[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

CN203880214U - Valve cage structure used for large-diameter low-noise regulating valve - Google Patents

Valve cage structure used for large-diameter low-noise regulating valve Download PDF

Info

Publication number
CN203880214U
CN203880214U CN201320837340.0U CN201320837340U CN203880214U CN 203880214 U CN203880214 U CN 203880214U CN 201320837340 U CN201320837340 U CN 201320837340U CN 203880214 U CN203880214 U CN 203880214U
Authority
CN
China
Prior art keywords
throttling
disc
category
throttling disc
openings
Prior art date
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
CN201320837340.0U
Other languages
Chinese (zh)
Inventor
曲东越
刘崇
邱长华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Harbin Engineering University
703th Research Institute of CSIC
Original Assignee
Harbin Engineering University
703th Research Institute of CSIC
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.)
Filing date
Publication date
Application filed by Harbin Engineering University, 703th Research Institute of CSIC filed Critical Harbin Engineering University
Priority to CN201320837340.0U priority Critical patent/CN203880214U/en
Application granted granted Critical
Publication of CN203880214U publication Critical patent/CN203880214U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Details Of Valves (AREA)

Abstract

The utility model is aimed at providing a valve cage structure used for a large-diameter low-noise regulating valve. The valve cage structure comprises an A-kind throttling disc, B-kind throttling discs and C-kind throttling discs. The complete valve cage structure is finally formed by taking following steps of arraying the multiple B-kind throttling discs and the C-kind throttling discs from the bottom to the top on the basis of the A-kind throttling disc, and of using pins to secure the throttling discs to a lower pressing bottom piece A by means of structures of the throttling discs. Each disc comprises at least one or more throttling walls arranged in a concentric circle between the inner surface and the outer surface of a valve cage. At least one or more openings are formed in each throttling wall. Multiple openings are arranged in a bottom surface between the throttling walls of each B-kind throttling disc and each C-kind throttling disc. Fluid flow of the valve cage is effectively increased by a flowing area formed after combination of the multiple discs along an axial direction of the valve cage. The valve cage structure used for the large-diameter low-noise regulating valve has following beneficial effects: the through openings are used for separating fluid to multiple branches which flow through the throttling walls and then collide with each other to reduce energy level as far as possible.

Description

A kind of valve cage structure for heavy caliber low noise modulating valve
Technical field
The utility model relates to a kind of valve.
Background technique
Modulating valve is widely used in process control system, for regulating the process parameter such as rate-of flow, pressure of industrial automation process control field.According to the control signal in automatic system, the aperture of automatic regulating valve door, thus realize working medium flowing between valve inlet and outlet.In order to provide operating mode required particular fluid flow characteristic, low noise valve often adopts and in the runner between valve outlet port and import, valve cage is set and carries out throttling.The valve cage hydrodynamic noise that both can decay also can reduce or eliminate cavitation.In addition, valve cage and valve closing member are coaxially installed, thereby improve the balance and stability of closure element.
Due to Complex Phenomena in Vertical Bell Jars such as ubiquity turbulent flow, separated flows in valve flowing channel, make the operational noise of valve become gradually an important evaluation criterion of valve mass.The use of valve cage can reduce the flow velocity of runner inner fluid effectively, alleviates the turbulence pulsation noise and cavitation erosion noise of fluid.In valve, the control of flow is determined by the relative position of valve plug and valve cage, for example, by the accurate motion of regulating valve control member (: valve disc, valve plug), accurately controls the working medium flow that flows through modulating valve.Because the throttling action of valve cage causes the flow loss of cage type regulating valve larger, during valve cage design, how balance reduces flow noise and reduces flow loss two aspect functions, is the problem that the design of novel low-noise regulating valve faces.
Summary of the invention
The purpose of this utility model is to provide the speed that has reduced High Temperature High Pressure working medium, has eliminated a kind of valve cage structure for heavy caliber low noise modulating valve of the cavitation phenomenon that pressure drop causes after throttling.
The purpose of this utility model is achieved in that
A kind of valve cage structure for heavy caliber low noise modulating valve of the utility model, it is characterized in that: comprise category-A throttling disc, category-B throttling disc, C class throttling disc, category-A throttling disc includes cylindrical form interior surface and cylindrical outer surface, between the internal surface of category-A throttling disc and outer surface, arrange two-layer or two-layer above throttling wall, on the adjacent throttling wall of the outer surface of category-A throttling disc, do not there is pass through openings, on all the other throttling walls, be along the circumferential direction evenly arranged and be no less than plural pass through openings; Category-B throttling disc comprises cylindrical form interior surface and cylindrical outer surface, between the internal surface of category-B throttling disc and outer surface, arrange two-layer or two-layer above throttling wall, on the adjacent throttling wall of the outer surface of category-B throttling disc, do not there is pass through openings, on all the other throttling walls, be along the circumferential direction evenly arranged and be no less than plural pass through openings, on the disc bottom surface between throttling wall, be along the circumferential direction evenly arranged and be no less than plural pass through openings; C class throttling disc comprises cylindrical form interior surface and cylindrical outer surface, between the internal surface of C class throttling disc and outer surface, arrange two-layer or two-layer above throttling wall, on the throttling wall of C class throttling disc, be along the circumferential direction evenly arranged and be no less than plural pass through openings, on the disc bottom surface between the throttling wall of C class throttling disc, be along the circumferential direction evenly arranged and be no less than plural pass through openings; Described category-A throttling disc has a slice, and category-B throttling disc and C class throttling disc have respectively a slice at least, according to the order of category-A throttling disc, category-B throttling disc, C class throttling disc, arrange from bottom to top, and by the pin structure that links into an integrated entity.
The utility model can also comprise:
1, the internal surface of category-A throttling disc, category-B throttling disc and C class throttling disc is projected as circular and overlaps, the circle that is projected as of the outer surface of category-A throttling disc, category-B throttling disc and C class throttling disc also overlaps, the quantity of the throttling wall of category-A throttling disc, category-B throttling disc and C class throttling disc is equal, and in category-A throttling disc, category-B throttling disc or C class throttling disc, the pass through openings of adjacent throttling wall staggers mutually.
2, category-A throttling disc has 1, and category-B throttling disc has 4, and C class throttling disc has 5, and the throttling wall of category-A throttling disc, category-B throttling disc and C class throttling disc all has 4.
3, described pass through openings is rectangle, circle, long-round-shape or rhombus.
Advantage of the present utility model is: the pass through openings in the multistage multi-channel throttling disc in the utility model on cylindrical wall is multiply tributary by fluid dispersion, and each burst of tributary collides with each other again to fall as much as possible low energy levels after throttling wall, each fluid passage is by staggered the forming of pass through openings of specific quantity, crossing of each fluid all will reduce flow working medium flow velocity with shunting, with this, realize the object that reduces flow noise.
Accompanying drawing explanation
Fig. 1 is stereogram of the present utility model;
Fig. 2 a is each throttling disc pin connection structure schematic diagram a of the present utility model, and Fig. 2 b is each throttling disc pin connection structure schematic diagram b of the present utility model;
Fig. 3 a is C class throttling disc plan view, and Fig. 3 b is C class throttling disc perspective view, and Fig. 3 c is pass through openings axis schematic diagram;
Fig. 4 a is category-B throttling disc plan view, and Fig. 4 b is category-B throttling disc perspective view;
Fig. 5 a is category-A throttling disc plan view, and Fig. 5 b is category-A throttling disc perspective view;
Fig. 6 a is valve cage longitudinal section inner flow passage and throttling disc inner flow passage schematic diagram a, and Fig. 6 b is valve cage longitudinal section inner flow passage and throttling disc inner flow passage schematic diagram b.
Embodiment
Below in conjunction with accompanying drawing, for example the utility model is described in more detail:
In conjunction with Fig. 1~6, the utility model comprises: category-A lower sheeting, category-B throttling disc, C class throttling disc and be used for connecting the pin that each disc is used.1 above category-B, C class throttling disc are arranged from the bottom to top in turn, and application pin is connected on a slice category-A lower sheeting, forms valve cage device.
Category-A lower sheeting has cylindrical form interior surface and cylindrical outer surface, on the throttling wall depending on, does not have pass through openings at outer surface.Between inner and outer surface, be the throttling wall that arranged in concentric circles is no less than one deck, be along the circumferential direction evenly arranged and be no less than plural pass through openings on throttling wall, described pass through openings is the regular geometric shapes such as rectangle, circle, long-round-shape or rhombus.
Category-B throttling disc has cylindrical form interior surface and cylindrical outer surface, on the throttling wall depending on, does not have pass through openings at outer surface.Between inner and outer surface, be the throttling wall that arranged in concentric circles is no less than one deck, be along the circumferential direction evenly arranged and be no less than plural pass through openings on throttling wall, described pass through openings is the regular geometric shapes such as rectangle, circle, long-round-shape or rhombus.On the disc bottom surface between throttling wall, be along the circumferential direction evenly arranged and be no less than plural pass through openings, described pass through openings becomes the regular geometric shapes such as long-round-shape or circle substantially.
C class throttling disc has cylindrical form interior surface and cylindrical outer surface.Between inner and outer surface, be the throttling wall that arranged in concentric circles is no less than one deck, be along the circumferential direction evenly arranged and be no less than plural pass through openings on throttling wall, described pass through openings is the regular geometric shapes such as rectangle, circle, long-round-shape or rhombus.On the disc bottom surface between throttling wall, be along the circumferential direction evenly arranged and be no less than plural pass through openings, described pass through openings becomes the regular geometric shapes such as long-round-shape or circle substantially.
The axis of the pass through openings on the different throttling walls of all kinds of throttling discs is arranged in the reference plane that arrange with respect to described valve cage axis 18 quadratures, and point to valve cage axis or be tangential on an imaginary circles cylinder 17 centered by valve cage axis, described imaginary circles cylinder diameter should be less than the diameter of valve cage cylindrical form interior surface.Pass through openings axis on adjacent throttling wall is along the circumferential direction tilt fixing.
This valve cage is combined by multi-disc throttling disc, and the closure element of valve is arranged on outside valve cage or sends out in cage.Throttling disc can be divided three classes according to the ability difference of throttling: category-A press down egative film, category-B throttling disc and C class throttling disc, category-B and C class throttling disc are arranged from the bottom up, utilize pin to connect firmly in turn and are pressing down on egative film A.
All kinds of discs comprise the multistage throttle wall that is arranged in concentric circles, and disc is no less than the flow region of plural pass through openings along described throttling wall circumferential arrangement, and opening axis is positioned at the reference plane that relative valve cage axis quadrature arranges, and points to valve cage axis.Opening axis in same disc on different throttling walls is tilt fixing.Wherein category-B and C class disc are arranged the flow region that is no less than plural pass through openings in disc on the bottom surface between adjacent two-stage throttling wall, and the axis of opening is parallel with valve cage axis, and this opening can effectively increase the working medium flow by valve cage.
Fig. 1 is valve cage orifice union perspective view in known modulating valve, and this valve cage structure comprises 1 lower sheeting A, and 4 category-B throttling discs and 5 C class throttling discs form.Category-A throttling disc, as the reference for installation of valve cage assembly, does not have opening on the bottom surface of disc.Category-B and C class throttling disc are arranged from bottom to top in turn, apply pin and be connected on lower sheeting A, as shown in Figure 2 on structure 11 positions.Valve cage assembly has cylindrical outer wall 13 and inwall 12, and between inwall and outer wall, valve cage defines one or more fluid flow regions 15,14.These flow regions can flow fluid working substance between outer wall 13 and inwall 12, and the Working fluid flow by valve is the determining positions outside valve cage or in valve cage by cypriot valve components.
Referring to Fig. 3 to Fig. 5, every class throttling disc includes 4 grades of throttling walls that are arranged in concentric circles, c1 as shown in Figure 3, c2, c3, c4.On throttling walls at different levels, arrange and be no less than plural pass through openings 14.Each pass through openings is substantially rectangle, but also can there are other shapes, as circle, long-round-shape, rhombus etc., the central axis of pass through openings should be positioned at and the valve cage axis plane that is orthogonal, and point to valve cage axis, pass through openings central axis on adjacent throttling wall becomes tilt fixing, and as a in Fig. 3, b, c, angle can be the same or different.On throttling walls at different levels between the shape of pass through openings, quantity, size and adjacent throttling wall upper shed axis angle can select different patterns according to different operating modes.
In order to improve the through-current capability of valve cage, other throttling discs except pressing down disc A are on the bottom surface between adjacent two-stage throttling wall, in same position, arrange and be no less than plural pass through openings 15, the shape of the pass through openings 15 on each throttling disc, quantity, large I are selected different patterns according to different operating modes.
After the combination of multi-disc throttling disc, the fluid flowing passage that bottom surface opening 15 and each throttling wall upper shed 14 can form as shown in Figure 6.At valve cage in the radial direction, when this flow channel forces fluid to flow to opening valve cage internal surface c1 level throttling wall on by the opening 14 on C class throttling disc c4 level throttling wall by the opening on c2, c3 level throttling wall by valve cage outer surface 13, flow direction changes, and in flow process, fluid collides with each other.On the axial direction of valve cage, when fluid flows through internal surface that opening on C class throttling disc c4 level throttling wall 14 arrives category-Bs and category-A throttling disc and exports 14, fluid also must change flow direction.The change of this flow direction is that opening 15 guiding that run through to category-B throttling disc bottom surface from the bottom surface of C class throttling disc due to fluid produce.In general, the variation of fluid flow direction will cause the loss of rate of flow of fluid, hydrodynamic pressure and volume of fluid, also can effectively reduce due to the mobile turbulization noise of fluid, eddy current crack simultaneously.
Pass through openings in multistage multi-channel throttling disc in the utility model on cylindrical wall is multiply tributary by fluid dispersion, and each burst of tributary collides with each other again to fall as much as possible low energy levels after throttling wall, each fluid passage is by staggered the forming of pass through openings of specific quantity, crossing of each fluid all will reduce flow working medium flow velocity with shunting, with this, realize the object that reduces flow noise.

Claims (5)

1. the valve cage structure for heavy caliber low noise modulating valve, it is characterized in that: comprise category-A throttling disc, category-B throttling disc, C class throttling disc, category-A throttling disc includes cylindrical form interior surface and cylindrical outer surface, between the internal surface of category-A throttling disc and outer surface, arrange two-layer or two-layer above throttling wall, on the adjacent throttling wall of the outer surface of category-A throttling disc, do not there is pass through openings, on all the other throttling walls, be along the circumferential direction evenly arranged and be no less than plural pass through openings; Category-B throttling disc comprises cylindrical form interior surface and cylindrical outer surface, between the internal surface of category-B throttling disc and outer surface, arrange two-layer or two-layer above throttling wall, on the adjacent throttling wall of the outer surface of category-B throttling disc, do not there is pass through openings, on all the other throttling walls, be along the circumferential direction evenly arranged and be no less than plural pass through openings, on the disc bottom surface between throttling wall, be along the circumferential direction evenly arranged and be no less than plural pass through openings; C class throttling disc comprises cylindrical form interior surface and cylindrical outer surface, between the internal surface of C class throttling disc and outer surface, arrange two-layer or two-layer above throttling wall, on the throttling wall of C class throttling disc, be along the circumferential direction evenly arranged and be no less than plural pass through openings, on the disc bottom surface between the throttling wall of C class throttling disc, be along the circumferential direction evenly arranged and be no less than plural pass through openings; Described category-A throttling disc has a slice, and category-B throttling disc and C class throttling disc have respectively a slice at least, according to the order of category-A throttling disc, category-B throttling disc, C class throttling disc, arrange from bottom to top, and by the pin structure that links into an integrated entity.
2. a kind of valve cage structure for heavy caliber low noise modulating valve according to claim 1, it is characterized in that: the circle that is projected as of the internal surface of category-A throttling disc, category-B throttling disc and C class throttling disc also overlaps, the circle that is projected as of the outer surface of category-A throttling disc, category-B throttling disc and C class throttling disc also overlaps, the quantity of the throttling wall of category-A throttling disc, category-B throttling disc and C class throttling disc is equal, and in category-A throttling disc, category-B throttling disc or C class throttling disc, the pass through openings of adjacent throttling wall staggers mutually.
3. a kind of valve cage structure for heavy caliber low noise modulating valve according to claim 1 and 2, it is characterized in that: category-A throttling disc has 1, category-B throttling disc has 4, and C class throttling disc has 5, and the throttling wall of category-A throttling disc, category-B throttling disc and C class throttling disc all has 4.
4. a kind of valve cage structure for heavy caliber low noise modulating valve according to claim 1 and 2, is characterized in that: described pass through openings is rectangle, circle, long-round-shape or rhombus.
5. a kind of valve cage structure for heavy caliber low noise modulating valve according to claim 3, is characterized in that: described pass through openings is rectangle, circle, long-round-shape or rhombus.
CN201320837340.0U 2013-12-18 2013-12-18 Valve cage structure used for large-diameter low-noise regulating valve Expired - Fee Related CN203880214U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320837340.0U CN203880214U (en) 2013-12-18 2013-12-18 Valve cage structure used for large-diameter low-noise regulating valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320837340.0U CN203880214U (en) 2013-12-18 2013-12-18 Valve cage structure used for large-diameter low-noise regulating valve

Publications (1)

Publication Number Publication Date
CN203880214U true CN203880214U (en) 2014-10-15

Family

ID=51680709

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320837340.0U Expired - Fee Related CN203880214U (en) 2013-12-18 2013-12-18 Valve cage structure used for large-diameter low-noise regulating valve

Country Status (1)

Country Link
CN (1) CN203880214U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103629432A (en) * 2013-12-18 2014-03-12 哈尔滨工程大学 Valve cage structure for large-caliber low-noise regulating valve

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103629432A (en) * 2013-12-18 2014-03-12 哈尔滨工程大学 Valve cage structure for large-caliber low-noise regulating valve
CN103629432B (en) * 2013-12-18 2016-05-25 哈尔滨工程大学 A kind of valve cage structure for heavy caliber low noise control valve

Similar Documents

Publication Publication Date Title
CN103629432B (en) A kind of valve cage structure for heavy caliber low noise control valve
CN104040233B (en) Gas-tight pit and the method that non-anti-cavitation main valve is transformed into into anti-cavitation main valve
CN201034650Y (en) Semi-ring voltage equalizing type ring casing pressure sampling stephanoporate shaped hole plate flow rate sensor
US10527476B2 (en) Ultrasonic flow meter having a main channel and at least one secondary channel
CN101755158A (en) Valve with valve cage
JPS5830582A (en) Control valve
CN105972233A (en) Expansion valve, refrigerant circulation system and air conditioner
CN103629369A (en) Valve device with a flow guiding device
CN103486328B (en) Low noise cage type regulating valve
CN203880214U (en) Valve cage structure used for large-diameter low-noise regulating valve
KR101564031B1 (en) An expansion valve having unified device of double differential pressure
JP2023520282A (en) Valve body assembly and composite valve having the same
CN107288579B (en) A kind of horizontal well automatic water control valve
CN201145593Y (en) Multi-larynx type hole plate
CN201223749Y (en) Disc type filter filtering unit
CN103256447A (en) Pipeline depressurization device
CN203718067U (en) High-accuracy dynamic flow balance valve
CN105736824A (en) Labyrinth type regulating valve
CN203488780U (en) Low-noise cage-type adjusting valve
CN216430544U (en) Regulating valve with telescopic valve cage
CN105741891A (en) Reactor control rod guide pipe by-pass flow test model and test method
CN206830935U (en) Dropping valve with multilevel decompression valve element
CN214951599U (en) Remote control's leading filter water gauge system of intelligence
CN204083264U (en) A kind of piston is as the single-seat adjusting valve of balancing component
CN203224261U (en) Adjustable flange type flow measuring device

Legal Events

Date Code Title Description
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: 20141015

Termination date: 20161218

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