perfume bottle 10 to the bullet head 11 for volatilization, a guide cavity is formed in the interior of the adjustment guide rod 22. A volatilizing stick 12 corresponding to the bullet head 11 is limitatively connected in the guide cavity. The volatilizing stick 12 is made of conventional absorbent cotton material, which is usually soft. The volatilizing stick 12 is limitatively inserted into the perfume bottle 10. The absorbent cotton material absorbs the perfume solution to guide the perfume atomization to the bullet head 11 for accumulation and then dissipation into the air, thereby achieving the effect of increasing the volatilization effect of the perfume in the perfume bottle 10.

[0044] Reference Figures 2 to 4 As shown, the battery module 20 includes a battery 200 confined within the main housing 1. Also confined within the main housing 1 is a functional circuit board 201 electrically connected to the battery 200. The battery 200 is preferably a rechargeable battery. During use, a user sends a signal to a chip on the functional circuit board 201, which controls the battery 200 to provide power to the light-emitting panel 21, thereby illuminating the light-emitting panel 21. Controlling the battery 200 via the functional circuit board 201 to illuminate the light-emitting panel 21 is a conventional technique and will not be described here.

[0045] Reference Figure 3 、 Figure 5 and Figure 7 As shown, a mounting seat 13 is provided on the adjustment guide rod 22, and the bullet head 11 is limitedly connected to the mounting seat 13. The upper limit of the mounting seat 13 is provided with a guide tube 14 and an atomizing plate 15 that cooperate with the bullet head 11. The atomizing plate 15 is controlled by the electrical signal of the functional circuit board 201.

[0046] It should be noted that the atomizer 15 is a conventional device for atomizing perfume solutions, and is usually made of piezoelectric ceramic material. When powered, the atomizer 15 will vibrate rapidly. Its atomization method is mainly to guide the perfume in the perfume bottle 10 to the atomizer 15 through the volatilizer rod 12, forming a thin liquid film. The vibration of the atomizer 15 then causes surface tension waves in this liquid film, causing the liquid film to break into tiny droplets. These tiny droplets quickly diffuse in the air, forming perfume mist that accumulates at the bullet head 11 and then escapes into the air.

[0047] During use, the perfume in the perfume bottle 10 is guided to the atomizing plate 15 by the volatile stick 12. The vibration of the atomizing plate 15 causes the perfume droplets to break up into perfume mist. The perfume mist is then guided to the bullet head 11 through the guide tube 14 for accumulation, and then further dissipated into the air through the bullet head 11.

[0048] As an embodiment, the flashing of the light-emitting sheet 21 can be controlled by a remote control and is divided into a timing mode and a brightness mode. The working time of the atomizer sheet 15 is controlled by the chip on the functional circuit board 201. In order to save the power consumption of the battery 200 and dilute the concentration of perfume in the air, the function of the atomizer sheet 15 is specially set to work for 5 seconds after power-on, and then work for 5 seconds after an interval of 180 seconds, and then work for 5 seconds after an interval of 300 seconds, and then work for 5 seconds after an interval of 600 seconds as a cycle, and cycle in sequence.

[0049] In order to make the top of the perfume volatilizing stick 12 better contact with the atomizing piece 15, a stainless steel spring (not shown in the figure) can be installed on the upper side of the volatilizing stick 12. First, it can reduce the length error of the volatilizing stick 12, and secondly, it can increase the contact degree between the volatilizing stick 12 and the atomizing piece 15.

[0050] Reference Figures 2 to 4 As shown, the main housing 1 further includes an aromatherapy base 16 that is coupled to the perfume bottle 10. A bottle mouth stopper 17 is provided on the aromatherapy base 16 and is penetrated by an adjustable guide rod 22. The volatile stick 12 is restrained by the adjustable guide rod 22 between the perfume bottle 10 and the atomizing element 15. Generally speaking, the mouth of the perfume bottle 10 is often designed with an external thread structure, so the aromatherapy base 16 is also configured as a threaded seat corresponding to the bottle mouth of the perfume bottle 10.

[0051] During use, the mouth of the perfume bottle 10 is positioned on the aromatherapy base 16, the mouth plug 17 is inserted into the mouth of the perfume bottle 10, the adjustment guide rod 22 is passed through the mouth plug 17 and extends into the perfume bottle 10, one end of the volatilizing stick 12 is extended into the perfume bottle 10 along the guide cavity on the adjustment guide rod 22 and approaches the bottom wall of the perfume bottle 10, and the other end of the volatilizing stick 12 is abutted against the atomizing plate 15. The perfume solution in the perfume bottle 10 is adsorbed to the atomizing plate 15 through the volatilizing stick 12, and the perfume is more easily dispersed into the air through the atomization treatment of the atomizing plate 15.

[0052] Reference Figure 2 and Figure 4 As shown, the volatilizing stick 12 is made of soft material and has a certain degree of flexible deformation capability.

[0053] Reference Figures 5 to 7 As shown, the hollow interior of bullet head 11 is connected to guide tube 14. A number of through-holes 110 are evenly formed throughout bullet head 11, connecting its interior to the outside world. The hollow structure of bullet head 11 and the connection between guide tube 14 ensure that the perfume mist, after being guided into bullet head 11, can smoothly escape through these through-holes 110. Furthermore, the even distribution of through-holes 110 also ensures a more uniform fragrance distribution, enhancing the user experience.

[0054] Reference Figure 7 As shown, a plurality of through holes 110 are provided on the upper side of the bullet head 11. During use, the through holes 110 on the upper side of the bullet head 11 allow the perfume mist accumulated in the bullet head 11 to be more easily concentrated and dispersed upward out of the bullet head 11, thereby guiding the dissemination path of the perfume mist and making the fragrance atmosphere more uniform.

[0055] Reference Figure 5 and Figure 7 As shown, a sealing ring 18 is sleeved around the outer edge of the atomizing plate 15, which is restrained on the mounting base 13. The sealing ring 18 is preferably made of silicone or an O-ring. During use, the sealing ring 18 not only secures the atomizing plate 15, preventing it from shifting or falling off during vibration, but also ensures a tight seal between the atomizing plate 15 and the mounting base 13, effectively preventing perfume mist from leaking through the gap between the atomizing plate 15 and the mounting base 13, thus avoiding waste. Furthermore, the sealing effect of the sealing ring 18 prevents dust, impurities, and other contaminants from entering the atomizing plate 15, thereby preventing it from affecting the quality of the perfume and the atomization effect.

[0056] Reference Figure 2 and Figure 3As shown, the underside of the main housing 1 is also provided with a fixed base 19, to which are connected a socket 202 and a switch 203 corresponding to the battery 200 and functional circuit board 201. During use, the socket 202 allows the user to charge or replace the battery module 20, ensuring the continuous and stable operation of the scented candle lamp. The switch 203 allows the user to conveniently turn the scented candle lamp on and off, making the entire product more user-friendly. As an optional embodiment, to prevent dust and water from entering the socket, a removable silicone dust plug (not shown) can be added to the socket.

[0057] Example 2: Reference Figure 5 As shown, on the basis of the first embodiment, in order to further enhance the user experience, an adjuster 3 for adjusting the position of the bullet head 11 and the light-emitting sheet 21 is further provided between the bullet head 11 and the perfume bottle 10; specifically, the adjuster 3 includes a connecting ring 30 limited on the main shell 1, a driving motor 31 is provided on the upper limit of the connecting ring 30, a driven rotating rod 32 is connected to the driving shaft of the driving motor 31, and a driving rotating block 33 is connected to the end of the driven rotating rod 32 away from the driving motor 31, and an adjusting sleeve 34 is provided on the eccentric limit of the driving rotating block 33 and is sleeved on the outside of the adjusting guide rod 22.

[0058] During use, the output shaft of the driving motor 31 rotates to drive the driven rotating rod 32 and the driving rotating block 33 to rotate synchronously. Due to the eccentric setting of the driving rotating block 33 and the adjusting sleeve 34, after the driving rotating block 33 rotates, the adjusting sleeve 34 will adjust the position height in the vertical direction as the driving rotating block 33 rotates. The sliding adjustment of the adjusting sleeve 34 in the vertical direction synchronously drives the adjusting guide rod 22 to adjust. The sliding adjustment of the adjusting guide rod 22 drives the bullet head 11 to slide adjustment, thereby driving the bullet head 11 to adjust its position, so as to increase the efficiency and effect of the dissipation of the perfume solution in the bullet head 11.

[0059] Further, refer to Figure 5 and Figure 6 As shown, the adjustment guide rod 22 includes a limiting sleeve 220 limited on the main shell 1, and a connecting sleeve 221 corresponding to the bullet head 11 is hinged on the limiting sleeve 220. The connecting sleeve 221 and the limiting sleeve 220 are preferably hinged through a ball shaft to make the deflection direction of the connecting sleeve 221 more variable. The volatile stick 12 is simultaneously passed through the limiting sleeve 220 and the connecting sleeve 221, and the adjustment sleeve 34 is simultaneously limited to the outside of the limiting sleeve 220 and the connecting sleeve 221.

[0060] In the initial state, the regulating sleeve 34 limits the limiting sleeve 220 and the connecting sleeve 221 together, so that the regulating sleeve 34, the limiting sleeve 220, the connecting sleeve 221 and the volatilizing stick 12 maintain an approximately vertical axial corresponding state.

[0061] During use, the eccentric rotation of the driving block 33 is driven to drive the adjusting sleeve 34 to slide and adjust in the vertical direction. After the adjusting sleeve 34 slides downward relative to the hinge point between the connecting sleeve 221 and the limiting sleeve 220, the length of the force arm of the restraining force of the adjusting sleeve 34 on the connecting sleeve 221 changes accordingly, and the restriction on the connecting sleeve 221 is also reduced accordingly. At this time, due to the hinge relationship between the limiting sleeve 220 and the connecting sleeve 221, the connecting sleeve 221 is affected by its own gravity and the gravity of the upper end bullet head 11, and tends to deflect to one side, and as the adjusting sleeve 34 moves downward, its deflection amplitude also increases accordingly.

[0062] When the adjusting sleeve 34 gradually returns to its original position and slides upward, the connecting sleeve 221 is also gradually adjusted accordingly. By driving the rotating block 33, the adjusting sleeve 34 is driven to slide back and forth up and down to achieve the continuous deflection adjustment of the connecting sleeve 221 and the bullet head 11, thereby effectively increasing the contact rate between the perfume solution at the bullet head 11 and the external air, that is, increasing the volatilization efficiency of the perfume solution at the bullet head 11.

[0063] At the same time, the bullet head 11 drives the light-emitting sheet 21 connected thereto to swing continuously, thereby simulating the swaying effect of the actual burning process of the candle flame, further enhancing the effect of simulating the candle lighting atmosphere.

[0064] Further, refer to Figure 8 and Figure 9 As shown, the regulator 3 further includes a guide gear ring 35 provided in the connecting ring 30 , a driven gear block 350 correspondingly meshed with the guide gear ring 35 is sleeved on the driven rotating rod 32 , and the driving motor 31 is slidingly limited on the connecting ring 30 . During use, after the driven rotating rod 32 is driven to rotate, the driven rotating rod 32 drives the driven gear block 350 to rotate synchronously, and the driven gear block 350 rotates circumferentially along the guide gear ring 35, and the driven gear block 350 rotates to drive the driven rotating rod 32, the driving rotating block 33, the adjusting sleeve 34 and the driving motor 31 to rotate circumferentially with the limiting sleeve 220 as the axis, so that the adjusting sleeve 34 is driven by the driving rotating block 33 to slide in the vertical direction, and is also driven by the driven gear block 350 to rotate circumferentially with the limiting sleeve 220 as the axis. Therefore, the connecting sleeve 221 and the bullet head 11 are driven to swing, and a certain centrifugal force is applied to the rotating adjusting sleeve 34, thereby increasing the dynamic swing effect of the bullet head 11 and the light-emitting sheet 21, further increasing the speed of the perfume fragrance dissemination and simulating the effect of the swaying candle.

[0065] Furthermore, the plurality of through-holes 110 on the bullet head 11 are preferably oriented vertically upward or at an angle. During use, after the perfume mist enters the bullet head 11 through the guide tube 14, due to its small mass and relatively weak gravity, the mist easily converges at the plurality of through-holes 110 on the bullet head 11 and is then discharged upward. At this point, the light-emitting sheet 21 is controlled to illuminate, driving the bullet head 11 and the light-emitting sheet 21 to oscillate, further simulating the effect of flickering candlelight and the escaping smoke during candle burning, thereby enhancing the simulated candle lighting atmosphere and effectively improving the user experience.

[0066] Example 3: Reference Figure 8 and Figure 9 As shown, on the basis of Example 1 and Example 2, in order to further improve the user experience when using the scented candle lamp, an adjusting screw 36 is passed through the upper limit position of the driving rotary block 33, and a driven slider 360 is threadedly sleeved on the adjusting screw 36. The driven slider 360 is connected to a guide disc 361, and an arc-shaped guide groove 362 is formed on the guide disc 361. The adjusting sleeve 34 is slidably limited in the guide groove 362 by the connecting slide rod 363.

[0067] When in use, by driving the adjusting screw 36 to rotate, the driven slider 360 slides and adjusts along the adjusting screw 36 and the driving block 33 through the thread, and the driven slider 360 moves to drive the guide disc 361 to slide and adjust synchronously, thereby achieving the effect of adjusting the eccentricity between the driven slider 360 and the guide disc 361 and the driving block 33. For example, when the adjusting screw 36 is driven to rotate in the forward direction, the driven slider 360 drives the guide disc 361 to slide and adjust in a direction closer to the bottom perfume bottle 10, so that the eccentricity of the driven slider 360 and the guide disc 361 relative to the driving rotary block 33 is reduced. At this time, the rotation radius of the eccentric rotation of the driven slider 360, the guide disc 361, and the adjusting screw 36 by the driving rotary block 33 is smaller. The reduced radius of the guide disc 361 means that the amplitude of the eccentric rotation of the guide disc 361 is also correspondingly reduced, thereby reducing the amplitude of the vertical sliding of the adjusting sleeve 34 driven by the guide disc 361 through the connecting slide rod 363. As a result, the change in the moment arm of the restraining force of the adjusting sleeve 34 relative to the connecting sleeve 221 is smaller, so that the amplitude of the swing of the connecting sleeve 221 is correspondingly reduced, thereby reducing the amplitude of the swing of the bullet head 11 and the light-emitting sheet 21.

[0068] When the adjusting screw 36 is driven to rotate in the opposite direction, the driven slider 360 and the guide disc 361 slide in the opposite direction, increasing their eccentricity relative to the driving block 33. This increases the swing amplitude of the connecting sleeve 221, the bullet head 11, and the light-emitting sheet 21. By adjusting the adjusting screw 36, the swing amplitude of the bullet head 11 and the light-emitting sheet 21 can be adjusted and controlled, further simulating the changes in candlelight and enhancing the user experience.

[0069] During operation: First, the perfume bottle 10 is restrained in the main body shell 1 and formed in a vertically corresponding position relationship with the bullet head 11. The volatilizing stick 12 is limitedly inserted into the perfume bottle 10, and the perfume solution in the perfume bottle 10 is guided to the atomizing piece 15 for atomization, and then guided to the bullet head 11 for accumulation, and then dissipated from the bullet head 11 into the air.

[0070] Step 2: During the evaporation of the perfume, the light-emitting element 2 is synchronously activated to simulate candlelight for illumination. The position of the bullet head 11 and the light-emitting sheet 21 connected thereto is controlled by the regulator 3 to simulate the changes in candle flame during actual candle burning. At the same time, by driving the continuous displacement of the bullet head 11, the perfume mist accumulated in the bullet head 11 is quickly dissipated into the air.

[0071] Step 3: The perfume mist in the bullet head 11 is guided to be discharged outward through the plurality of through holes 110 on the bullet head 11, and the continuously shifting bullet head 11 and the light-emitting sheet 21 are coordinated to further simulate the changing process of candle burning, thereby enhancing the user experience.

[0072] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as exemplary and non-restrictive.

[0073] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A scented candle lamp, comprising a main body shell (1), characterized in that: The main housing (1) is provided with a perfume bottle (10) within a limited position. The main housing (1) is provided with a bullet head (11) corresponding to the perfume bottle (10). The main housing (1) is also connected with a light-emitting element (2) for illuminating light. The light-emitting element (2) includes: A battery module (20) is located on the main housing (1) for supplying energy; A light-emitting sheet (21) is located on the bullet head (11) and is controlled by an electrical signal from a battery module (20); The adjusting guide rod (22) is inserted into the perfume bottle (10) and is limited to be matched with the bullet head (11) on the main body shell (1).

2. The scented candle lamp according to claim 1, characterized in that: The adjusting guide rod (22) is hollow inside to form a guide cavity, and a volatilizing stick (12) corresponding to the bullet head (11) is limitedly connected in the guide cavity. The volatilizing stick (12) is limitedly inserted into the perfume bottle (10) to guide the perfume to be atomized and emitted at the bullet head (11).

3. The scented candle lamp according to claim 1, characterized in that: The battery module (20) comprises a storage battery (200) confined within a main housing (1), and a functional circuit board (201) electrically connected to the storage battery (200) is also confined within the main housing (1).

4. The scented candle lamp according to claim 1, characterized in that: The adjusting guide rod (22) is provided with a mounting seat (13), the bullet head (11) is limitedly connected to the mounting seat (13), and the upper limit position of the mounting seat (13) is provided with a guide tube (14) and an atomizing plate (15) that cooperate with the bullet head (11), and the atomizing plate (15) is controlled by an electrical signal from the functional circuit board (201).

5. The scented candle lamp according to claim 4, characterized in that: The main body shell (1) is further provided with an aromatherapy base (16) which is connected to the perfume bottle (10). The aromatherapy base (16) is provided with a bottle mouth plug (17) which is penetrated by an adjustable guide rod (22). The volatilizing rod (12) is limited by the adjustable guide rod (22) to be located between the perfume bottle (10) and the atomizing plate (15).

6. The scented candle lamp according to claim 2, characterized in that: The volatile stick (12) is made of soft material and has a certain flexible deformation capability.

7. The scented candle lamp according to claim 4, characterized in that: The interior of the bullet head (11) is hollow and communicated with the guide tube (14). A plurality of through holes (110) are evenly formed on the bullet head (11) to communicate the interior with the outside.

8. The scented candle lamp according to claim 7, characterized in that: The plurality of through holes (110) are opened on the upper side of the bullet head (11).

9. The scented candle lamp according to claim 4, characterized in that: The outer edge of the atomizing plate (15) is sleeved with a sealing ring (18) which is limited to the mounting seat (13).

10. The scented candle lamp according to claim 3, characterized in that: A fixed base (19) is further provided on the lower side of the main housing (1), and a plug interface (202) and a switch (203) corresponding to the battery (200) and the functional circuit board (201) are connected to the fixed base (19).

Citation Information

Patent Citations

  • Fragrance candle lamp

    CN119468154A