Atomizing cup
By setting up a baffle structure in the nebulizer cup, the problem of probe misjudgment is solved, ensuring the reliability and stability of the nebulizer equipment and avoiding treatment interruptions and increased maintenance costs caused by misjudgment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-03-24
AI Technical Summary
When bubbles accumulate in the existing nebulizer cup, the probe cannot directly contact the medication, leading to misjudgment of insufficient medication, interruption of treatment, reduced equipment reliability and stability, and increased maintenance costs.
A baffle structure is set up in the atomizing cup to partially surround the detection end of the probe, restricting bubbles from getting close to the probe, avoiding misjudgment, and ensuring normal probe detection.
It improves the reliability and stability of nebulization equipment, ensures treatment effectiveness, reduces maintenance costs, and enhances the user experience.
Smart Images

Figure CN224024007U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical instrument technical field, concretely relates to a nebulization cup. BACKGROUND
[0002] In the current nebulization treatment process, the nebulization cup converts the liquid medicine into the aerosol of small particles for the patient to inhale through the atomizing piece. However, when the atomizing piece works, some bubbles will inevitably be produced. With the advancement of the nebulization process, these bubbles gradually accumulate.
[0003] The existing nebulization cup is insufficient in design for the problem of bubble interference detection probe. When the bubbles gradually accumulate and wrap the detection probe, the detection probe will send an error signal due to the inability to directly contact the liquid medicine, resulting in the system misjudging that there is no liquid in the medicine cup, and then cutting off the power supply. This not only interrupts the normal treatment of the patient, but also may affect the treatment effect because the patient does not complete the predetermined treatment dose. In addition, frequent false detection also reduces the reliability and stability of the nebulization equipment and increases the maintenance cost.
[0004] Therefore, how to solve the above-mentioned problems existing in the prior art has become the research and solution of the utility model. UTILITY MODEL CONTENT
[0005] The utility model aims at providing a nebulization cup.
[0006] In order to achieve the above-mentioned purpose, the utility model adopts the technical scheme that:
[0007] A nebulization cup comprises:
[0008] A cup body has a storage cavity for containing liquid medicine, and a liquid outlet is arranged at the bottom and communicates with the storage cavity;
[0009] A probe has a detection end arranged in the storage cavity and close to the liquid outlet;
[0010] An atomizing piece is arranged at the liquid outlet and below the probe;
[0011] A fence structure is semi-surrounded below the detection end.
[0012] The probe is a waterless detection probe in the nebulizer, and the principle is referred to the prior art, which is not described here.
[0013] In the process of converting the liquid medicine into the aerosol of small particles by the atomizing piece, some bubbles will be produced. When the bubbles gradually accumulate and wrap the probe, the probe will send an error signal due to the inability to directly contact the liquid medicine.
[0014] The application sets a surrounding structure, which is semi-enclosed below the detection end, can limit the bubbles (especially larger bubbles) to approach the probe, avoid the probe misjudgment, avoid the situation that the patient cannot normally receive treatment, ensure the reliability and stability of the atomization equipment, and further ensure the treatment effect and user experience, and can also avoid the increase of maintenance cost.
[0015] When the atomization cup is used, liquid film or bubbles may be formed due to the influence of residual liquid or liquid surface tension, which causes the probe to misjudge as "water", and the surrounding structure can also avoid this situation.
[0016] The application only uses the surrounding structure to solve the above problems, which is efficient and low in cost.
[0017] It should be noted that the probe and the atomization sheet need to be used in combination with the control circuit, such as in combination with a flexible printed circuit board. These are conventional existing settings and are not the innovation of the application. The detailed principles of the application in actual work can be understood in combination with the prior art.
[0018] In some embodiments, at least part of the outer circumferential surface of the surrounding structure is arranged away from the wall portion of the cup body, and / or a through hole for liquid medicine to pass through is arranged on the surrounding structure. Whether at least part of the outer circumferential surface of the surrounding structure is arranged away from the wall portion of the cup body or a through hole for liquid medicine to pass through is arranged on the surrounding structure, the liquid medicine can normally contact the atomization sheet.
[0019] Further technical solutions, the surrounding structure includes a blocking portion, the blocking portion is formed with a surrounding groove for accommodating the detection end towards the inner wall of the cup body, and the lower end of the surrounding groove is communicated with the liquid outlet, so that the probe is semi-enclosed by the surrounding structure at the liquid outlet.
[0020] The surrounding groove better blocks the bubbles generated at the liquid outlet outside the blocking portion. In the "water" state, the detection end of the probe is normally immersed in the liquid medicine, further avoiding the "false no water" detection result. The lower end of the surrounding groove is communicated with the liquid outlet. In the "no water" state, the liquid medicine at the detection end of the probe flows downward to the atomization sheet for atomization and discharge, further avoiding the "false water" detection result.
[0021] Further technical solutions, the cup body is provided with a cup cover above; a sealing ring is arranged on the cup cover; the cup cover can be connected with the cup body in a sealed manner through the sealing ring; a liquid inlet and a plug for plugging the liquid inlet are arranged on the cup cover; and the plug is connected with the sealing ring through a connecting piece.
[0022] The medicine liquid is placed in the cup body, and the cup cover prevents the medicine liquid from leaking out. When the cup body and the cup cover are separated, more operable space is provided for cleaning the wall of the cup body, and the bottom end area (which can be understood as the bottom surface) of the cup cover is also convenient to clean.
[0023] In some embodiments, a scale mark is provided on the outer surface of the cup body.
[0024] When the medicine liquid is supplemented, the plug is pulled out, and the medicine liquid is injected into the storage cavity through the liquid injection port.
[0025] Supplementing the medicine liquid does not require pulling out the cup cover, which reduces the risk of contamination of the medicine liquid, the possibility of leakage of the medicine liquid, and the amount of operation during the process of supplementing the medicine liquid.
[0026] In a further technical solution, the plug is provided with a vent hole.
[0027] When the medicine liquid in the storage cavity is consumed, a negative pressure may be formed in the storage cavity, thereby causing some effects, such as causing the medicine liquid to be unable to be normally atomized, and the provision of the vent hole can avoid the occurrence of this situation and ensure long-term use of the atomizing cup.
[0028] In a further technical solution, the sealing ring comprises an upper sealing member and a lower sealing member.
[0029] When the cup cover and the cup body are assembled, the upper sealing member is tightly attached to the top surface of the cup body, and the lower sealing member is tightly attached to the inner wall of the storage cavity.
[0030] The connecting member is connected to the upper sealing member, and the connecting member is a flexible structure.
[0031] In some embodiments, the upper sealing member is provided as a silica gel sealing gasket.
[0032] In some embodiments, the cup cover is provided with an upper annular groove corresponding to the upper sealing member.
[0033] In some embodiments, after the cup cover and the cup body are assembled, part of the cup cover protrudes relative to the cup body in the radial direction of the cup cover, so as to facilitate pulling out of the cup cover.
[0034] After the cup cover and the cup body are assembled, the upper sealing member is tightly attached to the top surface of the cup body, thereby reducing the possibility of leakage of the medicine liquid in the storage cavity.
[0035] After the cup cover and the cup body are assembled, the lower sealing member is in the storage cavity, which can fix the cup cover and further reduce the possibility of leakage of the medicine liquid in the storage cavity.
[0036] In some embodiments, the upper sealing member, the connecting member, and the plug are integrally provided.
[0037] In some embodiments, the connecting piece is provided in a strip-shaped structure made of silica gel.
[0038] The upper sealing piece, the connecting piece and the plug are directly or indirectly connected with each other, which can avoid the plug from being easily lost and reduce the risk of the plug being contaminated.
[0039] In a further technical solution, a receiving groove is arranged on the cup cover corresponding to the connecting piece.
[0040] In some embodiments, the size of the receiving groove is smaller than that of the connecting piece, and in this case, the receiving groove can be regarded as a fixing groove.
[0041] The arrangement of the receiving groove can avoid the connecting piece from being protrudingly arranged at the top end region of the cup cover, improve the aesthetic appearance, assist in fixing the plug, and play a role in cooperating with the plug to avoid the leakage of the liquid medicine through the liquid injection port.
[0042] In a further technical solution, the thickness of the connecting piece is smaller than or equal to the depth of the receiving groove.
[0043] This part can further improve the aesthetic appearance.
[0044] In a further technical solution, the cup cover is provided with at least one recess near the end of the cup body, which communicates with the storage cavity.
[0045] The storage cavity and the recess can form a larger liquid storage space, improve the upper limit of the liquid medicine storage, reduce the frequency of supplementing the liquid medicine, improve the utilization degree of the cup cover, reduce the material cost, and reduce the weight of the atomizing cup.
[0046] In some embodiments, the recess is provided in a plurality of recesses, and each recess is circumferentially distributed around the liquid injection port, so that the structure strength can be ensured while the recess is arranged.
[0047] In a further technical solution, the probe is partially arranged in the shell.
[0048] The shell is used to protect the probe, reduce the interference of external factors on the probe, prolong the service life of the probe, and ensure the long-term use of the atomizing cup.
[0049] In a further technical solution, the cup body, the shell and the air outlet are integrally arranged.
[0050] The cup body, the shell and the air outlet are integrally arranged, so that the structural strength of the atomizing cup can be improved and the processing difficulty of the atomizing cup can be reduced.
[0051] In a further technical solution, the cup body is arranged in an inclined manner.
[0052] And / or, the size of the upper end of the cup body is greater than that of the lower end of the cup body.
[0053] The cup body is arranged obliquely, so that the limitation of the shell on the cup body can be reduced, and the cup body can accommodate more liquid medicine while having a regular shape to ensure the appearance.
[0054] The lower end of the cup body is closer to the shell than the upper end, and the size of the two can be limited to further ensure the liquid medicine accommodating capacity of the cup body.
[0055] Further, the technical scheme also includes an air outlet, wherein the air outlet includes an assembled upper shell and an assembled lower shell.
[0056] The atomizing piece is arranged between the assembled upper shell and the assembled lower shell.
[0057] The assembled upper shell is provided with a hole communicating with the liquid outlet.
[0058] The assembled upper shell and the assembled lower shell can be threadedly connected or connected by other connection modes.
[0059] The assembled upper shell and the assembled lower shell form an accommodating space, and the atomizing piece is arranged in the accommodating space. Since the air outlet is not integrally arranged, the atomizing piece can be conveniently replaced and maintained.
[0060] Further, the technical scheme also includes that the atomizing piece is provided with elastic sealing pieces on both sides close to and away from the liquid outlet.
[0061] The elastic sealing pieces can protect the atomizing piece, fix the atomizing piece, and limit the leakage of liquid medicine.
[0062] Further, the technical scheme also includes that the elastic sealing piece close to the liquid outlet is integrally formed with the surrounding structure.
[0063] The elastic sealing piece and the surrounding structure are integrally formed, which can reduce the difficulty of installing and dismounting the surrounding structure.
[0064] Further, the technical scheme also includes that the assembled upper shell is provided with a surrounding structure corresponding to the atomizing piece.
[0065] And / or, the assembled lower shell is provided with a convex structure, and the surface of the convex structure is covered with an elastic pad.
[0066] In some embodiments, the surrounding structure includes a plurality of surrounding plates, and each surrounding plate is arranged on the assembled upper shell in a spaced manner and forms an installation groove, so as to fix the atomizing piece while reducing the structural cost.
[0067] In some embodiments, the flexible printed circuit board is attached to the atomizing piece, the probe is connected to the flexible printed circuit board, and in addition to the conventional arrangement, the flexible printed circuit board is lifted by the protruding structure, and the elastic pad is used as an intermediate buffer structure, so that the flexible printed circuit board, the atomizing piece and the probe are stably connected, and the flexible printed circuit board is protected.
[0068] As used herein, "first", "second", and the like, do not particularly refer to the order or sequence, nor are they used to limit the present application, but are merely used to distinguish components or operations described by the same technical terms.
[0069] As used herein, "connected" or "positioned" can mean that two or more components or devices are in direct physical contact, or are indirectly in physical contact through other intermediate components or devices, or can mean that two or more components or devices are operatively or functionally connected.
[0070] As used herein, "including", "including", "including", and the like are open terms, that is, they mean including but not limited to.
[0071] As used herein, the words (terms) have their usual meanings in the art, in the context of the present application, and in the special context, unless otherwise specifically noted. Some of the words used to describe the present application are discussed below or elsewhere in the specification to provide additional guidance to those skilled in the art in connection with the description of the present application.
[0072] As used herein, "front", "back", "up", "down", "left", "right", and the like are directional words, which in the present application are only used to describe the positional relationship between structures, and are not used to limit the protection scheme and the specific direction in actual implementation.
[0073] The working principle and advantages of the utility model are as follows:
[0074] When the atomizing cup is used, the atomizing piece converts the liquid medicine into a small particle aerosol. In this process, some bubbles are generated. When the bubbles gradually accumulate and wrap the probe, the probe cannot directly contact the liquid medicine, and an error signal will be generated.
[0075] The present application provides a fence structure, which is semi-enclosed below the detection end, can limit the approach of bubbles (especially larger bubbles) to the probe, avoid the situation of probe misjudgment, ensure the reliability and stability of the atomizing equipment, and further ensure the treatment effect and user experience, and can also avoid the increase of maintenance cost. BRIEF DESCRIPTION OF DRAWINGS
[0076] Figure 1 The structure of the atomizing cup of the utility model embodiment is shown in the figure.
[0077] Figure 2 This is a cross-sectional view of the atomizing cup in an embodiment of the present invention;
[0078] Figure 3 This is a schematic diagram showing the positions of the probe, the enclosure structure, and the elastic seal in one embodiment of the present invention.
[0079] Figure 4 This is a structural schematic diagram of the cup lid from another perspective of an embodiment of this utility model;
[0080] Figure 5 This is a schematic diagram of the atomizing cup of this utility model without the cup lid;
[0081] Figure 6 This is a structural schematic diagram of the atomizing cup from another perspective, omitting the cup lid, according to an embodiment of this utility model.
[0082] Figure 7 This is a partial structural diagram of the atomizing cup in an embodiment of the present invention;
[0083] Figure 8 for Figure 7 A schematic diagram of the structure after omitting the atomizing plate and elastic seal;
[0084] Figure 9 for Figure 8 A schematic diagram of the structure after omitting the elastic pad in the middle section;
[0085] Figure 10 This is an exploded view of the atomizing cup according to an embodiment of the present invention;
[0086] Figure 11 This is a schematic diagram showing the position of the elastic seal and the enclosure structure in one embodiment of the present invention;
[0087] Figure 12 This is a structural schematic diagram of the atomizing cup from another perspective in an embodiment of this utility model;
[0088] Figure 13 This is a schematic diagram of the structure of the cup lid according to an embodiment of the present invention.
[0089] In the attached diagrams: 1. Cup body; 11. Storage cavity; 12. Liquid outlet; 2. Probe; 21. Detection end; 3. Atomizing plate; 4. Enclosure structure; 41. Blocking part; 42. Enclosure groove; 5. Vent; 51. Assembled upper shell; 52. Assembled lower shell; 6. Elastic seal; 7. Cup lid; 71. Liquid inlet; 72. Receiving groove; 73. Groove; 8. Sealing ring; 81. Upper seal; 82. Lower seal; 9. Plug; 91. Vent hole; 100. Connector; 200. Enclosure structure; 300. Protruding structure; 400. Elastic pad. Detailed Implementation
[0090] The utility model will be further described below in conjunction with the drawings and embodiments:
[0091] Embodiments: the following will be illustrated by the drawings and detailed description of the case, any person skilled in the art after understanding the embodiment of the case, when the technology taught by the case, change and modification, it does not deviate from the spirit and scope of the case.
[0092] The language in this paper is only for describing specific embodiments, and is not intended to limit the case. The singular form such as "a", "this", "this", "this" and "the" is also used in this paper, which also includes the plural form.
[0093] Referring to Figures 1-13 An atomizing cup comprises:
[0094] The cup body 1 has a storage cavity 11 for containing liquid medicine, and the bottom is provided with a liquid outlet 12 communicating with the storage cavity 11.
[0095] The probe 2 has a detection end 21 arranged in the storage cavity 11 and close to the liquid outlet 12.
[0096] The atomizing sheet 3 is arranged at the liquid outlet 12 and below the probe 2.
[0097] The containment structure 4 is semi-enclosed below the detection end 21.
[0098] At least part of the outer circumferential surface of the containment structure 4 is arranged away from the wall of the cup body 1, and / or the containment structure 4 is provided with a perforation for the liquid medicine to pass through.
[0099] The probe 2 and the atomizing sheet 3 are commonly arranged in the atomizer, and the principle is referred to the prior art, which is not described here.
[0100] In the process of converting liquid medicine into fine particle aerosol by the atomizing sheet 3, some bubbles will be generated, and when the bubbles gradually accumulate and wrap the probe 2, the probe 2 will send an error signal because it cannot directly contact the liquid medicine.
[0101] The present application provides the containment structure 4, whether at least part of the outer circumferential surface of the containment structure 4 is arranged away from the wall of the cup body 1, or the containment structure 4 is provided with a perforation for the liquid medicine to pass through, which can ensure that the liquid medicine normally contacts the atomizing sheet 3.
[0102] The enclosure structure 4 is semi-enclosed below the detection end 21, which can limit the approach of bubbles (especially larger bubbles) to the probe 2, avoid the false detection of the probe 2, avoid the situation that the patient cannot normally receive treatment, ensure the reliability and stability of the atomization equipment, and further ensure the treatment effect and user experience, and also avoid the increase of maintenance cost.
[0103] When the atomization cup is used, liquid film or bubbles may be formed due to the influence of residual liquid or liquid surface tension, which may cause the probe 2 to be misjudged as "water". The enclosure structure 4 can also avoid this situation.
[0104] The application only uses the enclosure structure 4 to solve the above problems, which is efficient and low in cost.
[0105] In some embodiments, the enclosure structure 4 is made of silica gel.
[0106] In some embodiments, the enclosure structure 4 is designed in a wedge shape, an arc shape or a grid shape.
[0107] The gap size between the enclosure structure 4 and the wall of the cup body 1, and the size and number of the perforations on the enclosure structure 4 can be adjusted according to actual needs.
[0108] It should be noted that the probe 2 and the atomization sheet 3 need to be used in combination with a control circuit when used, such as in combination with a flexible printed circuit board. These are conventional existing settings and are not the innovation points of the application. The detailed principles of the application in actual work can be understood in combination with the prior art.
[0109] Referring to Figure 11 , a further technical solution, the enclosure structure 4 includes a blocking portion 41, the blocking portion 41 is formed with an enclosure groove 42 for accommodating the detection end 21 towards the inner wall of the cup body 1, and the lower end of the enclosure groove 42 is in communication with the liquid outlet 12, so that the probe 2 is semi-enclosed by the enclosure structure 4 at the liquid outlet 12.
[0110] The enclosure groove 42 better blocks the bubbles generated at the liquid outlet 12 outside the blocking portion 41. In the "water" state, the detection end 21 of the probe 2 is normally immersed in the liquid, which further avoids the occurrence of "false no water" detection results. The lower end of the enclosure groove 42 is in communication with the liquid outlet 12. In the "no water" state, the liquid at the detection end 21 of the probe 2 flows downward to the atomization sheet 3 for atomization and discharge, which further avoids the occurrence of "false water" detection results.
[0111] Referring to Figures 12-13In the embodiment, the cup 1 is provided with a cup cover 7 above; a sealing ring 8 is arranged on the cup cover 7 in a ring shape, the cup cover 7 is connected with the cup 1 in a sealing cover combination manner through the sealing ring 8; the cup cover 7 is provided with a liquid injection port 71 and a plug 9 for plugging the liquid injection port 71; the plug 9 is connected with the sealing ring 8 through a connecting piece 100.
[0112] The liquid medicine is placed in the cup 1, and the cup cover 7 prevents the liquid medicine from leaking out. When the cup 1 is separated from the cup cover 7, more operable space can be provided for cleaning the wall part of the cup 1, and the bottom end area (which can be understood as the bottom surface) of the cup cover 7 is also convenient to clean.
[0113] In some embodiments, a scale mark is arranged on the outer surface of the cup 1.
[0114] When the liquid medicine is supplemented, the plug 9 is pulled out, and the liquid medicine is injected into the storage cavity 11 through the liquid injection port 71.
[0115] Supplementing the liquid medicine does not need to pull out the cup cover 7, which reduces the risk of contamination of the liquid medicine, the possibility of leakage of the liquid medicine, and the operation amount in the process of supplementing the liquid medicine.
[0116] Referring to Figure 12 In the embodiment, the plug 9 is provided with a vent hole 91.
[0117] When the liquid medicine in the storage cavity 11 is consumed, a negative pressure can be formed in the storage cavity 11, thereby causing some influences, such as causing the liquid medicine to be unable to be normally atomized, and the arrangement of the vent hole 91 can avoid the occurrence of this situation, thereby ensuring long-term use of the atomizing cup.
[0118] Referring to Figure 2 In the embodiment, the sealing ring 8 includes an upper sealing member 81 and a lower sealing member 82.
[0119] When the cup cover 7 is assembled with the cup 1, the upper sealing member 81 is tightly attached to the top surface of the cup 1, and the lower sealing member 82 is tightly attached to the inner wall of the storage cavity 11.
[0120] The connecting piece 100 is connected to the upper sealing member 81, and the connecting piece 100 is a flexible structure.
[0121] In some embodiments, the upper sealing member 81 is a silica gel sealing gasket.
[0122] In some embodiments, the upper ring-shaped groove is arranged on the cup cover 7 corresponding to the upper sealing member 81.
[0123] In some embodiments, after the cup 1 is assembled with the cup cover 7, part of the cup cover 7 protrudes relative to the cup 1 along the radial direction of the cup cover 7, so as to facilitate pulling out of the cup cover 7.
[0124] When the cup body 1 and the cup cover 7 are assembled, the upper sealing member 81 is tightly attached to the top surface of the cup body 1, thereby reducing the possibility of leakage of the liquid medicine in the storage cavity 11.
[0125] In some embodiments, the lower sealing member 82 is a silica gel sealing pad.
[0126] In some embodiments, the cup cover 7 is provided with a lower annular groove corresponding to the lower sealing member 82.
[0127] In some embodiments, the lower sealing member 82 is in interference fit with the cup body 1.
[0128] When the cup cover 7 and the cup body 1 are assembled, the lower sealing member 82 is located in the storage cavity 11, which can fix the cup cover 7 and further reduce the possibility of leakage of the liquid medicine in the storage cavity 11.
[0129] In some embodiments, the upper sealing member 81, the connecting member 100 and the plug 9 are integrally arranged.
[0130] In some embodiments, the connecting member 100 is in a strip structure made of silica gel.
[0131] In some embodiments, the plug 9 is made of silica gel.
[0132] The direct or indirect connection among the upper sealing member 81, the connecting member 100 and the plug 9 can avoid the loss of the plug 9 and reduce the risk of contamination of the plug 9.
[0133] Referring to Figure 12 In this embodiment, the cup cover 7 is provided with a receiving groove 72 corresponding to the connecting member 100.
[0134] In some embodiments, the size of the receiving groove 72 is smaller than that of the connecting member 100, and in this case, the receiving groove 72 can be regarded as a fixing groove.
[0135] The arrangement of the receiving groove 72 can avoid the protruding arrangement of the connecting member 100 at the top end region of the cup cover 7, improve the aesthetic appearance, assist in fixing the plug 9, and cooperate with the plug 9 to avoid the leakage of the liquid medicine through the liquid injection port 71.
[0136] In further technical solutions, the thickness of the connecting member 100 is smaller than or equal to the depth of the receiving groove 72.
[0137] This part can further improve the aesthetic appearance.
[0138] Referring to Figure 4 In this embodiment, the cup cover 7 is provided with at least one recess 73 near the end of the cup body 1, which is in communication with the storage cavity 11.
[0139] The storage cavity 11 and the groove 73 can form a larger liquid storage space, increase the upper limit of the liquid storage, reduce the frequency of supplementing the liquid, improve the utilization degree of the cup cover 7, reduce the material cost, and reduce the weight of the atomizing cup.
[0140] In some embodiments, the groove 73 is provided in a plurality of forms, and each groove 73 is distributed in a circle around the liquid inlet 71, so that the structure strength can be ensured while the groove is formed.
[0141] In the embodiment, the probe 2 is partially arranged in the shell.
[0142] The shell is used to protect the probe 2, reduce the interference of external factors on the probe 2, delay the service life of the probe 2, and ensure the long-term use of the atomizing cup.
[0143] In the embodiment, the cup body 1, the shell, and the air outlet 5 are integrally arranged.
[0144] The cup body 1, the shell, and the air outlet 5 are integrally arranged, so that the structural strength of the atomizing cup can be improved, and the processing difficulty of the atomizing cup can be reduced.
[0145] Referring to Figure 1 In the embodiment, the cup body 1 is arranged in an inclined manner.
[0146] And / or, the upper end of the cup body 1 is larger than the lower end of the cup body 1.
[0147] The cup body 1 is arranged in an inclined manner, so that the limitation of the shell on the occupied area of the cup body 1 can be reduced, and the cup body 1 can accommodate more liquid while having a regular shape to ensure the appearance.
[0148] The lower end of the cup body 1 is closer to the shell than the upper end of the cup body 1, and by limiting the sizes of the two, the liquid accommodating capacity of the cup body 1 can be further ensured.
[0149] In some embodiments, the upper end of the cup body 1 is in a cylindrical structure.
[0150] Referring to Figure 1 , Figure 2 In the embodiment, the air outlet 5 is further included, and the air outlet 5 includes an assembled upper shell 51 and an assembled lower shell 52.
[0151] The atomizing piece 3 is arranged between the assembled upper shell 51 and the assembled lower shell 52.
[0152] The assembled upper shell 51 is provided with a hole communicating with the liquid outlet 12.
[0153] In some embodiments, the cup body 1 and the assembled upper shell 51 are integrally arranged.
[0154] The assembled upper shell 51 and the assembled lower shell 52 form a containing space, and the atomizing sheet 3 is placed in the containing space. Since the air outlet 5 is not integrally arranged, the atomizing sheet 3 can be conveniently replaced and maintained.
[0155] Referring to Figure 2 In the embodiment, the atomizing sheet 3 is provided with the elastic sealing member 6 on both sides close to and away from the liquid outlet 12.
[0156] In some embodiments, the elastic sealing member 6 is a silica gel sealing pad.
[0157] The elastic sealing member 6 can protect the atomizing sheet 3, fix the atomizing sheet 3, and limit the leakage of the liquid.
[0158] The shape of the elastic sealing member 6 is not limited here and can meet the above requirements.
[0159] Referring to Figure 3 In the embodiment, the elastic sealing member 6 close to the liquid outlet 12 is integrally formed with the surrounding structure 4.
[0160] The elastic sealing member 6 is integrally formed with the surrounding structure 4, which can reduce the difficulty of installing and dismounting the surrounding structure 4.
[0161] Referring to Figures 6-9 In the embodiment, the assembled upper shell 51 is provided with a surrounding structure 200 corresponding to the atomizing sheet 3.
[0162] And / or, the assembled lower shell 52 is provided with a convex structure 300, and the surface of the convex structure 300 is covered with an elastic pad 400.
[0163] In some embodiments, the surrounding structure 200 includes a plurality of surrounding plates, and each surrounding plate is installed on the assembled upper shell 51 in a spaced manner to form an installation groove, thereby fixing the atomizing sheet 3 and reducing the structural cost.
[0164] In some embodiments, the elastic pad 400 is a silica gel pad.
[0165] In some embodiments, the flexible printed circuit board is arranged to be attached to the atomizing sheet 3. At this time, the probe 2 is connected to the flexible printed circuit board, and the existing conventional arrangement is based on this. The convex structure 300 is used to lift the flexible printed circuit board, and the elastic pad 400 is used as an intermediate buffer structure, thereby realizing the stable connection of the flexible printed circuit board, the atomizing sheet 3, and the probe 2, and protecting the flexible printed circuit board.
[0166] The above examples are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and cannot limit the protection scope of the present application. Any equivalent changes or modifications made according to the spirit and essence of the present application shall be covered within the protection scope of the present application.
Claims
1. An atomizing cup, characterized in that: include: The cup body (1) has a storage cavity (11) for containing liquid medicine, and a liquid outlet (12) communicating with the storage cavity (11) is provided at the bottom. The probe (2) has a detection end (21) disposed in the storage cavity (11) and close to the outlet (12); Atomizing plate (3) is disposed at the liquid outlet (12) and below the probe (2); The enclosure structure (4) partially surrounds the area below the detection end (21).
2. The atomizing cup according to claim 1, characterized in that: The enclosure structure (4) includes a blocking part (41), on which an enclosure groove (42) for accommodating the detection end (21) is formed on the inner wall facing the cup body (1), and the lower end of the enclosure groove (42) is connected to the liquid outlet (12) so that the probe (2) is partially surrounded by the liquid outlet (12) by the enclosure structure (4).
3. The atomizing cup according to claim 1, characterized in that: It also includes an air outlet (5), which includes an upper assembly shell (51) and a lower assembly shell (52). The atomizing plate (3) is disposed between the upper assembly shell (51) and the lower assembly shell (52). The upper assembly shell (51) has a hole that communicates with the liquid outlet (12).
4. The atomizing cup according to claim 1, characterized in that: The atomizing plate (3) is provided with elastic sealing elements (6) on both sides near and away from the liquid outlet (12), and the elastic sealing element (6) near the liquid outlet (12) is integrally formed with the enclosure structure (4).
5. An atomizing cup according to claim 1, characterized in that: A cup lid (7) is disposed on the top of the cup body (1); a sealing ring (8) is provided on the cup lid (7), and the cup lid (7) can be sealed and connected to the cup body (1) through the sealing ring (8); the cup lid (7) is provided with a liquid inlet (71) and a plug (9) for sealing the liquid inlet (71); the plug (9) is connected to the sealing ring (8) through a connector (100).
6. An atomizing cup according to claim 5, characterized in that: The plug (9) is provided with a vent hole (91).
7. An atomizing cup according to claim 5, characterized in that: The sealing ring (8) includes an upper sealing element (81) and a lower sealing element (82); When the cup lid (7) is assembled with the cup body (1), the upper sealing member (81) is tightly attached to the top surface of the cup body (1), and the lower sealing member (82) is sealed and attached to the inner wall of the storage cavity (11). The connector (100) is connected to the upper seal (81); the connector (100) is a flexible structure.
8. An atomizing cup according to claim 5, characterized in that: The cup lid (7) is provided with a receiving groove (72) corresponding to the connector (100).
9. An atomizing cup according to claim 8, characterized in that: The thickness of the connector (100) is less than or equal to the depth of the receiving groove (72).
10. An atomizing cup according to claim 3, characterized in that: The assembly shell (51) is provided with an enclosure structure (200) corresponding to the atomizing plate (3). And / or, the assembly lower shell (52) is provided with a protrusion structure (300), the surface of which is covered with an elastic pad (400).
11. An atomizing cup according to claim 5, characterized in that: The end of the cup lid (7) near the cup body (1) is provided with at least one groove (73) that communicates with the storage cavity (11).