Accurate metering container for blending roxburgh rose wine

By designing a prickly pear wine blending container with a dual measuring structure and magnetic connection, the problems of low accuracy and single function of traditional measuring containers have been solved, realizing the precision and high efficiency of prickly pear wine blending and reducing the risk of wine loss and contamination.

CN224051394UActive Publication Date: 2026-03-27JUNLIAN COUNTY KAIKAIHONG AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional measuring containers have low measurement accuracy and limited functionality, resulting in large measurement errors, complex operations, low efficiency, and easy loss and contamination of the wine during the prickly pear wine blending process.

Method used

A precision metering container comprising a measuring cylinder, an observation tube, and an auxiliary mixing box has been designed. Through a dual measuring structure and magnetic connection, it enables precise measurement and independent mixing of liquid volume, reducing the number of liquid transfers and improving measurement accuracy and production efficiency.

Benefits of technology

It improves the precision and efficiency of prickly pear wine blending, reduces wine loss and contamination risks, ensures stable product quality, and is easy to clean and handle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The container comprises a measuring cylinder, the top of the measuring cylinder is opened to form a measuring and blending cavity, the measuring cylinder is provided with a liquid inlet pipeline and a liquid inlet funnel, and the bottom of the measuring cylinder is provided with a liquid outlet pipeline and a first valve. The top of the measuring cylinder is clamped with a ferromagnetic top cap which is magnetically connected with an observation tube, and an indicating rod, a floating rod, a floating block and other structures are arranged in the observation tube. A liquid level pipe is arranged on the front side of the measuring cylinder, an auxiliary blending box is slidably sleeved outside the measuring cylinder, and a plurality of blending compartments are arranged in the auxiliary blending box and communicated with the measuring cylinder through connecting pipes. According to the container, various scale marks are arranged, the liquid level pipe and the observation pipe are matched for measurement, the liquid volume can be accurately metered, all the parts can be detached and cleaned, the auxiliary blending box facilitates blending of various kinds of wine, and the metering precision and operation convenience of blending of the rosa roxburghii tratt wine are effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the prickly pear wine blending technical field, specifically in kind of prickly pear wine blending accurate measurement container. BACKGROUND

[0002] In the production and blending process of prickly pear wine, accurate measurement of the amount of various raw materials and additives is crucial to ensure the quality and taste consistency of prickly pear wine.

[0003] Traditional measurement containers, such as ordinary measuring cylinders, measuring cups, etc., have many limitations.

[0004] On the one hand, the measurement accuracy is limited, which cannot meet the demand for accurate measurement in prickly pear wine blending. Small measurement errors will be amplified in large-scale production, resulting in unstable product quality.

[0005] On the other hand, traditional measurement containers have single functions. When blending multiple wine liquids, independent measurement and accurate mixing of each component cannot be achieved. Frequent container replacement or complex transfer operations are required, which not only increases the operation steps and time cost, but also easily causes loss and contamination of wine liquid during the transfer process, affecting the quality and production efficiency of prickly pear wine. UTILITY MODEL CONTENT

[0006] To solve the above technical problems, the present application solves the problem of low measurement accuracy and single function of traditional measurement containers in the prior art.

[0007] In order to achieve the above purpose, the technical scheme adopted by the present application is as follows: a prickly pear wine blending accurate measurement container, comprising a measuring cylinder, the measuring cylinder is a measuring and blending cavity with an open top, the top surface of the measuring cylinder is provided with a liquid inlet pipeline in communication with the measuring and blending cavity, the top of the liquid inlet pipeline is provided with a liquid inlet funnel in communication;

[0008] A liquid outlet pipeline in communication with the measuring and blending cavity is arranged on the right side surface of the bottom of the measuring cylinder, and the output end of the liquid outlet pipeline is provided with a first valve;

[0009] A top cap made of ferromagnetic material is clamped on the top of the measuring cylinder, a first installation groove is formed in the center position of the upper surface of the top cap, and a first through hole in communication with the measuring and blending cavity is formed in the upper surface of the first installation groove;

[0010] A viewing tube is magnetically connected to the upper surface of the first installation groove, the viewing tube is a cylindrical installation cavity with an open top and made of transparent material, a first installation hole with a diameter matching the first through hole is formed in the inner bottom surface of the cylindrical installation cavity, and a viewing tube cap is threadedly connected to the top of the viewing tube, a second installation hole with a diameter matching the first through hole is formed in the viewing tube cap,

[0011] A indicating rod is sleeved in the cylindrical mounting cavity, a cylindrical limiting block is arranged at the bottom surface center position of the indicating rod, a indicating ring is fixedly sleeved on the outer peripheral wall surface of the cylindrical limiting block, the outer peripheral edge of the indicating ring is attached to the inner peripheral wall surface of the cylindrical mounting cavity, a vertically downward arranged float rod is arranged at the bottom surface center position of the cylindrical limiting block, the bottom of the float rod sequentially passes through the first mounting hole, the first through hole and extends to the bottom position of the measurement and adjustment cavity, and the bottom of the float rod is provided with a float in a threaded connection mode.

[0012] In order to better realize the utility model, further, the annular bottom surface of the observation tube is provided with an annular groove, a magnet is fixedly connected in the annular groove, and the first mounting groove and the magnet are magnetically connected with each other.

[0013] In order to better realize the utility model, further, the front side outer surface of the measurement cylinder is provided with a second mounting groove, a second through hole in communication with the measurement and adjustment cavity is arranged at the upper and lower sides of the bottom surface in the second mounting groove, and the second through hole at the lower side is tangent to the inner bottom surface of the measurement and adjustment cavity.

[0014] The two second through holes are communicated through a liquid level tube, the pipeline part between the two ends of the liquid level tube is vertically arranged, and the outer peripheral wall surface thereof is engraved with a first scale line and a first scale value matched with the first scale line.

[0015] In order to better realize the utility model, further, the cylindrical limiting block is engraved with a second scale line and a second scale value matched with the second scale line on the outer peripheral wall surface of the upper side of the indicating ring.

[0016] The outer peripheral wall surface of the observation tube is engraved with a third scale line and a third scale value matched with the third scale line.

[0017] And, within the height range of the cylindrical limiting block, the second scale line and the third scale line are completely overlapped in the visual angle direction perpendicular to the outer peripheral wall surface of the cylindrical limiting block, and the second scale value and the third scale value in this visual angle direction are also completely overlapped.

[0018] To better realize this utility model, the measuring container further includes an auxiliary mixing box that is slidably sleeved outside the measuring cylinder. The auxiliary mixing box is U-shaped in top view. The upper surface of the U-shaped auxiliary mixing box has multiple independent compartments with open tops, namely: a first mixing compartment, a second mixing compartment, a third mixing compartment, and a fourth mixing compartment. The first mixing compartment, the second mixing compartment, the third mixing compartment, and the fourth mixing compartment are respectively connected to a third through hole corresponding to one of the four outer peripheral walls of the measuring cylinder (front, back, left, and right) through a connecting pipe. A second valve is provided on the connecting pipe.

[0019] To better realize this utility model, a suspension seat is further provided on the outer peripheral walls of the left and right sides of the measuring cylinder, and a limiting part is provided at the bottom of the suspension seat;

[0020] The auxiliary mixing box has T-shaped guide grooves on its inner peripheral walls on both the left and right sides. Each suspension seat is slidably engaged with one of the T-shaped guide grooves, and the bottom surface of the T-shaped guide grooves vertically abuts against the top surface of the limiting part.

[0021] To better realize this utility model, the auxiliary mixing box is made of transparent material, and the outer walls of the first mixing compartment, the second mixing compartment, the third mixing compartment and the fourth mixing compartment are all engraved with a fourth scale line and a fourth scale value matching the fourth scale line.

[0022] The technical solution provided by this utility model has the following advantages compared with the prior art:

[0023] 1. In this utility model, through the dual measurement structure of the observation tube and the liquid level tube, when the liquid volume in the mixing cavity is different, the two work together and verify each other. When the liquid is too low and the float cannot float, the liquid level tube can complete the measurement independently; when the float floats, the measurement values ​​of the observation tube and the liquid level tube can be mutually verified. If the difference between the two is less than a preset threshold, the measurement accuracy is considered high, effectively improving the accuracy and reliability of the measurement, ensuring the precision of the prickly pear wine blending ratio, and guaranteeing the stability of product quality.

[0024] 2. In this invention, the auxiliary mixing box allows for independent measurement of different wines when mixing various wines, with each wine poured into its corresponding compartment. The mixing into the measuring cylinder is then controlled via connecting pipes and valves, simplifying the mixing process, reducing the number of wine transfers, minimizing wine loss and contamination risks, and improving production efficiency. Furthermore, the detachable design of the measuring cylinder, observation tube, and auxiliary mixing box facilitates cleaning, prevents residual wine from interfering with subsequent mixing, and ensures the accuracy and hygiene of each mixing operation.

[0025] 3. The utility model discloses, the measuring cylinder is connected through magnetic attraction with the observation tube, and the magnetic attraction of magnet guarantees that the observation tube does not separate from the measuring cylinder in the ascending process of float rod, ensures the stability of the measuring process, and the component such as indicating rod realizes vertical positioning through accurate aperture matching, and the contact area between each other is reduced, and the frictional resistance is reduced, so that the measurement is more sensitive, accurate.

[0026] 4. The utility model discloses, the material quality of each component is reasonable, such as indicating rod, float rod, float block adopts polystyrene or polypropylene etc. Light material, reduces the influence of self weight to the measurement, and further improves the measurement accuracy. The scale line is set according to international or national standard, guarantees the accuracy and uniformity of the measuring tool, and is convenient for operating personnel to read and use. BRIEF DESCRIPTION OF DRAWINGS

[0027] In order to more clearly illustrate the technical scheme in the embodiment of the present application or prior art, the following will briefly introduce the drawing needed to be used in the embodiment or prior art description, obviously, the drawing in the following description is only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained according to these drawings without paying creative labor.

[0028] Figure 1 It is the whole structure schematic diagram of the utility model;

[0029] Figure 2 It is the cooperation schematic diagram of the measuring cylinder and the observation tube;

[0030] Figure 3 It is the structure schematic diagram of the measuring cylinder;

[0031] Figure 4 It is the top view of Figure 2 ;

[0032] Figure 5 It is the front view of Figure 2 ;

[0033] Figure 6 It is the section view at A-A of Figure 5 ;

[0034] Figure 7 It is the enlarged view of M of Figure 6 ;

[0035] Figure 8 It is the structure schematic diagram of auxiliary deployment box;

[0036] Figure 9 It is the top view of Figure 8 ;

[0037] Figure 10 It is the bottom view of Figure 8 ;

[0038] Figure 11 Figure 1 is a schematic view of the cooperation between the measuring cylinder and the auxiliary deployment box.

[0039] BRIEF DESCRIPTION OF DRAWINGS 101-measuring cylinder; 102-liquid inlet pipe; 103-liquid inlet funnel; 104-first installation groove; 105-first through hole; 106-second installation groove; 107-second through hole; 108-third through hole; 109-hanging seat; 110-liquid outlet pipe; 111-first valve; 112-top cover cap; 113-level meter; 114-liquid level pipe; 201-observation tube; 202-observation tube cover cap; 203-indicating rod; 204-cylindrical limiting block; 205-indicating ring; 206-float rod; 207-magnet; 208-float; 301-auxiliary deployment box; 302-first deployment compartment; 303-second deployment compartment; 304-third deployment compartment; 305-fourth deployment compartment; 306-connection pipe; 307-second valve; 308-T-shaped guide groove. DETAILED DESCRIPTION

[0040] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0041] Therefore, the detailed description of the embodiments of the present application provided below in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative labor are within the scope of protection of the present application.

[0042] It should be noted that: similar reference numerals and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings.

[0043] In the description of this application, it should be noted that the use of terms such as "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer" to indicate orientation or positional relationships is based on the orientation or positional relationships shown in the accompanying drawings, or the orientation or positional relationships commonly used when the product is in use. These terms are used solely for the convenience of describing this application and for 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 application. Furthermore, the use of terms such as "first" and "second" in the description of this application is only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0044] Furthermore, the use of terms such as "horizontal" and "vertical" in the description of this application does not imply that the component is required to be absolutely horizontal or suspended, but rather that it may be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but rather that it may be slightly tilted.

[0045] In the description of this application, it should also be noted that, unless otherwise expressly specified and limited, the terms "set up," "install," "connect," and "link" 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 between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0046] Example 1

[0047] like Figures 1 to 11 As shown, a precise measuring container for blending prickly pear wine includes a measuring cylinder 101, which is a measuring and blending cavity with an open top. The top surface of the measuring cylinder 101 is provided with a liquid inlet pipe 102 that communicates with the measuring and blending cavity. The top of the liquid inlet pipe 102 is connected to a liquid inlet funnel 103.

[0048] The measuring cylinder 101 has a liquid outlet pipe 110 connected to the measuring and adjusting cavity on the right side of the bottom, and a first valve 111 is provided at the output end of the liquid outlet pipe 110.

[0049] The top of the measuring cylinder 101 is snapped with a top cap 112 made of ferromagnetic material. A first mounting groove 104 is provided at the center of the upper surface of the top cap 112. A first through hole 105 communicating with the measuring and adjusting cavity is provided on the upper surface of the first mounting groove 104.

[0050] The upper surface of the first installation groove 104 is magnetically connected with an observation tube 201, which is a top-opened cylindrical installation cavity made of transparent material, the inner bottom surface of the cylindrical installation cavity is provided with a first installation hole matching in diameter with the first through hole 105, the top of the observation tube 201 is threadedly connected with an observation tube cap 202, the observation tube cap 202 is provided with a second installation hole matching in diameter with the first through hole 105,

[0051] A indicating rod 203 is sleeved in the cylindrical installation cavity, the bottom surface of the indicating rod 203 is provided with a cylindrical limiting block 204 at the center position, the outer peripheral wall surface of the cylindrical limiting block 204 is fixedly sleeved with an indicating ring 205, the outer peripheral edge of the indicating ring 205 is in abutment with the inner peripheral wall surface of the cylindrical installation cavity, the bottom surface of the cylindrical limiting block 204 is provided with a vertically downward arranged float rod 206 at the center position, the bottom of the float rod 206 sequentially passes through the first installation hole, the first through hole 105 and extends to the bottom position of the measurement and adjustment cavity, the bottom of the float rod 206 is provided with a float block 208 in a threaded connection manner.

[0052] As shown in Figures 1 to 11 , in the embodiment, the annular bottom surface of the observation tube 201 is provided with an annular groove, the annular groove is fixedly connected with a magnet 207, the first installation groove 104 and the magnet 207 are magnetically connected with each other.

[0053] As shown in Figures 1 to 11 , in the embodiment, the front side outer surface of the measurement cylinder 101 is provided with a second installation groove 106, the upper and lower sides of the inner bottom surface of the second installation groove 106 are respectively provided with a second through hole 107 in communication with the measurement and adjustment cavity, the second through hole 107 at the lower side is tangent to the inner bottom surface of the measurement and adjustment cavity.

[0054] The two second through holes 107 are communicated through a liquid level tube 114, the pipeline part between the two ends of the liquid level tube 114 is vertically arranged, and the outer peripheral wall surface thereof is engraved with a first scale line and a first scale value matching the first scale line.

[0055] As shown in Figures 1 to 11 , in the embodiment, the outer peripheral wall surface of the indicating ring 205 above the cylindrical limiting block 204 is engraved with a second scale line and a second scale value matching the second scale line.

[0056] The outer peripheral wall surface of the observation tube 201 is engraved with a third scale line and a third scale value matching the third scale line.

[0057] Furthermore, within the height range of the cylindrical limiting block 204, the second scale line and the third scale line completely overlap in the viewing direction perpendicular to the outer peripheral wall of the cylindrical limiting block 204, and the second scale value and the third scale value also completely overlap in this viewing direction.

[0058] like Figures 1 to 11 As shown, in this embodiment, the measuring container also includes an auxiliary mixing box 301 that is slidably sleeved on the outside of the measuring cylinder 101. The auxiliary mixing box 301 is U-shaped in the top view. The U-shaped upper surface of the auxiliary mixing box 301 has multiple independent compartments with open tops, namely: a first mixing compartment 302, a second mixing compartment 303, a third mixing compartment 304, and a fourth mixing compartment 305. The first mixing compartment 302, the second mixing compartment 303, the third mixing compartment 304, and the fourth mixing compartment 305 are respectively connected to a third through hole 108 corresponding to the front, back, left, and right outer peripheral walls of the measuring cylinder 101 through a connecting pipe 306. A second valve 307 is provided on the connecting pipe 306.

[0059] like Figures 1 to 11 As shown, in this embodiment, a suspension seat 109 is respectively provided on the outer peripheral walls of the left and right sides of the measuring cylinder 101, and a limiting part is provided at the bottom of the suspension seat 109;

[0060] The auxiliary mixing box 301 has T-shaped guide grooves 308 on its inner peripheral walls on both the left and right sides. Each suspension seat 109 is slidably engaged with one of the T-shaped guide grooves 308, and the bottom surface of the T-shaped guide groove 308 abuts vertically against the top surface of the limiting part.

[0061] like Figures 1 to 11 As shown, in this embodiment, the auxiliary mixing box 301 is made of transparent material, and the outer walls of the first mixing compartment 302, the second mixing compartment 303, the third mixing compartment 304 and the fourth mixing compartment 305 are all engraved with a fourth scale line and a fourth scale value matching the fourth scale line.

[0062] The magnetic attraction of magnet 207 ensures that the observation tube 201 will not detach from the first mounting groove 104 during the ascent of float 206. Indicator rod 203, float 206, and float block 208 can all be made of polystyrene or polypropylene to reduce their weight. The vertical height of the level tube 114 is greater than half the height of the measuring and adjusting cavity, but less than the height of the measuring and adjusting cavity.

[0063] The first scale line and the first scale value, the second scale line and the second scale value, the third scale line and the third scale value, and the fourth scale line and the fourth scale value all adopt the specific requirements of the precision, spacing, and clarity of the gauge scale line specified by ISO (International Organization for Standardization) or GB (China National Standard) to ensure the accuracy and reliability of the gauge and ensure the uniformity of production.

[0064] Working principle:

[0065] The three parts of the measuring cylinder 101, the observation tube 201, and the auxiliary blending box 301 are convenient to disassemble and clean.

[0066] The inner diameter of the first mounting hole and the second mounting hole matches the outer diameter of the indicating rod 203, and the inner diameter of the first through hole 105 matches the outer diameter of the float rod 206, achieving vertical positioning; at the same time, the outer peripheral wall surface of the indicating rod 203 and the outer peripheral wall surface of the cylindrical limiting block 204 are not in contact with the inner peripheral wall surface of the observation tube 201, reducing the contact area between them.

[0067] Within the height range of the cylindrical limiting block 204, the second scale line and the third scale line completely overlap in the visual angle direction perpendicular to the outer peripheral wall surface of the cylindrical limiting block 204, and the second scale value and the third scale value in this visual angle direction also completely overlap, the bottom surface of the float block 208 is in contact with the inner bottom surface of the measuring blending cavity, and at the same time, it can be verified whether there is liquid in the measuring blending cavity before use.

[0068] When the liquid in the measuring blending cavity is too little and the float block 208 cannot be floated, the volume of the liquid in the measuring blending cavity can be measured through the liquid level tube 114, thereby improving the practicability of the measuring container. When the float block 208 is floated, the third scale value measured on the observation tube 201 and the first scale value measured on the liquid level tube 114 can also be mutually verified, and when the absolute value obtained by subtracting the two measured scale values (the first scale value and the third scale value) from each other is less than a predetermined threshold value (the threshold value is determined according to the actual situation), it is determined that the measurement accuracy is high.

[0069] When in use, the spirit level 113 is observed to ensure that the measuring cylinder 101 is in a horizontal state, thereby improving the measurement accuracy of the measuring container.

[0070] When multiple baijiu are mixed with each other, the one with the largest content is first poured into the measuring mixing cavity through the liquid inlet funnel 103 to obtain the required volume, then according to the type of the mixed baijiu, one or more of the first mixing compartment 302, the second mixing compartment 303, the third mixing compartment 304, and the fourth mixing compartment 305 are selected, the other baijiu to be mixed is poured into the corresponding compartment, and after obtaining the required volume, the corresponding second valve 307 is opened to mix the other baijiu into the first baijiu in the measuring mixing cavity.

[0071] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Those skilled in the art can make various modifications and changes to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A precise measurement container for a wine made from the roxburgh rose, characterized in that: Including the measuring cylinder (101), the measuring cylinder (101) is the measuring deployment cavity with the top opening, the top surface of the measuring cylinder (101) is provided with the liquid inlet pipeline (102) communicated with the measuring deployment cavity, the top of the liquid inlet pipeline (102) is provided with the liquid inlet funnel (103) communicated, The right side of the bottom of the measuring cylinder (101) is provided with the liquid outlet pipeline (110) communicated with the measuring deployment cavity, and the output end of the liquid outlet pipeline (110) is provided with the first valve (111); The top of the measuring cylinder (101) is clamped with the top cover cap (112) made of ferromagnetic material, the upper surface of the top cover cap (112) is provided with the first installation groove (104) at the center position, and the upper surface of the first installation groove (104) is provided with the first through hole (105) communicated with the measuring deployment cavity; The upper surface of the first installation groove (104) is magnetically connected with the observation tube (201), the observation tube (201) is a cylindrical installation cavity with the top opening and made of transparent material, the inner bottom surface of the cylindrical installation cavity is provided with the first installation hole matched with the diameter of the first through hole (105), and the top of the observation tube (201) is threadedly connected with the observation tube cover cap (202), the observation tube cover cap (202) is provided with the second installation hole matched with the diameter of the first through hole (105), The cylindrical installation cavity is sleeved with the indicating rod (203), the bottom surface center position of the indicating rod (203) is provided with the cylindrical limiting block (204), the outer peripheral wall surface of the cylindrical limiting block (204) is fixedly sleeved with the indicating ring (205), the outer peripheral edge of the indicating ring (205) is attached to the inner peripheral wall surface of the cylindrical installation cavity, the bottom surface center position of the cylindrical limiting block (204) is provided with the float rod (206) arranged vertically downward, the bottom of the float rod (206) sequentially passes through the first installation hole, the first through hole (105), and extends to the bottom position of the measuring deployment cavity, and the bottom of the float rod (206) is provided with the float block (208) in a threaded connection manner.

2. The precise measurement container for deploying the wine of Malus hallacacaba according to claim 1, wherein: The annular bottom surface of the observation tube (201) is provided with the annular groove, the annular groove is fixedly connected with the magnet (207), and the first installation groove (104) and the magnet (207) are magnetically connected with each other.

3. The precise measurement container for deploying a wine of Malus hallacacca according to claim 2, characterized in that: The front outer surface of the measuring cylinder (101) is provided with the second installation groove (106), the upper and lower sides of the inner bottom surface of the second installation groove (106) are respectively provided with one second through hole (107) communicated with the measuring deployment cavity, the second through hole (107) at the lower side is tangent to the inner bottom surface of the measuring deployment cavity; The two second through holes (107) are communicated through the liquid level tube (114), the pipeline portion between the two ends of the liquid level tube (114) is arranged vertically, and the outer peripheral wall surface thereof is engraved with the first scale line and the first scale value matched with the first scale line.

4. The precise measurement container for deploying the wine of Malus hallacacaba according to claim 3, wherein: The cylindrical limiting block (204) is located on the outer peripheral wall surface above the indicator ring (205) and has a second scale line and a second scale value matching the second scale line engraved on it; The outer peripheral wall of the observation tube (201) is engraved with a third scale line and a third scale value that matches the third scale line; Furthermore, within the height range of the cylindrical limiting block (204), the second scale line and the third scale line completely overlap in the viewing direction perpendicular to the outer peripheral wall of the cylindrical limiting block (204), and the second scale value and the third scale value also completely overlap in this viewing direction.

5. The precise measurement container for the deployment of a wine of the Malus hallacacca according to claim 4, characterized in that: The measuring container also includes an auxiliary mixing box (301) that is slidably sleeved outside the measuring cylinder (101). The auxiliary mixing box (301) is shaped like a U-shape in a top view. The upper surface of the U-shape of the auxiliary mixing box (301) has multiple independent compartments with open tops, namely: a first mixing compartment (302), a second mixing compartment (303), a third mixing compartment (304), and a fourth mixing compartment (305). The first mixing compartment (302), the second mixing compartment (303), the third mixing compartment (304), and the fourth mixing compartment (305) are respectively connected to a third through hole (108) corresponding to the front, back, left, and right outer peripheral walls of the measuring cylinder (101) through a connecting pipe (306). A second valve (307) is provided on the connecting pipe (306).

6. The precise measurement container for deploying a wine of the Malus hallacacca according to claim 5, characterized in that: A suspension seat (109) is respectively provided on the outer peripheral walls of the left and right sides of the measuring cylinder (101), and a limiting part is provided at the bottom of the suspension seat (109); The auxiliary mixing box (301) has T-shaped guide grooves (308) on its inner peripheral walls on both the left and right sides. Each of the suspension seats (109) is slidably engaged with one of the T-shaped guide grooves (308), and the bottom surface of the T-shaped guide groove (308) is vertically abutted against the top surface of the limiting part.

7. The precise measuring container for deploying a wine of Malus hallacacca according to claim 5 or 6, characterized in that: The auxiliary mixing box (301) is made of transparent material. The outer walls of the first mixing compartment (302), the second mixing compartment (303), the third mixing compartment (304) and the fourth mixing compartment (305) are all engraved with a fourth scale line and a fourth scale value that matches the fourth scale line.