Wine sampling and monitoring device
By designing a wine sampling and monitoring device, the problem of sampling from different parts of the fermentation tank was solved, enabling accurate multi-point sampling and temperature detection within the fermentation tank, thus improving the quality of wine production.
Patent Information
- Application Number
- CN202520019970.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-06
AI Technical Summary
In existing technologies, sampling is performed through a sampling valve located at the bottom of the fermentation tank, resulting in limited data and an inability to comprehensively monitor the wine's condition in different parts of the fermentation tank, thus affecting the quality of the wine.
A wine sampling and monitoring device was designed, including a sampling tube, a piston, a telescopic fixed-depth tube, and a temperature detector. By adjusting the length of the telescopic fixed-depth tube and the sliding of the piston, wine samples can be taken from different locations inside the fermentation tank. The device is equipped with a filter and cleaning components to filter the pulp and skin. The accuracy of temperature detection is improved by using a transparent sampling tube and an insulation layer.
This technology enables the sampling of wine from different locations within the fermentation tank, improving brewing quality, enhancing the accuracy and convenience of temperature monitoring, reducing wine temperature loss, and improving the real-time nature and reliability of the data.
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Figure CN223756406U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of liquid sampling equipment for wine brewing, and in particular to a wine sampling and monitoring device. Background Technology
[0002] Wine is a fruit-based beverage made from grapes through fermentation. It is rich in nutrients and has certain health benefits. Wine can regulate metabolism, promote blood circulation, prevent cholesterol buildup, and also has diuretic, liver-stimulating, and anti-aging effects. During the winemaking process, samples of the original wine are taken to monitor the process.
[0003] In related technologies, sampling is usually performed through a sampling valve located at the bottom of the fermentation tank to monitor the temperature or color of the wine. However, the wine in different parts of the tank varies in terms of temperature, color, or indicative substances. Sampling from the sampling valve at the bottom of the fermentation tank results in relatively limited data collection, which is not convenient for staff to analyze the wine in the fermentation tank. Utility Model Content
[0004] In view of this, the present invention aims to provide a wine sampling and monitoring device to facilitate the sampling of wine at different locations within the fermentation tank.
[0005] To achieve the above objectives, the technical solution of this utility model is implemented as follows:
[0006] A wine sampling and monitoring device, comprising:
[0007] A sampling tube having a sampling hole;
[0008] A piston is placed inside the sampling cylinder and slides along the axial direction of the sampling cylinder to form a liquid storage chamber with variable volume and communicating with the sampling hole;
[0009] A telescopic depth-fixed tube, the telescopic depth-fixed tube being adjustable in length along its axial direction and maintained at that length, one end of the telescopic depth-fixed tube being connected to the sampling cylinder.
[0010] Furthermore, an adjusting component is connected to the piston, the adjusting component including: a connecting plate, fixedly connected to the sampling cylinder; and a rotating rod, the rotating rod passing through the connecting plate and threadedly connected to the connecting plate, and rotatably connected to the piston, the rotating rod being axially aligned with the sampling cylinder.
[0011] Further, the adjusting member further comprises a connecting head coaxially connected to the rotating rod; and a telescopic sleeve, which is telescopic along its axial direction, and the small end of the telescopic sleeve is sleeved on the connecting head, so that the connecting head rotates with the telescopic sleeve when the telescopic sleeve rotates.
[0012] Further, a filter cartridge is fixed on the sampling cylinder at the sampling hole.
[0013] Further, the filter cartridge is a circular cylinder, and the filter cartridge is coaxial with the rotating rod; a cleaning part is connected to the rotating rod, and the cleaning part comprises a cleaning strip abutting against the outer wall of the filter cartridge in the axial direction of the filter cartridge, and a transmission strip connecting the cleaning strip and the rotating rod; and the telescopic depth pipe is fixed to the bottom of the filter cartridge and is spaced from the sampling cylinder.
[0014] Further, a plurality of cleaning strips are arranged, and the plurality of cleaning strips are distributed in the circumferential direction of the filter cartridge; and a sleeve ring is connected to the plurality of cleaning strips and is connected to the transmission strip.
[0015] Further, a temperature detector is arranged in the liquid storage cavity.
[0016] Further, the sampling cylinder is made of transparent material.
[0017] Further, an insulation layer is formed on the sampling cylinder, and the insulation layer is absent at the projection of the temperature detector on the sampling cylinder to form a perspective window.
[0018] Compared with the prior art, the grape wine sampling and monitoring device has the following advantages:
[0019] The grape wine sampling and monitoring device adjusts the depth of the sampling cylinder into the grape wine fermentation tank by adjusting the length of the telescopic depth pipe, and the grape wine is extracted from the sampling hole into the liquid storage cavity by the piston, so that the grape wine sampling and monitoring of different positions in the fermentation tank are realized, the brewing conditions of the grape wine in different parts of different fermentation tanks are obtained, and the brewing quality of the grape wine is improved.
[0020] Further, the rotating rod connected to the piston and threadedly connected to the connecting plate is rotated to drive the piston to slide along the axial direction of the sampling cylinder, so that the size of the liquid storage cavity is adjusted, and the grape wine in the fermentation tank is extracted into the liquid storage cavity; and the telescopic sleeve sleeved on the connecting head is arranged, so that the staff can conveniently rotate the rotating rod when the sampling cylinder is located at different positions of the fermentation tank.
[0021] In addition, the filter cylinder can filter the fruit flesh or peel in the wine brewing process, and through the connection of the transmission bar on the rotating rod, the cleaning bar can rotate along the circumference of the filter cylinder under the transmission of the transmission bar when the rotating rod rotates, and the peel or fruit flesh adsorbed on the surface of the filter cylinder can be scraped off, so that the sampling smoothness of the wine is improved.
[0022] In addition, the temperature detector arranged in the liquid storage cavity can detect the temperature of the wine in time during the sampling process, so that the temperature loss of the wine is reduced compared with the temperature measurement after the wine is sampled and poured out, and the accuracy of the temperature monitoring data is improved. The sampling cylinder is made of transparent material, so that the temperature detector can be directly read in the sampling cylinder, without the need of taking out the temperature detector for reading, and the monitoring convenience is improved; and the color, turbidity and other characteristics of the wine in the sampling cylinder can be observed.
[0023] Meanwhile, by arranging the heat preservation layer outside the sampling cylinder, the temperature influence of the wine in other parts of the fermentation tank on the sampling cylinder and the sample in the sampling cylinder before and after sampling is reduced, so that the accuracy of the temperature detected by the temperature detector is improved, and the data is helpful for improving the quality of the wine. BRIEF DESCRIPTION OF DRAWINGS
[0024] The accompanying drawings, which form a part of the present application, are intended to provide further understanding of the present application, and the illustrative embodiments of the present application and their description serve the purpose of explaining the present application. In the drawings:
[0025] Figure 1 It is a schematic diagram of the overall structure of the embodiment of the present application;
[0026] Figure 2 It is a schematic diagram of the structure of part of the embodiment of the present application;
[0027] Figure 3 It is an assembly diagram of the rotating rod and the piston according to the embodiment of the present application;
[0028] Figure 4 It is a sectional view of the sampling cylinder according to the embodiment of the present application.
[0029] Explanation of reference signs:
[0030] 1, sampling cylinder; 101, sampling hole; 1a, liquid storage cavity;
[0031] 2, piston;
[0032] 3, telescopic depth pipe;
[0033] 4, adjusting piece; 401, connecting plate; 402, rotating rod; 402a, sliding groove; 403, connecting head; 404, telescopic sleeve;
[0034] 5, filter cartridge;
[0035] 6, cleaning part; 601, cleaning strip; 602, transmission strip; 603, collar;
[0036] 7, temperature detector;
[0037] 8, heat preservation layer; 8a, perspective window;
[0038] 9, sliding sleeve; 901, sliding block. DETAILED DESCRIPTION
[0039] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.
[0040] In the description of the utility model, it should be noted that if the terms such as 'up', 'down', 'inner', 'outer' indicating orientation or positional relationship appear, it is based on the orientation or positional relationship shown in the drawing, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as the restriction on the utility model. In addition, if the terms such as 'first','second' appear, they are also only for the description purpose, and cannot be understood as indicating or implying relative importance.
[0041] In addition, in the description of the utility model, unless otherwise explicitly limited, the terms'mounting', 'connecting', 'connection', 'connecting piece' should be understood in a broad sense. For example, it can be fixed connection, or detachable connection, or integrally connected, can be mechanical connection, or electrical connection, can be directly connected, or indirectly connected through intermediate medium, or the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood in combination with specific circumstances.
[0042] The utility model will be described in detail below with reference to the drawings and in combination with embodiments.
[0043] The embodiment relates to a wine sampling monitoring device, so that the wine body at different positions in a fermentation tank is sampled, and the brewing quality of the wine is improved.
[0044] Overall structure, such as Figures 1 to 4As shown in the drawings, the wine sampling monitoring device comprises a sampling cylinder 1, a piston 2 and a telescopic depth pipe 3; the sampling cylinder 1 has a sampling hole 101; the piston 2 is arranged in the sampling cylinder 1 and slides along the axial direction of the sampling cylinder 1 to form a liquid storage cavity 1a with variable volume and in communication with the sampling hole 101; the telescopic depth pipe 3 can be adjusted in length along the axial direction and is kept at the adjusted length, and one end of the telescopic depth pipe 3 is connected to the sampling cylinder 1.
[0045] The depth of the sampling cylinder 1 into the wine fermentation tank is adjusted by adjusting the length of the telescopic depth pipe 3, and the wine is drawn from the sampling hole 101 into the liquid storage cavity 1a by the piston 2, so that the wine at different positions in the fermentation tank is sampled and monitored, the brewing conditions of the wine at different positions in different fermentation tanks are obtained, and the wine brewing quality is improved.
[0046] Based on the overall introduction above, as shown in the drawings, Figure 1 As shown in the drawings, the telescopic depth pipe 3 can be adjusted in length along the axial direction and is kept at the adjusted length, and one end of the telescopic depth pipe 3 is connected to the sampling cylinder 1.
[0047] It can be understood that, in order to facilitate adjustment of the size of the liquid storage cavity 1a after the sampling cylinder 1 is located in the fermentation tank, the piston 2 is connected with an adjusting member 4, as shown in the drawings, Figures 2 to 4 As shown in the drawings, the adjusting member 4 comprises a connecting plate 401 and a rotating rod 402; the connecting plate 401 is fixedly connected to the sampling cylinder 1; the rotating rod 402 penetrates through the connecting plate 401 and is threadedly connected with the connecting plate 401, and is rotationally connected with the piston 2, and the rotating rod 402 is in the same axial direction as the sampling cylinder 1. By rotating the rotating rod 402 which is rotationally connected with the piston 2 and threadedly connected with the connecting plate 401, the piston 2 is driven to slide along the axial direction of the sampling cylinder 1, so as to adjust the size of the liquid storage cavity 1a and then draw the wine in the fermentation tank into the liquid storage cavity 1a.
[0048] Based on the setting of the rotating rod 402, in order to shorten the length of the rotating rod 402 and achieve the rotating rod 402 rotating to adjust the size of the liquid storage cavity 1a when the sampling cylinder 1 is located at different depths of the fermentation tank, the adjusting part 4 of the embodiment further comprises a connecting head 403 and a telescopic sleeve 404. The connecting head 403 is coaxially fixed on the rotating rod 402. The telescopic sleeve 404 can be telescoped along its axial direction, and the small end of the telescopic sleeve 404 can be sleeved on the connecting head 403, so as to rotate the telescopic sleeve 404 and the connecting head 403. By setting the telescopic sleeve 404 which can be sleeved on the connecting head 403, the staff can still conveniently rotate the rotating rod 402 when the sampling cylinder 1 is located at different positions of the fermentation tank.
[0049] As an implementable way, the connecting head 403 can be prismatic, such as hexagonal prism or quadrangular prism. When thus arranged, the small end of the telescopic sleeve 404 has a containing groove which can be sleeved outside the connecting head 403, and the connecting head 403 is detachably connected with the telescopic sleeve 404 after being inserted into the containing groove. The detachable way can be interference fit or screw fixation. The telescopic sleeve 404 can have the same structure as the telescopic depth pipe 3, or only have the telescopic function without the locking part like the telescopic depth pipe 3, so that the telescopic sleeve 404 can meet the rotating of the large end to rotate the small end and drive the rotating rod 402 to rotate. For example, the telescopic sleeve 404 can also be a rhombic tube which is sleeved together and has diameters decreasing in sequence.
[0050] In order to facilitate sampling of wine body in the fermentation tank with peel and pulp, the filter cylinder 5 is fixed on the sampling cylinder 1 at the sampling hole 101. The setting of the filter cylinder 5 can filter the pulp or peel in the wine brewing process.
[0051] It can be understood that when the wine is pumped into the liquid storage cavity 1a, in order to avoid the situation that the peel or pulp adheres to the outside of the filter cylinder 5 to cause the blockage of the filter cylinder 5, the filter cylinder 5 is set as a circular cylinder, and the filter cylinder 5 is coaxial with the rotating rod 402. The cleaning part 6 is connected to the rotating rod 402 to scrape off the peel which may adhere to the filter cylinder 5.
[0052] As a specific implementation, as Figures 1 to 4As shown, the cleaning part 6 comprises a cleaning strip 601, a transmission strip 602 and a sleeve ring 603; the cleaning strip 601 abuts against the circumferential outer wall of the filter cylinder 5 along the axial direction of the filter cylinder 5, and a plurality of cleaning strips 601 are arranged; the sleeve ring 603 is connected outside the plurality of cleaning strips 601, and the transmission strip 602 is connected to the rotating rod 402 through the sleeve ring 603 to realize the connection between the cleaning strip 601 and the rotating rod 402; on the basis of arranging the cleaning part 6, the telescopic depth pipe 3 is fixedly connected to the bottom of the filter cylinder 5 and is spaced from the sampling cylinder 1. Specifically, one end of the telescopic depth pipe 3 and the filter cylinder 5 are connected by arranging an inclined connecting rod.
[0053] By connecting the transmission strip 602 to the rotating rod 402, the cleaning strip 601 is rotated along the circumferential direction of the filter cylinder 5 under the transmission action of the transmission strip 602 when the rotating rod 402 rotates, and the peel or pulp possibly adsorbed on the surface of the filter cylinder 5 is scraped off, thereby improving the sampling smoothness of the grape wine. The arrangement of the sleeve ring 603 can facilitate the connection of the plurality of cleaning strips 601, so that the cleaning strip 601 can scrape off the impurities that cannot pass through the filter cylinder 5 when the rotating rod 402 rotates slightly.
[0054] It can be understood that the purpose of connecting the transmission strip 602 to the rotating rod 402 is to drive the cleaning strip 601 to rotate along the axis of the rotating rod 402, and to meet the requirement that the rotating rod 402 moves up and down along its own axis to drive the piston 2 to move in the sampling cylinder 1 to adjust the volume of the liquid storage cavity la. To meet the above requirements, as an optional embodiment, a sliding groove 402a can be arranged on the circumferential outer wall of the rotating rod 402 along the axial direction of the rotating rod 402, and a sliding sleeve 9 that can slide along the axis of the rotating rod 402 is arranged outside the rotating rod 402; a sliding block 901 is fixedly connected in the sliding sleeve 9, and the sliding block 901 is slidingly inserted into the sliding groove 402a and can slide along the direction in which the sliding groove 402a is arranged. When the rotating rod 402 rotates, the transmission strip 602 can be driven to rotate under the action of the sliding block 901, and when the rotating rod 402 slides up and down along its own axis, the sliding sleeve 9 and the sliding block 901 can slide along the axis of the rotating rod 402, so that the above purpose can be achieved.
[0055] In order to facilitate the improvement of sampling temperature detection accuracy, the temperature detection meter 7 is arranged in the liquid storage cavity 1a, and the sampling cylinder 1 is made of transparent material. The sampling cylinder 1 can be made of polypropylene, transparent nylon and other transparent, non-toxic and certain hardness materials. The temperature detection meter 7 arranged in the liquid storage cavity 1a can detect the temperature of the wine in time during the sampling process. Compared with the temperature measurement after the wine is sampled and then poured out, the temperature loss of the wine is reduced, and the accuracy of the temperature monitoring data is improved. By arranging the sampling cylinder 1 made of transparent material, the temperature detection meter 7 is directly arranged in the sampling cylinder 1 to read the temperature of the wine, without taking out the temperature detection meter 7 for reading, so that the monitoring convenience is improved; and the color, turbidity and other characteristics of the wine in the sampling cylinder 1 can be observed.
[0056] In order to further improve the temperature detection accuracy, as shown in Figures 2 to 4 The sampling cylinder 1 is formed with a heat preservation layer 8, and the heat preservation layer 8 is hollow at the projection position of the temperature detection meter 7 in the sampling cylinder 1 to form a perspective window 8a. By arranging the heat preservation layer 8 outside the sampling cylinder 1, the temperature influence of the wine in other parts of the fermentation tank on the sampling cylinder 1 and the sample in the sampling cylinder 1 before and after sampling is reduced, so that the accuracy of the temperature detected by the temperature detection meter 7 is improved, which is helpful to improve the quality of the wine by using the data.
[0057] It can be understood that the heat preservation layer 8 can be selected to be pasted with a layer of heat preservation material outside the sampling cylinder 1, such as a rubber layer, a ceramic fiber layer or a glass fiber layer, or a heat preservation shell can be selected to be fixed outside the sampling cylinder 1, and a sealed cavity is formed between the heat preservation shell and the sampling cylinder 1, and the sealed cavity is vacuumized to achieve heat preservation of the sampling cylinder 1. The formed perspective window 8a can meet the requirement that the temperature shown by the temperature detection meter 7 can be observed through the perspective window 8a.
[0058] The wine sampling monitoring device described in the embodiment of the application rotates the rotating rod 402 before sampling, so that the piston 2 is close to the bottom end of the sampling cylinder 1, the volume of the liquid storage cavity 1a is reduced, the telescopic depth pipe 3 is adjusted to a suitable length, and the small end of the telescopic sleeve pipe 404 is connected to the connecting head 403. During sampling, the sampling cylinder 1 is stretched to the preset position in the fermentation tank through the telescopic depth pipe 3, the telescopic sleeve pipe 404 is rotated, the rotating rod 402 drives the piston 2 to slide along the axis of the sampling cylinder 1, and at the same time, the cleaning strip 601 scrapes off the substances adhered to the filter cylinder 5, so that the wine is drawn into the liquid storage cavity 1a, the sampling of the wine is completed, and in order to further improve the temperature detection accuracy of the wine, the wine in the liquid storage cavity 1a can be discharged and then drawn again to serve as the final sample, so that the temperature influence of the sampling cylinder 1 itself on the sample is reduced. After sampling, the telescopic depth pipe 3 and the telescopic sleeve pipe 404 are contracted, and the temperature and the color and other indexes of the wine shown by the temperature detection meter 7 are observed through the perspective window 8a.
[0059] The depth of the sampling cylinder 1 into the wine fermentation tank is adjusted by adjusting the length of the telescopic depth pipe 3, and the wine is extracted from the sampling hole 101 into the liquid storage cavity 1a by the piston 2, so that the wine at different positions in the fermentation tank is sampled and monitored, the brewing conditions of the wine at different positions in different fermentation tanks are obtained, and the wine brewing quality is improved.
[0060] The above merely describes the preferred embodiments of the present application, and is not intended to limit 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 wine sampling monitoring device, characterized in that, The wine sampling monitoring device comprises: a sampling cylinder (1) having a sampling hole (101); a piston (2) disposed in the sampling cylinder (1) and axially sliding along the sampling cylinder (1) to form a liquid storage cavity (1a) with a variable volume and being in communication with the sampling hole (101); a telescopic depth tube (3) connected to the sampling cylinder (1) at one end and capable of adjusting the length in the axial direction and keeping the length.
2. The wine sampling monitoring device according to claim 1, wherein: the piston (2) is connected with an adjusting member (4), and the adjusting member (4) comprises: a connecting plate (401) fixed to the sampling cylinder (1); a rotating rod (402) penetrating through the connecting plate (401) and being threadedly connected with the connecting plate (401) and being rotatably connected with the piston (2), and the rotating rod (402) is axially the same as the sampling cylinder (1).
3. The wine sampling monitoring device of claim 2, wherein: the adjusting member (4) further comprises: a connecting head (403) coaxially fixed to the rotating rod (402); a telescopic sleeve (404) capable of telescoping in the axial direction, and a small end of the telescopic sleeve (404) can be sleeved on the connecting head (403) to make the connecting head (403) rotate with the telescopic sleeve (404) when the telescopic sleeve (404) is rotated.
4. The wine sampling monitoring device according to claim 2, wherein: a filter cylinder (5) is fixed to the sampling cylinder (1) at the sampling hole (101).
5. The wine sampling monitoring device of claim 4, wherein, the filter cylinder (5) is a circular cylinder, and the filter cylinder (5) is coaxial with the rotating rod (402); the rotating rod (402) is connected with a cleaning part (6), and the cleaning part (6) comprises: a cleaning strip (601) abutting against the outer wall of the filter cylinder (5) in the axial direction of the filter cylinder (5); a transmission strip (602) connecting the cleaning strip (601) and the rotating rod (402); the telescopic depth tube (3) is fixed to the bottom of the filter cylinder (5) and is spaced from the sampling cylinder (1).
6. The wine sampling monitoring device according to claim 5, wherein: a plurality of cleaning strips (601) are provided, and the plurality of cleaning strips (601) are distributed in the circumferential direction of the filter cylinder (5); and a plurality of cleaning strips (601) are connected with a sleeve ring (603), and the sleeve ring (603) is connected to the transmission strip (602).
7. The wine sampling monitoring device according to claim 1, wherein: a temperature detector (7) is arranged in the liquid storage cavity (1a).
8. The wine sampling monitoring device according to claim 7, wherein: the sampling cylinder (1) is made of transparent material.
9. The wine sampling monitoring device according to claim 8, wherein: The sampling cylinder (1) is externally formed with a heat preservation layer (8), and the heat preservation layer (8) is hollow at a projection position of the sampling cylinder (1) to form a perspective window (8a).