Aerosol Generator
The aerosol generating device addresses aerosol leakage and component interchangeability by using a container-wick-heater-filter structure, enhancing usability and reducing size.
Patent Information
- Application Number
- JP2024520591
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-02-11
- Filing Date
- 2022-10-18
- Publication Date
- 2025-09-01
- Estimated Expiration
- 2042-10-18
AI Technical Summary
Existing aerosol generating devices face issues with aerosol leakage to the exterior of the cartridge and lack of interchangeable components such as cartridges and moisture absorbents.
The device incorporates a container with inner and outer walls forming a storage space for liquid, a wick for absorbing liquid, a heater for vaporization, a base with an internal space and inlet, and a filter mounted inside the cartridge, allowing for interchangeable cartridges and moisture absorbents.
Minimizes aerosol leakage and enables easy replacement of cartridges and moisture absorbents, reducing device size and improving user convenience.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to aerosol generating devices. [Background technology]
[0002] An aerosol generating device is used to extract a predetermined component from a medium or substance via an aerosol. The medium may contain a variety of components. The components contained in the medium may be flavorings of a variety of components. For example, the components contained in the medium may include nicotine, herbal, and / or coffee components. In recent years, much research has been conducted on such aerosol generating devices. Summary of the Invention [Problem to be solved by the invention]
[0003] The present disclosure is directed to solving the above-mentioned problems and other problems.
[0004] Another object of the present disclosure is to minimize leakage of aerosol generated inside the cartridge to the exterior of the cartridge.
[0005] It is yet another object of the present disclosure to provide a structure in which the cartridge and filter are interchangeable as a unit.
[0006] It is still another object of the present disclosure to provide a structure in which the cartridge and the moisture absorbent for absorbing droplets are interchangeable as a single unit.
[0007] It is still another object of the present disclosure to provide a structure in which the moisture absorbent is mounted inside the cartridge. [Means for solving the problem]
[0008] According to one aspect of the present disclosure to achieve the above-mentioned object, there is provided an aerosol generating device including a container including an inner wall and an outer wall surrounding the inner wall, which stores a liquid between the inner wall and the outer wall and which forms a long insertion space; a wick, a portion of which is arranged between the inner wall and the outer wall and absorbs the liquid; a heater arranged around at least a portion of the wick and heats the wick; a base which forms an internal space communicating with the insertion space, which includes a side wall arranged on one side of the container in the longitudinal direction of the insertion space and which forms an inlet communicating with the internal space of the base; and a filter arranged inside the base and covering the inlet.
[0009] According to one aspect of the present disclosure to achieve the above-mentioned object, there is provided an aerosol generating device including: a container including a long inner wall forming an insertion space and an outer wall surrounding the inner wall, and for containing a liquid between the inner wall and the outer wall; a wick having a portion disposed between the inner wall and the outer wall; a heater disposed around at least a portion of the wick to heat the wick; a base disposed adjacent to the heater, connected to the container, and whose interior is in communication with the insertion space; and a moisture absorber disposed inside the base. [Effects of the Invention]
[0010] According to at least one of the embodiments of the present disclosure, the aerosol generating device can be made smaller.
[0011] According to at least one of the embodiments of the present disclosure, leakage of aerosol outside the cartridge in which the aerosol is generated can be minimized.
[0012] According to at least one embodiment of the present disclosure, a filter is mounted inside the cartridge, so that the cartridge and the filter can be replaced together.
[0013] According to at least one of the embodiments of the present disclosure, the moisture absorber is mounted inside the cartridge, so that the cartridge and the moisture absorber can be replaced as a unit.
[0014] Further scope of applicability of the present disclosure will become apparent from the following detailed description. However, since various changes and modifications within the spirit and scope of the present disclosure will be apparent to those skilled in the art, it should be understood that the detailed description and specific examples, such as preferred embodiments of the present disclosure, are given by way of example only. [Brief explanation of the drawings]
[0015] [Figure 1] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 2] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 3] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 4] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 5] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 6] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 7] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 8] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 9] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 10] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 11] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 12] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 13] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 14] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. [Figure 15] FIG. 1 illustrates an example of an aerosol generating device according to one embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0016] Hereinafter, the embodiments disclosed in this specification will be described in detail with reference to the accompanying drawings. For the sake of simplicity of description with reference to the drawings, identical or similar components will be given the same reference numerals, and redundant description thereof will be omitted.
[0017] The suffixes "module" and "section" for components used in the following description are for ease of description only and do not have any special meaning or role.
[0018] In this disclosure, those well known to those skilled in the art will be omitted for the sake of brevity. It should be understood that the accompanying drawings are intended to facilitate understanding of various technical features, and that the embodiments disclosed herein are not limited to the accompanying drawings. Therefore, the present disclosure should be construed as including all modifications, equivalents, and alternatives in addition to those specifically disclosed in the accompanying drawings.
[0019] Terms including ordinal numbers such as "first," "second," etc. may be used to describe various components, but it should be understood that the components are not limited by the terms. The terms are used only to distinguish one component from another.
[0020] When a component is said to be "connected" to another component, it will be understood that there may be other components in between, whereas when a component is said to be "directly connected" to another component, it will be understood that there are no other components in between.
[0021] The singular expression includes the plural expression unless the context clearly dictates otherwise.
[0022] Fig. 1 is a perspective view of an aerosol generation device 1 according to an embodiment of the present disclosure. Fig. 2 is an exploded perspective view of the aerosol generation device 1 of Fig. 1.
[0023] 1 and 2, the aerosol generating device 1 can include a casing 30 including an upper part 31 and a lower part 32, a cap 20 connected to the upper part 31, a cartridge 40 that generates an aerosol and is disposed inside the casing 30, and a body 50 that is disposed inside the casing 30 and to which the cartridge is attached. The stick 10 can be inserted into the aerosol generating device 1 through the cap 20.
[0024] The casing 30, together with the cap 20, may form the outer shape of the aerosol generation device 1. The casing 30 may include an upper part 31 and a lower part 32. The upper part 31 and the lower part 32 may surround the periphery of the aerosol generation device 1. A cartridge 40 and a main body 50 may be disposed inside the casing 30. The inner surface of the upper part 31 may be coupled to the outer surface of the cartridge 40. The inner surface of the lower part 32 may be coupled to the outer surface of the main body 50. When coupled to the cartridge 40 and the main body 50, respectively, the upper part 31 and the lower part 32 may form a continuous surface. A user may hold the aerosol generation device 1 by surrounding the outer surface of the casing 30.
[0025] The cap 20 may have a hole into which the stick 10 is inserted. The cap 20 may be coupled to the upper part 31. The hole of the cap 20 may be connected to an insertion space 426 (see FIG. 4) into which the stick 10 is inserted. The cap 20 may open and close the hole into which the stick 10 is inserted. The upper part 31 may be disposed between the cap 20 and the lower part 32.
[0026] Aerosol can be generated inside the cartridge 40. The cartridge 40 can be detachably connected to the main body 50. The cartridge 40 and the main body 50 can be connected to each other by a forced fastening structure using protrusions and grooves. The cartridge 40 can have an elongated shape. One end of the cartridge can be provided with an opening 425 (see FIG. 4) through which the stick 10 is inserted. The cartridge 40 can be covered by a casing 30.
[0027] Electronic components such as a battery and a PCB may be provided inside the main body 50. When the cartridge 40 is attached to the main body 50, the main body 50 may be electrically connected to the cartridge 40. The main body 50 may include an electrical supply unit (not shown) that supplies electricity to the cartridge 40. The main body 50 may have a shape that extends elongated in the longitudinal direction of the cartridge. The main body 50 may be covered by the casing 30.
[0028] 3 is an exploded perspective view showing the coupling relationship between the cartridge 40 and the main body 50. Referring to FIG. 3, the cartridge 40 can be attached to the main body 50 and detached from the main body 50.
[0029] The cartridge 40 may have a groove 411 formed on its outer surface. The main body 50 may have a protrusion 512 on its outer surface that is fastened to the groove 411 of the cartridge 40. The cartridge 40 may have a plurality of grooves 411. Unlike this embodiment, a protrusion may be formed on the cartridge 40, and a recess into which the protrusion is received may be formed on the main body 50.
[0030] The cartridge 40 may have a groove 421 formed on its outer surface. The casing 30 may be fastened to the groove 421 of the cartridge 40. The groove 421 of the cartridge 40 may also be fastened to the upper part 31 of the casing 30.
[0031] The main body 50 may have a protrusion 54 formed on its outer surface. The casing 30 may be fastened to the protrusion 54 of the main body 50. The protrusion 54 of the main body 50 may be fastened to the upper part 31 of the casing 30.
[0032] A mounting portion 51 on which the cartridge 40 is mounted and a hollow column 52 disposed on one side of the mounting portion 51 may be disposed at the outer end of the body 50 in the longitudinal direction of the cartridge 40 .
[0033] The mounting portion 51 may be recessed into the main body 50 to define a space 513 into which the cartridge 40 is inserted and mounted. A protrusion 512 may be formed on the inner surface of the mounting portion 51. A column 52 may be formed on one side of the mounting portion 51.
[0034] The column 52 may extend longitudinally in the lengthwise direction of the cartridge 40. The column 52 may have a hollow interior. The column 52 may support the sides of the cartridge 40. The column 52, together with the mounting portion 51, may define a space 513 in which the cartridge 40 is mounted.
[0035] The column 52 may include a sensing unit 53 and through holes 521 and 522. The column 52 is hollow and may have electronic components such as a sensor and a PCB mounted therein. The sensing unit 53 is disposed to face the cartridge 40, thereby detecting the presence or absence of liquid in the cartridge 40, the remaining amount, etc. The through hole 521 may communicate with the outside of the aerosol generation device 1. The through holes 521 and 522 may communicate with each other through the internal space of the column 52. Air outside the aerosol generation device 1 may flow into the cartridge 40 by sequentially passing through the internal space of the column 52, the through holes 521 and 522, and the inlet 412a (see FIG. 4).
[0036] Fig. 4 is a cross-sectional view of the cartridge 40 shown in Fig. 2 taken along line B-B'. Referring to Fig. 4, the cartridge 40 can include a container 42, a base 41, a wick 61, and a heater 62, and a filter 70 can be disposed inside the cartridge 40.
[0037] The container 42 may include an insertion space 426 into which the stick 10 is inserted, an inner wall 423 that defines the insertion space 426 and extends longitudinally, an outer wall 422 that surrounds the inner wall 423 and extends longitudinally of the inner wall 423, and a storage space 424 that is located between the inner wall 423 and the outer wall 422 and that stores a liquid.
[0038] The inner wall 423 and the outer wall 422 of the container 42 may be formed in a cylindrical shape. The outer wall 422 may surround the inner wall 423. The inner wall 423 may be disposed inside the outer wall 422. The inner wall 423 and the outer wall 422 may extend in the longitudinal direction of the cartridge 40. A liquid to be vaporized to form an aerosol may be accommodated between the outer wall 422 and the inner wall 423. The inner wall 423 and the outer wall 422 of the container 42 may be formed of a translucent or transparent material. An insertion space 426 may be disposed inside the inner wall 423. Because the insertion space 426 is located inside the inner wall 423, the aerosol generation device 1 can be made smaller than when the insertion space 426 is provided outside the container 42.
[0039] The insertion space 426 may be disposed inside the cartridge 40. The insertion space 426 may be in communication with the outside of the cartridge 40 through an opening 425 formed at one end of the container 42. The insertion space 426 may be surrounded by an inner wall 423. The insertion space 426 may have a cylindrical shape. The aerosol vaporized by the heater 62 may flow (b) to the outside of the cartridge 40 through the insertion space 426 and the opening 425.
[0040] The base 41 may be provided on one side of the container 42. The base 41 may be provided on one side of the container 42 in the longitudinal direction of the cartridge 40. The base 41 may be disposed adjacent to the core 61. The base 41 may include a bottom 413, a side wall 412, and an internal space 414.
[0041] The bottom 413 of the base 41 may face the insertion space 426 with respect to the wick 61. The bottom 413 of the base 41 may face the opening 425 of the container 42. The sidewall 412 of the base 41 may extend from the bottom 413 toward the container 42. The sidewall 412 of the base 41 may be connected to the container 42. The heater 62 may be electrically connected to the electrical supply unit of the main body 50 via the bottom 413 of the base 41. An inlet 412a may be provided in the sidewall 412 of the base 41.
[0042] The air inlet 412a may open through the side wall 412 of the base 41. The air inlet 412a may open in a direction perpendicular to the inner surface of the base 41. The air inlet 412a may communicate with the through hole 522. Air flowing in through the air inlet 412a may flow into the core 61.
[0043] The inlet 412a may be formed between the container 42 and the bottom 413 of the base 41 in the longitudinal direction of the cartridge 40. The inlet 412a may be positioned closer to the container 42 than the bottom 413 of the base 41.
[0044] The internal space 414 of the base 41 can communicate with the periphery of the wick 61 and the insertion space 426. A liquefied aerosol can be retained in the internal space 414. The internal space 414 can provide a flow path connecting the periphery of the wick 61 with the outside of the cartridge 40.
[0045] The wick 61 may be connected to the interior of the container 42. A portion of the wick 61 may be disposed inside the container 42, and the other portion may be connected to the liquid contained between the inner wall 423 and the outer wall 422. A portion of the wick 61 may be inserted into the containing space 424. The wick 61 may penetrate the inner wall 423 of the container 42 and be connected to the interior of the containing space 424. The wick 61 may be disposed between the insertion space 426 and the internal space 414 of the base 41. The wick 61 may absorb the liquid contained in the containing space 424.
[0046] The heater 62 may be formed of a long, electrically conducting wire. The heater 62 may be wound several times around the wick 61. The heater 62 generates heat to evaporate the liquid absorbed in the wick 61. The heater 62 may be disposed on the outer surface of the base 41 through the internal space 414 of the base 41. Alternatively, the heater 62 may extend to the outside of the base 41 by penetrating the internal space 414 of the base 41. The heater 62 may receive electricity from the battery installed inside the main body 50.
[0047] The filter 70 can filter aerosols contained in the air. The filter 70 can minimize leakage of aerosols to the outside of the cartridge 40. The filter 70 can be disposed on the inner surface of the base 41. The filter 70 can collide with the aerosols g flowing through the internal space 414 of the base 41. The aerosols that collide with the filter 70 can be liquefied and attached to the filter 70.
[0048] The filter 70 can be detached from the main body 50 together with the cartridge 40. The filter 70 can be replaced together with the cartridge 40. A filter 70 that has absorbed a large amount of aerosol can be replaced together with the cartridge 40. The filter 70 can be made of a material having an absorption rate corresponding to the amount of liquid contained in the container 42.
[0049] 5 and 6 are views showing the filter 70 as viewed from the internal space 414 of the base 41. FIG.
[0050] 5 and 6, the filter 70 may be formed by weaving a plurality of strings. For example, the filter 70 may have a mesh or net shape. Air can flow between the plurality of strings of the filter 70. For example, the spacing between the plurality of strings may be, but is not limited to, 1 mm to 2 mm.
[0051] The filter 70 may be disposed facing the inlet 412a. The filter 70 may cover at least a portion of the inlet 412a. Aerosol liquefied by hitting the filter 70 may move to one side by gravity. Figure 6 shows that the liquefied aerosol moves downward by gravity.
[0052] FIG. 7 shows a filter 170 and ribs 412b supporting the filter 170 according to one embodiment of the present disclosure.
[0053] Referring to FIG. 7, the base 41 may include a rib 412b that protrudes from the inner surface and extends along the periphery of the inlet 412a.
[0054] The ribs 412b may protrude from the inner surface of the base 41. For example, the ribs 412b may protrude in a direction perpendicular to the inner surface of the base 41. The ribs 412b may be formed in an annular shape. However, the shape of the ribs 412b is not limited to an annular shape, and other shapes are also applicable. The ribs 412b may surround the inlet 412a. The ribs 412b may be spaced apart from the periphery of the inlet 412a radially outward from the inlet 412a. The ribs 412b may protrude uniformly from the inner surface of the base 41 by a predetermined length. The ribs 412b may have a cylindrical shape.
[0055] The filter 170 may be attached to the rib 412b. The filter 170 may be in contact with the rib 412b. The filter 170 may be bonded to the rib 412b. The filter 170 may be bonded to the outer circumferential surface of the rib 412b. The filter 170 may be spaced apart from the inlet 412a. The aerosol g flowing in the internal space 414 of the base 41 may collide with the filter 170 and be liquefied, and may move downward by gravity.
[0056] The aerosol that collides with the filters 70, 170 and is liquefied can move downward by gravity and be contained in the internal space 414 of the base. This can minimize leakage of the aerosol generated inside the cartridge 40 to the outside of the cartridge 40 through the inlet 412a.
[0057] Fig. 8 is a perspective view of an aerosol generation device 11 according to one embodiment of the present disclosure. Fig. 9 is an exploded perspective view of the aerosol generation device 11 of Fig. 8.
[0058] 8 and 2, the aerosol generating device 11 may include a casing 130 including an upper part 131 and a lower part 132, a cap 120 coupled to the upper part 131, a cartridge 140 for generating an aerosol disposed inside the casing 130, and a body 150 disposed inside the casing 130 and to which the cartridge is attached. The stick 110 may be inserted into the aerosol generating device 11 through the cap 120.
[0059] The casing 130, together with the cap 120, may form the outer shape of the aerosol generation device 11. The casing 130 may include an upper part 131 and a lower part 132. The upper part 131 and the lower part 132 may surround the periphery of the aerosol generation device 11. A cartridge 140 and a main body 150 may be disposed inside the casing 130. The inner surface of the upper part 131 may be coupled to the outer surface of the cartridge 140. The inner surface of the lower part 132 may be coupled to the outer surface of the main body 150. The upper part 131 and the lower part 132 may form a continuous surface when coupled to the cartridge 140 and the main body 150, respectively. A user may hold the aerosol generation device 11 by grasping the outer surface of the casing 130.
[0060] The cap 120 may have a hole into which the stick 110 is inserted. The cap 120 may be coupled to an upper part 131. The hole of the cap 120 may be connected to an insertion space 1426 (see FIG. 11 ) into which the stick 110 is inserted. The cap 120 may open and close the hole into which the stick 110 is inserted. The upper part 131 may be disposed between the cap 120 and the lower part 132.
[0061] Aerosol may be generated inside the cartridge 140. The cartridge 140 may be detachably coupled to the main body 150. The cartridge 140 and the main body 150 may be coupled to each other by a forced fastening structure using a protrusion and a groove. The cartridge 140 may have an elongated shape. An opening 1425 (see FIG. 11 ) through which the stick 110 is inserted may be formed at one end of the cartridge. The cartridge 140 may be covered by a casing 130.
[0062] Electronic components such as a battery and a PCB may be provided inside the body 150. When the cartridge 140 is attached to the body 150, the body 150 may be electrically connected to the cartridge 140. The body 150 may include an electrical supply unit (not shown) that supplies electricity to the cartridge 140. The body 150 may have a shape that extends elongated in the longitudinal direction of the cartridge. The body 150 may be covered by a casing 130.
[0063] 10 is an exploded perspective view showing the coupling relationship between the cartridge 140 and the main body 150. Referring to FIG.
[0064] The cartridge 140 may have a groove 1411 formed on its outer surface. A protrusion 1512 may be formed on the outer surface of the body 150 to engage with the groove 1411 of the cartridge 140. The cartridge 140 may have a plurality of grooves 1411, and the body 150 may have a plurality of protrusions 1512. Meanwhile, unlike this embodiment, a protrusion may be formed on the cartridge 140, and a recess into which the protrusion is received may be formed on the body 150.
[0065] The cartridge 140 may have a groove 1421 formed on its outer surface. The casing 130 may be fastened to the groove 1421 of the cartridge 140. The groove 1421 of the cartridge 140 may be fastened to the upper part 131 of the casing 130.
[0066] The body 150 may have a protrusion 154 formed on its outer surface. The casing 130 may be fastened to the protrusion 154 of the body 150. The protrusion 154 of the body 150 may be fastened to the upper part 131 of the casing 130.
[0067] The outer end of the body 150 in the longitudinal direction of the cartridge 140 may be provided with a seat 151 to which the cartridge 140 is attached, and a hollow column 152 disposed on one side of the seat 151 .
[0068] The seat 151 may be recessed into the body 150 to define a space 1513 into which the cartridge 140 is inserted and mounted. A protrusion 1512 may be formed on the inner surface of the seat 151. A column 152 may be provided on one side of the seat 151.
[0069] The column 152 may extend longitudinally in the longitudinal direction of the cartridge 140. The column 152 may have a hollow interior. The column 152 may support the lateral surfaces of the cartridge 140. The column 152, together with the seat 151, may define a space 1513 in which the cartridge 140 is mounted.
[0070] The column 152 may include a sensing unit 153 and through holes 1521 and 1522. The column 152 is hollow and may have electronic components such as a sensor and a PCB mounted therein. The sensing unit 153 is disposed facing the cartridge 140 and may detect the presence or absence of liquid in the cartridge 140, as well as the remaining amount. The through hole 1521 may communicate with the outside of the aerosol generation device 11. The through holes 1521 and 1522 may communicate with each other through the internal space of the column 152. Air outside the aerosol generation device 11 may flow into the cartridge 140 by sequentially passing through the internal space of the column 152, the through holes 1521 and 1522, and the inlet 1412a (see FIG. 11).
[0071] Figure 11 is a cross-sectional view of the cartridge 140 shown in Figure 9 taken along line A-A'. Figure 12 is a perspective cross-sectional view showing the base 145 and the inside of the base 145 of Figure 11. Referring to Figure 11, the cartridge 140 may include a container 142, a base 141, a wick 161, and a heater 162, and a moisture absorber 270 may be disposed inside the cartridge 140.
[0072] The container 142 may include an insertion space 1426 into which the stick 110 is inserted, an inner wall 1423 that defines the insertion space 1426 and extends longitudinally, an outer wall 1422 that surrounds the inner wall 1423 and extends longitudinally of the inner wall 1423, and a storage space 1424 that is located between the inner wall 1423 and the outer wall 1422 and that stores a liquid.
[0073] The inner wall 1423 and the outer wall 1422 of the container 142 may be formed in a cylindrical shape. The outer wall 1422 may surround the inner wall 1423. The inner wall 1423 may be disposed inside the outer wall 1422. The inner wall 1423 and the outer wall 1422 may extend in the longitudinal direction of the cartridge 140. A liquid to be atomized to form an aerosol may be contained between the outer wall 1422 and the inner wall 1423. The inner wall 1423 and the outer wall 1422 of the container 142 may be formed of a translucent or transparent material. An insertion space 1426 may be disposed inside the inner wall 1423. Because the insertion space 1426 is formed inside the inner wall 1423, the aerosol generation device 11 can be made smaller than when the insertion space 1426 is formed outside the container 142.
[0074] The insertion space 1426 may be formed inside the cartridge 140. The insertion space 1426 may be in communication with the outside of the cartridge 140 through an opening 1425 formed at one end of the container 142. The insertion space 1426 may be surrounded by an inner wall 1423. The insertion space 1426 may have a cylindrical shape. The aerosol atomized by the heater 162 may flow (d) to the outside of the cartridge 140 through the insertion space 1426 and the opening 1425.
[0075] The base 141 may be provided on one side of the container 142. The base 141 may be provided on one side of the container 142 in the longitudinal direction of the cartridge 140. The base 141 may be disposed adjacent to the core 161. The base 141 may include a bottom 1413, a side wall 1412, an internal space 1414, an inlet 137, a holder 190, and a protrusion 180.
[0076] The bottom 1413 of the base 141 may be disposed on the opposite side of the insertion space 1426 with respect to the core 161. The bottom 1413 of the base 141 may face the opening 1425 of the container 142. The sidewalls 1412 of the base 141 may extend from the bottom 1413 toward the container 142. The sidewalls 1412 of the base 141 may be connected to the container 142. The heater 162 may be electrically connected to the electrical supply unit of the body 150 via the bottom 1413 of the base 141. For example, the heater 162 and the body 150 may be electrically connected to each other by contact pin structures.
[0077] An air inlet 1412a may be formed in the side wall 1412 of the base 141. The air inlet 1412a may open through the side wall 1412 of the base 141. The air inlet 1412a may open in a direction perpendicular to the inner surface of the base 141. The air inlet 1412a may communicate with the through hole 1522. Air flowing in through the air inlet 1412a may flow (c) into the wick 161.
[0078] The inlet 1412a may be formed between the container 142 and the bottom 1413 of the base 141 in the longitudinal direction of the cartridge 140. The inlet 1412a may be located closer to the container 142 than the container 142 or the bottom 1413 of the base 141.
[0079] The internal space 1414 of the base 141 can be in communication with the space around the core 161 and the insertion space 1426. A liquefied aerosol can be retained in the internal space 1414. The internal space 1414 can provide a flow path connecting the space around the core 161 and the outside of the cartridge 140.
[0080] The moisture absorbent 270 may be disposed in the interior space 148 of the base 145. The moisture absorbent 270 may be atomized by the heater 162 and absorb aerosols flowing in the interior space 148 of the base 145. For example, the moisture absorbent 270 may be made of cotton or sponge material. The moisture absorbent 270 according to the embodiment of the present disclosure has a cubic shape and is inserted inside the base 145, but the shape of the moisture absorbent 270 is not limited to a cubic shape.
[0081] The moisture absorbent 270 may be spaced apart from the wick 161. The wick 192 may be disposed between the moisture absorbent 270 and the insertion space 143. The outer surface of the moisture absorbent 270 may face the wick 192. The moisture absorbent 270 may absorb droplets that fall from the wick 192.
[0082] The moisture absorbent 270 may be fixed inside the base 145. The movement of the moisture absorbent 270 inside the base 145 may be restricted by the holder 190 and the protrusion 180. The holder 190 and the protrusion 180 can maintain a distance between the moisture absorbent 270 and the wick 192. This prevents the moisture absorbent 270 from melting due to the heat of the heater 191.
[0083] The holder 190 may be provided on the inner surface 1461 of the base 145. The holder 190 may protrude from the inner surface 1461 of the base 145. When the moisture absorber 270 is inserted into the base 145, the holder 190 may be disposed outside the moisture absorber 270. The holder 190 may support the outer surface of the moisture absorber 270. The holder 190 may contact the outer surface of the moisture absorber 270. The holder 190 may press against the outer surface of the moisture absorber 270. A plurality of holders 190 may be arranged along the inner circumference of the base 145. The holder 190 has bent ends, thereby minimizing friction with the moisture absorber 270.
[0084] The protrusion 180 may be provided on the inner surface 1461 of the base 145. The protrusion 180 may protrude from the inner surface 1461 of the base 145. The protrusion 180 may be inserted into the moisture absorber 270. The protrusion 180 may be disposed between the holder 190 and the inner surface 1462 of the base 145.
[0085] The protrusion 180 may protrude from the inner surface 1461 of the base 145 in the same direction as the holder 190. The protrusion length of the protrusion 180 may be different from the protrusion length of the holder 190. The protrusion length of the protrusion 180 may be greater than the protrusion length of the holder 190.
[0086] Although embodiments according to the present disclosure include both the holder 190 and the protrusion 180, other embodiments are possible, such as those including only the protrusion 180 without the holder 190, or those including only the holder 190 without the protrusion 180.
[0087] The wick 161 may be connected to the interior of the container 142. A portion of the wick 161 may be disposed inside the container 142, and a portion of the wick 161 may be connected to the liquid contained between the inner wall 1423 and the outer wall 1422. A portion of the wick 161 may be inserted into the containing space 1424. The wick 161 may penetrate the inner wall 1423 of the container 142 and be connected to the interior of the containing space 1424.
[0088] The wick 161 may be disposed between the insertion space 1426 and the internal space 1414 of the base 141. The wick 161 can absorb liquid contained in the storage space 1424. The wick 161 may be disposed inside the inner wall 1423 of the container 142. The wick 161 may be disposed at one end of the inner wall 1423 in the longitudinal direction of the cartridge 140.
[0089] The heater 162 may be formed of a long, electrically conducting wire. The heater 162 may be wound several times around the wick 161. The heater 162 generates heat to evaporate the liquid absorbed in the wick 161. The heater 162 may be disposed on the outer surface of the base 141 through the internal space 1414 of the base 141. Alternatively, the heater 162 may extend to the outside of the base 141 by penetrating the internal space 1414 of the base 141. The heater 162 may receive electricity from the battery installed inside the main body 150.
[0090] Referring to FIG. 12, the aerosol generating device 11 can include a heat insulating member 1621 surrounding the heater 162 .
[0091] The heat insulating member 1621 may surround a portion of the heater 162. The heat insulating member 1621 may surround a portion of the heater 162 that penetrates the moisture absorber 270. The moisture absorber 270 may include a hole 271 in which the heat insulating member 1621 is disposed. The heater 162 may penetrate through the hole 271, and the heat insulating member 1621 may be disposed inside the hole 271 to cover the heater 162. The heat insulating member 1621 may prevent the heat generated by the heater 162 from melting the moisture absorber 270.
[0092] The heat insulating member 1621 may be disposed inside the hole 271 in the diameter direction of the hole 271. The heat insulating member 1621 may be spaced apart from the inner surface of the hole 271 to the inside of the hole 271. The heat generated by the heater 162 is transferred to the moisture absorbent 270 through the heat insulating member 1621 and the air layer formed between the hole 271 and the heat insulating member 1621, so that the moisture absorbent 270 can be prevented from melting due to the heat generated by the heater 162.
[0093] 13 is a perspective view of the moisture absorber 270. Referring to FIG. 13, the moisture absorber 270 may include a hole 271, a groove 272, a first outer surface 273, and a second outer surface 274.
[0094] The holes 271 may be formed inside the moisture absorber 270. A pair of holes 271 may be provided, and the wire of the heater 162 may be inserted / pulled out through the holes 271. A part of the heater 162 and the heat insulating member 1621 may be disposed inside the holes 271. The holes 271 may be formed in a straight line. The holes 271 may extend in the longitudinal direction of the cartridge 140. The long holes 271 may be referred to as tunnels or channels.
[0095] The grooves 272 may be formed on the outside of the moisture absorber 270. A plurality of grooves 272 may be provided to correspond to the plurality of protrusions 180. A plurality of protrusions 180 may be inserted into each of the plurality of grooves 272. The grooves 272 may be formed on the lateral surface of the moisture absorber 270. The grooves 272 may be connected to the cutouts 165 (see FIG. 14).
[0096] The outer surface of the moisture absorber 270 may include a first outer surface 273 and a second outer surface 274. The second outer surface 274 of the moisture absorber 270 may extend from the first outer surface 273 of the moisture absorber 270 toward the container 142 and be connected to the container 142. A hole 271 may be formed in the first outer surface 273 of the moisture absorber 270. A groove 272 may be formed in the second outer surface 274 of the moisture absorber 270.
[0097] The first outer surface 273 of the moisture absorber 270 may be supported by the inner surface 1462 of the base 145. The second outer surface 274 of the moisture absorber 270 may be supported by the inner surface 1461 of the base 145. The first outer surface 273 and the second outer surface 274 of the moisture absorber 270 may have shapes corresponding to the inner surfaces 1461, 1462 of the base 145 so as to be supported by the inner surfaces 1461, 1462 of the base 145. The outer surfaces 273, 274 of the moisture absorber 270 may be inserted into the inner surfaces 1461, 1462 of the base 145.
[0098] 14 and 15 are perspective views showing the cutout portion 275 of the moisture absorber 270. FIG.
[0099] 14 and 15, the cutout 275 may be provided in the region where the first outer surface 273 and the second outer surface 274 of the moisture absorber 270 intersect. The cutout 275 may be formed by cutting off between the groove 272 and the first outer surface 273. The cutout 275 may be formed integrally with the moisture absorber 270. The cutout 275 may be deformed by external pressure. That is, the cutout 275 may be deformed into the shape shown in FIGS. 14 and 15 by external pressure.
[0100] When the moisture absorber 270 is installed in the base 145, the moisture absorber 270 has the shape shown in Fig. 14. After the cutout 275 is arranged facing the inside of the base 145, the moisture absorber 270 is inserted into the inside of the base 145, and the cutout 275 comes into contact with the protrusion, causing the cutout 275 to deform into the shape shown in Fig. 15. When the moisture absorber 270 is inserted into the inside of the base 145 and the outer surfaces 273 and 274 of the moisture absorber 270 come into contact with the inner surfaces 1461 and 1462 of the base 145, the protrusion 180 is accommodated within the groove 272, and the moisture absorber 270, which had the shape shown in Fig. 15, can restore to its original state shown in Fig. 14 due to its own elasticity.
[0101] 1 to 7, an aerosol generating device 1 according to one embodiment of the present disclosure includes a container 42 that stores a liquid between an inner wall 423 and an outer wall 422 that surrounds the inner wall 423, an elongated insertion space 426 arranged inside the inner wall 423 of the container 42, a wick 61 with a portion connected to the inside of the container to absorb the liquid, a heater 62 that heats the wick 61, a base 41 that forms an internal space 414 communicating with the insertion space 426 and is formed on one side of the container 42 in the longitudinal direction of the insertion space 426, an inlet 412a that communicates with the internal space 414 and is formed in a side wall 412 of the base, and a filter 70 arranged on the inner surface of the side wall 412 of the base 41 and covering the inlet 412a.
[0102] According to another aspect of the present disclosure, the insertion space 426 includes an opening 425 open to the outside, the base 41 includes a bottom 413 positioned on the opposite side of the opening 425 of the insertion space 426 relative to the core 61, and the side wall 412 positioned between the bottom 413 and the container 42 and extending from the bottom 413 toward the container 42, and the inlet 412a may be positioned closer to the container 42 than the bottom 413.
[0103] According to another aspect of the present disclosure, the inlet 412 a may open through the side wall 412 of the base 41 in a direction perpendicular to the inner surface of the base 41 .
[0104] According to another aspect of the present disclosure, the aerosol generating device 1 further includes a main body 50 having an electrical supply unit that supplies electricity to the heater 62, and the base 41 can be detachably connected to the main body 50.
[0105] According to another aspect of the present disclosure, the base 41 and the container 42 can be detached from the main body 50 as a unit.
[0106] According to another aspect of the present disclosure, the aerosol generating device may further include a casing 30 coupled to the body 50 and covering the container 42 .
[0107] According to another aspect of the present disclosure, the inner surface of the side wall 412 of the base 41 may be formed flat, and the filter 70 may be disposed on the inner surface.
[0108] According to another aspect of the present disclosure, the base 41 includes a rib 412b protruding from the inner surface of the side wall 412 and extending around the inlet 412a, and the filter 170 can be attached to the rib 412b and spaced apart from the inlet 412a.
[0109] 8 to 15, an aerosol generating device 11 according to one embodiment of the present disclosure may include a container 142 including an inner wall 1423 extending elongately and forming an insertion space 1426 therein, and an outer wall 1422 surrounding the inner wall 1423 and containing a liquid between the inner wall 1423 and the outer wall 1422; a wick 161 arranged inside the container 142 and partially connected to the liquid contained between the inner wall 1423 and the outer wall 1422; a heater 162 arranged around the wick 161 and heating the wick 161; a base 141 arranged adjacent to the heater 162, connected to the container 142, and the inside of which is connected to the insertion space 1426; and a moisture absorber 270 arranged inside the base 141.
[0110] According to another aspect of the present disclosure, the heater 162 may include a wire wound around the outer surface of the core 161, passing through the absorbent body 270, and connected to an external power source (not shown).
[0111] According to another aspect of the present disclosure, the aerosol generating device 11 may further include a heat insulating member 1621 disposed between the moisture absorbent 270 and the wire and covering the wire.
[0112] According to another aspect of the present disclosure, the aerosol generating device 11 further includes a holder 190 that protrudes from the inner surface of the base 141 and supports the moisture absorbent 270, and the moisture absorbent 270 may be positioned between the inner surfaces 1415, 1416 of the base 141 and the holder 190.
[0113] According to another aspect of the present disclosure, the holder 190 can press against the outer surface of the moisture absorber 270 .
[0114] According to another aspect of the present disclosure, the aerosol generating device 11 may further include a protrusion 180 that protrudes from the inner surface 1415 of the base and is inserted into the moisture absorbent body 270 .
[0115] According to another aspect of the present disclosure, the inner surfaces 1415, 1416 of the base include a first inner surface 1416 facing the insertion space 1426, a second inner surface 1415 extending from the first inner surface 1416 toward the container 142 and connected to the container 142, and an inlet 1412a formed in the second inner surface 1415 and connecting the inside and outside of the base 141, and the moisture absorber 270 can be supported by the first inner surface 1416 and the second inner surface 1415.
[0116] According to another aspect of the present disclosure, the moisture absorber 270 may include a first outer surface 273 supported by a first inner surface 1416 of the base 141, a second outer surface 274 supported by a second inner surface 1415 of the base 141, and a groove 272 formed on the second outer surface 274 into which the protrusion 180 is inserted.
[0117] According to another aspect of the present disclosure, the absorbent body 270 may include an incision 275 formed between the first outer surface 273 of the absorbent body 270 and the groove 272 .
[0118] According to another aspect of the present disclosure, the moisture absorber 270 can be adhered to the inner surfaces 1415 , 1416 of the base 141 .
[0119] The specific embodiments or other embodiments of the present disclosure described above are not mutually exclusive or distinct, and the structure or function of any or all elements of the embodiments of the present disclosure described above can be combined with other elements or combined with each other.
[0120] For example, configuration A described in one embodiment of the present disclosure and drawings and configuration B described in another embodiment of the present disclosure and drawings can be combined with each other. That is, even if a combination between configurations is not directly described, the combination is possible unless it is described that the combination is not possible.
[0121] While the embodiments have been described above in accordance with a number of exemplary embodiments, it should be understood that many other variations and embodiments are possible for those skilled in the art that fall within the scope of the principles of the present disclosure. More particularly, various modifications and variations are possible in the components and / or arrangements of the subject combinations within the scope of the present disclosure, the drawings, and the appended claims. In addition to the modifications and variations of the components and / or arrangements, other uses will also be apparent to those skilled in the art.
Claims
1. a container including an inner wall that forms a long insertion space and an outer wall that surrounds the inner wall, the container containing a liquid between the inner wall and the outer wall; a wick, a portion of which is disposed between the inner wall and the outer wall and which absorbs the liquid; a heater disposed around at least a portion of the wick to heat the wick; a base that defines an internal space communicating with the insertion space and is disposed on one side of the container in the longitudinal direction of the insertion space, the base including a bottom that faces the opening of the insertion space relative to the wick, and a sidewall that connects the bottom and the container to form an inlet that communicates with the internal space of the base; a filter disposed on an inner wall of the base and covering the inlet; Including, An aerosol generating device, wherein the inlet is offset with respect to the insertion space when viewed in the longitudinal direction of the insertion space and is positioned closer to the container than the bottom.
2. The aerosol generating device according to claim 1 , wherein the inlet is formed to penetrate horizontally through a side wall of the base.
3. a body having an electrical supply for supplying electricity to the heater to heat the wick; The base is removably coupled to the body. The aerosol generating device according to claim 1 .
4. The aerosol generating device according to claim 3 , further comprising a casing coupled to the body and covering the container.
5. The aerosol generating device according to claim 1 , wherein the inner surface of the side wall of the base is flat, and the filter is disposed on the inner surface.
6. the base includes a rib projecting from an inner surface of the side wall and extending around the inlet; The filter is coupled to the rib and spaced apart from the inlet. The aerosol generating device according to claim 1 .
7. a container including an elongated inner wall forming an insertion space and an outer wall surrounding the inner wall and containing a liquid between the inner wall and the outer wall; a core, a portion of which is disposed between the inner wall and the outer wall; a heater disposed around at least a portion of the wick to heat the wick; a base disposed adjacent to the heater, coupled to the container, the interior of which communicates with the insertion space; a moisture absorber disposed inside the base; A heat insulating member; Including, The moisture absorber has at least one hole penetrating the moisture absorber, The aerosol generating device, wherein the insulating member is disposed between the part of the heater disposed in the hall and the moisture absorber.
8. The aerosol generating device according to claim 7 , wherein the heater includes a wire wound around the outer surface of the wick, passing through the absorbent body through the hole, and connected to a power source located outside the container.
9. An aerosol generating device as described in Claim 8, wherein the insulating member covers a portion of the wire.
10. a holder protruding from an inner surface of the base to support the moisture absorber; The moisture absorber is disposed between the inner surface of the base and the holder. The aerosol generating device according to claim 7.
11. The aerosol generating device according to claim 7 , further comprising a protrusion protruding from an inner surface of the base and inserted into the moisture absorbent.
12. The inner surface of the base is a first inner surface facing the insertion space; a second inner surface extending from the first inner surface toward the container; an inlet formed on the second inner surface, which communicates the inside and the outside of the base; the moisture absorbent body is supported by the first inner surface and the second inner surface; The aerosol generating device according to claim 11.
13. A container including an elongated inner wall forming an insertion space, and an outer wall surrounding said inner wall and containing a liquid between said inner wall and said outer wall; a core, a portion of which is disposed between the inner wall and the outer wall; a heater disposed around at least a portion of the wick to heat the wick; a base disposed adjacent to the heater, coupled to the container, the interior of which communicates with the insertion space; a moisture absorber disposed inside the base; a protrusion protruding from an inner surface of the base and inserted into the moisture absorber; Including, The inner surface of the base is a first inner surface facing the insertion space; a second inner surface extending from the first inner surface toward the container; an inlet formed on the second inner surface, which communicates the inside and the outside of the base; the moisture absorbent body is supported by the first inner surface and the second inner surface, The moisture absorbent is a first outer surface supported by a first inner surface of the base; a second outer surface supported by a second inner surface of the base; a groove formed on the second outer surface for receiving the protrusion; An aerosol generating device comprising:
14. The aerosol generating device according to claim 13 , wherein the absorbent body includes an incision formed between the first outer surface of the absorbent body and the groove.
Citation Information
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