CN1793714A - Balanced shearing type air water separation steam trap - Google Patents

Balanced shearing type air water separation steam trap Download PDF

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Publication number
CN1793714A
CN1793714A CN 200510107264 CN200510107264A CN1793714A CN 1793714 A CN1793714 A CN 1793714A CN 200510107264 CN200510107264 CN 200510107264 CN 200510107264 A CN200510107264 A CN 200510107264A CN 1793714 A CN1793714 A CN 1793714A
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CN
China
Prior art keywords
water
valve
balanced
water inlet
pipe mouth
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Granted
Application number
CN 200510107264
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Chinese (zh)
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CN100348901C (en
Inventor
岳仁福
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Henan Dongda Tailong Metallurgy Technology Co., Ltd.
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Henan Tailong Science Development and Application Co Ltd
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Priority to CNB2005101072648A priority Critical patent/CN100348901C/en
Publication of CN1793714A publication Critical patent/CN1793714A/en
Application granted granted Critical
Publication of CN100348901C publication Critical patent/CN100348901C/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention is a balanced switching steam-water separation drainer, comprising a tank body provided with steam and water inlet, and a drain valve arranged in the tank body, and characterized in that: there is a water quantity regulating mechanism composed of cooperating dynamic and static valve plates in a valve cavity between water inlet and outlet of the drain valve, where a device for turning on the dynamic valve plate in the water quantity regulating mechanism is composed of a drive shaft combined with the dynamic valve plate, and a buoyancy drive mechanism combined with the extension end of the drive shaft and composed of a balance link rod, a hollow camel and a balance weight. The dynamic and static valve plates of the drain vale output the water in a staggered varying area mode, therefore the water discharge of the drain valve can be automatically regulated according to the water intake, so as to automatically balance the water intake and discharge. And its operating range is wide, able to reach 10%-100% of the maximum designed quantity.

Description

Balanced shearing type air water separation steam trap
Technical field
The present invention relates to a kind of balanced shearing type air water separation steam trap that is used in aluminum oxide production process steam generating system, desiliconization system, the pressure digestion system vapor condensation water discharge device.
Background technique
The STEAM TRAP of conventional art adopts the float-ball type structure more, in order to make ball float can in water, be in float state all the time, ball float adopts thin walled structures usually, be generally about 1mm, because the ball float many places are impacted under the operating conditions in the frequent steam of pressure surge, under the effect of steam impact force, very easily deform or damage, consequently directly cause discharging the water hole shutoff and lost efficacy, cause air leakage amount to increase or draining malfunctioning.
In addition, adopt the mode of structure draining (being the definite value discharging) of decide draining of bore discharge orifice because prior art, under system loading changes big situation, when the water yield hour, ball float will frequently float or fall, and very easily causes the ball float damage; When the water yield is big, can't get rid of because of unnecessary water, directly have influence on the heat exchange of up-stream system.That is to say: because the drainage works of prior art STEAM TRAP belongs to the discontinuity draining, can't realize the continuity discharging, this just directly has influence on downstream flash distillation effect.
Summary of the invention
Purpose of the present invention is just at existing deficiency in the above-mentioned prior art, and a kind of structure is more reasonable, the discharging water yield is adjustable and the balanced shearing type air water separation steam trap of energy continous-stable discharging and provide.
Purpose of the present invention can realize by following technique measures:
Balanced shearing type air water separation steam trap of the present invention comprises the tank body that is provided with carbonated drink mixing import, and is arranged on the drain valve in the tank body; Be provided with the water yield controlling mechanism that constitutes by the dynamic and static valve plate that cooperatively interacts in the valve pocket between drain valve water intake and water outlet, be used for driving device that the moving valve plate of water yield controlling mechanism rotarily opens and form by the live axle that combines with moving valve plate, the buoyancy-driven mechanism that constitutes by balanced connecting rod, hollow pontoon and balance mass that combines with the live axle overhanging end.
Be provided with the erosion control web plate in vapour, the water of tank body is mixed into inner chamber between inlet and the drain valve, the inner chamber that is to say tank body is divided into the drain valve installation cavity by the erosion control web plate and vapour, water are mixed into the chamber.
More specifically say, drain valve described in the present invention comprise two ends be enclosed construction tubular valve body, be arranged on the effluent pipe mouth of tubular valve body intermediate portion and be positioned at the water inlet pipe mouth that plays balance water inlet effect of water outlet both sides; Respectively be provided with a water yield controlling mechanism in the tubular valve body inner chamber between left side water inlet pipe mouth and effluent pipe mouth, between right side water inlet pipe mouth and the effluent pipe mouth, the center portion of the dynamic and static valve plate in the water yield controlling mechanism respectively is processed with an axis hole with concentric manner, be processed with the water inlet that quantity equates, the aperture is identical, the position, hole is corresponding mutually around separately axis hole, and between the peritreme of per two adjacent water inlets distance more than or equal to the aperture of water inlet; Described moving valve plate is installed in the tubular valve body inner chamber by the live axle that crosses tubular valve body, respectively be provided with a horizontal balanced connecting rod at the two ends of described live axle, and two balanced connecting rods are arranged on the two ends of live axle in the mode that is parallel to each other, and lay respectively at the hollow pontoon of tubular valve body both sides, the counterweight thing all is installed in balanced connecting rod by link two ends.
The volume of described hollow pontoon is greater than the volume of counterweight thing, but it is identical in quality.In addition, described hollow pontoon should adopt the high-strength structure design, it not only can be worked under hyperbaric environment, and can bear the frequent impact power of water, vapour.
Working principle of the present invention is as follows:
After vapour, water mixture enter tank body from water intake, by having filtering solid particles and preventing that the erosion control web plate of percussion from entering in the tank body chamber that drain valve is installed, increase along with inflow, water in the tank body just can enter by the left and right water inlet pipe mouth that is arranged on drain valve tubular valve body bottom in the valve pocket between water yield controlling mechanism and the water inlet pipe mouth (at this moment, the water inlet on the dynamic and static valve plate in the drain valve water yield controlling mechanism is in closed state with the fit system of mutual dislocation).When water level is elevated to hollow pontoon height and position of living in, because hollow pontoon is bigger than mass volume, the suffered buoyancy of hollow pontoon is also just greater than mass, the imbalance of buoyancy makes hollow pontoon and the mass disequilibrium that is in state of equilibrium when anhydrous state, and then make the balanced connecting rod that is connected between hollow pontoon and the mass unbalance and produce rotating power, meanwhile, live axle drives moving valve plate rotation under the effect of balanced connecting rod rotating force, the water inlet on water inlet and the quiet valve plate on the valve plate is rotated to overlapping conducting direction gradually by the closed state of mutual dislocation.Along with the increase of inflow, the rising of tank body middle water level, moving valve plate also can continue rotation under the drive of live axle, overlap fully with water inlet on the quiet valve plate until moving valve plate.At this moment, the water-outlet quantity of balanced shearing type steam-water separator also will reach peak work capacity.
When the inflow of tank body reduces, drawdown in the tank body, hollow pontoon also descends thereupon, meanwhile, live axle drives moving valve plate counterrotating under the effect of balanced connecting rod counterrotating moment, make water inlet on water inlet and the quiet valve plate on the valve plate by overlapping on state,, make water-in and water-out reach balance by changing the coincidence conducting area of water inlet gradually to the closed state rotation of mutual dislocation.
After the tank body water inlet stops, when water level in the tank body is lower than hollow pontoon height and position of living in, hollow pontoon and mass just can be got back to initial equilibrium conditions automatically, water inlet on the dynamic and static valve plate in the drain valve water yield controlling mechanism returns to the closed state that mutual dislocation cooperates again, and carbonated drink is cut off fully.
Because drain valve adopts both sides balanced type water inlet mode among the present invention, this just makes dynamic and static valve plate both sides in the water yield controlling mechanism stressed equate and is balanced, overcomes because uneven frictional force or the single load bearing problem that head pressure may cause.Moreover because of the rotation of moving valve plate is to drive by the moment of torsion that both sides buoyancy-driven mechanical device is produced, and the generation of moment of torsion changes by water buoyancy and realizes.That is to say, have only the inflow of working as to reach floating drum present position height, and can overcome himself weight and make floating drum do the come-up motion time, just can make the unbalance and moving valve plate rotating power of generation driving of the balanced connecting rod that is connected between hollow pontoon and the mass, this has also just guaranteed after the tank body water inlet stops, thoroughly the closing of drain valve when water level in the tank body is lower than hollow pontoon height and position of living in fundamentally stopped the generation of steam leakage accident.
In addition, because the dynamic and static valve plate of drain valve adopts the water outlet of dislocation type variable-area among the present invention,, make turnover water yield autobalance so the water displacement of drain valve can be adjusted automatically according to the size of inflow, operating range is wide, can reach 10%~100% of design maximum amount.
Description of drawings
Fig. 1 is a schematic diagram of the present invention.
Fig. 2 is the floating principle figure of buoyancy-driven mechanism.
Fig. 3 is a structural front view of the present invention.
Fig. 4 is the plan view of drain valve among Fig. 3.
Fig. 5 is the left view (being rotated counterclockwise 90 ° puts) of Fig. 4.
Fig. 6 is the structural drawing of dynamic and static valve plate among Fig. 4.
1. vapour, water are mixed into inlet among the figure, 2. drain valve water outlet, 3. buoyancy-driven mechanism, 4. water seal guaranteed water level (draining termination water level), 5. play the left and right sides water inlet pipe mouth of balance water inlet effect, 6. counterweight thing, 7. live axle, 8. hollow pontoon, 9. erosion control web plate, 10. tank body, 11. drain valve, 12. quiet valve plates, 13. moving valve plates, 14. balanced connecting rod, 15. tubular valve bodies, 16. water inlets, 17. axis hole, 18. supporting bases, 19. end-of-the-pipe.
Embodiment
The present invention is described further below with reference to embodiment's (accompanying drawing), but does not limit the present invention.
Shown in Fig. 1,3, balanced shearing type air water separation steam trap of the present invention comprises the tank body 10 that is provided with carbonated drink mixing import 1, and be arranged on drain valve 11 in the tank body 10, be provided with erosion control web plate 9 in vapour, the water of tank body is mixed into inner chamber between inlet 1 and the drain valve 11, the inner chamber that is to say tank body is divided into the drain valve installation cavity by the erosion control web plate and vapour, water are mixed into the chamber.Shown in Fig. 4,5, described drain valve 11 comprise two ends be enclosed construction tubular valve body 15, be arranged on the effluent pipe mouth 2 of tubular valve body 15 intermediate portions and be positioned at the water inlet pipe mouth 5 that plays balance water inlet effect of water outlet both sides; Respectively be provided with the water yield controlling mechanism that constitutes by moving valve plate 13 that cooperatively interacts and quiet valve plate 12 in the tubular valve body inner chamber between left side water inlet pipe mouth and effluent pipe mouth, between right side water inlet pipe mouth and the effluent pipe mouth, the center portion of described dynamic and static valve plate respectively is processed with an axis hole 17 with concentric manner, be processed with the water inlet 16 that quantity equates, the aperture is identical, the position, hole is corresponding mutually around separately axis hole 17, and between the peritreme of per two adjacent water inlets distance more than or equal to the aperture (as shown in Figure 6) of water inlet; Described moving valve plate 13 is installed in the tubular valve body inner chamber by the live axle 7 that crosses tubular valve body, respectively be provided with a horizontal balanced connecting rod 14 at the two ends of described live axle 7, and two balanced connecting rods 14 are arranged on the two ends of live axle 7 in the mode that is parallel to each other, and lay respectively at the hollow pontoon 8 of tubular valve body 15 both sides, counterweight thing 6 all is installed in balanced connecting rod 14 by link two ends.The volume of described hollow pontoon 8 is greater than the volume of counterweight thing 6, but it is identical in quality.In addition, described hollow pontoon 8 should adopt the high-strength structure design, it not only can be worked under hyperbaric environment, and can bear the frequent impact power of water, vapour.

Claims (4)

1, a kind of balanced shearing type air water separation steam trap, it comprises and is provided with vapour, water is mixed into the tank body (10) of inlet (1), and be arranged on drain valve (11) in the tank body, it is characterized in that: be provided with moving in the valve pocket between drain valve (11) water intake (5) and water outlet (2) by what cooperatively interact, the water yield controlling mechanism that quiet valve plate (13) (12) constitutes, being used for driving the device that the moving valve plate (13) of water yield controlling mechanism rotarily opens is the live axle (7) that combines by with moving valve plate (13), combine with live axle (7) overhanging end by balanced connecting rod (14), the buoyancy-driven mechanism (3) that hollow pontoon (8) and balance mass (6) constitute forms.
2, balanced shearing type air water separation steam trap according to claim 1 is characterized in that: be provided with erosion control web plate (9) in vapour, the water of tank body (10) is mixed into inner chamber between inlet (1) and the drain valve (11).
3, balanced shearing type air water separation steam trap according to claim 1 is characterized in that: described drain valve (11) comprise two ends be enclosed construction tubular valve body (15), be arranged on the effluent pipe mouth (2) of tubular valve body intermediate portion and be positioned at the water inlet pipe mouth that plays balance water inlet effect (5) of water outlet both sides; Respectively be provided with a water yield controlling mechanism in the tubular valve body inner chamber between left side water inlet pipe mouth and effluent pipe mouth, between right side water inlet pipe mouth and the effluent pipe mouth, the center portion of the dynamic and static valve plate (13) (12) in the water yield controlling mechanism respectively is processed with an axis hole (17) with concentric manner, be processed with the water inlet (16) that quantity equates, the aperture is identical, the position, hole is corresponding mutually around separately axis hole, and between the peritreme of per two adjacent water inlets distance more than or equal to the aperture of water inlet; Described moving valve plate (13) is installed in the tubular valve body inner chamber by the live axle (7) that crosses tubular valve body, respectively be provided with a horizontal balanced connecting rod (14) at the two ends of described live axle (7), and two balanced connecting rods (14) are arranged on the two ends of live axle (7) in the mode that is parallel to each other, and lay respectively at the hollow pontoon (8) of tubular valve body both sides, counterweight thing (6) all is installed in balanced connecting rod (14) by link two ends.
4, balanced shearing type air water separation steam trap according to claim 3 is characterized in that: the volume of described hollow pontoon (8) is greater than the volume of counterweight thing (6), but it is identical in quality.
CNB2005101072648A 2005-12-13 2005-12-13 Balanced shearing type air water separation steam trap Expired - Fee Related CN100348901C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2005101072648A CN100348901C (en) 2005-12-13 2005-12-13 Balanced shearing type air water separation steam trap

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2005101072648A CN100348901C (en) 2005-12-13 2005-12-13 Balanced shearing type air water separation steam trap

Publications (2)

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CN1793714A true CN1793714A (en) 2006-06-28
CN100348901C CN100348901C (en) 2007-11-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113092153A (en) * 2021-04-15 2021-07-09 哈尔滨工程大学 Miniaturized corrugated plate separation efficiency measuring device capable of supplying thermal state experiment

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4936338A (en) * 1989-09-27 1990-06-26 Fonoimoana Vanu M Floating drain seal apparatus
JPH0730874B2 (en) * 1993-01-14 1995-04-10 大阪瓦斯株式会社 Reverse bucket type drain trap
CN1167891A (en) * 1996-06-12 1997-12-17 尚德敏 Steam trap
JPH1182885A (en) * 1997-09-12 1999-03-26 Tlv Co Ltd Float type drain trap
CN2503310Y (en) * 2001-11-10 2002-07-31 王哲 Hydrophobic recovery device for power plant low-pressure heater
CN2851806Y (en) * 2005-12-13 2006-12-27 河南省泰隆科技开发应用有限公司 Balance shear type steam trap

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113092153A (en) * 2021-04-15 2021-07-09 哈尔滨工程大学 Miniaturized corrugated plate separation efficiency measuring device capable of supplying thermal state experiment

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Owner name: HE NAN NEUTL METALLURGICAL SCIENCE + TECHNOLOGY CO

Free format text: FORMER NAME: HENAN LONGTAI SCIENCE + TECH. DEVELOPMENT APPLICATION CO., LTD.

CP03 Change of name, title or address

Address after: The construction of Zhengzhou city in Henan province 450007 West Road No. 187 building 701 Tyrone

Patentee after: Henan Dongda Tailong Metallurgy Technology Co., Ltd.

Address before: The construction of Zhengzhou city in Henan Province Road 450007 No. 187 Tyrone building room 701

Patentee before: Henan Tailong Science Development and Application Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20071114

Termination date: 20141213

EXPY Termination of patent right or utility model