CN209541004U - Graphene energy-saving quick heating normal pressure electric heating furnace - Google Patents
Graphene energy-saving quick heating normal pressure electric heating furnace Download PDFInfo
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- CN209541004U CN209541004U CN201920010522.8U CN201920010522U CN209541004U CN 209541004 U CN209541004 U CN 209541004U CN 201920010522 U CN201920010522 U CN 201920010522U CN 209541004 U CN209541004 U CN 209541004U
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- water tank
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Abstract
The utility model discloses graphene energy-saving quick heating normal pressure electric heating furnaces, including metal shell and stainless steel hot water tank, stainless steel hot water tank is fixedly connected with inside the metal shell, and heat-generating pipe is plugged with inside stainless steel hot water tank, described heat-generating pipe one end is connect by seal head with stainless steel hot tank seal through stainless steel hot water tank side wall, and described heat-generating pipe one end, which is located on the outside of stainless steel hot water tank, is provided with lead.In the utility model, using heat-generating pipe, water circulating pump, heat-generating pipe is made of quartz glass tube, quartz glass tube is through special process, one layer of graphene composite material electric heating film is plated in inner wall, quartz glass inside pipe wall both ends respectively print a circle high temperature resistant silver paste as electrode, then one end high-temperature fusion seals, one end is sealed after picking out lead, and heat-generating pipe is placed in water, inside pipe wall electrified regulation, water in stainless steel hot water tank is heated to set temperature by moment, it is discharged, moves in circles through circulating pump, reach fever heating purpose.
Description
Technical field
The utility model relates to electric heating furnace technical field more particularly to graphene energy-saving quick heating normal pressure electric heating furnaces.
Background technique
Electric heating furnace, also referred to as Electric heating range, Quan Mingwei electric heating boiler, term are electric hot water, and electric heating boiler is
It is a kind of to convert electrical energy into the direct heat release of thermal energy or recycled in heating pipe by thermal medium to meet adopting for heating demands
Heating equipment belongs to the scope of electric hot water.
Electric heating furnace power consumption at this stage is big, and heating speed is slow, inadequate environmental protection and energy saving, increases circuit burden, and heat supply
Area is smaller, is not suitable for the unapproachable independent body building of central heating pipeline, in view of the above-mentioned problems, spy proposes a kind of graphite
Alkene energy-saving quick heating normal pressure electric heating furnace solves the above problems.
Utility model content
Purpose of the utility model is to solve disadvantages existing in the prior art, and the graphene energy-saving quick heating proposed
Normal pressure electric heating furnace.
To achieve the goals above, the utility model adopts the technical scheme that graphene energy-saving quick heating normal-pressure electric is adopted
Radiator, including metal shell and stainless steel hot water tank are fixedly connected with stainless steel hot water tank inside the metal shell, and stainless
Heat-generating pipe is plugged with inside steel boiler, described heat-generating pipe one end passes through seal head and stainless steel through stainless steel hot water tank side wall
Boiler is tightly connected, and described heat-generating pipe one end, which is located on the outside of stainless steel hot water tank, is provided with lead, plating inside the heat-generating pipe
There is electric heating film, and the inside pipe wall both ends that generate heat are printed with high temperature resistant silver paste coating, another upper lateral part of stainless steel hot water tank passes through
Lead to and be connected to connecting tube, and connecting tube is connected by the second water valve and water inlet pipe perforation, and connecting tube passes through water supply pipe and electricity
Valve perforation of controlling ball connects, and another side lower part of stainless steel hot water tank, which runs through, is connected with outlet pipe, and outlet pipe passes through recirculated water
Pump is connected with the perforation of the first water valve, and the metal shell inner wall is located at stainless steel hot water tank side and is embedded with temperature control plate, and metal
The positive facade of shell is inlaid with PLC controller, and is located at the positive facade of metal shell below PLC controller and is embedded with alarm.
It is as above-mentioned technical proposal to further describe:
The water inlet pipe is connected through metal-back body surface wall and circulation line perforation, and the outlet pipe is outside metal shell
Table wall and circulation line perforation connect.
It is as above-mentioned technical proposal to further describe:
The stainless steel hot water tank is internally provided with liquid-level switch, and stainless steel hot water tank has been internally embedded temperature sense
Device.
It is as above-mentioned technical proposal to further describe:
The PLC controller is electrically connected by temperature control plate and lead, and the liquid-level switch output end and PLC controller are defeated
Enter end to be electrically connected, and PLC controller output end and electric-controlled ball valve and water circulating pump input terminal are electrically connected, the temperature sense
Device output end and PLC controller input terminal are electrically connected, and PLC controller output end and alarm input terminal are electrically connected.
It is as above-mentioned technical proposal to further describe:
The positive facade of metal shell is hinged with maintenance door, and metal shell back elevation has been bolted rear sealing plate, and
Sealing plate surface offers heat release hole afterwards, and the metal shell is internally located at water circulating pump side equipped with wiring crane span structure.
It is as above-mentioned technical proposal to further describe:
The metal shell side is embedded with Protection switch, and Protection switch is electrically connected by conducting wire with PLC controller.
In conclusion by adopting the above-described technical solution, the beneficial effects of the utility model are:
In the utility model, heat-generating pipe, water circulating pump are used, heat-generating pipe is made of quartz glass tube, quartz glass tube
Through special process, one layer of graphene composite material electric heating film is plated in inner wall, quartz glass inside pipe wall both ends respectively print the resistance to height of a circle
Warm silver paste is as electrode, and then one end high-temperature fusion seals, and one end is sealed after picking out lead, and heat-generating pipe is placed in water, inside pipe wall
Water in stainless steel hot water tank is heated to set temperature, is discharged, moves in circles through circulating pump by electrified regulation, moment, reaches fever
Heat purpose, and electrothermal tube makes full use of the performance characteristics that graphene new material electric conductivity is strong, heating and heat conducting is fast, and two-dimensional electric heating
Film heating, temperature rise is fast, high-efficient, and energy conservation is good, in addition, circuit is located at stainless steel hot water tank outside, electricity separation, water is travelled by water,
Electricity walks circuit, high safety, while heating tube can also be according to different demands, can be with flexible assembling different length, different capacity
Graphene electric heating tube, meet various production and consumption demands, especially suitable for the unapproachable independent body of central heating pipeline
Building, villa, business, organ, school, kindergarten etc..
Detailed description of the invention
Fig. 1 be the utility model proposes graphene energy-saving quick heating normal pressure electric heating furnace structural schematic diagram;
Fig. 2 is the schematic diagram of internal structure of the utility model stainless steel hot water tank;
Fig. 3 be the utility model proposes graphene energy-saving quick heating normal pressure electric heating furnace main view;
Fig. 4 be the utility model proposes graphene energy-saving quick heating normal pressure electric heating furnace dorsal view;
Fig. 5 be the utility model proposes graphene energy-saving quick heating normal pressure electric heating furnace side view;
Fig. 6 is the cross-sectional view of the utility model heat-generating pipe.
Marginal data:
1- metal shell, 2- lead, 3- seal head, 4- stainless steel hot water tank, the first water valve of 5-, 6- outlet pipe, 7- circulation
Water pump, 8- temperature control plate, 9- thread gantry, 10- water inlet pipe, the second water valve of 11-, 12- water supply pipe, 13- electric-controlled ball valve, 14- connection
Pipe, 15- liquid-level switch, 16- heat-generating pipe, 17- high temperature resistant silver paste coating, 18- temperature inductor, 19- maintenance door, 20-PLC control
Sealing plate, 23- heat release hole, 24- Protection switch, 25- electric heating film after device processed, 21- alarm, 22-.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.
Referring to Fig.1-6, graphene energy-saving quick heating normal pressure electric heating furnace, including metal shell 1 and stainless steel hot water tank 4, gold
Belong to and be fixedly connected with stainless steel hot water tank 4 inside shell 1, and is plugged with heat-generating pipe 16 inside stainless steel hot water tank 4, heat-generating pipe 16
One end is tightly connected through 4 side wall of stainless steel hot water tank by seal head 3 and stainless steel hot water tank 4, and 16 one end of heat-generating pipe is located at
It is provided with lead 2 on the outside of stainless steel hot water tank 4, electric heating film 25 is coated with inside heat-generating pipe 16, and 16 inner wall both ends of heat-generating pipe print
Brushed with high temperature resistant silver paste coating 17, the perforation of another upper lateral part of stainless steel hot water tank 4 is connected with connecting tube 14, and connecting tube 14 passes through
Second water valve 11 is connected with the perforation of water inlet pipe 10, and connecting tube 14 is connected by water supply pipe 12 and the perforation of electric-controlled ball valve 13,
Another side lower part of stainless steel hot water tank 4, which runs through, is connected with outlet pipe 6, and outlet pipe 6 is passed through by water circulating pump 7 with the first water valve 5
Lead to and connect, 1 inner wall of metal shell is located at 4 side of stainless steel hot water tank and is embedded with temperature control plate 8, and the positive facade of metal shell 1 is inlayed
There is PLC controller 20, and is located at the positive facade of metal shell 1 below PLC controller 20 and is embedded with alarm 21.
Water inlet pipe 10 is connected through 1 table wall of metal shell and circulation line perforation, and outlet pipe 6 runs through 1 appearance of metal shell
Wall and circulation line perforation connect, and stainless steel hot water tank 4 is internally provided with liquid-level switch 15, and 4 inside of stainless steel hot water tank is embedding
Enter to have temperature inductor 18, PLC controller 20 is electrically connected by temperature control plate 8 and lead 2,15 output end of liquid-level switch with
20 input terminal of PLC controller is electrically connected, and 20 output end of PLC controller and electric-controlled ball valve 13 and water circulating pump 7 input terminal electricity
Property connection, 18 output end of temperature inductor and 20 input terminal of PLC controller are electrically connected, and 20 output end of PLC controller and report
Alert 21 input terminal of device is electrically connected, and the positive facade of metal shell 1 is hinged with maintenance door 19, and 1 back elevation of metal shell is bolted
There is rear sealing plate 22, and rear 22 surface of sealing plate offers heat release hole 23, metal shell 1 is internally located at 7 side of water circulating pump and is equipped with
Wiring crane span structure 9,1 side of metal shell is embedded with Protection switch 24, and Protection switch 24 is electrically connected by conducting wire with PLC controller 20
It connects.
Liquid-level switch 15 monitors the water level in stainless steel hot water tank 4 in real time, when water level is lower in stainless steel hot water tank 4,
PLC controller 20 controls electric-controlled ball valve 13 and opens, and external water source is injected in stainless steel hot water tank 4, showing for dry combustion method is prevented
As, meanwhile, temperature inductor 18 incudes temperature in stainless steel hot water tank 4 and sends a signal to PLC controller when water temperature over-high
20, PLC controller 20, which controls temperature control plate 8, reduces electrical output power, to reduce heating temperature, while PLC controller 20 is controlled
Alarm 21 processed sounds an alarm, and reminds user's temperature excessively high, and threading gantry 9 facilitates installation personnel to carry out threading wiring, electricity hair
Hotting mask 25 is made of graphene composite material, and heat-generating pipe 16 is provided with multiple.
Working principle: in use, the present apparatus is moved to suitable position, powering on for the present apparatus, connects water inlet pipe 10
With outlet pipe 6, and for water supply pipe 12 connect external water source, water is filled into stainless steel hot water tank 4 by water supply pipe 12, is passed through
PLC controller 20 starts the present apparatus, and heat-generating pipe 16 is made of quartz glass tube, and quartz glass tube is plated through special process in inner wall
One layer of graphene composite material electric heating film 25, quartz glass inside pipe wall both ends respectively print a circle high temperature resistant silver paste 17 and are used as electrode,
Then one end high-temperature fusion seals, and one end is sealed after picking out lead 2, and heat-generating pipe 16 is placed in water, inside pipe wall electrified regulation, wink
Between water in stainless steel hot water tank 4 is heated to set temperature, the water after heating is recycled by outlet pipe 6 passes through water inlet pipe after a week
10 are again introduced into stainless steel hot water tank 4 and heat, and move in circles, and reach fever heating purpose.
The preferable specific embodiment of the above, only the utility model, but the protection scope of the utility model is not
It is confined to this, anyone skilled in the art is within the technical scope disclosed by the utility model, practical according to this
Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model
Within enclosing.
Claims (6)
1. graphene energy-saving quick heating normal pressure electric heating furnace, including metal shell (1) and stainless steel hot water tank (4), which is characterized in that
It is fixedly connected with stainless steel hot water tank (4) inside the metal shell (1), and is plugged with fever inside stainless steel hot water tank (4)
It manages (16), described heat-generating pipe (16) one end passes through seal head (3) and stainless steel hot water tank through stainless steel hot water tank (4) side wall
(4) it is tightly connected, described heat-generating pipe (16) one end, which is located on the outside of stainless steel hot water tank (4), is provided with lead (2), the heat-generating pipe
(16) internal to be coated with electric heating film (25), and heat-generating pipe (16) inner wall both ends are printed with high temperature resistant silver paste coating (17), it is described not
The perforation of rust steel boiler (4) another upper lateral part is connected with connecting tube (14), and connecting tube (14) by the second water valve (11) with into
Water pipe (10) perforation connection, and connecting tube (14) is connected by water supply pipe (12) and electric-controlled ball valve (13) perforation, it is described stainless
Steel boiler (4) another side lower part, which runs through, to be connected with outlet pipe (6), and outlet pipe (6) passes through water circulating pump (7) and the first water valve
(5) perforation connection, metal shell (1) inner wall is located at stainless steel hot water tank (4) side and is embedded with temperature control plate (8), and metal
The positive facade of shell (1) is inlaid with PLC controller (20), and it is embedding to be located at metal shell (1) positive facade below PLC controller (20)
Enter to have alarm (21).
2. graphene energy-saving quick heating normal pressure electric heating furnace according to claim 1, which is characterized in that the water inlet pipe (10)
It is connected through metal shell (1) table wall and circulation line perforation, the outlet pipe (6) is run through metal shell (1) appearance wall and followed
The perforation connection of endless tube road.
3. graphene energy-saving quick heating normal pressure electric heating furnace according to claim 1, which is characterized in that the stainless steel hot water
Case (4) is internally provided with liquid-level switch (15), and stainless steel hot water tank (4) has been internally embedded temperature inductor (18).
4. graphene energy-saving quick heating normal pressure electric heating furnace according to claim 3, which is characterized in that the PLC controller
(20) it is electrically connected by temperature control plate (8) and lead (2), liquid-level switch (15) output end and PLC controller (20) input
End is electrically connected, and PLC controller (20) output end and electric-controlled ball valve (13) and water circulating pump (7) input terminal are electrically connected, institute
It states temperature inductor (18) output end and PLC controller (20) input terminal is electrically connected, and PLC controller (20) output end and report
Alert device (21) input terminal is electrically connected.
5. graphene energy-saving quick heating normal pressure electric heating furnace according to claim 1, which is characterized in that the metal shell
(1) positive facade is hinged with maintenance door (19), and metal shell (1) back elevation has been bolted rear sealing plate (22), and rear sealing plate
(22) surface offers heat release hole (23), and the metal shell (1) is internally located at water circulating pump (7) side equipped with wiring crane span structure
(9)。
6. graphene energy-saving quick heating normal pressure electric heating furnace according to claim 1, which is characterized in that the metal shell
(1) side is embedded with Protection switch (24), and Protection switch (24) is electrically connected by conducting wire with PLC controller (20).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920010522.8U CN209541004U (en) | 2019-01-04 | 2019-01-04 | Graphene energy-saving quick heating normal pressure electric heating furnace |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920010522.8U CN209541004U (en) | 2019-01-04 | 2019-01-04 | Graphene energy-saving quick heating normal pressure electric heating furnace |
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Publication Number | Publication Date |
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CN209541004U true CN209541004U (en) | 2019-10-25 |
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CN201920010522.8U Active CN209541004U (en) | 2019-01-04 | 2019-01-04 | Graphene energy-saving quick heating normal pressure electric heating furnace |
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CN (1) | CN209541004U (en) |
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2019
- 2019-01-04 CN CN201920010522.8U patent/CN209541004U/en active Active
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