CN218465766U - Novel beer brewing device of beer machine - Google Patents
Novel beer brewing device of beer machine Download PDFInfo
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- CN218465766U CN218465766U CN202222122403.6U CN202222122403U CN218465766U CN 218465766 U CN218465766 U CN 218465766U CN 202222122403 U CN202222122403 U CN 202222122403U CN 218465766 U CN218465766 U CN 218465766U
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Abstract
The utility model discloses a novel beer brewing device of beer machine, including setting up saccharification jar on the beer machine, boiling jar, fermentation cylinder, wheat juice syrup transfer mechanism and water pump, through pipeline module intercommunication between saccharification jar, boiling jar, fermentation cylinder, wheat juice syrup transfer mechanism and the water pump. The utility model is provided with the pipeline module to lead the saccharification tank, the boiling tank, the fermentation tank, the wort and syrup transferring mechanism and the water pump to be communicated, and adopts the pinch valve to control the on-off of the corresponding connecting pipe, thereby not only reducing the manufacturing cost and the whole volume, but also avoiding the fault caused by the blockage of the pipeline due to the accumulation of particles after malt crushing or solid fiber of hop in the valve body; meanwhile, a mechanical wort and sugar water transfer mechanism is adopted, the swing arm is controlled to swing between the saccharifying tank and the boiling tank, under the action of the controller, the whole automatic control of saccharifying, wort and sugar water transfer, boiling and fermentation in the brewing process is realized, parts are reduced, the structure is simplified, and the reliability is improved.
Description
Technical Field
The utility model relates to a beer brewing technical field especially relates to a novel beer brewing device of beer machine.
Background
The liquid pipeline system of the existing automatic beer brewing device consists of a water pump, an electromagnetic valve and a silica gel hose. In the operation process of beer brewing, particles after malt crushing or solid fibers of hops enter a pipeline system at a certain probability, and are easy to accumulate at an electromagnetic valve to block the pipeline, so that faults are caused; meanwhile, the transfer direction is switched by using a plurality of electromagnetic valves so that the wort and sugar water are transferred to different containers, the sugar water is easy to remain in the valve body, the structure is complex, and the reliability is low.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a novel beer brewing device of a beer machine, which is provided with a pipeline module to ensure that a saccharifying tank, a boiling tank, a fermentation tank, a wort and sugar water transfer mechanism and a water pump are communicated, and a pinch valve is adopted to control the on-off of a corresponding connecting pipe, thereby not only reducing the manufacturing cost and the whole volume, but also avoiding the fault caused by the blockage of the pipeline due to the accumulation of particles after malt grinding or solid fibers of hops in a valve body; meanwhile, a mechanical wort and sugar water transfer mechanism is adopted, the swing arm is controlled to swing between the saccharifying tank and the boiling tank, under the action of the controller, the whole automatic control of saccharifying, wort and sugar water transfer, boiling and fermentation in the brewing process is realized, parts are reduced, the structure is simplified, and the reliability is improved.
In order to solve the above problems, the utility model adopts the following technical scheme:
a novel beer brewing device of a beer machine, which comprises a saccharifying tank, a boiling tank, a fermentation tank, a wort and sugar water transfer mechanism and a water pump which are arranged on the beer machine and is characterized in that,
the saccharifying tank and the boiling tank are arranged above the beer machine from left to right; the wort and sugar water transfer mechanism is positioned between the saccharification tank and the boiling tank; the fermentation tank is positioned below the saccharification tank and the boiling tank; the water pump is arranged in the beer machine;
the saccharification tank, the boiling tank, the fermentation tank, the wort and sugar water transfer mechanism and the water pump are communicated through a pipeline module.
Preferably, the tube module comprises a first and a second multiway tube; the first multi-way pipe is provided with a first interface, a second interface, a third interface and a fourth interface; a fifth interface, a sixth interface and a seventh interface are arranged on the second multi-way pipe;
the first interface is communicated with the wort and sugar water transfer mechanism by using a first connecting pipe; the second interface is communicated with a water outlet of the water pump by using a second connecting pipe; the third interface and the fourth interface are respectively communicated with the plurality of fermentation tanks by using third connecting pipes; the fifth interface is communicated with a water inlet of the water pump by a fourth connecting pipe; the sixth interface is communicated with the saccharification tank by using a fifth connecting pipe; the seventh interface is communicated with the boiling tank through a sixth connecting pipe;
a first valve, a second valve, a third valve and a fourth valve are respectively arranged on the first connecting pipe, the third connecting pipe, the fourth connecting pipe and the fifth connecting pipe;
the wort and sugar water transfer mechanism is communicated with a water source by a first water inlet pipe; the first water inlet pipe is communicated with the first connecting pipe; a first water inlet valve is arranged on the first water inlet pipe.
Preferably, the wort and sugar water transfer mechanism comprises a swing arm, a fixed seat, a driver and a water outlet pipe;
the swing arm is coaxially and rotatably connected with the fixed seat; the driving end of the driver is connected with the swing arm, and the swing arm is driven to swing by taking the axis of the fixed seat as a center; the outlet pipe sets up in the swing arm, and the drainage end communicates with the outlet of swing arm, and the end of intaking passes through the three-way valve and communicates with first inlet tube and first connecting pipe.
Preferably, the first valve, the second valve, the third valve and the fourth valve are pinch valves.
Preferably, a cooling coil is arranged in the boiling tank; the cooling coil is communicated with a water source by using a cold water inlet pipe; a water outlet end of the cooling coil is provided with a water outlet pipe; and a second water inlet valve is arranged on the cold water inlet pipe.
Preferably, the device further comprises a controller; the controller is electrically connected with the first valve, the second valve, the third valve, the fourth valve and the first water inlet valve.
Preferably, a flowmeter is further arranged on the first water inlet pipe.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the utility model is provided with the pipeline module consisting of the first multi-way pipe and the second multi-way pipe to lead the saccharification tank, the boiling tank, the fermentation tank, the wort and sugar water transfer mechanism and the water pump to be communicated, and adopts the pinch valve to control the on-off of the corresponding connecting pipe, thereby not only reducing the manufacturing cost and the whole volume, but also avoiding the fault caused by the blockage of the pipeline due to the accumulation of particles after crushing malt or solid fiber of hop in the valve body; meanwhile, a mechanical wort and sugar water transfer mechanism is adopted, the swing arm is controlled to swing between the saccharifying tank and the boiling tank, under the action of the controller, the whole automatic control of saccharifying, wort and sugar water transfer, boiling and fermentation in the brewing process is realized, parts are reduced, the structure is simplified, and the reliability is improved.
Drawings
FIG. 1 is a schematic view of the installation structure of the present invention and a beer machine;
FIG. 2 is an enlarged view of a portion A of FIG. 1;
FIG. 3 is a schematic view of the structure of the present invention;
wherein: the device comprises a saccharification tank 1, a boiling tank 2, a fermentation tank 3, a wort and sugar water transfer mechanism 4, a water pump 5, a pipeline module 6, a cooling coil 7, a flow meter 8, a first connecting pipe 10, a second connecting pipe 20, a third connecting pipe 30, a fourth connecting pipe 40, a fifth connecting pipe 50, a sixth connecting pipe 60, a first water inlet pipe 70, a cold water inlet pipe 80, a swing arm 41, a fixed seat 42, a driver 43, a water outlet pipe 44, a first multi-way pipe 51, a second multi-way pipe 52, a beer machine 100, a controller 200, a first interface 511, a second interface 512, a third interface 513, a fourth interface 514, a fifth interface 521, a sixth interface 522, a seventh interface 523, a first valve 10a, a second valve 20a, a third valve 30a, a fourth valve 40a, a first valve 50a, a three-way valve 60a and a second water inlet valve 70a.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," "upper," "lower," "front," "rear," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
The invention will be further described with reference to the accompanying drawings and specific embodiments:
as shown in FIGS. 1 to 3, a new beer brewing apparatus of a beer machine 100 comprises a saccharifying tank 1, a boiling tank 2, a fermenting tank 3, a wort-sugar water transferring mechanism 4 and a water pump 5 which are arranged on the beer machine 100,
the saccharifying tank 1 and the boiling tank 2 are arranged above the beer machine 100 from left to right; the wort and sugar water transfer mechanism 4 is positioned between the saccharification tank 1 and the boiling tank 2; the fermentation tank 3 is positioned below the saccharification tank 1 and the boiling tank 2; the water pump 5 is arranged in the beer machine 100;
the saccharification tank 1, the boiling tank 2, the fermentation tank 3, the wort and sugar water transfer mechanism 4 and the water pump 5 are communicated through a pipeline module 6.
In this embodiment, the pipeline module 6 is used to replace a complex pipeline connection structure, so that the manufacturing cost and the overall volume are reduced, and the overall stability of the device is improved.
Further, as shown in fig. 1 to 3, the tube module 6 includes a first multiway tube 51 and a second multiway tube 52; the first multi-way pipe 51 is provided with a first interface 511, a second interface 512, a third interface 513 and a fourth interface 514; the second multi-way pipe 52 is provided with a fifth interface 521, a sixth interface 522 and a seventh interface 523;
the first interface 511 is communicated with the wort and sugar water transfer mechanism 4 by using a first connecting pipe 10; the second interface 512 is communicated with the water outlet of the water pump 5 by using a second connecting pipe 20; the third interface 513 and the fourth interface 514 are respectively communicated with a plurality of fermentation tanks 3 by using third connecting pipes 30; the fifth interface 521 is communicated with the water inlet of the water pump 5 by using a fourth connecting pipe 40; the sixth port 522 is communicated with the saccharification tank 1 by using a fifth connection pipe 50; the seventh interface 523 is communicated with the boiling tank 2 by using a sixth connecting pipe 60;
the first connecting pipe 10, the third connecting pipe 30, the fourth connecting pipe 40 and the fifth connecting pipe 50 are respectively provided with a first valve 10a, a second valve 20a, a third valve 30a and a fourth valve 40a;
the wort and sugar water transfer mechanism 4 is communicated with a water source by a first water inlet pipe 70; the first water inlet pipe 70 is communicated with the first connecting pipe 10; the first inlet pipe 70 is provided with a first inlet valve 50a.
In this embodiment, the pipeline module 6 composed of the first multi-way pipe 51 and the second multi-way pipe 52 is provided to communicate the saccharifying tank 1, the boiling tank 2, the fermentation tank 3, the wort and sugar water transferring mechanism 4 and the water pump 5, and the corresponding valves are used to control the on-off of the corresponding connecting pipes, so that the saccharifying, boiling and fermenting processes of the beer machine 100 can be automatically completed.
Further, as shown in fig. 1-3, the wort and sugar water transfer mechanism 4 comprises a swing arm 41, a fixed seat 42, a driver 43 and a water outlet pipe 44;
the swing arm 41 is coaxially and rotatably connected with the fixed seat 42; the driving end of the driver 43 is connected with the swing arm 41, and the swing arm 41 is driven to swing by taking the axis of the fixed seat 42 as a center; the water outlet pipe 44 is disposed in the swing arm 41, a water discharge end is communicated with a water discharge port of the swing arm 41, and a water inlet end is communicated with the first water inlet pipe 70 and the first connecting pipe 10 through a three-way valve 60 a.
In the embodiment, a mechanical control structure formed by a swing arm 41, a fixed seat 42, a driver 43 and a water outlet pipe 44 is adopted, the swing arm 41 is controlled to swing between the saccharification tank 1 and the boiling tank 2, and the automatic water adding to the saccharification tank 1 and the wort and sugar water transferring from the saccharification tank 1 to the boiling tank 2 are realized by combining the on-off of a valve; compared with the traditional electromagnetic valve group control mode, the control method has the advantages that the number of parts is reduced, the structure is simplified, and the reliability is improved. In addition, the angle of the swinging swing is controlled by a program.
Further, the first valve 10a, the second valve 20a, the third valve 30a and the fourth valve 40a are pinch valves.
In this embodiment, the pinch valve is used instead of the solenoid valve to avoid the problem that the crushed particles of malt or the solid fibers of hops are accumulated in the valve body to block the pipeline, thereby ensuring the stable and reliable brewing of the beer machine 100.
Further, as shown in fig. 1-3, a cooling coil 7 is arranged in the boiling tank 2; the cooling coil 7 is communicated with a water source by using a cold water inlet pipe 80; a water outlet end of the cooling coil 7 is provided with a water outlet pipe; the cold water inlet pipe 80 is provided with a second inlet valve 70a.
In this embodiment, the cooling coil 7 is arranged in the boiling tank 2, and the on-off of the cold water inlet pipe 80 is controlled by the second water inlet valve 70a, so that the cold water passes through the cooling coil 7 in the boiling tank to rapidly cool the wort syrup to the normal temperature, and then is closed, thereby realizing the non-contact rapid cooling of the wort syrup in the boiling tank 2.
Further, as shown in fig. 1, the controller 200 is further included; the controller 200 is electrically connected to the first valve 10a, the second valve 20a, the third valve 30a, the fourth valve 40a and the first inlet valve 50a.
In this embodiment, the controller 200 is provided to realize the automatic control of the whole processes of saccharification, wort-sugar water transfer, boiling and fermentation during the brewing process.
Further, as shown in fig. 1 and 3, a flow meter 8 is disposed on the first water inlet pipe 70.
In this embodiment, the flow meter 8 is used to control the amount of water fed to the saccharification tank 1.
The working principle is as follows:
1. the swing arm 41 starts to work, rotates to the position above the saccharification tank 1 under the driving of the driver 43, the first water inlet valve 50a is opened, and the set water quantity (the water quantity is controlled by the flowmeter 8) is added into the saccharification tank 1; then the first water inlet valve 50a is closed; then, the water in the mash tun 1 was heated to a rated temperature (68 ℃ C.), and then the well-ground malt was poured into the mash tun 1.
2. The water pump 5 is started, under the action of the controller 200, the heating block of the saccharification tank 1 is electrified to work, and the swing arm 41 is still positioned above the saccharification tank 1; then, the water pump continuously pumps the hot water at the bottom of the saccharifying tank 1 to the saccharifying tank 1 through the first water inlet pipe 70 on the swing arm 41, and the circulation is carried out all the time, so that the temperature in the saccharifying tank 1 is constant, and bottom pasting is prevented; after reaching a certain temperature, the malt starch is converted into maltose at a constant temperature.
3. After saccharification is completed, the first valve 10a and the third valve 30a are opened, the second valve 20a and the fourth valve 40a are closed, and the swing arm 41 is rotated to be above the boiling tank; then the water pump 5 is started to transfer the wort water in the mash tun 1 to the boiling tun 2. The transfer is completed and the boil tank 2 is turned on until boiling and held.
4. When the boiling stage is completed, the second inlet valve 70a is opened to allow cold water to pass through the cooling coil 7 in the boiling tank 2, to rapidly cool the wort syrup to a normal temperature, and then closed.
5. After the wort sugar water is cooled, opening the second valve 20a and the fourth valve 40a, and closing the first valve 10a and the third valve 30a; the water pump 5 is started to pump the wort syrup in the boiling tank 2 into the fermentation tank 3 for fermentation.
Various other modifications and changes can be made by those skilled in the art based on the above-described technical solutions and concepts, and all such modifications and changes should fall within the scope of the present invention.
Claims (7)
1. A novel beer brewing device of a beer machine, which comprises a saccharifying tank, a boiling tank, a fermentation tank, a wort and sugar water transfer mechanism and a water pump which are arranged on the beer machine and is characterized in that,
the saccharifying tank and the boiling tank are arranged above the beer machine from left to right; the wort and sugar water transfer mechanism is positioned between the saccharification tank and the boiling tank; the fermentation tank is positioned below the saccharification tank and the boiling tank; the water pump is arranged in the beer machine;
the saccharification tank, the boiling tank, the fermentation tank, the wort and sugar water transfer mechanism and the water pump are communicated through a pipeline module.
2. The novel beer brewing device of the beer machine according to the claim 1, wherein the pipeline module comprises a first multi-way pipe and a second multi-way pipe; the first multi-way pipe is provided with a first interface, a second interface, a third interface and a fourth interface; a fifth interface, a sixth interface and a seventh interface are arranged on the second multi-way pipe;
the first interface is communicated with the wort and sugar water transfer mechanism by using a first connecting pipe; the second interface is communicated with a water outlet of the water pump by using a second connecting pipe; the third interface and the fourth interface are respectively communicated with the plurality of fermentation tanks by using third connecting pipes; the fifth interface is communicated with a water inlet of the water pump by a fourth connecting pipe; the sixth interface is communicated with the saccharification tank by using a fifth connecting pipe; the seventh interface is communicated with the boiling tank through a sixth connecting pipe;
a first valve, a second valve, a third valve and a fourth valve are respectively arranged on the first connecting pipe, the third connecting pipe, the fourth connecting pipe and the fifth connecting pipe;
the wort and sugar water transfer mechanism is communicated with a water source by a first water inlet pipe; the first water inlet pipe is communicated with the first connecting pipe; a first water inlet valve is arranged on the first water inlet pipe.
3. The novel beer brewing device of the beer machine according to claim 2, wherein the wort and sugar water transfer mechanism comprises a swing arm, a fixed seat, a driver and a water outlet pipe;
the swing arm is coaxially and rotatably connected with the fixed seat; the driving end of the driver is connected with the swing arm, and the swing arm is driven to swing by taking the axis of the fixed seat as a center; the outlet pipe sets up in the swing arm, and the drainage end communicates with the outlet of swing arm, and the end of intaking passes through the three-way valve and communicates with first inlet tube and first connecting pipe.
4. The novel beer brewing device of claim 2, wherein the first valve, the second valve, the third valve and the fourth valve are pinch valves.
5. The novel beer brewing device of the beer machine according to the claim 2, wherein a cooling coil is arranged in the boiling tank; the cooling coil is communicated with a water source by using a cold water inlet pipe; a water outlet end of the cooling coil is provided with a water outlet pipe; and a second water inlet valve is arranged on the cold water inlet pipe.
6. The novel beer brewing device of the beer machine according to the claim 2, characterized in that the device further comprises a controller; the controller is electrically connected with the first valve, the second valve, the third valve, the fourth valve and the first water inlet valve.
7. The novel beer brewing device of the beer machine according to the claim 2, wherein the first water inlet pipe is further provided with a flow meter.
Priority Applications (1)
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CN202222122403.6U CN218465766U (en) | 2022-08-12 | 2022-08-12 | Novel beer brewing device of beer machine |
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CN202222122403.6U CN218465766U (en) | 2022-08-12 | 2022-08-12 | Novel beer brewing device of beer machine |
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CN218465766U true CN218465766U (en) | 2023-02-10 |
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CN202222122403.6U Active CN218465766U (en) | 2022-08-12 | 2022-08-12 | Novel beer brewing device of beer machine |
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