CN107339839A - A kind of novel energy-conserving moves ice machine - Google Patents
A kind of novel energy-conserving moves ice machine Download PDFInfo
- Publication number
- CN107339839A CN107339839A CN201710712611.2A CN201710712611A CN107339839A CN 107339839 A CN107339839 A CN 107339839A CN 201710712611 A CN201710712611 A CN 201710712611A CN 107339839 A CN107339839 A CN 107339839A
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- China
- Prior art keywords
- liquid
- condenser
- circulation barrel
- valve
- fluorine pump
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25C—PRODUCING, WORKING OR HANDLING ICE
- F25C1/00—Producing ice
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25C—PRODUCING, WORKING OR HANDLING ICE
- F25C2400/00—Auxiliary features or devices for producing, working or handling ice
- F25C2400/10—Refrigerator units
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P60/00—Technologies relating to agriculture, livestock or agroalimentary industries
- Y02P60/80—Food processing, e.g. use of renewable energies or variable speed drives in handling, conveying or stacking
- Y02P60/85—Food storage or conservation, e.g. cooling or drying
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Mechanical Engineering (AREA)
- Thermal Sciences (AREA)
- General Engineering & Computer Science (AREA)
- Devices That Are Associated With Refrigeration Equipment (AREA)
Abstract
The present invention relates to a kind of novel energy-conserving to move ice machine, including frame, refrigeration compressor, condenser, direct-cooling type ice mould, four-way valve, oil eliminator, circulation barrel, fluorine pump, liquid receiver, magnetic valve, choke valve, control cabinet and lifting platform, direct-cooling type ice mould includes evaporator, the refrigeration compressor high-pressure side is connected with oil eliminator by pipeline, four ports of four-way valve pass through pipeline and oil eliminator respectively, condenser, circulation barrel, evaporator is connected, condenser is sequentially connected liquid receiver by pipeline, magnetic valve, choke valve, circulation barrel, circulation barrel is sequentially connected fluorine pump by pipeline, evaporator, circulation barrel is connected directly to refrigeration compressor low-pressure end by pipeline.This structure uses fluorine pump feed flow, increases vaporizer side refrigerant flow rates, and liquid separation is uniform, enhances evaporator heat transfer effect, highly efficient energy-conservation, ensure that ice making quality.
Description
Technical field
The present invention relates to refrigerating field, and in particular to a kind of novel energy-conserving moves ice machine.
Background technology
It is increasing to the demand of ice cube with the development of freeze preservation industry, therefore the development of ice machine is also more next
It is more important.Traditional ice making unit, equipment is various, ice making complex process, for example, ice making and deice process, it is necessary to ice-making device, fall ice
The equipment such as frame and ice-melting pool, and these equipment are fixed apparatus, it is difficult to move, and amount of equipment power consumption is big, it is another
By the way of the ice machine or use refrigerating medium of conventional expanded valve feed flow cool down indirectly, ice making principle is aspect:Utilize load
Cryogen is as heat-exchange medium, and by carrying out heat exchange with refrigerant, refrigerant temperature reduces, and is used to make in ice cylinder so as to cool down
The water of ice, this process loss of refrigeration capacity is big, and efficiency is poor, so real be necessary to design a kind of novel energy-conserving movement ice machine.
The content of the invention
The technical problems to be solved by the invention are to overcome above mentioned problem, and propose a kind of novel energy-conserving movement ice making
Machine, removable effect can be realized, and increase vaporizer side refrigerant flow rates using fluorine pump feed flow, evaporator refrigerant side can
More fully soaked, convection transfer rate increase, the heat transfer effect of further enhanced water evaporation device, reach energy-efficient mesh
's.
The technical scheme is that:
A kind of novel energy-conserving movement ice machine of the present invention, it is characterised in that:Including frame, refrigeration compressor, condenser,
Direct-cooling type ice mould, four-way valve, oil eliminator, circulation barrel, fluorine pump, liquid receiver, magnetic valve, choke valve, control cabinet and lifting platform, its
Described in direct-cooling type ice mould include evaporator, is provided with cooling passage in evaporator;
The refrigeration compressor is fixed on lower end on the left of frame, and liquid receiver is located on the left of refrigeration compressor and is fixed on the left of frame
Lower end, oil eliminator are located on the right side of refrigeration compressor and are fixed on lower end on the left of frame;The condenser is fixed on the left of frame
Upper end, control cabinet are located on front side of condenser and are fixed on upper end on the left of frame;The lifting platform is located at lower end on the right side of frame, direct-cooled
Formula ice mould is located at upper end on the right side of frame and is located at directly over lifting platform;The circulation barrel be arranged on condenser and direct-cooling type ice mould it
Between and be hung on frame upper end, the fluorine pump is located on the right side of condenser and is arranged on below circulation barrel;
The refrigeration compressor high-pressure side is connected with oil eliminator by pipeline, and four ports of the four-way valve pass through pipe respectively
Road is connected with oil eliminator, condenser, circulation barrel, evaporator, and the condenser is sequentially connected liquid receiver, electromagnetism by pipeline
Valve, choke valve, circulation barrel, the circulation barrel are sequentially connected fluorine pump, evaporator by pipeline, and the circulation barrel is also straight by pipeline
Refrigeration compressor low-pressure end is connected in succession.
Further, in novel energy-conserving of the present invention moves ice machine, the circulation barrel includes cylindric one
Horn body and two horn bodies, No.1 cylinder and two horn bodies are in laying up and down and are interconnected;The lateral wall of the No.1 cylinder
On be provided with gas-liquid import, gas outlet, inlet and leakage fluid dram, the lateral wall of the two horns body is provided with fluorine pump supply opening;
The gas-liquid import of wherein No.1 cylinder is connected with four-way valve, and the gas outlet of No.1 cylinder is connected with refrigeration compressor low-pressure end, and one
The inlet of horn body is connected with choke valve, and fluorine pump supply opening is connected with fluorine pump.
Preferably, the fluorine pump supply opening on the two horns body is not less than 1.0 meters higher than fluorine pump inlet and its difference in height.
Preferably, the upper surface of the No.1 cylinder is convexly equipped with relief valve connection and pressure gauge connection, No.1 cylinder
Interface on liquid level meter, interface, Liquid level lower interface on Liquid level, and No.1 cylinder are sequentially provided with lateral wall from top to bottom
On inlet be located on Liquid level between interface, Liquid level lower interface;Liquid is additionally provided with the external side wall of two horns
Lower interface is counted in face, and two horn body lower surfaces are convexly equipped with sewage draining exit.
Further, in novel energy-conserving of the present invention moves ice machine, the liquid receiver is cylindrical, along frame
Fore-and-aft direction horizontal layout, its lateral wall one end are provided with the inlet being connected with condensator outlet, and the other end is provided with and magnetic valve
Connected liquid outlet;Relief valve port, upper liquid-sighting glass mouth and lower liquid-sighting glass mouth are additionally provided with the lateral wall of the liquid receiver, and it is described
Upper liquid-sighting glass open height is higher than lower liquid-sighting glass mouth.
Further, novel energy-conserving of the present invention move ice machine in, the condenser be air-cooled condenser or
Evaporative condenser.
Further, novel energy-conserving of the present invention move ice machine in, the choke valve be heating power expansion valve or
Electric expansion valve.
Further, in novel energy-conserving of the present invention moves ice machine, the fluorine pump uses centrifugal pump.
By said structure, present invention improves over the peripheral passage of refrigerant, doubles feed flow with reference to fluorine pump circulation and realizes height
Effect energy-conservation ice making.In ice-making process, first toward topped up with water in direct-cooling type ice mould, operation control box control refrigeration compressor, condenser
Start simultaneously, low pressure refrigerant vapor enters ice making compressor low-pressure end, is compressed into after high temperature and high pressure steam from ice making compressor
High-pressure side enters oil eliminator, segregation excision lubricating oil, and refrigerant vapour is condensed into height via four-way valve into condenser thereafter
Compression refrigerant liquid, then liquid reservoir, magnetic valve, choke valve are flowed through along pipeline successively by condensator outlet and enter circulation barrel, from following
The fluorine pump supply opening of ring bucket enters pressurization by fluorine pumping and is sent into evaporator, and refrigerant heat absorption is vaporized into low pressure refrigerant vapor, from
Evaporator outlet is transmitted back to circulation barrel, and refrigerant liquid, gas are isolated in circulation barrel, and liquid is done work by fluorine pump and recycled
Into evaporator, gas then reenters refrigeration compressor low-pressure end, is achieved in a kind of refrigeration cycle cycle, constantly in circulation
Process is stated, heat is constantly absorbed in direct-cooling type ice mould, and water is gradually condensed into ice, completes ice-making process.
The beneficial effects of the invention are as follows:
1st, the present invention devises packaged type set structure, by refrigeration compressor, condenser, direct-cooling type ice mould, oil eliminator, follows
The common closed assembly combination such as ring bucket will can use in frame according to being actually needed on whole unit running transform to suitable station,
Irremovable defect after the equipment such as traditional ice-melting pool are installed is overcome, use is more convenient.
2nd, the present invention devises fluorine pump feed flow link on chiller refrigeration circulation loop, effectively increases refrigerant circulation
Amount and flow velocity, ensure that circulating mass of refrigerant is several times as much as evaporator evaporation amount and evaporator is had sufficiently wetting surface, play it
The heat conductive efficiency of whole disengagement areas, convection transfer rate are increased, so as to greatly improve heat exchange efficiency, compared to tradition
Expansion valve liquid feeding mode cools down more efficient energy-saving indirectly using refrigerating medium.
3rd, be advantageous to the uniform liquid separation of evaporator refrigerant using fluorine pump feed liquid way, ensure that the refrigeration effect of refrigerating circuit
Fruit, exchange heat more abundant, thus obtained ice cube regular uniform, effectively increases the quality of ice making.
Brief description of the drawings
Fig. 1 is the dimensional structure diagram one of the present invention.
Fig. 2 is the dimensional structure diagram two of the present invention.
Fig. 3 is the structural representation of circulation barrel of the present invention.
Fig. 4 is the structural representation of liquid receiver of the present invention.
Embodiment
In conjunction with accompanying drawing, the present invention is further illustrated:
It is shown referring to Figures 1 and 2, a kind of novel energy-conserving movement ice machine described in the present embodiment, including frame 1, refrigerant compression
Machine 2, condenser 3, direct-cooling type ice mould 4, four-way valve 5, oil eliminator 6, circulation barrel 7, fluorine pump 8, liquid receiver 9, magnetic valve 10, throttling
Valve 11, control cabinet 12 and lifting platform 13, wherein the direct-cooling type ice mould 4 includes evaporator, lead in evaporator provided with coolant
Road.
The refrigeration compressor 2 is fixed on the left side lower end of frame 1, and liquid receiver 9 is located at the left side of refrigeration compressor 2 and is fixed on
The left side lower end of frame 1, oil eliminator 6 are located at the right side of refrigeration compressor 2 and are fixed on the left side lower end of frame 1;The condenser 3 is solid
The left side upper end of frame 1 is scheduled on, control cabinet 12 is located at the front side of condenser 3 and is fixed on the left side upper end of frame 1;The lifting platform 13
In the right side lower end of frame 1, direct-cooling type ice mould 4 is located at the right side upper end of frame 1 and directly over lifting platform 13;The circulation barrel 7
It is arranged between condenser 3 and direct-cooling type ice mould 4 and is hung on the upper end of frame 1, the fluorine pump 8 is located at the right side of condenser 3 and set
Put below circulation barrel 7.
The high-pressure side of refrigeration compressor 2 is connected with oil eliminator 6 by pipeline, four ports point of the four-way valve 5
It is not connected by pipeline with oil eliminator 6, condenser 3, circulation barrel 7, evaporator, the condenser 3 is sequentially connected by pipeline
Liquid receiver 9, magnetic valve 10, choke valve 11, circulation barrel 7, the circulation barrel 7 are sequentially connected fluorine pump 8, evaporator, institute by pipeline
State circulation barrel 7 and the low-pressure end of refrigeration compressor 2 is also connected directly to by pipeline.
Specifically, with reference to shown in Fig. 3, circulation barrel 7 described in the present embodiment includes cylindric No.1 cylinder and two horn bodies,
No.1 cylinder and two horn bodies in laying up and down and are interconnected;Gas-liquid import is provided with the lateral wall of the No.1 cylinder
702nd, gas outlet 701, inlet 703 and leakage fluid dram 704, the lateral wall of the two horns body are provided with fluorine pump supply opening 705;Its
The gas-liquid import 702 of middle No.1 cylinder is connected with four-way valve 5, gas outlet 701 and the low-pressure end phase of refrigeration compressor 2 of No.1 cylinder
Even, the inlet 703 of No.1 cylinder is connected with magnetic valve 10, and fluorine pump supply opening 705 is connected with fluorine pump 8.It is worth noting that, institute
The fluorine pump supply opening 705 stated on two horn bodies is not less than 1.0 meters higher than the import of fluorine pump 8 and its difference in height.
The upper surface of the No.1 cylinder is convexly equipped with relief valve connection 706 and pressure gauge connection 707, relief valve connection 706
Corresponding connection safety valve, the corresponding connection pressure gauge of pressure gauge connection 707;It is sequentially provided with from top to bottom on the lateral wall of No.1 cylinder
Interface 708 on liquid level meter, interface 709, Liquid level lower interface 710 on Liquid level, and the inlet on No.1 cylinder 703
Between interface on Liquid level 709, Liquid level lower interface 710;It is additionally provided with the external side wall of two horns under liquid level meter
Interface 711, two horn body lower surfaces are convexly equipped with sewage draining exit 712.Wherein, on liquid level meter interface 708, liquid level meter lower interface 711 it
Between be connected with liquid level meter, for showing liquid level in circulation barrel 7;Interface 709, Liquid level lower interface 710 on Liquid level
Between connect two position sensor, in circulation barrel 7 liquid level accurate detection sensing.
Shown in reference picture 1 and Fig. 4, liquid receiver 9 is cylindrical described in the present embodiment, along the fore-and-aft direction horizontal layout of frame 1,
Its lateral wall one end is provided with exports the inlet 901 being connected with condenser 3, and the other end is provided with the liquid outlet being connected with magnetic valve 10
902;Relief valve port 903, upper liquid-sighting glass mouth 904 and lower liquid-sighting glass mouth 905, and institute are additionally provided with the lateral wall of the liquid receiver 9
State the height of liquid-sighting glass mouth 904 and be higher than lower liquid-sighting glass mouth 905.The corresponding installation safety valve of relief valve port 903, upper liquid-sighting glass mouth 904
Correspond to the upper and lower liquid-sighting glass of installation respectively with lower liquid-sighting glass mouth 905, be easy to observe the inner case of liquid receiver 9.
It should be noted that condenser 3 described in the present embodiment is air-cooled condenser or evaporative condenser, the choke valve
11 be heating power expansion valve or electric expansion valve, and the fluorine pump 8 uses centrifugal pump.
The course of work of the present embodiment is described as follows.
Before ice making start, add water, after the water in direct-cooling type ice mould 4 is full of, operation control box 12 toward direct-cooling type ice mould 4 is interior
So that refrigeration compressor 2, condenser 3 start simultaneously, low pressure refrigerant vapor enters refrigeration by the low-pressure stage of refrigeration compressor 2 and pressed
Contracting machine 2, the steam condition of HTHP is compressed into refrigeration compressor 2, entering oil through the hiigh pressure stage of refrigeration compressor 2 separates
Device 6, the lubricating oil separation carried secretly in the superheated steam that oil eliminator 6 discharges refrigeration compressor 2 is out and discharging refrigerant steams
Vapour.Thereafter the steam of HTHP enters condenser 3 by four-way valve 5, goes out after being condensed into high pressure refrigerant liquid from condenser 3
Mouthful outflow, enters liquid receiver 9 along the inlet 901 of liquid receiver 9, and is flowed out from the liquid outlet 902 of liquid receiver 9, by magnetic valve 10,
Choke valve 11, the refrigerant liquid by throttling are entered in circulation barrel 7 by the inlet 703 of circulation barrel 7.Reservoir in said process
Bucket 9 serves regulation refrigerant liquid quantity delivered, and the effect of unnecessary refrigerant liquid is reclaimed in storage.Refrigeration in circulation barrel 7
Agent liquid is sucked by fluorine pump supply opening 705 by fluorine pump 8, and the coolant of evaporator is entered back into by centrifuging the acting pressurization of fluorine pump 8
In passage, constantly absorb the heat of the reclaimed water of direct-cooling type ice mould 4 and be vaporized into low pressure refrigerant vapor, then flowed out from evaporator
The gas-liquid import 702 of the top of circulation barrel 7 is returned to by four-way valve 5, now circulation barrel 7 plays separation refrigerant liquid and gas
Act on, the liquid in circulation barrel 7 is entered in evaporator from fluorine pump supply opening 705 by fluorine pump power cycle again, and circulation barrel 7
Interior gas is discharged by the gas outlet 701 of circulation barrel 7 and returns to refrigeration compressor 2 by the low-pressure end of refrigeration compressor 2, completes a system
SAPMAC method.Refrigerant circulates in refrigeration systems, makes the heat of water in direct-cooling type ice mould 4 gradual constantly by refrigerant suction
It is condensed into ice.After the completion for the treatment of ice making, switching four-way valve 5 is deiced, and driving lifting platform 13 drives ice cube to move down together, and user will
The ice cube made is moved.The present embodiment is simple in construction, and automaticity is high, conveniently moving, ice making good energy-conserving effect, comprehensive
Cost is low.
The principle and its effect of the specific embodiment described herein only illustrative present invention, not for limitation
The present invention.Any person skilled in the art can all be carried out under the spirit and scope without prejudice to the present invention to above-described embodiment
Modifications and changes.Therefore, as long as those of ordinary skill in the art without departing from disclosed spirit with
All equivalent modifications completed under technological thought or change, it should be covered by the claim of the present invention.
Claims (8)
1. a kind of novel energy-conserving moves ice machine, it is characterised in that:Including frame, refrigeration compressor, condenser, direct-cooling type ice
Mould, four-way valve, oil eliminator, circulation barrel, fluorine pump, liquid receiver, magnetic valve, choke valve, control cabinet and lifting platform, wherein described straight
Cold type ice mould includes evaporator, and cooling passage is provided with evaporator;
The refrigeration compressor is fixed on lower end on the left of frame, and liquid receiver is located on the left of refrigeration compressor and is fixed on the left of frame
Lower end, oil eliminator are located on the right side of refrigeration compressor and are fixed on lower end on the left of frame;The condenser is fixed on the left of frame
Upper end, control cabinet are located on front side of condenser and are fixed on upper end on the left of frame;The lifting platform is located at lower end on the right side of frame, direct-cooled
Formula ice mould is located at upper end on the right side of frame and is located at directly over lifting platform;The circulation barrel be arranged on condenser and direct-cooling type ice mould it
Between and be hung on frame upper end, the fluorine pump is located on the right side of condenser and is arranged on below circulation barrel;
The refrigeration compressor high-pressure side is connected with oil eliminator by pipeline, and four ports of the four-way valve pass through pipe respectively
Road is connected with oil eliminator, condenser, circulation barrel, evaporator, and the condenser is sequentially connected liquid receiver, electromagnetism by pipeline
Valve, choke valve, circulation barrel, the circulation barrel are sequentially connected fluorine pump, evaporator by pipeline, and the circulation barrel is also straight by pipeline
Refrigeration compressor low-pressure end is connected in succession.
2. novel energy-conserving according to claim 1 moves ice machine, it is characterised in that:The circulation barrel includes cylindric
No.1 cylinder and two horn bodies, No.1 cylinder and two horn bodies are in laying up and down and are interconnected;The outside of the No.1 cylinder
Gas-liquid import, gas outlet, inlet and leakage fluid dram are provided with wall, the lateral wall of the two horns body is provided with fluorine pump feed flow
Mouthful;The gas-liquid import of wherein No.1 cylinder is connected with four-way valve, and the gas outlet of No.1 cylinder is connected with refrigeration compressor low-pressure end,
The inlet of No.1 cylinder is connected with choke valve, and fluorine pump supply opening is connected with fluorine pump.
3. novel energy-conserving according to claim 2 moves ice machine, it is characterised in that:Fluorine pump on the two horns body supplies
Liquid mouth is not less than 1.0 meters higher than fluorine pump inlet and its difference in height.
4. the novel energy-conserving movement ice machine according to Claims 2 or 3, it is characterised in that:The upper end of the No.1 cylinder
Face is convexly equipped with relief valve connection and pressure gauge connection, is sequentially provided with liquid level meter and connects from top to bottom on the lateral wall of No.1 cylinder
Interface, Liquid level lower interface on mouth, Liquid level, and the inlet on No.1 cylinder is located at interface, liquid level on Liquid level
Between control lower interface;Liquid level meter lower interface is additionally provided with the external side wall of two horns, two horn body lower surfaces are convexly equipped with row
Dirty mouth.
5. novel energy-conserving according to claim 1 moves ice machine, it is characterised in that:The liquid receiver is cylindrical, edge
Frame fore-and-aft direction horizontal layout, its lateral wall one end are provided with the inlet being connected with condensator outlet, and the other end is provided with and electricity
The connected liquid outlet of magnet valve;Relief valve port, upper liquid-sighting glass mouth and lower liquid-sighting glass mouth are additionally provided with the lateral wall of the liquid receiver, and
The upper liquid-sighting glass open height is higher than lower liquid-sighting glass mouth.
6. novel energy-conserving according to claim 1 moves ice machine, it is characterised in that:The condenser is air-cooled condenser
Or evaporative condenser.
7. novel energy-conserving according to claim 1 moves ice machine, it is characterised in that:The choke valve is heating power expansion valve
Or electric expansion valve.
8. novel energy-conserving according to claim 1 moves ice machine, it is characterised in that:The fluorine pump uses centrifugal pump.
Priority Applications (1)
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CN201710712611.2A CN107339839A (en) | 2017-08-18 | 2017-08-18 | A kind of novel energy-conserving moves ice machine |
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CN201710712611.2A CN107339839A (en) | 2017-08-18 | 2017-08-18 | A kind of novel energy-conserving moves ice machine |
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Family
ID=60215307
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CN201710712611.2A Pending CN107339839A (en) | 2017-08-18 | 2017-08-18 | A kind of novel energy-conserving moves ice machine |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108534415A (en) * | 2018-01-25 | 2018-09-14 | 山东宝成制冷设备有限公司 | A kind of direct-cooling type ice machine |
CN110160297A (en) * | 2019-03-20 | 2019-08-23 | 广东雪源制冰设备有限公司 | Ice cube maker assists liquid-supplying system and ice cube maker |
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CN201281498Y (en) * | 2008-10-08 | 2009-07-29 | 天津商业大学 | Recirculation evaporator |
CN201363948Y (en) * | 2009-02-27 | 2009-12-16 | 天津新技术产业园区大远东制冷设备工程技术有限公司 | Refrigerating machine utilizing fluorine pump to supply liquid |
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CN203258937U (en) * | 2013-04-25 | 2013-10-30 | 杭州杰汇科技有限公司 | Structure of main engine unit of ice maker |
CN205807892U (en) * | 2016-06-13 | 2016-12-14 | 北京库蓝科技有限公司 | A kind of compression and fluorine pump cycle refrigeration system |
CN205980498U (en) * | 2016-08-17 | 2017-02-22 | 安徽富士豪能源科技有限公司 | Portable ice machine |
CN207123108U (en) * | 2017-08-18 | 2018-03-20 | 浙江冰欧新能源科技有限公司 | A kind of novel energy-conserving moves ice machine |
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CN201281498Y (en) * | 2008-10-08 | 2009-07-29 | 天津商业大学 | Recirculation evaporator |
CN201363948Y (en) * | 2009-02-27 | 2009-12-16 | 天津新技术产业园区大远东制冷设备工程技术有限公司 | Refrigerating machine utilizing fluorine pump to supply liquid |
CN202119154U (en) * | 2011-04-19 | 2012-01-18 | 北京市红苑制冷设备厂 | Refrigeration system with Freon low-pressure circulation liquid storing bucket capable of returning oil automatically |
CN203258937U (en) * | 2013-04-25 | 2013-10-30 | 杭州杰汇科技有限公司 | Structure of main engine unit of ice maker |
CN205807892U (en) * | 2016-06-13 | 2016-12-14 | 北京库蓝科技有限公司 | A kind of compression and fluorine pump cycle refrigeration system |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108534415A (en) * | 2018-01-25 | 2018-09-14 | 山东宝成制冷设备有限公司 | A kind of direct-cooling type ice machine |
CN110160297A (en) * | 2019-03-20 | 2019-08-23 | 广东雪源制冰设备有限公司 | Ice cube maker assists liquid-supplying system and ice cube maker |
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Effective date of registration: 20211012 Address after: 241200 Room 806, 8th floor, comprehensive service building, Fanchang Economic Development Zone, Wuhu City, Anhui Province Applicant after: Bingou cold chain technology (Wuhu) Co.,Ltd. Address before: 317511 Yingbin Industrial Zone, Songmen Town, Wenling City, Taizhou City, Zhejiang Province (shouwangshan) Applicant before: ZHEJIANG BINGOU NEW ENERGY TECHNOLOGY Co.,Ltd. |
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Application publication date: 20171110 |
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