CN209569360U - Without abrasion fluid erosion prevention clutch valve - Google Patents

Without abrasion fluid erosion prevention clutch valve Download PDF

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Publication number
CN209569360U
CN209569360U CN201920011352.5U CN201920011352U CN209569360U CN 209569360 U CN209569360 U CN 209569360U CN 201920011352 U CN201920011352 U CN 201920011352U CN 209569360 U CN209569360 U CN 209569360U
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CN
China
Prior art keywords
valve
sealing surface
closing
valve rod
opening
Prior art date
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Expired - Fee Related
Application number
CN201920011352.5U
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Chinese (zh)
Inventor
汪远航
陈元芳
张秉礼
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Guangxi Haofeng Fluid Engineering Technology Co Ltd
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Guangxi Haofeng Fluid Engineering Technology Co Ltd
Priority date (The priority date 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 date listed.)
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Priority to CN201920011352.5U priority Critical patent/CN209569360U/en
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Publication of CN209569360U publication Critical patent/CN209569360U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of without abrasion fluid erosion prevention clutch valve, including valve body, rotational valve core, valve rod, valve body is equipped with input port and delivery outlet, rotational valve core is equipped with channel, channel side forms input sealing surface and output sealing surface, valve rod connects rotational valve core rotation switching, wherein: formed between input sealing surface and output sealing surface it is non-concurrent open/closed rotary opening and closing angle, when rotation, successively misplaces closing/unlatching input port and delivery outlet.The utility model provides long service life, ON/OFF torque is small, flow resistance coefficient is small, energy-saving effect is good and manufacture, installation, maintenance are convenient a kind of without abrasion fluid erosion prevention clutch valve, solves the problems, such as the destruction of abrasion (scratch) and the erosion (washing away, cavitation) of valve.

Description

Without abrasion fluid erosion prevention clutch valve
Technical field
The utility model relates to a kind of valves, more specifically more particularly to a kind of without abrasion fluid erosion prevention clutch valve.
Background technique
Service life is valve mass important technology index.It closes secondary (valve body and opening and closing element) closed performance and determines that valve makes Use the service life.It closes secondary abrasion (scratch) and is the principal mode of destruction closed performance by erosion.Make a general survey of current fluid engineering institute The stop valve of use not yet finds the valve small without abrasion, fluid erosion prevention, operational torque.
At present valve there are the problem of: 1, the secondary abrasion of closing, current valve are waited such as gate valve, ball valve because closing pair has Relative motion, inevitably generates abrasion during opening or closing, and serious scratch (even if more small scratch) will So that valve is lost closed performance, needs replacing or repair.
2, the secondary erosion of closing, valve opening or turn-off transient close secondary formation very little gap, and flow velocity is big at this time, to envelope It closes by-produced erosion and cavitation to destroy, closure member is directly impacted when especially having grit in High Pressure Difference, fluid or liquid is situated between Matter partial vaporization and gas-liquid blasting impact generate cavitation.It is more serious rapidly in the case.Such as gate valve and ball valve, it is opening With the moment of closing, runner becomes smaller, and forms erosion, and it is secondary to destroy closing.
3, operational torque problem, the operational torque of universal valve ON/OFF be all it is very big, sometimes need Lengthened wrench, or By applied force, such as turbine and worm, pneumatic, electric device.Either gate valve, shut-off valve or ball valve are all such.Thus also accelerate The secondary destruction of closing.
The approach to solve the above problems designs at present, the service life that the valve products of production are raising valve is mostly to adopt With mode the following:
1, closing uses expensive (such as chromium base or nickel alloy);
2, the secondary pairing of the reasonable closing of selection, the intermetallic difference of hardness of pairing or two such as different materials;
3, machining accuracy is improved;
4, make the improvement in some structures;
Suchlike method all fails to solve the problems, such as from basic.
Utility model content
The technical problems to be solved in the utility model is the above-mentioned deficiency for the prior art, provides long service life, open/ Pass torque is small, flow resistance coefficient is small, and energy-saving effect is good and manufacture, installation, maintenance are convenient a kind of without abrasion fluid erosion prevention clutch valve, solution The certainly destruction problem of abrasion (scratch) and the erosion (washing away, cavitation) of valve.
The utility model it is a kind of without abrasion fluid erosion prevention clutch valve, including valve body, rotational valve core, valve rod, valve body is equipped with defeated Entrance and delivery outlet, rotational valve core are equipped with channel, and channel two sides form input sealing surface and output sealing surface, valve rod connection rotation Spool rotating switching, in which: when rotated input sealing surface and output sealing surface sequence close/open input port and output Mouthful.
The utility model using the above structure, due to input sealing surface and output sealing surface between formed it is non-concurrent open/ It is closed to rotarily open or closed error angle (differential seat angle of opening and closing of fault), it is first to pass through the rotary shifted angle formed when rotation Misplace closing/unlatching input port and delivery outlet afterwards.Due to forming non-concurrent unlatching/envelope between input sealing surface and output sealing surface The angular displacement of the rotary opening and closing closed, i.e. input closing face closure/unlatching input port and output closing face closure/unlatching export the degree of lip-rounding It is opened or traling at non-concurrent rotation, forms dislocation opening angle therebetween.When Open valve, output sealing surface first opens delivery outlet, defeated Input port is opened after entering sealing surface, when closing valve, input sealing surface first closes input port, output sealing surface rear enclosed output Mouthful.Valve rod connects rotational valve core, and when opening or closing valve, valve rod drives rotational valve core rotation switching.When setting opening angle When less than 20 °, when the opening angle of rotational valve core is less than 20 °, exports the gap for having very little between sealing surface and delivery outlet and lead to Road connection, input sealing surface and input port closing connect.When the opening angle of rotational valve core be greater than 20 ° when, input sealing surface with There is small―gap suture to be connected to channel between input port, the circulation area exported between sealing surface and delivery outlet is very big, and velocity of medium is small, The secondary destruction of closing to delivery outlet reduces, and realizes anti-wear and erosion purpose.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and rotational valve core includes going up and down flashboard and being connected to go up and down flashboard side Opening and closing element, channel setting lifting flashboard in, opening and closing element outer surface constitute input sealing surface or output sealing surface, valve rod connection Go up and down flashboard, lifting flashboard connection opening and closing element mobile handoff (stretching out or shrink switching).The unilateral setting of opening and closing element is closed in input Face or output sealing surface;When opening valve, valve rod drives lifting flashboard to move upwards, and lifting flashboard drives opening and closing element level to receive Contracting, then valve rod is driving rotational valve core, lifting flashboard, opening and closing element to rotate in valve body, opening and closing element during rotation not with The by-produced friction of closing of input port and/delivery outlet;When closing valve, valve rod rotation drives rotational valve core, lifting flashboard, opening and closing Part rotates backward in valve body, between the closing pair that opening and closing element is in contraction state, the radius of gyration and input port and/delivery outlet has Gap, so that, not with the by-produced friction of the closing of input port and/delivery outlet, then valve rod drives lifting in opening and closing element rotation process Flashboard decline, lifting flashboard decline drive opening and closing element to stretch out the closing pair for being close to input port and/delivery outlet until reaching closing;In During the entire process of opening and closing, only by vertical sealing surface between opening and closing element and input port and the closing pair of/delivery outlet Normal pressure, without frictionally damage.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and delivery outlet is closed equipped with primary seal, and input port is equipped with secondary closing, input envelope It closes face and exports secondary close in sealing surface elder generation rear enclosed/unlatching input port and closed with the primary seal of delivery outlet.When Open valve, output envelope It closes face and first opens the primary seal of delivery outlet and close, input after sealing surface and open the secondary closing of input port;When closing valve, sealing surface is inputted The secondary closing of input port is first closed, the primary seal of output sealing surface rear enclosed delivery outlet is closed.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, input sealing surface and output sealing surface rotary opening and closing angle sequence 5 ~35 degree.12 degree or so of rotary opening and closing angle sequence are advisable.When opening, sealing edge gap between sealing surface and delivery outlet is exported When in 12 degree when rotation, and when inputting the sealing edge closed state of sealing surface and input port (critical state of unlatching), structure therebetween It is staggered parallactic angle at opening and closing angle.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and valve body is equipped with valve rod base, and valve rod is threaded through the interspersed of valve rod base Kong Zhong, the inserting hole of valve rod base are equipped with valve stem nut, and valve rod is connect by valve stem nut with valve rod base, intert hole wall and are equipped with phase Logical horizontal guide grooves and vertical guide slot, valve rod are equipped with rolling bearing, and valve rod can drive rolling bearing to lead along horizontal guide grooves, vertically Trough roller is dynamic.When valve rod is gone up and down, rolling bearing is driven to roll in vertical guide slot, is gone up and down along vertical guide slot;When valve rod rotates, roll Bearing is rolled to horizontal guide grooves from vertical guide slot, and rolling bearing is driven to roll in horizontal guide grooves, rotates along horizontal guide grooves.
Above-mentioned is a kind of without fluid erosion prevention clutch valve is worn, and valve rod and rotational valve core pass through rotating card block and be rotatablely connected.Valve rod It is equipped with rotating card block, realizes that valve rod drives the purpose of rotational valve core rotation.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and channel is rectangle or circle, and aisle spare is greater than or equal to pipeline Flow area.Flow resistance coefficient is small, and energy-saving effect is good.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and lifting flashboard is equipped with T-slot, and valve rod lower end matches with T-slot Connection.Realize the purpose of valve rod connection lifting flashboard.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and lifting flashboard is equipped with the dovetail of gradient, and opening and closing element is equipped with dovetail Slot, dovetail match with dovetail groove and are slidably connected.When Open valve, valve rod drives lifting flashboard to rise, and lifting flashboard passes through Dovetail along dovetail groove rise, dovetail groove is gradient, and dovetail matches with dovetail groove, lifting flashboard rising when opening and closing element gradually It is mobile to lifting flashboard, realize the purpose that opening and closing element is shunk, valve rod is rotatably connected rotational valve core, drives rotational valve core, lifting Flashboard, opening and closing element rotate 90 ° to channel all-pass in valve body, and opening and closing element does not close generation friction with primary seal during rotation;It closes When valve closing door, valve rod rotation drives rotational valve core, lifting flashboard, opening and closing element to rotate backward 90 ° in valve body, and opening and closing element, which is in, to be received Contracting state, the radius of gyration and master are closed with gap, so that during opening and closing element rotates 90 °, whole no and valve body contact is not produced Raw friction, then valve rod drives lifting flashboard to decline, and lifting flashboard decline drives opening and closing element to stretch out abutting primary seal and closes until reaching Closing.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and dovetail and dovetail groove upper end are inclined outwardly setting.Realize lifting Opening and closing element is gradually moved horizontally to lifting flashboard when flashboard rises, the purpose that opening and closing element is shunk;Realize that lifting flashboard decline drives Opening and closing element, which stretches out, is close to main closed purpose;During the entire process of avoiding valve opening and closing, opening and closing element is closed with primary seal and/pair Closing generates friction.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and horizontal guide grooves are arranged above vertical guide slot.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and valve rod base is connected with valve body by bolt.It is not needed when maintenance Valve body is removed from pipeline and can be repaired, and influence of the pipe stress to valve performance is avoided.
Above-mentioned is a kind of without abrasion fluid erosion prevention clutch valve, and valve rod upper end is equipped with handwheel.By the lifting of handwheel band ovable valve stem, turn It is dynamic.
The utility model has the beneficial effects that
1, reliable closing is realized and without abrasion:
The inclined-plane that lifting flashboard matches with opening and closing element (flap) setting two sides, when closing is required, valve rod drives lifting Flashboard moves downward.The horizontal component of section compresses valve body, and sealing surface is made to reach enough closings than pressure, to reach reliable Closing.It is now in closed state.Closing is secondary to be only squeezed, it is well known that metal material can bear very big ratio pressure and It does not destroy.
When needing to open, lifting flashboard is moved upwards, and drives opening and closing element to move horizontally by another inclined-plane, closing it is secondary with Opening and closing element does not contact, and there is gap appropriate always, and 90 ° of energy reaches standard-sized sheet when reaching horizontal guide grooves.Then opposite direction is closed to revolve Turn.Because closing is secondary to have gap with opening and closing element during this ON/OFF, closing pair can not generate scratch phenomenon, open/ The torque for closing rotation is also very little, and here it is reasons without abrasion.
2, erosion is prevented
Erosion have more now switches on moment or close end moment, gap is small at this time, and flow velocity is big, closing pair be easy to by It is destroyed to water impact, current universal valve is the generation that not can avoid this phenomenon, and the utility model can prevent from rushing well Lose phenomenon.
When ON/OFF is rotated less than 20 °, delivery outlet and primary seal close between only very little gap, belong to labyrinth sealing, be situated between Mass flow is dynamic slowly, and closing destruction to primary seal is very little, when rotation is greater than 20 °, has small―gap suture between input port and secondary closing, but Delivery outlet and primary seal close between circulation area it is very big, flow velocity is small, and the destruction secondary to closing reduces.
3, operational torque is small
The small torque of ON/OFF process is always obvious.Closing load and the operating force for unclamping flap are larger, but size In gate valve, ball valve is especially less than closed firmly.The reason is that the utility model is monocline face through load, and two closings of gate valve are secondary all It is inclined-plane, two-sided sealing effect is kept then to increase axial force.
Detailed description of the invention
Below in conjunction with the embodiment in attached drawing, the utility model is described in further detail, but does not constitute to this Any restrictions of utility model.
Fig. 1 is the schematic perspective view of the utility model valve closed state;
Fig. 2 is the structural schematic diagram of the utility model valve closed state;
Fig. 3 is the A-A the schematic diagram of the section structure of Fig. 2;
Fig. 4 is the B-B the schematic diagram of the section structure of Fig. 3;
Fig. 5 is the schematic perspective view of the utility model valve open state;
Fig. 6 is the structural schematic diagram of the utility model valve open state;
Fig. 7 is the C-C the schematic diagram of the section structure of Fig. 6;
Fig. 8 is the D-D the schematic diagram of the section structure of Fig. 7;
Fig. 9 is the schematic perspective view of the utility model lifting flashboard;
Figure 10 is the schematic perspective view of the utility model opening and closing element;
Figure 11 is the schematic perspective view of the utility model valve rod base;
Figure 12 is the top cross-sectional view of the utility model valve closed state;
Figure 13 is 20 ° of the utility model valve opening angle of top cross-sectional view;
Figure 14 is 25 ° of the utility model valve opening angle of top cross-sectional view;
Figure 15 is 45 ° of the utility model valve opening angle of top cross-sectional view;
Figure 16 is the top cross-sectional view that the utility model valve is all turned on state.
Specific embodiment
Refering to fig. 1 to shown in Figure 16, the utility model it is a kind of without abrasion fluid erosion prevention clutch valve, including valve body 1, rotation valve Core 2, valve rod 3, valve body 1 are equipped with input port 11 and delivery outlet 12, and rotational valve core 2 is equipped with channel 21, and 21 side of channel forms input Sealing surface 22 and the other side form output sealing surface 23, and valve rod 3 connects the rotation switching of rotational valve core 2, in which: input sealing surface 22 Formed between output sealing surface 23 it is non-concurrent open/closed rotary opening and closing error angle R2, when rotation, which successively misplaces, to be closed/opens Open input port 11 and delivery outlet 12.
Rotational valve core 2 includes lifting flashboard 4 and the opening and closing element 5 for being connected to lifting 4 side of flashboard, and channel 21 is horizontally set on It goes up and down in flashboard 4,5 outer surface of opening and closing element constitutes output sealing surface 23, the connection lifting flashboard 4 of valve rod 3, and the lifting connection of flashboard 4 is opened Closing member 5 stretch out or shrink switching, input sealing surface 22 setting with the symmetrical other side of opening and closing element 5.
Delivery outlet 12 is equipped with primary seal and closes 13, and input port 11 is equipped with secondary closing 14, input sealing surface 22 and output sealing surface 23 The primary seal of the secondary closing 14 in first rear enclosed/unlatching input port 11 and delivery outlet 12 closes 13.
Input sealing surface 22 and output 23 5~35 degree of rotary opening and closing angle sequence of sealing surface.
Valve body 1 is equipped with valve rod base 6, and valve rod 3 is threaded through in the inserting hole of valve rod base 6, and the inserting hole of valve rod base 6 is equipped with Valve stem nut 63, valve rod 3 are connect by valve stem nut 63 with valve rod base 6, and interspersed hole wall is equipped with the horizontal guide grooves 61 communicated and hangs down Straight guide groove 62, valve rod 3 are equipped with rolling bearing 52, and valve rod 3 can drive rolling bearing 52 to roll along horizontal guide grooves 61, vertical guide slot 62 It is dynamic.
Valve rod 3 and rotational valve core 2 are rotatablely connected by rotating card block 31.
Channel 21 is rectangle or circle, and 21 area of channel is greater than or equal to pipeline flow area.
It goes up and down flashboard 4 and is equipped with T-slot 42,3 lower end of valve rod matches with T-slot 42 to be connect.
The dovetail 41 that flashboard 4 is equipped with gradient is gone up and down, opening and closing element 5 is equipped with dovetail groove 51, dovetail 41 and 51 phase of dovetail groove It is slidably connected with suitable.
Dovetail 41 and 51 upper end of dovetail groove are inclined outwardly setting.
Horizontal guide grooves 61 are arranged above vertical guide slot 62.
Valve rod base 6 is connected with valve body 1 by bolt.
3 upper end of valve rod is equipped with handwheel 7.
When the utility model is specifically used, opens or closes in input sealing surface 22 and to export sealing surface 23 non-adjacent close Switch between edge sealing, forms error angle R2.Wherein when opening, exports and form dislocation between sealing surface 23 and delivery outlet sealing edge Angle R2, and input between sealing surface and the sealing edge of input port in (critical state of unlatching) when closed state, pass through mistake therebetween Parallactic angle constitutes delivery outlet and the successive of input port opens or closes.It is then reversed with unlatching phase when closing.
When setting the error angle R2 of rotary opening and closing as 12 °.When the opening angle R1 of rotational valve core is less than 20 °, output closing The gap (i.e. 8 °) for having very little between face 23 and delivery outlet 12 is connected to channel, and input sealing surface 22 and the closing of input port 11 connect Connect state.It is 20 ° of the utility model valve opening angle as shown in figure 13, wherein output sealing surface 22 first opens delivery outlet 12, and input sealing surface 22 and input port 11 still in closed state (in critical open state).It is this reality as shown in figure 14 Input sealing surface 22 and input port 11 be just when state when with 25 ° of novel valve opening angle, i.e. opening angle are from 20 ° to 25 ° It gradually opens, constitutes open gap (i.e. 5 °) therebetween.Corresponding output sealing surface 22 and delivery outlet 12 open synchronize continue to increase It opens, gap (i.e. 13 °) therebetween is connected to channel.State when such as Figure 15 being 45 ° of the utility model valve opening angle, i.e., Input sealing surface 22 continuation synchronous with input port 11, output sealing surface 23 and the unlatching of delivery outlet 12 when opening angle is from 25 ° to 45 ° Increase and opens;
When Open valve, output sealing surface 22 first opens delivery outlet 11, opens input port 12 after inputting sealing surface 23, closes When valve, input sealing surface 22 first closes input port 11, exports 23 rear enclosed delivery outlet 12 of sealing surface.The connection rotation valve of valve rod 3 Core 2, when opening or closing valve, valve rod 3 drives the rotation switching of rotational valve core 2.When setting opening angle less than 20 °, rotation When the opening angle of spool is less than 20 °, exporting between sealing surface and delivery outlet has the gap of very little to be connected to channel, input closing Face and input port closing connect.When the opening angle of rotational valve core is greater than 20 °, input between sealing surface and input port have it is small between Gap is connected to channel, and the circulation area exported between sealing surface and delivery outlet is very big, and velocity of medium is small, to the closing pair of delivery outlet Destruction reduce, realize the purpose of anti-wear and erosion.
It is that the utility model valve is all turned on state as shown in figure 16.When being all turned on valve, valve rod 3 drives the axis of rolling It holds 52 to roll in vertical guide slot 62, rise along vertical guide slot 62, lifting flashboard 4 is driven to rise, lifting flashboard 4 passes through dovetail 41 rise along dovetail groove 51, and dovetail groove 51 is gradient, and dovetail 41 matches with dovetail groove 51, and lifting flashboard 4 opens and closes when rising Part 5 is gradually mobile to lifting flashboard 4, makes opening and closing element 5 to contract (horizontal displacement);Valve rod 3 drives rolling bearing 52 in level It rolls in guide groove 61, is rotated along horizontal guide grooves 61, drive rotational valve core 2, lifting flashboard 4, opening and closing element 5 to rotate in valve body 1, turn Movable valve plug 2, lifting flashboard 4, opening and closing element 5 rotate 90 ° to channel all-pass, valve opening in valve body 1.
Figure 12 is the utility model valve completely closed state.When completely closing valve, valve rod 3 drives rolling bearing 52 to exist It rolls in horizontal guide grooves 61, is rotated backward along horizontal guide grooves 61, drive rotational valve core 2, lifting flashboard 4, opening and closing element 5 in valve body 1 In rotate backward 90 °, opening and closing element 5 is in contraction state, the radius of gyration and primary seal close 13 and/it is secondary close 14 and have gap so that opening During closing member 5 rotates 90 °, whole process do not closed with primary seal 13 and/it is secondary close 14 and contact, do not generate friction, then the drive of valve rod 3 Rolling bearing 52 rolls in vertical guide slot 62, declines along vertical guide slot 62, and lifting flashboard 4 is driven to decline, and lifting flashboard 4 declines It drives opening and closing element 5 to stretch out abutting primary seal and closes 13 until reaching closing.
In conclusion the utility model is made actual sample and test is used for multiple times such as specification and diagramatic content, Judging from the effect of using the test, provable the utility model can reach its desired purpose, and practical value is unquestionable. Embodiment provided above is only used to facilitate illustration the utility model, not makees limit in any form to the utility model System, any those of ordinary skill in the art, if in the range of not departing from the utility model mentioned technical characteristic, Using the equivalent embodiment for locally changing or modifying made by the utility model disclosed technology content, and it is practical without departing from this Novel technical feature content, in the range of still falling within the utility model technical characteristic.

Claims (10)

1. a kind of without abrasion fluid erosion prevention clutch valve, including valve body (1), rotational valve core (2), valve rod (3), valve body (1) is equipped with input Mouth (11) and delivery outlet (12), rotational valve core (2) are equipped with channel (21), and it is sealing surface (22) and defeated that channel (21) two sides form input Sealing surface (23) out, valve rod (3) connect rotational valve core (2) rotation switching, it is characterised in that: input sealing surface (22) when rotated Input port (11) and delivery outlet (12) are closed/opened with output sealing surface (23) sequence.
2. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: rotational valve core (2) includes rising Drop flashboard (4) and the opening and closing element (5) for being connected to lifting flashboard (4) side, channel (21) setting is in lifting flashboard (4), opening and closing Part (5) outer surface constitutes input sealing surface (22) or output sealing surface (23), and valve rod (3) connection lifting flashboard (4) goes up and down flashboard (4) connection opening and closing element (5) moves horizontally switching.
3. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: delivery outlet (12) is equipped with primary seal It closes (13), input port (11) are equipped with secondary closing (14), input sealing surface (22) and the first rear enclosed/unlatching of output sealing surface (23) is defeated The secondary closing (14) of entrance (11) and the primary seal of delivery outlet (12) close (13).
4. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: input is sealing surface (22) and defeated 5~35 degree of sequence of sealing surface (23) rotary opening and closing angle out.
5. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: valve body (1) is equipped with valve rod Seat (6), valve rod (3) are threaded through in the inserting hole of valve rod base (6), and the inserting hole of valve rod base (6) is equipped with valve stem nut (63), valve Bar (3) is connect by valve stem nut (63) with valve rod base (6), and interspersed hole wall is equipped with the horizontal guide grooves (61) and vertical guide slot communicated (62), valve rod (3) is equipped with rolling bearing (52), and valve rod (3) can drive rolling bearing (52) to lead along horizontal guide grooves (61), vertically Slot (62) rolls.
6. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: valve rod (3) and rotational valve core (2) it is rotatablely connected by rotating card block (31).
7. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: channel (21) are rectangle or circle Shape, channel (21) area are greater than or equal to pipeline flow area.
8. according to claim 1 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: lifting flashboard (4) is equipped with T-type Slot (42), valve rod (3) lower end match with T-slot (42) and connect.
9. according to claim 2 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: lifting flashboard (4) is equipped with oblique The dovetail (41) of degree, opening and closing element (5) are equipped with dovetail groove (51), and dovetail (41) matches with dovetail groove (51) and is slidably connected.
10. according to claim 9 a kind of without abrasion fluid erosion prevention clutch valve, it is characterised in that: dovetail (41) and dovetail Slot (51) upper end is inclined outwardly setting.
CN201920011352.5U 2019-01-01 2019-01-01 Without abrasion fluid erosion prevention clutch valve Expired - Fee Related CN209569360U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920011352.5U CN209569360U (en) 2019-01-01 2019-01-01 Without abrasion fluid erosion prevention clutch valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920011352.5U CN209569360U (en) 2019-01-01 2019-01-01 Without abrasion fluid erosion prevention clutch valve

Publications (1)

Publication Number Publication Date
CN209569360U true CN209569360U (en) 2019-11-01

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Application Number Title Priority Date Filing Date
CN201920011352.5U Expired - Fee Related CN209569360U (en) 2019-01-01 2019-01-01 Without abrasion fluid erosion prevention clutch valve

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109488780A (en) * 2019-01-01 2019-03-19 广州市昊封流体工程技术有限公司 It is a kind of without abrasion fluid erosion prevention clutch valve

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109488780A (en) * 2019-01-01 2019-03-19 广州市昊封流体工程技术有限公司 It is a kind of without abrasion fluid erosion prevention clutch valve
CN109488780B (en) * 2019-01-01 2023-11-07 广州市昊封流体工程技术有限公司 Abrasion-free anti-erosion clutch valve

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

Granted publication date: 20191101

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