Liquid container
Patent Information
- Application Number
- CN202522116308.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-30
AI Technical Summary
[0003]本实用新型的目的在于解决泵体和盖体表面的液体容易对其他物体造成污染的问题,为此提供了液体容器,能够有效降低泵体和盖体表面的液体附着于其他物体的可能性,更加卫生、清洁
本实用新型中所述盖体与座体铰接,当需要注液而打开盖体时,使盖体相对座体转动以达到第二状态,在盖体的转动过程中,泵体随着盖体一同脱离容置腔,并且在第二状态下,盖体整体倒置使泵体裸露在外的部分处于盖体的上方,泵体表面残留的液体在重力的作用下会流入到盖体上,盖体能够起到液体收集的作用,盖体表面的液体几乎不会滴落到其他物体上,进而能够显著降低泵体表面残留的液体污染其他物体的可能性;另外所述盖体与座体铰接,当盖体处于第二状态时,盖体依然挂在座体上,不需要放置于其他物体上,因此盖体不会与其他物体发生接触,盖体表面残留的油渍也不容易附着到其他物体上,能够最大程度的降低液体和油渍对其他物体的污染,使液体容器的适用更加卫生、清洁,能够显著提高用户的使用体验;其次当注液完成后,将盖体转动至第一状态后,盖体盖装于座体上,此时盖体在第二状态下收集的液体会回落至容置腔内,进而能够减少液体的浪费;另外所述避让缺口可以确保泵体能够与吸管完成对接,避免衔接件干涉泵体的活动;另外避让缺口能够使衔接件与容置腔保持连通,确保衔接件内的液体能够顺利回流至容置腔内,减少泵体外表面附着的液体量。
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Figure CN224727474U_ABST
Abstract
Description
Technical Field
[0001] This utility model demonstrates a liquid container and belongs to the field of daily necessities technology. Background Technology
[0002] Oil dispensers are essential daily necessities. For example, patent CN223083025U discloses a liquid container in which the pump body and straw are separate structures. The pump body is connected to the cover, and the straw is connected to the base. When the base is empty and needs to be filled, the cover and base are separated, and the pump body detaches from the base along with the cover, while the straw remains inside the base. Although the overall length of the pump body in the above patent is relatively short, some oil will still remain on the pump body. When the cover is placed on its side on a table, the oil on the pump body will still drip onto the table and adhere to other objects. In addition, during daily use, some oil stains will also remain on the surface of the cover. When the cover is placed on a table, the oil stains on the surface of the cover can easily adhere to other objects, thus causing a certain degree of pollution. Summary of the Invention
[0003] The purpose of this invention is to solve the problem that liquid on the surface of the pump body and cover can easily contaminate other objects. To this end, a liquid container is provided that can effectively reduce the possibility of liquid adhering to other objects on the surface of the pump body and cover, making it more hygienic and clean.
[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: Liquid containers, including: A seat having a accommodating cavity for storing liquid and an open top; A straw is disposed within the accommodating cavity and has a first liquid outlet channel passing through it; The cover is hinged to the base and has a first state of closing the accommodating cavity and a second state of opening the accommodating cavity. The cover rotates relative to the base to switch states. The pump body is disposed on the cover and has a second liquid outlet channel passing through it; The connector includes a connecting seat connected to the base and a connector for the positioning suction tube, wherein the connecting seat is provided with a clearance notch for avoiding the movement trajectory of the pump body; When the cover is in the first state, the pump body is connected to the suction tube, and the first liquid outlet channel is connected to the second liquid outlet channel; when the cover is in the second state, the pump body disengages from the accommodating cavity to disconnect the suction tube, and the first liquid outlet channel is disconnected from the second liquid outlet channel.
[0005] The beneficial effects of using this utility model are: In this invention, the cover and the base are hinged. When the cover is opened for liquid injection, it rotates relative to the base to reach a second state. During this rotation, the pump body detaches from the receiving cavity along with the cover. In the second state, the cover is inverted, placing the exposed portion of the pump body above it. Residual liquid on the pump body surface flows onto the cover under gravity, allowing the cover to collect the liquid. Liquid on the cover surface is unlikely to drip onto other objects, significantly reducing the possibility of residual liquid contaminating other surfaces. Furthermore, since the cover is hinged to the base, in the second state, the cover remains attached to the base and does not need to be placed on other objects; therefore, the cover will not interfere with its own operation. When the liquid comes into contact with other objects, the residual oil on the surface of the cover is less likely to adhere to other objects, minimizing the contamination of other objects by liquid and oil, making the liquid container more hygienic and clean, and significantly improving the user experience. Secondly, after the liquid is filled, when the cover is rotated to the first state, it is placed on the base. At this time, the liquid collected by the cover in the second state will fall back into the receiving cavity, thereby reducing liquid waste. In addition, the clearance notch ensures that the pump body can be connected with the suction tube, avoiding interference of the connector with the pump body's movement. Furthermore, the clearance notch keeps the connector connected to the receiving cavity, ensuring that the liquid in the connector can flow back smoothly into the receiving cavity, reducing the amount of liquid adhering to the outer surface of the pump body.
[0006] Preferably, the connector has a through hole communicating with the first liquid outlet channel. When the cover is in the first state, the second liquid outlet channel communicates with the first liquid outlet channel through the through hole. Using the aforementioned technical solution, the connector can position the suction tube, facilitating the docking of the pump body and the suction tube, reducing the difficulty of docking the pump body and the suction tube, and thus effectively improving the success rate of docking the pump body and the suction tube.
[0007] Preferably, the connector includes a connecting seat connected to the base and a connector head that inserts into one end of the straw. The connecting seat includes a side wall and a bottom wall, the clearance notch is provided in the side wall, and the through hole is provided in the connector head and extends to the bottom wall. Using the aforementioned technical solution, the bottom wall can provide a larger contact area for docking the pump body, further reducing the difficulty of docking the pump body and the straw, and improving the success rate of docking the pump body and the straw.
[0008] Preferably, the liquid container further includes a sealing element for forming a sealing fit between the through hole and the first liquid outlet channel in the first state. Using the aforementioned technical solution, the sealing element enables the through hole, the first liquid outlet channel, and the second liquid outlet channel to form a reliable channel for liquid flow, which helps to improve the liquid suction effect of the suction tube and the pump body.
[0009] Preferably, the second liquid outlet channel forms a second liquid inlet at the bottom of the pump body, and the sealing element is disposed at the second liquid inlet of the pump body. In the first state of the cover, the sealing element is in a sealing fit with the bottom wall. Using the aforementioned technical solution, the pump body abuts against the bottom wall through the sealing element. During the rotation of the pump body with the cover, the flexibility of the sealing element itself can reduce the impact force on the bottom wall, reducing the possibility of damage to the bottom wall and the pump body. Furthermore, utilizing the deformation properties of the sealing element can prevent the pump body from failing to connect properly due to interference from the bottom wall during the docking process. The sealing element can effectively improve the success rate of docking between the pump body and the suction pipe.
[0010] Preferably, the bottom of the seal is provided with a guide surface. In the first state of the cover, the guide surface is located on the side of the seal away from the avoidance notch, and the guide surface gradually moves away from the side wall from top to bottom. Using the aforementioned technical solution, during the process of the cover switching from the second state to the first state, the pump body and the seal gradually move into the connector in an inclined state. The guide surface at the bottom of the seal will preferentially contact the bottom wall, and the guide surface can play a guiding role, so that the pump body can be properly aligned, preventing the seal from jamming with the bottom wall. This effectively reduces the difficulty of aligning the pump body and the suction pipe, and improves the success rate of alignment.
[0011] Preferably, the bottom end of the seal forms a guide ring, the outer diameter of which gradually increases from bottom to top. In the first state of the cover, the bottom surface of the guide ring abuts against the bottom wall of the connecting seat. Using the aforementioned technical solution, the outer periphery of the guide ring has a structure that is wider at the top and narrower at the bottom. This structure makes the outer periphery of the guide ring equivalent to the aforementioned guide surface, which can also guide the seal to its proper position, reducing the difficulty of connecting the pump body and the suction pipe.
[0012] Preferably, the two liquid outlet channels form a second liquid inlet at the bottom of the pump body, and the sealing element is disposed on the bottom wall. In the first state of the cover, the second liquid inlet is directly opposite the through hole and is sealed with the sealing element.
[0013] Preferably, the base includes a bottle body with the accommodating cavity and an intermediate seat connected to the bottle body. The connecting member is disposed on the inner side of the intermediate seat, and the intermediate seat and the cap are hinged together by a hinge portion. The clearance notch is disposed on the side of the connecting member facing away from the hinge portion. Using the aforementioned technical solution, the bottle body and the intermediate seat are separate structures, which allows the choice of bottle material to be unaffected by the structure of the connecting member, enabling the base to have more diverse designs and helping to broaden its target audience. Furthermore, the separate structure of the bottle body and the intermediate seat avoids interference between the connecting member and the opening of the accommodating cavity, facilitating bottle cleaning.
[0014] Preferably, the outer wall of the intermediate seat has a gripping portion, and the connecting member is located in the middle of the inner side of the intermediate seat, with an angle formed between the hinge portion and the gripping portion; or, the connecting member is located on the inner side of the intermediate seat and close to the gripping portion, with a circumferential angle between the hinge portion and the gripping portion not exceeding 90 degrees. By adopting the aforementioned technical solution, placing the connecting member in the middle of the intermediate seat increases the distance between the connecting member and the edge of the intermediate seat, preventing the edge of the intermediate seat from interfering with the movement of the pump body and ensuring that the pump body can smoothly enter and exit the receiving cavity. When the connecting member is close to the gripping portion, the closer the bottom end of the pump body is to the gripping portion during movement, the smaller the pump body's disengagement space becomes. Since the circumferential angle between the hinge portion and the gripping portion is not greater than 90 degrees, it ensures that the pump body has sufficient disengagement space. Furthermore, the angle formed between the hinge portion and the gripping portion prevents the gripping portion from interfering with the rotation of the cover, ensuring that the cover can be fully opened and preventing the cover from automatically closing onto the seat.
[0015] Preferably, the cover is provided with a baffle for closing the accommodating cavity, the pump body is disposed on the baffle, the baffle has a drain port, and the edge of the drain port has a baffle rib protruding downward from the baffle. Using the aforementioned technical solution, in the second state of the cover, liquid on the surface of the pump body flows into the baffle, while the baffle rib prevents liquid from flowing into the drain port, improving the liquid collection effect of the cover and further reducing the possibility of liquid contaminating other objects.
[0016] Other features and advantages of this utility model will be disclosed in detail in the following specific embodiments and accompanying drawings. Attached Figure Description
[0017] The present invention will be further described below with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the structure of the liquid container of this utility model; Figure 2 This is a view of the liquid container of the present invention during the transition of the cover from the first state to the second state. Figure 3 This is a view of the lid of the liquid container of this utility model in a second state; Figure 4 This is a cross-sectional view of the liquid container of this utility model; Figure 5 for Figure 4 A magnified view of part A in the middle; Figure 6 This is a schematic diagram of the structure of the intermediate seat of the liquid container of this utility model; Figure 7 This is a top view of the intermediate seat of the liquid container of this utility model; Figure 8 This is a schematic diagram of the structure of the cover body in the liquid container of this utility model; Figure 9 This is a cross-sectional view and a partially enlarged view of the sealing element in the liquid container of this utility model.
[0018] Reference numerals: 10, liquid container; 1, base; 11, bottle body; 111, accommodating cavity; 12, intermediate seat; 121, gripping part; 13, connector; 131, connecting seat; 1311, side wall; 1312, bottom wall; 132, connector head; 1321, through hole; 2, cover; 21, pressing part; 22, baffle; 221, pouring port; 222, baffle rib; 3, straw; 31, first liquid inlet; 32, first liquid outlet; 14, sealing element; 141, guide surface; 4, pump body; 41, second liquid inlet; 5, hinge. Detailed Implementation
[0019] The technical solutions of the present utility model will be explained and described below with reference to the accompanying drawings. However, the following embodiments are only preferred embodiments of the present utility model and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments in the implementation methods without creative effort are all within the protection scope of the present utility model.
[0020] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0021] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise expressly defined.
[0022] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0023] like Figures 1 to 9 As shown in the figure, this embodiment illustrates a liquid container 10, including a base 1, a cover 2, a straw 3, a connector 13, and a pump body 4. The base 1 has a accommodating cavity 111 for storing liquid and is open at the top. The base 1 can be a jug, bottle, etc., and its form is not limited. The stored liquid can be water, oil, etc. The cover 2 is hinged to the base 1. The cover 2 has a first state where it is engaged with the base 1 to close the accommodating cavity 111, and a second state where it is disengaged from the base 1 to open the accommodating cavity 111. The cover 2 remains connected to the base 1 throughout the state switching process. It should be noted that in the first state of the cover 2, the cover 2 and the base 1 are connected by a snap-fit engagement, and after the cover 2 and the base 1 are snapped together, a sealing fit is formed at the connection between the cover 2 and the base 1 to prevent the liquid in the accommodating cavity 111 from leaking from the connection between the cover 2 and the base 1. The snap-fit engagement between the cover 2 and the base 1 can be achieved using existing technology.
[0024] like Figure 4 and Figure 5 As shown, in this embodiment, the straw 3 has a first liquid inlet 31 and a first liquid outlet 32 at both ends. A first liquid outlet channel is formed between the first liquid inlet 31 and the first liquid outlet 32. The straw 3 is fixed in the accommodating cavity 111. The end of the straw 3 where the first liquid inlet 31 is located extends to the bottom of the accommodating cavity 111, and the end of the straw 3 where the first liquid outlet 32 is located is the highest position of the straw 3. It should be noted that the first liquid outlet 32 of the straw 3 can be located in the accommodating cavity 111 or it can be an open opening extending out of the base 1.
[0025] like Figure 8As shown, in this embodiment, the pump body 4 is disposed on the cover 2. The pump body 4 has a second inlet 41, a second outlet 32, and a second outlet channel extending between the second inlet 41 and the second outlet. The second inlet 41 is formed at the bottom end of the pump body 4. When the cover 2 is in the first state, the second inlet 41 is connected to the first outlet 32 to keep the first outlet channel and the second outlet channel connected, so that the spraying operation can be performed normally. When the cover 2 is in the second state, the pump body 4 is disengaged from the receiving cavity 111 as the cover 2 rotates. At this time, the second inlet 41 is disengaged from the first outlet 32 to disconnect the first outlet channel and the second outlet channel from each other. It should be noted that the connection between the second inlet 41 and the first outlet 32 can be direct or indirect. Indirect connection means that a new channel can be established between the first outlet 32 and the second inlet 41 to connect the first outlet channel and the second outlet channel.
[0026] When liquid needs to be injected and the cap 2 is opened, the cap 2 is rotated relative to the seat 1 to achieve the second state, such as... Figure 3 As shown, during the rotation of the cover 2, the pump body 4 detaches from the receiving cavity 111 along with the cover 2. In the second state, the cover 2 is inverted, so the exposed part of the pump body 4 is above the cover 2. The liquid remaining on the surface of the pump body 4 will flow onto the cover 2 under the action of gravity. The cover 2 can play the role of liquid collection, and the liquid on the surface of the cover 2 will hardly drip onto other objects, thus significantly reducing the possibility of liquid remaining on the surface of the pump body 4 contaminating other objects. In addition, the cover 2 is hinged to the base 1. When the cover 2 is in the second state, the cover 2 is still hanging on the base 1 and does not need to be placed on other objects. Therefore, the cover 2 will not come into contact with other objects, and the oil stains remaining on the surface of the cover 2 are not easy to adhere to other objects. This can minimize the contamination of other objects by liquid and oil stains, making the liquid container 10 more hygienic and clean, and significantly improving the user experience. Secondly, after the liquid filling is completed, the cover 2 is rotated back to the first state, as shown in the figure. Figure 1 As shown, the cover 2 is installed on the base 1. At this time, the liquid collected by the cover 2 in the second state will fall back into the receiving cavity 111, thereby reducing the waste of liquid.
[0027] like Figure 2As shown, in this embodiment, the connector 13 is connected to the base 1 and located in the accommodating cavity 111. The straw 3 has a first liquid outlet 32, and the end of the first liquid outlet 32 is connected to the bottom end of the connector 13. The connector 13 can position the straw 3, which facilitates the docking of the pump body 4 and the straw 3, reduces the difficulty of docking the pump body 4 and the straw 3, and thus effectively improves the docking success rate of the pump body 4 and the straw 3. The side of the connector 13 is provided with a clearance notch to avoid the movement trajectory of the pump body 4. The clearance notch can ensure that the pump body 4 can dock with the straw 3 and avoid the connector 13 interfering with the movement of the pump body 4. In addition, the clearance notch can keep the connector 13 connected to the accommodating cavity 111, ensuring that the liquid in the connector 13 can flow back smoothly into the accommodating cavity 111 and reduce the amount of liquid adhering to the outer surface of the pump body 4.
[0028] In one embodiment, such as Figure 6 As shown, the connector 13 includes a connecting seat 131 and a connecting head 132. The connecting seat 131 is connected to the seat body 1. The connecting seat 131 includes a side wall 1311 and a bottom wall 1312. The side wall 1311 extends generally in a vertical direction. The bottom end of the side wall 1311 is connected to the bottom wall 1312, and the top end of the side wall 1311 is connected to the seat body 1. An avoidance notch is formed in the side wall 1311. The connecting head 132 is disposed on the lower side of the connecting seat 131. The connecting head 132 has a through hole 1321. The top end of the straw 3 extends from the connecting head 1311. The bottom end of 2 is inserted into the through hole 1321 so that the straw 3 and the connector 132 are connected. The top end of the through hole 1321 extends to the bottom wall 1312 of the connector 131. When the cover 2 is in the first state, the second liquid outlet channel is connected to the first liquid outlet channel through the through hole 1321. The bottom wall 1312 is used as the docking base surface of the first liquid outlet channel and the second liquid outlet channel, which can provide a larger contact area for docking of the pump body 4, further reduce the docking difficulty of the pump body 4 and the straw 3, and improve the docking success rate of the pump body 4 and the straw 3.
[0029] In one embodiment, such as Figure 5 As shown, the liquid container 10 also includes a sealing element 14. When the cover 2 is in the first state, the first liquid outlet channel and the second liquid outlet channel form a sealing fit through the sealing element 14. The sealing element 14 makes the through hole 1321, the first liquid outlet channel and the second liquid outlet channel form a reliable channel for liquid flow, which helps to improve the liquid suction effect of the suction tube 3 and the pump body 4.
[0030] Specifically, in this embodiment, the sealing element 14 is disposed at the second liquid inlet 41 of the pump body 4. In the first state of the cover 2, the sealing element 14 abuts against the bottom wall 1312 through deformation, thereby achieving a sealing fit between the sealing element 14 and the bottom wall 1312. The pump body 4 abuts against the bottom wall 1312 through the sealing element 14. During the rotation of the pump body 4 with the cover 2, the flexibility of the sealing element 14 itself can reduce the impact force on the bottom wall 1312, reducing the possibility of damage to the bottom wall 1312 and the pump body 4. In addition, by utilizing the deformation performance of the sealing element 14, it can prevent the pump body 4 from failing to be properly connected due to the interference of the bottom wall 1312 during the docking process. The sealing element 14 can effectively improve the docking success rate of the pump body 4 and the suction pipe 3.
[0031] In a preferred embodiment, such as Figure 9 As shown, the bottom of the seal 14 is provided with a guide surface 141. In the first state of the cover 2, the guide surface 141 is located on the side of the seal 14 away from the clearance notch, and the guide surface 141 gradually moves away from the side wall 1311 from top to bottom. During the process of switching the cover 2 from the second state to the first state, the pump body 4 and the seal 14 gradually rotate into the connector 13 in an inclined state. The guide surface 141 at the bottom of the seal 14 will preferentially contact the bottom wall 1312, and the guide surface 141 can play a guiding role so that the pump body 4 can be properly connected, preventing the seal 14 from getting stuck with the bottom wall 1312, effectively reducing the difficulty of connecting the pump body 4 and the suction pipe 3, and improving the success rate of connection. It should be noted that the guide surface 141 can be a plane or a curved surface.
[0032] In this specific embodiment, the bottom end of the sealing member 14 forms a guide ring, and the outer diameter of the guide ring gradually increases from bottom to top. In the first state of the cover body 2, the bottom end face of the guide ring abuts against the bottom wall 1312 of the connecting seat 131, and the outer peripheral side of the guide ring is the aforementioned guide surface 141, that is, the guide surface 141 is distributed in a ring at the bottom end of the sealing member 14.
[0033] It is understandable that, in other embodiments, the guide surface 141 may also be formed on the side of the seal 14 away from the clearance notch, rather than being distributed in a ring at the bottom of the seal 14.
[0034] It is understandable that in other embodiments, the sealing element 14 may also be laid on the bottom wall 1312 of the connecting seat 131. The sealing element 14 has an opening that avoids the through hole 1321. In the first state of the cover body 2, the bottom end of the pump body 4 abuts against the sealing element 14 and causes the sealing element 14 to deform. The second liquid inlet 41 is directly opposite the through hole 1321, thereby achieving a sealing fit between the second liquid inlet 41 and the through hole 1321. It should be noted that in this embodiment, the diameter of the second liquid inlet 41 is larger than the diameter of the through hole 1321.
[0035] In one embodiment, the base 1 includes a bottle body 11 and an intermediate base 12. The bottle body 11 has a receiving cavity 111, and a connector 13 is connected to the intermediate base 12. The bottle body 11 and the intermediate base 12 are detachably connected, meaning that the bottle body 11 and the intermediate base 12 are separate structures. This allows the material selection of the bottle body 11 to be independent of the structure of the connector 13, enabling the base 1 to have more diverse designs and helping to broaden its target audience. Furthermore, the separate structure of the bottle body 11 and the intermediate base 12 avoids interference between the connector 13 and the opening of the receiving cavity 111, facilitating the cleaning of the bottle body 11. It should be noted that the bottle body 11 and the intermediate base 12 can be connected detachably using a threaded connection, or they can be connected using a plug-in or snap-fit connection.
[0036] In this embodiment, the intermediate seat 12 and the cap 2 are hinged together by the hinge part 5. The clearance notch is provided on the side of the connector 13 facing away from the hinge part 5. In addition, the outer wall of the intermediate seat 12 is also provided with a grip part 121 to facilitate the user's grip on the bottle 11, making the spraying easier and less strenuous. The cap 2 is rotatably connected to a pressing member 21. One end of the pressing member 21 extends out of the surface of the cap 2 to form a pressing part. When the cap 2 is in the first state, the pressing part is directly above the grip part 121. When the user's hand holds the grip part 121, the user's thumb can directly press the pressing part, so that the user can operate with one hand, making the structure of the liquid container 10 more user-friendly and helping to improve the user's experience.
[0037] like Figure 7As shown, in this specific embodiment, the hinge 5 and the grip 121 form an angle in the circumferential direction of the seat 1. This prevents the grip 121 from interfering with the rotation of the cover 2, ensuring that the cover 2 can be fully opened and preventing the cover 2 from automatically closing onto the seat 1. It should be noted that in this embodiment, the connector 13 is located inside the intermediate seat 12 and close to the grip 121. To ensure that the pump body 4 has sufficient disengagement space, the circumferential angle between the hinge 5 and the grip 121 is no greater than 90 degrees. When the connector 13 is close to the grip 121, the closer the bottom end of the pump body 4 is to the grip 121 during the movement, the smaller the disengagement space of the pump body 4. The included angle between the hinge 5 and the grip 121 is no greater than 90 degrees, which can ensure that the pump body 4 has sufficient disengagement space. Preferably, the circumferential included angle between the hinge 5 and the grip 121 is 90 degrees. While ensuring that the pump body 4 has sufficient disengagement space, it can also improve the aesthetics of the liquid container 10 in the second state.
[0038] Furthermore, the connecting member 13 is close to the gripping part 121, and the pressing member 21 of the cover 2 is located above the gripping part 121, so that the pressing member 21 has a longer lever arm when pressing the pump body 4. When the pressing member 21 presses down for the same distance, the pump body 4 has a larger range of motion, which allows the pump body 4 to squeeze more liquid and helps to improve the liquid suction effect of the pump body 4.
[0039] It is understandable that in other embodiments, the connecting member 13 may also be located in the middle of the inner side of the intermediate seat 12. In this case, the connecting part and the intermediate seat 12 have the maximum minimum distance, which can provide sufficient disengagement space for the pump body 4 and ensure that the pump body 4 can smoothly enter and exit the receiving cavity 111. In this embodiment, the circumferential angle between the hinge part 5 and the grip part 121 may be greater than 90 degrees.
[0040] In one embodiment, such as Figure 8 As shown, the cover 2 is provided with a baffle 22 for closing the accommodating cavity 111. The pump body 4 is disposed on the baffle 22. The baffle 22 has a liquid outlet 221. The edge of the liquid outlet 221 is provided with a baffle 222 that protrudes downward from the baffle 22. In the second state of the cover 2, the liquid on the surface of the pump body 4 will flow into the baffle 22, and the baffle 222 can prevent the liquid from flowing into the liquid outlet 221, thereby improving the liquid collection effect of the cover 2 and further reducing the possibility of liquid contaminating other objects.
[0041] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Those skilled in the art should understand that this utility model includes, but is not limited to, the content described in the accompanying drawings and the specific embodiments above. Any modifications that do not depart from the functional and structural principles of this utility model will be included within the scope of the claims.
Claims
1. A liquid container (10), characterized in that, include: The seat (1) has a accommodating cavity (111) for storing liquid and open at the top. A straw (3) is disposed in the accommodating cavity (111) and has a first liquid outlet channel passing through it; The cover (2) is hinged to the seat (1) and has a first state of closing the accommodating cavity (111) and a second state of opening the accommodating cavity (111). The cover (2) rotates relative to the seat (1) to switch states. The pump body (4) is disposed on the cover (2) and is provided with a second liquid outlet channel; Connector (13) is connected to the seat (1) and positions the suction tube (3). The connector (13) is provided with a clearance notch to avoid the movement trajectory of the pump body (4). When the cover (2) is in the first state, the pump body (4) is connected to the suction tube (3), and the first liquid outlet channel is connected to the second liquid outlet channel; when the cover (2) is in the second state, the pump body (4) is disengaged from the accommodating cavity (111) to disconnect the suction tube (3), and the first liquid outlet channel is disconnected from the second liquid outlet channel.
2. The liquid container (10) according to claim 1, characterized in that: The connector (13) has a through hole (1321) that communicates with the first liquid outlet channel. When the cover (2) is in the first state, the second liquid outlet channel communicates with the first liquid outlet channel through the through hole (1321).
3. The liquid container (10) according to claim 2, characterized in that: The connector (13) includes a connector (131) connected to the seat (1) and a connector (132) inserted into one end of the straw (3). The connector (131) includes a side wall (1311) and a bottom wall (1312). The clearance notch is provided on the side wall (1311), and the through hole (1321) is provided on the connector (132) and extends to the bottom wall (1312).
4. The liquid container (10) according to claim 3, characterized in that: The liquid container (10) also includes a seal (14) for forming a sealing fit between the through hole (1321) and the first liquid outlet channel in the first state.
5. The liquid container (10) according to claim 4, characterized in that: The second liquid outlet channel forms a second liquid inlet (41) at the bottom of the pump body (4). The sealing element (14) is located at the second liquid inlet (41) of the pump body (4). In the first state of the cover (2), the sealing element (14) is sealed to the bottom wall (1312).
6. The liquid container (10) according to claim 5, characterized in that: The bottom of the seal (14) is provided with a guide surface (141). In the first state of the cover (2), the guide surface (141) is located on the side of the seal (14) away from the clearance notch, and the guide surface (141) gradually moves away from the side wall (1311) from top to bottom.
7. The liquid container (10) according to claim 5, characterized in that: The bottom end of the seal (14) forms a guide ring, the outer diameter of which gradually increases from bottom to top. In the first state of the cover (2), the bottom end face of the guide ring abuts against the bottom wall (1312) of the connecting seat (131).
8. The liquid container (10) according to claim 4, characterized in that: The two liquid outlet channels form a second liquid inlet (41) at the bottom of the pump body (4), and the sealing element (14) is provided on the bottom wall (1312). In the first state of the cover (2), the second liquid inlet (41) is directly opposite the through hole (1321) and is sealed with the sealing element (14).
9. The liquid container (10) according to claim 1, characterized in that: The seat (1) includes a bottle body (11) having the accommodating cavity (111) and an intermediate seat (12) connected to the bottle body (11). The connecting member (13) is disposed on the inner side of the intermediate seat (12). The intermediate seat (12) and the cap (2) are hinged by a hinge (5). The clearance notch is disposed on the side of the connecting member (13) facing away from the hinge (5).
10. The liquid container (10) according to claim 9, characterized in that: The outer wall of the intermediate seat (12) has a gripping part (121), the connecting member (13) is located in the middle of the inner side of the intermediate seat (12), and the hinge part (5) and the gripping part (121) form an angle; or, the connecting member (13) is located on the inner side of the intermediate seat (12) and close to the gripping part (121), and the circumferential angle between the hinge part (5) and the gripping part (121) is not greater than 90 degrees.
11. The liquid container (10) according to claim 1, characterized in that: The cover (2) is provided with a baffle (22) for closing the accommodating cavity (111), the pump body (4) is provided on the baffle (22), the baffle (22) is provided with a liquid outlet (221), and the edge of the liquid outlet (221) is provided with a baffle rib (222) protruding downward from the baffle (22).