CN204438672U - A kind of Split intelligent refrigerating fresh-keeping machine - Google Patents
A kind of Split intelligent refrigerating fresh-keeping machine Download PDFInfo
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- CN204438672U CN204438672U CN201520008732.5U CN201520008732U CN204438672U CN 204438672 U CN204438672 U CN 204438672U CN 201520008732 U CN201520008732 U CN 201520008732U CN 204438672 U CN204438672 U CN 204438672U
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Abstract
A kind of Split intelligent refrigerating fresh-keeping machine, comprise the cylindrical container for splendid attire plasmogen beer, the external shell that described cylindrical container includes inner shell and overlaps around inner shell outside, with the first through hole and the second through hole on the wall of described external shell, plasmogen beer is stored in described inner shell, the outer wall of described inner shell coils the interlayer for freezing, described coexist in described interval for the interlayer freezed one of the first metal tube and of the second metal tube are conducted, such device avoid in the use procedure of prior art just cause bacterium in the container of plasmogen beer, become the growth of geometric progression to make plasmogen beer is rotten cannot drink, cleaning equipment that must be special when cleaning could clean the container of the splendid attire plasmogen beer of this integrated structure, safeguard inconvenient, cleaning performance is the very poor and defect that cannot ensure germ-free condition and clean in the family also.
Description
Technical field
The utility model belongs to refrigerating fresh-keeping process units technical field, is specifically related to a kind of Split intelligent refrigerating fresh-keeping machine.
Background technology
Plasmogen beer is the beer fermentation stoste be brewed under omnidistance germ-free condition, remain active material and nutritional labeling to greatest extent, high-grade and the freshest beer, remain the amino acid produced in sweat completely, protein and a large amount of potassium, magnesium, calcium, the trace elements such as zinc, wherein most critical is exactly remain a large amount of active dry yeasrs, effectively can improve the absorption and digestion function of human body, also maintain beer the most original simultaneously, the freshest mouthfeel, wheat is aromatic strongly fragrant, golden yellow color, foam is extremely abundant, pure white as milk, fine and smooth, lasting extension cup, high-end product in real beer, that existing beer is at all incomparable, what is more important plasmogen beer can also be drained vivotoxin, this advantage best especially.
Exactly because plasmogen beer has so large benefit, so will carry out according to aseptic state when preservation, therefore after the container of plasmogen beer is blanked plasmogen beer, cleaning will being carried out to keep germ-free condition, also needing the refrigerating fresh-keeping carrying out being correlated with under certain temperature and pressure condition in addition when preserving plasmogen beer, and the refrigeration of current plasmogen beer and fresh-keeping be container integrated structure control system and splendid attire plasmogen beer, because this integrated structure combines mechanical device and electronic unit, cause baroque problem like this, particularly refrigeration machine with after the container integrated structure of splendid attire plasmogen beer, in use just cause the growth that bacterium becomes geometric progression in the container of plasmogen beer, plasmogen beer is gone bad cannot drink, and cleaning equipment that must be special when cleaning could clean the container of the splendid attire plasmogen beer of this integrated structure, safeguard inconvenient, cleaning performance is also very poor in addition, germ-free condition cannot be ensured and clean in the family.
Summary of the invention
For solving the problem, the utility model provides the purpose of this utility model to provide a kind of Split intelligent refrigerating fresh-keeping machine, comprise the cylindrical container for splendid attire plasmogen beer, the external shell that described cylindrical container includes inner shell and overlaps around inner shell outside, interval is maintained between the inwall of described external shell and inner shell, with the first through hole and the second through hole on the wall of described external shell, plasmogen beer is stored in described inner shell, the outer wall of described inner shell coils the interlayer for freezing, described coexist in described interval for the interlayer freezed one of the first metal tube and of the second metal tube are conducted, space filled thermal insulation materials between the inwall of described external shell and inner shell, the other end of the first described metal tube is with the 3rd plug-in type quick hose joint, the other end of the second described metal tube is with the 4th plug-in type quick hose joint, the top of described cylindrical container is socketed with top cover, with the 3rd metal tube that the inside with inner shell is conducted on described top cover, the other end of the 3rd described metal tube is with the 5th plug-in type quick hose joint, the bottom of described cylindrical container is socketed with bottom, the bottom of described bottom is connected to switch board removably, the bend pipe that the sidewall of described cylindrical container is conducted with the inside of cylindrical container with one, described bend pipe is provided with manually-operated gate, refrigeration unit is provided with in described switch board, the outlet of described refrigeration unit is conducted with of the second flexible pipe being provided with water pump, the second described flexible pipe is provided with the second magnetic valve, the other end of the second described flexible pipe is with the second plug-in type quick hose joint, the second described plug-in type quick hose joint is suitable with the 4th plug-in type quick hose joint, the second described plug-in type quick hose joint is connected with the 4th plug-in type quick hose joint through the top of switch board and the second through hole of external shell successively, also PLC is provided with in described switch board, the same water pump of described PLC, first magnetic valve is connected with the second magnetic valve phase control, the outlet of the same coolant storage tank be arranged in switch board of import of described refrigeration unit is connected, the entrance of described coolant storage tank is conducted with of the first flexible pipe, the first temperature sensor is also provided with in described coolant storage tank, the first described flexible pipe is provided with the first magnetic valve, the other end of the first described flexible pipe is with the first plug-in type quick hose joint, the first described plug-in type quick hose joint is suitable with the 3rd plug-in type quick hose joint, the first described plug-in type quick hose joint is connected with the 3rd plug-in type quick hose joint through the top of switch board and the first through hole of external shell successively, the second described temperature sensor is arranged on the outer wall of inner shell, the first described temperature sensor is connected with the signal input part of PLC respectively with the second temperature sensor, and be also provided with CO 2 high pressure gas cylinder in switch board, the outlet of described CO 2 high pressure gas cylinder is conducted with of the 3rd flexible pipe, the 3rd described flexible pipe is provided with the 3rd magnetic valve and pressurized carbon dioxide force regulating valve, the mechanical handwheel of described pressurized carbon dioxide force regulating valve stretches out the outer wall of a side of switch board, the other end of the 3rd described flexible pipe is with the 6th plug-in type quick hose joint, the 6th described plug-in type quick hose joint is suitable with the 5th plug-in type quick hose joint, the 6th described plug-in type quick hose joint is connected with the 5th plug-in type quick hose joint, described PLC connects with the 3rd magnetic valve phase control, and the first pressure sensor is arranged on the exit position of described CO 2 high pressure gas cylinder, the first described pressure sensor is connected with the signal input part of PLC respectively with the second pressure sensor, the second described pressure sensor is arranged in the part of the 3rd flexible pipe between the 3rd magnetic valve to the 6th plug-in type quick hose joint, described PLC is with the first communication interface, and the first communication interface is suitable with the second communication interface of touch-screen, the first described communication interface is connected with second communication interface, the screen of described touch-screen is arranged on mechanical handwheel and stretches out on the outer wall of that side of switch board, the radiator that same PLC phase control connects also is provided with in addition in switch board, described radiator is also provided with three-temperature sensor, described three-temperature sensor is connected with the signal input part of PLC.Such device avoids in the use procedure of prior art and just causes that bacterium becomes the growth of geometric progression that plasmogen beer is gone bad cannot to drink in the container of plasmogen beer, cleaning equipment that must be special when cleaning could clean the container of the splendid attire plasmogen beer of this integrated structure, safeguard inconvenience, the cleaning performance also very poor and defect that cannot ensure germ-free condition and clean in the family.
A kind of Split intelligent refrigerating fresh-keeping machine, comprise the cylindrical container 1 for splendid attire plasmogen beer, the external shell 3 that described cylindrical container 1 includes inner shell 2 and overlaps around inner shell 2 outside, interval is maintained between the inwall of described external shell 3 and inner shell 2, with the first through hole and the second through hole on the wall of described external shell 3, plasmogen beer is stored in described inner shell 2, the outer wall of described inner shell 2 coils the interlayer 12 for freezing, described coexist in described interval for the interlayer 12 freezed one of the first metal tube 15 and of the second metal tube 16 are conducted, space insulation material 37 between the inwall of described external shell 3 and inner shell 2 is filled, the other end of the first described metal tube 15 is with the 3rd plug-in type quick hose joint 17, the other end of the second described metal tube 16 is with the 4th plug-in type quick hose joint 18, the top of described cylindrical container 1 is socketed with top cover 4, with the 3rd metal tube 29 that the inside with inner shell 2 is conducted on described top cover 4, the other end of the 3rd described metal tube 29 is with the 5th plug-in type quick hose joint 30, the bottom of described cylindrical container 1 is socketed with bottom 7, the bottom of described bottom 7 is connected to switch board 8 removably, the bend pipe 9 that the sidewall of described cylindrical container 1 is conducted with the inside of cylindrical container 1 with one, described bend pipe 9 is provided with manually-operated gate 10, refrigeration unit 11 is provided with in described switch board 8, the outlet of described refrigeration unit 11 is conducted with of the second flexible pipe 19 being provided with water pump 39, the second described flexible pipe 19 is provided with the second magnetic valve 20, the other end of the second described flexible pipe 19 is with the second plug-in type quick hose joint 21, the second described plug-in type quick hose joint 21 is suitable with the 4th plug-in type quick hose joint 18, the second described plug-in type quick hose joint 21 is connected with the 4th plug-in type quick hose joint 18 through the top of switch board 8 and the second through hole of external shell 3 successively, PLC 22 is also provided with in described switch board 8, described PLC 22 is with water pump 39, first magnetic valve 13 is connected with the second magnetic valve 20 phase control, the outlet of the same coolant storage tank 38 be arranged in switch board 8 of import of described refrigeration unit 11 is connected, the entrance of described coolant storage tank 38 is conducted with of the first flexible pipe 12, the first temperature sensor 23 is also provided with in described coolant storage tank 38, the first described flexible pipe 12 is provided with the first magnetic valve 13, the other end of the first described flexible pipe 12 is with the first plug-in type quick hose joint 14, the first described plug-in type quick hose joint 14 is suitable with the 3rd plug-in type quick hose joint 17, the first described plug-in type quick hose joint 14 is connected with the 3rd plug-in type quick hose joint 17 through the top of switch board 8 and the first through hole of external shell 3 successively, the second described temperature sensor 24 is arranged on the outer wall of inner shell 2, the first described temperature sensor 23 is connected with the signal input part of PLC 22 respectively with the second temperature sensor 24, and be also provided with CO 2 high pressure gas cylinder 25 in switch board 8, the outlet of described CO 2 high pressure gas cylinder 25 is conducted with of the 3rd flexible pipe 26, the 3rd described flexible pipe 26 is provided with the 3rd magnetic valve 27 and pressurized carbon dioxide force regulating valve 18, the mechanical handwheel 28 of described pressurized carbon dioxide force regulating valve 18 stretches out the outer wall of a side of switch board 8, the other end of the 3rd described flexible pipe 26 is with the 6th plug-in type quick hose joint 31, the 6th described plug-in type quick hose joint 31 is suitable with the 5th plug-in type quick hose joint 30, the 6th described plug-in type quick hose joint 31 is connected with the 5th plug-in type quick hose joint 30, described PLC 22 connects with the 3rd magnetic valve 27 phase control, and the first pressure sensor 32 is arranged on the exit position of described CO 2 high pressure gas cylinder 25, the first described pressure sensor 32 is connected with the signal input part of PLC 22 respectively with the second pressure sensor 33, the second described pressure sensor 33 is arranged in the part of the 3rd flexible pipe between the 3rd magnetic valve 27 to the six plug-in type quick hose joint 31, described PLC 22 is with the first communication interface, and the first communication interface is suitable with the second communication interface of touch-screen 34, the first described communication interface is connected with second communication interface, the screen of described touch-screen 34 is arranged on mechanical handwheel 28 and stretches out on the outer wall of that side of switch board 8, the radiator 40 that same PLC phase control connects also is provided with in addition in switch board 8, described radiator 40 is also provided with three-temperature sensor 41, described three-temperature sensor 41 is connected with the signal input part of PLC 22.
With radiating groove 35 on described external shell 3.
Described also can substitute with coil pipe for the interlayer 12 freezed.
The structure that the bottom of described bottom 7 is connected to switch board 8 is removably as follows:
Described bottom 7 is reversed round bench shaped, and the top of switch board 8 is the groove of reversed round bench shaped with inner surface contour, and described bottom 7 is inserted in the groove of reversed round bench shaped.
Described top cover 4 is the round table-like structure of bottom opening, the top of described top cover 4 is also with opening, the open bottom at the top of described top cover 4 is provided with cylinder shape groove 5, with the cylindrical handle 6 of stretching out cylinder shape groove 5 in described cylinder shape groove 5.
Be provided with drain pan 36 below the outlet of described bend pipe 9, described drain pan 36 is erected on the outer wall of switch board.
The beneficial effects of the utility model are as follows:
By comprising the cylindrical container 1 for splendid attire plasmogen beer, the external shell 3 that described cylindrical container 1 includes inner shell 2 and overlaps around inner shell 2 outside, interval is maintained between the inwall of described external shell 3 and inner shell 2, with the first through hole and the second through hole on the wall of described external shell 3, first through hole and the second through hole are used for convenient through the first plug-in type quick hose joint and the second plug-in type quick hose joint, make pipeline structure compacter more neat, plasmogen beer is stored in inner shell 2 described in first, the outer wall of described inner shell 2 coils the interlayer 12 for freezing, described coexist in described interval for the interlayer 12 freezed one of the first metal tube 15 and of the second metal tube 16 are conducted, space insulation material 37 between the inwall of described external shell 3 and inner shell 2 is filled, use thermal insulation material and can ensure that heat can not dispel the heat, also cooling effectiveness and quality can be promoted, save the energy resource consumption of process of refrigerastion, the other end of the first described metal tube 15 is with the 3rd plug-in type quick hose joint 17, the other end of the second described metal tube 16 is with the 4th plug-in type quick hose joint 18, use plug-in type quick hose joint can be for convenience detach, be more convenient for being separated cylindrical container and switch board, the top of described cylindrical container 1 is socketed with top cover 4, with the 3rd metal tube 29 that the inside with inner shell 2 is conducted on described top cover 4, the other end of the 3rd described metal tube 29 is with the 5th plug-in type quick hose joint 30, the bottom of described cylindrical container 1 is socketed with bottom 7, the bottom of described bottom 7 is connected to switch board 8 removably, the bend pipe 9 that the sidewall of described cylindrical container 1 is conducted with the inside of cylindrical container 1 with one, described bend pipe 9 is provided with manually-operated gate 10, refrigeration unit 11 is provided with in described switch board 8, the outlet of described refrigeration unit 11 is conducted with of the second flexible pipe 19 being provided with water pump 39, the second described flexible pipe 19 is provided with the second magnetic valve 20, the other end of the second described flexible pipe 19 is with the second plug-in type quick hose joint 21, the second described plug-in type quick hose joint 21 is suitable with the 4th plug-in type quick hose joint 18, the second described plug-in type quick hose joint 21 is connected with the 4th plug-in type quick hose joint 18 through the top of switch board 8 and the second through hole of external shell 3 successively, PLC 22 is also provided with in described switch board 8, described PLC 22 is with water pump 39, first magnetic valve 13 is connected with the second magnetic valve 20 phase control, the outlet of the same coolant storage tank 38 be arranged in switch board 8 of import of described refrigeration unit 11 is connected, the entrance of described coolant storage tank 38 is conducted with of the first flexible pipe 12, the first temperature sensor 23 is also provided with in described coolant storage tank 38, the first described flexible pipe 12 is provided with the first magnetic valve 13, the other end of the first described flexible pipe 12 is with the first plug-in type quick hose joint 14, the first described plug-in type quick hose joint 14 is suitable with the 3rd plug-in type quick hose joint 17, the first described plug-in type quick hose joint 14 is connected with the 3rd plug-in type quick hose joint 17 through the top of switch board 8 and the first through hole of external shell 3 successively, the second described temperature sensor 24 is arranged on the outer wall of inner shell 2, the first described temperature sensor 23 is connected with the signal input part of PLC 22 respectively with the second temperature sensor 24, and be also provided with CO 2 high pressure gas cylinder 25 in switch board 8, the outlet of described CO 2 high pressure gas cylinder 25 is conducted with of the 3rd flexible pipe 26, the 3rd described flexible pipe 26 is provided with the 3rd magnetic valve 27 and pressurized carbon dioxide force regulating valve 18, the mechanical handwheel 28 of described pressurized carbon dioxide force regulating valve 18 stretches out the outer wall of a side of switch board 8, the other end of the 3rd described flexible pipe 26 is with the 6th plug-in type quick hose joint 31, the 6th described plug-in type quick hose joint 31 is suitable with the 5th plug-in type quick hose joint 30, the 6th described plug-in type quick hose joint 31 is connected with the 5th plug-in type quick hose joint 30, described PLC 22 connects with the 3rd magnetic valve 27 phase control, and the first pressure sensor 32 is arranged on the exit position of described CO 2 high pressure gas cylinder 25, the first described pressure sensor 32 is connected with the signal input part of PLC 22 respectively with the second pressure sensor 33, the second described pressure sensor 33 is arranged in the part of the 3rd flexible pipe between the 3rd magnetic valve 27 to the six plug-in type quick hose joint 31, described PLC 22 is with the first communication interface, and the first communication interface is suitable with the second communication interface of touch-screen 34, the first described communication interface is connected with second communication interface, the screen of described touch-screen 34 is arranged on mechanical handwheel 28 and stretches out on the outer wall of that side of switch board 8, the radiator 40 that same PLC phase control connects also is provided with in addition in switch board 8, described radiator 40 is also provided with three-temperature sensor 41, described three-temperature sensor 41 is connected with the signal input part of PLC 22.This makes it possible to after the manually-operated gate 10 handling installation on bend pipe 9 is finished down the plasmogen beer in cylindrical container, also receive the first temperature sensor 23 by the PLC 22 in switch board in the meantime, second temperature sensor 24, three-temperature sensor, the force value that first pressure sensor 32 and the second pressure sensor 33 send, just can regulate and control magnetic valve with this and be shown by touch-screen, also the such controlling functions of the setting of temperature aspect can be carried out by touch-screen, and after plasmogen beer is finished down, bottom is only needed to move away from groove, and remove pipeline connection by pulling out plug-in type quick hose joint, in addition the connecting line of each sensor is passed through in switch board, get rid of the connection with PLC, just can separate switch board and cylindrical container, particularly refrigeration machine is with the separation of cylindrical container, not only in use there will not be the plasmogen beer in band fungi pollution cylindrical container, and just can carry out asepticize cleaning to simple cylindrical container inside with this, such separation just can avoid the internal cavity of switch board and cylindrical container integration too complicated afterwards, the dead angle of cleaning is too much, just can ensure the effect that asepticize cleans thus, safeguard and also facilitate.
Accompanying drawing explanation
Fig. 1 is external structure schematic diagram of the present utility model.
Fig. 2 is interior section structural representation of the present utility model.
Fig. 3 is the internal structure schematic diagram of cylindrical container of the present utility model.
Fig. 4 is the syndeton schematic diagram of refrigeration unit of the present utility model.
Fig. 5 is the syndeton schematic diagram of CO 2 high pressure gas cylinder of the present utility model.
Fig. 6 is the syndeton schematic diagram of PLC of the present utility model.
Fig. 7 is the structural representation of radiating groove of the present utility model.
Fig. 8 is the syndeton schematic diagram of radiator of the present utility model.
Detailed description of the invention
By reference to the accompanying drawings the utility model is described in further detail:
As shown in Fig. 1 to Fig. 8, Split intelligent refrigerating fresh-keeping machine of the present utility model, comprise the cylindrical container 1 for splendid attire plasmogen beer, the external shell 3 that described cylindrical container 1 includes inner shell 2 and overlaps around inner shell 2 outside, interval is maintained between the inwall of described external shell 3 and inner shell 2, with the first through hole and the second through hole on the wall of described external shell 3, plasmogen beer is stored in described inner shell 2, the outer wall of described inner shell 2 coils the interlayer 12 for freezing, described coexist in described interval for the interlayer 12 freezed one of the first metal tube 15 and of the second metal tube 16 are conducted, space insulation material 37 between the inwall of described external shell 3 and inner shell 2 is filled, the other end of the first described metal tube 15 is with the 3rd plug-in type quick hose joint 17, the other end of the second described metal tube 16 is with the 4th plug-in type quick hose joint 18, the top of described cylindrical container 1 is socketed with top cover 4, with the 3rd metal tube 29 that the inside with inner shell 2 is conducted on described top cover 4, the other end of the 3rd described metal tube 29 is with the 5th plug-in type quick hose joint 30, the bottom of described cylindrical container 1 is socketed with bottom 7, the bottom of described bottom 7 is connected to switch board 8 removably, the bend pipe 9 that the sidewall of described cylindrical container 1 is conducted with the inside of cylindrical container 1 with one, described bend pipe 9 is provided with manually-operated gate 10, refrigeration unit 11 is provided with in described switch board 8, the outlet of described refrigeration unit 11 is conducted with of the second flexible pipe 19 being provided with water pump 39, the second described flexible pipe 19 is provided with the second magnetic valve 20, the other end of the second described flexible pipe 19 is with the second plug-in type quick hose joint 21, the second described plug-in type quick hose joint 21 is suitable with the 4th plug-in type quick hose joint 18, the second described plug-in type quick hose joint 21 is connected with the 4th plug-in type quick hose joint 18 through the top of switch board 8 and the second through hole of external shell 3 successively, PLC 22 is also provided with in described switch board 8, described PLC 22 is with water pump 39, first magnetic valve 13 is connected with the second magnetic valve 20 phase control, the outlet of the same coolant storage tank 38 be arranged in switch board 8 of import of described refrigeration unit 11 is connected, the entrance of described coolant storage tank 38 is conducted with of the first flexible pipe 12, the first temperature sensor 23 is also provided with in described coolant storage tank 38, the first described flexible pipe 12 is provided with the first magnetic valve 13, the other end of the first described flexible pipe 12 is with the first plug-in type quick hose joint 14, the first described plug-in type quick hose joint 14 is suitable with the 3rd plug-in type quick hose joint 17, the first described plug-in type quick hose joint 14 is connected with the 3rd plug-in type quick hose joint 17 through the top of switch board 8 and the first through hole of external shell 3 successively, the second described temperature sensor 24 is arranged on the outer wall of inner shell 2, the first described temperature sensor 23 is connected with the signal input part of PLC 22 respectively with the second temperature sensor 24, and be also provided with CO 2 high pressure gas cylinder 25 in switch board 8, the outlet of described CO 2 high pressure gas cylinder 25 is conducted with of the 3rd flexible pipe 26, the 3rd described flexible pipe 26 is provided with the 3rd magnetic valve 27 and pressurized carbon dioxide force regulating valve 18, the mechanical handwheel 28 of described pressurized carbon dioxide force regulating valve 18 stretches out the outer wall of a side of switch board 8, the other end of the 3rd described flexible pipe 26 is with the 6th plug-in type quick hose joint 31, the 6th described plug-in type quick hose joint 31 is suitable with the 5th plug-in type quick hose joint 30, the 6th described plug-in type quick hose joint 31 is connected with the 5th plug-in type quick hose joint 30, described PLC 22 connects with the 3rd magnetic valve 27 phase control, and the first pressure sensor 32 is arranged on the exit position of described CO 2 high pressure gas cylinder 25, the first described pressure sensor 32 is connected with the signal input part of PLC 22 respectively with the second pressure sensor 33, the second described pressure sensor 33 is arranged in the part of the 3rd flexible pipe between the 3rd magnetic valve 27 to the six plug-in type quick hose joint 31, described PLC 22 is with the first communication interface, and the first communication interface is suitable with the second communication interface of touch-screen 34, the first described communication interface is connected with second communication interface, the screen of described touch-screen 34 is arranged on mechanical handwheel 28 and stretches out on the outer wall of that side of switch board 8, the radiator 40 that same PLC phase control connects also is provided with in addition in switch board 8, described radiator 40 is also provided with three-temperature sensor 41, described three-temperature sensor 41 is connected with the signal input part of PLC 22.With radiating groove 35 on described external shell 3, be convenient to shedding of heat radiation heat like this, improve radiating efficiency.Described also can substitute with coil pipe for the interlayer 12 freezed.The structure that the bottom of described bottom 7 is connected to switch board 8 is removably as follows:
Described bottom 7 is reversed round bench shaped, and the top of switch board 8 is the groove of reversed round bench shaped with inner surface contour, and described bottom 7 is inserted in the groove of reversed round bench shaped.Described top cover 4 is the round table-like structure of bottom opening, the top of described top cover 4 is also with opening, the open bottom at the top of described top cover 4 is provided with cylinder shape groove 5, with the cylindrical handle 6 of stretching out cylinder shape groove 5 in described cylinder shape groove 5.Be provided with drain pan 36 below the outlet of described bend pipe 9, described drain pan 36 is erected on the outer wall of switch board, and such structure is conveniently processed and dismountable structure is very convenient.
Operation principle of the present utility model is: this makes it possible to after the manually-operated gate 10 handling installation on bend pipe 9 is finished down the plasmogen beer in cylindrical container, also receive the first temperature sensor 23 by the PLC 22 in switch board in the meantime, second temperature sensor 24, the force value that first pressure sensor 32 and the second pressure sensor 33 send, just can regulate and control magnetic valve with this and be shown by touch-screen, also the such controlling functions of the setting of temperature aspect can be carried out by touch-screen, and after plasmogen beer is finished down, bottom is only needed to move away from groove, and remove pipeline connection by pulling out plug-in type quick hose joint, in addition the connecting line of each sensor is passed through in switch board, get rid of the connection with PLC, just can separate switch board and cylindrical container, just asepticize cleaning can be carried out to simple cylindrical container inside with this.
The above, it is only preferred embodiment of the present utility model, not any pro forma restriction is done to the utility model, although the utility model discloses as above with preferred embodiment, but and be not used to limit the utility model, any those skilled in the art, do not departing within the scope of technical solutions of the utility model, make a little change when the technology contents of above-mentioned announcement can be utilized or be modified to the Equivalent embodiments of equivalent variations, in every case be do not depart from technical solutions of the utility model content, according to technical spirit of the present utility model, within spirit of the present utility model and principle, to any simple amendment that above embodiment is done, equivalent replacement and improvement etc., within the protection domain all still belonging to technical solutions of the utility model.
Claims (6)
1. a Split intelligent refrigerating fresh-keeping machine, it is characterized in that comprising the cylindrical container for splendid attire plasmogen beer, the external shell that described cylindrical container includes inner shell and overlaps around inner shell outside, interval is maintained between the inwall of described external shell and inner shell, with the first through hole and the second through hole on the wall of described external shell, plasmogen beer is stored in described inner shell, the outer wall of described inner shell coils the interlayer for freezing, described coexist in described interval for the interlayer freezed one of the first metal tube and of the second metal tube are conducted, space filled thermal insulation materials between the inwall of described external shell and inner shell, the other end of the first described metal tube is with the 3rd plug-in type quick hose joint, the other end of the second described metal tube is with the 4th plug-in type quick hose joint, the top of described cylindrical container is socketed with top cover, with the 3rd metal tube that the inside with inner shell is conducted on described top cover, the other end of the 3rd described metal tube is with the 5th plug-in type quick hose joint, the bottom of described cylindrical container is socketed with bottom, the bottom of described bottom is connected to switch board removably, the bend pipe that the sidewall of described cylindrical container is conducted with the inside of cylindrical container with one, described bend pipe is provided with manually-operated gate, refrigeration unit is provided with in described switch board, the outlet of described refrigeration unit is conducted with of the second flexible pipe being provided with water pump, the second described flexible pipe is provided with the second magnetic valve, the other end of the second described flexible pipe is with the second plug-in type quick hose joint, the second described plug-in type quick hose joint is suitable with the 4th plug-in type quick hose joint, the second described plug-in type quick hose joint is connected with the 4th plug-in type quick hose joint through the top of switch board and the second through hole of external shell successively, also PLC is provided with in described switch board, the same water pump of described PLC, first magnetic valve is connected with the second magnetic valve phase control, the outlet of the same coolant storage tank be arranged in switch board of import of described refrigeration unit is connected, the entrance of described coolant storage tank is conducted with of the first flexible pipe, the first temperature sensor is also provided with in described coolant storage tank, the first described flexible pipe is provided with the first magnetic valve, the other end of the first described flexible pipe is with the first plug-in type quick hose joint, the first described plug-in type quick hose joint is suitable with the 3rd plug-in type quick hose joint, the first described plug-in type quick hose joint is connected with the 3rd plug-in type quick hose joint through the top of switch board and the first through hole of external shell successively, the second described temperature sensor is arranged on the outer wall of inner shell, the first described temperature sensor is connected with the signal input part of PLC respectively with the second temperature sensor, and be also provided with CO 2 high pressure gas cylinder in switch board, the outlet of described CO 2 high pressure gas cylinder is conducted with of the 3rd flexible pipe, the 3rd described flexible pipe is provided with the 3rd magnetic valve and pressurized carbon dioxide force regulating valve, the mechanical handwheel of described pressurized carbon dioxide force regulating valve stretches out the outer wall of a side of switch board, the other end of the 3rd described flexible pipe is with the 6th plug-in type quick hose joint, the 6th described plug-in type quick hose joint is suitable with the 5th plug-in type quick hose joint, the 6th described plug-in type quick hose joint is connected with the 5th plug-in type quick hose joint, described PLC connects with the 3rd magnetic valve phase control, and the first pressure sensor is arranged on the exit position of described CO 2 high pressure gas cylinder, the first described pressure sensor is connected with the signal input part of PLC respectively with the second pressure sensor, the second described pressure sensor is arranged in the part of the 3rd flexible pipe between the 3rd magnetic valve to the 6th plug-in type quick hose joint, described PLC is with the first communication interface, and the first communication interface is suitable with the second communication interface of touch-screen, the first described communication interface is connected with second communication interface, the screen of described touch-screen is arranged on mechanical handwheel and stretches out on the outer wall of that side of switch board, the radiator that same PLC phase control connects also is provided with in addition in switch board, described radiator is also provided with three-temperature sensor, described three-temperature sensor is connected with the signal input part of PLC.
2. Split intelligent refrigerating fresh-keeping machine according to claim 1, is characterized in that on described external shell with radiating groove.
3. Split intelligent refrigerating fresh-keeping machine according to claim 1, is characterized in that the bottom of described bottom is connected to the structure of switch board removably as follows:
Described bottom is reversed round bench shaped, and the top of switch board is the groove of reversed round bench shaped with inner surface contour, and described bottom is inserted in the groove of reversed round bench shaped.
4. Split intelligent refrigerating fresh-keeping machine according to claim 1, it is characterized in that described top cover is the round table-like structure of bottom opening, the top of described top cover is also with opening, the open bottom at the top of described top cover is provided with cylinder shape groove, with the cylindrical handle of stretching out cylinder shape groove in described cylinder shape groove.
5. Split intelligent refrigerating fresh-keeping machine according to claim 1, be provided with drain pan below the outlet that it is characterized in that described bend pipe, described drain pan is erected on the outer wall of switch board.
6. Split intelligent refrigerating fresh-keeping machine according to claim 1, is characterized in that described also substituting with coil pipe for the interlayer freezed.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520008732.5U CN204438672U (en) | 2015-01-07 | 2015-01-07 | A kind of Split intelligent refrigerating fresh-keeping machine |
Applications Claiming Priority (1)
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CN201520008732.5U CN204438672U (en) | 2015-01-07 | 2015-01-07 | A kind of Split intelligent refrigerating fresh-keeping machine |
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C14 | Grant of patent or utility model | ||
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150701 Termination date: 20170107 |