CN204554759U - Cylindricality energy-saving steam generator - Google Patents

Cylindricality energy-saving steam generator Download PDF

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Publication number
CN204554759U
CN204554759U CN201520106688.1U CN201520106688U CN204554759U CN 204554759 U CN204554759 U CN 204554759U CN 201520106688 U CN201520106688 U CN 201520106688U CN 204554759 U CN204554759 U CN 204554759U
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CN
China
Prior art keywords
steam
inner bag
stram
steam generator
spiral
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Withdrawn - After Issue
Application number
CN201520106688.1U
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Chinese (zh)
Inventor
吴智彪
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Shenzhen steam energy saving Hi Tech Co., Ltd.
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Zheng Miao Science And Technology Ltd Of Shenzhen
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Priority to CN201520106688.1U priority Critical patent/CN204554759U/en
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Publication of CN204554759U publication Critical patent/CN204554759U/en
Withdrawn - After Issue legal-status Critical Current
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Abstract

The utility model discloses a kind of cylindricality energy-saving steam generator, it comprises shell, water inlet pipe, venthole and control circuit, its improvements are to be provided with steam inner bag in described shell, in steam, gallbladder intracavity is provided with spiral stram guiding plate, helicoidal stream passage is formed between spiral stram guiding plate and steam inner bag intracavity sidewall, steam inner bag upper end is connected with water inlet pipe, and steam inner bag lower end is connected with venthole; Steam inner bag is coated with heat-insulation layer, and heat-insulation layer is wound with inductance coil, and inductance coil is connected with control circuit.The utility model volume is little, does not take up room, and without process to boil water, efficiency is high, and energy consumption is low; Heated by path, more than 180 DEG C high-temperature steams under normal pressure, can be produced, and can efficiently scale removal, greatly meet the market demand, be suitable for extensively being promoted the use of.

Description

Cylindricality energy-saving steam generator
Technical field
The utility model relates to technical field of heat exchange in plant equipment, carries out exchange heat to obtain the cylindricality energy-saving steam generator of high-temperature steam under especially relating to a kind of normal pressure by path heating.
Background technology
Boiler utilizes fuel or other energy that water is heated as the plant equipment of steam, can be used for the every profession and trades such as hospital, bathroom, dining room, hotel, hotel, weaving, metallurgy, clothes, packaging, food.Traditional boiler has the shortcomings such as difficult management, energy consumption be larger, and bears HTHP because of it, and safety problem is very important.Even miniature boiler, once blast, consequence is also very serious.
In order to solve this technical problem, market there is steam generator, have structure simple, be easy to that management, energy consumption are lower, security performance advantages of higher, be thus subject to the favor of people.This steam generator is generally provided with heating chamber and heater therein, heating chamber communicates with water inlet and steam (vapor) outlet, cold water is heated to be steam by heater after entering heating chamber, steam can spray from steam (vapor) outlet, its heater is arranged at bottom heating chamber, and during heating, heater is all heated to boiling to the water in heating chamber and then produces water vapour.There is following shortcoming in this type of steam generator: 1, volume is large, can take larger space; 2, the whole cold water in heating chamber are heated under atmospheric pressure state, need experience process to boil water, the time producing steam is long, steam generation efficiency is low, cause the waste of the energy, and what produce is all the steam of 100 DEG C, if the steam produced is more than 100 DEG C, then can produce high pressure, there is potential safety hazard; 3, heat cold water whole in heating chamber, heating chamber inwall can adhere to a large amount of incrustation scales, and incrustation scale is easy to clean not, have impact on the operating efficiency of steam generator, shortens service life.Based on this, market is needed a kind of steam generator that can solve the problems of the technologies described above badly.
Utility model content
The purpose of this utility model is the deficiency effectively overcoming above-mentioned technology, provides a kind of novel cylindricality energy-saving steam generator.
The technical solution of the utility model is achieved in that it comprises shell, water inlet pipe, venthole and control circuit, its improvements are: be provided with steam inner bag in described shell, in steam, gallbladder intracavity is provided with spiral stram guiding plate, helicoidal stream passage is formed between spiral stram guiding plate and steam inner bag intracavity sidewall, steam inner bag upper end is connected with water inlet pipe, water inlet pipe is provided with atomizer in steam inner bag one end, and steam inner bag lower end is connected with venthole; Steam inner bag is coated with heat-insulation layer, and heat-insulation layer is wound with inductance coil, and inductance coil is connected with control circuit.
In said structure, the cylinder of described steam inner bag to be two ends be taper, the upper tapering of steam inner bag is connected with the water inlet pipe be fixed on shell fixed mount, and the hypocone of steam inner bag is connected with the venthole on shell bottom plate.
In said structure, described spiral stram guiding plate runs through in the axial direction and is provided with hollow pipe, and spiral stram guiding plate upper surface is stretched out in hollow pipe upper end, and hollow pipe upper end sidewall has through hole; Hollow pipe upper end is also provided with block, and hollow pipe lower end is connected with the spiral stram guiding plate near venthole.
In said structure, the upper tapering of described steam inner bag is provided with pressure safety valve.
In said structure, the spacing between described spiral stram guiding plate increases progressively from top to bottom step by step.
In said structure, the shape of described block is umbrella shape.
In said structure, described venthole is provided with T-shaped connector, and T-shaped connector vertical direction connects dirt pocket, and dirt pocket is provided with draining valve, and T-shaped connector horizontal direction is connected with steam pipe.
In said structure, described water inlet pipe water inflow direction is serially connected with pressure-reducing valve, filter, adjustment pump and magnetic valve successively, regulates pump to be connected with control circuit with magnetic valve.
In said structure, described outer surface of outer cover is provided with switch, thermosistor and indicator, and switch, thermosistor are connected with control circuit with indicator.
In said structure, the material of described heat-insulation layer is asbestos.
The beneficial effects of the utility model are: the cylindricality energy-saving steam generator that the utility model provides, inductance coil can produce eddy current after being energized under the effect of control circuit, utilizes the spiral stram guiding plate of the fuel factor of eddy current to steam inner bag and its inner chamber to heat.The upper tapering that steam enters steam inner bag is atomized into after the water of water inlet pipe flows through atomizer, then under the guide effect of spiral stram guiding plate, move down along helicoidal stream passage, and by stepped heating in helicoidal stream passage, until be completely vaporised into high-temperature steam, the last steam pipe entering into T-shaped connector horizontal direction from helicoidal stream passage lower end successively through the hypocone of steam inner bag, venthole, the vapor (steam) temperature of generation can up to more than 180 DEG C; The incrustation scale produced in described process can form molecule, scale particles is suspended in helicoidal stream passage, instead of be attached on spiral stram guiding plate and steam inner bag intracavity sidewall, move downward along helicoidal stream passage under its deadweight and Steam Actuation, the last dirt pocket entering into T-shaped connector vertical direction from helicoidal stream passage lower end successively through the hypocone of steam inner bag, venthole, thus realize efficient scale removal, substantially prolongs product service life.
Hinge structure, the utility model structure is simple, and volume is little, do not take up room, electromagnetic induction heating is utilized, without process to boil water to the spiral stram guiding plate of steam inner bag and its inner chamber, water smoke enters helicoidal stream passage and is vaporized instantaneously, and steam generation time is short, and energy waste is few; Steam, being further heated by during helicoidal stream passage, can produce the high-temperature steam of more than 180 DEG C, and can not produce high pressure, simultaneously can efficiently scale removal, and result of use is very good, is suitable for extensively promoting the existing boiler of replacement and steam generator.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model
Fig. 2 is the structural representation after the utility model shell is cut open
Fig. 3 is the schematic perspective view after the utility model steam inner bag is cut open
Fig. 4 is the floor map after the utility model steam inner bag is cut open
In figure: 1, shell; 2, upper cover; 3, lower margin; 4, water inlet pipe; 5, venthole; 6, water inlet end; 7, water side; 8, upper spacer; 9, fixed mount; 10, base plate; 11, control circuit; 12, heat-insulation layer; 13, inductance coil; 14, upper tapering; 15, steam inner bag; 16, hypocone; 17, atomizer; 18, spiral stram guiding plate; 19, helicoidal stream passage; 20, hollow pipe; 21, block a shot; 22, through hole; 23, pressure safety valve; 24, radiator fan; 25, T-shaped connector; 26, dirt pocket; 27, draining valve; 28, steam pipe; 29, pressure-reducing valve; 30, filter; 31, pump is regulated; 32, magnetic valve; 33, louvre; 34, switch; 35, thermosistor; 36, indicator.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model will be further described.
As shown in Figure 1, Figure 2, shown in Fig. 3 and Fig. 4, the cylindricality energy-saving steam generator that the utility model discloses, it comprises shell 1, water inlet pipe 4, venthole 5 and control circuit 11, and shell 1 top is provided with upper cover 2, is provided with lower margin 3 bottom shell 1.Upper spacer 8, fixed mount 9, steam inner bag 15 and base plate 10 is provided with from top to bottom successively in shell 1, control circuit 11 is positioned on upper spacer 8, steam inner bag 15 for two ends be the cylinder of taper, the upper tapering 14 of steam inner bag 15 is connected with the water inlet pipe 4 that fixed mount 9 is installed, water inlet pipe 4 is provided with atomizer 17 in the water side 7 of steam inner bag 15, the upper tapering 14 of steam inner bag 15 is provided with pressure safety valve 23, plays the effect of pressure release when steam pressure raises and reaches upper safety limit; The hypocone 16 of steam inner bag 15 is connected with the venthole 5 on base plate 10, fixed mount 9 and base plate 10 pairs of steam inner bags 15 play support fixation, upper spacer 8 pairs of control circuits 11 and steam inner bag 15 play compartmentation simultaneously, extend the service life of control circuit 11.Steam inner bag 15 inner chamber is provided with spiral stram guiding plate 18, and the spacing between spiral stram guiding plate 18 increases progressively from top to bottom step by step, forms helicoidal stream passage 19 between spiral stram guiding plate 18 and steam inner bag 15 intracavity sidewall; Steam is constantly heated when helicoidal stream passage 19 flows downward, volume can expand gradually, the pressure in helicoidal stream passage 19 is caused to increase, and spiral stram guiding plate 18 adopts said structure, the space of helicoidal stream passage 19 progressively becomes large from top to bottom, thus make steam in helicoidal stream passage 19 maintain atmospheric pressure state, to guarantee use safety.Steam inner bag 15 is coated with heat-insulation layer 12, wherein, preferably, the material of heat-insulation layer 12 is asbestos, also can adopt pottery etc., heat-insulation layer 12 be wound with inductance coil 13, inductance coil 13 is connected with control circuit 11, and inductance coil 13 can produce vortex heat after being energized.
Further, spiral stram guiding plate 18 runs through in the axial direction and is provided with hollow pipe 20, and hollow pipe 20 upper end is stretched out spiral stram guiding plate 18 upper surface and this hollow pipe 20 upper end sidewall is had through hole 22; Hollow pipe 20 upper end is also provided with block 21, and wherein, preferably, the shape of block 21 is umbrella shape, and the steam flowed out to prevent atomizer 17 directly enters hollow pipe 20, and hollow pipe 20 lower end is connected with the spiral stram guiding plate 18 near venthole 5.By this structure, the part of steam flowed out from helicoidal stream passage 19 lower end can pass back in hollow pipe 20, and rises along hollow pipe 20 and to flow out from through hole 22, preheats, improve the generation efficiency of steam further to the steam that atomizer 17 flows out.
Further, shell 1 upper portion side wall is provided with louvre 33, for dispelling the heat to steam inner bag 15 in control circuit 11 and shell 1 inner chamber; Shell 1 lower sides is provided with radiator fan 24, for dispelling the heat to steam inner bag 15 in shell 1 inner chamber.
Further, venthole 5 is provided with T-shaped connector 25, T-shaped connector 25 vertical direction is connected with dirt pocket 26, concrete, T-shaped connector 25 vertical direction has been threaded connection dirt pocket 26, and dirt pocket 26 easy accessibility, is conducive to the cleaning of incrustation scale, dirt pocket 26 is also provided with the draining valve 27 for a small amount of aqueous water produced in exhaust steam generating process, this T-shaped connector 25 horizontal direction is connected with steam pipe 28.
Further, the water inlet end 6 water inflow direction of water inlet pipe 4 is serially connected with pressure-reducing valve 29, filter 30 successively, regulates pump 31 and magnetic valve 32, pump 31 is regulated to be connected with control circuit 11 with magnetic valve 32, pressure-reducing valve 29 is for reducing the pressure of current, filter 30 is for impurity screening, regulate pump 31 for regulating inflow, magnetic valve 32 controls inflow by the make-and-break time controlling water inlet.
Further, shell 1 outer surface is provided with switch 34, thermosistor 35 and indicator 36, and switch 34, thermosistor 35 are connected with control circuit 11 with indicator 36.Thermosistor 35 produces the temperature of steam for adjusting, indicator 36 is for instruction or the indicating fault of working.In order to visualized operation better, described switch 34, thermosistor 35 and indicator 36 also can adopt integrated touch-screen or display screen.
Operation principle of the present utility model is: switch on power, starting switch 34, and control circuit 11 acts on lower inductance coil 13 energising and produces eddy current, utilizes the spiral stram guiding plate 18 of the fuel factor of eddy current to steam inner bag 15 and its inner chamber to heat; The atomizer 17 of water in water inlet pipe 4 on water side 7 is atomized into steam, steam enters into helicoidal stream passage 19 through the upper tapering 14 of steam inner bag 15 and is vaporized instantaneously, then under the guide effect of spiral stram guiding plate 18, flow downward along helicoidal stream passage 19, and high-temperature steam is formed by stepped heating in helicoidal stream passage 19, finally enter into the steam pipe 28 of T-shaped connector 25 horizontal direction successively through the hypocone 16 of steam inner bag, venthole 5 from helicoidal stream passage 19 lower end.In whole process, the incrustation scale produced forms molecule and is suspended in helicoidal stream passage 19, and move downward under its deadweight and Steam Actuation along helicoidal stream passage 19, finally enter into the dirt pocket 26 of T-shaped connector 25 vertical direction successively through the hypocone 16 of steam inner bag 15, venthole 5 from helicoidal stream passage 19 lower end.
Described above is only preferred embodiment of the present utility model, and above-mentioned specific embodiment is not to restriction of the present utility model.In technological thought category of the present utility model, can occur various distortion and amendment, all those of ordinary skill in the art, according to describing retouching, the amendment made above or equivalent replacing, all belong to the scope that the utility model is protected.

Claims (10)

1. a cylindricality energy-saving steam generator, it comprises shell, water inlet pipe, venthole and control circuit, it is characterized in that: in described shell, be provided with steam inner bag, in steam, gallbladder intracavity is provided with spiral stram guiding plate, helicoidal stream passage is formed between spiral stram guiding plate and steam inner bag intracavity sidewall, steam inner bag upper end is connected with water inlet pipe, and water inlet pipe is provided with atomizer in steam inner bag one end, and steam inner bag lower end is connected with venthole; Steam inner bag is coated with heat-insulation layer, and heat-insulation layer is wound with inductance coil, and inductance coil is connected with control circuit.
2. cylindricality energy-saving steam generator according to claim 1, it is characterized in that: the cylinder of described steam inner bag to be two ends be taper, the upper tapering of steam inner bag is connected with the water inlet pipe be fixed on shell fixed mount, and the hypocone of steam inner bag is connected with the venthole on shell bottom plate.
3. cylindricality energy-saving steam generator according to claim 1, is characterized in that: described spiral stram guiding plate runs through in the axial direction and is provided with hollow pipe, and spiral stram guiding plate upper surface is stretched out in hollow pipe upper end, and hollow pipe upper end sidewall has through hole; Hollow pipe upper end is provided with block, and hollow pipe lower end is connected with the spiral stram guiding plate near venthole.
4. cylindricality energy-saving steam generator according to claim 2, is characterized in that: the upper tapering of described steam inner bag is provided with pressure safety valve.
5. the cylindricality energy-saving steam generator according to claim 1 or 3, is characterized in that: the spacing between described spiral stram guiding plate increases progressively from top to bottom step by step.
6. cylindricality energy-saving steam generator according to claim 3, is characterized in that: the shape of described block is umbrella shape.
7. cylindricality energy-saving steam generator according to claim 1, it is characterized in that: described venthole is provided with T-shaped connector, T-shaped connector vertical direction is connected with dirt pocket, and dirt pocket is provided with draining valve, T-shaped connector horizontal direction is connected with steam pipe.
8. cylindricality energy-saving steam generator according to claim 1, is characterized in that: described water inlet pipe water inflow direction is serially connected with pressure-reducing valve, filter, adjustment pump and magnetic valve successively, regulates pump to be connected with control circuit with magnetic valve.
9. cylindricality energy-saving steam generator according to claim 1, it is characterized in that: described outer surface of outer cover is provided with switch, thermosistor and indicator, switch, thermosistor are connected with control circuit with indicator.
10. cylindricality energy-saving steam generator according to claim 1, is characterized in that: the material of described heat-insulation layer is asbestos.
CN201520106688.1U 2015-02-13 2015-02-13 Cylindricality energy-saving steam generator Withdrawn - After Issue CN204554759U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520106688.1U CN204554759U (en) 2015-02-13 2015-02-13 Cylindricality energy-saving steam generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520106688.1U CN204554759U (en) 2015-02-13 2015-02-13 Cylindricality energy-saving steam generator

Publications (1)

Publication Number Publication Date
CN204554759U true CN204554759U (en) 2015-08-12

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Application Number Title Priority Date Filing Date
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Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105987367A (en) * 2015-02-13 2016-10-05 深圳市蒸妙科技有限公司 Column-shaped energy-saving steam generator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105987367A (en) * 2015-02-13 2016-10-05 深圳市蒸妙科技有限公司 Column-shaped energy-saving steam generator
CN105987367B (en) * 2015-02-13 2018-09-11 深圳市蒸妙科技有限公司 Cylindricality energy-saving steam generator

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address
CP03 Change of name, title or address

Address after: 518000 Guangdong city of Shenzhen province Futian District Nanyuan Street No. 2008 Shennan Zhong Road, Hualian building, two floor of the east side of A

Patentee after: Shenzhen steam energy saving Hi Tech Co., Ltd.

Address before: 518000 Guangdong, Nanshan District, Shahe street, West Street, Xiangshan street, North China, No. two, No. 8, West building, West building, block

Patentee before: Zheng Miao Science and Technology Ltd. of Shenzhen

AV01 Patent right actively abandoned
AV01 Patent right actively abandoned

Granted publication date: 20150812

Effective date of abandoning: 20180911