Portable perfume device for both coating and bubble fragrance diffusion
By designing a portable perfume device that uses water and air pumps to generate fragrance bubbles, the shortcomings of existing perfume products in terms of spray control and evaporation speed are solved, achieving both efficient application and diffusion of perfume, thus improving the user experience and fragrance release effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-08
- Publication Date
- 2026-04-14
AI Technical Summary
Existing perfume products are difficult to precisely control the amount and direction of spray during application, resulting in unnecessary inconvenience. Furthermore, the spray droplets may irritate the skin or spread into the air. Solid perfumes evaporate slowly and have insufficient fragrance intensity, while roll-on perfumes are inconvenient to use and easily get dirty, failing to meet diverse usage needs.
Design a portable perfume device comprising a perfume container, a water pump, a nozzle, a porous application part, and an air pump. It generates fragrance bubbles that closely adhere to the skin by pumping liquid perfume, achieving both application and fragrance diffusion. It also features a refillable and replaceable structure.
The application performance of the perfume has been optimized, reducing unnecessary consumption, improving the flexibility of use and the continuous release of fragrance, avoiding the irritation and diffusion problems of spray droplets, and providing a better user experience.
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Figure CN121865989A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a portable perfume device that combines application and bubble-based fragrance dispersal. More specifically, this invention addresses the problems of existing technologies by allowing the direct use of existing perfumes without altering the perfume formulation. It features a replenishable and replaceable structure and can generate fragrance bubbles in a skin-adhering manner, thereby optimizing the application performance of the perfume. According to this invention, liquid perfume can be applied to the human body surface and can also generate fragrance bubbles on the surface for inhalation, thus achieving the dual function of application and bubble-based fragrance dispersal. Background Technology
[0002] In recent years, the perfume market has continued to grow rapidly. Taking the South Korean market as an example, the perfume market size has grown from approximately 600 billion won in 2019 to approximately 800 billion won in 2023, an increase of more than 30% in four years.
[0003] The market size is expected to expand to approximately 1 trillion won by 2025.
[0004] One of the main reasons for the rapid expansion of the perfume market is the impact of the COVID-19 pandemic. First, the prolonged pandemic-induced depression and sense of helplessness (the so-called "pandemic depression") led consumers to choose their favorite scents to alleviate their emotions and regulate their mood.
[0005] Secondly, the normalization of mask-wearing has reduced the demand for cosmetics. Instead, fragrance, as an important way to express individuality, is gaining popularity among consumers.
[0006] Traditional perfumes are mostly liquid perfumes in glass bottles, but with the diversification of perfume users and the increasing demand for perfumes that are not restricted by time and place, perfume products that are more portable and have more flexible usage methods have gradually emerged.
[0007] However, for spray perfumes, the perfume is usually sprayed out in the form of tiny droplets through a narrow nozzle, making it difficult for users to precisely control the amount and direction of spraying. This can easily result in excessive spraying or spraying in a direction that deviates from the intended direction.
[0008] Therefore, users may have to wash off the perfume that is on their skin, causing unnecessary inconvenience.
[0009] Furthermore, since spraying itself involves the diffusion of droplets, it becomes more difficult to apply fragrance locally to the skin.
[0010] Furthermore, alcohol, which constitutes a major proportion of the perfume ingredients, comes into direct contact with the skin when sprayed, and may cause irritation or skin discomfort depending on the specific circumstances; at the same time, the perfume diffuses into the air in the form of tiny droplets during the spraying process, which may also pose a risk of being inhaled by the user.
[0011] To address these shortcomings, products such as solid perfumes and roll-on perfumes have been developed. Solid perfumes are made by mixing fragrances with base materials such as waxes and oils to form a balm, cream, or stick. They are less prone to leakage issues like liquid perfumes during transport, and unlike alcohol-based perfumes, the fragrances do not evaporate quickly, thus reducing the need for airtight seals.
[0012] In addition, compared to alcohol-based perfumes, solid perfumes evaporate more slowly, allowing fragrance molecules to be retained for a longer time, resulting in better longevity and a softer fragrance.
[0013] At the same time, since its base material is not alcohol, it is also suitable for people who are more sensitive to alcohol.
[0014] However, due to its slower evaporation rate, its fragrance intensity is relatively insufficient, and when applied to the skin, the wax or oil base does not evaporate as quickly as alcohol, easily leaving residue on the skin surface, which may produce a sticky feeling rather than a refreshing feeling.
[0015] Roll-on perfumes were developed to address the inconvenience of carrying ordinary spray perfumes due to leakage and other issues. They feature a rollerball at the bottle opening, allowing the perfume to flow out through a tiny gap between the bottle opening and the rollerball. This design offers advantages such as easy control of the amount dispensed and convenient application to specific areas.
[0016] However, because it applies less perfume at once compared to spray perfumes, the fragrance diffusion is relatively weak, and the perfume cannot flow smoothly unless the roller is tilted downwards, it is inconvenient to use on certain areas.
[0017] In addition, when oil-based materials are used to improve diffusion, the oil-coated balls tend to attract dust and other foreign matter as the number of uses increases, causing the balls to get dirty easily and even leading to problems with smooth ball rotation. Summary of the Invention
[0018] Technical issues
[0019] This invention is proposed to solve the above-mentioned problems and practical needs. Its purpose is to improve and supplement the defects of the existing technology, and to enable the direct use of the original perfume without changing the perfume formulation, so as to achieve replenishment and replacement. At the same time, by generating fragrance bubbles that closely adhere to the skin and have optimized application performance, it provides a portable perfume device that can both apply liquid perfume to the human body surface and generate fragrance bubbles on the surface for smelling.
[0020] Technical solution
[0021] To achieve the above objectives, a portable perfume device combining application and bubble-based fragrance dispersal according to an embodiment of the present invention is a device that can be applied to a surface or dispersed by carrying fragrance through bubbles. It includes: a perfume container for containing liquid perfume; a flow path support communicating with one side of the perfume container; a water pump installed in the flow path support for pumping the liquid perfume; a nozzle connected to one end of the water pump; a spray section communicating with the nozzle and forming a spray orifice; a connector connecting the upper part of the flow path support and the lower part of the spray section, forming a communicating space within the spray section; a porous coating section fixed to one end of the spray section and spaced apart from the spray orifice to form a retention space; an air pump covering the outside of the flow path support and forming an air space for pumping air; and a removable cover spaced apart from the coating section and covering the flow path support along the outer periphery of the air pump.
[0022] Beneficial effects
[0023] According to the present invention, while supplementing and improving the problems of the prior art, the original perfume can be used directly without changing the perfume formulation, and it has the advantages of being replenishable and replaceable.
[0024] Furthermore, by generating fragrance bubbles that adhere closely to the skin and have optimized application properties, it is possible to continuously release fragrance while carrying it.
[0025] Furthermore, the fragrance bubbles do not completely detach from the porous coating area. Instead, only some bubbles are exposed to the outside when pressurized, and then re-penetrate into the coating area when the pressure is released, thus producing fragrance only on the exposed parts and effectively saving perfume.
[0026] Furthermore, compared to spray-type perfumes, this invention can significantly reduce unnecessary perfume consumption; and unlike spray methods where spray efficiency decreases during decompression, this invention allows for free adjustment of the pressure level, thereby improving the flexibility of use. Attached Figure Description
[0027] Figure 1This is a perspective view of a portable perfume device that combines application and bubble-based fragrance dispersing according to an embodiment of the present invention.
[0028] Figure 2 yes Figure 1 Internal sectional view of part (a).
[0029] Figure 3 yes Figure 1 Internal sectional view of section (b).
[0030] Figure 4 This is an exploded perspective view of a portable perfume device that combines application and bubble-based fragrance dispersing according to an embodiment of the present invention.
[0031] Figure 5 This is a perspective view of a portable perfume device that combines application and bubble-based fragrance dispersing according to another embodiment of the present invention.
[0032] Figure 6 yes Figure 5 Internal sectional view of part (a).
[0033] Figure 7 yes Figure 5 Internal sectional view of section (b).
[0034] Figure 8 This is an exploded perspective view of a portable perfume device that combines application and bubble-based fragrance dispersing according to another embodiment of the present invention. Detailed Implementation
[0035] The present invention can be modified in various ways and has multiple embodiments. Therefore, specific embodiments are shown in the accompanying drawings and described in detail in the detailed description.
[0036] However, this is not intended to limit the invention to specific embodiments, but should be understood to include all variations, equivalents and substitutions that fall within the scope of the inventive concept and technology.
[0037] When it is mentioned that a constituent element is "connected" or "continued" to another constituent element, it should be understood that it can be a direct connection or continuation, or it can be a connection or continuation in the presence of other constituent elements.
[0038] Conversely, when it is mentioned that a constituent element is "directly connected" or "directly succeeded" to another constituent element, it should be understood that there are no other constituent elements between them.
[0039] The terminology used in this specification is for illustrative purposes only and is not intended to limit the scope of the invention. Unless the context clearly indicates otherwise, the singular form includes the plural form.
[0040] In this specification, terms such as "comprising" or "having" mean the presence of the described features, values, steps, actions, constituent elements, components or combinations thereof, and do not exclude the possibility that one or more other features, values, steps, actions, constituent elements, components or combinations thereof may also exist or be added.
[0041] Terms such as “first” and “second” can be used to describe various constituent elements, but should not be used to limit the corresponding constituent elements. These terms are only used to distinguish one constituent element from another.
[0042] Furthermore, the terms "...part" and similar terms used in the specification refer to a unit that performs at least one function or action, which can be implemented by hardware, software, or a combination of hardware and software.
[0043] Furthermore, the constituent elements in the embodiments illustrated in conjunction with the accompanying drawings are not limited to the corresponding embodiments, and may be implemented in other embodiments without departing from the technical concept of the present invention; in addition, even if not otherwise stated, multiple embodiments may be integrated and reimplemented into one embodiment.
[0044] Furthermore, when describing the elements in conjunction with the accompanying drawings, regardless of the reference numerals in the drawings, the same or related components are assigned the same or related reference numerals, and repeated descriptions of them are omitted.
[0045] In describing this invention, detailed descriptions of related well-known technologies are omitted if it is believed that their specific descriptions may unnecessarily obscure the essence of this invention.
[0046] Figure 1 This is a perspective view showing the appearance of a portable perfume device that combines application and bubble diffusion according to an embodiment of the present invention. Figure 2 It shows Figure 1 (a) Internal sectional view, Figure 3 It shows Figure 1 (b) Internal sectional view, Figure 4 This is an exploded perspective view of a portable perfume device that combines application and bubble diffusion according to an embodiment of the present invention.
[0047] also, Figure 5 This is a perspective view showing the appearance of a portable perfume device that combines application and bubble diffusion according to another embodiment of the present invention. Figure 6 It shows Figure 5 (a) Internal sectional view, Figure 7 It shows Figure 5 (b) Internal sectional view, Figure 8 This is an exploded perspective view of a portable perfume device that combines application and bubble diffusion according to another embodiment of the present invention.
[0048] in, Figure 1 (a) indicates that the cover shell 190 is in the closed state. Figure 1 (b) indicates that the cover shell 190 has been removed and is in the open state.
[0049] also, Figure 5 (a) indicates that the gas cover 280 is in the closed state. Figure 5 (b) indicates the state in which the gas cover 280 is removed and fixed to the lower part of the housing 220.
[0050] Referring to the above figures, a portable perfume device 100 for both application and bubble-based fragrance dispersal according to an embodiment of the present invention is a device that can be applied to a surface or dispersed by carrying fragrance through bubbles. It includes: a perfume container 110 for containing liquid perfume; a flow path support 120 communicating with one side of the perfume container 110; a water pump 130 installed within the flow path support 120 for pumping the liquid perfume; a nozzle 140 connected to one end of the water pump 130; and a spray section 150 communicating with the nozzle 140 and forming a spray port 151. The following components are provided: a connector 160 connecting the upper part of the flow path support 120 to the lower part of the spray section 150, and having a connecting space 161 inside; a porous coating section 170 fixed to one end of the spray section 150, spaced apart from the spray nozzle 151 and forming a retention space 171; an air pump 180 covering the outside of the flow path support 120 and forming an air space 181 for pumping air; and a removable cover shell 190 spaced apart from the coating section 170 and covering the flow path support 120 along the outer periphery of the air pump 180.
[0051] Furthermore, when one of the perfume container 110 and the cap shell 190 is fixed and the other is repeatedly pressed (or when the perfume container 110 supported by the cap shell 190 is repeatedly pressed), the water pump 130 is pumped by the flow path support member 120 connected to the perfume container 110, so that the perfume in the perfume container 110 is discharged through the spray nozzle 151 and adheres to the inner peripheral surface of the coating part 170, and wets the outer peripheral surface of the coating part 170 through the micropores of the coating part 170.
[0052] Furthermore, when the air pump 180 exposed from the cover shell 190 is repeatedly pressed, the air in the air space 181 is discharged to the stagnation space 171 through the air hole 155 formed on one side of the spray section 150, and together with the liquid perfume droplets attached to the inner peripheral surface of the coating section 170, bubbles carrying vaporized perfume are generated and dispersed on the outer peripheral surface of the coating section 170 through the micropores of the coating section 170.
[0053] Furthermore, the perfume container 110 can be detachably connected to one side of the flow path support 120.
[0054] In addition, the flow path support 120 has a vent 121 formed along its outer length direction to communicate with the air space 181.
[0055] In addition, the air pump 180 can be in a stretchable, flexible donut shape.
[0056] According to another embodiment of the present invention, a portable perfume device 200 that combines application and bubble diffusion is a device that can be applied to a surface or diffuse fragrance by carrying it through bubbles. It includes: a perfume container 210 for containing liquid perfume; a housing portion 220 covering the exterior of the perfume container 210 and forming an air passage 221 along its length between the housing portion 220 and the perfume container 210; a water pump 230 installed inside the perfume container 210 for pumping the liquid perfume; and a device with the water pump 230... A nozzle 240 connected at one end; a spray section 250 communicating with the nozzle 240 and forming a spray port 251; a connector 260 connecting the upper part of the housing section 220 and the lower part of the spray section 250 and forming a connecting space 261; a porous coating section 270 fixed to one end of the spray section 250 and spaced apart from the spray port 251 to form a retention space 271; and a gas-use cap 280 that covers the coating section 270 at intervals and forms a cap ring 281 that can be detachably connected to the upper side of the connector 260.
[0057] Furthermore, when the gas cap 280, which is supported by the housing portion 220 covering the perfume container 210, is pressed repeatedly, the water pump 230, which is linked to the perfume container 210, pumps the perfume, causing the perfume in the perfume container 210 to be discharged through the spray nozzle 251 and adhere to the inner peripheral surface of the coating portion 270, and to wet the outer peripheral surface of the coating portion 270 through the micropores of the coating portion 270.
[0058] Furthermore, when the gas-use cap 280 is disassembled and attached to the lower end of the housing portion 220, and the gas-use cap 280 is repeatedly pressurized, air is discharged along the air flow channel 221 and through the air hole 255 formed on one side of the spray portion 250 to the stagnation space 271. Together with the liquid perfume droplets attached to the inner peripheral surface of the coating portion 270, the air passes through the micropores of the coating portion 270 and generates bubbles carrying vaporized perfume on the outer peripheral surface of the coating portion 270, which are then dispersed.
[0059] Furthermore, the tip of the gas-cap 280 can be in the shape of a flexible, soft capsule.
[0060] In addition, the spray sections 150 and 250 may form at least one or more wedge-shaped branching grooves 152 and 252 that branch in multiple directions at the ends of the horn-shaped spray nozzles 151 and 251.
[0061] Furthermore, the pore size of the coating portions 170 and 270 can be from 5 μm to 150 μm.
[0062] Furthermore, the coating portions 170 and 270 may have a hollow, dome-shaped tip that extends outward in a straight line.
[0063] Furthermore, the coating portions 170 and 270 may be made of any one or more of the following materials: porous plastic, porous ceramic, porous rubber, and porous fiber.
[0064] In addition, sealing elements 101 and 201 can be provided between the spray sections 150 and 250 and the connecting members 160 and 260 to achieve sealing.
[0065] In addition, the liquid perfume may include essential oils, aromatic oils, or scented liquids.
[0066] The structure and working process of the portable perfume devices 100 and 200, which combine application and bubble diffusion according to embodiments of the present invention, will be described in detail below.
[0067] The present invention aims to improve the problems of the prior art and provide a portable perfume device 100, 200, which allows the use of the original perfume without changing the perfume formulation and enables replenishment and replacement, and includes a component for generating fragrance bubbles that conform to the skin and optimize the application performance.
[0068] A portable perfume device 100 according to an embodiment of the present invention is a device that can be applied to a surface or carry and diffuse fragrance in the form of bubbles, such as... Figures 1 to 4 As shown, it mainly includes a perfume container 110, a flow path support 120, a water pump 130, a nozzle 140, a spraying part 150, a connector 160, a porous coating part 170, an air pump 180, and a cap shell 190, etc.
[0069] like Figure 2 and Figure 3 As shown, the perfume container 110 is a container for holding liquid perfume, and its shape can vary, as long as it can hold liquids such as perfume.
[0070] Furthermore, the perfume container 110 is sealed to the flow path support 120, so that the water pump 130 can deliver the perfume in the perfume container 110 to the upper part, that is, to the nozzle 140.
[0071] Specifically, the perfume container 110 is a container capable of holding liquid perfume, which can be detachably connected to one side of the flow path support 120 and communicates with the flow path support 120 in the combined state.
[0072] In addition, the upper part of the perfume receiving part 110 can be sealed to the lower part of the flow path support 120 by means of threaded connection or interference fit, thereby preventing unnecessary leakage of perfume.
[0073] At this time, a sealing element 102 made of elastic material, such as an O-ring, may be provided inside the upper part of the perfume container 110 to achieve a reliable airtight seal.
[0074] That is, the sealing member 102 is disposed between the perfume receiving part 110 and the flow path support member 120, so that the perfume receiving part 110 can be airtightly connected to the flow path support member 120 and achieve sealing.
[0075] In addition, to prevent the perfume from deteriorating, the perfume container 110 can be made of materials such as glass or engineering plastics (e.g., polycarbonate (PC)). During carrying, to prevent the glass from breaking, the glass can be surface treated or made of special materials such as tempered glass.
[0076] The flow path support 120 is connected to one side of the perfume container 110, forming a passage for pumping the liquid perfume in the perfume container 110 to the water pump 130, while also supporting the water pump 130.
[0077] Specifically, such as Figure 4 As shown, the flow path support 120 can be a hollow cylindrical structure with a concave and narrowed shape in the center along the radial direction, and is connected to the perfume container 110. Its lower part is an open structure to facilitate the replenishment of perfume, etc., and is connected to the perfume container 110.
[0078] In addition, the inner circumferential surface of the flow path support 120 may be threaded to allow for separation or fastening with the perfume container 110, thereby enabling detachable installation.
[0079] In addition, such as Figure 2 As shown, the flow path support 120 has a vent 121 formed along its outer length direction to communicate with the air space 181.
[0080] like Figure 2 and Figure 3 As shown, the water pump 130 is a device for pumping liquids, which is installed in the perfume container 110 and is used to pump liquid perfume.
[0081] It should be noted that the water pump 130 is a pumping device capable of pumping various liquids, including liquid perfume. The use of "water" in the name is only for easy intuitive understanding and does not limit the liquid it pumps to water.
[0082] At this time, the water pump 130 can be installed in the perfume container 110 in an airtight state at the top, and has an elastic component such as a spring (not shown) built in the direction of the nozzle 140, so that it can extend and retract up and down and perform pumping operation to realize the pumping of liquid perfume.
[0083] Furthermore, since the water pump 130 is in a sealed state similar to existing perfume bottles, and only the nozzle 140 is located inside the spraying part 150, even if the coating part 170 is exposed to air, only the perfume adsorbed in the coating part 170 will evaporate, while the perfume in the perfume container 110 can still be well preserved.
[0084] Therefore, unlike methods that simply spray perfume into the air, the water pump 130 can simultaneously optimize both sealing and application performance.
[0085] like Figure 2 and Figure 3 As shown, the nozzle 140 is connected to one end of the water pump 130 and is combined with the lower part of the spray section 150, for appropriately delivering the liquid perfume pumped by the water pump 130 to the spray section 150 between the water pump 130 and the spray section 150.
[0086] Specifically, the nozzle 140, which is linked to the water pump 130, is connected to the injection port 151 and can move up and down during pumping.
[0087] In addition, the nozzle 140 is a tubular mechanical component used to determine the direction of fluid flow and to control the fluid characteristics such as flow rate, velocity, direction and pressure of the flowing perfume.
[0088] like Figure 2 and Figure 3 As shown, the spraying part 150 is used to support and fix the lower part of the application part 170, and is closely connected to the nozzle 140, which is used to deliver and spray perfume and is connected to the water pump 130. Its spraying port 151 forms a conical or trumpet-shaped structure that is narrower at the bottom and wider at the top, so that the perfume can be sprayed upwards fully.
[0089] However, the nozzle 151 is not limited to a specific shape; any structural form that can achieve sufficient upward spraying is applicable.
[0090] Furthermore, the spray section 150 has at least one or more wedge-shaped branched grooves 152 formed at the end of the spray nozzle 151, giving it an overall structure similar to a calyx.
[0091] That is, such as Figure 2 and Figure 3 As shown, the bifurcated groove 152 can form a structure in which the upper part is split into at least one or more segments, and the lower part is connected to each other to form a cylindrical structure.
[0092] Furthermore, the branched groove 152 allows perfume that fails to be immediately absorbed by the coating section 170 during spraying and flows along the inner wall of the coating section 170 to be dispersed into the coating section 170 in a short time through multiple branched spray nozzles at the upper part of the spray nozzle 151, so that it can be fully and completely absorbed without residue.
[0093] However, the bifurcation groove 152 is not limited to a specific shape; any structural form that can achieve the best dispersion and absorption effect is applicable.
[0094] The spray section 150 is connected to the nozzle 140 and forms a spray port 151 for spraying. The spray port 151 has a trumpet-shaped structure and at its end, at least one or more wedge-shaped bifurcated grooves 152 are formed.
[0095] In addition, the jet section 150 may include an air passage that extends through its interior, namely an air hole 155 for allowing air supplied by the air pump 180 to pass through.
[0096] That is, when the air pump 180 is pressed by hand, the pressurized air in the air pump 180 is transmitted along the air channel formed on the outer length direction of the flow path support 120, i.e., the vent hole 121, to the connection space 161 inside the connector 160, and further transmitted to the coating part 170 via the air hole 155 formed in the spray part 150.
[0097] like Figures 2 to 4 As shown, the connector 160 is a connecting member with a hollow connecting space 161 inside, which is used to connect the upper part of the flow path support 120 and the lower part of the spray section 150.
[0098] That is, the connector 160 is used to connect and fix the flow path support 120 to the spray part 150 so that it can achieve a sealed connection, and at the same time, a cavity-shaped connection space 161 is formed inside it.
[0099] At this time, the connector 160 makes the flow path support 120 and the spray section 150 airtightly connected, so that the pressurized air in the air pump 180 can be completely transmitted to the coating section 170 through the connection space 161.
[0100] Furthermore, the connector 160 may have a seal 101 made of elastic material, such as an O-ring, embedded or built into its upper part to form a gapless seal with the lower part of the spray section 150, thereby preventing leakage of liquids and gases.
[0101] like Figures 2 to 4 As shown, the porous coating part 170 is a porous coating component fixed to one end of the spraying part 150 and is spaced apart from the spraying nozzle 151, thereby forming a retention space 171.
[0102] Specifically, the coating part 170 is made of a porous material that can fully absorb and retain the perfume so that the perfume can be smoothly applied and delivered to the skin surface; it is not easy to deform or change even with repeated contact with the skin, and it is harmless to the human body in terms of physical and chemical aspects. The material can be porous plastic, porous ceramic, porous rubber or porous fiber.
[0103] Among them, plastic materials with porous structures are more suitable for the above conditions, such as porous polyethylene (PE) and porous polyurethane (PU).
[0104] Furthermore, the shape of the coating part 170 can be implemented in various ways, as long as it is a shape suitable for coating, such as columnar, spindle-shaped, etc., and the coating part 170 can be separated from the connector 160 to realize a replaceable structure.
[0105] Meanwhile, the coating portion 170 may have an internally hollow structure and a predetermined thickness for optimizing perfume absorption and release.
[0106] Specifically, the coating portion 170 has an internally hollow dome-shaped tip that extends linearly along the axial direction, thereby providing a structure that facilitates coating; at the same time, its pore size needs to be kept in the range of 5μm to 150μm.
[0107] For reference, through internal experimental verification, when the pore size of the coating part 170 is in the range of 5μm to 150μm, it can meet the conditions for surface wetting coating performance and fragrance bubble generation.
[0108] Furthermore, the coating portion 170 may be made of any one or more materials selected from porous plastics, porous ceramics, porous rubber, and porous fibers.
[0109] like Figure 2 and Figure 3 As shown, the air pump 180 is a device that supplies air by pressing, and it covers the outside of the flow path support 120 to form an air space 181 for pumping air.
[0110] In addition, the air pump 180 may be a soft doughnut-shaped or hollow cylindrical structure covering the flow path support 120, and is located near the perfume container 110 containing the portable perfume, thereby participating in the generation of fragrance bubbles.
[0111] That is, in order to maximize the portability and ease of operation of the portable perfume device, the air pump 180 can be airtightly integrated into the remaining space on the outside of the flow path support 120.
[0112] When the air pump 180 is pressurized by hand, the pressurized air in the air pump 180 is delivered to the connection space 161 inside the connector 160 through the vertical air flow channel (i.e., the vent 121) formed along the length of the outer side of the flow path support 120, which is connected to the air pump 180, and further transmitted to the retention space 171 in the coating part 170 through the air flow channel (i.e., the air hole 155) in the spray part 150.
[0113] Furthermore, as the air is released to the outside of the coating part 170 through the micropores, the perfume in the micropores is also brought into the air.
[0114] At this time, the connector 160 is airtightly connected to the flow path support 120 and the spray section 150, so that the pressurized air in the air pump 180 can be completely transmitted to the coating section 170 through the air flow channel.
[0115] During this process, due to the pressure, the perfume is expelled from the micropores in the form of bubbles, thus generating fragrance bubbles.
[0116] Furthermore, the faster the pressurization speed, the faster the fragrance of the perfume can be released.
[0117] In addition, depending on the material or hardness characteristics of the air pump 180, an air vent hole (not shown) may be formed on the surface of the air pump 180 to achieve smooth rebound when the pressurization is released.
[0118] Compared to the fine droplets formed when spraying, fragrance bubbles promote the diffusion of fragrance particles, thus helping to enhance the intensity of fragrance diffusion.
[0119] In addition, the fragrance bubbles do not completely detach from the coating portion 170. Instead, only some bubbles are exposed to the outside when pressurized, and then re-infiltrate into the coating portion 170 when the pressurization is released. Therefore, fragrance is only generated in the exposed areas.
[0120] Therefore, compared with spray form, unnecessary perfume consumption is significantly reduced, and unlike spray form, which has significantly reduced spray efficiency when depressurized, the present invention can freely adjust the pressure level.
[0121] By applying pressure, the perfume contained inside the coating section 170 can also be exposed to the outside, so that the application is no longer limited to the outer surface of the coating section 170, which can solve the problem that the perfume inside the coating section 170 cannot be fully used and is lost to the air when not in use.
[0122] Furthermore, by forming micropores on the coating portion 170, fragrance particles can be diffused directly without generating fragrance bubbles.
[0123] When the application portion 170 that generates fragrance bubbles is applied to the skin, the fragrance particles are applied to the skin surface in the form of bubbles rather than liquid. Therefore, it is superior in terms of application smoothness compared to the direct application of solid or liquid perfumes such as solid perfumes or roll-on perfumes, and the same fragrance intensity and fragrance coverage area can be achieved with less amount.
[0124] like Figure 2 and Figure 3 As shown, the cover shell 190 is spaced apart from the coating part 170, and covers the flow path support 120 along the outer periphery of the air pump 180, and is detachable.
[0125] That is, the cover shell 190 serves as a covering component, which can completely cover the coating part 170 when not in use, so as to minimize the unnecessary evaporation and loss of the perfume adsorbed by the coating part 170.
[0126] In addition, the cover shell 190, apart from the perfume container 110 used to confirm the remaining amount of perfume, can completely cap the other parts, thereby forming a more perfume-like appearance and further highlighting the overall image of the perfume product.
[0127] Furthermore, by diversifying the design of the cover shell 190, various styles and images of the perfume can be expressed.
[0128] In summary, to achieve stable release of perfume, the device can be flipped so that the application part 170 is below and the perfume receiving part 110 is above, so that the perfume can be continuously delivered from the perfume receiving part 110 to the nozzle 140, and the application part 170 can be prompted to absorb the perfume by repeatedly pressing the perfume receiving part 110.
[0129] At this time, the cover shell 190, which covers the application part 170 to the perfume receiving part 110, is fixed to the lower end of the spraying part 150, and the water pump 130 can be driven to move up and down when the perfume receiving part 110 is pressed.
[0130] Alternatively, without flipping the device, a connecting tube can be inserted into the perfume container 110, and the perfume in the perfume container 110 can be directly delivered to the application part 170 by pressing the application part 170 or the cover shell 190 used to cover it.
[0131] For example, unlike spray perfumes which diffuse unevenly in the air, the present invention absorbs perfume through the coating part (170) covering the spray nozzle 151, so that the coating part 170, which absorbs an appropriate amount of perfume, remains in a liquid state for a longer period of time, and the perfume contained in its micropores is evenly applied to the human skin or fiber surface in contact with it, or the micropores are used to achieve the fine diffusion of fragrance in the air.
[0132] Furthermore, even if excessive pumping results in a larger amount of perfume being delivered to the coating section 170, the perfume can be stably maintained thanks to the ample absorption capacity of the porous coating section 170, thereby minimizing perfume leakage and unnecessary losses.
[0133] Furthermore, the perfume that seeps out through the dense micropores of the coating section 170 can adhere to the surface in a thin layer, exhibiting excellent coating performance similar to that of a coating. It is not only suitable for the skin but can also be applied to the hair and is easy to apply to various fibrous materials.
[0134] The application part 170 can be made into a cylindrical, spindle-shaped or other shape suitable for application. It is extremely easy to operate when used on the human body, and can remain in a liquid state for a long time after absorbing perfume. Therefore, unlike spray perfume or roll-on perfume, it can be applied in any direction and on any part.
[0135] Furthermore, the fragrance components are retained within the micropores of the application portion 170, thereby inhibiting their rapid evaporation and allowing only the alcohol components to evaporate preferentially, so that the fragrance particles adhere to the skin only when the application action occurs.
[0136] Meanwhile, the microporous structure of the coating portion 170 and its friction on the skin help to selectively promote the rapid evaporation of alcohol and accelerate the diffusion of fragrance particles.
[0137] The rapid evaporation of alcohol enhances the refreshing feeling and reduces skin irritation.
[0138] The micropores of the coating portion 170 have a capacity sufficient to hold the perfume and are sufficiently dense to be applied to the human body. The micropore structure can be configured to suit the application based on the shape, size and thickness of the coating portion 170.
[0139] On the other hand, in addition to perfume, the portable perfume used in this invention can also contain aromatic solutions such as essential oils in the perfume container 110, so that the solution absorbed by the application part 170 can be applied locally to the skin or used by inhalation, thereby simplifying aromatherapy.
[0140] Since aromatic solutions are usually highly concentrated solutions of pharmacological components, appropriate use is more beneficial to human health. The application part 170, with its micropores and ease of application, allows for localized application only to the desired area; and since it is not directly inhaled, but rather indirectly inhaled through the micropores and aroma bubbles of the application part 170, it poses less harm to the human body and is therefore practical.
[0141] In addition, the fragrance liquid can be absorbed into the application part 170 and diffused into the air by natural evaporation or with the help of a fan, thus serving as a diffuser.
[0142] In addition, although it is referred to as perfume in this invention, an aqueous liquid containing fragrance substances can also be used; in this case, the application portion 170 can be hydrophilized or made to contain a hydrophilic material to adapt to the application of the aqueous liquid.
[0143] That is, the portable perfume involved in this invention is applicable to all scented liquids.
[0144] Therefore, according to an embodiment of the present invention, when the perfume container 110 supported by the cover shell 190 is repeatedly pressed, the flow path support member 120 connected to the perfume container 110 causes the water pump 130 to pump, so that the perfume originally contained in the perfume container 110 is discharged through the spray nozzle 151 and adheres to the inner peripheral surface of the application part 170. Then, the outer peripheral surface of the application part 170 is moistened through the micropores of the application part 170, so that it can be applied or adhered to the skin or hair.
[0145] Furthermore, in a portable perfume device 100 of the present invention, when the air pump 180 exposed in the cover shell 190 is repeatedly pressurized, the air originally present in the air space 181 is discharged through the air hole 155 provided on one side of the spray section 150 and enters the stagnation space 171. It works together with the perfume droplets attached to the inner peripheral surface of the coating section 170 to form and release bubbles containing vaporized perfume on its outer peripheral surface through the micropores of the coating section 170, thereby realizing the diffusion of fragrance.
[0146] According to another embodiment of the present invention, a perfume device 200 relates to a device that can be applied to a surface or carry and diffuse fragrance through bubbles, such as... Figures 5 to 8 As shown, it includes a perfume container 210, a housing 220, a water pump 230, a nozzle 240, a spraying part 250, a connector 260, a porous coating part 270, and a gas-operated cap 280, etc.
[0147] According to another embodiment of the present invention, the perfume receiving portion 210, such as Figure 6 and Figure 7 As shown, this is a container for holding liquid perfume, and various shapes and structures are available to hold liquids such as perfume.
[0148] In addition, the perfume container 210 and the housing 220 are sealed and protected, so that the water pump 230 can deliver the perfume in the perfume container 210 to the upper part, i.e. the nozzle 240.
[0149] In addition, to prevent the perfume from deteriorating, the perfume container 210 can be made of materials such as glass or engineering plastics (e.g., polycarbonate PC); when used for portable purposes, to prevent the glass from breaking, the glass can be specially treated or special materials such as tempered glass can be used.
[0150] However, although the shape of the perfume container 210 is different from that of the perfume container 110 in one embodiment of the present invention, its function of holding liquid perfume is the same or similar.
[0151] like Figure 6 and Figure 7 As shown, the housing portion 220 is used to accommodate the perfume receiving portion 210, and an air flow channel 221 is formed on the outside of the perfume receiving portion 210 to form a housing component.
[0152] That is, such as Figure 7 As shown, while covering the outside of the perfume container 210, the housing portion 220 forms an airflow channel 221 along the length direction between the perfume container 210 and the housing portion 220 to provide an airflow passage generated by the air-use cap 280.
[0153] In addition, such as Figure 6 and Figure 7As shown, the housing portion 220 has a housing hole 222 at the bottom so that the air generated by the air-use cover 280 can enter the air flow channel 221 through the housing hole.
[0154] like Figure 6 and Figure 7 As shown, the water pump 230 is installed in the perfume container 210 for pumping liquid perfume. It is the same as or similar to the water pump 130 described in one embodiment of the present invention, so repeated content is omitted here.
[0155] like Figure 6 and Figure 7 As shown, nozzle 240 is connected to one end of water pump 230 and is combined with the lower part of spray section 250, for properly transferring the liquid perfume pumped by water pump 230 to spray section 250 between water pump 230 and spray section 250.
[0156] That is, the nozzle 240 linked with the water pump 230 is the same as or similar to the nozzle 140 described in one embodiment of the present invention, so repeated content is omitted here.
[0157] like Figure 6 and Figure 7 As shown, the spray section 250 is used to support and fix the lower part of the application section 270, and is tightly coupled with the nozzle 240, which is used to deliver and spray perfume and is connected to the water pump 230, and is tightly coupled with the nozzle 140, which is used to deliver and spray perfume and is connected to the water pump 130. Its spray nozzle 251 forms a conical or trumpet-shaped structure that is narrower at the bottom and wider at the top, so that the perfume can be fully sprayed upward.
[0158] In addition, the end of the spray hole 251 of the spray section 250 may be formed with at least one or more wedge-shaped branching grooves 252, giving the whole structure a structure similar to a calyx.
[0159] In addition, the injection section 250 may include an air hole 255 as an air passage to allow air supplied by the air-compatible cover 280 to pass through.
[0160] That is, when the space provided on the air-use cover 280 is pressed repeatedly by hand, the pressurized air in the air-use cover 280 is transmitted to the connection space 261 inside the connector 260 through the air flow channel 221 formed in the housing portion 220, and then transmitted to the coating portion 270 through the air passage, i.e. the air hole 255 in the spray portion 250.
[0161] Furthermore, the spray section 250 is the same as or similar to the spray section 150 in one embodiment of the present invention, so repeated content is omitted here.
[0162] Connector 260 Figures 6 to 8As shown, a hollow connecting space 261 is formed inside, which is used to connect the upper part of the housing part 220 and the lower part of the spraying part 250.
[0163] That is, the connector 260 can be used to connect and fix the housing part 220 and the spray part 250 to achieve a seal, while forming a cavity-shaped connection space 261 inside it.
[0164] At this time, the connector 260 seals the housing portion 220 with the spray portion 250, so that the pressurized air in the space formed by the housing portion 220 and the air cover 280 can be completely transmitted to the coating portion 270 through the connecting space 261.
[0165] In addition, the connector 260 has an O-ring or other elastic sealing member 201 embedded or built into its upper interior to tightly seal with the lower part of the spray section 250, thereby preventing leakage of liquid and gas.
[0166] Furthermore, connector 260 is the same as or similar to connector 160 in one embodiment of the present invention, so repeated details are omitted here.
[0167] Porous coating part 270 Figures 6 to 8 As shown, it is fixed to one end of the spray section 250 and spaced apart from the spray nozzle 251, thereby forming a retention space 271, which constitutes a porous coating component.
[0168] That is, the application part 270 is made of a porous material, which can fully absorb and retain the fragrance so as to smoothly deliver the fragrance to the skin. The application part will not denature or deform when it comes into repeated contact with the skin, and is harmless to the human body in terms of physical and chemical properties. It can be made of materials such as porous plastics, porous ceramics, porous rubber or porous fibers.
[0169] Among them, porous plastics such as porous polyethylene (PE) and porous polyurethane (PU) can also meet the requirements.
[0170] Furthermore, the shape of the coating section 270 can be varied, and any shape suitable for coating, such as columnar or spindle-shaped, can be used. In addition, the coating section 270 can be separated from the connector 260, thereby enabling replacement.
[0171] In addition, the coating part 270 has an internal hollow structure and can have a certain thickness to optimize the absorption and release of the perfume.
[0172] Furthermore, the coating section 270 is the same as or similar to the coating section 170 in one embodiment of the present invention, so repeated content is omitted here.
[0173] like Figure 6 and Figure 7As shown, the air cover 280 is a protective covering component that surrounds but is spaced from the coating portion 270 and has a cover ring 281 that can be detachably connected to the upper side of the connector 260.
[0174] In addition, the tip of the air-use cap 280 can be a flexible, soft capsule shape, spaced apart from the coating part 270 and connected to the connector 260, and can be disassembled through one side of the connector 260 and the cap ring 281.
[0175] That is, the air-compatible cap 280 serves as a covering component, which can completely cover the coating part 270 when not in use, so as to minimize unnecessary loss of the perfume contained in the coating part 270.
[0176] Furthermore, the air-cap 280 can be capped at a distance from the outside of the application section 270, thereby giving it a more fragrance-like appearance.
[0177] In addition, the air-cap 280 can achieve a variety of perfume presentations through diverse appearance designs.
[0178] On the other hand, when the air-use cover 280 is detached from the connector 260 and installed at the lower end of the housing 220, an internal space is formed, thereby enabling the air pump function to be performed.
[0179] That is, the air-operated cover 280 is made of a retractable soft material and can also function as an air pump.
[0180] At this time, when the air-cap 280 is used as a cap to cover the application section 270, the application section 270 can be sealed for protection. At the same time, by repeatedly pressing the air-cap 280, the perfume in the perfume container 210 can be absorbed into the application section 270, thus achieving a dual function.
[0181] like Figure 7 As shown, when the air-compatible cap 280 is used as an air pump, it is tightly fixed to the lower part of the portable perfume device and pressurized. At this time, the housing 220 can accommodate the entire perfume container 210 so that the water pump 230 inside the perfume container 210 can be directly introduced.
[0182] Air pressurized by the air-use cover 280 enters the air flow channel 221 inside the housing part 220 through the housing hole 222, flows along the flow channel and gathers into the connection space 261 of the connector 260, and is then transmitted to the coating part 270 through the air hole 255 provided in the spray part 250, thereby generating aroma bubbles in the coating part 270.
[0183] More specifically, when the air-combination cover 280 is detached from the connector 260 and installed on the lower part of the housing 220, an internal space is formed, enabling it to perform the air pump function.
[0184] That is, such as Figure 7 As shown, the air-use cover 280 is an elastic device that can pump air. It covers the lower part of the housing 220 and forms an elastic space 282 to realize the air pumping function.
[0185] In addition, the air-capping cap 280 is a flexible capsule shape that covers the tip of the coating portion 270. It is removable and can participate in the process of generating aroma bubbles on the surface of the coating portion 270 below the housing portion 220.
[0186] That is, in order to maximize the portability and ease of use of the portable perfume, the air-cap 280 can be airtightly installed on one side of the housing 220 or in the extra space such as the connector 260.
[0187] At this time, when the air-air cap 280 is pressurized by hand, the pressurized air inside the air-air cap 280 is transmitted to the connection space 261 inside the connector 260 through the air flow channel 221 in the housing part 220 connected to the air-air cap 280, and then transmitted to the retention space 271 in the coating part 270 through the air flow channel air hole 255 in the spray part 250.
[0188] In addition, the air delivered can be released to the outside of the coating part 270 through the micropores, while bubbles that adsorb the perfume in the micropores are generated and diffuse into the air.
[0189] At this time, the connector 260 is airtightly connected to the housing 220 and the spraying part 250 so that the pressurized air in the air-use cover 280 can be completely transmitted to the coating part 270 through the connection space 261.
[0190] At this point, due to the pressure applied, the perfume can escape from the micropores in the form of bubbles, thus generating fragrance bubbles.
[0191] The faster the pressure is applied, the faster the fragrance of the perfume may be released.
[0192] Compared to the fine droplets formed when spraying, fragrance bubbles promote the diffusion of fragrance particles, thus helping to enhance the intensity of fragrance diffusion.
[0193] In addition, the fragrance bubbles do not completely detach from the coating portion 270. Instead, only some bubbles are exposed to the outside when pressurized, and then re-penetrate into the coating portion 270 when the pressurization is released. Therefore, fragrance is only generated in the exposed areas.
[0194] Therefore, compared with spray form, unnecessary perfume consumption is significantly reduced, and unlike spray form, which has significantly reduced spray efficiency when depressurized, the present invention can freely adjust the pressure level.
[0195] By applying pressure, the perfume contained inside the application section 270 can also be exposed to the outside, so that the application is no longer limited to the outer surface of the application section 270, which can solve the problem that the perfume inside the application section 170 cannot be fully used and is lost to the air when not in use.
[0196] In addition, by forming micropores on the coating portion 270, fragrance particles can be diffused directly without generating fragrance bubbles.
[0197] When the fragrance-generating applicator 270 is applied to the skin, the fragrance particles are applied to the skin surface in the form of bubbles rather than liquid. Therefore, it is superior in terms of application smoothness compared to the direct application of solid or liquid perfumes such as solid perfumes or roll-on perfumes, and the same fragrance intensity and fragrance coverage can be achieved with less product.
[0198] Therefore, in the portable perfume device 200 according to another embodiment of the present invention, when the air cap 280 supported by the housing portion 220 surrounding the perfume container 210 is repeatedly pressed, the water pump 230 linked to the perfume container 210 will be driven to pump, thereby spraying the perfume in the perfume container 210 through the spray nozzle 251, landing on the inner surface of the application portion 270, and wetting its outer surface through the micropores of the application portion 270, so as to apply or adhere to the skin or hair.
[0199] Furthermore, when the portable perfume device 200 removes the air-use cap 280 and attaches it to the lower end of the housing 220, and the air-use cap 280 is pressed repeatedly, air flows along the air channel 221, is discharged through the air hole 255 formed on one side of the spray section 250 to the stagnation space 271, and together with the perfume droplets falling on the inner surface of the coating section 27, forms fragrant bubbles on the outer surface of the coating section 27 through the micropores of the coating section 27, thereby achieving fragrance diffusion.
[0200] In summary, as demonstrated by the following experimental examples, the portable perfume devices 100 and 200, which combine application and bubble diffusion according to embodiments of the present invention, can achieve significant application and fragrance release effects on the skin, hair, or specific object surfaces, while obtaining practical results.
[0201] The inventors conducted the following experiments in a confidential environment.
[0202] As shown in Tables 1 to 3, in the experimental examples, the same type of perfume was filled into a 10mL portable spray perfume and the topical perfume proposed in this invention, and sprayed (0.08mL) or applied to the inside of the wrist and the back of the hand of the right and left hands of the subjects once or applied to the corresponding amount (3 to 4 times). Then, its applicability and ease of use on the skin, as well as the degree of fragrance release over time, were evaluated.
[0203] The degree of aroma release was assessed through sensory evaluation and conducted in a blind test.
[0204] [Table 1]
[0205] [Table 2]
[0206] A. Standards for topical application on the skin
[0207] [Table 3]
[0208] B. Aroma Release Standards
[0209] The above description is merely an illustrative illustration of the technical concept of the present invention. For those skilled in the art, various modifications, alterations, and substitutions can be made without departing from the essential characteristics of the present invention. Therefore, the embodiments and accompanying drawings disclosed in this invention are only for illustrating the technical concept of the present invention and are not intended to limit it; the scope of the technical concept of the present invention is not limited by these embodiments and accompanying drawings.
[0210] The scope of protection of this invention shall be determined by the contents of the claims, and all technical concepts within the same scope shall be interpreted as being included within the scope of the claims of this invention.
Claims
1. A portable perfume device that combines application and bubble-based fragrance diffusion, which can be applied to a surface or diffused through bubbles, comprising: A perfume container for holding liquid perfume; A flow path support communicating with one side of the perfume container; A water pump installed inside the flow path support for pumping the liquid perfume; A nozzle connected to one end of the water pump; A jet section that communicates with the nozzle and forms a jet orifice; A connector that connects the upper part of the flow path support to the lower part of the spray section, and has a connecting space formed inside it; A porous coating part fixed to one end of the spraying part and spaced apart from the spraying nozzle to form a retention space; An air pump that covers the outside of the flow path support and forms an air space for pumping air; And a removable cover shell that is spaced apart from the coating section and covers the flow path support along the outer periphery of the air pump.
2. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1, characterized in that, When one of the perfume container and the cap is fixed and the other is repeatedly pressed, the water pump is pumped by the flow path support connected to the perfume container, so that the perfume in the perfume container is discharged through the spray nozzle and adheres to the inner peripheral surface of the coating part, and wets the outer peripheral surface of the coating part through the micropores of the coating part.
3. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1, characterized in that, When the air pump exposed from the cover is pressed repeatedly, the air in the air space is discharged into the stagnation space through the air hole formed on the side of the spray section, and together with the liquid perfume droplets attached to the inner peripheral surface of the coating section, it passes through the micropores of the coating section to generate bubbles carrying vaporized perfume on the outer peripheral surface of the coating section and is dispersed.
4. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1, characterized in that, The perfume container is detachably connected to one side of the flow path support.
5. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1, characterized in that, The flow path support has ventilation holes formed along its outer length direction to communicate with the air space.
6. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1, characterized in that, The air pump is in the shape of a flexible, stretchable donut.
7. A portable perfume device that combines application and bubble-based fragrance diffusion, which can be applied to a surface or diffused through bubbles, comprising: A perfume container for holding liquid perfume; A housing portion that covers the exterior of the perfume container and forms an airflow channel along its length between itself and the perfume container; A water pump installed inside the perfume container for pumping the liquid perfume; A nozzle connected to one end of the water pump; A jet section that communicates with the nozzle and forms a jet orifice; A connector that connects the upper part of the housing portion and the lower part of the spray portion, and forms a connecting space; A porous coating part fixed to one end of the spraying part and spaced apart from the spraying nozzle to form a retention space; And a gas-compatible cap that covers the coating portion at intervals and has a cap ring that can be detachably connected to the upper side of the connector.
8. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 7, characterized in that, When the gas cap, supported by the housing portion covering the perfume container, is pressed repeatedly, the water pump linked to the perfume container pumps the perfume out through the spray nozzle and adheres to the inner circumferential surface of the coating portion, and wets the outer circumferential surface of the coating portion through the micropores of the coating portion.
9. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 7, characterized in that, When the gas-operated cap is removed and attached to the lower end of the housing, and the gas-operated cap is repeatedly pressurized, air flows along the air channel and is discharged into the stagnation space through the air hole formed on the side of the spray section. Together with the liquid perfume droplets attached to the inner circumferential surface of the coating section, the air passes through the micropores of the coating section and generates bubbles carrying vaporized perfume on the outer circumferential surface of the coating section, which are then dispersed.
10. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 7, characterized in that, The tip of the gas-capping lid is in the shape of a flexible, soft capsule.
11. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1 or claim 7, characterized in that, The jet section forms at least one or more wedge-shaped branching grooves branching in multiple directions at the end of the trumpet-shaped jet nozzle.
12. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1 or claim 7, characterized in that, The pore size of the coating portion is from 5 μm to 150 μm.
13. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1 or claim 7, characterized in that, The coating portion has a hollow, dome-shaped tip that extends outward in a straight line.
14. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1 or claim 7, characterized in that, The coating part is made of any one or more of the following materials: porous plastic, porous ceramic, porous rubber, and porous fiber.
15. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1 or claim 7, characterized in that, A seal is provided between the spray section and the connector to achieve a seal.
16. The portable perfume device for both application and bubble-based fragrance dispersal according to claim 1 or claim 7, characterized in that, The liquid perfume includes essential oils, aromatic oils, or scented liquids.