CN203348604U - Three-sheet butt-weld connection float ball valve - Google Patents

Three-sheet butt-weld connection float ball valve Download PDF

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Publication number
CN203348604U
CN203348604U CN 201320376938 CN201320376938U CN203348604U CN 203348604 U CN203348604 U CN 203348604U CN 201320376938 CN201320376938 CN 201320376938 CN 201320376938 U CN201320376938 U CN 201320376938U CN 203348604 U CN203348604 U CN 203348604U
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CN
China
Prior art keywords
valve
sealing
valve body
joint
gap
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Expired - Fee Related
Application number
CN 201320376938
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Chinese (zh)
Inventor
陈占基
杨铭
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ZHEJIANG HUAXIA VALVE CO Ltd
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ZHEJIANG HUAXIA VALVE CO Ltd
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Priority to CN 201320376938 priority Critical patent/CN203348604U/en
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Publication of CN203348604U publication Critical patent/CN203348604U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model provides a three-sheet butt-weld connection float ball valve which is formed by a valve body, a right valve cover, a left valve cover, a valve seat arranged inside the valve body, a ball body and a handle, wherein the ball body is arranged on the valve seat. The three-sheet butt-weld connection float ball valve is characterized in that the joint between the valve body and the right valve cover and the joint between the valve body and the left valve cover are respectively provided with a first valve body sealing pad and a second valve body sealing pad and are all of a microcosmic serrated-ring sealing and abutting structure. The handle is connected with the ball body through a valve rod which penetrates through the sidewall of the valve body. The position where the valve rod inverted seal is located is of a spherical structure. The first valve body sealing pad and the second valve body sealing pad are all of the microcosmic serrated-ring sealing and abutting structure. By the adoption of a triangular sleeve structure, a valve rod ball-wedge inverted sealing structure and the microcosmic serrated-ring sealing and abutting structure, the three-sheet butt-weld connection float ball valve is small in sealing volume, high in efficiency and more reliable in sealing performance.

Description

The three pieces type butt welding connects Float ball valve
Technical field
The utility model belongs to mechanical engineering accessory technical field, and what be specifically related to is that a kind of three pieces type butt welding connects Float ball valve.
Background technique
Valve is that fluid is carried and the switch of controlling, and all valves have a switch gear, as the ball in ball valve, and the flashboard in gate valve, the flap in stop valve; Valve opening/closing device is arranged in the fluid passage of valve body, and an open position that allows fluid to pass and a closed position that stops fluid to pass are arranged, and it closes and realize by valve rod from closing to the motion of opening from reaching; Valve rod is all to pass through in vitro handle or pneumatic head or electrical header to handle; Valve rod is external from reaching in valve body or valve gap, needs strict sealing, the closing structure of switch gear or the connection of passage or fixingly also need strict sealing.
Undesirable because of the sealing configuration existence sealing of existing valve mechanism, sealingly secure hidden danger is people's urgent problem always, and this case is given birth to therefrom.
Summary of the invention
The purpose of this utility model is the deficiency for above technology, and a kind of simply and effectively temperature correction sealing configuration is provided, and the three pieces type butt welding that is used as the binding thread connection of fluid containment part connects Float ball valve.
Because considering that the task of sealing is fill up butting surface rough and uneven in surface, the sealing butting surface is generally all processed by car borer skill, and therefore, the task of sealing is to fill up the surface geometry error that car boring processing causes; The machining surface gemoetric error has three kinds of surface roughness, external waviness and surface shape errors; Surface roughness is the surface microscopic gemoetric error of the profile unit width narrower (or wavelength is shorter) that consists of the cutting edge mark, its profile unit (width XS/ height Zt)<50; Surface waviness is the surface microscopic gemoetric error of the profile unit's width slightly wide (or wavelength is slightly long) due to the processing vibration, its profile unit (width XS/ height Zt)=50-1000; Surface shape error is that machine tool guideway or workpiece are installed the surperficial macroscopical gemoetric error of profile unit's wider width (or wavelength is longer) due to clamping, its profile unit (width XS/ height Zt) > 1000; The surface shape error wavelength that seal f ace width causes much smaller than machine tool guideway parallelism and perpendicularity, be reflected in and can ignore to the surface shape error on front cover, and the surface shape error that workpiece is installed due to clamping should and can be avoided; Common car boring manufacturing process belongs to slightly meticulous machining category, needs to use slightly high spindle speed and slightly thin feed speed, and the wavelength of the surface waviness due to vibration is shorter, and the wavelength of the roughness of sword mark formation is shorter; Therefore sealing will be filled up is the rough and uneven in surface of microcosmic surface waviness finer and smoother on butting surface and roughness magnitude.
Due to sealing material commonly used in certain normal temperature scope, other material is at certain high temperature range, nearly all that the mutual not stall in crystal region and amorphous tagma is changed and the viscoelastic material coexisted, and crystal region causes the aobvious solidified phase characteristics of material, intensity and rigidity are arranged, the amorphous tagma causes material aobvious liquid phase characteristics, toughness and elasticity; The mobility of liquid phase ingredient can cause the pressure of sealing gasket to transmit isotropy, and no matter the medium acting surface is parallel or vertical with sealing surface, all likely will pad the sealing load that surface pressure is converted to sealing surface totally; The volume invariability of liquid phase ingredient can cause the sealing gasket in die compaction, as the hydraulic oil in oil cylinder, as long as superpower anti-pressure ability is arranged--and it is enough little to extrude gap, just will never squeezedly break; The viscosity of liquid phase ingredient can cause sealing gasket response lag stress, or it is lax or cause the sealing gasket cold flow to cause padding Sealing Stress, causes seal failure; The viscosity of liquid phase ingredient also can cause the pressure transmission of sealing gasket highly to be successively decreased; The steadiness of solid phase composition can cause the compressive stress of sealing gasket, at the most can only be by Poisson's ratio and Hooke's law, convert the extension stress (because the Poisson of sealing material commonly used system is less than 0.5) on its orthogonal direction to with reducing by half, therefore, likely can only be by the surface pressure of selfsealings pad, convert other direction to, convert the Sealing Stress of orthogonal direction by Poisson's ratio to by projection; So, the softer resilient rubbber cushion of quality almost can be by liquid transfering pressure, the hard pad of quality almost can only be by solid Poisson's ratio and vector transmission of pressure, the medium teflon pad of quality soft or hard can be pressed on liquid phase, macroscopic view and press the solid phase transmission of pressure before surrender on microcosmic, can after surrender, on macroscopic view, press the liquid phase transmission of pressure.
The structural principle of sealing is, during without pressure medium, structure realizes that the necessary minimum nominal stress y of initial sealing should be enough little, it is little when pressure medium is arranged, the sealing of structure maintains coefficient or anti-interference Coefficient m (the seal action power FS/ medium of=structure removes seal action power Fu) is meaningful, be little when pressure medium is arranged, the sealing of structure is determined by m: during m=1, the seal action power (FS) of structure=medium-tight active force (Fu), structure is in sealing and non-tight threshold state, m is a bit larger tham 1 o'clock, structure seals the state of maintaining, m is larger than 1, the ability that structure maintains sealing is stronger, reliability is higher, that is to say that the little m when pressure medium is arranged of y value when design of Sealing Structure is at first to make it without pressure medium is meaningful, then make its m 1.
As previously mentioned, without the saw-tooth ring docking, soft than the docking metal due to pad if use pad, therefore, generally all can realize by that part of prefastened power of bearing maximal work pressure initial sealing; So any sealing docking structure, as long as appropriate application microcosmic saw-tooth ring and cushion, all can maintain coefficient or anti-interference Coefficient m (medium on the seal action power FS/ sealing surface of=structure removes seal action power Fu) is greater than 1 design and examination by sealing.
Basic sealing structure for trough pad, softer than docking metal surface material as the nonmetallic material of pad sealing, be easy to eliminate the original leakage of docking metal surface, but but bring docking new leakage--along the leakage that penetrates of microgap in the pad material; No matter be motive sealing or static seal, effectively stop the key that medium leaks along the sealing surfaces passage to be to give enough contact pressure stress so that the pad material is fully filled up the rough and uneven in surface of butting surface to the pad sealing surface, effectively stop medium to be that along the key that pads the leakage of material internal channel each pads microgap mouth in material to giving enough pressure stress fully to close to pad simultaneously, and do not mind that extruding force is from interface or pressure medium; Transmission due to power in viscous liquid material is successively decreased, the transmission of power in elastic solid material is that other is arranged in length and breadth, therefore, the open compression of the sealing gasket that solid phase under normal temperature and liquid phase are coexisted can not make pad be subject to the extruding of same degree to surface simultaneously and effectively close each road leakage way its each, in other words, only have the closed compression sealing gasket just likely to make pad be subject to the crowded cash of same degree to surface its each simultaneously and effectively close the leakage way that medium penetrates the pad material along leakage way and the medium of sealing surface simultaneously; In addition, sealing material in closed compression, just as the hydraulic oil in oil hydraulic cylinder, as long as enough little between extruding, just will never squeezedly break, therefore, can say, no matter optimal pad sealing configuration, be by mechanical force being installed or compressing by pressure medium, should be all the sealing structure for trough pad that pad is subject to closed compression.
The utility model is achieved through the following technical solutions: the three pieces type butt welding connects Float ball valve, valve body, right valve gap, left valve gap, the valve seat that is located at valve inner, spheroid, the handle be located on valve seat, consists of; It is characterized in that: the joint of the joint of valve body and right valve gap, valve body and left valve gap all is provided with the first valve seal pad, the second valve body sealing gasket, the connection part of the connection part of valve body and right valve gap, valve body and left valve gap is all sealing butt-joint structure of microcosmic saw-tooth ring and groove mat structure, handle couples together by valve rod and spheroid, and this valve rod is the sidewall that runs through valve body, valve rod back seal place is spherical structure.
Described the first valve seal pad, the second valve body sealing gasket are all sealing butt-joint structure of microcosmic saw-tooth ring, because the initial contact of sealing butt-joint structure of microcosmic saw-tooth ring is the line contact, material is harder, area of contact more approaches zero, therefore, can say, no matter how how hard by force material is, docking structure contacts and realizes that the required active force of initial sealing all as the soft material, all can be as small as and ignores by line; That is to say, no matter material is hard or soft, as long as apply the microcosmic saw-tooth ring sealing configuration in good time, any docking structure is to realize that part of required power of initial sealing all can accomplish to ignore, or any docking structure realizes that the necessary minimum Sealing Stress y of sealing all can accomplish to ignore during without pressure medium.
The sidewall joint of sidewall joint, valve rod and the left valve gap of described valve rod and right valve gap all is provided with thrust washer and three point arbitrage seals fully; Because delta seal cover directly is subject to radial pressure and highly symmetrically, therefore, have that leakage efficiency is high, Compensation Regulation is sensitive, the wear-resisting characteristics such as lasting.
The benchmark architecture in described valve seat cross section is equilateral triangle.
Be provided with the first dish spring between described valve seat and left valve gap, the side of valve rod and the top that simultaneously is positioned at three point arbitrage are provided with packing press ring, filler pressing sleeve, the second dish spring; Handle and a locating stud.
The beneficial effects of the utility model embody and are: compared with prior art, the utility model, owing to adopting three point arbitrage sealing, valve rod ball wedge back seal and sealing butt-joint structure of microcosmic saw-tooth ring, makes sealed volume little, and efficiency is high, and sealability is more reliable; The handle locking platform adopts and is threaded with the driver mountion plate in addition, and this will reduce the manufacture cost of valve greatly.
The accompanying drawing explanation
Below in conjunction with accompanying drawing, the utility model is described in detail.
Fig. 1 is the utility model cross section structure schematic diagram.
Embodiment
As shown in Figure 1, the three pieces type butt welding connects Float ball valve, valve body 6, right valve gap 1, left valve gap 10, the valve seat 8 that is located at valve body 6 inside, spheroid 7, the handle 19 be located on valve seat 8, consists of; This valve body 6 all is provided with the first valve seal pad 4, the second valve body sealing gasket 5 with joint, the valve body 6 of right valve gap 1 with the joint of left valve gap 10, valve body 6 is all sealing butt-joint structure of microcosmic saw-tooth ring and groove mat structure with connection part, the valve body 1 of right valve gap 1 with the connection part of left valve gap 10, described handle 19 couples together by valve rod 11 and spheroid 7, and this valve rod 11 is the sidewalls that run through valve body 6, valve rod back seal place is spherical structure; The first valve seal pad 4, the second valve body sealing gasket 5 are all sealing butt-joint structure of microcosmic saw-tooth ring.
Described the first valve seal pad 4, the second valve body sealing gasket 5 are all sealing butt-joint structure of microcosmic saw-tooth ring; This sealing butt-joint structure of microcosmic saw-tooth ring can be suitable as various surfaces, as plane and plane, and the conical surface and the conical surface or sphere, the Butt sealing structure of sphere and sphere or the conical surface etc.; In fact, as long as on the slightly protruding face that docking saw-tooth ring structure is arranged, by the surface shape error profile wave height due to machine tool guideway parallelism and perpendicularity and workpiece deformation, be not more than the surface waviness profile unit height due to cutting vibration and be not more than the surface roughness profile unit height due to the cutting edge mark, so, all reliable slightly large microcosmic saw-tooth ring of tooth depth sealings that achieves a butt joint of all surface docking.
The sidewall joint of the sidewall joint of described valve rod 11 and right valve gap 1, valve rod 11 and left valve gap 10 all is provided with thrust washer 12 and three point arbitrage 13 seals fully.
Be provided with the first dish spring 9 between described valve seat 8 and left valve gap 10, the side of valve rod 11 and the top that simultaneously is positioned at three point arbitrage 13 are provided with packing press ring 14, filler pressing sleeve 15, the second dish spring 16; Handle 19 and a locating stud 17, convenient like this location.
Be provided with the second nut 18 between the second dish spring 16 and handle 19.
Fixing by the first nut 3 and screw rod 2 between described valve body 6 and right valve gap 1.
The benchmark architecture in described valve seat 8 cross sections is equilateral triangle, the task of valve seat has been that switch spheroid 7 docks with the oblique angle of valve body 6, therefore, 8 at least three surfaces at an angle to each other of valve seat a: sealing surface to the switch spheroid, a sealing surface to valve body and an equilibrium of forces supporting surface of asking valve body; Its three of this equilateral triangle section valve seats equate stressed and do not wait lifting surface area (because of turning radius difference) just in time expire ideally in the demand of each face unequal stress, the ball sealing surface that stress is slightly large just in time meets its motive sealing to ball, the body sealing surface that stress is slightly little just in time meets its static seal to body, and stress slightly little supporting surface more just in time meets its slip on supporting ring; Moreover, only have the equilateral triangle cross section just can avoid valve seat the weak wedge angle of 60 degree to occur being less than; Therefore, must to meet equilateral triangle be cross section to valve seat.

Claims (4)

1. the three pieces type butt welding connects Float ball valve, valve body, right valve gap, left valve gap, the valve seat that is located at valve inner, spheroid, the handle be located on valve seat, consists of; It is characterized in that: the joint of the joint of valve body and right valve gap, valve body and left valve gap all is provided with the first valve seal pad, the second valve body sealing gasket, the connection part of the connection part of valve body and right valve gap, valve body and left valve gap is all sealing butt-joint structure of microcosmic saw-tooth ring and groove mat structure, handle couples together by valve rod and spheroid, and this valve rod is the sidewall that runs through valve body, valve rod back seal place is spherical structure; The first valve seal pad, the second valve body sealing gasket are all sealing butt-joint structure of microcosmic saw-tooth ring.
2. three pieces type butt welding according to claim 1 connects Float ball valve, and it is characterized in that: the sidewall joint of sidewall joint, valve rod and the left valve gap of described valve rod and right valve gap all is provided with thrust washer and three point arbitrage seals fully.
3. three pieces type butt welding according to claim 2 connects Float ball valve, and it is characterized in that: the benchmark architecture in described valve seat cross section is equilateral triangle.
4. three pieces type butt welding according to claim 3 connects Float ball valve, it is characterized in that: be provided with the first dish spring between described valve seat and left valve gap, the side of valve rod and the top that simultaneously is positioned at three point arbitrage are provided with packing press ring, filler pressing sleeve, the second dish spring; Handle and a locating stud.
CN 201320376938 2013-06-28 2013-06-28 Three-sheet butt-weld connection float ball valve Expired - Fee Related CN203348604U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320376938 CN203348604U (en) 2013-06-28 2013-06-28 Three-sheet butt-weld connection float ball valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320376938 CN203348604U (en) 2013-06-28 2013-06-28 Three-sheet butt-weld connection float ball valve

Publications (1)

Publication Number Publication Date
CN203348604U true CN203348604U (en) 2013-12-18

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ID=49748507

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201320376938 Expired - Fee Related CN203348604U (en) 2013-06-28 2013-06-28 Three-sheet butt-weld connection float ball valve

Country Status (1)

Country Link
CN (1) CN203348604U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104214360A (en) * 2014-08-29 2014-12-17 苏州福润机械有限公司 Ball valve
CN104930214A (en) * 2015-07-15 2015-09-23 洞头华夏阀门有限公司 Rapid installation type high pressure floating ball valve
CN107676534A (en) * 2017-08-17 2018-02-09 昆明云内动力股份有限公司 A kind of main shaft sealing construction of engine EGR cooler by-passing valve

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104214360A (en) * 2014-08-29 2014-12-17 苏州福润机械有限公司 Ball valve
CN104930214A (en) * 2015-07-15 2015-09-23 洞头华夏阀门有限公司 Rapid installation type high pressure floating ball valve
CN107676534A (en) * 2017-08-17 2018-02-09 昆明云内动力股份有限公司 A kind of main shaft sealing construction of engine EGR cooler by-passing valve
CN107676534B (en) * 2017-08-17 2019-05-31 昆明云内动力股份有限公司 A kind of main shaft sealing construction of engine EGR cooler by-passing valve

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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: 20131218

Termination date: 20150628

EXPY Termination of patent right or utility model