An integrated blender with storage, metering and automatic feeding functions

Through the integrated design of the blower, the sealing connection of the bottle body, storage tank and feeding pipe is used to solve the pollution problem of powder when going out, and the sealing and storage of dissolved substances and sanitary flushing are achieved.

CN115736629BActive Publication Date: 2025-08-12SHENZHEN NUMBER ONE EQUIP EXPL
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202211497988.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-26
Publication Date
2025-08-12
Estimated Expiration
2042-11-26

AI Technical Summary

Technical Problem

The existing powder storage box and cup are separated into separate structures. The powder is easily polluted by external environment during pouring into the cup, making it difficult to ensure hygiene.

Method used

An integrated blower is designed, including a bottle body, storage tank, feeding pipe and opening and closing components. The feeding pipe realizes the sealing connection between the bottle body and the storage tank and the automatic feeding function, ensuring that the dissolved substance is isolated from the outside world when it is not flushed and directly enters the bottle body during flushing.

Benefits of technology

The sealing and preservation of dissolved substances is achieved, avoiding external pollution, preventing hand contact, ensuring hygiene in the flushing process, and normal use in harsh environments to avoid spilling of dissolved substances.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115736629B_ABST
    Figure CN115736629B_ABST
Patent Text Reader

Abstract

The present application relates to an integrated dispensing device with storage, metering and automatic feeding functions, which includes a bottle body, the top end of the bottle body is open and is equipped with a bottle cap for closing the opening, the bottle body is used to dispense dissolved substances and contain dispensing solutions; a storage tank, one end of the storage tank is detachably connected to one end of the bottle body, the storage tank is used to store dissolved substances; a feeding tube, the bottle body and the storage tank can be connected through the feeding tube; and an opening and closing assembly, the opening and closing assembly is used to block the feeding tube or release the blockage of the feeding tube so that the bottle body and the storage tank are connected through the feeding tube. The present application can be used for dispensing edible dissolved substances or granular granules such as milk powder, protein powder, and nutritional powder, and can seal and preserve the stored dissolved substances. During dispensing, the dissolved substances directly enter the bottle body through the internal feeding tube, and will not come into direct contact with the external environment and hands, thereby preventing the dissolved substances from being contaminated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the field of brewing devices, and in particular to an integrated brewing device with storage, metering and automatic feeding functions. Background Art

[0002] In daily life, powders such as milk powder, protein powder, and nutritional powder often need to be consumed at regular times and in fixed quantities for different groups of people. For short trips, you usually need to bring a cup, a powder storage box containing powder, a thermos, etc. When preparing the powder, pour the water in the thermos into the cup, and then pour the powder in the powder storage box into the cup to prepare the powder.

[0003] The current powder storage box and cup are separate structures. From the time the powder storage box is opened to the time the powder is poured into the cup, it is difficult to ensure the hygiene of the external environment because the powder is in the external environment. When the powder comes into contact with the external environment, it is easy to cause contamination of the powder. Summary of the Invention

[0004] In order to improve the problem that powder is easily contaminated by the external environment during the preparation of powder when going out, the present application provides an integrated mixer with storage, metering and automatic feeding functions.

[0005] The present application provides an integrated blender with storage, metering and automatic feeding functions, which adopts the following technical solutions:

[0006] An integrated blender with storage, metering and automatic feeding functions, comprising:

[0007] A bottle body, the top of which is open and equipped with a bottle cap for sealing the opening, and the bottle body is used for dissolving substances and containing dissolving solutions;

[0008] a storage tank, one end of which is detachably connected to one end of the bottle body, and the storage tank is used to store dissolved substances;

[0009] a feeding pipe, through which the bottle body and the storage tank can be connected; and

[0010] The opening and closing assembly is used to seal or release the sealing of the feeding pipe so that the bottle body and the storage tank are connected through the feeding pipe.

[0011] By adopting the above technical solution, when in use, the dissolved substance is stored in the storage tank. When not brewed, the opening and closing component will block the feeding tube, thereby sealing and separating the storage tank and the bottle body to prevent the dissolved substance from entering the bottle body. When brewing, the seal of the feeding tube is released by the opening and closing component, so that the bottle body and the storage tank are connected through the feeding tube, and the brewer is rotated to a state where the storage tank is on top and the bottle body is on the bottom, so that the dissolved substance in the storage tank enters the bottle body through the feeding tube, and then the feeding tube is blocked by the opening and closing component, and the brewer is rotated to a state where the bottle body is on top and the storage tank is on the bottom, and water is added to the bottle body to complete the brewing of the dissolved substance.

[0012] The dissolving device of the present application can seal and preserve the stored dissolved substances, and can keep the dissolved substances isolated from the bottle body and the external environment when not being dissolved, which is beneficial to protecting the dissolved substances. During dissolving, the dissolved substances directly enter the bottle body through the internal feeding tube, and will not come into direct contact with the external environment, thereby preventing the dissolved substances from being contaminated by the unsanitary external environment. The hands can also be completely prevented from coming into contact with the dissolved substances during dissolving, which is more hygienic. Moreover, since the dissolved substances are always inside the dissolving device during the addition process, they will not be spilled due to improper operation. When the external environment is relatively bad, such as in windy and rainy weather, dissolving can also be carried out normally.

[0013] Preferably, the opening and closing assembly includes a sealing plug, a pressure rod connected to the sealing plug, and a sleeve disposed in the storage tank and open at both ends. A through hole is provided on a side of the storage tank away from the bottle body, and one end of the sleeve abuts against the inner wall of the storage tank and completely covers the through hole.

[0014] The pressure rod is inserted into the feeding tube and the sleeve, and can slide along the direction of its own axis. There is a gap between the pressure rod and the inner wall of the feeding tube for the dissolved substance to pass through;

[0015] One end of the sleeve away from the through hole is contracted and fits in a clearance with the outer wall of the pressure rod, so that the inner cavity of the sleeve is separated from the inner cavity of the storage tank;

[0016] The sealing plug can slide into or out of the feeding pipe along the axis of the pressure rod. When the sealing plug enters the feeding pipe, it is squeezed and deformed to seal the feeding pipe.

[0017] A reset assembly is provided in the sleeve, and the reset assembly is used to automatically reset the sealing plug into the feeding tube when the sealing plug is completely separated from the feeding tube. The reset assembly is also used to separate the pressure rod from the through hole.

[0018] By adopting the above technical solution, when not brewing, the sealing plug is located in the feeding tube, at this time the sealing plug is in a compressed state, the side wall of the sealing plug is tightly attached to the inner wall of the feeding tube to achieve the sealing of the feeding tube, so that the bottle body and the storage tank are isolated, thereby sealing the dissolved substance in the storage tank. When brewing, the pressure rod is pushed to make the sealing plug separate from the feeding tube and enter the bottle body. Since there is a gap between the pressure rod and the inner wall of the feeding tube, the storage tank and the bottle body are connected at this time. The brewer is rotated to the state where the storage tank is on top and the bottle body is on the bottom, keeping the sealing plug in the bottle body. The dissolved substance in the storage tank enters the bottle body through the feeding tube. After the dissolved substance is added to the bottle body, the push on the pressure rod is released, and the reset component automatically resets the sealing plug to the feeding tube to re-seal the feeding tube; the brewer of the present application can realize the automatic reset of the sealing plug to seal the feeding tube after the dissolved substance is added, which is easy to use. The reset component can also isolate the pressure rod from the external environment to prevent the pressure rod from coming into contact with the external environment and being contaminated, thereby preventing the pressure rod from coming into contact with the dissolved substance during the pushing process and contaminating the dissolved substance.

[0019] Preferably, the reset assembly includes a limiter and an elastic member, the limiter is connected to the end of the pressure rod away from the sealing plug, the limiter is slidably engaged with the sleeve, the side of the limiter is gap-matched with the inner wall of the sleeve to separate the pressure rod from the through hole, the pressure rod is passed through the elastic member and slidably engaged with the elastic member, one end of the elastic member abuts against the limiter, and the other end of the elastic member abuts against the end of the sleeve away from the through hole;

[0020] When the sealing plug is completely separated from the feeding tube and enters the bottle body, the elastic member is squeezed and compressed by the limiting member and the sleeve. When the limiting member is not subjected to a force in the direction of compressing the elastic member, the elastic force of the elastic member is sufficient to make the sealing plug automatically enter the feeding tube.

[0021] By adopting the above technical solution, the pressure rod and the limiter are pressed during brewing, and the limiter slides in the sleeve and compresses the elastic member. When the bottle body and the storage tank are connected through the feeding tube, the elastic member is in a compressed state. After the thrust on the pressure rod and the limiter is released, the elastic force of the elastic member will push the limiter and the pressure rod away from the bottle body, thereby allowing the sealing plug to enter the feeding tube; when in use, the side of the limiter is always in clearance with the inner wall of the sleeve, thereby isolating the pressure rod from the external environment, thereby preventing the pressure rod from being contaminated and causing contamination of the dissolved substance.

[0022] Preferably, a metering bin is provided in the storage tank, the side of the metering bin facing the feeding pipe is connected to the feeding pipe, and the side of the metering bin facing away from the feeding pipe is provided with a feed port;

[0023] The storage tank is made of transparent material.

[0024] By adopting the above technical solution, when applied, the metering bin can be quantitatively designed, and when brewing, the metering bin can be used as a basis, and the amount of several metering bins can be added according to demand, thereby realizing quantitative addition of dissolved substances, facilitating the brewing of liquids of different concentrations, and being convenient to use. The existence of the metering bin avoids the problem of difficulty in determining the amount of dissolved substances added, and more dissolved substances can be stored in the storage tank during use to meet the needs of multiple brewing quantities; when brewing, the brewer is turned to a state where the storage tank is on top and the bottle body is on the bottom. At this time, the feed port is located above the feeding tube, and the storage tank is shaken to allow the dissolved substances in the storage tank to enter the metering bin through the powder adding port, and then the pressure rod is pushed to add the dissolved substances into the bottle body through the feeding tube; the storage tank is made of transparent material to facilitate observation of whether the dissolved substances in the metering bin are full, and also to facilitate intuitive viewing of the addition of dissolved substances.

[0025] Preferably, the metering bin is arranged in an area close to the inner wall of the storage tank, and the feed port is gradually inclined from the side away from the inner wall of the storage tank to the side close to the inner wall of the storage tank along the direction close to the feeding pipe.

[0026] By adopting the above technical solution, the metering bin is located in an area close to the inner wall of the storage tank. When the dissolved substance in the storage tank is shaken and added into the metering bin, the storage tank can be tilted toward the direction where the metering bin is located, so that the dissolved substance accumulates in the area where the metering bin is located. Moreover, due to the inclined setting of the feed port, the dissolved substance can enter the metering bin more easily, which reduces the difficulty of adding the dissolved substance into the metering bin and is convenient to use.

[0027] Preferably, a capacity scale is provided on the outer wall of the metering bin.

[0028] By adopting the above technical solution, the setting of the capacity scale can further accurately measure the amount of dissolved substance added. When the mass of dissolved substance to be added is not an integer multiple of the capacity of the metering bin, it can be accurately and quantitatively added according to the capacity scale, thereby improving applicability.

[0029] Preferably, a connecting seat with a cavity inside is connected between the bottle body and the storage tank, the bottle body and the storage tank are detachably connected to the connecting seat, and the feeding pipe passes through the connecting seat and is connected to the bottle body and the storage tank;

[0030] A vibrator and a control component for controlling the start and stop of the vibrator are arranged in the connecting seat, and the vibrator is electrically connected to the control component.

[0031] By adopting the above technical solution, when the dissolved substance is added into the bottle body through the feeding tube, the vibrator is started by the control component, and the vibrator generates vibration, so that the dissolved substance in the metering bin smoothly enters the bottle body through the feeding tube, reducing the possibility of the dissolved substance being blocked in the metering bin or the feeding tube.

[0032] Preferably, a heating component is provided in the connecting seat, and the heating component includes a heating coil provided in the connecting seat and a thermistor connected to the control component, the heating coil is wound around the thermistor, the control component, the heating coil, and the thermistor are electrically connected, and the heating coil and the thermistor are controlled by the control component.

[0033] By adopting the above technical solution, when it is difficult to find hot water when going out, the liquid can be heated by the heating component. When the liquid is not finished, the liquid can also be kept warm by the heating component for easy use.

[0034] In summary, this application includes at least one of the following beneficial technical effects:

[0035] 1. The dissolving device of the present application can seal and store the stored dissolved substances, and can keep the dissolved substances isolated from the bottle body and the external environment when not being dissolved, which is beneficial to protecting the dissolved substances. When dissolving, the dissolved substances directly enter the bottle body through the internal feeding tube, and will not come into direct contact with the external environment and hands, thereby preventing the dissolved substances from being contaminated. Moreover, since the dissolved substances are always inside the dissolving device during the addition process, they will not be spilled due to improper operation. Especially when the external environment is relatively harsh, the dissolving substances can be dissolved normally without being affected by the location and environment.

[0036] 2. This application provides a reset component to enable the sealing plug to automatically reset to seal the feeding tube after the addition of the dissolved substance is completed. It is easy to use. The reset component can also isolate the pressure rod from the external environment to prevent the pressure rod from contacting with the external environment and being contaminated. This avoids the pressure rod from contacting with the dissolved substance during the pushing process and contaminating the dissolved substance, which is beneficial to protecting the dissolved substance.

[0037] 3. This application realizes the quantitative addition of dissolved substances by setting up a metering bin. When preparing, the metering bin can be used as a basis, and the amount of several metering bins can be added according to demand, which is convenient for preparing liquids of different concentrations. It overcomes the problem of difficulty in determining the amount of dissolved substances added. When in use, more dissolved substances are stored in the storage tank to meet the needs of multiple preparations.

[0038] 4. By setting a vibrator to generate vibration when adding dissolved substances into the bottle, the dissolved substances in the metering bin can smoothly enter the bottle through the feeding pipe, reducing the possibility of blockage of the dissolved substances in the metering bin or the feeding pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] Figure 1 This is a schematic diagram of the structure of the brewer in the embodiment of the present application;

[0040] Figure 2 This is a schematic 1 / 4 cross-sectional view of the brewer in an embodiment of the present application;

[0041] Figure 3 This is a cross-sectional schematic diagram of the sealing plug fully entering the feeding tube in the embodiment of the present application;

[0042] Figure 4 This is a cross-sectional schematic diagram of the embodiment of the present application in which the sealing plug is completely inserted into the bottle body;

[0043] Explanation of the accompanying drawings: 1. Bottle body; 11. Suction nozzle; 12. Bottle cap; 13. Handle; 14. First kit; 2. Storage tank; 21. Second kit; 22. Through hole; 3. Connecting seat; 31. First ring; 32. First sealing gasket; 33. Second sealing gasket; 34. Vibrator; 35. Charging port; 4. Feeding tube; 51. Sealing plug; 52. Pressure rod; 53. Sleeve; 61. Limiting member; 62. Elastic member; 7. Measuring bin; 71. Feeding port; 72. Capacity scale; 81. Control chip; 82. Lithium battery; 83. Control switch; 91. Thermal conductive sheet; 911. Second ring; 92. Heating coil; 93. Thermistor. DETAILED DESCRIPTION

[0044] The following describes in detail embodiments of the present application. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application and are not to be construed as limiting the present application.

[0045] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise specified, "multiple" means two or more.

[0046] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0047] In this application, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicates that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicates that the first feature is lower in level than the second feature.

[0048] The present application is further described in detail below with reference to the accompanying drawings.

[0049] The embodiment of the present application discloses an integrated brewing device with storage, metering and automatic feeding functions. Figure 1 The brewer includes a bottle body 1, a connecting base 3 connected to the bottle body 1 and a storage tank 2 connected to the connecting base 3. The storage tank 2 is used to store the dissolved substance to be brewed. The bottle body 1 is used to brew the dissolved substance and contain the liquid formed after the dissolved substance is brewed. The connecting base 3 is used to connect the bottle body 1 and the storage tank 2. The bottom end of the bottle body 1 is connected to the top end of the connecting base 3, and the top end of the storage tank 2 is connected to the bottom end of the connecting base 3. The connecting base 3 has a cavity inside.

[0050] Reference Figure 1 and Figure 2 The bottle body 1 is open at both ends. A suction nozzle 11 is detachably mounted in the opening at the top of the bottle body 1. The suction nozzle 11 is made of silicone and snaps into place with the opening. A bottle cap 12 is detachably mounted on the top of the bottle body 1. The bottle cap 12 covers the outside of the suction nozzle 11 to protect it and snaps into place with the bottle body 1. A handle 13 is detachably mounted on the outer wall of the bottle body 1 and snaps into place with the outside of the bottle body 1.

[0051] Reference Figure 2 and Figure 3In this embodiment, the bottom end of the bottle body 1 is fitted with the top end of the connecting base 3. The bottom of the bottle body 1 is connected to a first sleeve 14, which is a circular ring structure. The top of the connecting base 3 is provided with a first collar 31 that matches the first sleeve 14. The bottle body 1 and the connecting base 3 are connected by fitting the first collar 31 onto the outside of the first sleeve 14. A chamber for dissolving dissolved substances and containing liquid is formed between the top wall of the connecting base 3 and the bottle body 1. In other embodiments, the connection between the bottle body 1 and the connecting base 3 can also be achieved by threaded engagement, snap-fit engagement, or other structures that can achieve a secure connection between the bottle body 1 and the connecting base 3.

[0052] In order to ensure the firmness of the connection between the bottle body 1 and the connecting seat 3, the diameter of the contour of the outer wall of the first kit 14 is slightly larger than the diameter of the contour of the inner wall of the first ring 31, so that the first kit 14 and the first ring 31 are interference fit when they are matched, which not only makes the connection between the bottle body 1 and the connecting seat 3 more firm, but also improves the sealing between the bottle body 1 and the connecting seat 3.

[0053] In order to improve the sealing between the bottle body 1 and the connecting seat 3, a first sealing gasket 32 made of silicone is also installed between the first kit 14 and the first ring 31. When the first kit 14 is matched with the first ring 31, the first sealing gasket 32 is pressed tightly, and the first sealing gasket 32 is deformed to seal the connection between the first kit 14 and the first ring 31.

[0054] Reference Figure 2 and Figure 3 In this embodiment, the top of the storage tank 2 is sleeved and fitted with the bottom of the connecting base 3. The top of the storage tank 2 is open and connected to a second sleeve 21. The second sleeve 21 is a circular ring structure. The bottom of the storage tank 2 is sleeved outside the second sleeve 21 to achieve the connection between the storage tank 2 and the connecting base 3. A chamber for storing dissolved substances is formed between the bottom wall of the connecting base 3 and the storage tank 2. In other embodiments, the connection between the storage tank 2 and the connecting base 3 can also be achieved by threaded engagement, snap-fit engagement, or other structures that can achieve a secure connection between the bottle body 1 and the connecting base 3.

[0055] In order to ensure the firmness of the connection between the storage tank 2 and the connecting seat 3, the diameter of the contour of the outer wall of the second kit 21 is slightly larger than the diameter of the contour of the inner wall of the bottom of the connecting seat 3, so that the second kit 21 and the connecting seat 3 are interference fit when they are matched. This not only makes the connection between the storage tank 2 and the connecting seat 3 more secure, but also improves the sealing between the storage tank 2 and the connecting seat 3.

[0056] In order to improve the sealing between the storage tank 2 and the connecting seat 3, a second sealing gasket 33 made of silicone is also installed between the second kit 21 and the connecting seat 3. When the second kit 21 is matched with the connecting seat 3, the second sealing gasket 33 is pressed tightly, and the second sealing gasket 33 is deformed to seal the connection between the second kit 21 and the connecting seat 3.

[0057] Reference Figure 2 and Figure 3 A feeding pipe 4 is arranged vertically in the connecting seat 3. The cross section of the feeding pipe 4 is circular. The top end of the feeding pipe 4 passes through the top wall of the connecting seat 3 and is connected to the internal cavity of the bottle body 1. The bottom end of the feeding pipe 4 passes through the bottom wall of the connecting seat 3 and is connected to the internal cavity of the storage tank 2. The bottle body 1 and the storage tank 2 can be connected through the feeding pipe 4.

[0058] Reference Figure 3 An opening and closing assembly is provided between the storage tank 2 and the connecting seat 3 for blocking or unblocking the feeding pipe 4 so that the bottle body 1 and the storage tank 2 are connected through the feeding pipe 4.

[0059] The opening and closing assembly includes a sealing plug 51 made of silicone material, a pressure rod 52 fixedly connected to the sealing plug 51, and a sleeve 53 disposed in the storage tank 2 and open at both ends.

[0060] A circular through hole 22 is provided on one side of the storage tank 2 away from the connecting seat 3 . One end of the sleeve 53 abuts against the inner wall of the storage tank 2 and completely covers the through hole 22 , so that the through hole 22 is located inside the sleeve 53 .

[0061] The pressure rod 52 is a cylindrical structure. The pressure rod 52 is inserted into the feeding tube 4 and the sleeve 53. The pressure rod 52 can slide along the direction of its own axis. The sealing plug 51 can enter or exit the feeding tube 4 as the pressure rod 52 slides along the direction of its own axis. When the sealing plug 51 enters the feeding tube 4, the sealing plug 51 is squeezed and deformed to seal the feeding tube 4. There is a gap between the pressure rod 52 and the inner wall of the feeding tube 4 for the dissolved substance to pass through.

[0062] The tube mouth of the sleeve 53 away from the through hole 22 is contracted to a hole with the same diameter as the pressure rod 52, so that the end of the sleeve 53 away from the through hole 22 is loosely matched with the outer wall of the pressure rod 52, thereby separating the inner cavity of the sleeve 53 from the inner cavity of the storage tank 2.

[0063] A reset component is provided in the sleeve 53 for automatically returning the sealing plug 51 to the feeding tube 4 when the sealing plug 51 is completely separated from the feeding tube 4 . The reset component is composed of a limit member 61 and an elastic member 62 .

[0064] The limiter 61 is fixedly connected to one end of the pressure rod 52 away from the sealing plug 51. The limiter 61 is a disc-shaped structure and the diameter of the limiter 61 is equal to the inner diameter of the sleeve 53, so that the side of the limiter 61 is loosely matched with the inner wall of the sleeve 53, thereby separating the pressure rod 52 from the through hole 22.

[0065] The elastic member 62 is sleeved on the outside of the pressure rod 52 and slidably engages with the pressure rod 52. The bottom end of the elastic member 62 abuts the stopper 61, and the top end of the elastic member 62 abuts the inner wall of the sleeve 53 at the end away from the through hole 22. In this embodiment, the elastic member 62 is a spring. In other embodiments, the elastic member 62 can also be made of a material with good deformation recovery ability, such as a rebound pad.

[0066] Reference Figure 3 and Figure 4 During use, the limiting member 61 can be pushed toward the bottle body 1 through the through hole 22, causing the pressure rod 52 to push the sealing gasket to slide into the bottle body 1. When the sealing plug 51 completely separates from the feeding tube 4 and enters the bottle body 1, the storage tank 2 and the bottle body 1 are connected through the feeding tube 4. At this time, the elastic member 62 is squeezed and compressed by the limiting member 61 and the sleeve 53. When the pushing force on the limiting member 61 is released, the elastic force of the elastic member 62 is sufficient to cause the sealing plug 51 to automatically enter the feeding tube 4, thereby blocking the feeding tube 4 again and isolating the storage tank 2 from the bottle body 1. The length of the elastic member 62 after it has fully recovered its deformation is not long enough for the pressure rod 52 to pull the sealing plug 51 out of the feeding tube 4.

[0067] When in use, push the sealing plug 51 into the bottle body 1, rotate the brewer to the state where the storage tank 2 is on top and the bottle body 1 is on the bottom, so that the dissolved substance in the storage tank 2 enters the bottle body 1 through the feeding tube 4. After the dissolved substance is added, reset the sealing plug 51 to block the feeding tube 4.

[0068] Reference Figure 4 In order to make it easier for the sealing plug 51 to be reset into the feeding pipe 4, the sealing plug 51 is gradually contracted in the direction close to the storage tank 2 to form a truncated cone shape. The bottom diameter of the sealing plug 51 is smaller than the diameter of the feeding pipe 4, so that the sealing plug 51 will not be obstructed when it just enters the feeding pipe 4, which facilitates the reset of the sealing plug 51.

[0069] In order to facilitate the observation of the storage amount of dissolved substances, the state of dissolved substances entering the bottle body 1, and the amount of liquid in the bottle body 1 when drinking, in this embodiment, the bottle body 1 and the storage tank 2 are both made of transparent materials, such as PP material, PES material, PPSU material, glass material, etc., and this application does not impose any specific restrictions on this.

[0070] Reference Figure 3A metering bin 7 is also installed in the storage tank 2. The side of the metering bin 7 facing the feeding tube 4 is connected to the end of the feeding tube 4 away from the bottle body 1. The side of the metering bin 7 facing away from the feeding tube 4 is provided with a feed port 71, and the sleeve 53 passes into the metering bin 7 through the feed port 71. During use, by shaking the dissolved substance in the storage tank 2 into the metering bin 7, the metering bin 7 can be designed to be quantitative. When brewing, the metering bin 7 is used as a reference, and the amount of a number of metering bins 7 is added according to demand, thereby achieving quantitative addition of the dissolved substance.

[0071] Furthermore, the metering bin 7 is installed in an area near the inner wall of the storage tank 2, and the feed port 71 is gradually tilted from the side away from the inner wall of the storage tank 2 to the side close to the inner wall of the storage tank 2 along the direction close to the feeding pipe 4. When the dissolved substance in the storage tank 2 is shaken and added to the metering bin 7, the storage tank 2 can be tilted toward the direction where the metering bin 7 is located, so that the dissolved substance accumulates in the area where the metering bin 7 is located. Moreover, due to the tilted setting of the feed port 71, the dissolved substance can more easily enter the metering bin 7, reducing the difficulty of adding the dissolved substance to the metering bin 7 and facilitating use.

[0072] Furthermore, a surface of the metering bin 7 connected to the feeding pipe 4 is gradually contracted in a direction close to the feeding pipe 4 to form an inclined surface, thereby making it easier for the dissolved substances in the metering bin 7 to enter the feeding pipe 4 .

[0073] A capacity scale 72 is provided on the outer wall of the metering bin 7, so that the amount of dissolved substance added can be further accurately measured. When the mass of dissolved substance to be added is not an integer multiple of the capacity of the metering bin 7, it can be accurately and quantitatively added according to the capacity scale 72, which has better applicability.

[0074] In order to avoid blockage when adding dissolved substances into the bottle body 1, a vibrator 34 and a control component are installed in the cavity inside the connecting base 3. The control component can be used to control the start and stop of the vibrator 34.

[0075] The control assembly comprises a control chip 81 mounted within the connector 3, a lithium battery 82 mounted within the connector 3, and a control switch 83 mounted on the outer shell of the connector 3. The vibrator 34, the control chip 81, the lithium battery 82, and the control switch 83 are electrically connected. When dissolved material is added to the bottle 1 through the feeding tube 4, the control assembly activates the vibrator 34, which vibrates, thereby allowing the dissolved material in the metering chamber 7 to flow smoothly through the feeding tube 4 into the bottle 1, reducing the possibility of the dissolved material clogging the metering chamber 7 or the feeding tube 4.

[0076] Furthermore, a heating assembly for heating the liquid is also provided in the connection base 3. The heating assembly consists of a heat conducting sheet 91, a heating coil 92, and a thermistor 93. The heat conducting sheet 91 is provided on the top of the connection base 3. A chamber for dissolving substances and containing the liquid is formed between the top wall of the heat conducting sheet 91 and the bottle body 1. The feeding tube 4 passes through the heat conducting sheet 91.

[0077] Reference Figure 3 A second ring 911 is provided at the edge of the heat conducting plate 91 , the second ring 911 is clamped on the inner side of the first ring 31 , the second ring 911 is sleeved on the outer side of the first sleeve 14 , and the first sealing gasket 32 is located between the first sleeve 14 and the second ring 911 .

[0078] In order to make the heat conducting plate 91 have good thermal conductivity and ensure the safety of drinking the liquid, the heat conducting plate 91 is made of food grade 304 stainless steel or food grade 316 stainless steel, and this application does not impose any specific restrictions on this.

[0079] The thermistor 93 and the heating coil 92 are both installed on the lower surface of the thermal conductive sheet 91. The heating coil 92 is wound around the thermistor 93. Insulating glue is coated between the thermistor 93 and the thermal conductive sheet 91. The outer wall of the heating coil 92 is coated with a high-temperature resistant insulating layer. The insulating glue and the insulating layer are well-known technologies in the field. The specific selection of the insulating glue and the insulating layer is not limited in this application.

[0080] The heating coil 92, thermistor 93, control chip 81, lithium battery 82 and control switch 83 are electrically connected. The control switch 83 can control the vibrator 34 and the heating component through the control chip 81. When used, it can be set to click a different number of times. The control switch 83 controls the vibrator 34 or the heating component accordingly. This control technology is a well-known technology in the field and will not be repeated in this application.

[0081] Reference Figure 1 A charging port 35 is also provided on the outer wall of the connecting base 3 , and the charging port 35 is electrically connected to the lithium battery 82 for charging the lithium battery 82 .

[0082] The implementation principle of the embodiment of the present application, which is an integrated mixer with storage, metering and automatic feeding functions, is as follows: the mixer can be used to mix edible dissolving substances such as milk powder, protein powder, nutritional powder, and dissolving substances such as granular granules, and the dissolving substances are stored in the storage tank 2. When not being mixed, the sealing plug 51 is located in the feeding tube 4. At this time, the sealing plug 51 is in a compressed state, and the elastic member 62 is in an uncompressed state. The side wall of the sealing plug 51 is tightly attached to the inner wall of the feeding tube 4 to achieve the sealing of the feeding tube 4, so that the bottle body 1 is isolated from the storage tank 2, thereby sealing the dissolving substances in the storage tank 2. When mixing, the pressure rod 52 is pushed to make the sealing plug 51 detach from the feeding tube 4 and enter the bottle body 1. At this time, the elastic member 62 is in a compressed state. Since there is a gap between the pressure rod 52 and the inner wall of the feeding tube 4, the storage tank 2 is connected to the bottle body 1. Turn the dispensing device to the state where the storage tank 2 is on top and the bottle body 1 is on the bottom, keep the sealing plug 51 in the bottle body 1, and the dissolved substance in the storage tank 2 enters the bottle body 1 through the feeding tube 4. After the dissolved substance is added to the bottle body 1, then release the push on the pressure rod 52, and the elastic force of the elastic member 62 causes the sealing plug 51 to automatically reset to the feeding tube 4 to re-block the feeding tube 4. The metering bin 7 in the storage tank 2 can be designed quantitatively. When dispensing, the metering bin 7 can be used as a reference, and the amount of several metering bins 7 can be added according to demand, thereby achieving quantitative addition of dissolved substances, facilitating the dispensing of liquids of different concentrations and convenient use. The presence of the metering bin 7 avoids the problem of difficulty in determining the amount of dissolved substances to be added. When in use, more dissolved substances can be stored in the storage tank 2 to meet the needs of multiple dispensing quantities. The heating component inside the connecting seat 3 can be used to heat the liquid, and can also keep the liquid warm when the liquid is not finished.

[0083] The dissolving device can seal and store the stored dissolved substances, and can keep the dissolved substances isolated from the bottle body 1 and the external environment when not being dissolved, which is beneficial to protecting the dissolved substances. When dissolving, the dissolved substances directly enter the bottle body 1 through the internal feeding tube 4, and will not come into direct contact with the external environment. It can also completely avoid contact between the hands and the dissolved substances, thereby preventing the dissolved substances from being contaminated by the unsanitary external environment or direct contact with the hands. It is more hygienic when dissolving, and because the dissolved substances are always inside the dissolving device during the addition process, they will not be spilled due to improper operation. When the external environment is relatively bad, such as windy and rainy weather, it can also be dissolved normally. The dissolving device of the present application has the functions of storage, metering and automatic feeding, and has an overall integrated design and good practicality.

[0084] The above are preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An integrated brewer with storage, metering and automatic feeding functions, characterized in that: include: A bottle body (1), the top end of the bottle body (1) is open and is provided with a bottle cap (12) for closing the opening, and the bottle body (1) is used for dissolving substances and containing dissolving solutions; A storage tank (2), one end of which is detachably connected to one end of the bottle body (1), and the storage tank (2) is used to store dissolved substances; A feeding pipe (4), through which the bottle (1) and the storage tank (2) can be connected; and An opening and closing assembly, the opening and closing assembly being used to block or release the blockage of the feeding pipe (4) so as to allow the bottle body (1) and the storage tank (2) to communicate with each other through the feeding pipe (4); The opening and closing assembly comprises a sealing plug (51), a pressure rod (52) connected to the sealing plug (51), and a sleeve (53) disposed in the storage tank (2) and open at both ends. A through hole (22) is provided on a side of the storage tank (2) away from the bottle body (1). One end of the sleeve (53) abuts against the inner wall of the storage tank (2) and completely covers the through hole (22). The pressure rod (52) is inserted into the feeding tube (4) and the sleeve (53). The pressure rod (52) can slide along the direction of its own axis. There is a gap between the pressure rod (52) and the inner wall of the feeding tube (4) for the dissolved substance to pass through. One end of the sleeve (53) away from the through hole (22) is contracted and fits with the outer wall of the pressure rod (52) to separate the inner cavity of the sleeve (53) from the inner cavity of the storage tank (2); The sealing plug (51) can slide into or out of the feeding pipe (4) along the axis of the pressure rod (52). When the sealing plug (51) enters the feeding pipe (4), the sealing plug (51) is squeezed and deformed to seal the feeding pipe (4). A reset assembly is provided in the sleeve (53), and the reset assembly is used to automatically reset the sealing plug (51) into the feeding tube (4) when the sealing plug (51) is completely separated from the feeding tube (4). The reset assembly is also used to separate the pressure rod (52) from the through hole (22); A metering bin (7) is provided in the storage tank (2); a side of the metering bin (7) facing the feeding pipe (4) is connected to the feeding pipe (4); a side of the metering bin (7) facing away from the feeding pipe (4) is provided with a feed port (71); The storage tank (2) is made of a transparent material.

2. The integrated brewer with storage, metering and automatic feeding functions according to claim 1, characterized in that: The reset assembly includes a limiting member (61) and an elastic member (62), the limiting member (61) is connected to the end of the pressure rod (52) away from the sealing plug (51), the limiting member (61) is slidably matched with the sleeve (53), the side of the limiting member (61) is gap-matched with the inner wall of the sleeve (53) to separate the pressure rod (52) from the through hole (22), the pressure rod (52) is passed through the elastic member (62) and slidably matched with the elastic member (62), one end of the elastic member (62) abuts against the limiting member (61), and the other end of the elastic member (62) abuts against the end of the sleeve (53) away from the through hole (22); When the sealing plug (51) is completely separated from the feeding tube (4) and enters the bottle body (1), the elastic member (62) is squeezed and compressed by the limiting member (61) and the sleeve (53); when the limiting member (61) is not subjected to a force in the direction of compressing the elastic member (62), the elastic force of the elastic member (62) is sufficient to enable the sealing plug (51) to automatically enter the feeding tube (4).

3. The integrated brewer with storage, metering and automatic feeding functions according to claim 1, characterized in that: The metering bin (7) is arranged in an area close to the inner wall of the storage tank (2), and the feed port (71) is gradually inclined from a side away from the inner wall of the storage tank (2) to a side close to the inner wall of the storage tank (2) along a direction close to the feeding pipe (4).

4. The integrated brewer with storage, metering and automatic feeding functions according to claim 1, characterized in that: A capacity scale (72) is provided on the outer wall of the metering bin (7).

5. The integrated brewer with storage, metering and automatic feeding functions according to claim 1 is characterized in that: A connecting seat (3) having a cavity therein is connected between the bottle body (1) and the storage tank (2); the bottle body (1) and the storage tank (2) are both detachably connected to the connecting seat (3); and the feeding pipe (4) passes through the connecting seat (3) and is in communication with the bottle body (1) and the storage tank (2); A vibrator (34) and a control component for controlling the start and stop of the vibrator (34) are provided in the connecting seat (3); the vibrator (34) is electrically connected to the control component.

6. The integrated brewer with storage, metering and automatic feeding functions according to claim 5, characterized in that: A heating component is provided in the connecting seat (3), and the heating component comprises a heating coil (92) provided in the connecting seat (3) and a thermistor (93) connected to the control component, the heating coil (92) is wound around the thermistor (93), the control component, the heating coil (92), and the thermistor (93) are electrically connected, and the heating coil (92) and the thermistor (93) are controlled by the control component.

Citation Information

Patent Citations

  • Steam-water machine

    CN209862200U

  • Integrated brewing device with storage, metering and automatic feeding functions

    CN218651402U