A mixing vessel
Patent Information
- Application Number
- CN202521605269.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-30
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-07-30
AI Technical Summary
[0003]相关技术中,混合容器使用不方便
[0025] The embodiments of this application provide a mixing container. The mixing device has a first state in which a first receiving cavity and a second receiving cavity are isolated from each other, and a second state in which the first receiving cavity and the second receiving cavity are connected. An end stop moves relative to the box body, allowing the mixing device to switch between the first state and the second state. This allows the user to select whether the first receiving cavity and the second receiving cavity are isolated or connected as needed. Different raw materials can be stored in the first receiving cavity and the second receiving cavity. The movement of the end stop relative to the box body connects the first receiving cavity and the second receiving cavity, allowing the raw materials in the first receiving cavity and the second receiving cavity to be mixed and reacted directly. This reduces the user's contact with the raw materials, making the mixing container convenient to use. Before the raw materials undergo a mixing reaction in the mixing container, the raw materials required for the reaction are already stored in the isolated first receiving cavity and the second receiving cavity of the mixing container, eliminating the need to add additional raw materials required for the reaction to the mixing container.
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Figure CN224753236U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of reagent packaging technology, and more particularly to a mixing container. Background Technology
[0002] The various raw materials required to generate the reagent are stored separately. When the reagent is needed, the user mixes the raw materials together in a mixing container to react and generate the reagent.
[0003] In related technologies, mixing containers are inconvenient to use. Utility Model Content
[0004] To address the aforementioned technical problems, this application aims to provide a mixing container to facilitate its use.
[0005] The technical solution of this application is implemented as follows:
[0006] This application provides a mixing container, which includes a mixing device having a first receiving cavity and a second receiving cavity. The mixing device includes a container body and a feeding assembly. The first receiving cavity is formed in the feeding assembly, and the second receiving cavity is formed in the container body. The feeding assembly includes a feeding box, which includes an end stop and a box body. The box body has a feeding port, and the end stop is movably installed on the feeding port. The mixing device has a first state in which the first receiving cavity and the second receiving cavity are isolated from each other, and a second state in which the first receiving cavity and the second receiving cavity are connected. The end stop moves relative to the box body to switch the mixing device between the first state and the second state.
[0007] In some embodiments, the end stop rotates relative to the housing to switch the mixing device between the first state and the second state.
[0008] In some embodiments, the inner side of the box body has a bearing rib, and the end stop has a limiting rib. When the bearing rib and the limiting rib abut against each other along the axial direction of the container body, the limiting rib is located on the side of the bearing rib away from the feeding port along the axial direction of the container body, so as to restrict the limiting rib from moving towards the feeding port along the axial direction of the container body. When the bearing rib and the limiting rib are misaligned along the axial direction of the container body, the limiting rib can move towards the feeding port along the axial direction of the container body. One of the box body and the end stop can be rotated to make the bearing rib and the limiting rib abut against or misaligned along the axial direction of the container body.
[0009] In some embodiments, the inner side of the box body has guide ribs, the bearing ribs are located between the guide ribs and the feeding port, the guide ribs extend spirally along the circumference of the end stop, the bearing ribs extend spirally along the circumference of the end stop, the guide ribs are used to guide the movement of the limiting ribs, and when the mixing device is in the first state, the limiting ribs are located between the guide ribs and the bearing ribs.
[0010] In some embodiments, the mixing container includes an elastic member, one end of which abuts against the end stop, and the other end of which abuts against the side wall of the first receiving cavity away from the end stop along the axial direction of the container body. The elastic force of the elastic member causes the end stop to tend to move toward the feeding port along the axial direction of the container body.
[0011] In some embodiments, the inner side of the box body is further provided with reinforcing ribs, which are connected to the side of the supporting rib facing the feeding port.
[0012] In some embodiments, the reinforcing rib is elongated and extends along the arrangement direction of the bearing rib and the feeding port.
[0013] In some embodiments, the end stop has a support member protruding away from the second receiving cavity, and the limiting rib is formed in the support member.
[0014] In some embodiments, the number of the support members is multiple, and the multiple support members are arranged at circumferential intervals along the end stop.
[0015] In some embodiments, the feeding assembly further includes a lid, which covers one end of the feeding box away from the feeding port, and the lid and the feeding box form the first receiving cavity. The mixing container further includes a switcher connected to the lid, and the lid is rotatable relative to the box body to cause the switcher to drive the end stop to rotate.
[0016] In some embodiments, the mixing device further includes a mounting sleeve disposed on the container body. The outer side of the mounting sleeve is circumferentially limited to the outer side of the container body, and the inner side of the mounting sleeve is circumferentially limited to the end stop of the container body and guides the end stop to move axially along the container body. The feeding assembly further includes a lid connected to the end of the box body away from the feeding port so that the lid drives the box body to rotate. The lid and the feeding box form the first receiving cavity.
[0017] In some embodiments, the mounting sleeve has a guide groove extending axially along the container body, and the end stop has a guide portion that is movable along the guide groove to allow the end stop to move relative to the housing along the axial direction of the container body, thereby switching the mixing device between the first state and the second state.
[0018] In some embodiments, the end stop has an end stop bottom rib located on the side of the end stop opposite to the first receiving cavity along the axial direction of the container body, and the end stop bottom rib protrudes from the end stop on the side opposite to the first receiving cavity along the axial direction of the container body.
[0019] In some embodiments, the mixing container further includes a third protective sleeve rotatably connected to the container body. The box body and the end stop are both located within the space enclosed by the third protective sleeve and the container body. The third protective sleeve has a limiting rib, and the box body has a limiting groove. The limiting rib is located within the limiting groove, and the limiting rib abuts against the groove wall of the limiting groove along the circumference of the box body, so that the third protective sleeve drives the box body to rotate.
[0020] In some embodiments, the inner side of the third protective sleeve has a first groove, and the box body has a first protrusion, the first protrusion being located on the inner side of the third protective sleeve, and the first protrusion being at least partially located within the first groove.
[0021] In some embodiments, the mixing container includes a first protective sleeve and a second protective sleeve rotatably connected. The mixing device is located within the space enclosed by the first protective sleeve and the second protective sleeve. The container body and the second protective sleeve are circumferentially limited along the container body. The feeding assembly also includes a lid, which covers the end of the feeding box opposite to the feeding port. The lid and the feeding box enclose the first receiving cavity. The first protective sleeve has an actuating part. The lid has an abutting part on the side opposite to the feeding port along the axial direction of the lid. The actuating part can abut against the abutting part along the circumferential direction of the lid, so that the first protective sleeve drives the lid to rotate.
[0022] In some embodiments, the mixing device has an exhaust port that communicates with the first receiving cavity and is formed in the feeding assembly.
[0023] In some embodiments, the mixing container further includes a breathable membrane that covers the exhaust port.
[0024] In some embodiments, when the mixing device is in a first state, the end stop is in sealed contact with the box body at the feeding port.
[0025] The embodiments of this application provide a mixing container. The mixing device has a first state in which a first receiving cavity and a second receiving cavity are isolated from each other, and a second state in which the first receiving cavity and the second receiving cavity are connected. An end stop moves relative to the box body, allowing the mixing device to switch between the first state and the second state. This allows the user to select whether the first receiving cavity and the second receiving cavity are isolated or connected as needed. Different raw materials can be stored in the first receiving cavity and the second receiving cavity. The movement of the end stop relative to the box body connects the first receiving cavity and the second receiving cavity, allowing the raw materials in the first receiving cavity and the second receiving cavity to be mixed and reacted directly. This reduces the user's contact with the raw materials, making the mixing container convenient to use. Before the raw materials undergo a mixing reaction in the mixing container, the raw materials required for the reaction are already stored in the isolated first receiving cavity and the second receiving cavity of the mixing container, eliminating the need to add additional raw materials required for the reaction to the mixing container. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of the mixing container according to an embodiment of this application. The diagram shows the case with a switch and the mixing device in a first state.
[0027] Figure 2 for Figure 1 Sectional view at point AA;
[0028] Figure 3 for Figure 1 Sectional view at point BB;
[0029] Figure 4 for Figure 1 Projected view at CC;
[0030] Figure 5 for Figure 1 Sectional view at point DD;
[0031] Figure 6 This is a schematic diagram of the structure of the mixing container according to an embodiment of this application. The diagram shows the case with a switch and the mixing device in a second state.
[0032] Figure 7 for Figure 6 Sectional view at EE;
[0033] Figure 8 for Figure 6 Sectional view at FF;
[0034] Figure 9 for Figure 6 Projected view at point GG;
[0035] Figure 10 This is a schematic diagram of the structure of the end stop component according to an embodiment of this application. The bottom rib of the end stop is not shown in the figure.
[0036] Figure 11 This is a schematic diagram of the structure of the end stop according to an embodiment of this application, showing the bottom rib of the end stop;
[0037] Figure 12 This is a schematic diagram of the structure of the box body according to an embodiment of this application;
[0038] Figure 13 This is a schematic diagram of the structure of the box body according to an embodiment of this application;
[0039] Figure 14 This is a schematic diagram of the structure of the box cover and switcher according to an embodiment of this application, showing the fourth ring rib;
[0040] Figure 15 This is a schematic diagram of the structure of the cover and switcher according to an embodiment of this application, showing the fifth groove;
[0041] Figure 16 This is a schematic diagram of the structure of the first protective sleeve according to an embodiment of this application;
[0042] Figure 17 This is a schematic diagram of the structure of the mixing container according to an embodiment of this application. The figure shows the case without a switch, and the mixing device is shown in the first state.
[0043] Figure 18 This is a schematic diagram of the structure of the mixing container according to an embodiment of this application. The figure shows the case without a switch, and the mixing device is shown in the second state.
[0044] Figure 19 This is a schematic diagram of the structure of the container body according to an embodiment of this application;
[0045] Figure 20 This is a schematic diagram of the structure of the mounting sleeve according to an embodiment of this application;
[0046] Figure 21 This is a schematic diagram of the structure of the mounting sleeve according to an embodiment of this application;
[0047] Figure 22 This is a schematic diagram of the structure of the box body and the box lid according to an embodiment of this application;
[0048] Figure 23 This is a schematic diagram of the structure of the box body and the box cover according to an embodiment of this application. The diagram shows the guide ribs.
[0049] Figure 24 This is a schematic diagram of the structure of the third protective sleeve according to an embodiment of this application;
[0050] Figure 25 This is a schematic diagram of the structure of the end stop member according to an embodiment of this application, showing the guide portion;
[0051] Figure 26 This is a schematic diagram of the structure of the end stop member according to an embodiment of this application, showing the guide portion;
[0052] Figure 27 This is an exploded view of the mixing container according to an embodiment of this application; the third protective sleeve is not shown in the figure.
[0053] Figure 28 This is a schematic diagram of the structure of the mixing container according to an embodiment of this application. The figure shows the case where the elastic element is provided, and the figure shows the mixing device in a first state.
[0054] Figure 29 This is a schematic diagram of the structure of the mixing container according to an embodiment of this application. The figure shows the case where an elastic element is provided, and the mixing device is shown in a second state.
[0055] Explanation of reference numerals in the attached figures
[0056] 1. Switcher; 2. Mixing device; 21. First receiving cavity; 22. Second receiving cavity; 23. Exhaust port; 24. Container body; 241. Limiting part; 242. Third protrusion; 243. Fourth sealing groove; 244. Third ring rib; 25. Feeding assembly; 251. Feeding box; 252. Box body; 2521. Feeding port; 2522. Guide rib; 2523. Bearing rib; 2524. Reinforcing rib; 2525. Limiting groove; 2526. First protrusion; 2527. Box body; 2528. Box shell; 2529. Stop rib; 253. End stop; 2531. Limiting rib; 2532. Support; 2533. End stop bottom rib; 2534. Guide part; 254. Box cover; 2541. 2542. Abutting part; 2543. First ring rib; 2544. First protrusion; 2545. Fourth ring rib; 2546. Support groove; 2547. Fifth groove; 26. Mounting sleeve; 261. Guide groove; 262. Fourth groove; 27. Tray; 3. First protective sleeve; 31. Actuating part; 32. Opening; 33. Second ring rib; 34. Second protrusion; 35. Second groove; 4. Second protective sleeve; 41. Second protrusion; 5. Breathable membrane; 51. Sealing gasket; 6. First sealing ring; 7. Second sealing ring; 8. Third sealing ring; 9. Third protective sleeve; 91. Limiting rib; 92. First groove; 93. Third protrusion; 94. Third groove; 95. Vent; 10. Fourth sealing ring; 11. Elastic element. Detailed Implementation
[0057] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings.
[0058] It should be understood that the phrases "embodiments of this application" or "foreign embodiments" throughout the specification mean that a specific feature, structure, or characteristic related to an embodiment is included in at least one embodiment of this application. Therefore, "embodiments of this application" or "in the foreign embodiments" appearing throughout the specification do not necessarily refer to the same embodiment. Furthermore, these specific features, structures, or characteristics can be combined in any suitable manner in one or more embodiments.
[0059] It should be understood that the specific embodiments described herein are for illustrative purposes only and are not intended to limit the scope of this application.
[0060] In related technologies, different raw materials are usually stored in different containers. Users need to take one of the raw materials out of the storage container and put it into the mixing container containing another raw material from the outside of the mixing container to mix. That is, before mixing, the raw material stored outside the mixing container needs to be put into the mixing container for reaction, which is inconvenient to use.
[0061] For example, the reagent is chlorine dioxide, a gas with strong oxidizing properties that is frequently used as a disinfectant in daily life. It is usually prepared by a mixing method, in which liquid and solid raw materials that can generate chlorine dioxide are stored in different containers. The user needs to remove the packaging of the solid and liquid raw materials and then place the solid and liquid raw materials from outside the mixing container into the mixing container to mix the two raw materials together and react to generate chlorine dioxide gas.
[0062] This application provides a mixing container; please refer to [link / reference]. Figure 1 , Figure 6 , Figure 17 and Figure 18 The mixing container includes a mixing device 2, which has a first receiving cavity 21 and a second receiving cavity 22. The mixing device 2 includes a container body 24 and a feeding assembly 25. The first receiving cavity 21 is formed in the feeding assembly 25, and the second receiving cavity 22 is formed in the container body 24. The feeding assembly 25 includes a feeding box 251, which includes an end stop 253 and a box body 252. The box body 252 has a feeding port 2521, and the end stop 253 is movably installed in the feeding port 2521. The mixing device 2 has a first state in which the first receiving cavity 21 and the second receiving cavity 22 are isolated from each other, and a second state in which the first receiving cavity 21 and the second receiving cavity 22 are connected. The end stop 253 moves relative to the box body 252 to switch the mixing device 2 between the first state and the second state.
[0063] It should be noted that when the mixing device 2 is in the first state, the first receiving cavity 21 and the second receiving cavity 22 are isolated from each other, and the raw materials contained in the first receiving cavity 21 and the raw materials contained in the second receiving cavity 22 will not come into contact and react; when the mixing device 2 is in the second state, the first receiving cavity 21 and the second receiving cavity 22 are connected, and the raw materials contained in the first receiving cavity 21 and the raw materials contained in the second receiving cavity 22 can come into contact and react.
[0064] It should be noted that the end stop 253 can be translated and / or rotated relative to the box body 252.
[0065] It should be noted that the relative positions of the box body 252 and the container body 24 along the axial direction of the container body 24 remain unchanged.
[0066] The axial direction of the container body 24 is as shown by arrow R1 in the figure.
[0067] It should be noted that, Figure 6 and Figure 18 Although the middle stop 253 has not yet fallen to the bottom of the container body 24 and contacted the container body 24, the end stop 253 has already detached from the feeding port 2521. At this time, the first receiving cavity 21 and the second receiving cavity 22 are connected, and the mixing device 2 is in the second state.
[0068] It should be noted that the mixing container may consist only of the mixing device 2, or it may consist of the mixing device 2 and a protective sleeve disposed outside the mixing device 2.
[0069] For example, the first receiving cavity 21 is used to receive one of the raw materials for the reaction.
[0070] For example, one of the raw materials may be a solid raw material or a liquid raw material.
[0071] For example, the second receiving cavity 22 is used to receive another raw material for the reaction.
[0072] For example, another raw material may be a liquid raw material or a solid raw material.
[0073] For example, when the first receiving cavity 21 and the second receiving cavity 22 are connected, the raw material in the first receiving cavity 21 falls into the second receiving cavity 22 and mixes with the raw material in the second receiving cavity 22.
[0074] For example, the first state is the initial state, and the end stop 253 moves relative to the housing 252 to switch the mixing device 2 from the first state to the second state.
[0075] For example, the first receiving cavity 21 and the second receiving cavity 22 are arranged along the axial direction of the container body 24.
[0076] For example, the axial direction of the container body 24 is parallel to the vertical direction.
[0077] For example, the box body 252 is integrally formed with the container body 24.
[0078] For example, the box body 252 and the container body 24 are manufactured separately and then assembled.
[0079] In this embodiment, the mixing device 2 has a first state in which the first receiving cavity 21 and the second receiving cavity 22 are isolated from each other, and a second state in which the first receiving cavity 21 and the second receiving cavity 22 are connected. The end stop 253 moves relative to the box body 252, allowing the mixing device 2 to switch between the first state and the second state. This allows the user to select whether the first receiving cavity 21 and the second receiving cavity 22 are isolated or connected as needed. Different raw materials can be stored in the first receiving cavity 21 and the second receiving cavity 22. The movement of the end stop 253 relative to the box body 252 connects the first receiving cavity 21 and the second receiving cavity 22, allowing the raw materials in the first receiving cavity 21 and the second receiving cavity 22 to be mixed and reacted directly. This reduces the user's contact with the raw materials, making the mixing container convenient to use. Before the raw materials undergo a mixing reaction in the mixing container, the raw materials required for the reaction are already stored in the isolated first receiving cavity 21 and the second receiving cavity 22 of the mixing container, eliminating the need to add additional raw materials required for the reaction to the mixing container.
[0080] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 17 , Figure 18 , Figure 28 and Figure 29 The end stop 253 rotates relative to the box 252 to switch the mixing device 2 between the first state and the second state.
[0081] It should be noted that the end stop 253 rotates relative to the box body 252 to switch the mixing device 2 between the first state and the second state. After the end stop 253 rotates relative to the box body 252, the end stop 253 can translate relative to the box body 252 along the axial direction of the container body 24.
[0082] In this embodiment, the end stop 253 rotates relative to the box body 252 to switch the mixing device 2 between a first state and a second state. The relative position of the end stop 253 and the box body 252 is changed by rotation, so that the mixing device 2 switches between the first state and the second state.
[0083] It is understood that the end stop 253 is not limited to rotating relative to the housing 252 to switch the mixing device 2 between a first state and a second state. Exemplarily, the end stop 253 translates relative to the housing 252 to switch the mixing device 2 between a first state and a second state.
[0084] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 17 , Figure 18 , Figure 28 and Figure 29 The inner side of the box body 252 also has a bearing rib 2523, and the end stop 253 has a limiting rib 2531. When the bearing rib 2523 and the limiting rib 2531 abut against each other along the axial direction of the container body 24, the limiting rib 2531 is located on the side of the bearing rib 2523 away from the feeding port 2521 along the axial direction of the container body 24, so as to restrict the limiting rib 2531 from moving towards the feeding port 2521 along the axial direction of the container body 24. When the bearing rib 2523 and the limiting rib 2531 are misaligned along the axial direction of the container body 24, the limiting rib 2531 can move towards the feeding port 2521 along the axial direction of the container body 24. One of the box body 252 and the end stop 253 can rotate to make the bearing rib 2523 abut against or misalign with the limiting rib 2531 along the axial direction of the container body 24.
[0085] It should be noted that when the supporting rib 2523 and the limiting rib 2531 abut against each other along the axial direction of the container body 24, it means that when projected along the axial direction of the container body 24, the projected area of the supporting rib 2523 and the projected area of the limiting rib 2531 at least partially overlap. When the supporting rib 2523 and the limiting rib 2531 are offset along the axial direction of the container body 24, it means that when projected along the axial direction of the container body 24, the projected area of the supporting rib 2523 and the projected area of the limiting rib 2531 do not overlap.
[0086] It should be noted that when the supporting rib 2523 and the limiting rib 2531 abut against each other along the axial direction of the container body 24, the limiting rib 2531 is located on the side of the supporting rib 2523 away from the feeding port 2521 along the axial direction of the container body 24. The side of the supporting rib 2523 away from the feeding port 2521 along the axial direction of the container body 24 abuts against the side of the limiting rib 2531 towards the feeding port 2521 along the axial direction of the container body 24.
[0087] It should be noted that when the mixing device 2 is in the first state, the supporting rib 2523 and the limiting rib 2531 abut against each other along the axial direction of the container body 24. Projected along the axial direction of the container body 24, the projection area of the supporting rib 2523 at least partially overlaps with the projection area of the limiting rib 2531. The supporting rib 2523 restricts the limiting rib 2531 from translating along the axial direction of the container body 24, and the end stop 253 closes the feeding port 2521, isolating the first receiving cavity 21 and the second receiving cavity 22 from each other. When one of the box body 252 and the end stop 253 is rotated, causing the supporting rib 2523 and the limiting rib 2531 to move along the axial direction of the container body 24, the supporting rib 2523 and the limiting rib 2531... The axial direction of 24 is offset, and the projection area of the bearing rib 2523 along the axial direction of the container body 24 does not coincide with the projection area of the limiting rib 2531. The limiting rib 2531 can move along the axial direction of the container body 24, so that the end stop 253 can move relative to the box body 252 along the axial direction of the container body 24. When the end stop 253 moves to the point of disengagement from the feeding port 2521, the mixing device 2 switches to the second state. The end stop 253 cannot close the feeding port 2521. The first receiving cavity 21 and the second receiving cavity 22 are connected. The material in the first receiving cavity 21 can be mixed with the material in the second receiving cavity 22.
[0088] In this embodiment, when the supporting rib 2523 and the limiting rib 2531 abut against each other along the axial direction of the container body 24, the limiting rib 2531 is located on the side of the supporting rib 2523 away from the feeding port 2521 along the axial direction of the container body 24, thereby restricting the limiting rib 2531 from moving towards the feeding port 2521 along the axial direction of the container body 24. The supporting rib 2523 can make the position of the limiting rib 2531 along the axial direction of the container body 24 relatively stable. When the supporting rib 2523 and the limiting rib 2531 are misaligned along the axial direction of the container body 24... When the container body 24 is open, the limiting rib 2531 can move along the axial direction of the container body 24 toward the feeding port 2521. One of the box body 252 and the end stop 253 rotates so that the bearing rib 2523 abuts or is offset from the limiting rib 2531 along the axial direction of the container body 24. By the bearing rib 2523 abutting or being offset from the limiting rib 2531 along the axial direction of the container body 24, the end stop 253 can move relative to the box body 252 along the axial direction of the container body 24, so as to realize the switching of the mixing device 2 between the first state and the second state.
[0089] It is understood that the box body 252 is not limited to having a supporting rib 2523. For example, the limiting rib 2531 is isolated from the box body 252 on the side of the container body 24 facing the feeding port 2521 along the axial direction of the container body 24, and the end stop 253 is interference-fitted with the box body 252.
[0090] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 17 and Figure 18The inner side of the box 252 has guide ribs 2522 and bearing ribs 2523 are located between the guide ribs 2522 and the feeding port 2521. The guide ribs 2522 extend spirally along the circumference of the end stop 253, and the bearing ribs 2523 extend spirally along the circumference of the end stop 253. The guide ribs 2522 are used to guide the movement of the limiting ribs 2531. When the mixing device 2 is in the first state, the limiting ribs 2531 are located between the guide ribs 2522 and the bearing ribs 2523.
[0091] It should be noted that when the end stop 253 rotates relative to the box body 252, the relative position of the end stop 253 to the box body 252 along the axial direction of the container body 24 changes.
[0092] For example, guide ribs 2522 are provided in a portion of the inner side of the housing 252.
[0093] For example, when projected along the axial direction of the container body 24, the projection area of the box body 252 is circular.
[0094] For example, the projection area of the end stop 253 is circular when projected along the axial direction of the container body 24.
[0095] For example, when the limiting rib 2531 is located between the guide rib 2522 and the bearing rib 2523, the limiting rib 2531 abuts against the guide rib 2522 and the bearing rib 2523 on both sides along the axial direction of the container body 24.
[0096] For example, the limiting rib 2531 protrudes radially from the end stop 253, the bearing rib 2523 and the guide rib 2522 protrude radially from the inner side of the box 252, the bearing rib 2523 and the guide rib 2522 form a spiral groove that extends spirally along the circumference of the end stop 253, and the limiting rib 2531 is located in the spiral groove.
[0097] In this embodiment, the supporting rib 2523 is located between the guide rib 2522 and the feeding port 2521. The guide rib 2522 extends spirally along the circumference of the end stop 253, and the supporting rib 2523 also extends spirally along the circumference of the end stop 253. The guide rib 2522 guides the movement of the limiting rib 2531. When the mixing device 2 is in the first state, the limiting rib 2531 is located between the guide rib 2522 and the supporting rib 2523. When the end stop 253 rotates spirally relative to the box body 252 along the extension direction of the guide rib 2522, the relative position of the end stop 253 and the box body 252 changes along the axial direction of the container body 24, thus realizing the switching of the mixing device 2 between the first state and the second state. The limiting rib 2531 and the spiral guide rib 2522 make it easier for the end stop 253 to rotate relative to the box body 252, facilitating the switching of the mixing device 2 between the first state and the second state.
[0098] In some embodiments, please refer to Figure 28 and Figure 29 The mixing container includes an elastic element 11. One end of the elastic element 11 abuts against the end stop 253, and the other end of the elastic element 11 abuts against the side wall of the first receiving cavity 21 away from the end stop 253 along the axial direction of the container body 24. The elastic force of the elastic element 11 causes the end stop 253 to tend to move towards the feeding port 2521 along the axial direction of the container body 24.
[0099] For example, the elastic element 11 is a spring.
[0100] For example, the elastic element 11 is a compression spring.
[0101] For example, when the end stop 253 is installed at the feeding port 2521, one end of the elastic member 11 abuts against the end stop 253, and the other end of the elastic member 11 abuts against the side wall of the first receiving cavity 21 away from the end stop 253 along the axial direction of the container body 24, and the elastic member 11 is in a compressed state.
[0102] For example, one end of the elastic member 11 abuts against the end stop 253, and the other end of the elastic member 11 abuts against the box body 252.
[0103] For example, the feeding assembly 25 also includes a cover 254, which covers one end of the feeding box 251 away from the feeding port 2521, and the cover 254 and the feeding box 251 form a first receiving cavity 21.
[0104] For example, one end of the elastic member 11 abuts against the end stop 253, and the other end of the elastic member 11 abuts against the box cover 254.
[0105] In this embodiment, one end of the elastic member 11 abuts against the end stop 253, and the other end of the elastic member 11 abuts against the side wall of the first receiving cavity 21 away from the end stop 253 along the axial direction of the container body 24. The elastic force of the elastic member 11 causes the end stop 253 to tend to move towards the feeding port 2521 along the axial direction of the container body 24. When the bearing rib 2523 and the limiting rib 2531 abut against each other along the axial direction of the container body 24, the bearing rib 2523 prevents the end stop 253 from moving along the container body 24. The main body 24 moves axially toward the feeding port 2521; when one of the box body 252 and the end stop 253 rotates, the bearing rib 2523 and the limiting rib 2531 are misaligned along the axial direction of the container body 24, the limiting rib 2531 can move axially toward the feeding port 2521 along the axial direction of the container body 24, and the elastic force of the elastic member 11 can push the end stop 253 to move axially toward the feeding port 2521 along the axial direction of the container body 24, thereby realizing the switching of the mixing device 2 between the first state and the second state.
[0106] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 and Figure 7 The inner side of the box body 252 also has a reinforcing rib 2524, which is connected to the side of the supporting rib 2523 facing the feeding port 2521.
[0107] For example, when the mixing device 2 is in the first state, the reinforcing rib 2524 can abut against the end stop 253 along the axial direction of the container body 24.
[0108] In this embodiment, the inner side of the box 252 also has a reinforcing rib 2524. The reinforcing rib 2524 is connected to the side of the supporting rib 2523 facing the feeding port 2521. The reinforcing rib 2524 can support the supporting rib 2523, which is beneficial for the supporting rib 2523 to better support the end stop 253. The reinforcing rib 2524 is connected to the side of the supporting rib 2523 facing the feeding port 2521, and the reinforcing rib 2524 can limit the movement of the end stop 253 along the side away from the feeding port 2521.
[0109] It is understandable that the box body 252 may not have reinforcing ribs 2524.
[0110] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 12 and Figure 13 The reinforcing rib 2524 is long and narrow, and extends along the arrangement direction of the bearing rib 2523 and the feeding port 2521.
[0111] For example, the number of reinforcing ribs 2524 is at least one.
[0112] For example, there are two reinforcing ribs 2524, which are spaced apart. One reinforcing rib 2524 is located at the end of the bearing rib 2523 away from the feed port 2521 along the axial direction of the container body 24, and the other reinforcing rib 2524 is located between the ends of the bearing rib 2523 along the extension direction of the bearing rib 2523.
[0113] In this embodiment, the reinforcing rib 2524 is elongated and extends along the arrangement direction of the bearing rib 2523 and the feeding port 2521. The reinforcing rib 2524 can better support the end stop 253 along the arrangement direction of the bearing rib 2523 and the feeding port 2521.
[0114] It is understood that the reinforcing rib 2524 is not limited to extending along the arrangement direction of the bearing rib 2523 and the feeding port 2521. Exemplarily, the reinforcing rib 2524 extends along the extension direction of the bearing rib 2523.
[0115] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 10 , Figure 11 , Figure 17 and Figure 18 The end stop 253 has a support member 2532 protruding away from the second receiving cavity 22, and a limiting rib 2531 is formed on the support member 2532.
[0116] For example, the support member 2532 is located on the side of the end stop 253 that is radially away from the center of the end stop 253.
[0117] For example, the support member 2532 protrudes from the end stop member 253 on the side opposite to the feeding port 2521 along the arrangement direction of the carrier member and the feeding port 2521.
[0118] In this embodiment, the end stop 253 has a support member 2532 protruding away from the second receiving cavity 22, and a limiting rib 2531 is formed on the support member 2532. The limiting rib 2531 on the protruding support member 2532 can cooperate well with the guide rib 2522 and reduce the weight of the end stop 253. The first receiving cavity 21 can extend to the bottom of the guide rib 2522, and the first receiving cavity 21 can have a larger space to accommodate materials.
[0119] It is understood that the limiting rib 2531 is not limited to being formed on the support member 2532. Exemplarily, the limiting rib 2531 is formed on the side wall of the end stop member 253 along the circumference of the feed port 2521.
[0120] In some embodiments, please refer to Figure 10 , Figure 11 , Figure 25 and Figure 26 There are multiple support members 2532, and the multiple support members 2532 are arranged at intervals along the circumference of the end stop member 253.
[0121] It should be noted that the number of support members 2532 is multiple, or the number of support members 2532 is at least two.
[0122] For example, a plurality of support members 2532 are evenly distributed circumferentially along the end stop 253.
[0123] For example, there are two support members 2532, which are arranged radially along the end stop 253.
[0124] In this embodiment, there are multiple support members, and the multiple support members 2532 are arranged at intervals along the circumference of the end stop member 253, which facilitates the transmission and limiting of the limiting member and the guide rib 2522 and makes the multiple support members 2532 more evenly stressed.
[0125] It is understood that the number of support members 2532 is not limited to multiple. For example, the number of support members 2532 is one.
[0126] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 10 and Figure 11 The end stop 253 has an end stop bottom rib 2533, which is located on the side of the end stop 253 away from the first receiving cavity 21 along the axial direction of the container body 24. The end stop bottom rib 2533 protrudes from the end stop 253 on the side of the end stop 253 away from the first receiving cavity 21 along the axial direction of the container body 24.
[0127] For example, the number of end retaining bottom reinforcement bars 2533 is at least two.
[0128] For example, the number of end retaining bottom reinforcement bars 2533 is 4.
[0129] For example, at least two end retaining ribs 2533 are arranged at circumferential intervals along the feeding port 2521.
[0130] In this embodiment, the end-stop bottom rib 2533 is located on the side of the end-stop 253 away from the first receiving cavity 21 along the axial direction of the container body 24. The end-stop bottom rib 2533 protrudes from the end-stop 253 on the side of the end-stop 253 away from the first receiving cavity 21 along the axial direction of the container body 24. When the mixing device 2 is in the second state, the end-stop 253 detaches from the feeding box 251 and falls into the second receiving cavity 22. The end-stop bottom rib 2533 is located on the side of the end-stop 253 away from the first receiving cavity 21 along the axial direction of the container body 24. On the side opposite to the first receiving cavity 21, the end-stop bottom rib 2533 protrudes from the end-stop member 253 along the axial direction of the container body 24, opposite to the first receiving cavity 21. The end-stop bottom rib 2533 can support the end-stop member 253, creating a gap between the bottom of the end-stop member 253 and the container body 24. This reduces the amount of material in the second receiving cavity 22 that is sealed between the end-stop member 253 and the container body 24, facilitating contact and reaction between the material in the first receiving cavity 21 and the material in the second receiving cavity 22. When the mixing device 2 is in the first state, the end-stop bottom rib 2533 can improve the structural strength of the end-stop member 253, which is beneficial for the end-stop member 253 to better support the material in the first receiving cavity 21.
[0131] It is understandable that the end stop 253 may not have an end stop bottom rib 2533.
[0132] In some embodiments, please refer to Figures 1-15 The feeding assembly 25 also includes a box cover 254, which covers the end of the feeding box 251 away from the feeding port 2521. The box cover 254 and the feeding box 251 form a first receiving cavity 21. The mixing container also includes a switcher 1, which is connected to the box cover 254. The box cover 254 can rotate relative to the box body 252 so that the switcher 1 drives the end stop 253 to rotate.
[0133] It should be noted that during the process of the switcher 1 driving the end stop 253 to rotate, the relative positions of the switcher 1 and the end stop 253 change along the axial direction of the container body 24.
[0134] For example, please refer to Figure 3 When the mixing device 2 is in the first state, the support member 2532 is sleeved on the switcher 1, and the switcher 1 drives the support member 2532 to rotate so as to avoid the limiting rib 2531 on the support member 2532.
[0135] For example, the number of switchers 1 matches the number of supports 2532.
[0136] For example, please refer to Figure 1 , Figure 2 , Figure 6 and Figure 7 The mixing container includes a first sealing ring 6, and the first sealing ring 6 is provided between the box body 252 and the container body 24 to seal the second receiving cavity 22.
[0137] For example, the box body 252 has an annular first sealing groove, the first sealing ring 6 is located in the first sealing groove, the first sealing ring 6 is disposed around the box body 252, and the first sealing ring 6 abuts against the container body 24 in the radial direction of the sealing ring to seal.
[0138] For example, please refer to Figure 1 , Figure 2 , Figure 6 and Figure 7 The mixing container includes a second sealing ring 7, which is disposed between the lid 254 and the body 252 to seal the first receiving cavity 21.
[0139] For example, the box body 252 covers the second receiving cavity 22, and the box cover 254 covers the first receiving cavity 21.
[0140] In this embodiment, the lid 254 is placed on the end of the feeding box 251 away from the feeding port 2521. The lid 254 and the feeding box 251 form a first receiving cavity 21. The switcher 1 is connected to the lid 254. The lid 254 can rotate relative to the box body 252 to drive the switcher 1 to rotate, so that the stop 253 at the drive end of the switcher 1 can rotate relative to the box body 252.
[0141] In some embodiments, please refer to Figures 17-27 The mixing device 2 also includes a mounting sleeve 26, which is disposed on the container body 24. The outer side of the mounting sleeve 26 is circumferentially limited to the outer side of the container body 24, and the inner side of the mounting sleeve 26 is circumferentially limited to the end stop 253 and guides the end stop 253 to move axially along the container body 24. The feeding assembly 25 also includes a box cover 254, which is connected to the end of the box body 252 away from the feeding port 2521 so that the box cover 254 drives the box body 252 to rotate. The box cover 254 and the feeding box 251 form a first receiving cavity 21.
[0142] It should be noted that when the box body 252 and the end stop 253 rotate relative to each other, the relative position of the box body 252 and the container body 24 along the axial direction of the container body 24 remains unchanged.
[0143] For example, the lid 254 is integrally formed with the body 252.
[0144] For example, please refer to Figure 20 and Figure 21 The mounting sleeve 26 has a fourth groove 262 on its outer side, and the container body 24 has a protruding limiting part 241 on its outer side. The limiting part 241 is located in the fourth groove 262 so that the outer side of the mounting sleeve 26 is limited to the outer side of the container body 24 along the circumference of the container body 24.
[0145] For example, the mounting sleeve 26 is located on the side of the container body 24 facing the box body 252 along the axial direction of the container body 24.
[0146] In this embodiment, the outer side of the mounting sleeve 26 is circumferentially limited to the outer side of the container body 24, and the inner side of the mounting sleeve 26 is circumferentially limited to the end stop 253 and guides the end stop 253 to move axially along the container body 24. When the lid 254 drives the box body 252 to rotate, the mounting sleeve 26 can restrict the end stop 253 from rotating together with the box body 252. Under the action of the guide rib 2522 and the limiting rib 2531, the end stop 253 can move axially along the container body 24.
[0147] In some embodiments, please refer to Figure 17 , Figure 18 , Figure 20 , Figure 21 , Figure 25 and Figure 26 The mounting sleeve 26 has a guide groove 261 extending axially along the container body 24, and the end stop 253 has a guide portion 2534 that is movable along the guide groove 261 to move the end stop 253 relative to the box body 252 along the axial direction of the container body 24, so that the mixing device 2 switches between a first state and a second state.
[0148] For example, the number of guide grooves 261 is at least two, and the at least two guide grooves 261 are arranged at circumferential intervals along the container body 24.
[0149] For example, the number of guide sections 2534 is adapted to the number of guide grooves 261.
[0150] In this embodiment, the mounting sleeve 26 has a guide groove 261 extending axially along the container body 24, and the end stop 253 has a guide portion 2534. The guide portion 2534 can move along the guide groove 261 to allow the end stop 253 to move relative to the box body 252 along the axial direction of the container body 24, so that the mixing device 2 switches between a first state and a second state. The end stop 253 is guided to move axially along the container body 24 by the guide groove 261, so that the axial movement of the end stop 253 along the container body 24 is more stable.
[0151] It is understandable that the mounting sleeve 26 may not have a guide groove 261.
[0152] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 17 and Figure 18 The mixing device 2 has an exhaust port 23, which is connected to the first receiving cavity 21 and is formed in the feeding assembly 25.
[0153] For example, an exhaust port 23 is formed on the lid 254.
[0154] For example, the exhaust port 23 can discharge the gas inside the mixing device 2.
[0155] In this embodiment of the application, the mixing device 2 has an exhaust port 23, which is connected to the first receiving cavity 21. The exhaust port 23 is formed in the feeding component 25. When the first receiving cavity 21 and the second receiving cavity 22 are connected, the material in the first receiving cavity 21 and the material in the second receiving cavity 22 mix and react to generate gas, which is conveniently discharged through the exhaust port 23.
[0156] In some embodiments, please refer to Figures 1 to 16The mixing container includes a first protective sleeve 3 and a second protective sleeve 4 that are rotatably connected. The mixing device 2 is located within the space enclosed by the first protective sleeve 3 and the second protective sleeve 4. The container body 24 and the second protective sleeve 4 are limited along the circumference of the container body 24. The feeding component 25 also includes a box cover 254. The box cover 254 is located at one end of the box body 252 away from the feeding port 2521. The box cover 254 and the feeding box 251 enclose a first receiving cavity 21. The first protective sleeve 3 has an actuating part 31. The box cover 254 has an abutting part 2541 on the side of the box cover 254 away from the feeding port 2521 along the axial direction of the box cover 254. The actuating part 31 can abut against the abutting part 2541 along the circumference of the box cover 254 so that the first protective sleeve 3 drives the box cover 254 to rotate.
[0157] It should be noted that the circumferential limitation of the container body 24 and the second protective sleeve 4 along the container body 24 means that the container body 24 and the second protective sleeve 4 cannot rotate relative to each other along the circumferential direction of the container body 24.
[0158] It should be noted that when the lid 254 is connected to the switcher 1, the rotation of the lid 254 causes the switcher 1 to rotate, while the box body 252 does not rotate with the lid 254; when the lid 254 is connected to the box body 252, the lid 254 causes the box body 252 to rotate.
[0159] For example, please refer to Figure 5 , Figure 7 and Figures 14-16 The lid 254 has a first ring rib 2542 surrounding the exhaust port 23. The abutment portion 2541 includes the first ring rib 2542. The first protective sleeve 3 has a second ring rib 33 and an opening 32. The actuating portion 31 includes the second ring rib 33. The second ring rib 33 is arranged to form an opening 32 communicating with the exhaust port 23. One of the first ring rib 2542 and the second ring rib 33 extends to the other of the first ring rib 2542 and the second ring rib 33. The first ring rib 2542 abuts against the second ring rib 33 along the circumference of the lid 254, so that the first protective sleeve 3 drives the lid 254 to rotate.
[0160] For example, please refer to Figure 5 and Figure 15 The first ring rib 2542 surrounds the fifth groove 2546, and the second ring rib 33 extends into the fifth groove 2546.
[0161] For example, there is no relative rotation between the first ring rib 2542 and the second ring rib 33, and the first ring rib 2542 abuts against the second ring rib 33 along the circumference of the exhaust port 23.
[0162] For example, the first ring rib 2542 and the second ring rib 33 can rotate relative to each other. After the second ring rib 33 rotates a certain distance relative to the first ring rib 2542, the second ring rib 33 can abut against the first ring rib 2542 in the radial direction of the exhaust port 23.
[0163] For example, the vent 23 is circular and the opening 32 is circular. When projected along the axial direction of the container body 24, the center of the projection area of the vent 23 is offset from the center of the projection area of the lid 254.
[0164] For example, the exhaust port 23 is square and the opening 32 is square.
[0165] For example, please refer to Figure 5 , Figure 15 and Figure 16 The lid 254 has a first protrusion 2543 protruding along the axial direction of the lid 254 toward the first protective sleeve 3. The abutting part 2541 includes the first protrusion 2543. The first protective sleeve 3 has a second protrusion 34 protruding along the axial direction of the lid 254 toward the lid 254. The actuating part 31 includes the second protrusion 34. The first protrusion 2543 can abut against the second protrusion 34 along the circumference of the lid 254, so that the first protective sleeve 3 drives the lid 254 to rotate.
[0166] For example, the first protective sleeve 3 and the second protective sleeve 4 enclose a closed space.
[0167] In this embodiment, the mixing device 2 is located within the space enclosed by the first protective sleeve 3 and the second protective sleeve 4. The container body 24 and the second protective sleeve 4 are circumferentially limited along the container body 24. The first protective sleeve 3 and the second protective sleeve 4 can protect the mixing device 2 and reduce the possibility of the mixing device 2 being damaged. The first protective sleeve 3 has an actuating part 31, and the lid 254 has an abutting part 2541 on the side of the lid 254 away from the feeding port 2521 along the axial direction of the lid 254. The actuating part 31 can abut against the abutting part 2541 along the circumference of the lid 254, so that the first protective sleeve 3 drives the lid 254 to rotate, thereby enabling the lid 254 to drive the switcher 1 or the box body 252 to rotate.
[0168] It is understandable that the mixing container may not be equipped with a first protective sleeve 3 and a second protective sleeve 4.
[0169] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 and Figure 16 The inner side of the first protective sleeve 3 has a second groove 35, and the second protective sleeve 4 has a second protrusion 41. The second protrusion 41 is located inside the first protective sleeve 3 and is at least partially located in the second groove 35.
[0170] For example, the second groove 35 is an annular groove, and the second protrusion 41 is rotatable within the second groove 35.
[0171] For example, the second protrusion 41 is a snap fastener.
[0172] For example, please refer to Figure 1 , Figure 2 , Figure 6 and Figure 7 The container body 24 has a third protrusion 242, which abuts against the groove wall of the second groove 35 on the side of the container body 24 facing the second protective sleeve 4 along the axial direction of the container body 24, so as to limit the relative position of the first protective sleeve 3 and the container body 24 along the axial direction of the container body 24.
[0173] In this embodiment, the container further includes a first protective sleeve 3 and a second protective sleeve 4. The mixing device 2 and the switch 1 are both located within the space enclosed by the first protective sleeve 3 and the second protective sleeve 4. The inner side of the first protective sleeve 3 has a second groove 35, and the second protective sleeve 4 has a second protrusion 41. The second protrusion 41 is at least partially located within the second groove 35. The second groove 35 and the second protrusion 41 restrict the first protective sleeve 3 from detaching from the second protective sleeve 4, thereby improving the protective effect of the first protective sleeve 3 and the second protective sleeve 4, increasing the difficulty of disassembling the first protective sleeve 3 and the second protective sleeve 4, reducing the risk of accidental disassembly, and improving the safety of the mixing container.
[0174] In some embodiments, please refer to Figures 17-27 The mixing container also includes a third protective sleeve 9 rotatably connected to the container body 24. The box body 252 and the end stop 253 are both located within the space enclosed by the third protective sleeve 9 and the container body 24. The third protective sleeve 9 has a limiting rib 91, and the box body 252 has a limiting groove 2525. The limiting rib 91 is located in the limiting groove 2525. The limiting rib 91 abuts against the groove wall of the limiting groove 2525 along the circumference of the box body 252, so that the third protective sleeve 9 drives the box body 252 to rotate.
[0175] For example, there are at least two limiting ribs 91, which are spaced apart along the circumference of the third protective sleeve 9.
[0176] For example, when the mixing device 2 is in the first state, the third protective sleeve 9 is in sealed contact with the container body 24.
[0177] For example, please refer to Figures 17-19 The mixing container includes a fourth sealing ring 10, and the container body 24 has an annular fourth sealing groove 243, with the fourth sealing ring 10 located within the fourth sealing groove 243.
[0178] In this embodiment, the box body 252 and the end stop 253 are both located within the space enclosed by the third protective sleeve 9 and the container body 24. The third protective sleeve 9 has a limiting rib 91, and the box body 252 has a limiting groove 2525. The limiting rib 91 is located within the limiting groove 2525. The limiting rib 91 abuts against the groove wall of the limiting groove 2525 along the circumference of the box body 252, so that the third protective sleeve 9 drives the box body 252 to rotate. The box body 252 rotates by rotating the third protective sleeve 9.
[0179] In some embodiments, please refer to Figures 17-24 The inner side of the third protective sleeve 9 has a first groove 92, and the box body 252 has a first protrusion 2526. The first protrusion 2526 is located inside the third protective sleeve 9, and the first protrusion 2526 is at least partially located in the first groove 92.
[0180] For example, the first groove 92 is a slot and the first protrusion 2526 is a buckle.
[0181] In this embodiment, the inner side of the third protective sleeve 9 has a first groove 92, and the box body 252 has a first protrusion 2526. The first protrusion 2526 is located inside the third protective sleeve 9, and the first protrusion 2526 is at least partially located in the first groove 92, so as to install the box body 252 on the third protective sleeve 9.
[0182] It is understood that the third protective sleeve 9 may not have the first groove 92, and the box body 252 may not have the first protrusion 2526. Exemplarily, the box body 252 abuts against the third protective sleeve 9 on the side opposite to the end stop 253 along the axial direction of the container body 24.
[0183] In some embodiments, please refer to Figures 17-19 and Figure 24 The container body 24 has a third ring rib 244, and the inner side of the third protective sleeve 9 has a third protrusion 93 and an annular third groove 94. The third protrusion 93 protrudes from the third protective sleeve 9 radially. The third ring rib 244 is located in the third groove 94. The third ring rib 244 can rotate around the circumference of the container body 24 within the third groove 94. The side of the third ring rib 244 away from the feeding port 2521 along the axial direction of the container body 24 can abut against the third protrusion 93.
[0184] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 17 and Figure 18 The mixing container also includes a breathable membrane 5, which covers the exhaust port 23.
[0185] For example, the breathable membrane 5 is a slow-release membrane.
[0186] In this embodiment of the application, the mixing container also includes a breathable membrane 5, which covers the exhaust port 23. The breathable membrane 5 slows down the rate at which gas is discharged from the first receiving cavity 21. The breathable membrane 5 can protect the exhaust port 23 and reduce the amount of dust and debris entering the first receiving cavity 21 from the exhaust port 23.
[0187] It is understandable that the mixing container may not need to be equipped with a breathable membrane 5.
[0188] In some embodiments, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 and Figure 14 The mixing device 2 also includes a tray 27 for placing the breathable membrane 5. An exhaust port 23 passes through the tray 27. The lid 254 has a fourth ring rib 2544 and a groove 2545. The fourth ring rib 2544 protrudes along the axial direction of the lid 254 toward the first receiving cavity 21. The fourth ring rib 2544 is arranged around the exhaust port 23. The groove 2545 is located on one side of the fourth ring rib 2544 along the radial direction of the exhaust port 23. The tray 27 is partially located in the groove 2545. The tray 27 abuts against the groove wall of the groove 2545 and the third ring rib 244 on both sides along the axial direction of the lid 254. The breathable membrane 5 is located in the space enclosed by the fourth ring rib 2544.
[0189] For example, please refer to Figure 1 , Figure 2 , Figure 6 and Figure 7 The mixing container includes a sealing gasket 51, which is disposed between the breathable membrane 5 and the lid 254.
[0190] In some embodiments, please refer to Figure 17 and Figure 18 The mixing container includes a sealing gasket 51, a lid 254 having an annular groove surrounding the exhaust port 23, a breathable membrane 5 located within the annular groove, and a third protective sleeve 9 having a vent 95 communicating with the exhaust port 23. The diameter of the vent 95 is smaller than the diameter of the breathable membrane 5, and a sealing gasket 51 is provided between the breathable membrane 5 and the third protective sleeve 9.
[0191] In some embodiments, when the mixing device 2 is in the first state, the end stop 253 is in sealed contact with the box body 252 at the feeding port 2521.
[0192] For example, please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 17 and Figure 18The mixing container includes a third sealing ring 8, which is sleeved on the end stop 253 and makes sealing contact with the end stop 253 and the box body 252 along the circumference of the end stop 253.
[0193] For example, the end stop 253 has an annular third sealing groove, and the third sealing ring 8 is located in the third sealing groove.
[0194] For example, the third sealing groove protrudes from the end stop 253 on the side of the container body 24 away from the switcher 1 along the axial direction of the container body 24, and the end stop bottom rib 2533 protrudes from the wall of the third sealing groove on the side of the container body 24 away from the switcher 1 along the axial direction of the container body 24.
[0195] For example, the end stop bottom rib 2533 is located on the side of the third sealing groove away from the switcher 1 along the axial direction of the container body 24.
[0196] For example, the end stop 253 is in sealing contact with the housing 252 below the guide rib 2522.
[0197] For example, the end stop 253 is in sealing contact with the housing 252 at a position below the load-bearing rib 2523.
[0198] For example, the end stop 253 is in sealing contact with the housing 252 below the reinforcing rib 2524.
[0199] In this embodiment, when the mixing device 2 is in the first state, the end baffle 253 is in sealed contact with the box 252 at the feeding port 2521, reducing the possibility that the raw material in the first receiving cavity 21 will leak from the end baffle 253 and the box 252 into the second receiving cavity 22.
[0200] It is understandable that the end stop 253 may not be in sealed contact with the box body 252 at the feeding port 2521.
[0201] In some embodiments, please refer to Figure 23 The box body 252 includes a box body 2527 and a box shell 2528 connected to each other. The box shell 2528 is fitted onto the box body 2527. The box body 2527, the end stop 253 and the lid are arranged to form a first receiving cavity 21. The guide rib 2522 is formed on the box body 2527. The limiting groove 2525 is formed on the outside of the box shell 2528. The first protrusion 2526 is formed on the outside of the box shell 2528.
[0202] In some embodiments, the outer casing 2528 has a stop rib 2529, and there is a gap between the outer casing 2528 and the body 2527. The stop rib 2529 is located between the outer casing 2528 and the body 2527. The stop rib 2529 can abut against the mounting sleeve 26 on one side of the circumferential direction of the body 252 to restrict the rotation of the body 252.
[0203] It should be noted that the housing 252 can rotate relative to the mounting sleeve 26, and the stop rib 2529 is not always in contact with the mounting sleeve 26.
[0204] In the description of this application, the terms "certain embodiments," "one embodiment," "some embodiments," "in some embodiments," "illustrative embodiment," "example," "specific example," "some examples," or "other embodiments of this application," etc., refer to specific features, structures, materials, or characteristics described in connection with the described embodiments or examples, which are included in at least one embodiment or example of this application. In this application, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0205] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "connected" or "linked" should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or an integral connection; it can refer to a mechanical connection, an electrical connection, or a connection that allows communication between the components; it can refer to a direct connection or an indirect connection through an intermediate medium; it can refer to the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0206] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of the stated features. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0207] The features disclosed in the several device embodiments provided in this application can be arbitrarily combined without conflict to obtain new product embodiments.
[0208] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A mixing container, characterized in that, The mixing container includes a mixing device having a first receiving cavity and a second receiving cavity. The mixing device includes a container body and a feeding assembly. The first receiving cavity is formed in the feeding assembly, and the second receiving cavity is formed in the container body. The feeding assembly includes a feeding box, which includes an end stop and a box body. The box body has a feeding port, and the end stop is movably mounted on the feeding port. The mixing device has a first state in which the first receiving cavity and the second receiving cavity are isolated from each other, and a second state in which the first receiving cavity and the second receiving cavity are connected. The end stop moves relative to the box body to switch the mixing device between the first state and the second state.
2. The mixing container according to claim 1, characterized in that, The end stop rotates relative to the housing to switch the mixing device between the first state and the second state.
3. The mixing container according to claim 2, characterized in that, The inner side of the box body has a bearing rib, and the end stop has a limiting rib. When the bearing rib and the limiting rib abut against each other along the axial direction of the container body, the limiting rib is located on the side of the bearing rib away from the feeding port along the axial direction of the container body, so as to restrict the limiting rib from moving towards the feeding port along the axial direction of the container body. When the bearing rib and the limiting rib are misaligned along the axial direction of the container body, the limiting rib can move towards the feeding port along the axial direction of the container body. One of the box body and the end stop can be rotated to make the bearing rib and the limiting rib abut against or misaligned along the axial direction of the container body.
4. The mixing container according to claim 3, characterized in that, The inner side of the box has guide ribs, and the bearing rib is located between the guide rib and the feeding port. The guide rib extends spirally along the circumference of the end stop and the bearing rib extends spirally along the circumference of the end stop. The guide rib is used to guide the movement of the limiting rib. When the mixing device is in the first state, the limiting rib is located between the guide rib and the bearing rib.
5. The mixing container according to any one of claims 1 to 3, characterized in that, The mixing container includes an elastic element, one end of which abuts against the end stop, and the other end of which abuts against the side wall of the first receiving cavity away from the end stop along the axial direction of the container body. The elastic force of the elastic element causes the end stop to tend to move toward the feeding port along the axial direction of the container body.
6. The mixing container according to claim 3, characterized in that, The inner side of the box body also has reinforcing ribs, which are connected to the side of the supporting rib facing the feeding port.
7. The mixing container according to claim 6, characterized in that, The reinforcing rib is elongated and extends along the arrangement direction of the bearing rib and the feeding port.
8. The mixing container according to claim 3, characterized in that, The end stop has a support member that protrudes away from the second receiving cavity, and the limiting rib is formed in the support member.
9. The mixing container according to claim 8, characterized in that, The number of the support members is multiple, and the multiple support members are arranged at intervals along the circumference of the end stop.
10. The mixing container according to any one of claims 1 to 3, characterized in that, The feeding assembly also includes a lid, which is located on the end of the feeding box away from the feeding port. The lid and the feeding box together form the first receiving cavity. The mixing container also includes a switcher, which is connected to the lid. The lid is rotatable relative to the box body so that the switcher drives the end stop to rotate.
11. The mixing container according to any one of claims 1 to 3, characterized in that, The mixing device further includes a mounting sleeve disposed on the container body. The outer side of the mounting sleeve is circumferentially limited to the outer side of the container body, and the inner side of the mounting sleeve is circumferentially limited to the end stop of the container body and guides the end stop to move axially along the container body. The feeding assembly further includes a box cover connected to the end of the box body away from the feeding port so that the box cover drives the box body to rotate. The box cover and the feeding box form the first receiving cavity.
12. The mixing container according to claim 11, characterized in that, The mounting sleeve has a guide groove extending axially along the container body, and the end stop has a guide portion that is movable along the guide groove to allow the end stop to move relative to the box body along the axial direction of the container body, thereby switching the mixing device between the first state and the second state.
13. The mixing container according to any one of claims 1 to 12, characterized in that, The end stop has an end stop bottom rib, which is located on the side of the end stop away from the first receiving cavity along the axial direction of the container body. The end stop bottom rib protrudes from the end stop on the side of the end stop away from the first receiving cavity along the axial direction of the container body.
14. The mixing container according to any one of claims 1 to 9, 11 or 12, characterized in that, The mixing container also includes a third protective sleeve rotatably connected to the container body. The box body and the end stop are both located within the space enclosed by the third protective sleeve and the container body. The third protective sleeve has a limiting rib, and the box body has a limiting groove. The limiting rib is located in the limiting groove and abuts against the groove wall of the limiting groove along the circumference of the box body, so that the third protective sleeve drives the box body to rotate.
15. The mixing container according to claim 14, characterized in that, The inner side of the third protective sleeve has a first groove, and the box body has a first protrusion. The first protrusion is located on the inner side of the third protective sleeve, and the first protrusion is at least partially located in the first groove.
16. The mixing container according to any one of claims 1 to 12, characterized in that, The mixing container includes a first protective sleeve and a second protective sleeve that are rotatably connected. The mixing device is located within the space enclosed by the first protective sleeve and the second protective sleeve. The container body and the second protective sleeve are circumferentially limited by the container body. The feeding assembly also includes a lid. The lid is placed on the end of the feeding box away from the feeding port. The lid and the feeding box enclose the first receiving cavity. The first protective sleeve has an actuating part. The lid has an abutting part on the side away from the feeding port along the axial direction of the lid. The actuating part can abut against the abutting part along the circumference of the lid, so that the first protective sleeve drives the lid to rotate.
17. The mixing container according to any one of claims 1 to 12, characterized in that, The mixing device has an exhaust port that communicates with the first receiving cavity and is formed in the feeding assembly.
18. The mixing container according to claim 17, characterized in that, The mixing container also includes a breathable membrane that covers the exhaust port.
19. The mixing container according to any one of claims 1 to 12, characterized in that, When the mixing device is in the first state, the end stop is in sealed contact with the box body at the feeding port.