CN202545966U - Water level control valve with continuous flow control function - Google Patents

Water level control valve with continuous flow control function Download PDF

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Publication number
CN202545966U
CN202545966U CN2011204279792U CN201120427979U CN202545966U CN 202545966 U CN202545966 U CN 202545966U CN 2011204279792 U CN2011204279792 U CN 2011204279792U CN 201120427979 U CN201120427979 U CN 201120427979U CN 202545966 U CN202545966 U CN 202545966U
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CN
China
Prior art keywords
water
valve
spool
control function
floating ball
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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.)
Expired - Fee Related
Application number
CN2011204279792U
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Chinese (zh)
Inventor
刘健
吴雄喜
高奇峰
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Zhejiang Industry Polytechnic College
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Zhejiang Industry Polytechnic College
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Filing date
Publication date
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Priority to CN2011204279792U priority Critical patent/CN202545966U/en
Application granted granted Critical
Publication of CN202545966U publication Critical patent/CN202545966U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

A water level control valve with continuous flow control function comprises a valve body, a valve core, a valve body cover, a floating ball connection device, and a floating ball, wherein the valve body is provided with a water inlet cavity, and a water outlet cavity, a water outlet is arranged on the side wall of the water outlet cavity, a reset spring is mounted in one end connected with the water outlet cavity in the water inlet cavity, the valve core is arranged in the water inlet cavity; a water inlet of the valve core is provided with a step hole cooperated with the reset spring, a balance hole is arranged on the water outlet end surface; the valve cover is provided with a center hole and a floating ball rod seat; the floating ball connection device comprises a valve core top rod and a floating ball rod, one end of the valve core top rod passes through the center hole to contact with the valve core, and the other end is connected with the floating ball rod by a pin axle. The water level control valve has the following beneficial effects: the flow through the valve port continuously changes according to water level in tank; and an included angle between the water inlet cavity and the water outlet cavity is 45 degrees, thus the self-weight of the floating ball and the floating ball rod effectively conquers the friction force action of the valve core, therefore the action of the valve is more sensitive and reliable.

Description

Altitude valve with flow continuous control function
Technical field
The utility model relates to a kind of altitude valve with flow continuous control function, belongs to the electromechanical equipment field.
Background technique
At present, no matter the altitude valve that provides on the market is mechanical type or electronic type, all is the switch control mode basically, and valve is in " leading to " and " breaking " two states, can only control water level " height ", " low " two kinds of situation.And control the water-outlet quantity that demanding special occasions needs control valve at some water levels, adapt to the continuous variation of water level.Therefore, developing the altitude valve with flow continuous control function is an important research project.
Summary of the invention
The utility model is directed against the accurately problem of control valve water-outlet quantity of current water level control valve, has proposed a kind of altitude valve with flow continuous control function.
The described altitude valve of the utility model with flow continuous control function; Comprise valve body, spool, body cap, ball float connection set, ball float; Said valve body is provided with water-inlet cavity, water chamber, it is characterized in that: said water chamber sidewall is provided with osculum, and the inner Returnning spring of installing of an end that is connected with said water-inlet cavity; Said spool places said water-inlet cavity inner, and the end of said Returnning spring inserts the feed-water end of said spool; Said spool feed-water end is provided with the step hole that cooperates with said Returnning spring, and the water outlet end face is provided with equalizing orifice; Said body cap is provided with center hole and ball float pole socket; Said ball float connection set comprises spool push rod, ball lever; Said spool push rod one end passes said center hole and contacts with said spool; The other end is connected with said ball lever through bearing pin, and said ball lever one end connects hinge joint on said ball float pole socket, and the other end connects ball float.
Said water-inlet cavity and said water chamber axis are and are miter angle.
Be circumferentially with trapezoidal water-flowing trough along said osculum.
Said spool is circumferentially with the bar shaped effluent trough, and place, effluent trough both sides is provided with seal groove.
Said ball lever is provided with bar hole, and said bearing pin is loaded in the said bar hole.
Said spool push rod and said center hole contact position are circumferentially offered enclosed slot, and seal ring is housed.
Said body cap is circumferentially with seal groove with the end face that said valve body contacts.
During use, the valve inleting water mouth is connected with supply channel, osculum is at the water chamber side-lower; Spool slides along wall in water chamber; Spool causes the space between spool and the body cap through equalizing orifice with inlet water, makes the spool both ends of the surface receive hydraulic balance, avoids spool to receive additional effect of water pressure; Water in the pond is in low water level; Ball float also is in low level, and under the effect of the weight of ball float and ball lever, the spool push rod moves in valve body; Spool is depressed into valve body water chamber lowermost end; Spool sidewall upper water-out groove is alignd with valve body upper water-out hole, and the osculum orifice size is maximum, and water output is also maximum; After water level in water pool rose, ball float rose, and drove upwards swing of ball lever, and spool moves upward under action of reset spring, staggered in effluent trough and osculum position, and orifice size reduces, and water supply flow reduces; When ball float rose to the extreme higher position, spool effluent trough and valve body osculum staggered valve closing fully.Water level in water pool decline process and aforementioned process are just the opposite.
The beneficial effect of the utility model:
(1) the utility model adopts the through-flow mode controlled water flow direction of spool axle center hole; And the spool both ends of the surface are communicated with; Reduced the surge unstability of the valve core movement that power and steady-state fluid force cause of transient state greatly, valve is obtained better dynamically and static stability.
(2) the utility model mode of adopting the spool sidewall to leave tank cooperates with the valve body osculum and carries out orifice size and control, and has improved the controllability of valve port, and the valve port flow can be changed according to water level in water pool continuously.
(3) the utility model adopts water-inlet cavity to become the valve body structure of 45 degree with water chamber, makes the ball lever hunting range between 45 degree to 90 degree, and the deadweight of ball float and ball lever can effectively overcome the spool frictional force action, makes valve event sensitive more, reliable.
Description of drawings
Fig. 1 is the structural representation of altitude valve low water level.
Fig. 2 is the schematic representation of altitude valve high water level.
Fig. 3 is the valve core structure schematic representation.
Embodiment
Further specify the utility model below in conjunction with accompanying drawing
With reference to accompanying drawing:
The described altitude valve of the utility model with flow continuous control function; Comprise valve body 1, spool 2, body cap 3, ball float connection set 4, ball float 5; Said valve body 1 is provided with water-inlet cavity 11, water chamber 12, and said water chamber 12 sidewalls are provided with osculum 121, and the inner Returnning spring 122 of installing of an end that is connected with said water-inlet cavity 11; Said spool 2 places said water-inlet cavity 11 inside, and the end of said Returnning spring 122 inserts the feed-water end of said spool 2; Said spool 2 feed-water ends are provided with the step hole 21 that cooperates with said Returnning spring, and the water outlet end face is provided with equalizing orifice 22; Said body cap 3 is provided with center hole 31 and ball float pole socket 32; Said ball float connection set 4 comprises spool push rod 41, ball lever 42; Said spool push rod 41 1 ends pass said center hole 31 and contact with said spool 2; The other end is connected with said ball lever 42 through bearing pin 43; Said ball lever 42 1 ends connect hinge joint on said ball float pole socket 32, and the other end connects ball float 5.
Said water-inlet cavity 11 is with said water chamber 12 axis and is miter angle.
Be circumferentially with trapezoidal water-flowing trough 1211 along said osculum 121.
Said spool 2 is circumferentially with bar shaped effluent trough 22, and effluent trough 22 both sides are provided with seal groove 23.
Said ball lever 42 is provided with bar hole 421, and said bearing pin 43 is loaded in the said bar hole 421.
Said spool push rod 41 is circumferentially offered enclosed slot 411 with said center hole 31 contact positions, and seal ring is housed.
Said body cap 3 is circumferentially with seal groove 33 with the end face that said valve body 1 contacts.
During use, the valve inleting water mouth is connected with supply channel, osculum 121 is at water chamber 12 side-lowers; Spool 2 slides along wall in water chamber 12; Spool 2 causes the space between spool 2 and the body cap 3 through equalizing orifice 22 with inlet water, makes spool 2 both ends of the surface receive hydraulic balance, avoids spool 2 to receive additional effect of water pressure; Water in the pond is in low water level; Ball float 5 also is in low level, and under the effect of ball float 5 and the weight of ball lever 42, spool push rod 41 moves in valve body 1; Spool 2 is depressed into valve body water chamber 12 lowermost ends; Spool 2 sidewall upper water-out grooves 22 are alignd with valve body upper water-out hole 121, and osculum 121 orifice sizes are maximum, and water output is also maximum; After water level in water pool rose, ball float 5 rose, and drove upwards swing of ball lever 42, and spool 2 moves upward under Returnning spring 122 effects, and effluent trough 22 staggers with osculum 121 positions, and orifice size reduces, and water supply flow reduces; When ball float rose to the extreme higher position, spool effluent trough 22 staggered valve closing fully with valve body osculum 121.Water level in water pool decline process and aforementioned process are just the opposite.
The described content of this specification embodiment only is enumerating the way of realization of model utility design; Should not being regarded as of the protection domain of the utility model only limits to the concrete form that embodiment states, the protection domain of the utility model also reach in those skilled in the art according to the utility model design the equivalent technologies means that can expect.

Claims (7)

1. the altitude valve that has flow continuous control function; Comprise valve body, spool, body cap, ball float connection set, ball float; Said valve body is provided with water-inlet cavity, water chamber, it is characterized in that: said water chamber sidewall is provided with osculum, and the inner Returnning spring of installing of an end that is connected with said water-inlet cavity; Said spool places said water-inlet cavity inner, and the end of said Returnning spring inserts the feed-water end of said spool; Said spool feed-water end is provided with the step hole that cooperates with said Returnning spring, and the water outlet end face is provided with equalizing orifice; Said body cap is provided with center hole and ball float pole socket; Said ball float connection set comprises spool push rod, ball lever; Said spool push rod one end passes said center hole and contacts with said spool; The other end is connected with said ball lever through bearing pin, and said ball lever one end connects hinge joint on said ball float pole socket, and the other end connects ball float.
2. the altitude valve with flow continuous control function as claimed in claim 1 is characterized in that: said water-inlet cavity and said water chamber axis are and are miter angle.
3. the altitude valve with flow continuous control function as claimed in claim 2 is characterized in that: be circumferentially with trapezoidal water-flowing trough along said osculum.
4. the altitude valve with flow continuous control function as claimed in claim 3 is characterized in that: said spool is circumferentially with the bar shaped effluent trough, and place, effluent trough both sides is provided with seal groove.
5. the altitude valve with flow continuous control function as claimed in claim 4 is characterized in that: said ball lever is provided with bar hole, and said bearing pin is loaded in the said bar hole.
6. the altitude valve with flow continuous control function as claimed in claim 5 is characterized in that: said spool push rod and said center hole contact position are circumferentially offered enclosed slot, and seal ring is housed.
7. the altitude valve with flow continuous control function as claimed in claim 6 is characterized in that: said body cap is circumferentially with seal groove with the end face that said valve body contacts.
CN2011204279792U 2011-11-02 2011-11-02 Water level control valve with continuous flow control function Expired - Fee Related CN202545966U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011204279792U CN202545966U (en) 2011-11-02 2011-11-02 Water level control valve with continuous flow control function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011204279792U CN202545966U (en) 2011-11-02 2011-11-02 Water level control valve with continuous flow control function

Publications (1)

Publication Number Publication Date
CN202545966U true CN202545966U (en) 2012-11-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011204279792U Expired - Fee Related CN202545966U (en) 2011-11-02 2011-11-02 Water level control valve with continuous flow control function

Country Status (1)

Country Link
CN (1) CN202545966U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107544568A (en) * 2017-09-07 2018-01-05 金清炎 If the culture pond of level controling mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107544568A (en) * 2017-09-07 2018-01-05 金清炎 If the culture pond of level controling mechanism
CN107544568B (en) * 2017-09-07 2020-10-02 王雅 Culture pond with water level control mechanism

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121121

Termination date: 20141102

EXPY Termination of patent right or utility model