Smell water cup
By designing a cylindrical body and rotating disc inside the water cup to control the release of odor from the odor block, the problem of the water cup having only one function is solved, and the controllable release of odor is achieved, thus improving the user's drinking experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN RONGYAN TECHNOLOGY CO LTD
- Filing Date
- 2025-05-26
- Publication Date
- 2026-04-28
AI Technical Summary
Existing water cups have limited functionality, resulting in a poor user experience and failing to meet users' needs for diverse experiences.
An aromatized water cup was designed. By setting a cylindrical body and a rotating disk on the cup head, and utilizing the connection and misalignment of the air vents and air outlets on the rotating disk, the aroma of the aroma block can be controlled to release and seal, thereby achieving controlled aroma release and enhancing the user's drinking experience.
When drinking beverages, users can smell the aroma emitted by the aroma blocks, enhancing the drinking experience and satisfying users' needs for diverse experiences.
Smart Images

Figure CN224166063U_ABST
Abstract
Description
Technical Field
[0001] This invention patent relates to the technical field of water cups, and more specifically, to scented water cups. Background Technology
[0002] Water cups are used to hold beverages, such as drinks or liquids. With the diversification of user needs, water cups come in many types and shapes, such as household water cups, travel water cups, and sports water cups.
[0003] As user needs continue to evolve, users are increasingly seeking a richer experience when drinking beverages from cups. For example, they may want to enjoy the aromas they like while drinking, thus enhancing their overall experience.
[0004] In the existing technology, the function of water cups is mostly limited to holding beverages for users to drink. Their function is limited, and the user experience is also limited, making it difficult to meet user needs. Summary of the Invention
[0005] The purpose of this invention is to provide a scented water cup, aiming to solve the problem of the monotonous user experience of water cups in the prior art.
[0006] The present invention is implemented as follows: an aromatized water cup includes a cup body, the cup body having an inner cavity for holding a beverage, the cup body being connected to a cup head, the cup head having a cylindrical body having a flow channel communicating with the inner cavity, the beverage in the inner cavity flowing out through the flow channel; the cup head having a cup cover, the cup cover and the cup head enclosing a storage cavity, the storage cavity having an aromatized block that emits an aroma;
[0007] The cylindrical body passes through the cup cover, and the storage cavity surrounds the outer periphery of the cylindrical body; the cup cover is provided with an air vent, through which the odor emitted by the odor block is dispersed outward; the cup cover is provided with a rotating disk that can rotate relative to the cup cover, the cylindrical body passes through the rotating disk, and the rotating disk is provided with an air dissipation hole;
[0008] During the rotation of the rotating disk relative to the cup cover, when the vent hole and the outlet hole are connected, the cup cover is in a venting state, and the odor emitted by the odor block is emitted outward after passing through the outlet hole and the vent hole in sequence; when the vent hole and the outlet hole are misaligned, the rotating disk covers the outlet hole, the cup cover is in a closed state, and the odor emitted by the odor block is sealed in the storage cavity.
[0009] Furthermore, the rotating disk is provided with a plurality of ventilation holes. Along the rotation direction of the rotating disk relative to the cup cover, the plurality of ventilation holes are arranged sequentially at intervals, and the diameter of the plurality of ventilation holes decreases sequentially. When the cup cover is in a ventilation state, only one ventilation hole is connected to the air outlet.
[0010] Furthermore, the cup cover is provided with a recessed groove, and the rotating disk is movably embedded in the recessed groove and rotatably connected to the cup cover.
[0011] Furthermore, the cup cover is provided with multiple slots, which are arranged at intervals around the circumference of the cup cover; the rotating disk is provided with multiple hook posts, which are arranged at intervals around the circumference of the rotating disk; the multiple hook posts pass through the multiple slots respectively, so that the rotating disk and the cup cover are connected as one unit; along the rotation direction of the rotating disk relative to the cup cover, the length of the slot is greater than the length of the hook post.
[0012] Furthermore, the cup head is provided with a plurality of pillars, which are formed in the storage cavity; the cup cover is provided with a plurality of mounting holes, and the plurality of pillars abut against the cup cover and are respectively aligned vertically with the plurality of mounting holes; a screw is provided on the cup cover, which passes through the mounting holes and is connected to the pillars, so that the cup cover and the cup head are connected as one unit.
[0013] Furthermore, the outer periphery of the odor block is provided with multiple positioning grooves, and the multiple columns are correspondingly embedded in the multiple positioning grooves so that the odor block is fixed in the storage cavity.
[0014] Furthermore, the cup head is provided with an air inlet, and the storage cavity is connected to the inner cavity through the air inlet. The cup head is provided with a movable plug that moves up and down relative to the cup head. When the movable plug moves upward relative to the cup head, the air inlet is closed, the storage cavity is separated from the inner cavity, and the beverage in the inner cavity is restricted from entering the storage cavity. When the movable plug moves downward relative to the cup head, the air inlet is opened, and the air in the storage cavity enters the inner cavity through the air inlet.
[0015] Furthermore, the cup head is provided with a through hole, and the air inlet is arranged adjacent to the through hole at intervals. The air inlet is arranged in an arc shape along the circumference of the through hole. The movable plug includes a movable column that is movably inserted in the through hole. The upper end of the movable column is provided with an end head, and the lower end of the movable column is provided with an elastic sealing cover. The end head and the sealing cover respectively restrict the movable column from disengaging from the through hole.
[0016] When the movable column moves downward relative to the cup head, the sealing cover deviates from the cup head, the air inlet opens, and the storage cavity connects to the inner cavity through the air inlet; when the movable column moves upward relative to the cup head, the sealing cover abuts against the cup head, the sealing cover closes the air inlet, and the storage cavity is separated from the inner cavity.
[0017] Furthermore, the end head has an internal cavity, which is spherical in shape, and a spherical counterweight ball is provided in the internal cavity. The diameter of the counterweight ball is smaller than the diameter of the internal cavity. A rigid rod is embedded inside the movable column. The rod is arranged coaxially with the movable column and is wrapped inside the movable column.
[0018] Furthermore, the cylinder is provided with a raised ring, which is formed in the flow channel and arranged around the circumference of the flow channel. The bottom of the raised ring has a stepped surface facing the inner cavity, which is arranged around the circumference of the flow channel. A buffer channel is provided in the raised ring, which extends along the axial direction of the flow channel. The buffer channel passes through the raised ring from top to bottom and through the stepped surface.
[0019] Compared with the prior art, the scented water cup provided by the present invention, when the user needs to drink the beverage in the inner cavity, drives the rotating disk to rotate so that the vent hole and the air outlet are connected. The scent emitted by the scent block can then be emitted outward through the vent hole, and the cup cover is in a venting state. During the drinking process, the user can smell the scent emitted by the scent block, which enhances the user's drinking experience and meets the user's needs. When the user does not need to drink the beverage in the inner cavity, drives the rotating disk to rotate so that the vent hole and the air outlet are misaligned, and the cup cover is in a closed state. The scent emitted by the scent block is then sealed in the storage cavity. Attached Figure Description
[0020] Figure 1 This is a three-dimensional schematic diagram of the scented water cup provided by the present invention;
[0021] Figure 2 This is a cross-sectional schematic diagram of the scented water cup provided by the present invention;
[0022] Figure 3 This is a three-dimensional exploded view of the scented water cup provided by the present invention;
[0023] Figure 4 This is a three-dimensional schematic diagram of the movable plug provided by the present invention;
[0024] Figure 5 This is a three-dimensional schematic diagram of the cup head provided by the present invention;
[0025] Figure 6 This is a detailed cross-sectional view of the cylinder provided by the present invention;
[0026] Figure 7 This is a three-dimensional schematic diagram of the movable plug provided by the present invention;
[0027] Figure 8 This is a three-dimensional schematic diagram of a straw installed in an odor-containing water cup provided by the present invention;
[0028] Figure 9 This is a cross-sectional schematic diagram of the scented water cup provided by the present invention, in which a straw is installed. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0030] The implementation of the present invention will be described in detail below with reference to specific embodiments.
[0031] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this invention, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0032] Reference Figures 1-9 The image shows a preferred embodiment of the present invention.
[0033] The scented water cup includes a cup body 100, which has an inner cavity 101 for holding beverages. The cup body 100 is connected to a cup head 200, and the cup head 200 is provided with a cylindrical body 201. The cylindrical body 201 has a flow channel 202 communicating with the inner cavity 101, and the beverage in the inner cavity 101 flows out through the flow channel 202. The cup head 200 is provided with a cup cover 300, and the cup cover 300 and the cup head 200 enclose a storage cavity 301. The storage cavity 301 is provided with a scent block 302 that emits a scent.
[0034] The beverage can be any drinkable water, such as boiled water, soft drinks, etc. The cylinder 201 can be cylindrical or curved, and the flow channel 202 has the same shape as the cylinder 201. The scent block 302 can be a scent-emitting block or a cotton ball soaked in scented liquid, depending on the actual needs. It is not limited to specific items. Furthermore, the scent emitted by the scent block 302 can be selected according to user requirements, such as fruit flavor or other specific flavors.
[0035] The cylinder 201 passes through the cup cover 300, and the storage cavity 301 surrounds the outer periphery of the cylinder 201; the cup cover 300 is provided with an air outlet 307, and the odor emitted by the odor block 302 is emitted outward through the air outlet 307; the cup cover 300 is provided with a rotating disk 400 that can rotate relative to the cup cover 300, the cylinder 201 passes through the rotating disk 400, and the rotating disk 400 is provided with an air dissipation hole 402.
[0036] The rotating disk 400 is mounted on the cup cover 300 and can rotate relative to the plane of the cup cover 300, thereby realizing the relative position change between the vent hole 402 and the vent hole 307.
[0037] During the rotation of the rotating disk 400 relative to the cup cover 300, when the vent hole 402 is connected to the vent hole 307, the cup cover 300 is in a venting state. The odor emitted by the odor block 302 passes through the vent hole 307 and the vent hole 402 in sequence and then disperses outward. When the vent hole 402 and the vent hole 307 are misaligned, the rotating disk 400 covers the vent hole 307, the cup cover 300 is in a closed state, and the odor emitted by the odor block 302 is sealed in the storage cavity 301.
[0038] When a user needs to drink from the beverage in the inner cavity 101 of the aforementioned scented water cup, the rotating disk 400 is driven to rotate, so that the vent 402 is connected to the vent 307. The scent emitted by the scent block 302 can then be emitted outward through the vent 402, and the cup cover 300 is in a venting state. During the drinking process, the user can smell the scent emitted by the scent block 302, which enhances the user's drinking experience and meets the user's needs.
[0039] When the user does not need to drink the beverage in the inner cavity 101, the drive disk 400 is rotated so that the vent 402 and the vent 307 are misaligned, the cup cover 300 is in a closed state, and the odor emitted by the odor block 302 is sealed in the storage cavity 301.
[0040] In this embodiment, the storage cavity 301 is arranged in a full circumference around the outer periphery of the cylinder 201. In this way, the odor block 302 is arranged in the storage cavity 301 and can be arranged in a full circumference around the outer periphery of the cylinder 201, so that the coverage of the odor block 302 is wider and the gas is emitted in a full circumference. When the cup cover 300 is in the gas dissipation state, it can ensure that the odor is continuously emitted outward.
[0041] In this embodiment, the rotating disk 400 is provided with a plurality of air vents 402. Along the rotation direction of the rotating disk 400 relative to the cup cover 300, the plurality of air vents 402 are arranged in sequence at intervals, and the diameter of the plurality of air vents 402 decreases in sequence. When the cup cover 300 is in the air venting state, only one air vent 402 is connected to the air outlet 307.
[0042] The area of the ventilation hole 402 connected to the air outlet 307 determines the amount of odor emitted outward. According to their own needs, users can select the corresponding ventilation hole 402 and air outlet 307 to be connected by driving the rotating disk 400 to achieve the corresponding amount of odor emission, meet the diverse needs of users, and provide users with more choices.
[0043] In this embodiment, the cup cover 300 is provided with a recessed groove 304, and the rotating disk 400 is movably embedded in the recessed groove 304 and rotatably connected to the cup cover 300. In this way, the rotating disk 400 and the cup cover 300 are engaged, and the rotating disk 400 can be hidden in the recessed groove 304.
[0044] In addition, to facilitate the rotation of the rotating disk 400, the rotating disk 400 is provided with multiple protruding ribs 401. The multiple protruding ribs 401 are arranged side by side at intervals, and the length direction of the protruding ribs 401 is perpendicular to the rotation direction of the rotating disk 400. When the user needs to drive the rotating disk 400 to rotate, he / she can press on the multiple protruding ribs 401 with his / her fingers to apply a pushing force to the multiple protruding ribs 401, thereby pushing the rotating disk 400 to rotate.
[0045] In this embodiment, the cup cover 300 is provided with a plurality of slots 305, which are arranged at intervals around the circumference of the cup cover 300; the rotating disk 400 is provided with a plurality of hook posts 403, which are arranged at intervals around the circumference of the rotating disk 400; the plurality of hook posts 403 respectively pass through the plurality of slots 305 to connect the rotating disk 400 and the cup cover 300 into one unit; along the rotation direction of the rotating disk 400 relative to the cup cover 300, the length of the slot 305 is greater than the length of the hook post 403.
[0046] After the multiple hook pins 403 pass through the multiple slots 305 respectively, the rotating disk 400 and the cup cover 300 are movably connected as one unit, and the hook pins 403 are connected to the cup cover 300, preventing the rotating disk 400 from detaching from the cup cover 300. In addition, since the length of the slot 305 is greater than the length of the hook pins 403, the rotating disk 400 can rotate within a certain range relative to the cup cover 300 along the rotation direction of the rotating disk 400 relative to the cup cover 300.
[0047] The rotation range of the rotating disk 400 relative to the cup cover 300 is determined by the length direction of the slot 305. During the rotation of the rotating disk 400 relative to the cup cover 300, when the hook post 403 abuts against the end of the slot 305, the rotating disk 400 rotates to its limit position. Within the rotation range of the rotating disk 400, the cup cover 300 can be in a venting state or a closed state. When the cup cover 300 is in a venting state, a certain vent hole 402 can be connected to the vent hole 307 according to actual needs.
[0048] In this embodiment, the cup head 200 is provided with a plurality of pillars 203, which are formed in the storage cavity 301; the cup cover 300 is provided with a plurality of mounting holes 306, and the plurality of pillars 203 abut against the cup cover 300 and are respectively aligned vertically with the plurality of mounting holes 306; a screw is provided on the cup cover 300, which passes through the mounting holes 306 and is connected to the pillars 203, so that the cup cover 300 and the cup head 200 are connected as one unit.
[0049] When assembling the cup head 200 and the cup cover 300, the cup cover 300 is installed on the cup head 200, and multiple pillars 203 abut against the cup cover 300 from bottom to top. Multiple mounting holes 306 are respectively aligned with the multiple pillars 203. Screws are then passed through the mounting holes 306 and inserted into the pillars 203 to be threadedly connected to the pillars 203, thereby realizing the connection between the cup cover 300 and the cup head 200.
[0050] To facilitate the assembly and positioning of the cup cover 300 and the cup head 200, in this embodiment, the cup head 200 is provided with multiple positioning posts 204. The multiple positioning posts 204 are arranged around the circumference of the cylinder 201 at intervals. When the cup cover 300 is installed on the cup head 200, the multiple positioning posts 204 are inserted into the cup cover 300 to achieve the positioning of the cup cover 300. At this time, the multiple posts 203 are aligned with the multiple mounting holes 306.
[0051] In this embodiment, the odor block 302 has multiple positioning grooves 303 on its outer periphery, and multiple pillars 203 are correspondingly embedded in the multiple positioning grooves 303 to fix the odor block 302 in the storage cavity 301. After the odor block 302 is placed in the storage cavity 301, the multiple pillars 203 are correspondingly embedded in the multiple positioning grooves 303, which circumferentially limit the odor block 302 along its circumference, thereby fixing the odor block 302 in the storage cavity 301, and preventing the odor block 302 from shaking or falling off in the storage cavity 301.
[0052] When it is necessary to replace the odor block 302, the multiple columns 203 are directly detached from the multiple positioning slots 303, thereby removing the odor block 302 and replacing it with a new odor block 302.
[0053] In this embodiment, the cup head 200 is provided with an air inlet 206, and the storage cavity 301 is connected to the inner cavity 101 through the air inlet 206. The cup head 200 is provided with a movable plug 600 that moves up and down relative to the cup head 200. When the movable plug 600 moves upward relative to the cup head 200, the air inlet 206 is closed, the storage cavity 301 is separated from the inner cavity 101, and the beverage in the inner cavity 101 is restricted from entering the storage cavity 301. When the movable plug 600 moves downward relative to the cup head 200, the air inlet 206 is opened, and the air in the storage cavity 301 enters the inner cavity 101 through the air inlet 206.
[0054] In this embodiment, the cup head 200 is provided with a through hole 205, and the air inlet 206 is arranged adjacent to the through hole 205 at intervals. The air inlet 206 is arranged in a circumferential arc along the through hole 205. In this way, the air intake range of the air inlet 206 can be increased, and the communication area is increased when the storage cavity 301 is connected to the inner cavity 101.
[0055] The movable plug 600 includes a movable post 602 that is movably inserted into the through hole 205. The diameter of the movable post 602 is smaller than the diameter of the through hole 205. The upper end of the movable post 602 is provided with an end head 601, and the lower end of the movable post 602 is provided with an elastic sealing cover 603. The end head 601 and the sealing cover 603 respectively restrict the movable post 602 from disengaging from the through hole 205.
[0056] The diameters of the end head 601 and the sealing cover 603 are both larger than the diameter of the through hole 205. Thus, when the movable column 602 is positioned in the through hole 205, the end head 601 and the sealing cover 603 restrict the movable column 602 from detaching from the through hole 205. The diameter of the movable column 602 is smaller than the diameter of the through hole 205, allowing the movable column 602 to move up and down within the through hole 205.
[0057] When the movable column 602 moves downward relative to the cup head 200, the sealing cover 603 deviates from the cup head 200, the air inlet 206 is in the open state, and the storage cavity 301 is connected to the inner cavity 101 through the air inlet 206; at this time, the end head 601 simultaneously closes the through hole 205, the sealing cover 603 deviates downward from the cup head 200, that is, it is out of contact with the cup head 200, and the air inlet 206 is in the open state.
[0058] When the movable column 602 moves upward relative to the cup head 200, the sealing cover 603 abuts against the cup head 200, sealing the air inlet 206. With the air inlet 206 closed, the storage cavity 301 is separated from the inner cavity 101. At this time, the end head 601 moves upward away from the cup head 200, and the sealing cover 603 abuts against the cup head 200 from bottom to top, simultaneously sealing the through hole 205 and the air inlet 206.
[0059] When the cup body 100 is upright, or when the tilt angle of the cup body 100 is less than the set angle, the air inlet 206 is in the open state. The air mixed with the aroma in the storage cavity 301 is connected to the inner cavity 101 through the air inlet 206 and can enter the inner cavity 101. The beverage in the inner cavity 101 is mixed with the aroma, and the pressure in the inner cavity 101 is the same as the pressure in the storage cavity 301, which is the same as the atmospheric pressure. This makes it easy for the beverage to flow out through the flow channel 202, making it easy for the user to drink the beverage in the inner cavity 101. The beverage mixed with the aroma enhances the user's drinking experience.
[0060] In addition, when the user is drinking a beverage, or when the tilt angle of the cup body 100 is greater than the set angle, the air inlet 206 is in a closed state to prevent the beverage in the inner cavity 101 from entering the storage cavity 301. The beverage in the inner cavity 101 flows out only through the flow channel 202 of the cylinder body 201.
[0061] In this embodiment, the end head 601 has an internal cavity 605, which is spherical in shape. A spherical counterweight ball 606 is disposed within the internal cavity 605. The diameter of the counterweight ball 606 is smaller than the diameter of the internal cavity 605, allowing the counterweight ball 606 to roll within the internal cavity 605. Depending on the swing angle of the movable plug 600, the counterweight ball 606 can roll within the internal cavity 605 to achieve a counterweight effect. A rigid rod 604 is embedded inside the movable column 602. The rod 604 is coaxially arranged with the movable column 602 and is enclosed within the movable column 602.
[0062] When the cup body 100 is upright or tilted at an angle less than the set angle, the counterweight ball 606 is located at the bottom of the internal cavity 605, and the end head 601 closes the through hole 205 while the air inlet 206 is open. When the cup body 100 tilts at an angle greater than the set angle, the counterweight ball 606 tilts and rolls, which can accelerate and pull the movable plug 600 to move, so that the sealing cover 603 abuts against the cup body 100, closing the air inlet 206 and the through hole 205. Due to the counterweight effect of the counterweight ball 606, the sealing cover 603 can better achieve the sealing effect.
[0063] In addition, the rod body 604 is made of a rigid material. When the movable column 602 moves in the through hole 205, it can restrict the bending and deformation of the movable column 602 to avoid the movable column 602 getting stuck during the movement, and ensure that the movable column 602 moves smoothly up and down in the through hole 205.
[0064] In this embodiment, the cup head 200 is threadedly connected to the cup body 100. Thus, rotating the cup head 200 allows it to be detached from the cup body 100, or connected to it. To ensure a tight seal between the cup body 100 and the cup head 200, a sealing ring 700 is arranged between them.
[0065] In this embodiment, a raised ring 207 is provided on the cylinder 201. The raised ring 207 is formed in the flow channel 202 and is arranged around the circumference of the flow channel 202. The bottom of the raised ring 207 has a stepped surface 208 facing the inner cavity 101. The stepped surface 208 is arranged around the circumference of the flow channel 202. A buffer channel 209 is provided in the raised ring 207. The buffer channel 209 extends along the axial direction of the flow channel 202. The buffer channel 209 passes through the raised ring 207 from top to bottom and passes through the stepped surface 208.
[0066] When a user tilts the cup 100 and drinks from the flow channel 202 of the cylinder 201, the beverage in the inner cavity 101 pours out along the flow channel 202. At this time, the protruding ring 207 can partially block the beverage in the flow channel 202, which can buffer the flow rate of the beverage and prevent the beverage from overflowing due to excessive flow rate.
[0067] In addition, a buffer channel 209 is provided in the raised ring 207. During the process of the stepped surface 208 blocking and buffering the beverage, the beverage can flow through the buffer channel 209 and through the raised ring 207. In this way, while blocking and buffering the beverage, the raised ring 207 also disperses and guides the beverage flow, avoiding the phenomenon of excessive beverage flow rate causing overflow and avoiding the phenomenon of beverage flow interruption.
[0068] In this embodiment, a cap 500 is connected to the cup cover 300. The cap 500 is connected to the cup cover 300 via a connecting strap 501. When the user does not need to drink the beverage, the cap 500 can be directly placed on the cylinder 201 to close the flow channel 202 of the cylinder 201. When the user needs to drink the beverage in the inner cavity 101, the cap 500 can be removed from the cylinder 201, and the flow channel 202 of the cylinder 201 will open. Due to the restraining effect of the connecting strap 501, the cap 500 will not fall off.
[0069] Alternatively, to make it easier for users to drink the beverage in the inner cavity 101, a straw 800 can be arranged in the inner cavity 101. The straw 800 has a tube head 801, which is inserted into the flow channel 202 of the cylinder 201 and fixedly connected to the cylinder 201. The tube head 801 extends to the outside of the cylinder 201, so that users can directly drink the beverage in the inner cavity 101 through the tube head 801.
[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A scented water cup, characterized in that, The device includes a cup body with an inner cavity for holding a beverage, a cup head connected to the cup body, a cylindrical body on the cup head with a flow channel communicating with the inner cavity, through which the beverage in the inner cavity flows out; a cup cover on the cup head, the cup cover and the cup head enclosing a storage cavity, and an odor-emitting block in the storage cavity; The cylindrical body passes through the cup cover, and the storage cavity surrounds the outer periphery of the cylindrical body; the cup cover is provided with an air vent, through which the odor emitted by the odor block is dispersed outward; the cup cover is provided with a rotating disk that can rotate relative to the cup cover, the cylindrical body passes through the rotating disk, and the rotating disk is provided with an air dissipation hole; During the rotation of the rotating disk relative to the cup cover, when the vent hole and the outlet hole are connected, the cup cover is in a venting state, and the odor emitted by the odor block is emitted outward after passing through the outlet hole and the vent hole in sequence; when the vent hole and the outlet hole are misaligned, the rotating disk covers the outlet hole, the cup cover is in a closed state, and the odor emitted by the odor block is sealed in the storage cavity.
2. The scented water cup as described in claim 1, characterized in that, The rotating disk is provided with multiple ventilation holes. Along the rotation direction of the rotating disk relative to the cup cover, the multiple ventilation holes are arranged in sequence at intervals, and the diameter of the multiple ventilation holes decreases in sequence. When the cup cover is in a ventilation state, only one ventilation hole is connected to the air outlet.
3. The scented water cup as described in claim 1, characterized in that, The cup cover has a recessed groove, and the rotating disk is movably embedded in the recessed groove and rotatably connected to the cup cover.
4. The scented water cup as described in claim 1, characterized in that, The cup cover has multiple slots arranged at intervals around the circumference of the cup cover; the rotating disk has multiple hook posts arranged at intervals around the circumference of the rotating disk; the multiple hook posts pass through the multiple slots respectively, so that the rotating disk and the cup cover are connected as one unit; along the rotation direction of the rotating disk relative to the cup cover, the length of the slot is greater than the length of the hook post.
5. The scented water cup according to any one of claims 1 to 4, characterized in that, The cup head has multiple protruding pillars, which are formed in the storage cavity; the cup cover has multiple mounting holes, and the multiple pillars abut against the cup cover and are respectively aligned vertically with the multiple mounting holes; a screw is passed through the cup cover, which passes through the mounting holes and is connected to the pillars, so that the cup cover and the cup head are connected as one unit.
6. The scented water cup as described in claim 5, characterized in that, The odor block has multiple positioning grooves on its outer periphery, and the multiple columns are correspondingly embedded in the multiple positioning grooves so that the odor block is fixed in the storage cavity.
7. The scented water cup according to any one of claims 1 to 4, characterized in that, The cup head is provided with an air inlet, and the storage cavity is connected to the inner cavity through the air inlet. The cup head is provided with a movable plug that moves up and down relative to the cup head. When the movable plug moves upward relative to the cup head, the air inlet is closed, the storage cavity is separated from the inner cavity, and the beverage in the inner cavity is restricted from entering the storage cavity. When the movable plug moves downward relative to the cup head, the air inlet is opened, and air in the storage cavity enters the inner cavity through the air inlet.
8. The scented water cup as described in claim 7, characterized in that, The cup head has a through hole, and the air inlet is arranged adjacent to the through hole at intervals. The air inlet is arranged in an arc shape along the circumference of the through hole. The movable plug includes a movable column that is movably inserted in the through hole. The upper end of the movable column is provided with an end head, and the lower end of the movable column is provided with an elastic sealing cover. The end head and the sealing cover respectively restrict the movable column from disengaging from the through hole. When the movable column moves downward relative to the cup head, the sealing cover deviates from the cup head, the air inlet opens, and the storage cavity connects to the inner cavity through the air inlet; when the movable column moves upward relative to the cup head, the sealing cover abuts against the cup head, the sealing cover closes the air inlet, and the storage cavity is separated from the inner cavity.
9. The scented water cup as described in claim 8, characterized in that, The end head has an internal cavity, which is spherical in shape. A spherical counterweight ball is placed inside the internal cavity, and the diameter of the counterweight ball is smaller than the diameter of the internal cavity. A rigid rod is embedded inside the movable column. The rod is coaxially arranged with the movable column and is wrapped inside the movable column.
10. The scented water cup according to any one of claims 1 to 4, characterized in that, The cylinder is provided with a raised ring, which is formed in the flow channel and arranged around the circumference of the flow channel. The bottom of the raised ring has a stepped surface facing the inner cavity, which is arranged around the circumference of the flow channel. A buffer channel is provided in the raised ring, which extends along the axial direction of the flow channel. The buffer channel passes through the raised ring from top to bottom and through the stepped surface.