Instant preparation type quantifiable bottle cap for herbal beverage bottle
By designing a storage compartment structure for a ready-to-dispense quantitative bottle cap, the problem of quantitative dosing of multiple brewing ingredients in herbal beverage bottles is solved, thereby improving the taste and mixing experience of the beverage.
Patent Information
- Application Number
- CN202423006989.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-12-05
AI Technical Summary
Existing herbal beverage bottles lack a feeding device and quantitative control for selecting a variety of brewing materials, resulting in a single brewing material and the inability to feed it quantitatively.
A ready-to-use quantitative bottle cap is designed, which includes a pressing block and a storage bin. The storage bin is composed of a storage bin cylinder and a central cylinder. The quantitative control and mixing of multiple brewing materials are achieved through a slider, a partition plate and a telescopic plate.
It realizes the selection of multiple brewing materials and quantitative feeding, improves the taste richness of the beverage and the consumer's hands-on mixing experience, has a simple structure, is easy to operate and has strong adaptability.
Smart Images

Figure CN223371767U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of beverage containers, in particular to an instant quantitative bottle cap for a herbal beverage bottle. Background Art
[0002] Currently, some ready-to-drink herbal beverages are becoming popular on the market. The brewing liquid and the brewing material are packaged separately and placed in a container. When drinking, consumers can open the packages containing the brewing liquid and the brewing material and mix the two in the container.
[0003] However, the above structure lacks a control device for the amount of brewing material added and can only provide one brewing material. With the promotion of the concept of health and the prevalence of herbal beverages with medicinal and edible properties, people have put forward higher requirements for the taste of herbal beverages and the richness of brewing materials. Summary of the Invention
[0004] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide a ready-to-use quantitative bottle cap for herbal beverage bottles, which solves the problem that the brewing material feeding device in the existing technology has a single feeding method and cannot feed quantitatively.
[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions: a ready-to-use quantitative bottle cap for herbal beverage bottles, comprising a pressing block and a storage bin, wherein the pressing block comprises a closing cover and a plurality of grooves provided at the bottom end of the closing cover along the radial direction of the closing cover, the closing cover being cylindrical, the pressing block further comprising a pressing block center hole provided at the geometric center of the closing cover, the pressing block center hole being a blind hole and facing one side of the storage bin,
[0006] The pressing block further comprises two sliding blocks symmetrically mounted on the outside of the closing cover.
[0007] The storage bin includes a coaxially sleeved storage bin cylinder and a storage bin center cylinder. Both the storage bin cylinder and the storage bin center cylinder are hollow cylindrical. The center cylinder is connected to the inner wall of the storage bin cylinder by a partition plate.
[0008] The bottom end of the storage bin cylinder is also coaxially connected to a connecting cylinder, and the inner diameter of the connecting cylinder is larger than the inner diameter of the storage bin cylinder.
[0009] A plurality of vertical positioning grooves are provided on the inner wall of the storage bin cylinder along the generatrix direction, and the vertical positioning grooves cooperate with the sliding blocks.
[0010] The number of the partition plates corresponds to the number of the grooves. One end of the partition plate is connected to the central tube of the storage bin, and the other end is connected to the vertical positioning groove.
[0011] The instant quantitative bottle cap for the herbal beverage bottle further comprises a telescopic plate and a release plate.
[0012] The release plate includes a disc-shaped release plate body and a release plate connecting rod installed at the center position of one side of the release plate body. The release plate connecting rod passes through the central tube of the storage bin and is connected to the central hole of the pressing block.
[0013] The telescopic plate is located between the release plate body and the bottom end of the storage bin cylinder body. The telescopic plate is a pair of semi-circular telescopic plates. The side of the telescopic plate with a smaller arc length is movably connected to the central cylinder of the storage bin, and the side of the telescopic plate with a larger arc length is movably connected to the storage bin cylinder body.
[0014] The utility model also has the following technical features:
[0015] An outer T-shaped groove is provided on the outer wall of one side of the bottom end of the storage bin cylinder body. The outer T-shaped groove is divided into two sections with the same length, and the two sections are not connected.
[0016] An inner T-shaped groove is provided on the inner wall of one side of the bottom end of the central tube of the storage bin. The inner T-shaped groove is divided into two sections with the same length, and the two sections are not connected.
[0017] The telescopic plate comprises a first telescopic plate and a second telescopic plate having the same structure.
[0018] The first telescopic plate includes a semi-circular telescopic plate body and a plurality of reinforcing strips installed along the radial direction on the bottom surface of the telescopic plate body. The telescopic plate body is made of flexible material, and the reinforcing strips are made of rigid material.
[0019] Outer T-blocks are installed at both ends of the outer edge of the upper surface of the first telescopic plate, and inner T-blocks are installed at both ends of the inner edge of the upper surface of the first telescopic plate. The outer T-blocks cooperate with the outer T-slots, and the inner T-blocks cooperate with the inner T-slots.
[0020] The inner T-block and the outer T-block on the same side of the upper surface of the first telescopic plate are connected to the end of the inner T-slot and the end of the outer T-slot respectively.
[0021] The second telescopic plate is structurally symmetrical to the first telescopic plate.
[0022] The grooves are distributed at equal intervals.
[0023] An annular groove is also provided on the inner wall of the storage bin cylinder along the circumferential direction. The groove cooperating with the slider passes through the annular groove, and the top end is flush with the storage bin cylinder body, and the remaining groove top end is flush with the lower surface of the annular groove.
[0024] The bottom ends of the storage bin cylinder body and the storage bin central tube are flush with each other, and the height of the storage bin central tube is lower than the height of the storage bin cylinder body.
[0025] The height of the vertical positioning groove is greater than the height of the partition plate.
[0026] A return spring is also installed in the vertical positioning groove, and the return spring is in contact with the partition plate.
[0027] Positioning blocks are arranged circumferentially on the outer wall of the storage bin cylinder, and the positions of the positioning blocks correspond to the positions of the vertical positioning grooves.
[0028] The release plate further comprises a release plate outer ring mounted on the outer edge of the release plate body, and the release plate outer ring contacts the inner wall of the connecting cylinder.
[0029] The outer ring of the release plate is made of flexible material.
[0030] A long strip-shaped indicator needle is also arranged on the top surface of the pressing block, and both ends of the long strip-shaped indicator needle point to the slider respectively.
[0031] A pressing block thread is provided on the inner wall of the central hole of the pressing block, and a release plate thread is also provided on the outer side of the top end of the release plate connecting rod. The release plate thread cooperates with the pressing block thread.
[0032] Compared with the prior art, the present invention has the following technical effects:
[0033] (I) The utility model provides a ready-to-use quantitative bottle cap for herbal beverage bottles. The six storage compartments can provide two or more brewing materials for selection. The quantitative control of multiple brewing materials can be carried out according to personal taste. The bottle cap design can effectively prevent the brewing materials in the storage compartments from spilling. Consumers can prepare beverages according to their personal taste, which greatly improves the taste satisfaction of consumers and the experience of preparing beverages by themselves.
[0034] (II) The utility model provides a ready-to-use quantitative bottle cap for a herbal beverage bottle, which can realize quantitative feeding of multiple brewing materials in batches, thereby increasing the taste and nutritional content of the beverage.
[0035] (III) The utility model provides an instant quantitative bottle cap for herbal beverage bottles, which has a simple structure, is easy to operate, safe and reliable, and has strong adaptability, and has practical application value and broad application prospects. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 The utility model is a schematic diagram of the overall structure of a ready-to-dispense quantitative bottle cap for a herbal beverage bottle.
[0037] Figure 2 for Figure 1 Schematic diagram of the explosion structure.
[0038] Figure 3 This is a schematic structural diagram of the pressing block of the present invention.
[0039] Figure 4 This is a structural diagram of the storage bin of the present utility model.
[0040] Figure 5 This is a schematic cross-sectional view of the storage bin of the present invention.
[0041] Figure 6 It is a structural schematic diagram of the telescopic plate of the present utility model.
[0042] Figure 7 It is a schematic diagram of the deformation structure of the telescopic plate of the utility model.
[0043] Figure 8 It is a structural schematic diagram of the release plate of the present utility model.
[0044] The meaning of each reference numeral in the accompanying drawings:
[0045] 1-Press block, 2-Storage compartment, 3-Telescopic plate, 4-Release plate.
[0046] 1-1-closing cover, 1-2-dividing plate groove, 1-3-pressing block center hole, 1-4-slider, 1-5-long strip indicator needle.
[0047] 2-1-Storage bin cylinder, 2-2-Storage bin center cylinder, 2-3-Partition plate, 2-4-Connecting cylinder, 2-5-Vertical positioning groove, 2-6-Outer T-slot, 2-7-Inner T-slot, 2-8-Annular groove, 2-9-Return spring, 2-10-Location block.
[0048] 3-1-first telescopic plate, 3-2-second telescopic plate.
[0049] 4-1-release plate body, 4-2-release plate connecting rod, 4-3-release plate outer ring.
[0050] 3-1-1-Telescopic plate body, 3-1-2-Reinforcement strip, 3-1-3-Outer T-block, 3-1-4-Inner T-block.
[0051] The specific contents of the present invention are further explained in detail below with reference to the embodiments. DETAILED DESCRIPTION
[0052] Unless otherwise specified, all components in the present invention are components known in the prior art.
[0053] The following are specific embodiments of the present invention. It should be noted that the present invention is not limited to the following specific embodiments, and all equivalent modifications made on the basis of the technical solution of this application fall within the scope of protection of the present invention.
[0054] Example 1:
[0055] This embodiment provides a ready-to-use quantitative bottle cap for herbal beverage bottles, such as Figure 1-Figure 5 As shown, it includes a pressing block 1 and a storage bin 2 that are covered together. The pressing block 1 includes a closing cover 1-1 and a plurality of partition plate grooves 1-2 opened at the bottom end of the closing cover 1-1 along the radial direction of the closing cover 1-1. The closing cover 1-1 is cylindrical. The pressing block 1 also includes a pressing block center hole 1-3 opened at the geometric center of the closing cover 1-1. The pressing block center hole 1-3 is a blind hole and faces one side of the storage bin 2.
[0056] The pressing block 1 further comprises two sliding blocks 1 - 4 symmetrically mounted on the outside of the closing cover 1 - 1 .
[0057] The storage bin 2 includes a coaxially sleeved storage bin cylinder 2-1 and a storage bin center cylinder 2-2. Both the storage bin cylinder 2-1 and the storage bin center cylinder 2-2 are hollow cylindrical. The storage bin center cylinder 2-2 is connected to the inner wall of the storage bin cylinder 2-1 through a partition plate 2-3.
[0058] The bottom end of the storage bin cylinder 2-1 is also coaxially connected to a connecting cylinder 2-4, and the inner diameter of the connecting cylinder 2-4 is larger than the inner diameter of the storage bin cylinder 2-1.
[0059] The connecting cylinder 2-4 is used to connect the bottle body. The inner wall of the connecting cylinder 2-4 is provided with a storage bin thread, which is used to connect the bottle cap of the present application and the bottle filled with brewing liquid together.
[0060] A plurality of vertical positioning grooves 2-5 are provided on the inner wall of the storage bin cylinder 2-1 along the busbar direction, and the vertical positioning grooves 2-5 cooperate with the slider 1-4.
[0061] The number of the partition plates 2-3 corresponds to the number of the partition plate grooves 1-2. One end of the partition plate 2-3 is connected to the central tube 2-2 of the storage bin, and the other end is connected to the vertical positioning groove 2-5.
[0062] The instant quantitative bottle cap for the herbal beverage bottle further comprises a telescopic plate 3 and a release plate 4 .
[0063] The release plate 4 includes a disc-shaped release plate body 4-1 and a release plate connecting rod 4-2 installed at the center position of one side of the release plate body 4-1. The release plate connecting rod 4-2 passes through the storage bin center tube 2-2 and is connected to the pressing block center hole 1-3.
[0064] The telescopic plate 3 is located between the release plate body 4-1 and the bottom end of the storage bin cylinder 2-1. The telescopic plate 3 is a pair of semi-circular telescopic plates. The side of the telescopic plate 3 with a smaller arc length is movably connected to the storage bin center tube 2-2, and the side of the telescopic plate 3 with a larger arc length is movably connected to the storage bin cylinder 2-1.
[0065] In this embodiment, the storage bin cylinder 2-1 is made of transparent material, such as glass acrylic plate, so that the interior can be seen intuitively.
[0066] In this embodiment, there are six partition plate grooves 1-2, partition plates 2-3, and vertical positioning grooves 2-5. The partition plates 2-3 divide the area between the storage bin cylinder 2-1 and the storage bin center cylinder 2-2 into six chambers, as shown in the figure, marked as ABC and abc.
[0067] By extending and retracting the telescopic plate 3, the proportion of solute release from the six compartments is adjusted. Then, by twisting the pressing block, the slider enters the vertical groove and presses the spring downward. Driven by the central hole 1-3 of the pressing block, the release plate 4 drops to the lower end of the protruding storage compartment 2, and the brew in the storage compartment 2 flows out into the bottle. After the brew has been released to the desired scale, the slider is twisted to return to its initial position. The spring then allows the pressing block to rise, and the rotating pressing block returns the slider to its original position, completing the process. Shake the bottle to thoroughly mix the brew and the liquid, and it is ready to drink. Operation is simple and convenient.
[0068] As a preferred embodiment of this invention:
[0069] like Figure 2-5 As shown, an outer T-slot 2-6 is provided on the outer wall of one side of the bottom end of the storage bin cylinder 2-1. The outer T-slot 2-6 is divided into two sections of the same length and the two sections are not connected.
[0070] An inner T-slot 2-7 is provided on the inner wall of one side of the bottom end of the central tube 2-2 of the storage bin. The inner T-slot 2-7 is divided into two sections of the same length and the two sections are not connected.
[0071] In this embodiment, a reinforcement piece may also be provided between the storage bin cylinder 2-1 and the connecting cylinder 2-4, and the reinforcement piece cannot affect the movement of the outer T-block 3-1-3 in the outer T-slot 2-6.
[0072] As a preferred embodiment of this invention:
[0073] like Figure 6-Figure 7 As shown, the telescopic plate 3 includes a first telescopic plate 3-1 and a second telescopic plate 3-2 having the same structure.
[0074] The first telescopic plate 3-1 includes a semi-circular telescopic plate body 3-1-1 and a plurality of reinforcing strips 3-1-2 installed on the bottom surface of the telescopic plate body 3-1-1 along the radial direction. The telescopic plate body 3-1-1 is made of flexible material, and the reinforcing strips 3-1-2 are made of rigid material.
[0075] Outer T-blocks 3-1-3 are installed at both ends of the outer edge of the upper surface of the first telescopic plate 3-1, and inner T-blocks 3-1-4 are installed at both ends of the inner edge of the upper surface of the first telescopic plate 3-1. The outer T-blocks 3-1-3 cooperate with the outer T-slots 2-6, and the inner T-blocks 3-1-4 cooperate with the inner T-slots 2-7.
[0076] The inner T-block 3-1-4 and the outer T-block 3-1-3 on the same side of the upper surface of the first telescopic plate 3-1 are connected to the end of the inner T-slot 2-7 and the end of the outer T-slot 2-6 respectively.
[0077] The second telescopic plate 3 - 2 is structurally symmetrical to the first telescopic plate 3 - 1 .
[0078] The outer T-block 3-1-3 is moved to adjust the ratio of solute release in the six compartments. In the present invention, the outer T-slot 2-6 and the inner T-slot 2-7 can also be set to six sections respectively, and the six sections are not connected. The first telescopic plate 3-1 and the second telescopic plate 3-2 are respectively divided into three parts, each part corresponding to a section of the outer T-slot 2-6 and the inner T-slot 2-7, which can adjust the ratio of solute release in each compartment respectively.
[0079] As a preferred embodiment of this invention:
[0080] like Figure 4 As shown, the partition plate grooves 1-2 are distributed at equal intervals.
[0081] An annular groove 2-8 is also provided on the inner wall of the storage bin cylinder 2-1 along the circumferential direction. The partition plate groove 1-2 that cooperates with the slider 1-4 passes through the annular groove 2-8, and the top end is flush with the storage bin cylinder 2-1. The top end of the remaining partition plate groove 1-2 is flush with the lower surface of the annular groove 2-8.
[0082] The bottom ends of the storage bin cylinder 2-1 and the storage bin central tube 2-2 are flush with each other, and the height of the storage bin central tube 2-2 is lower than the height of the storage bin cylinder 2-1.
[0083] The height of the vertical positioning groove 2-5 is greater than the height of the partition plate 2-3.
[0084] A return spring 2-9 is also installed in the vertical positioning groove 2-5. The return spring 2-9 is in contact with the partition plate 2-3. The return spring 2-9 is fixedly connected to the end of the upper surface of the partition plate 2-3. The spring structure is conducive to the quantitative mixing process being carried out multiple times.
[0085] The slider 1-4 is inserted into the annular groove 2-8 through the vertical positioning groove 2-5, and then the closing cover 1-1 is rotated to prevent the closing cover 1-1 from falling out. Then, it continues to press down through different vertical positioning grooves 2-5 and rebounds by the return spring 2-9.
[0086] As a preferred embodiment of this invention:
[0087] like Figure 4 As shown, positioning blocks 2-10 are arranged circumferentially on the outer wall of the storage bin cylinder 2-1, and the positions of the positioning blocks 2-10 correspond to the positions of the vertical positioning grooves 2-5.
[0088] The positioning blocks 2-10 correspond to the vertical positioning grooves 2-5 across the outer wall of the storage bin cylinder 2-1 and are used to indicate the positions of the six compartments; one of the positioning blocks 2-10 is provided with a scale and is at the same height as the partition plate 2-3, and the heights of the other five positioning blocks 2-10 do not exceed the height of the partition plate 2-3.
[0089] As a preferred embodiment of this invention:
[0090] like Figure 8 As shown, the release plate 4 further includes a release plate outer ring 4-3 installed on the outer edge of the release plate body 4-1, and the release plate outer ring 4-3 contacts the inner wall of the connecting cylinder 2-4; the release plate outer ring 4-3 is made of flexible material.
[0091] The contact point between the release plate outer ring 4-3 and the inner wall of the connecting cylinder 2-4 is also provided with an inclined surface or step, which is located between the storage bin thread and the telescopic plate 3. When the pressing block 1 is pressed downward to drive the release plate outer ring 4-3 to disengage from the inclined surface or step, the brewing flow in the storage bin 2 flows out into the bottle.
[0092] As a preferred embodiment of this invention:
[0093] like Figure 3 As shown, the top surface of the pressing block 1 is also arranged with a long strip indicator needle 1-5, and the two ends of the long strip indicator needle 1-5 point to the slider 1-4 respectively; when the positioning slider 1-4 is located in the annular groove 2-8, the long strip indicator needle 1-5 is used to assist in positioning the slider 1-4.
[0094] A pressing block thread is provided on the inner wall of the pressing block center hole 1-3, and a release plate thread is also provided on the outer side of the top end of the release plate connecting rod 4-2, and the release plate thread cooperates with the pressing block thread.
[0095] The specific working process of this utility model:
[0096] During use, the present invention first adjusts the proportion of brew released from the six compartments by twisting the outer T-shaped blocks 3-1-3 on the first and second telescopic plates 3-1, 3-2. The pressing block 1 is then twisted to cause the slider 1-4 to enter the vertical positioning groove 2-5. The pressing block 1 is then rotated so that the slider 1-4 enters the annular groove 2-8, pressing downward on the return spring 2-9. Driven by the central hole 1-3 of the pressing block, the release plate 4 falls, causing the brew in the storage compartment 2 to flow out and into the bottle. After the brew has been released to the desired scale, the outer T-shaped blocks 3-1-3 on the first and second telescopic plates 3-1, 3-2 are twisted to return to their initial positions. The pressing block 1 is then raised under the elastic action of the return spring 2-9, and the pressing block is rotated to return the slider 1-4 to its original position, completing the process. The bottle is then shaken to thoroughly mix the brew with the liquid, and the drink is ready for consumption.
[0097] The above technical solutions are only preferred specific implementation methods of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be thought of by any technician familiar with the field within the technical scope disclosed by the present invention without creative work are all covered by the protection scope of the present invention.
Claims
1. A ready-to-use quantitative bottle cap for a herbal beverage bottle, comprising a pressing block (1) and a storage compartment (2) for closing, characterized in that: The pressing block (1) comprises a closing cover (1-1) and a plurality of partition plate grooves (1-2) provided at the bottom end of the closing cover (1-1) along the radial direction of the closing cover (1-1); the closing cover (1-1) is cylindrical; the pressing block (1) further comprises a pressing block center hole (1-3) provided at the geometric center of the closing cover (1-1); the pressing block center hole (1-3) is a blind hole and faces one side of the storage bin (2); The pressing block (1) further comprises two sliding blocks (1-4) symmetrically mounted on the outside of the closing cover (1-1); The storage bin (2) comprises a coaxially sleeved storage bin cylinder (2-1) and a storage bin central cylinder (2-2), the storage bin cylinder (2-1) and the storage bin central cylinder (2-2) are both hollow cylindrical, and the storage bin central cylinder (2-2) is connected to the inner wall of the storage bin cylinder (2-1) via a partition plate (2-3); The bottom end of the storage bin cylinder (2-1) is also coaxially connected to a connecting cylinder (2-4); A plurality of vertical positioning grooves (2-5) are provided on the inner wall of the storage bin cylinder (2-1) along the busbar direction, and the vertical positioning grooves (2-5) cooperate with the slider (1-4); The number of the partition plates (2-3) corresponds to the number of the partition plate grooves (1-2); one end of the partition plate (2-3) is connected to the central tube (2-2) of the storage bin, and the other end is connected to the vertical positioning groove (2-5); The instant quantitative bottle cap for herbal beverage bottles further comprises a telescopic plate (3) and a release plate (4); The release plate (4) comprises a disc-shaped release plate body (4-1) and a release plate connecting rod (4-2) installed at the center position of one side of the release plate body (4-1); the release plate connecting rod (4-2) passes through the central tube (2-2) of the storage bin and is connected to the central hole (1-3) of the pressing block; The telescopic plate (3) is located between the release plate body (4-1) and the bottom end of the storage bin cylinder body (2-1). The telescopic plate (3) is a pair of semi-circular telescopic plates. The side of the telescopic plate (3) with a smaller arc length is movably connected to the storage bin center cylinder (2-2), and the side of the telescopic plate (3) with a larger arc length is movably connected to the storage bin cylinder body (2-1).
2. The instant quantitative bottle cap for herbal beverage bottles according to claim 1, characterized in that: An outer T-shaped groove (2-6) is provided on the outer wall of one side of the bottom end of the storage bin cylinder (2-1), and the outer T-shaped groove (2-6) is divided into two sections of the same length, and the two sections are not connected; An inner T-shaped groove (2-7) is provided on the inner wall of one side of the bottom end of the storage bin central tube (2-2). The inner T-shaped groove (2-7) is divided into two sections of the same length and is not connected to each other.
3. The instant quantitative bottle cap for herbal beverage bottle according to claim 2, characterized in that: The telescopic plate (3) comprises a first telescopic plate (3-1) and a second telescopic plate (3-2) having the same structure; The first telescopic plate (3-1) comprises a semi-circular telescopic plate body (3-1-1) and a plurality of reinforcing strips (3-1-2) installed on the bottom surface of the telescopic plate body (3-1-1) along the radial direction, the telescopic plate body (3-1-1) is made of flexible material, and the reinforcing strips (3-1-2) are made of rigid material; Outer T-shaped blocks (3-1-3) are installed at both ends of the outer edge of the upper surface of the first telescopic plate (3-1), and inner T-shaped blocks (3-1-4) are installed at both ends of the inner edge of the upper surface of the first telescopic plate (3-1). The outer T-shaped blocks (3-1-3) cooperate with the outer T-shaped slots (2-6), and the inner T-shaped blocks (3-1-4) cooperate with the inner T-shaped slots (2-7). The inner T-shaped block (3-1-4) and the outer T-shaped block (3-1-3) on the same side of the upper surface of the first telescopic plate (3-1) are connected to the end of the inner T-shaped slot (2-7) and the end of the outer T-shaped slot (2-6) respectively; The second telescopic plate (3-2) and the first telescopic plate (3-1) are structurally symmetrical.
4. The instant quantitative bottle cap for herbal beverage bottles according to claim 1, characterized in that: The partition plate grooves (1-2) are distributed at equal intervals; An annular groove (2-8) is further provided on the inner wall of the storage bin body (2-1) along the circumferential direction. The partition plate groove (1-2) that cooperates with the slider (1-4) passes through the annular groove (2-8), and the top end is flush with the storage bin body (2-1). The top end of the remaining partition plate groove (1-2) is flush with the lower surface of the annular groove (2-8). The bottom ends of the storage bin cylinder (2-1) and the storage bin central cylinder (2-2) are flush with each other, and the height of the storage bin central cylinder (2-2) is lower than the height of the storage bin cylinder (2-1); The height of the vertical positioning groove (2-5) is greater than the height of the partition plate (2-3); A return spring (2-9) is also installed in the vertical positioning groove (2-5), and the return spring (2-9) is in contact with the partition plate (2-3).
5. The instant quantitative bottle cap for herbal beverage bottles according to claim 1, characterized in that: Positioning blocks (2-10) are arranged circumferentially on the outer wall of the storage bin cylinder (2-1), and the positions of the positioning blocks (2-10) correspond to the positions of the vertical positioning grooves (2-5).
6. The instant quantitative bottle cap for herbal beverage bottles according to claim 1, characterized in that: The release plate (4) further comprises a release plate outer ring (4-3) mounted on the outer edge of the release plate body (4-1), and the release plate outer ring (4-3) contacts the inner wall of the connecting cylinder (2-4); The release plate outer ring (4-3) is made of flexible material.
7. The instant quantitative bottle cap for herbal beverage bottle according to claim 1, characterized in that: The top surface of the pressing block (1) is also provided with a long strip-shaped indicator needle (1-5), and both ends of the long strip-shaped indicator needle (1-5) point to the slider (1-4) respectively; A pressing block thread is provided on the inner wall of the pressing block center hole (1-3), and a release plate thread is also provided on the outer side of the top end of the release plate connecting rod (4-2), and the release plate thread cooperates with the pressing block thread.