Cup
By combining decorative and movable parts in the design of thermos cups or teacups, and using a second positioning component to ensure spout alignment, the problem of aligning plastic and metal spouts is solved, improving assembly accuracy and aesthetics, and simplifying the operation process.
Patent Information
- Application Number
- CN202520108387.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-12-27
- Filing Date
- 2025-01-16
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-16
AI Technical Summary
The plastic spout of existing thermos cups or teacups is difficult to align with the metal spout, resulting in difficult assembly and poor aesthetics.
The design combines decorative and movable parts, and uses a second positioning component to ensure that the outlet and the clearance part are aligned. Metal decorative parts cover the plastic parts to improve assembly accuracy and aesthetics. The movable part can switch between a first position and a second position to open and seal the outlet.
It improves the accuracy and efficiency of spout assembly, reduces the possibility of misalignment, enhances the aesthetics and user experience of the cup, and simplifies the operation process due to the design of the moving parts.
Smart Images

Figure CN223845384U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of container, specifically cup. BACKGROUND
[0002] The existing vacuum cup or tea cup realizes sealing and water leakage prevention through the cup cover, and the user needs to open the cup cover before pouring out the liquid in the vacuum cup or tea cup for drinking.
[0003] Therefore, some existing vacuum cups or tea cups on the market are provided with a flow port, and a small cover is installed at the flow port to close the flow port, for example, the Chinese patent document with the publication number CN202269797U discloses a "new water cup", and the user needs to rotate the two small covers respectively to open the water outlet hole and the air outlet hole to communicate with the outside before pouring water, so that the water in the water cup flows out through the water outlet hole.
[0004] There are also some other vacuum cups or tea cups with cup covers, and the flow port of the cup cover is opened or sealed by a rotatable cover, for example, the Chinese patent document with the publication number CN114786541A discloses a "beverage cup and its closure", and the lower member closes the drinking port in the first lower member position, and the drinking port is not blocked by the lower member in the second lower member position, so that the water in the cup flows out from the drinking port.
[0005] In addition, there are also some other vacuum cups or tea cups with cup covers, and the flow port and the air hole of the cup cover can be simultaneously closed by a reversible upper cover, for example, the Chinese patent document with the publication number CN203693165U discloses a "vacuum cup cover", which is used for a vacuum cup, and the water outlet hole and the air hole are opened by pressing the button in the lock buckle assembly to unlock the upper cover and the cover body.
[0006] In order to reduce the manufacturing cost, the existing vacuum cup is made into a double-layer structure, that is, the inside is plastic and the outside is metal, so as to save expensive metal materials, reduce the weight, and achieve the purpose of cost reduction. At the same time, the outer surface of the vacuum cup is designed to be a metal material through laser engraving or high-temperature spraying to achieve the purpose of personalized design. However, when the cup cover with the flow port is made into a structure with plastic inside and metal outside, it is difficult to align the flow port of the plastic part with the flow port of the metal part, and the efficiency of manual alignment and assembly is low, or the existing equipment is difficult to completely align the flow port of the plastic part with the flow port of the metal part, which is prone to misalignment and has a large assembly difficulty. UTILITY MODEL CONTENTS
[0007] In order to solve the technical problem that the flow port of the plastic part of the existing cup is difficult to align with the flow port of the metal part, the utility model provides a cup, which comprises:
[0008] The cover body comprises:
[0009] a cup body, the cover body being connectable with the cup body and coverable on the cup body;
[0010] at least one flow port, the flow port being located at a side of the cover body or a top of the cover body or a bottom of the cover body or a side of the cup body or a top of the cup body or a bottom of the cup body or a joint of the cover body and the cup body;
[0011] a movable member, at least a part of the movable member being connected to the cover body and / or the cup body and at least a part of the movable member being outside the cover body and / or the cup body, at least one first avoiding part being formed on the movable member, the movable member being switchable between a first position and a second position relative to the cover body or the cup body;
[0012] a second positioning assembly; and
[0013] a decoration member, the decoration member being formed with at least one second avoiding part, at least a part of the decoration member covering at least a part of an outer surface of the cover body and / or the cup body when the decoration member is connected to the cover body and / or the cup body, the second positioning assembly being used to realize alignment of the at least one second avoiding part with the at least one flow port, or at least a part of the decoration member covering at least a part of an outer surface of the movable member when the decoration member is connected to the movable member, the second positioning assembly being used to realize alignment of the at least one second avoiding part with the at least one first avoiding part;
[0014] when the movable member is located at the first position, at least one of the flow ports is aligned with a position of one of the first avoiding parts, so that the at least one flow port is in communication with one of the first avoiding parts, thereby enabling liquid in the cup to flow out through the at least one flow port and one of the first avoiding parts in sequence;
[0015] when the movable member is located at the second position, at least a part of the movable member is capable of sealing the flow ports; when the cover body is covered on the cup body and the movable member is located at the second position, a sealed space is formed inside the cup.
[0016] The cup has the following beneficial effects:
[0017] The material of the cover or the cup or the movable part can be plastic, and the material of the decoration part can be metal. At least a part of the decoration part covers the outer surface of the cover and / or the cup, or at least a part of the decoration part covers at least a part of the outer surface of the movable part. The decoration part is adapted to be engraved, sprayed or plated, and then the cover or the cup is aligned with the decoration part by the second positioning assembly to realize the alignment of the second avoiding part and the flow port, or the movable part is aligned with the decoration part by the second positioning assembly to realize the alignment of the second avoiding part and the first avoiding part. The second positioning assembly is used to ensure the alignment of the flow port, reduce the occurrence of misalignment, improve the assembly accuracy and efficiency, and improve the appearance of the cup.
[0018] In some embodiments, the decoration part is made of metal. The decoration part made of metal can withstand high temperature and be engraved by laser. The decoration part made of metal can be customized according to customer requirements, and has high strength and pressure resistance, which effectively protects the cover or the cup or the movable part.
[0019] In some embodiments, the second positioning assembly includes a sixth positioning part formed on the decoration part and a seventh positioning part formed on the cover and / or the cup. The sixth positioning part and the seventh positioning part can be combined with each other to limit the axial rotation of the decoration part and the cover and / or the cup, so that the decoration part and the cover and / or the cup will not axially rotate when being fixedly connected by interference fitting to a predetermined position to realize the alignment of the at least one second avoiding part and the at least one flow port. In addition, the second positioning assembly includes a sixth positioning part formed on the decoration part and a seventh positioning part formed on the movable part. The sixth positioning part and the seventh positioning part can be combined with each other to limit the axial rotation of the decoration part and the movable part, so that the decoration part and the movable part will not axially rotate when being fixedly connected by interference fitting to a predetermined position to realize the alignment of the at least one second avoiding part and the at least one first avoiding part.
[0020] In some embodiments, the decoration part includes a top surface and a side surface, and the sixth positioning part is formed on the top surface of the decoration part. The cover and the cup include a top surface and a side surface, and the seventh positioning part is formed on the top surface of the cover and / or the cup when the seventh positioning part is formed on the cover and / or the cup. The movable part includes a top surface and a side surface, and the seventh positioning part is formed on the top surface of the movable part when the seventh positioning part is formed on the movable part. This makes the production of the decoration part simpler and more cost-effective.
[0021] In some embodiments, the second positioning assembly comprises a third mounting portion formed on the decoration piece, a fourth mounting portion formed on the cover and / or the cup body, a limiting member and a locking member, at least a portion of the decoration piece and at least a portion of the cover are located between the limiting member and the locking member, and / or at least a portion of the decoration piece and at least a portion of the cup body are located between the limiting member and the locking member, a portion of the limiting member and / or a portion of the locking member are arranged in the third mounting portion and the fourth mounting portion, and the limiting member and the locking member are fixedly connected to achieve alignment of at least one second avoiding portion with at least one flow port and to fix the decoration piece and the movable piece; and / or, the second positioning assembly comprises a third mounting portion formed on the decoration piece, a fourth mounting portion formed on the movable piece, a limiting member and a locking member, at least a portion of the decoration piece and at least a portion of the movable piece are located between the limiting member and the locking member, a portion of the limiting member and / or a portion of the locking member are arranged in the third mounting portion and the fourth mounting portion, and the limiting member and the locking member are fixedly connected to achieve alignment of at least one second avoiding portion with at least one first avoiding portion and to fix the decoration piece and the movable piece. In this way, the decoration piece is connected to the cover or the cup body or the movable piece through the third mounting portion, the fourth mounting portion, the limiting member and the locking member, and the second avoiding portion is aligned with the flow port or the second avoiding portion is aligned with the first avoiding portion, which is simple in structure and high in assembly efficiency, effectively reduces the occurrence of misalignment, improves the assembly accuracy and assembly efficiency, and improves the aesthetic appearance of the cup.
[0022] In some embodiments, the cup further comprises at least one air hole for balancing the air pressure inside and outside the cup.
[0023] In some embodiments, when the movable piece is located at the second position, the movable piece abuts against at least a portion of the sealing member to seal the air hole.
[0024] And / or, the air hole is formed by the flow port.
[0025] When the cup needs to be stored in a backpack or other cups need to be sealed, the activity of the movable piece can seal the flow port and the air hole at the same time, which is convenient and fast.
[0026] In some embodiments, the number of the flow ports, the first avoiding portions and the second avoiding portions is at least two, and at least two flow ports correspond to at least two first avoiding portions and at least two second avoiding portions respectively, so that when any flow port is used for liquid output, another flow port can communicate with external air to make the liquid output of the cup more smooth.
[0027] In some embodiments, the at least two flow openings are distributed on a cross section passing through the cup axis, the at least two first avoiding parts are formed on the movable member at an angle of 180°, and the at least two first avoiding parts are on the same horizontal line and correspond to the positions of the at least two flow openings. In particular, when the flow openings are on the side of the cover or the cup, it is more convenient to pour out the liquid, and the cup only needs to be tilted to the horizontal state or form a small angle with the horizontal state to pour out all the liquid in the cup.
[0028] In some embodiments, the first avoiding part is in the form of a hole and passes through the inner and outer surfaces of the movable member, so that the movable member can cover the cup cover and / or cup more extensively, and it is more beneficial to reduce the possibility of external contaminants entering the flow opening, and the overall cup is more beautiful.
[0029] In some embodiments, when the movable member is in the second position, at least a part of the movable member is tightly attached from the outside to seal the flow opening. In this way, the structure is simpler and the cost is saved. In some embodiments, the movable member is rotatably connected to the cover and / or the cup; and / or, the movable member is slidably connected to the cover and / or the cup and tightly attached to the outer surface of the cover and / or the cup, so that the movable member does not need to occupy more external space when switching between the first position and the second position; and in this way, when the movable member is in the second position, at least a part of the inner surface of the movable member can be tightly attached to seal the outside of the flow opening, and the structure is simple and the cost is low.
[0030] In some embodiments, the movable member rotates around the central axis of the cover or the cup between the first position and the second position. In particular, when the flow opening is on the side of the cover and / or the cup, rotating around the central axis of the cup makes the operation more convenient, and the overall design of the cup is more symmetrical and beautiful.
[0031] In some embodiments, the movable member is formed with a movable part, the cover is formed with at least one first limiting part, and the movable part is used in cooperation with the at least one first limiting part.
[0032] In some embodiments, when the movable part abuts against the first limiting part, the movable member is in the first position. This allows people with poor eyesight or people in dark light to quickly place the movable member in the first position and pour out the liquid in the cup, or allows people to quickly place the movable member in the first position and pour out the liquid in the cup while focusing their attention on something other than the cup.
[0033] In some embodiments, the lid and / or the cup further comprise a first sealing portion; at least a portion of the first sealing portion is configured to limit the liquid in the cup from flowing out through the joint between the lid and the cup when the lid is connected to the cup and the lid is placed on the cup. This further prevents the liquid in the cup from flowing out of the cup, including when the cup is subjected to impact.
[0034] In some embodiments, the cup further comprises a fool-proofing assembly configured to accurately move the movable member relative to the lid and to increase the frictional force.
[0035] In some embodiments, the fool-proofing assembly comprises a first elastic portion and at least one first protrusion;
[0036] The first elastic portion is formed on the movable member, and the at least one first protrusion is distributed on the lid, and the first elastic portion is capable of passing over the at least one first protrusion when the movable member is moved relative to the lid; or,
[0037] The first elastic portion is formed on the lid, and the at least one first protrusion is distributed on the movable member, and the first elastic portion is capable of passing over the at least one first protrusion when the movable member is moved relative to the lid.
[0038] In some embodiments, the lid and / or the cup are made of titanium material, or the inner side of the lid and / or the cup is made of titanium material, ceramic material or glass material. This prevents the internal stopper of the cup from reacting with the infusion material such as tea leaves.
[0039] In some embodiments, the top of the cup is provided with a support portion protruding inwardly; the lid is rested on the support portion when the lid is placed on the cup; and / or,
[0040] The bottom of the lid is provided with a support portion protruding inwardly; the cup is rested on the support portion when the lid is placed on the cup. This increases the contact area of the joint between the lid and the cup, and reduces the possibility of the liquid in the cup flowing out of the cup.
[0041] In some embodiments, the top surface and / or the bottom surface of the support portion is curved or inclined.
[0042] In some embodiments, the bottom of the cup and / or the top of the lid and / or the top of the movable member is connected to a container for storing and / or drinking liquid.
[0043] In some embodiments, the container has a double-layer structure; the inner layer of the container is made of ceramic or glass, and the outer layer of the container is made of anti-impact material.
[0044] In some embodiments, the container further comprises a lid, which is a single-layer structure or a double-layer structure; when the lid is a double-layer structure, the inner layer of the lid is ceramic or glass, and the outer layer of the lid is a drop-resistant material. BRIEF DESCRIPTION OF DRAWINGS
[0045] Figure 1 Structure schematic view of the cup of the first embodiment of the present application when the cover is placed on the cup body;
[0046] Figure 2 Structure schematic view of the cup of the first embodiment of the present application when the cover is opened;
[0047] Figure 3 Structure schematic view of the cup of the first embodiment of the present application when the cover is placed on the cup body;
[0048] Figure 4 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the second position;
[0049] Figure 5 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position;
[0050] Figure 6 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position; Figure 5 Enlarged view of A in FIG. 8;
[0051] Figure 7 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position;
[0052] Figure 8 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position;
[0053] Figure 9 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position; Figure 8 Enlarged view of B in FIG. 8;
[0054] Figure 10 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position;
[0055] Figure 11 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position;
[0056] Figure 12 Structure schematic view of the cup of the first embodiment of the present application when the movable part is located at the first position;
[0057] Figure 13The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of sealing element,
[0058] Figure 14 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of stop piece,
[0059] Figure 15 The utility model relates to a cup first embodiment of the utility model relates to the cross section schematic view of cup body,
[0060] Figure 16 For Figure 15 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of the outer layer structure opening of the container for drinking liquid,
[0061] Figure 17 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of cup body and container connection,
[0062] Figure 18 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of cup body and container connection,
[0063] Figure 19 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of another design,
[0064] Figure 20 The utility model relates to a cup first embodiment of the utility model relates to the cross section schematic view of another design,
[0065] Figure 21 For Figure 20 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of the outer layer structure opening of the container for drinking liquid,
[0066] Figure 22 The utility model relates to a cup first embodiment of the utility model relates to the exploded schematic view of second positioning assembly,
[0067] Figure 23 The utility model relates to a cup first embodiment of the utility model relates to the structure diagram of another design of stop piece,
[0068] Figure 24 The utility model relates to a cup second embodiment of the utility model relates to the structure schematic view when cover body is covered on cup body,
[0069] Figure 25 The utility model relates to a cup second embodiment of the utility model relates to the cross section schematic view when cover body is covered on cup body,
[0070] Figure 26 The utility model relates to a cup second embodiment of the utility model relates to the exploded schematic view of cover body,
[0071] Figure 27Structure schematic view of the cup body when the cover is opened in the third embodiment of the cup involved in the utility model;
[0072] Figure 28 Sectional view schematic view when the cover is arranged on the cup body in the third embodiment of the cup involved in the utility model;
[0073] Figure 29 Sectional view schematic view of the inner cup in the third embodiment of the cup involved in the utility model;
[0074] Figure 30 Structure schematic view of the cup shell in the third embodiment of the cup involved in the utility model;
[0075] Figure 31 Structure schematic view of the movable piece in the third embodiment of the cup involved in the utility model;
[0076] Figure 32 Structure schematic view of the cup body when the cover is arranged on the cup body in the fourth embodiment of the cup involved in the utility model;
[0077] Figure 33 Sectional view schematic view when the cover is arranged on the cup body in the fourth embodiment of the cup involved in the utility model;
[0078] Figure 34 Exploded view schematic view of the fourth embodiment of the cup involved in the utility model;
[0079] Figure 35 Structure schematic view of the cup body when the cover is arranged on the cup body in the fifth embodiment of the cup involved in the utility model;
[0080] Figure 36 Sectional view schematic view when the cover is arranged on the cup body in the fifth embodiment of the cup involved in the utility model;
[0081] Figure 37 Structure schematic view of the cup body when the cover is opened in the fifth embodiment of the cup involved in the utility model;
[0082] Figure 38 Structure schematic view of the cover in the fifth embodiment of the cup involved in the utility model;
[0083] Figure 39 Structure schematic view of the cup body in the fifth embodiment of the cup involved in the utility model;
[0084] Figure 40 Structure schematic view of the movable piece in the fifth embodiment of the cup involved in the utility model.
[0085] Reference signs:
[0086] 1, cover body; 11, cover shell; 111, first limiting portion; 112, through portion; 12, inner cover; 13, fool-proof assembly; 131, first elastic portion; 132, first protruding portion; 14, stopper; 141, discharge portion; 142, second elastic portion; 143, side stop portion; 144, bottom stop portion; 145, dismounting portion; 15, second limiting portion; 16, first positioning assembly; 17, first sealing portion; 18, third elastic portion; 19, first notch; 20, second accommodating portion; 2, cup body; 21, cup shell; 22, inner cup; 221, support portion; 23, second sealing portion; 24, third sealing portion; 25, first accommodating portion; 26, hinged portion; 27, connecting portion; 28, second notch; 3, movable piece; 31, avoiding portion; 32, movable portion; 33, avoiding notch; 4, container; 41, lid; 42, shell; 43, containing piece; 5, fastening assembly; 51, protruding portion; 52, first mounting portion; 6, flow port; 61, first flow port; 62, second flow port; 7, sealing assembly; 71, sealing piece; 8, decorative piece; 81, second avoiding portion; 9, lock catch assembly; 10, second positioning assembly; 101, third mounting portion; 102, fourth mounting portion; 103, limiting piece; 104, locking piece; 105, second protruding portion; 106, threaded portion. DETAILED DESCRIPTION
[0087] The specific embodiments of the present application will be further described in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but not to limit the scope of the present application.
[0088] In order to make the purpose, technical scheme and advantages of the present application more clear and understandable, the present application will be further described in detail in conjunction with the drawings and examples. It should be understood that the specific embodiments described herein are only used to explain the present application, and not to limit the present application.
[0089] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or there can be an intervening element; when an element is referred to as being "connected to" another element, it can be directly connected to the other element or there can be an intervening element.
[0090] In addition, the terms "first", "second", etc. are used only for descriptive purposes and should not be construed as indicating or implying relative importance or an indicated number of technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0091] It should be understood that the directions or positional relationships indicated by "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like in the embodiments are based on the directions or positional relationships shown in the drawings, and are only for the convenience of describing the embodiments of the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.
[0092] In the description of the embodiments of the utility model, "lateral" and "longitudinal" are based on the directions indicated by the drawings, and the introduction of "lateral" and "longitudinal" is only for the convenience of explaining the relative movement relationship between components, and cannot be understood as limiting the utility model.
[0093] Embodiment one
[0094] In order to solve the technical problems in the background art, the utility model embodiment one discloses a cup, referring to Figures 1-23 The cup comprises a cover body 1, a cup body 2, a movable piece 3 and at least one flow port 6; the cover body 1 can be connected with the cup body 2 and can be covered on the cup body 2, wherein the connection of the cover body 1 with the cup body 2 means that the cover body 1 and the cup body 2 can be in a non-separation state in the case of vertical, laid down, inclined or inverted; the at least one flow port 6 is formed on the side surface of the cover body 1; at least a part of the movable piece 3 is connected on the cover body 1, and at least a part of the movable piece 3 is outside the cover body 1; at least one first avoiding part 31 is formed on the movable piece 3; the movable piece 3 can be switched between a first position and a second position relative to the cover body 1; when the movable piece 3 is located at the first position, at least one of the flow ports 6 is respectively aligned with the position of at least one of the first avoiding parts 31, so that at least one of the flow ports 6 is respectively communicated with at least one of the first avoiding parts 31, thereby enabling the liquid in the cup to flow out through one of the flow ports 6 and one of the first avoiding parts 31 in turn; when the movable piece 3 is located at the second position, the movable piece 3 seals all the flow ports 6; when the cover body 1 is covered on the cup body 2 and the movable piece 3 is located at the second position, a sealed space can be formed in the cup.
[0095] The cup of the utility model embodiment one is related to, only need to adjust the position of the movable element 3 when using, can realize the switching of two states of the cup in at least one flow port 6 opening simultaneously and all flow ports 6 being sealed, when the movable element 3 is located at the first position, at least one flow port 6 on the cup is opened simultaneously, and the flow port 6 on the cup can play the role of water outlet and the role of ventilation, that is, any flow port 6 can be used for water outlet, and at least another flow port 6 can play the ventilation effect, so that the internal air of the cup is communicated with the external air to balance the air pressure inside and outside the cup, thereby realizing the smooth discharge of the liquid in the cup, when the movable element 3 is located at the second position, all flow ports 6 on the cup are closed, so as to limit the liquid in the cup from flowing outwards, so that the cup can be stored in the backpack, and the risk of dust or other foreign matters entering the inside of the cup can be reduced.
[0096] The cup related to the utility model embodiment one is suitable for brewing drinks in addition to containing liquid, for example, brewing Gongfu tea, brewing milk powder, brewing chrysanthemum water, etc.; taking brewing Gongfu tea as an example, the operation of using the cup of the embodiment one includes the following:
[0097] (1) As a brewing method, the user opens the cover 1 and places liquid and brewing material (such as tea leaves) into the cup body 2, then covers the cover 1 on the cup body 2, and adjusts the movable element 3 to the second position, so that a sealed space is formed in the cup, the liquid maintains a high temperature state and contacts the tea leaves, and after a period of time, the liquid in the cup contacts the tea leaves to form tea soup, then the movable element 3 can be adjusted to the first position, at least part of the flow port 6 is communicated with at least part of the first avoiding part 31, the liquid in the cup can flow out of the cup through the flow port 6 and the first avoiding part 31, and the liquid outlet is uniform.
[0098] (2) As another brewing method, the user opens the cover 1 and places liquid and brewing material (such as tea leaves) into the cup body 2, then covers the cover 1 on the cup body 2, at this time, the movable element 3 can be adjusted to the first position, at least part of the flow port 6 is communicated with at least part of the first avoiding part 31, after a period of time, the liquid in the cup contacts the tea leaves to form tea soup, and the liquid in the cup can flow out of the cup directly through the flow port 6 and the first avoiding part 31.
[0099] Therefore, during the brewing process, the liquid in the cup contacts the brewing material, and the movable piece 3 can be located in the first position or the second position. When the liquid in the cup needs to flow out of the cup, the movable piece 3 is controlled to be in the first position, so that at least a part of the flow port 6 is in communication with at least a part of the first avoiding part 31. One of the technical effects of the embodiment is that the cup is ingeniously combined with the Gongfu tea set. Because the cup is portable and anti-falling, a Gongfu tea lover can drink Gongfu tea at any time when traveling or working on a business trip, and the demand for drinking Gongfu tea in a new scene is met.
[0100] In some embodiments, at least a part of the movable piece 3 is connected to the cup body 2, and at least a part of the movable piece 3 is located outside the cover body 1 and / or the cup body 2, so that the user can operate the movable piece 3. When the cover body 1 is covered on the cup body 2, at least a part of the movable piece 3 is located at the cover body 1, and the switching between the open state and the sealed state of the flow port 6 is realized by adjusting the position of the movable piece 3.
[0101] In some embodiments, at least a part of the movable piece 3 is connected to the cup body 2 and the cover body 1, and at least a part of the movable piece 3 is located outside the cover body 1 and / or the cup body 2, so that the user can operate the movable piece 3. For example, the movable piece 3 is movably connected to the cover body 1, and the movable piece 3 is detachably connected to the cup body 2. When the cover body 1 is covered on the cup body 2, the movable piece 3 is connected to the cup body 2, so as to improve the connection stability of the movable piece 3 and the cup. The movable piece 3 can move relative to the cover body 1 to realize the switching between the open state and the sealed state of the flow port 6. This example is only for illustration and cannot be regarded as a limitation of the design that the movable piece 3 is connected to the cup body 2 and the cover body 1 at the same time.
[0102] In some embodiments, the movable piece 3 is attached to the outer surface of the cover body 1 and / or the cup body 2, so that the movable piece 3 only needs to be converted between the first position and the second position by sliding, and the operation is convenient.
[0103] In the embodiment of the utility model, the cover body 1 and the cup body 2 can be rotatably connected through buckle connection, threaded connection or hinging, etc.
[0104] Reference Figures 3-5In the first embodiment, the movable member 3 can also be movably connected to the cup; for example, when the movable member 3 is connected to the cup, the movable member 3 can have at least a portion abutting the outer surface of the cup. In some embodiments, the movable member 3 can be at least partially abutting the cover 1; in some embodiments, the movable member 3 can also abut both the cover 1 and the cup 2, and can slide relative to the surface of the cover 1 and / or the cup 2, that is, the movable member 3 can be switched between the first position and the second position by sliding on the surface of the cup 2 and / or the cover 1, thereby opening and sealing the flow port 6. Of course, the movable member 3 can also be rotatably connected or connected in other ways to the cup, because the direction of rotation or outward turning is relatively easy to understand, and will not be described in detail here. Compared with the way of connecting the movable member 3 to the cover 1 or the cup 2 by rotation or other ways, the way of sliding connection can make the operation of the movable member 3 easier and smoother, and reduce the risk of accidental movement of the movable member 3, especially when the movable member 3 is rotatably connected to the cup by rotating around the central axis of the cup, and the movable member 3 is in the shape of a circular cover or a circular ring. When the movable member 3 is rotatably connected to the cover 1, the situation that the movable member 3 collides with external objects can be avoided or reduced, making the cup more suitable for carrying.
[0105] In some embodiments, when the movable member is in the second position, at least a portion of the movable member abuts from the outside to seal the flow port. In this way, the structure is simpler and the cost is saved.
[0106] In some embodiments, the sliding connection structure of the movable member 3 and the cover 1 is a common structure in the art, for example, the movable member 3 has a first buckling part formed thereon, and the cover 1 has a second buckling part formed thereon, and the sliding connection of the movable member 3 and the cover 1 is realized by the mutual cooperation of the first buckling part and the second buckling part.
[0107] Further, to reduce the difficulty of operation for the user, the movable member 3 is formed with a movable part 32, and the cover 1 and / or the cup 2 is formed with at least one first limiting part 111, as shown in Figures 8-10, the active part 32 cooperates with the at least one first limiting part 111 to limit the range of movement of the active part 3. As an optional design, when the first limiting part 111 abuts against the active part 32, the active part 3 is in the first position, so that the user does not need to deliberately pay attention to whether the flow port 6 is aligned with the first avoiding part 31 when opening the flow port 6. As another optional design, when the first limiting part 111 abuts against the active part 32, the active part 3 is in the second position, so that the user does not need to deliberately pay attention to whether the flow port 6 is misaligned with the first avoiding part 31 when sealing the flow port 6. As still another optional design, the first limiting part 111 is provided with at least two first limiting parts 111, when the active part 3 abuts against one first limiting part 111, the active part 3 is in the first position to pour out the liquid in the cup, and when the active part 3 abuts against the other first limiting part 111, the active part 3 is in the second position to seal the flow port 6. Based on this design, the cup water outlet and sealing are controlled by the cooperation of the two first limiting parts 111 and the active part 32, which is accurate and convenient to adjust, and can provide a better user experience.
[0108] Optionally, the active part 32 is a first protrusion formed on the active part 3, and the first limiting part 111 is a side surface of a second protrusion formed on the cover 1; when the active part 3 rotates in the clockwise or counterclockwise direction to abut against the first protrusion and the first limiting part 111, the active part 3 cannot continue to rotate in the original direction, so that the active part 3 stops in the state that the first avoiding part 31 is aligned with the flow port 6 or in the state that the first avoiding part 31 is misaligned with the flow port 6.
[0109] Reference Figures 4-5 In the cup, the number of the flow ports 6 and the first avoiding parts 31 is two respectively, and the two flow ports 6 and the two first avoiding parts 31 are one-to-one corresponding respectively. The two flow ports 6 can be distributed on the longitudinal section passing through the cup axis, and the two flow ports 6 are located on the two sides of the cup. The at least two first avoiding parts 31 are formed on the active part 3 with an angle of 180°, and the positions of the two first avoiding parts 31 correspond to the positions of the two flow ports 6. That is, the two flow ports 6 are oppositely arranged on the side surface of the cup, so that when the liquid in the cup flows out through one flow port 6 and one first avoiding part 31, the other flow port 6 and the other first avoiding part 31 are in communication with the air outside the cup, balancing the air pressure inside and outside the cup. When the user uses the cup, the cup can be adjusted to a state suitable for pouring water by rotating the cup by 90° or 45°, which is extremely convenient to operate. When one flow port 6 pours out liquid, the other flow port 6 is located above the cup, avoiding or reducing the situation that the liquid in the cup flows out from the other flow port 6 and causes hand burns. The number and position of the flow ports 6 can be adjusted according to different use requirements, which are not limited herein.
[0110] ReferenceFigure 2 、 Figure 5 and Figure 8 The first avoiding part 31 in the cup according to the embodiment 1 is in the form of a hole and penetrates the inner and outer surfaces of the movable piece 3, the shape and cross-sectional area of the first avoiding part 31 correspond to the shape and cross-sectional area of the flow port 6, for example, the first avoiding part 31 is a circular hole, a semicircular hole or a square hole, etc., so that the liquid in the cup can flow out from the flow port 6 and the first avoiding part 31 in turn, so that the movable piece 3 can cover the cover body 1 and / or the cup body 2 in a larger area, and it is more conducive to reducing the possibility of external contaminants entering the flow port 6, and making the whole cup more beautiful. In this way, when the movable piece 3 is located at the first position, the liquid in the cup can flow out along the flow port 6 and the first avoiding part 31 in turn. It can be understood that the first avoiding part 31 can also be a non-hole structure, for example, the movable piece 3 includes a baffle capable of shielding the flow port 6, and the first avoiding part 31 is formed by the hollow part on the outer side of the baffle or between adjacent baffles; or the first avoiding part 31 can also be the space formed after the movable piece 3 is turned outward; when the movable piece 3 is located at the first position, the part of the movable piece 3 that does not shield the flow port 6 is the first avoiding part 31. The specific structure of the first avoiding part 31 is not limited here.
[0111] With reference to Figures 5-6 The cup according to the embodiment 1 can include a first sealing part 17, which can be installed on the cover body 1, or on the cup body 2, or between the cup body 2 and the cover body 1; when the cover body 1 is covered on the cup body 2, at least a part of the first sealing part 17 abuts against the cover body 1 and the cup body 2, so as to limit the liquid in the cup from flowing out through the connection between the cover body 1 and the cup body 2; in this way, when the user pours water, it can be ensured that the liquid in the cup is only discharged through the flow port 6, and when the movable piece 3 is located at the second position, it can be ensured that the cup has better sealing performance, so as to reduce the speed of heat loss of the liquid, thereby maintaining the taste of the liquid stored in the cup body 2 to the greatest extent.
[0112] With reference to Figure 4 The cup according to the embodiment 1 can include a sealing assembly 7, which is formed by cooperation of at least a part of the inner surface of the movable piece 3 and at least a part of the flow port 6, and can seal the flow port 6 when the movable piece 3 is located at the second position. When the cooperation precision between the movable piece 3 and the cup is high enough, the side wall of the movable piece 3 can directly seal the flow port 6; however, due to the error in processing of most workpieces, the cup can further include a sealing piece 71, at least a part of the sealing piece 71 constitutes a part of the sealing assembly 7, and the sealing piece 71 cooperates with at least a part of the inner surface of the movable piece 3 or the flow port 6 to seal the flow port 6.
[0113] With reference toFigure 4 The cup according to the embodiment one of the present application can comprise a sealing assembly 7, which is formed by at least a part of the inner surface of the movable member 3 and at least a part of the flow port 6. When the movable member 3 is in the second position, the flow port 6 can be sealed by the sealing assembly 7. When the cooperation between the movable member 3 and the cup is accurate enough, the side wall of the movable member 3 can directly seal the flow port 6. However, since there is an error in the processing of most workpieces, the cup can further comprise a sealing member 71, at least a part of which constitutes a part of the sealing assembly 7. The sealing member 71 cooperates with at least a part of the inner surface of the movable member 3 or the flow port 6 to seal the flow port 6.
[0114] In some embodiments, the sealing member 71 is elastic, as shown in Figure 4 、 Figure 5 、 Figure 7 and Figure 13 The sealing member 71 is arranged on the cover body 1, and at least a part of the sealing member 71 forms at least a part of the flow port 6. When the movable member 3 is in the second position, at least a part of the sealing member 71 is combined with the movable member 3. In some embodiments, the sealing member 71 can be elastically tightly abutted on the inner surface of the movable member 3, so as to seal the gap between the cover body 1 and the movable member 3, so that a sealed space can be formed in the cup.
[0115] Further, the flow port 6 can comprise a first flow port 61 formed in the cover body 1 and a second flow port 62 formed in the sealing member 71, as shown in Figure 5 When the movable member 3 is in the first position, the liquid in the cup can flow out along the flow channel composed of the first flow port 61, the second flow port 62 and the first avoiding portion 31. In addition, the flow port 6 can only comprise the second flow port 62 formed in the sealing member 71, that is, a part of the sealing member 71 is located in the first flow port 61 of the cover body 1 to cover the first flow port 61. In this way, when the movable member 3 is in the first position, the liquid in the cup can flow out along the flow channel composed of the second flow port 62 and the first avoiding portion 31.
[0116] Further, the cover shell 11 is formed with a through portion 112, which can be a hole or a groove with a hole wall and discontinuous and passes through the inner and outer surfaces of the cover shell 11. At least a part of the sealing member 71 is arranged in the through portion 112, so that the sealing member 71 is firmly connected to the cover body 1.
[0117] In some embodiments, the sealing member 71 is provided on the movable member 3, at least a portion of the sealing member 71 forms at least a portion of the inner surface of the movable member 3, and at least a portion of the sealing member 71 is combined with at least a portion of the flow port 6 when the movable member 3 is in the second position. In some embodiments, the sealing member 71 can be elastically abutted against the side wall end of the flow port 6 to form a sealed space inside the cup. In addition, when the cover 1 is provided on the cup 2, a portion of the sealing member 71 can seal the gap between the cover 1 and the cup 2. This design can save production and assembly processes, thereby shortening the production cycle of the cup and improving the production efficiency of the cup. It should be noted that a portion of the sealing member 71 can be provided between the cup 2 and the cover 1, on the outside of the cup 2 and the cover 1, or on the inside of the cup 2 and the cover 1, as long as the liquid in the cup can be prevented from flowing out of the gap between the cover 1 and the cup 2.
[0118] Reference Figures 8-11 The cup according to the first embodiment of the present application can include the fool-proof assembly 13. It can be understood that the existing components for shielding the flow port 6 on the existing thermal cup or other water cup (for example, refer to the patent document with the publication number CN114786541A) still have the risk of accidental movement, especially when placed in a backpack, the components may collide with other objects and move, causing the cup to leak. The addition of the fool-proof assembly 13 can accurately move the movable member 3 relative to the cover 1 and increase the friction, thereby reducing the risk of accidental leakage of the cup.
[0119] Further, the fool-proof assembly 13 includes the first elastic portion 131 and at least one first protrusion 132. The first elastic portion 131 is formed on the movable member 3, and the at least one first protrusion 132 is distributed on the cover 1. When the movable member 3 moves relative to the cover 1, the first elastic portion 131 can pass through the at least one first protrusion 132. The first protrusion 132 can be directly protruded from the cover 1, or the cover 1 can have a recessed structure, and the part of the cover 1 outside the recessed structure can form the first protrusion 132. Based on this design, when the movable member 3 collides with other objects and has a movement trend, the at least one first protrusion 132 can abut against the first elastic portion 131, thereby increasing the frictional resistance of the movable member 3 and minimizing the risk of accidental movement of the movable member 3, i.e., minimizing the risk of accidental alignment of the first avoiding portion 31 and the flow port 6, so that the cup according to the first embodiment of the present application is more suitable for carrying. In addition, after the first elastic portion 131 passes through the first protrusion 132, the first elastic portion 131 will return to the state before deformation based on its elasticity, thereby producing a sound and a vibration feeling. In this way, the user can feel that the cover 1 and the cup 2 are in a relative movement state based on the hearing and the vibration feeling, thereby providing a better user experience.
[0120] Further, the positions of the first elastic portion 131 and the first protruding portion 132 can be adjusted according to different requirements; for example, the first elastic portion 131 can also be formed on the cover body 1, and at least one first protruding portion 132 is correspondingly distributed on the movable piece 3, so that when the movable piece 3 moves relative to the cover body 1, the first elastic portion 131 can also cooperate with the first protruding portion 132 to increase the moving resistance of the cover body 1 and generate sound and vibration; for another example, when at least a part of the movable piece 3 is connected to the cup body 2, the first elastic portion 131 and the first protruding portion 132 can be formed on the movable piece 3 and the cup body 2 respectively; for another example, when at least a part of the movable piece 3 is connected to the cup body 2 and the cover body 1, the first elastic portion 131 and the first protruding portion 132 can be formed on the movable piece 3 and the cover body 1 and / or the cup body 2 respectively; there are various specific design methods, which are not listed here.
[0121] With reference to Figures 2-5 , Figure 14 , Figure 20 and Figure 23 , the cup involved in some embodiments of the first embodiment of the utility model can include a stop piece 14, which can be arranged inside the cover body 1. When the cover body 1 is arranged on the cup body 2, the stop piece 14 can be used to limit the tea or other solids in the cup from flowing out along the flow port 6 on the cover body 1, and the liquid can pass through the hole formed on the stop piece 14 or the gap between the stop piece 14 and the cover body 1 and flow out along the flow port 6, so that the user can pour out the beverage almost without solid substances. In addition, through the blocking of the stop piece 14, the solid substances inside the cup body 2 cannot or only a small amount of solid substances can enter the inside of the cover body 1, so that when the cover body 1 is opened, the solid substances almost cannot stick to the cover body 1 and also almost cannot be taken out of the cup along with the cover body 1, thereby reducing the risk of the solid substances falling on the user's hand or clothes. Further, the stop piece 14 can be made of titanium, ceramic, glass or other materials to prevent the brewing substances from reacting with the stop piece 14, and the stop piece 14 can be integrally formed on the cover body 1, or can be fixed on the cover body 1 by means of insertion, welding, bonding, buckling or pressure connection, or can be detachably connected to the cover body 1, which is not limited here.
[0122] Further, the stop piece 14 is formed with a second elastic portion 142, which is used to elastically fit the inner side of the cover body 1, so that the stop piece 14 can be detachably connected to the inside of the cover body 1. In this design, the stop piece 14 is convenient to disassemble and clean at any time, so as to maintain the hygiene of the cup. The second elastic portion 142 can be a spring piece stamped on the stop piece 14, or a rubber connected to the stop piece 14, which is not limited here.
[0123] Further, in order to improve the connection firmness of the stop piece 14 and the cover 1, the cover 1 is formed with a second limiting portion 15, which can be a protruding structure formed on the cover 1 or a recessed structure formed on the cover 1. The second elastic portion 142 abuts against the second limiting portion 15 to achieve the firm connection of the stop piece 14 and the cover 1. In addition, the outer side surface of the second elastic portion 142 can be V-shaped or circular arc-shaped, so that the firm connection of the stop piece 14 and the cover 1 is ensured, and the stop piece 14 can be smoothly disassembled.
[0124] Further, the stop piece 14 comprises a side blocking portion 143 and a bottom blocking portion 144 connected with each other, and the top of the side blocking portion 143 abuts against the cover 1. It can be understood that most solid substances (such as tea leaves) will absorb liquid and change in volume after being soaked in the liquid. By designing the side blocking portion 143 on the stop piece 14 to abut against the cover 1, the stop piece 14 can be limited in position, so as to limit the expanded solid substances from lifting the stop piece 14, and ensure that the stop piece 14 can always block the solid substances from entering the flow port 6, and reduce the risk of the solid substances sticking to the cover 1 or being taken out of the cup along with the cover 1.
[0125] Further, the stop piece 14 comprises at least one discharge portion 141, which is in the form of a hole and penetrates the inner and outer surfaces of the stop piece 14. The discharge portion 141 can be formed on the side blocking portion 143 or the bottom blocking portion 144. The discharge portion 141 can allow liquid to pass through, while most solid substances such as tea leaves and chrysanthemums cannot pass through the discharge portion 141. By designing the discharge portion 141, the speed of liquid passing through the stop piece 14 can be accelerated, so that the water outlet at the flow port 6 is smoother and the water outlet efficiency is higher.
[0126] Further, the stop piece 14 is formed with a disassembly portion 145, by which the stop piece 14 can be taken out of the cover 1. The disassembly portion 145 can be stamped and formed on the bottom blocking portion 144, and the side end of the disassembly portion 145 is formed with at least one side hole. The user can put a finger or other external tool into the side hole to apply force to the disassembly portion 145, so as to disassemble the stop piece from the cover 1 or the cup 2. In addition, the disassembly portion 145 can also be selected to have other structures, which are not limited herein.
[0127] In some embodiments, the stopper 14 can be arranged inside the cup body 2, when the cover body 1 is arranged on the cup body 2, the stopper 14 is used to limit the tea leaves or other solids in the cup from flowing out along the flow port 6, while the liquid can pass through the hole formed on the stopper 14 or the gap between the stopper 14 and the cup body 2 and flow out along the flow port 6. The structure of the stopper 14 and the connection mode of the stopper 14 and the cup body 2 can refer to the specific design of the stopper 14 arranged inside the cover body 1 described above, or other existing designs, which will not be repeated here. Further, the interior of the cover body 1 and the interior of the cup body 2 can be simultaneously provided with the stopper 14, or when the cover body 1 is connected with the cup body 2, a part of the stopper 14 is located in the cover body 1 and another part of the stopper 14 is located in the cup body 2, which is not limited here.
[0128] With reference to Figures 1-2 In the cup according to the embodiment of the present application, one side of the cover body 1 is hingedly connected with the cup body 2, and the other side of the cover body 1 is detachably locked with the cup body 2 through the lock buckle assembly 9. In this design, when the user fills the cup with liquid or liquid and brewing material, the cover body 1 does not need to be separated from the cup body 2, thereby reducing the risk of losing or dropping the cover body 1 on the ground. The above-mentioned lock buckle assembly 9 is a prior art, and its structure will not be described in detail here. It can be understood that the cover body 1 and the cup body 2 can also be connected by threads or other ways, which is not limited here.
[0129] In some embodiments, in order to reduce the cost of the cup, the cover shell 11, the cup shell 21 and the movable piece 3 are generally made of plastic, and some food-grade plastics cannot withstand high temperature and are not suitable for carving, spraying or electroplating processing, which limits the appearance of the cup. Therefore, the cup according to the embodiment of the present application can further comprise a decoration piece 8 and a second positioning assembly 10, with reference to Figures 19-22 At least a part of the decoration piece 8 can be connected to the cover body 1 to cover at least a part of the cover body 1, or connected to the cup body 2 to cover at least a part of the cup body 2, or connected to the movable piece 3 to cover at least a part of the movable piece 3. The decoration piece 8 can be made of metal or other materials suitable for carving, spraying or electroplating processing. In this way, the outer surface of the prepared cup can present different colors, different texts or different patterns, etc., so that the appearance of the cup is more diversified. In addition, the decoration piece 8 made of metal has high strength and pressure resistance, which effectively protects the cover body 1 or the cup body 2 or the movable piece 3.
[0130] In some embodiments, the decorative piece 8 is provided with at least one second avoiding part 81; when the decorative piece 8 is connected to the movable piece 3, the positioning between the decorative piece 8 and the movable piece 3 is realized by the second positioning assembly 10, so that the at least one second avoiding part 81 is aligned with the at least one first avoiding part 31, and the liquid in the cup can flow out through the flow path composed of the flow port 6, the first avoiding part 31 and the second avoiding part 81. The movable piece 3 and the decorative piece 8 are connected through the second positioning assembly 10 to realize the alignment of the second avoiding part 81 and the first avoiding part 31, and the second positioning assembly 10 is used to ensure the alignment of the flow port, reduce the misalignment, improve the assembly accuracy and assembly efficiency, and improve the appearance of the cup. When the flow port 6 and the first avoiding part 31 are at least two, the second avoiding part 81 is also at least two, and the at least two flow ports 6 are one-to-one corresponding to the at least two first avoiding parts 31 and the at least two second avoiding parts 81, respectively.
[0131] In some embodiments, the second positioning assembly 10 includes a sixth positioning part formed on the decorative piece 8 and a seventh positioning part formed on the cover 1 and / or the cup body 2, and the sixth positioning part and the seventh positioning part can be combined with each other to limit the axial rotation of the decorative piece 8 relative to the cover 1 and / or the cup body 2, so that the decorative piece 8 and the cover 1 and / or the cup body 2 are not axially rotated relative to each other when they are fixedly connected by interference fit to the predetermined position, and the at least one second avoiding part 81 is aligned with the at least one flow port 6; and / or,
[0132] The second positioning assembly 10 includes a sixth positioning part formed on the decorative piece 8 and a seventh positioning part formed on the movable piece 3, and the sixth positioning part and the seventh positioning part can be combined with each other to limit the axial rotation of the decorative piece 8 relative to the movable piece 3, so that the decorative piece 8 and the movable piece 3 are not axially rotated relative to each other when they are fixedly connected by interference fit to the predetermined position, and the at least one second avoiding part 81 is aligned with the at least one first avoiding part 31. (The sixth positioning part and the seventh positioning part can be general structures such as concave-convex or clamping, etc., but no drawings are attached)
[0133] In some embodiments, the second positioning assembly 10 includes a third mounting part 101 formed on the decorative piece 8, a fourth mounting part 102 formed on the movable piece 3, a limiting piece 103 and a locking piece 104, at least a part of the decorative piece 8 and at least a part of the movable piece 3 are located between the limiting piece 103 and the locking piece 104, a part of the limiting piece 103 and / or a part of the locking piece are arranged in the third mounting part 101 and the fourth mounting part 102, and the limiting piece 103 and the locking piece 104 are fixedly connected, so that not only the at least one second avoiding part 81 is aligned with the at least one first avoiding part 31, but also the decorative piece 8 and the movable piece 3 are fixedly connected, and the structure of the cup is more simplified.
[0134] As a specific design, the third mounting part 101 is in the shape of a hole and penetrates the inner and outer surfaces of the decoration piece 8, the fourth mounting part 102 is in the shape of a hole and can penetrate the inner and outer surfaces of the movable piece 3, a part of the limiting piece 103 abuts against the top of the decoration piece 8, the bottom of the limiting piece 103 is further provided with a second protruding part 105 which is arranged in the third mounting part 101 and the fourth mounting part 102, the bottom of the second protruding part 105 is formed with a threaded hole, a part of the locking piece 104 abuts against the bottom of the movable piece 3, the top of the locking piece 104 is further provided with a threaded part 106 which is threadedly connected in the threaded hole, so as to realize the alignment of the at least one second avoiding part 81 with the at least one first avoiding part 31 and the fixed connection of the decoration piece 8 with the movable piece 3. The part of the limiting piece 103 which is located on the top of the decoration piece 8 can be designed in various shapes or engraved with various patterns or characters, so as to make the cup more beautiful. In addition, since the connection between the threaded part 106 and the second protruding part 105 can be loose, the inner cover 12 and the cover shell 11 can be arranged in detachable connection, and the user can adjust the locking piece 104 by screwdriver through the first mounting part 52 after the inner cover 12 is detached from the cover shell 11, so as to re-tighten the threaded part 106 and the second protruding part 105. It is further explained that, compared with the way of directly bonding the decoration piece 8 and the movable piece 3 by using glue, the cooperation of the limiting piece 103 and the locking piece 104 for fixing the decoration piece 8 and the movable piece 3 can make the connection between the decoration piece 8 and the movable piece 3 less affected by thermal expansion and cold contraction, and further make the connection between the decoration piece 8 and the movable piece 3 more firm, and also make the connection in the way of interference.
[0135] In one embodiment, the decoration piece 8 is formed with the second avoiding part 81; when the decoration piece 8 is connected to the cover body 1 and / or connected to the cup body 2, the positioning between the decoration piece 8 and the cover body 1 and / or the decoration piece 8 and the cup body 2 is realized by the second positioning assembly 10, so as to align the at least one second avoiding part 81 with the at least one flow port 6, and further make the liquid in the cup flow out through the flow channel composed of the flow port 6, the first avoiding part 31 and the second avoiding part 81, and make the outer surface of the cup more beautiful. The second positioning assembly 10 can include the sixth positioning part formed on the decoration piece 8 and the seventh positioning part formed on the cover body 1 and / or the cup body 2, and the second positioning assembly 10 can include the third mounting part 101 formed on the decoration piece 8, the fourth mounting part 102 formed on the cover body 1 and / or the cup body 2, the limiting piece 103 and the locking piece 104. The specific connection mode can refer to the specific design of the second positioning assembly 10 when the decoration piece 8 is connected with the movable piece 3, and details are not repeated here.
[0136] Since the cup related to the embodiment one of the utility model is suitable for brewing beverages, especially for brewing Gongfu tea, at least a part of the cup related to the embodiment one of the utility model is made of a material which can improve or maintain the flavor of the beverage, specifically:
[0137] The cover body 1 and the cup body 2 can be composed of titanium material; the titanium material has good antibacterial function, can play a good preservation effect, and then the milk, tea and other liquids or solids stored in the cup body 2 can be preserved for a long time, and the cover body 1 and the cup body 2 composed of titanium material have no odor, and the drinks in the cup body 2 will not have the taste of metal. In addition, the titanium material also has the advantages of strong corrosion resistance, high strength, light weight and the like. Further, since the cost of titanium material is relatively high, only the part of the cup body 2 that contacts the liquid on the inside can be composed of titanium material, and the outside of the cup body 2 is composed of low-cost materials such as plastic, 304 stainless steel and the like. This structure can effectively reduce the production cost of the cup.
[0138] In addition, the cover body 1 and the cup body 2 can also be composed of ceramic material or glass material on the inside and composed of anti-falling material such as plastic, 304 stainless steel and the like on the outside. This design can maintain the aroma of the drink. Taking the example of brewing Gongfu tea, Gongfu tea has high requirements for brewing tea sets. The cover body 1 and the cup body 2 composed of ceramic or glass material will not make the tea soup have an odor, and the texture is tight and the thermal conductivity is moderate, which can maximize the retention of the original aroma and taste of the tea soup. The design of the structure of the ceramic material or glass material on the inside and the anti-falling material on the outside can protect the ceramic or glass on the inside of the cup body 2, reduce the risk of accidental damage or breakage of the ceramic or glass, improve the service life of the cup body 2, and also facilitate carrying the cup outside.
[0139] Reference Figure 3 In some embodiments, the cover body 1 includes a cover shell 11 and an inner cover 12, at least a part of the inner cover 12 is arranged inside the cover shell 11, the inner cover 12 is composed of titanium material or ceramic material or glass material, and the cover shell 11 is composed of anti-falling material that is not ceramic and not glass. The cup body 2 includes an inner cup 22 and a cup shell 21, at least a part of the inner cup 22 is arranged inside the cup shell 21, the inner cup 22 is composed of titanium material or ceramic material or glass material, and the cup shell 21 is composed of anti-falling material that is not ceramic and not glass. When the cover body 1 is connected with the cup body 2 and covers the cup body 2, the inner cover 12 and the inner cup 22 are arranged inside the cover shell 11 and the cup shell 21, or the inner cover 12 and the inner cup 22 are arranged inside the cover shell 11, the cup shell 21 and the movable piece 3, so that the cup is not easy to be accidentally knocked over and the fragile material of the inner cover 12 and / or the inner cup 22 is damaged.
[0140] In some embodiments, the cover 1 includes a fastening assembly 5, which secures the inner cover 12 within the cover shell 11. The fastening assembly 5 can be an adhesive used to bond the inner cover 12 to the cover shell 11, a component fixed to the cover shell 11 and capable of controlling the inner cover 12, or a structure that mates with the inner cover 12 on the cover shell 11. In short, the fastening assembly 5 is the structure that secures the inner cover 12 within the cover shell 11. The specific structure of the fastening assembly 5 is not limited here. The structure of the fastening assembly 5 includes the following:
[0141] As a first optional design, fastening component 5 is made of an elastic material such as rubber or silicone, see reference Figure 3 The fastening component 5 is located between the cover shell 11 and the inner cover 12. The outer side of the fastening component 5 is elastically pressed against the cover shell 11, and the inner side of the fastening component 5 is elastically pressed against the inner cover 12. Utilizing the elasticity of the fastening component 5 itself, it can fit tightly against the cover shell 11 and the inner cover 12, thereby creating a large frictional resistance between the fastening component 5 and the cover shell 11, and between the fastening component 5 and the inner cover 12. This achieves relative fixation between the fastening component 5 and the cover shell 11, and between the fastening component 5 and the inner cover 12, thus confining the inner cover 12 within the cover shell 11. Based on this design, the fastening component 5 can also serve as a sealing structure to prevent the seepage of liquids or foaming substances at the connection between the inner cover 12 and the cover shell 11; and the sealing element 71 can be part of the fastening component 5, facilitating production and assembly.
[0142] As a second alternative design, the fastening assembly 5 includes a protrusion 51 formed on the inner cover 12 and a first mounting portion 52 formed on the cover shell 11, see reference. Figure 3 At least a portion of the protrusion 51 is fitted into the first mounting portion 52 to connect the inner cover 12 and the cover shell 11. The protrusion 51 and the wall of the first mounting portion 52 can be firmly connected by means of interference fit of shaft hole, bonding, welding, etc. Alternatively, a fourth elastic portion is installed on the cover shell 11, and the first mounting portion 52 is formed in the middle of the fourth elastic portion. The fourth elastic portion is used to elastically press the inner cover 12 so that at least a portion of the inner cover 12 is firmly connected to the cover shell 11.
[0143] As a third alternative design, the fastening assembly 5 includes at least two interlocking sub-components and a protrusion 51 formed on the inner cover. Multiple sub-components are collectively enclosed in the protrusion 51 and form an interference fit with the protrusion 51. Then, the multiple sub-components are connected to the cover shell 11 or disposed inside the cover shell 11, so that the inner cover 12 and the cover shell 11 are connected through the sub-components and the protrusion 51.
[0144] In some embodiments, the cup body 2 also includes a fastening assembly 5, see reference. Figure 15The inner cup 22 is limited in the cup shell 21 by the fastening assembly 5. The fastening assembly 5 arranged on the cup body 2 can press the inner cup 22 in the cup shell 21 by elastic force. The fastening assembly 5 arranged on the cup body 2 can also include the protruding part 51 formed on the inner cup 22 and the first mounting part 52 formed on the cup shell 21. The specific design can refer to the fastening assembly 5 arranged on the cover body 1, which will not be described here.
[0145] In some embodiments, the cover shell 11 and the inner cover 12 are provided with the first positioning assembly 16 formed by cooperation. Referring to Figure 3 , the first positioning assembly 16 is used to limit the rotation of the inner cover 12 relative to the cover shell 11. It can be understood that if the inner cover 12 rotates relative to the cover shell 11, the flow port 6 and the first avoiding part 31 cannot be accurately aligned. Therefore, the first positioning assembly 16 is arranged between the inner cover 12 and the cover shell 11 to limit and position the inner cover 12 and the cover shell 11, thereby improving the assembly accuracy and convenience between the inner cover 12 and the cover shell 11. In addition, people with poor eyesight or people who need to focus on other things can quickly make the movable part 3 in the first position and pour out the liquid in the cup. In addition, if the inner cover 12 rotates relative to the cover shell 11 or has a tendency to rotate, the connection between the inner cover 12 and the cover shell 11 will be weakened. The first positioning assembly 16 arranged on the cover body 1 can improve the connection between the inner cover 12 and the cover shell 11.
[0146] As an optional design, referring to Figure 3 , Figure 7 and Figure 10 , the first positioning assembly 16 includes the protruding part 51 formed on the inner cover 12 and the first mounting part 52 formed on the cover shell 11. Referring to Figure 3 , at least a part of the protruding part 51 is embedded in the first mounting part 52 to limit the rotation of the inner cover 12 relative to the cover shell 11. The cross section of the protruding part 51 is non-circular or multiple protruding parts 51 are arranged, for example, the multiple protruding parts 51 are asymmetrically arranged. The cover shell 11 is provided with the first mounting part 52 matched with the protruding part 51. The shape and number of the first mounting part 52 are matched with the shape and number of the protruding part 51. At least a part of the protruding part 51 is embedded in the first mounting part 52 to limit the rotation of the inner cover 12 relative to the cover shell 11. The first positioning assembly 16 and the fastening assembly 5 can be the same, that is, the inner cover 12 and the cover shell 11 are connected by the first positioning assembly 16 to realize the positioning function, thereby saving the production and assembly processes.
[0147] In some embodiments, the cup shell 21 and the inner cup 22 may also be provided with a first positioning component 16 that cooperates with each other to restrict the rotation of the inner cup 22 relative to the cup shell 21. The first positioning component 16 may include a protrusion 51 formed in the inner cup 22 and a first mounting portion 52 formed in the cup shell. For specific design, please refer to the first positioning component 16 provided on the lid 1, which will not be described in detail here.
[0148] In some embodiments, the cup also includes a first sealing portion 17, see reference. Figures 3-6 The first sealing part 17 can be installed on the lid 11, the inner lid 12, between the inner lid 12 and the lid 11, the cup shell 21, the inner cup 22, or between the inner cup 22 and the cup shell 21. When the lid 1 is placed on the cup body 2, at least a portion of the first sealing part 17 abuts against the inner cup 22 and the inner lid 12 to restrict the liquid in the cup from flowing out through the connection between the inner lid 12 and the inner cup 22. In this way, when the user pours water, it can be ensured that the liquid inside the cup is discharged only through the spout 6. And when the movable part 3 is in the second position, it can ensure that the inside of the cup has better sealing and reduce the rate of heat loss of the liquid, thereby maximizing the taste of the liquid stored in the cup body 2.
[0149] In some embodiments, the first sealing portion 17 may be at least a portion of the fastening assembly 5 made of an elastic material such as silicone or rubber, see reference. Figures 3-6 Specifically, one part of the fastening component 5 is tightly attached to the outer wall of the inner lid 12, while the other part is located below the bottom surface of the inner lid 12. Thus, when the lid 1 is placed on the cup body 2, the other part of the fastening component 5 can closely contact the outer surface of the inner cup 22, thereby achieving a seal at the connection between the inner lid 12 and the inner cup 22. This design can save on production and assembly processes, thereby shortening the cup's production cycle and improving production efficiency. Furthermore, the first sealing part 17 can be an independent sealing ring installed on the inner lid 12 or the inner cup 22, or other sealing structures; no limitation is made here.
[0150] In some embodiments, the cover 1 may include a third elastic portion 18, as shown in the reference. Figure 3The third elastic part 18 is arranged between the inner cover 12 and the cover shell 11, and is used to apply elastic force to the inner cover 12 towards the cup body 2. In this way, when the cover body 1 is arranged on the cup body 2, the inner cover 12 can be tightly attached to the inner cup 22 by the third elastic part 18, thereby improving the overall sealing performance of the cup and greatly reducing the risk of water leakage. Meanwhile, the contact between the liquid and the first sealing part 17 can be reduced, so as to eliminate as many factors as possible that may affect the taste of the liquid. The third elastic part 18 can be an elastic piece, spring, silica gel or other elastic member arranged between the inner cover 12 and the cover shell 11, which is not limited herein. The third elastic part 18 can be made of silica gel or rubber, and is integrated with the fastening assembly 5 made of silica gel or rubber and arranged on the cover body 1, so as to reduce the difficulty of production and assembly.
[0151] In some embodiments, the cup body 2 can also include a third elastic part 18 arranged between the inner cup 22 and the cup shell 21. The third elastic part 18 is used to apply elastic force to the inner cup 22 towards the cover body 1, so that when the cover body 1 is arranged on the cup body 2, the inner cup 22 can be tightly attached to the inner cover 12 by the third elastic part 18. In addition, the cover body 1 and the cup body 2 can also be provided with the third elastic part 18 at the same time, so as to improve the adhesion between the inner cover 12 and the inner cup 22.
[0152] In some embodiments, the cup further includes a second sealing part 23, which is arranged on the cover shell 11, the inner cover 12, between the inner cover 12 and the cover shell 11, the cup shell 21, the inner cup 22, or between the inner cup 22 and the cup shell 21. Figures 15-16 When the cover body 1 is arranged on the cup body 2, at least a part of the second sealing part 23 is tightly arranged between the cup shell 21 and the cover shell 11, so as to limit the liquid in the cup from flowing out through the joint between the cup shell 21 and the cover shell 11. The double sealing effect of the first sealing part 17 and the second sealing part 23 can further reduce the risk of liquid penetrating out of the cup, and provide a better user experience. In addition, the second sealing part 23 can act as a buffer when the cover body 1 is arranged on the cup body 2, so as to reduce the risk of damage to the cover body 1 or the cup body 2 caused by mutual collision.
[0153] In some embodiments, the second sealing part 23 can be at least a part of the fastening assembly 5 made of silica gel or rubber, which is arranged on the cup shell 21. Figures 15-16 That is, one part of the fastening assembly 5 is tightly attached to the inner side wall of the cup shell 21, and the other part is located above the top surface of the cup shell 21. In this way, when the cover body 1 is arranged on the cup body 2, the other part of the second sealing part 23 can be tightly attached to the cover shell 11, thereby realizing the sealing of the joint between the cover shell 11 and the cup shell 21.
[0154] In some embodiments, the cup body 2 further comprises a third sealing portion 24, referring to Figure 15 The third sealing portion 24 is arranged between the cup shell 21 and the inner cup 22. It can be understood that the connection between the inner cup 22 and the cup shell 21 is extremely inconvenient to clean when liquid or brewing material (such as tea leaves) penetrates, and even produces odor when not cleaned in time. By designing the third sealing portion 24, the liquid or brewing material in the cup can be effectively limited from entering the connection between the cup shell 21 and the inner cup 22, thereby reducing the difficulty of cleaning the cup shell 21. The third sealing portion 24 can be made of elastic materials such as silica gel or rubber. The third sealing portion 24 can also be used as a fastening assembly 5 for connecting the cup shell 21 and the inner cup 22, thereby saving production and assembly processes and shortening the production cycle of the cup. In addition, the third sealing portion 24 can also be selected in other structures, which are not limited here.
[0155] In some embodiments, the outer side of the cup body 2 is provided with a first accommodating portion 25 formed by recessing, referring to Figure 2 The top of the inner cup 22 is higher than the bottom of the first accommodating portion 25. It can be understood that the inner cup 22 is a component for holding liquid or brewing material. In the case of the same internal diameter, the higher the cup body 2 is, the larger the capacity is. However, in order to facilitate the carrying of the cup, the overall height of the cup should not be too high, and due to the need to provide structures on the cover body 1 for cooperating with the cup body 2, the cover body 1 has a certain height requirement. Therefore, the height of the cup body 2 is limited, which further limits the capacity of the cup body 2. By providing the first accommodating portion 25, when the cover body 1 is covered on the cup body 2, a part of the cover body 1 is placed in the first accommodating portion 25, and the inner cup 22 is placed in the inside of the cover body 1. In this way, the capacity of the inner cup 22 is maximized under the condition that the length of the cup is limited, thereby making the cup have the characteristics of portability and large capacity.
[0156] In some embodiments, when the cover body 1 is covered on the cup body 2, the inner cover 12 and / or the cover shell 11 abut against the top of the inner cup 22; and / or, when the cover body 1 is covered on the cup body 2, the inner cup 22 and / or the cup shell 21 abut against the bottom of the inner cover 12. In this way, the risk of liquid leakage can be avoided or reduced.
[0157] In some embodiments, the top of the cup body 2 is provided with a support portion 221 formed by protruding inwardly, referring to Figure 3 and Figure 15When the cover 1 is covered on the cup body 2, the cover 1 is abutted on the supporting part 221. It can be understood that, in order to ensure the aesthetics of the cup, when the cover 1 is covered on the cup body 2, the outer side surface of the cover 1 is generally aligned with the outer side surface of the cup body 2; when the movable part 3 is sleeved on the outside of the cover 1, the outer side surface of the movable part 3 needs to be aligned with the outer side surface of the cup body 2, so that the diameter of the cover 1 needs to be relatively smaller than the diameter of the cup body 2, and then the inner cover 12 cannot be in contact with the top surface of the inner cup 22 or the contact area between the inner cover 12 and the top surface of the inner cup 22 is small, which causes the inner cover 12 and the inner cup 22 not to be tightly matched. By adding the supporting part 221, the inner diameter of the top of the cup body 2 can be reduced, the bottom surface of the inner cover 12 can be in full contact with the top surface of the inner cup 22, the water leakage of the cup can be reduced or avoided, the material consumption of the cup body 2 is minimized, the internal cavity of the cup body 2 is maximized, and the water capacity of the cup body 2 is larger. Further, the bottom surface of the supporting part 221 is an arc surface or an inclined surface, so that when the user pours out the liquid in the cup, the liquid can smoothly pass through the supporting part 221 and flow out along the flow port 6 and the first avoiding part 31.
[0158] In some embodiments, when the movable part 3 is sleeved on the outside of the cup body 2, the bottom of the cover 1 is correspondingly provided with the supporting part 221 which is protruded inwardly; when the cover 1 is covered on the cup body 2, the top surface of the cup body 2 is abutted on the supporting part 221. This design can effectively reduce the material consumption of the cover 1.
[0159] The cup related to the embodiment one of the utility model can further include a container 4. The container 4 can be a container with a large capacity for storing liquid, for example, a thermos flask with a capacity of 300ml, 400ml, 500ml or the like. It is referred to Figure 18 When the user needs to brew Gongfu tea or other drinks by using the cup body 2 and the cover 1, the liquid in the container 4 can be delivered into the cup body 2 to brew the drinks, so that the user can drink the brewed drinks at any time without frequently fetching water. The container 4 can be detachably connected to the cup body 2 or the cover 1 or the movable part 3 by screw connection, lock buckle connection or the like. When the cup body 2 needs to be filled with water, the user can detach the container 4 to pour the liquid in the container 4 into the cup body 2. In addition, the container 4 can be fixedly connected to the bottom of the cup body 2 or the top of the cover 1 by welding or bonding. When the cup body 2 needs to be filled with water, a small water pumping device is used to directly deliver the water in the container 4 into the cup body 2.
[0160] Further, the container 4 can be a container with a small capacity for matching the liquid to be drunk, for example, a container with a capacity of 50ml, 100ml, 150ml or the like. It is referred to Figure 17For example, the cup can be a tea cup with a capacity of 30 ml, 40 ml, 50 ml, etc. The container 4 can be detachably connected to the cup body 2 or the cover body 1 or the movable piece 3 by screwing, latching, or the like. After the user brews the tea or other beverage by using the cup, the container 4 can be used to hold the brewed beverage, so that the user can drink the beverage.
[0161] It should be noted that the cup can include a container 4 for storing liquid and a container 4 for drinking liquid. The two containers 4 can be respectively arranged at the bottom of the cup body 2 and the top of the cover body 1 and connected to the movable piece 3 or the cup body 2 or the cover body 1. Alternatively, the two containers 4 can be connected to each other, and one of the containers 4 is connected to the cup body 2 or the cover body 1 or the movable piece 3. The cup can also include at least two containers 4 for storing liquid or at least two containers 4 for drinking liquid. The specific design can be adjusted according to the use, which is not described here.
[0162] In some embodiments, the container 4 can have a double-layer structure, as shown in Figure 17 That is, the container 4 includes an outer shell 42 and a holding piece 43 arranged at least partially inside the outer shell 42. The holding piece 43 is made of ceramic or glass material, and the outer shell 42 is made of anti-falling material, such as plastic or metal. The container 4 made of titanium, ceramic or glass can avoid the metal taste of the liquid and improve the taste of the prepared beverage. The outer anti-falling material can well protect the inner ceramic and glass, avoiding damage to the holding piece 43 of the container 4. In addition, since the brewed beverage is generally high in temperature, the double-layer structure can reduce the heat conduction efficiency, thereby being more suitable for user to hold.
[0163] Further, the container 4 further includes a lid 41, as shown in Figure 17 The lid can be used to close the container 4, reducing the entry of dust or other foreign matter into the container 4 and ensuring hygiene. The lid 41 can have a single-layer structure or a double-layer structure. When the lid 41 has a double-layer structure, the inner layer of the lid 41 is ceramic or glass, and the outer layer of the container 4 is anti-falling material.
[0164] Embodiment Two
[0165] To solve the technical problems in the above background art, the utility model embodiment two discloses a cup, as shown in Figures 24-26The cup comprises a cover body 1, a cup body 2, a movable element 3 and at least one flow port 6; the cover body 1 is connectable with the cup body 2 and can be arranged on the cup body 2; the at least one flow port 6 is formed on a top surface of the cover body 1; at least a part of the movable element 3 is connected to the cover body 1, and at least a part of the movable element 3 is outside the cover body 1; at least one first avoiding part 31 is formed on the movable element 3; the movable element 3 is switchable between a first position and a second position relative to the cover body 1; when the movable element 3 is located at the first position, at least one of the flow ports 6 is respectively aligned with positions of two of the first avoiding parts 31, so that the at least one of the flow ports 6 is respectively communicated with one of the first avoiding parts 31, thereby enabling liquid in the cup to flow out through the one of the flow ports 6 and the one of the first avoiding parts 31 in sequence; when the movable element 3 is located at the second position, the movable element 3 seals all the flow ports 6; when the cover body 1 is arranged on the cup body 2 and the movable element 3 is located at the second position, a sealed space can be formed in the cup.
[0166] The cup of the second embodiment of the present application can achieve the same technical effects as the cup of the first embodiment of the present application, and has the effects of reducing operation difficulty and improving practicability, and is also applicable to brewing beverages; in addition, the flow port 6 is arranged on the top surface of the cover body 1, so that the operation of pouring water from the cup is more in line with daily operation habits, and it is more convenient for a user to control the water output and water speed, and it is also convenient for the user to directly drink the liquid in the cup through the flow port 6, thereby meeting different needs of the user and improving the use experience of the user.
[0167] In some embodiments, at least a part of the movable element 3 is connected to the cup body 2; or, at least a part of the movable element 3 is connected to the cup body 2 and the cover body 1; and at least a part of the movable element 3 is located outside the cover body 1 and / or the cup body 2, so as to be operated by the user. The movable element 3 only needs to be capable of switching positions, so as to switch the flow ports between the open state and the sealed state, and the connection mode of the movable element 3 and the cup is not limited herein.
[0168] The specific structure of the cup of the second embodiment of the present application can refer to the design of the cup of the first embodiment of the present application, and will not be repeated herein.
[0169] Embodiment three
[0170] In order to solve the technical problems in the background art, the third embodiment of the present application discloses a cup, which refers to Figures 27-31The cup comprises a cover 1, a cup body 2, a movable element 3, and at least one flow port 6; the cover 1 is connectable with the cup body 2 and is capable of being arranged on the cup body 2; the at least one flow port 6 is formed on the side of the cup body 2; at least a part of the movable element 3 is connected to the cup body 2, and at least a part of the movable element 3 is outside the cup body 2; the movable element 3 is provided with at least one first avoiding part 31; the movable element 3 is switchable between a first position and a second position relative to the cup body 2; when the movable element 3 is located at the first position, at least one of the flow ports 6 is aligned with the position of at least one of the first avoiding parts 31, so that the at least one of the flow ports 6 is in communication with the at least one of the first avoiding parts 31, thereby enabling the liquid in the cup to flow out through the at least one of the flow ports 6 and the at least one of the first avoiding parts 31; when the movable element 3 is located at the second position, the movable element 3 seals all the flow ports 6; when the cover 1 is arranged on the cup body 2 and the movable element 3 is located at the second position, a sealed space is formed in the cup.
[0171] The cup of the third embodiment of the present application can achieve the same technical effects as the cup of the first embodiment of the present application, and has the effects of reducing operation difficulty and improving practicability, and is also applicable to brewing beverages.
[0172] In some embodiments, at least a part of the movable element 3 is connected to the cover 1, or at least a part of the movable element 3 is connected to the cup body 2 and the cover 1; and at least a part of the movable element 3 is located outside the cover 1 and / or the cup body 2, so as to enable a user to operate the movable element 3. The movable element 3 only needs to be capable of switching positions, thereby enabling the flow ports to switch between the open state and the sealed state, and the connection mode of the movable element 3 and the cup is not limited herein.
[0173] It should be noted that when the cover also has the function of a container, the cup of the third embodiment of the present application can be understood as using the cup of the first embodiment of the present application in reverse, i.e., using the cover of the first embodiment of the present application as the cup body of the third embodiment of the present application, and using the cup body of the first embodiment of the present application as the cover of the third embodiment of the present application; therefore, the connection design of the cup body 2 and the cover 1, the connection design of the cup body 2 and the movable element 3, the connection design of the inner cover 12 and the cover shell 11, and the connection design of the inner cup 22 and the cup shell 21 in the third embodiment of the present application can all refer to the design of the cup of the first embodiment of the present application, and the detailed structure is not described herein.
[0174] In some embodiments, the outer side of the cup 2 is formed with a hinge part 26 for connecting with the cover 1 and a connecting part 27 for mounting the lock assembly 9, the hinge part 26 and / or the connecting part 27 can be the first limiting part 111, the movable piece 3 is provided with an avoiding gap 33 at the position corresponding to the hinge part 26 and the connecting part 27, and at least one side wall of the avoiding gap 33 forms the movable part 32, when the side wall of the avoiding gap 33 is in contact with the hinge part 26 and / or the connecting part 27, the movable piece 3 is located at the first position or at the second position.
[0175] In some embodiments, the stopper 14 can be made of ceramic or glass material and is integrally formed with the inner cup 22, the stopper 14 is formed at the flow port 6, the inner chamber of the inner cup 22 is communicated with the flow port 6 through the discharge part 141 arranged on the stopper 14, so that the liquid in the cup can be discharged along the flow port 6. This design is simple in structure, low in material consumption, and can effectively reduce the production cost of the cup.
[0176] As a variant of the third embodiment of the utility model, the flow port 6 can be arranged at the bottom of the cup body 2, and other structures are adaptively adjusted, so that the same technical effects of reducing operation difficulty, improving practicability and reasonably improving the capacity of the cup can be achieved. For specific structures, reference can be made to the variant design between the first embodiment and the second embodiment of the utility model, and details are not repeated here.
[0177] Embodiment four
[0178] In order to solve the technical problems in the background art, the fourth embodiment of the utility model discloses a cup, which refers to Figures 32-34 The cup comprises a cover 1, a cup body 2, a movable piece 3 and at least one flow port 6; the cover 1 can be connected with the cup body 2 and can be arranged on the cup body 2; the at least one flow port 6 is formed at the top of the cup body 2; at least a part of the movable piece 3 is connected to the cup body 2, the movable piece 3 is formed with at least one first avoiding part 31, and the movable piece 3 can be switched between the first position and the second position relative to the cup body 2; when the movable piece 3 is located at the first position, at least one of the flow ports 6 is respectively aligned with the position of at least one of the first avoiding parts 31, so that at least one of the flow ports 6 is respectively communicated with at least one of the first avoiding parts 31, thereby enabling the liquid in the cup to flow out through one of the flow ports 6 and one of the first avoiding parts 31; when the movable piece 3 is located at the second position, the movable piece 3 seals all the flow ports 6; when the cover 1 is arranged on the cup body 2 and the movable piece 3 is located at the second position, a sealed space can be formed in the cup.
[0179] The cup of the fourth embodiment of the utility model can achieve the same technical effects as the cup of the first embodiment of the utility model, and has the effects of reducing operation difficulty and improving practicability, and is also applicable to brewing beverages.
[0180] The other structures of the cup in the fourth embodiment of the present application can be adjusted adaptively according to the design of any one of the cups in the first to third embodiments of the present application, and will not be described herein.
[0181] In some embodiments, the diameter of the cover 1 is smaller than the diameter of the cup 2, and the top of the cup 2 is provided with an opening matched with the cover 1, and the flow port 6 is arranged at a position outside the opening on the top of the cup 2.
[0182] In some embodiments, at least a part of the movable member 3 is connected to the cover 1, or at least a part of the movable member 3 is connected to the cup 2 and the cover 1; and at least a part of the movable member 3 is arranged outside the cover 1 and / or the cup 2, so as to be operated by the user. The movable member 3 only needs to be capable of switching positions, so as to switch the flow port between the open state and the sealed state, and the connection mode of the movable member 3 and the cup is not limited herein.
[0183] In some embodiments, the sealing member 71 is connected to the movable member 3, and at least a part of the sealing member 71 forms at least a part of the first avoiding part 31; it can be understood that the movable member 3 is generally made of plastic, and the sealing member 71 is made of food-grade silica gel, and through this design, the contact between the liquid and the movable member 3 can be reduced or avoided when the liquid is poured out, so as to maximize the retention of the original flavor of the liquid.
[0184] As a variant of the fourth embodiment of the present application, when the diameter of the cover 1 is greater than the diameter of the cup 2, the flow port 6 can be formed at the bottom of the cover 1, and other structures are adaptively modified according to other embodiments of the present application.
[0185] Embodiment five
[0186] In order to solve the technical problems in the background art, the fifth embodiment of the present application discloses a cup, which is characterized in that Figures 35-40The cup comprises a cover 1, a cup body 2, a movable element 3, and at least one flow port 6; the cover 1 is connectable with the cup body 2 and is capable of being arranged on the cup body 2; the at least one flow port 6 is formed at the joint of the cover 1 and the cup body 2; at least a part of the movable element 3 is connected to the cup body 2, and at least a part of the movable element 3 is located outside the cup body 2; at least one first avoiding part 31 is formed on the movable element 3; the movable element 3 is switchable between a first position and a second position relative to the cup body 2; when the movable element 3 is located at the first position, at least one of the flow ports 6 is aligned with at least one of the first avoiding parts 31, so that the at least one of the flow ports 6 is in communication with the at least one of the first avoiding parts 31, thereby enabling the liquid in the cup to flow out through the at least one of the flow ports 6 and the at least one of the first avoiding parts 31; when the movable element 3 is located at the second position, the movable element 3 seals all the flow ports 6; when the cover 1 is arranged on the cup body 2 and the movable element 3 is located at the second position, a sealed space is formed in the cup.
[0187] The cup of the fifth embodiment of the present application can achieve the same technical effects as the cup of the first embodiment of the present application, and has the effects of reducing operation difficulty and improving practicability, and is also applicable to brewing beverages.
[0188] In some embodiments, a first gap 19 is formed on the cover 1, and a second gap 28 is formed on the cup body 2, as shown in Figs. 1 and 2. Figures 37-39 When the cover 1 is arranged on the cup body 2, the first gap 19 and the second gap 28 combine to form the flow port 6; in this design, a part of the movable element 3 is located at the cover 1, so that when the movable element 3 is located at the second position, the movable element 3 can seal the first gap 19 and the second gap 28; wherein a second accommodating part 20 can be formed on the cover 1, and a part of the movable element 3 is located in the second accommodating part 20, so that the appearance of the cup is more beautiful. It can be understood that when the cup comprises a sealing element 71, a second flow port 62 formed by the sealing element 71 can be in communication with a first flow port 61 formed by the combination of the first gap 19 and the second gap 28 when the cover 1 is arranged on the cup body 2; the sealing element 71 can be mounted on the cover 1 or the cup body 2, and the sealing element 71 can also be divided into two parts and mounted on the cover 1 and the cup body 2 respectively, which is not limited herein.
[0189] Further, the movable element 3 can also be movably connected to the cover 1, and a part of the movable element 3 is located at the cup body 2, so that when the movable element 3 is located at the second position, the movable element 3 can seal the first gap 19 and the second gap 28. In addition, the movable element 3 can also be connected to both the cover 1 and the cup body 2, and only needs to enable the movable element 3 to seal the flow port 6 when the movable element 3 is located at the second position, which is not limited herein.
[0190] In some embodiments, the cover 1 is formed with a first notch 19, and the first notch 19 and the top surface of the cup body 2 combine to form the flow port 6; in this design, when the movable part 3 is connected to the cover 1, the movable part 3 can not be arranged to be partially located at the cup body 2, so that the overall structure of the cup is simpler.
[0191] In some embodiments, the cup body 2 is formed with a second notch 28, and the second notch 28 and the bottom surface of the cover 1 combine to form the flow port 6; in this design, when the movable part 3 is connected to the cup body 2, the movable part 3 can not be arranged to be partially located at the cover 1, so that the overall structure of the cup is simpler.
[0192] The other structures of the cup in the fifth embodiment of the utility model can be adaptively adjusted according to the design of any one of the cup in the first embodiment to the fourth embodiment of the utility model, and will not be repeated here.
[0193] The above is only the preferred embodiment of the utility model, and the structure is not limited to the shape listed above, and any modification, equivalent replacement and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A cup characterized in that, The cup includes: a cover body; a cup body, the cover body being connectable with the cup body and being capable of being placed on the cup body; at least one flow port, the flow port being located on a side surface of the cover body, a top surface of the cover body, a bottom surface of the cover body, a side surface of the cup body, a top surface of the cup body, a bottom surface of the cup body, or a joint of the cover body and the cup body; a movable member, at least a part of the movable member being connected to the cover body and / or the cup body, and at least a part of the movable member being outside the cover body and / or the cup body, at least one first avoiding part being formed on the movable member, the movable member being switchable between a first position and a second position relative to the cover body or the cup body; a second positioning assembly; and a decoration member, the decoration member being formed with at least one second avoiding part, at least a part of the decoration member covering at least a part of an outer surface of the cover body and / or the cup body when the decoration member is connected to the cover body and / or the cup body, the second positioning assembly being used to realize alignment of the at least one second avoiding part with the at least one flow port; or, at least a part of the decoration member covering at least a part of an outer surface of the movable member when the decoration member is connected to the movable member, the second positioning assembly being used to realize alignment of the at least one second avoiding part with the at least one first avoiding part; when the movable member is in the first position, at least one of the flow ports is aligned with the position of one of the first avoiding parts, so that the at least one flow port and one of the first avoiding parts are in communication, thereby enabling liquid in the cup to flow out through one of the flow ports and one of the first avoiding parts in sequence; when the movable member is in the second position, at least a part of the movable member is capable of sealing the flow ports; when the cover body is placed on the cup body and the movable member is in the second position, a sealed space can be formed inside the cup. The decoration member is made of metal.
2. The cup of claim 1, wherein The second positioning assembly includes a sixth positioning part formed on the decoration member and a seventh positioning part formed on the cover body and / or the cup body, the sixth positioning part and the seventh positioning part being capable of being combined with each other to limit axial rotation of the decoration member and the cover body and / or the cup body, so that the decoration member and the cover body and / or the cup body will not axially rotate when being fixedly connected by interference fit to a predetermined position, and alignment of the at least one second avoiding part with the at least one flow port is realized; 3. The cup of claim 1, wherein and / or, The second positioning assembly includes a sixth positioning part formed on the decoration member and a seventh positioning part formed on the movable member, the sixth positioning part and the seventh positioning part being capable of being combined with each other to limit axial rotation of the decoration member and the movable member, so that the decoration member and the movable member will not axially rotate when being fixedly connected by interference fit to a predetermined position, and alignment of the at least one second avoiding part with the at least one first avoiding part is realized. The decoration member includes a top surface and a side surface, and the sixth positioning part is formed on the top surface of the decoration member.
4. The cup of claim 3, wherein The cover and the cup include a top surface and a side surface, and the seventh positioning part is formed on the top surface of the cover and / or the cup when the seventh positioning part is formed on the cover and / or the cup. The movable part includes a top surface and a side surface, and the seventh positioning part is formed on the top surface of the movable part when the seventh positioning part is formed on the movable part.
5. The cup of claim 1, wherein The second positioning assembly includes a third mounting part formed on the decoration part, a fourth mounting part formed on the cover and / or the cup, a limiting part and a locking part, at least a part of the decoration part and at least a part of the cover are located between the limiting part and the locking part, and / or at least a part of the decoration part and at least a part of the cup are located between the limiting part and the locking part, a part of the limiting part and / or a part of the locking part are arranged in the third mounting part and the fourth mounting part, and the limiting part and the locking part are fixedly connected to realize alignment of at least one second avoiding part with at least one flow port and fixed connection of the decoration part with the movable part; and / or, The second positioning assembly includes a third mounting part formed on the decoration part, a fourth mounting part formed on the movable part, a limiting part and a locking part, at least a part of the decoration part and at least a part of the movable part are located between the limiting part and the locking part, a part of the limiting part and / or a part of the locking part are arranged in the third mounting part and the fourth mounting part, and the limiting part and the locking part are fixedly connected to realize alignment of at least one second avoiding part with at least one first avoiding part and fixed connection of the decoration part with the movable part.
6. The cup of claim 1, wherein It includes: At least one air hole is used to balance the air pressure inside and outside the cup.
7. The cup according to claim 6, wherein, When the movable part is located at the second position, the movable part abuts against at least a part of the sealing part to seal the air hole; And / or, the air hole is composed of the flow port.
8. The cup of claim 1, wherein The number of the flow port, the first avoiding part and the second avoiding part is at least two respectively, and at least two flow ports correspond to at least two first avoiding parts and at least two second avoiding parts respectively.
9. The cup of claim 8, wherein, At least two flow ports are distributed on a cross section passing through the cup axis, at least two first avoiding parts are formed on the movable part with an angle of 180°, and at least two first avoiding parts are on the same horizontal line and correspond to the positions of at least two flow ports.
10. The cup of claim 1, wherein The first avoiding part is a hole passing through the inner and outer surfaces of the movable part; and / or, when the movable part is located at the second position, at least a part of the movable part abuts against from the outside to seal the flow port.
11. The cup of claim 1, wherein The movable part is rotatably connected to the cover and / or the cup; and / or, the movable part is slidably connected to the cover and / or the cup and abuts against the outer surface of the cover and / or the cup.
12. The cup of claim 11, wherein, The movable part rotates around the central axis of the cover or cup between the first position and the second position.
13. The cup of claim 1, wherein The movable part is formed with a movable portion, and the cover is formed with at least one first limiting portion, and the movable portion is used in cooperation with the at least one first limiting portion.
14. The cup of claim 13, wherein, When the movable portion abuts against the first limiting portion, the movable part is located at the first position.
15. The cup of claim 1, wherein, The cover and / or the cup further comprises a first sealing portion; When the cover is connected with the cup and the cover is covered on the cup, at least a part of the first sealing portion is used to limit the liquid in the cup from flowing out through the joint between the cover and the cup.
16. The cup of claim 1, wherein Further comprising: A foolproof assembly is used to accurately move the movable part relative to the cover and increase the friction.
17. The cup of claim 16, wherein The foolproof assembly comprises a first elastic portion and at least one first protrusion; The first elastic portion is formed on the movable part, and at least one first protrusion is distributed on the cover, and when the movable part moves relative to the cover, the first elastic portion can pass over at least one first protrusion; or, The first elastic portion is formed on the cover, and at least one first protrusion is distributed on the movable part, and when the movable part moves relative to the cover, the first elastic portion can pass over at least one first protrusion.
18. The cup of claim 1, wherein The cover and / or the cup is made of titanium material, or the inner side of the cover and / or the cup is made of titanium material or ceramic material or glass material.
19. The cup of claim 1, wherein The top of the cup is provided with a support portion protruding inwardly; when the cover is covered on the cup, the cover abuts against the support portion; and / or, The bottom of the cover is provided with a support portion protruding inwardly; when the cover is covered on the cup, the cup abuts against the support portion.
20. The cup of claim 19, wherein, The top surface and / or the bottom surface of the support portion is arc-shaped or inclined.
21. The cup of claim 1, wherein The bottom of the cup and / or the top of the cover and / or the top of the movable part is connected with a container for storing and / or drinking liquid.
22. The cup of claim 21, wherein The container is double-layered; the inner layer of the container is ceramic or glass, and the outer layer of the container is anti-falling material.
23. The cup of claim 22, wherein, The container further comprises a lid, which is single-layered or double-layered; When the lid is double-layered, the inner layer of the lid is ceramic or glass, and the outer layer of the lid is anti-falling material.
Citation Information
Patent Citations
Beverage cup and closure thereof
CN114786541A
Novel cup
CN202269797U
Vacuum cup cover
CN203693165U