Anti-oxidation wine storage tank
By designing support adjustment, lifting plates, deflection shafts, and circulating temperature control mechanisms, and combining inert gas and temperature-controlled liquid, the problem of simultaneous anti-oxidation and temperature control in existing wine storage tanks has been solved, achieving anti-oxidation and temperature control effects for multiple tanks.
Patent Information
- Application Number
- CN202511581679.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2025-12-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing wine storage tanks cannot simultaneously control oxidation and temperature in multiple tanks, and cannot effectively prevent the wine from oxidizing.
An anti-oxidation wine storage tank was designed, comprising a support and adjustment mechanism, a lifting plate mechanism, a deflection shaft mechanism, a deflection mounting ring mechanism, and a circulating temperature control mechanism. These mechanisms enable the adjustment of the height and deflection state of the storage tank, and utilize inert gas and temperature-controlled liquid to prevent the wine from oxidizing.
It achieves simultaneous anti-oxidation and temperature control for multiple wine storage tanks, effectively preventing wine oxidation and improving the anti-oxidation performance of the storage tanks.
Smart Images

Figure CN121106940A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wine storage tanks, in particular to a kind of anti-oxidation wine storage tank. BACKGROUND
[0002] Wine storage tank is a kind of container specially used in the process of brewing wine (such as grape wine, beer, baijiu, yellow rice wine, etc.), to store, age and protect wine. The prevention of wine oxidation in wine storage tank is a systematic project, and the core is to isolate or reduce the contact between wine and oxygen.
[0003] In the prior art, a guide rail is added to the inner wall of the ordinary wine storage tank, and the container containing potassium metabisulfite aqueous solution is connected with the guide rail through a limiting ring to prevent the container from toppling over. A floating ball is arranged at the bottom of the container to ensure that the container stably floats above the liquid level in the wine storage tank. The potassium metabisulfite aqueous solution in the container can effectively absorb the oxygen in the wine storage tank to prevent the wine from being oxidized. However, the prior art is not convenient for synchronous control of multiple tank bodies for anti-oxidation, and cannot control the temperature of the wine body, so there is a large room for improvement in the prior art. SUMMARY
[0004] The present application provides an anti-oxidation wine storage tank to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions:
[0006] An anti-oxidation wine storage tank comprises a mounting bottom plate, a plurality of rolling wheel mechanisms are arranged at the bottom of the mounting bottom plate, a support adjusting mechanism is arranged at the bottom of the mounting bottom plate, a first lifting plate mechanism and a second lifting plate mechanism are arranged on the mounting bottom plate, a deflection shaft mechanism is arranged on the first lifting plate mechanism, a deflection mounting ring mechanism is arranged on the second lifting plate mechanism, a plurality of mounting sleeve mechanisms are arranged on the deflection mounting ring mechanism, the mounting sleeve mechanisms are connected with a circulating temperature control mechanism, and a storage tank mechanism is arranged on the mounting sleeve mechanisms; the support adjusting mechanism is used to stably support the mounting bottom plate, the first lifting plate mechanism is used to adjust the height of the deflection shaft mechanism, the second lifting plate mechanism is used to adjust the height of the deflection mounting ring mechanism, the mounting sleeve mechanism is used to place the storage tank mechanism, and the circulating temperature control mechanism is used to control the temperature of the wine body in the storage tank mechanism.
[0007] As a preferred technical solution of the present application, the rolling wheel mechanism comprises a rolling wheel shaft rotationally connected with the mounting bottom plate, a rolling wheel frame is fixedly connected to one end of the rolling wheel shaft away from the mounting bottom plate, and a rolling wheel is rotationally connected to the rolling wheel frame.
[0008] As a preferred embodiment of the present invention, the support adjustment mechanism includes two first deflection rod seats and two second deflection rod seats fixed to the mounting base plate. The first deflection rod seats are rotatably connected to a first deflection shaft, and the second deflection rod seats are rotatably connected to a second deflection shaft. The first deflection shaft is fixedly connected to a first deflection rod, and the first deflection rod is internally threaded to a first support threaded rod. The side of the first support threaded rod is fixedly connected to a first handle. The first deflection shaft is coaxially fixedly connected to a first gear, and the second deflection shaft is fixedly connected to a second deflection rod. The second deflection rod is internally threaded to a second support threaded rod, and the side of the second support threaded rod is fixedly connected to a second handle. The second deflection shaft is coaxially fixedly connected to a second gear, and the first gear and the second gear mesh. The mounting base plate is fixedly connected to a deflection block seat, and the deflection block seat is rotatably connected to a deflection block. The deflection block is rotatably connected to a threaded sleeve, and the outer side of the threaded sleeve is fixedly connected to a third handle. The threaded sleeve is internally threaded to an adjusting threaded rod, and the adjusting threaded rod is rotatably connected to a connecting shaft, which is located between the two first deflection rods.
[0009] As a preferred embodiment of the present invention, the first lifting plate mechanism includes a first fixed frame fixed to the mounting base plate, the first fixed frame being threadedly connected to a first lifting threaded rod, the top of the first lifting threaded rod being fixedly connected to a first rotating handle, the end of the first lifting threaded rod away from the first rotating handle being rotatably connected to a first lifting plate, and the first lifting plate and the first fixed frame being slidably connected.
[0010] As a preferred embodiment of the present invention, the second lifting plate mechanism includes a second fixed frame fixed to the mounting base plate, the second fixed frame being threadedly connected to a second lifting threaded rod, the top of the second lifting threaded rod being fixedly connected to a second rotating handle, the end of the second lifting threaded rod away from the second rotating handle being rotatably connected to a second lifting plate, and the second lifting plate and the second fixed frame being slidably connected.
[0011] As a preferred embodiment of the present invention, the deflection shaft mechanism includes a worm seat fixed to a first lifting plate, the worm seat being rotatably connected to a worm shaft, the worm shaft being coaxially and fixedly connected to a worm, one end of the worm shaft passing through the worm seat, the worm shaft being fixedly connected to a deflection handle, the worm meshing with a worm wheel, the worm wheel being coaxially and fixedly connected to a worm wheel shaft, the worm wheel shaft passing through the first lifting plate, the worm wheel shaft and the first lifting plate being rotatably connected, and a mounting ring being fixedly connected to the worm wheel shaft.
[0012] As a preferred embodiment of the present invention, the deflection mounting ring mechanism includes a deflection tube rotatably connected to a second lifting plate, a first air pressure display and control valve on the deflection tube, the deflection tube passing through the second lifting plate, the deflection tube being connected to a mounting ring, and the mounting ring having a cavity.
[0013] As a preferred embodiment of the present invention, the mounting sleeve mechanism includes a connecting shell fixed to the inner side of the mounting ring, a cavity channel provided inside the connecting shell, the cavity channel on the connecting shell communicating with the cavity on the mounting ring, a second air pressure display and control valve provided on the connecting shell, a retaining ring connected to the connecting shell, a bottom baffle fixedly connected to the retaining ring, a gas guide tube fixedly connected to the bottom baffle, a one-way valve provided on the gas guide tube, and gas channels provided on both the retaining ring and the bottom baffle, communicating with the cavity channel of the connecting shell and with the gas guide tube.
[0014] As a preferred embodiment of the present invention, the storage tank mechanism includes a tank body, an inlet and outlet pipe at the bottom of the tank body, a sealing cap threaded to the top of the tank body, a third pressure display and control valve and a thermometer on the sealing cap, a concave sleeve fixedly connected to the bottom of the tank body, a through hole on the side of the concave sleeve, an elastic element fixedly connected to the concave sleeve, a movable valve fixedly connected to the elastic element, the movable valve and the concave sleeve being slidably connected, and a T-shaped through groove on the movable valve.
[0015] As a preferred embodiment of the present invention, the circulating temperature control mechanism includes a temperature controller, which is connected to an inlet pipe and an outlet pipe. The inlet pipe and the outlet pipe are connected to a mounting plate, and the mounting plate is connected to a connecting shell. The interior of the concave sleeve is provided with a spiral tube, and the two ends of the spiral tube are respectively connected to the inlet pipe and the outlet pipe.
[0016] The present invention has the following advantages:
[0017] The support adjustment mechanism allows for the support and adjustment of the mounting base plate. The first and second lifting plate mechanisms allow for the adjustment of the height of the storage tank mechanism. The deflection shaft mechanism allows for adaptive adjustment of the deflection state of the storage tank mechanism. The circulating temperature control mechanism allows for the circulating temperature control of the wine inside the storage tank mechanism. The deflection mounting ring mechanism and mounting sleeve mechanism allow for the supply of inert gas into the storage tank mechanism, thereby achieving the goal of discharging the wine while preventing its oxidation and increasing the anti-oxidation performance of the storage tank. Attached Figure Description
[0018] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0019] Figure 1 This is a first-person structural diagram of an anti-oxidation wine storage tank.
[0020] Figure 2This is a second-view structural schematic diagram of an anti-oxidation wine storage tank.
[0021] Figure 3 This is a third-view structural diagram of an anti-oxidation wine storage tank.
[0022] Figure 4 This is a schematic diagram of a support and adjustment mechanism in an anti-oxidation wine storage tank.
[0023] Figure 5 This is a partial structural diagram of an anti-oxidation wine storage tank.
[0024] Figure 6 This is a partial structural diagram of an anti-oxidation wine storage tank.
[0025] Figure 7 This is a schematic diagram of the storage tank mechanism in an anti-oxidation wine storage tank.
[0026] Figure 8 This is a cross-sectional view of the storage tank mechanism in an anti-oxidation wine storage tank.
[0027] In the diagram: 1. Mounting base plate; 2. Roller mechanism; 201. Roller shaft; 202. Roller frame; 203. Roller; 3. Support adjustment mechanism; 301. First deflection rod seat; 302. Second deflection rod seat; 303. First deflection shaft; 304. Second deflection shaft; 305. First deflection rod; 306. First support threaded rod; 307. First handle; 308. First gear; 309. Second deflection rod; 310. Second support threaded rod 311. Second handle; 312. Second gear; 313. Deflection block seat; 314. Deflection block; 315. Threaded sleeve; 316. Third handle; 317. Adjusting threaded rod; 318. Coupling; 4. First lifting plate mechanism; 401. First fixed frame; 402. First lifting threaded rod; 403. First rotating handle; 404. First lifting plate; 5. Second lifting plate mechanism; 501. Second fixed frame; 502. Second lifting threaded rod; 503. Second rotary handle; 504. Second lifting plate; 6. Deflection shaft mechanism; 601. Worm gear seat; 602. Worm gear shaft; 603. Worm; 604. Deflection handle; 605. Worm wheel; 606. Worm wheel shaft; 7. Deflection mounting ring mechanism; 701. Deflection tube; 702. First air pressure display control valve; 703. Mounting ring; 8. Mounting sleeve mechanism; 801. Connecting shell; 802. Second air pressure display control valve; 803. Retaining ring; 804. 805. Bottom baffle; 906. Gas inlet pipe; 907. Storage tank mechanism; 908. Tank body; 909. Inlet and outlet pipes; 9000. Sealing cover; 9001. Third air pressure display and control valve; 901. Thermometer; 902. Concave sleeve; 903. Through hole; 904. Elastic element; 905. Moving valve; 916. T-slot; 10. Circulating temperature control mechanism; 1001. Thermostat; 1002. Inlet pipe; 1003. Outlet pipe; 1004. Mounting plate. Detailed Implementation
[0028] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.
[0029] It should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the present invention.
[0030] Example 1, please refer to Figures 1-8An anti-oxidation wine storage tank includes a mounting base plate 1. The bottom of the mounting base plate 1 is provided with several rolling wheel mechanisms 2 and a support adjustment mechanism 3. The mounting base plate 1 is provided with a first lifting plate mechanism 4 and a second lifting plate mechanism 5. The first lifting plate mechanism 4 is provided with a deflection shaft mechanism 6, the second lifting plate mechanism 5 is provided with a deflection mounting ring mechanism 7, and the deflection mounting ring mechanism 7 is provided with several mounting sleeve mechanisms 8. The mounting sleeve mechanisms 8 are connected to a circulating temperature control mechanism 10, and a storage tank mechanism 9 is provided on the mounting sleeve mechanisms 8. The support adjustment mechanism 3 is used to provide stable support for the mounting base plate 1. The first lifting plate mechanism 4 is used to adjust the height of the deflection shaft mechanism 6, the second lifting plate mechanism 5 is used to adjust the height of the deflection mounting ring mechanism 7, the mounting sleeve mechanisms 8 are used to place the storage tank mechanism 9, and the circulating temperature control mechanism 10 is used to control the temperature of the wine inside the storage tank mechanism 9.
[0031] The first lifting plate mechanism 4 includes a first fixed frame 401 fixed to the mounting base plate 1. The first fixed frame 401 is threadedly connected to a first lifting threaded rod 402. The top of the first lifting threaded rod 402 is fixedly connected to a first rotating handle 403. The end of the first lifting threaded rod 402 away from the first rotating handle 403 is rotatably connected to a first lifting plate 404. The first lifting plate 404 and the first fixed frame 401 are slidably connected. The second lifting plate mechanism 5 includes a second fixed frame 501 fixed to the mounting base plate 1. The second fixed frame 501 is threadedly connected to a second lifting threaded rod 502. The top of the second lifting threaded rod 502 is fixedly connected to a second rotating handle 503. The end of the second lifting threaded rod 502 away from the second rotating handle 503 is rotatably connected to a second lifting plate 504. The second lifting plate 504 and the second fixed frame 501 are slidably connected. The deflection shaft mechanism 6 includes a worm gear seat 601 fixed to the first lifting plate 404, a worm gear shaft 602 rotatably connected to the worm gear seat 601, a worm gear 603 coaxially fixedly connected to the worm gear shaft 602, one end of the worm gear shaft 602 passing through the worm gear seat 601, a deflection handle 604 fixedly connected to the worm gear 602, the worm gear 603 meshing with a worm wheel 605, a worm wheel shaft 606 coaxially fixedly connected to the worm wheel shaft 606, the worm wheel shaft 606 passing through the first lifting plate 404, and the worm wheel shaft 606 and the first lifting plate 404 rotatably connected. The deflection mounting ring mechanism 7 includes a deflection tube 701 rotatably connected to the second lifting plate 504, a first air pressure display and control valve 702 provided on the deflection tube 701, the deflection tube 701 passing through the second lifting plate 504, and a mounting ring 703 connected to the deflection tube 701. The mounting ring 703 has a hollow cavity, and the mounting ring 703 and the worm wheel shaft 606 are fixedly connected.
[0032] Specifically, rotating the first rotary handle 403 and the second rotary handle 503 simultaneously can drive the first lifting threaded rod 402 and the second lifting threaded rod 502 to rotate, thereby controlling the lifting of the first lifting plate 404 and the second lifting plate 504, thus driving the worm gear shaft 606 and the deflection tube 701 to lift, and in turn driving the mounting ring 703 to lift.
[0033] Additionally, rotating the deflection handle 604 will drive the worm shaft 602 to rotate, which in turn will drive the worm 603 to rotate, which in turn will drive the worm wheel 605 to rotate, which in turn will drive the worm wheel shaft 606 to rotate, which in turn will drive the mounting ring 703 to deflect and shift.
[0034] The mounting sleeve mechanism 8 includes a connecting shell 801 fixed inside the mounting ring 703. The connecting shell 801 has a cavity channel that is connected to the cavity in the mounting ring 703. The connecting shell 801 is equipped with a second air pressure display and control valve 802. The connecting shell 801 is connected to a retaining ring 803. The retaining ring 803 is fixedly connected to a bottom baffle 804. The bottom baffle 804 is fixedly connected to a gas guide tube 805. The gas guide tube 805 is equipped with a one-way valve. Both the retaining ring 803 and the bottom baffle 804 are equipped with gas channels that are connected to the cavity channel in the connecting shell 801 and the gas channels in the retaining ring 803 and the bottom baffle 804 are connected to the gas guide tube 805. The storage tank mechanism 9 includes a tank body 901, with an inlet / outlet pipe 902 at the bottom of the tank body 901, and a threaded sealing cap 903 at the top of the tank body 901. The sealing cap 903 is equipped with a third pressure display and control valve 904 and a thermometer 905. A concave sleeve 906 is fixedly connected to the bottom of the tank body 901, and a through hole 907 is provided on the side of the concave sleeve 906. An elastic element 908 is fixedly connected to the concave sleeve 906, and a movable valve 909 is fixedly connected to the elastic element 908. The movable valve 909 and the concave sleeve 906 are slidably connected, and a T-shaped through groove 910 is provided on the movable valve 909.
[0035] Specifically, the tank 901 is placed on the bottom baffle 804. At this time, the gas guide tube 805 is inserted into the concave sleeve 906. Then, the gas guide tube 805 can push the moving valve 909, so that the elastic element 908 is compressed, and the T-shaped through groove 910 and the through hole 907 are connected. If it is necessary to discharge the wine, inert gas is supplied to the mounting ring 703 through the deflection tube 701. The inert gas eventually enters the inside of the tank 901. At the same time, the inlet and outlet pipes 902 are opened, thus realizing the discharge of the wine and preventing the oxidation of the wine inside the tank 901.
[0036] The circulating temperature control mechanism 10 includes a temperature controller 1001, which is connected to an inlet pipe 1002 and an outlet pipe 1003. The inlet pipe 1002 and the outlet pipe 1003 are connected to a mounting plate 1004, which is connected to a connecting shell 801. The interior of the concave sleeve 906 is provided with a spiral tube, and the two ends of the spiral tube are respectively connected to the inlet pipe 1002 and the outlet pipe 1003.
[0037] Specifically, the temperature of the wine inside the tank 901 can be observed by thermometer 905, and the temperature controller 1001 can be turned on to heat or cool the heat transfer fluid. This allows the heat transfer fluid to enter the spiral tube through the inlet pipe 1002, and through the spiral tube, the temperature of the wine inside the tank 901 can be controlled. Finally, the heat transfer fluid returns to the temperature controller 1001 through the drain pipe 1003, thus achieving the circulation and temperature control of the wine.
[0038] Example 2, see below. Figures 1-4 In this embodiment of the invention, the rolling wheel mechanism 2 includes a rolling wheel shaft 201 rotatably connected to the mounting base plate 1. One end of the rolling wheel shaft 201 away from the mounting base plate 1 is fixedly connected to a rolling wheel frame 202, and the rolling wheel frame 202 is rotatably connected to a rolling wheel 203. The support adjustment mechanism 3 includes two first deflection rod seats 301 and two second deflection rod seats 302 fixed to the mounting base plate 1. The first deflection rod seats 301 are rotatably connected to the first deflection shaft 303, and the second deflection rod seats 302 are rotatably connected to the second deflection shaft 304. The first deflection shaft 303 is fixedly connected to a first deflection rod 305, and the first deflection rod 305 is internally threaded to a first support threaded rod 306. The side of the first support threaded rod 306 is fixedly connected to a first handle 307. The first deflection shaft 303 is coaxially fixedly connected to a first gear 308, and the second deflection shaft 304 is fixedly connected to a second deflection rod 309. The second deflection rod 309 is internally threaded... A second support threaded rod 310 is connected to the second support threaded rod 310. A second handle 311 is fixedly connected to the side of the second support threaded rod 310. A second gear 312 is fixedly connected to the second deflection shaft 304. A first gear 308 and a second gear 312 mesh. A deflection block seat 313 is fixedly connected to the mounting base plate 1. A deflection block seat 313 is rotatably connected to a deflection block 314. A threaded sleeve 315 is rotatably connected to a threaded sleeve 315. A third handle 316 is fixedly connected to the outer side of the threaded sleeve 315. An adjusting threaded rod 317 is connected to the inner thread of the threaded sleeve 315. A connecting shaft 318 is rotatably connected to the adjusting threaded rod 317. The connecting shaft 318 is located between the two first deflection rods 305.
[0039] Specifically, rotating the third handle 316 will cause the threaded sleeve 315 to rotate, thereby controlling the length of the threaded rod 317 extending out of the threaded sleeve 315. At this time, the connecting shaft 318 will be deflected, which will in turn cause the first deflection rod 305 to deflect, thereby causing the first deflection shaft 303 to deflect, which will then cause the first gear 308 to deflect, which will in turn cause the second gear 312 to deflect, thereby causing the second deflection shaft 304 to rotate, causing the second deflection rod 305 to deflect. At this time, the first support threaded rod 306 and the second support threaded rod 310 will contact the ground. Rotating the first handle 307 will then cause the first support threaded rod 306 to extend out of the first deflection rod 305. Rotating the second handle 311 will then cause the second support threaded rod 310 to rotate, which will then extend out of the second deflection rod 309, thereby adjusting the support status of the local position.
[0040] In the implementation of this invention, the mounting base plate 1 is first moved to a designated position by the rolling wheel mechanism 2, and then the mounting base plate 1 is supported and adjusted by the support adjustment mechanism 3. The storage tank mechanism 9 can be installed on the mounting sleeve mechanism 8. If the storage tank mechanism 9 needs to be deflected, the deflection shaft mechanism 6 is driven, which in turn drives the deflection mounting ring mechanism 7 and the mounting sleeve mechanism 8 to deflect, thereby driving the storage tank mechanism 9 to deflect. The first lifting plate mechanism 4 and the second lifting plate mechanism 5 can adjust the height of the storage tank mechanism 9. When it is necessary to drain the wine, inert gas is introduced through the deflection mounting ring mechanism 7. The inert gas enters the storage tank mechanism 9 through the mounting sleeve mechanism 8. Then, opening the storage tank mechanism 9 can drain the wine and prevent its oxidation. By opening the circulating temperature control mechanism 10, the temperature-controlled liquid can pass through the mounting sleeve mechanism 8, thus enabling the storage tank mechanism 9 installed on the mounting sleeve mechanism 8 to be temperature-controlled.
[0041] This invention enables the support and adjustment of the mounting base plate 1 by setting a support and adjustment mechanism 3, the height of the storage tank mechanism 9 by using a first lifting plate mechanism 4 and a second lifting plate mechanism 5, the deflection shaft mechanism 6 to adaptively adjust the deflection state of the storage tank mechanism 9, the circulating temperature control mechanism 10 to circulate and control the temperature of the wine in the storage tank mechanism 9, and the deflection mounting ring mechanism 7 and the mounting sleeve mechanism 8 to supply inert gas into the storage tank mechanism 9, thereby achieving the goal of discharging the wine while preventing its oxidation and increasing the anti-oxidation performance of the wine storage tank.
[0042] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An anti-oxidation wine storage tank, comprising a mounting base plate, characterized in that, The mounting base plate has several rolling wheel mechanisms at its bottom and a support adjustment mechanism at its bottom. The mounting base plate has a first lifting plate mechanism and a second lifting plate mechanism. The first lifting plate mechanism has a deflection shaft mechanism, and the second lifting plate mechanism has a deflection mounting ring mechanism. The deflection mounting ring mechanism has several mounting sleeve mechanisms, which are connected to a circulating temperature control mechanism. A storage tank mechanism is mounted on the mounting sleeve mechanism. The support adjustment mechanism provides stable support for the mounting base plate. The first lifting plate mechanism adjusts the height of the deflection shaft mechanism, the second lifting plate mechanism adjusts the height of the deflection mounting ring mechanism, the mounting sleeve mechanisms hold the storage tank mechanism, and the circulating temperature control mechanism controls the temperature of the wine inside the storage tank mechanism.
2. The anti-oxidation wine storage tank according to claim 1, characterized in that, The rolling wheel mechanism includes a rolling wheel shaft that is rotatably connected to the mounting base plate. The end of the rolling wheel shaft away from the mounting base plate is fixedly connected to a rolling wheel frame, and the rolling wheel frame is rotatably connected to the rolling wheel.
3. The anti-oxidation wine storage tank according to claim 1, characterized in that, The support adjustment mechanism includes two first deflection rod seats and two second deflection rod seats fixed to the mounting base plate. The first deflection rod seats are rotatably connected to a first deflection shaft, and the second deflection rod seats are rotatably connected to a second deflection shaft. The first deflection shaft is fixedly connected to a first deflection rod, and the first deflection rod is internally threaded to a first support threaded rod. The side of the first support threaded rod is fixedly connected to a first handle. The first deflection shaft is coaxially fixedly connected to a first gear, and the second deflection shaft is fixedly connected to a second deflection rod. The second deflection rod is internally threaded to a second support threaded rod, and the side of the second support threaded rod is fixedly connected to a second handle. The second deflection shaft is coaxially fixedly connected to a second gear, and the first gear and the second gear mesh. The mounting base plate is fixedly connected to a deflection block seat, and the deflection block seat is rotatably connected to a deflection block. The deflection block is rotatably connected to a threaded sleeve, and the outer side of the threaded sleeve is fixedly connected to a third handle. The threaded sleeve is internally threaded to an adjusting threaded rod, and the adjusting threaded rod is rotatably connected to a connecting shaft, which is located between the two first deflection rods.
4. The anti-oxidation wine storage tank according to claim 1, characterized in that, The first lifting plate mechanism includes a first fixed frame fixed to the mounting base plate, a first lifting threaded rod threadedly connected to the first fixed frame, a first rotating handle fixedly connected to the top of the first lifting threaded rod, a first lifting plate rotatably connected to the end of the first lifting threaded rod away from the first rotating handle, and a sliding connection between the first lifting plate and the first fixed frame.
5. The anti-oxidation wine storage tank according to claim 4, characterized in that, The second lifting plate mechanism includes a second fixed frame fixed to the mounting base plate, a second lifting threaded rod threadedly connected to the second fixed frame, a second rotating handle fixedly connected to the top of the second lifting threaded rod, a second lifting plate rotatably connected to the end of the second lifting threaded rod away from the second rotating handle, and a sliding connection between the second lifting plate and the second fixed frame.
6. The anti-oxidation wine storage tank according to claim 5, characterized in that, The deflection shaft mechanism includes a worm seat fixed to the first lifting plate, a worm shaft rotatably connected to the worm seat, a worm shaft coaxially and fixedly connected to the worm, one end of the worm shaft passing through the worm seat, a deflection handle fixedly connected to the worm shaft, the worm meshing with a worm wheel, a worm wheel coaxially and fixedly connected to a worm wheel shaft, the worm wheel shaft passing through the first lifting plate, the worm wheel shaft and the first lifting plate rotatably connected, and a mounting ring fixedly connected to the worm wheel shaft.
7. The anti-oxidation wine storage tank according to claim 6, characterized in that, The deflection mounting ring mechanism includes a deflection tube rotatably connected to a second lifting plate. A first air pressure display and control valve is provided on the deflection tube. The deflection tube passes through the second lifting plate and is connected to a mounting ring. The mounting ring is a cavity.
8. The anti-oxidation wine storage tank according to claim 7, characterized in that, The mounting sleeve mechanism includes a connecting shell fixed inside the mounting ring. The connecting shell has a cavity channel that is connected to the cavity on the mounting ring. The connecting shell is equipped with a second air pressure display and control valve. The connecting shell is connected to a retaining ring. The retaining ring is fixedly connected to a bottom baffle. The bottom baffle is fixedly connected to a gas guide tube. The gas guide tube is equipped with a one-way valve. Both the retaining ring and the bottom baffle have gas channels that are connected to the cavity channel of the connecting shell and the gas channels on the retaining ring and the bottom baffle are connected to the gas guide tube.
9. The anti-oxidation wine storage tank according to claim 8, characterized in that, The storage tank mechanism includes a tank body, with inlet and outlet pipes at the bottom of the tank body, and a threaded sealing cap at the top of the tank body. The sealing cap is equipped with a third pressure display and control valve and a thermometer. A concave sleeve is fixedly connected to the bottom of the tank body, and a through hole is provided on the side of the concave sleeve. An elastic element is fixedly connected to the concave sleeve, and a movable valve is fixedly connected to the elastic element. The movable valve and the concave sleeve are slidably connected, and the movable valve is equipped with a T-shaped through groove.
10. The anti-oxidation wine storage tank according to claim 9, characterized in that, The circulating temperature control mechanism includes a temperature controller, which is connected to an inlet pipe and an outlet pipe. The inlet pipe and the outlet pipe are connected to a mounting plate, which is connected to a connecting shell. The interior of the concave sleeve is provided with a spiral tube, and the two ends of the spiral tube are connected to the inlet pipe and the outlet pipe, respectively.