Detachable double-groove distiller

By designing a detachable double-trough still, the U-shaped shell and partition plate are used for uniform heating, and cooling and condensation are achieved through the fractionation mechanism, the problems of uneven heating of the liquid and low operating efficiency are solved, and efficient liquid fractionation is achieved.

CN222918127UActive Publication Date: 2025-05-30HUBEI YUNGUOFU WINE IND CO LTD
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Patent Information

Application Number
CN202421817035.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-05-30
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

The liquid is heated unevenly during the heating process of existing distillation machines, resulting in low fractionation efficiency and can only process one liquid at the same time, which has low operating efficiency.

Method used

A detachable double-trough still is designed, using a U-shaped shell and a partition plate to divide the distillation barrel into two independent areas, multiple heating pipes are set up for uniform heating, and the liquid is cooled and condensed through a fractionation mechanism.

Benefits of technology

The uniform heating of the liquid during distillation is achieved, the time required for fractionation is reduced, the operating efficiency is improved, and the ability to process two different liquids simultaneously.

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Abstract

The utility model relates to the technical field of distiller equipment, in particular to a detachable double-groove distiller which comprises a device base and an assembly frame arranged on one side of the device base, U-shaped shells are symmetrically arranged on the device base, and distillation devices are arranged on the device base and the assembly frame; the distillation device comprises a plurality of heating pipes arranged at the bottoms and on the inner side walls of the U-shaped shells, a distillation barrel is arranged between the two U-shaped shells, a partition plate is clamped in the middle of the distillation barrel, a U-shaped opening is formed in the bottom, located below the partition plate, of the distillation barrel, and an embedded protruding block matched with the U-shaped opening is installed at the bottom end of the partition plate. An inclined flowing groove is formed in the device base below the U-shaped opening; a fractionation mechanism is arranged on the distillation barrel and the assembly frame; the distillation device has the effects that two different liquids can be distilled at the same time, the liquids can be uniformly heated during fractionation, the time required by fractionation is shortened, and the operation efficiency is further improved.
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Description

Technical Field

[0001] The present application relates to the technical field of distiller equipment, and particularly to a detachable double-tank distiller. Background Art

[0002] A distiller is a device used for separating and purifying liquid mixtures, which separates by utilizing the boiling point differences of different components. The basic principle of distillation is to heat a liquid to its boiling point to vaporize it into a gas, and then cool the gas to condense it back into a liquid, thereby obtaining a pure liquid. It is widely used in fields such as chemical laboratories, industrial production, and food processing.

[0003] For example, in the existing Chinese patent with the publication number CN209276491U, it discloses a loquat wine brewing distiller, which includes a housing, a distillation pot disposed inside the housing, and a pot lid above the housing. A motor is provided at the top of the pot lid, and the output end of the motor is connected to a rotating shaft. The rotating shaft penetrates through the pot lid and is located inside the distillation pot. A plurality of stirring blades are provided on the rotating shaft. A condensation tank is provided on one side of the housing. A gas guide pipe is connected between the pot lid and the condensation tank. A cooling pipe is provided on the outer surface of the gas guide pipe. A one-way valve is provided at the end of the gas guide pipe close to the housing. A spiral coil pipe is provided inside the condensation tank, and the spiral coil pipe is threadedly connected to the gas guide pipe. An outlet for liquor is provided at the bottom end of the condensation tank. Through the above existing technology, the raw materials of loquat wine are heated evenly by the stirring blades, and the loquat wine is fully liquefied through the cooperation of the cooling pipe and the condensation tank.

[0004] However, the above existing technology has the following technical defects:

[0005] The above device mainly drives the stirring blades on the rotating shaft to rotate by a motor to stir the raw materials to achieve the effect of uniform heating. However, since the above device only has a heater at the bottom of the housing, the main heating area is at the bottom of the raw materials. The stirring blades can only stir the raw materials to rotate inside the housing, but cannot drive the raw materials to tumble up and down, resulting in uneven heating of the raw materials. And when the above device operates, it can only distill one kind of liquid at a time, and the operation efficiency is low.

[0006] Based on this, on the basis of an existing loquat wine brewing distiller, there is still room for improvement to overcome the above technical defects. Utility Model Content

[0007] In order to simultaneously perform the distillation work of two different liquids, and be able to make the liquids heated evenly during fractional distillation to reduce the time required for fractional distillation and further improve the operation efficiency, the present application provides a detachable double-tank distiller.

[0008] A detachable double-tank distiller provided by the present application adopts the following technical solutions:

[0009] A detachable double-slot distiller, comprising a device base and an assembly frame provided on one side of the device base. The device base is symmetrically provided with U-shaped outer shells, and a distillation device is provided on the device base and the assembly frame.

[0010] The distillation device includes a plurality of heating tubes provided on the bottom and inner side walls of the U-shaped outer shell. The U-shaped outer shell is provided with an embedded groove for installing the heating tubes. A distillation barrel is provided between the two U-shaped outer shells. A partition plate is clamped in the middle of the distillation barrel. A U-shaped opening is provided at the bottom of the distillation barrel below the partition plate. The bottom end of the partition plate is provided with an embedded convex block adapted to the U-shaped opening. An inclined flow groove is provided on the device base below the U-shaped opening. A fractionation mechanism is provided on the distillation barrel and the assembly frame.

[0011] Preferably, the fractionation mechanism includes a U-shaped barrel cover, a cooling barrel and a connecting component. The two U-shaped barrel covers are symmetrically and hermetically covered on the upper end of the distillation barrel. A threaded through pipe is connected and installed on the U-shaped barrel cover. The two cooling barrels are symmetrically arranged on the assembly frame. A round barrel cover is covered on the cooling barrel. The connecting component is provided on the two cooling barrels.

[0012] Preferably, the connecting component includes a conical pipe, a distillation pipe and a conveyor. The conical pipe is inserted and rotatably arranged on the round barrel cover. A through hole for inserting and installing the conical pipe is penetrated on the round barrel cover. The distillation pipe is connected and installed on the upper end of the conical pipe through a middle connecting pipe. The conveyor is provided on the cooling barrel and the assembly frame.

[0013] Preferably, a sealing gasket is sleeved at one end of the distillation pipe away from the conical pipe, and an internally threaded cover is limited and sleeved on the distillation pipe at the position of the sealing gasket.

[0014] Preferably, the conveyor includes a spiral pipe provided inside the cooling barrel, with one end communicating with the conical pipe and the other end penetrating through the cooling barrel and extending downward. A conveying hole for one end of the spiral pipe to penetrate and extend is provided at the bottom of the cooling barrel. Two collecting barrels are symmetrically arranged on the assembly frame below the two cooling barrels.

[0015] Preferably, a liquid injection pipe and a liquid discharge pipe are connected and arranged on the outer side walls of the two cooling barrels.

[0016] In summary, the present application includes at least one of the following beneficial technical effects:

[0017] 1. Under the action of the partition plate, the interior of the distillation barrel can be divided into two independent regions, facilitating the simultaneous injection of different liquid raw materials into the distillation barrel for distillation. The multiple heating tubes provided on the bottom and inner side walls of the U-shaped outer shell can fully heat the raw materials in the distillation barrel, making the raw materials evenly heated.

[0018] 2. When the internal thread cover provided on the upper limit sleeve of the distillation tube rotates in cooperation with the threaded through-tube on the U-shaped barrel cover, the effect of threaded connection can be achieved. Under the action of the sealing gasket, the distillation tube and the threaded through-tube can be hermetically connected when needed, and when not needed, the effect of quick and convenient disassembly can be achieved.

[0019] 3. The coolant is respectively injected into the cooling barrel through the liquid injection pipe. After the gas evaporated from the stock solution enters the spiral tube, it can be cooled and condensed back into liquid, and the obtained pure liquid drips downward and is stored in the collection barrel. Brief Description of the Drawings

[0020] Figure 1 is a schematic diagram of the whole of the present utility model.

[0021] Figure 2 is a schematic diagram of the distillation device of the present utility model.

[0022] Figure 3 is a schematic diagram of the U-shaped outer shell and the heating pipe of the present utility model.

[0023] Figure 4 is an exploded sectional view of some components of the distillation device of the present utility model.

[0024] Figure 5 is a sectional view of the connection component of the present utility model.

[0025] Figure 6 is a schematic diagram of the sealing gasket and the internal thread cover of the present utility model.

[0026] Figure 7 is a sectional view of the conveyor of the present utility model.

[0027] Description of the reference numerals: 1, device base; 11, mounting rack; 12, U-shaped outer shell; 2, distillation device; 21, heating pipe; 121, embedded groove; 22, distillation barrel; 23, partition plate; 221, U-shaped opening; 24, embedded projection; 101, inclined flow groove; 3, fractionation mechanism; 31, U-shaped barrel cover; 32, cooling barrel; 4, connection component; 33, threaded through-tube; 34, round barrel cover; 41, tapered pipe; 42, distillation tube; 5, conveyor; 341, insertion hole; 43, middle connecting pipe; 44, sealing gasket; 45, internal thread cover; 51, spiral tube; 321, conveying hole; 52, collection barrel; 53, liquid injection pipe; 54, drain pipe. Detailed Description of the Embodiment

[0028] The following is a further detailed description of this application in conjunction with the attached Figures 1-7 drawings.

[0029] The embodiment of the present application discloses a detachable double-tank distiller, which can distill two different liquids at the same time, and can evenly heat the liquids during distillation to reduce the time required for distillation, thereby further improving operating efficiency.

[0030] Reference Figure 1 As shown, the present application provides a detachable double tank distiller, comprising a device base 1 and an assembly frame 11 arranged on one side of the device base 1, and a U-shaped shell 12 is symmetrically arranged on the device base 1, and the two U-shaped shells 12 are installed on the device base 1 with mutually separated limit clamps. A distillation device 2 is arranged on the device base 1 and the assembly frame 11; it can distill two different liquids at the same time, and can make the liquid raw liquid evenly heated to increase the fractionation efficiency; and it is easy to disassemble and clean the inside of the device.

[0031] Reference Figures 2 to 4 As shown, specifically, the distillation device 2 includes a plurality of heating tubes 21 arranged on the bottom and inner wall of the U-shaped shell 12, an embedded groove 121 for installing the heating tubes 21 is provided on the U-shaped shell 12, a distillation barrel 22 is provided between the two U-shaped shells 12, a partition plate 23 is provided in the middle of the distillation barrel 22, and the partition plate 23 divides the interior of the distillation barrel 22 into two independent areas; so that two different liquids can be injected into the distillation barrel 22 in different areas; by installing a plurality of heating tubes 21 at different positions, it can be ensured that the liquids are heated sufficiently and evenly. It should be noted that the heating tubes 21 in the two U-shaped shells 12 can be temperature-controlled separately to meet the requirements for distillation of liquids with different boiling points.

[0032] A U-shaped opening 221 is provided at the bottom of the distillation barrel 22 located below the partition plate 23, and an embedded protrusion 24 adapted to the U-shaped opening 221 is installed at the bottom of the partition plate 23. An inclined flow groove 101 is provided on the device base 1 located below the U-shaped opening 221. In the initial state, the partition plate 23 is stuck in the distillation barrel 22, and the embedded protrusion 24 fixedly installed at the bottom of the partition plate 23 is in the U-shaped opening 221. At this time, the inside of the distillation barrel 22 is divided into two independent areas; when the distillation work is completed and the distillation barrel 22 needs to be cleaned, the partition plate 23 is pushed upward to disengage the embedded protrusion 24 from the U-shaped opening 221, and then the distillation barrel 22 is rinsed and cleaned, and the waste water and residue can enter the inclined flow groove 101 through the U-shaped opening 221 and be discharged outward. A fractionation mechanism 3 is provided on the distillation barrel 22 and the assembly frame 11, which is used to cool the gas generated by the heated and evaporated liquid.

[0033] Replay Figure 2As shown, in order to cool and condense the evaporated gas back into liquid, the fractionation mechanism 3 includes a U-shaped barrel cover 31, a cooling barrel 32, and a connecting component 4. The two U-shaped barrel covers 31 are symmetrically and hermetically covered on the upper end of the distillation barrel 22. A threaded through pipe 33 is connected and installed on the U-shaped barrel cover 31. It should be noted that the outer wall of the threaded through pipe 33 has a threaded groove. After injecting the two liquid stock solutions into the two regions inside the distillation barrel 22 respectively, the two U-shaped barrel covers 31 are hermetically covered on the distillation barrel 22 respectively. The two cooling barrels 32 are symmetrically arranged on the assembly frame 11. A round barrel cover 34 is covered on the cooling barrel 32. The connecting component 4 is arranged on the two cooling barrels 32, so that the gases after the two liquid stock solutions are heated and evaporated can enter the two cooling barrels 32 respectively.

[0034] Referring to Figure 5 As shown, since the distillation barrel 22 and the cooling barrel 32 need to be connected, the connecting component 4 includes a tapered pipe 41, a distillation pipe 42, and a conveyor 5. The tapered pipe 41 is inserted and rotatably arranged on the round barrel cover 34. A through hole 341 for inserting and installing the tapered pipe 41 is penetrated and opened on the round barrel cover 34. The distillation pipe 42 is connected and installed at the upper end of the tapered pipe 41 through a middle connecting pipe 43. It should be noted that the outer diameter of the distillation pipe 42 is adapted to the inner diameter of the threaded through pipe 33. The conveyor 5 is arranged on the cooling barrel 32 and the assembly frame 11. By pushing the distillation pipe 42, the distillation pipe 42 can be rotated and displaced under the support of the tapered pipe 41, and the end of the distillation pipe 42 can be docked with or separated from the threaded through pipe 33.

[0035] Referring to Figure 5 and Figure 6 As shown, considering that in order to facilitate disassembly and flexibly separate the distillation pipe 42 from the distillation barrel 22, a sealing gasket 44 is sleeved on the end of the distillation pipe 42 far from the tapered pipe 41. It should be noted that the sealing gasket 44 is fixedly connected to the distillation pipe 42. An internal threaded cover 45 is limited and sleeved on the distillation pipe 42 at the position of the sealing gasket 44. It should be noted that the inner wall of the internal threaded cover 45 has a threaded groove adapted to the outside of the threaded through pipe 33. By pushing the distillation pipe 42, the end of the distillation pipe 42 far from the tapered pipe 41 can be inserted into the threaded through pipe 33 to be docked with the threaded through pipe 33. Then, the internal threaded cover 45 is rotated so that the internal threaded cover 45 is threadedly connected to the threaded through pipe 33, and the sealing gasket 44 can be pressed tightly against the upper end of the threaded through pipe 33 by the resistance of the internal threaded cover 45, so as to achieve the purpose of hermetically connecting the distillation pipe 42 and the threaded through pipe 33. Thus, when the distillation work is completed and the U-shaped barrel cover 31 needs to be removed to clean the inside of the distillation barrel 22, the internal threaded cover 45 is rotated to facilitate the separation and disassembly of the distillation pipe 42 and the threaded through pipe 33.

[0036] Referring to Figure 7As shown, in order to fully cool the gas entering the cooling barrel 32, the conveyor 5 includes a spiral tube 51 disposed at one end inside the cooling barrel 32 and communicating with the conical tube 41, and the other end penetrates through the cooling barrel 32 and extends downward. A conveying hole 321 is provided at the bottom of the cooling barrel 32 for one end of the spiral tube 51 to penetrate and extend out. On the assembly rack 11 below the two cooling barrels 32, two collecting barrels 52 are symmetrically provided. The spiral tube 51 is spirally arranged to ensure that the gas stays sufficiently after entering the cooling barrel 32.

[0037] Continue to refer to Figure 7 As shown, considering that it is convenient to inject and discharge the cooling liquid into and out of the cooling barrel 32, a liquid injection pipe 53 and a liquid discharge pipe 54 are communicatively provided on the outer side walls of the two cooling barrels 32. When the heating pipe 21 is started to heat and evaporate the liquid stock solution, the cooling liquid can be simultaneously injected into the cooling barrel 32 through the liquid injection pipe 53, so that the spiral tube 51 is in the cooling liquid; when the gas after being heated and evaporated enters the spiral tube 51, the effect of cooling and condensing the gas back into liquid can be achieved, and the obtained pure liquid can drip and be stored separately in the two collecting barrels 52.

[0038] The implementation principle of this embodiment is as follows:

[0039] (1) Stock solution injection: First, inject the two liquid stock solutions into the inside of the distillation barrels 22 on both sides of the partition plate 23 respectively, and then seal and cover the two U-shaped barrel covers 31 on the upper ends of the distillation barrels 22.

[0040] (2) Cover docking: After the covering is completed, push the distillation pipe 42 so that one end of the distillation pipe 42 is inserted into the threaded through pipe 33, and then rotate the internal thread cover 45 to press the sealing gasket 44 against the upper end of the threaded through pipe 33 to achieve the purpose of sealed docking.

[0041] (3) Cooling and condensation: Inject the cooling liquid into the cooling barrel 32 through the liquid injection pipe 53 at the same time. When the gas after being heated and evaporated enters the spiral tube 51, the gas can be cooled and condensed back into liquid, and the pure liquid drips and is stored in the collecting barrel 52.

[0042] (4) Equipment cleaning: After the distillation is completed, rotate the internal thread cover 45 to separate and disassemble the distillation pipe 42 from the threaded through pipe 33, remove the U-shaped barrel cover 31 and push the partition plate 23 upward. Then, rinse the inside of the distillation barrel 22, and the waste water and residues can enter the inclined flow trough 101 through the U-shaped opening 221 and be discharged outward; at the same time, open the liquid discharge pipe 54 to discharge the cooling liquid from the cooling barrel 32.

[0043] These embodiments of this specific implementation manner are all preferred embodiments of the present invention, and do not limit the protection scope of the present invention accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.

Claims

1. A detachable double tank distiller, comprising a device base (1) and an assembly frame (11) arranged on one side of the device base (1), wherein a U-shaped housing (12) is symmetrically arranged on the device base (1), characterized in that: A distillation device (2) is provided on the device base (1) and the assembly frame (11); The distillation device (2) comprises a plurality of heating tubes (21) arranged on the bottom and inner wall of a U-shaped outer shell (12); an embedded groove (121) for installing the heating tubes (21) is provided on the U-shaped outer shell (12); a distillation barrel (22) is provided between the two U-shaped outer shells (12); a partition plate (23) is provided in the middle of the distillation barrel (22); a U-shaped opening (221) is provided at the bottom of the distillation barrel (22) below the partition plate (23); an embedded protrusion (24) adapted to the U-shaped opening (221) is installed at the bottom end of the partition plate (23); an inclined flow groove (101) is provided on the device base (1) below the U-shaped opening (221); and a fractionation mechanism (3) is provided on the distillation barrel (22) and the assembly frame (11).

2. A detachable double tank distiller according to claim 1, characterized in that: The fractionation mechanism (3) comprises a U-shaped barrel cover (31), a cooling barrel (32) and a connecting assembly (4); the two U-shaped barrel covers (31) are symmetrically sealed and covered on the upper end of the distillation barrel (22); a threaded through pipe (33) is connected and installed on the U-shaped barrel cover (31); the two cooling barrels (32) are symmetrically arranged on the assembly frame (11); the cooling barrels (32) are covered with a round barrel cover (34); and the connecting assembly (4) is arranged on the two cooling barrels (32).

3. A detachable double tank distiller according to claim 2, characterized in that: The connection assembly (4) comprises a conical tube (41), a distillation tube (42) and a conveyor (5); the conical tube (41) is inserted and rotatably mounted on a drum cover (34); a tube insertion hole (341) is provided through the drum cover (34) for inserting and installing the conical tube (41); the distillation tube (42) is connected and installed on the upper end of the conical tube (41) through a middle tube (43); and the conveyor (5) is arranged on the cooling drum (32) and the assembly frame (11).

4. A detachable double tank distiller according to claim 3, characterized in that: A sealing gasket (44) is sleeved on one end of the distillation tube (42) away from the conical tube (41), and an internal threaded cap (45) is sleeved on the upper limit of the distillation tube (42) located at the sealing gasket (44).

5. A detachable double tank distiller according to claim 3, characterized in that: The conveyor (5) comprises a spiral tube (51) which is arranged in the cooling barrel (32) and is connected to the conical tube (41) at one end thereof and extends downward through the cooling barrel (32) at the other end thereof. A conveying hole (321) is provided at the bottom of the cooling barrel (32) for one end of the spiral tube (51) to extend through. Two collecting barrels (52) are symmetrically arranged on an assembly frame (11) located below the two cooling barrels (32).

6. A detachable double tank distiller according to claim 5, characterized in that: A liquid injection pipe (53) and a liquid discharge pipe (54) are connected and arranged on the outer side walls of the two cooling barrels (32).

Citation Information

Patent Citations

  • Loquat wine brewing distiller

    CN209276491U