WO2017063707A1 - Ventileinrichtung - Google Patents
Ventileinrichtung Download PDFInfo
- Publication number
- WO2017063707A1 WO2017063707A1 PCT/EP2015/073914 EP2015073914W WO2017063707A1 WO 2017063707 A1 WO2017063707 A1 WO 2017063707A1 EP 2015073914 W EP2015073914 W EP 2015073914W WO 2017063707 A1 WO2017063707 A1 WO 2017063707A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- valve
- recess
- base body
- valve device
- actuator
- Prior art date
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K11/00—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves
- F16K11/02—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit
- F16K11/04—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only lift valves
- F16K11/052—Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit comprising only lift valves with pivoted closure members, e.g. butterfly valves
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K27/00—Construction of housing; Use of materials therefor
- F16K27/003—Housing formed from a plurality of the same valve elements
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K27/00—Construction of housing; Use of materials therefor
- F16K27/02—Construction of housing; Use of materials therefor of lift valves
- F16K27/0263—Construction of housing; Use of materials therefor of lift valves multiple way valves
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K27/00—Construction of housing; Use of materials therefor
- F16K27/02—Construction of housing; Use of materials therefor of lift valves
- F16K27/0281—Housings in two parts which can be orientated in different positions
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
- F16K31/00—Actuating devices; Operating means; Releasing devices
- F16K31/12—Actuating devices; Operating means; Releasing devices actuated by fluid
- F16K31/16—Actuating devices; Operating means; Releasing devices actuated by fluid with a mechanism, other than pulling-or pushing-rod, between fluid motor and closure member
- F16K31/163—Actuating devices; Operating means; Releasing devices actuated by fluid with a mechanism, other than pulling-or pushing-rod, between fluid motor and closure member the fluid acting on a piston
- F16K31/1635—Actuating devices; Operating means; Releasing devices actuated by fluid with a mechanism, other than pulling-or pushing-rod, between fluid motor and closure member the fluid acting on a piston for rotating valves
Definitions
- the invention relates to a valve device for influencing a fluid flow, having a base body which has a valve recess for receiving a movably mounted valve body and which is penetrated by at least two fluid channels which extend between the valve recess and connection recesses in outer surfaces of the main body, wherein the two fluid channels at an angle of less than 180 °, in particular of 90 °, occupy and each having on a valve recess end portion having a valve seat, which is designed for a sealing contact of a valve body, with a drive device which has an actuator and a Actuator associated, movably mounted valve body comprises, wherein the actuator is designed to initiate an actuating movement to the valve body.
- a modular valve and distribution system for flowing media which consists of a plurality of attachable components, each having the same cuboidal base housing, which is provided in pairs opposite side surfaces with identically shaped openings, a closed bottom and has an open top, which is closed by a cover and in the interiors of two mutually joined basic housings by corresponding openings conditions are in communication with each other and the openings in the side surfaces, if necessary, can be closed by blind cover or used as a connection opening.
- the object of the invention is to provide a valve device with an improved range of functions.
- the base body has a coupling geometry, which is designed for coupling the drive device in at least two different orientations, so that the valve body in dependence on the orientation of the drive means relative to the base body in at least one closed position in sealing engagement with the valve seat at least one the fluid channels is.
- the valve device can be adapted to different requirements with regard to the influencing of fluid flows through the at least two fluid channels.
- the drive means can be used for a predetermined flow direction for the fluid through the body optionally for closing a fluid passage through which the fluid flows into the valve recess, or be used for closing a fluid passage through which the fluid flows out of the valve recess.
- the actuating movement of the actuator is provided on the valve body exclusively for a control of a single fluid channel and the valve seat provided thereon, so that in this case a movement of the valve body between an open position, in which a fluid flow through the respective fluid channel is possible, and a closed position, in which the sealing contact with the valve seat of the fluid channel is ensured, can be provided.
- at least two of the fluid channels may cooperate with the valve body and the actuator such that an alternate blocking or release of the respective fluid channels is made possible.
- valve body can be brought into three different positions with the aid of the actuator, namely a first closed position relative to the first fluid channel, a second closed position relative to the second fluid channel opposite the first fluid channel, and a neutral position in which one is provided fluidically communicating connection between the two fluid channels and optionally provided further fluid channels.
- At least one of the fluid channels can also be closed with a sealing plug.
- This is of particular interest in the case of more than two fluid channels in the base body and a coupling of a plurality of valve devices to a valve system, since by this measure in combination with a corresponding orientation of the respective drive means relative to the respective basic bodies a specifiable switching behavior for the valve system and a resulting flow behavior for a working fluid, in particular a liquid or compressed air or a process gas, can be effected.
- the base body is designed as a cuboid, in particular as a cube, and if the valve recess with the coupling geometry is arranged as a receiving shaft on an upper side of the base body and if the connection recesses on outer surfaces of the base body adjoin the upper side of the base body, are formed.
- the main body is designed as a cuboid, in particular as a cube, and if the valve recess with the coupling geometry is arranged as a receiving shaft on an upper side of the base body and if the connection recesses on outer surfaces of the base body adjoin the upper side of the base body, are formed.
- the main body is designed as a cuboid, in particular as a cube, and if the valve recess with the coupling geometry is arranged as a receiving shaft on an upper side of the base body and if the connection recesses on outer surfaces of the base body adjoin the upper side of the base body, are formed.
- the main body is designed as a cuboid,
- valve recess Due to the design of the valve recess as a receiving shaft at the top of the body advantageous access to the Ventilaus originallyung and the valve body received therein is possible. As a result, a change in the orientation of the drive device relative to the base body is simplified because only the drive means must be removed from the body for this change in orientation and is connected to a new functional position with the coupling geometry of the body. This can be done without the need for a costly disassembly of the body or a removal of the valve device from a valve system with multiple valve devices is required. Rather, it is sufficient to the mechanical connections between the drive device and the body to solve and remove the drive device, in particular in a vertical upward direction, from the base body and thereby remove the valve body from the valve recess of the body.
- connection recesses on the lateral outer surfaces of the body allows creation of a valve system comprising a plurality of valve devices, in which all drive devices remain easily accessible, since they are either vertically upward or vertically downward from that in an exemplary horizontally oriented Level extended valve system can be disassembled and possibly mounted in a new orientation relative to the respective basic body.
- the fluid channels in the main body are arranged in pairs opposite one another and if each of the fluid channels has a valve seat on an end region facing the valve recess.
- the base body comprises at least four fluid channels, which pass through the main body in a cross shape and each of which, in cooperation with the valve body, allows blocking of a fluid flow. This ensures a particularly universal usability of the valve device, in particular in a valve system formed from a plurality of valve devices. Unnecessary fluid channels can optionally be closed by suitable plugs.
- the valve body comprises a dimensionally stable actuating element which is coupled to the actuator at a first end region and which is provided at a second end region with at least one sealing means made of a rubber-elastic region.
- the object of the dimensionally stable actuating element is to provide an actuator movement, preferably provided outside the main body, in the valve recess of the actuator
- the actuating element is designed such that it follows without elastic deformation, which could affect the function of the valve device, the actuating movement provided by the actuator.
- the dimensionally stable actuating element which may be formed in particular plate-shaped, assigned at a second end portion a sealing means which is made of a rubber-elastic material and which ensures the desired sealing effect against the respective valve seat. It is preferably provided that the dimensionally stable actuating element is completely enclosed by the same rubber-elastic material, in particular in one piece, which also forms the sealing means at the second end region.
- the actuating element has at least one bearing recess arranged between the first and the second end region, which is designed for a positive engagement of a bearing plate oriented transversely to the actuating element in order to form a pivot bearing with the actuating element.
- the actuating element forms, in interaction with a bearing plate, a pivot bearing, wherein the bearing plate passes through the at least one bearing recess formed on the actuating element.
- a knife-edge bearing is formed by the interaction of actuating element and bearing plate, wherein at least one edge of the bearing recess during the
- Pivoting movement performs a rolling movement on the bearing plate.
- the actuator is designed to initiate a pivoting movement on the valve body and / or that a pivot axis of the pivot bearing extends along a longest edge of the bearing recess or along a connecting line between a plurality of bearing recesses.
- a pivot axis of the pivot bearing extends along a longest edge of the bearing recess or along a connecting line between a plurality of bearing recesses.
- the actuator is designed as a linear divider, which engages positively and with play in a recess of the first end portion of the actuating element and the desired implementation of the linear motion in due to the engagement with play allows the pivoting movement of the actuating element.
- the actuator can be designed in particular as a fluidic actuator or electrical actuator, for example as a spindle drive with an electric motor and a threaded spindle or as a magnetic drive.
- the pivot axis of the pivot bearing is determined in one embodiment of the pivot bearing as a cutting edge bearing by that edge of the bearing recess, which passes through the bearing recess. This is preferably the longest edge of the bearing recess.
- the pivot axis extends along a connecting line between a plurality of bearing recesses, wherein it is also assumed here that the actuating element forms a knife-edge bearing with the bearing plate.
- the bearing plate is designed to be received in the coupling geometry of the base body between the base body and the drive device.
- a determination of the bearing plate on the body due to the determination of the drive means on the body further measures to ensure the bearing function are not required in this case.
- the sealing means starting from the second end region of the actuating element, is extended as far as a surface of the bearing plate facing the sealing means, in particular covering the surface of the bearing plate facing the sealing means.
- the sealing means When attaching a sealant formed in this way to the base body, it is assumed that the sealing means abuts sealingly against a peripheral edge of the valve recess in the region of the coupling geometry and is pressed against this edge by the bearing plate and the drive device. Thus, the sealing means seals together with the base body, the valve recess with the exception of the fluid channels from the environment.
- the actuating element is cuboid-shaped and the sealing element is formed on the second end portion of the actuating element as a circular cylindrical portion with a cylinder axis aligned transversely to a largest surface of the actuating element.
- the valve seats of the fluid channels are arranged in planes oriented parallel to one another or perpendicular to each other and each have an at least substantially circular-cylindrical cross-section, so that the sealing element has a geometry corresponding to this cross-section in the form of the circular cylinder section.
- the pivot axis for the pivotal movement of the valve body lies in a plane which is determined by the largest surface of the actuating element.
- the pivot axis is transversely and spaced aligned with center axes of the fluid channels. Accordingly, for an advantageous switching function of the valve body with respect to at least one valve seat advantageously provided that the circular cylindrical portion has a cylinder axis which is aligned transversely to the largest surface of the actuating element. It is particularly advantageous if the sealing element has an obliquely aligned with the cylinder axis of the circular cylinder portion, in particular flat running, sealing surface.
- At least one of the fluid channels is formed in a channel sleeve which is detachable in the
- Base body is received and this interspersed and at one of the valve recess end portion facing the valve seat and / or on one of the valve recess end portion comprises a coupling portion for a fluid-tight coupling with an oppositely attachable base body or an oppositely attachable duct sleeve.
- the fluid channels as channel sleeves, which preferably have a circular cylindrical cross-section and are in particular rotationally symmetrical, a production of the base body and the channel sleeves is simplified.
- the precise valve seat to be produced is formed on an outer geometry of the channel sleeve and it is not necessary to produce the valve seat on an internal geometry in the valve recess.
- the channel sleeve has a coupling section, which for a fluid-tight contact on a coupling element. section of an opposite channel sleeve or a base body is provided.
- the drive device prefferably comprises a cylinder housing with a recess and a piston which is received in a linearly displaceable manner in the recess, wherein the piston forms at least one working space with the recess, which is designed for pressurization with a working fluid.
- the recess and the piston sealingly received therein are transverse to
- the piston is accommodated on a piston rod which is movably coupled to the valve body and which is guided in at least one guide recess formed in the cylinder housing.
- the cylinder housing is formed of mirror-symmetrical housing parts and that the piston rod is guided linearly movable on both sides in the housing parts.
- valve device an exploded view of the valve device according to the figure 1, in which the valve recess in the main body, provided for receiving in the Ventilaus strictlyung valve body, provided for supporting the valve body bearing plate and a plurality of channel sleeves for forming the fluid channels he is recognizable, a front view of the valve device according to the figure 1, a schematic sectional view of the base body with channel sleeves and blind plugs received therein in a first configuration,
- FIG. 5 is a schematic sectional view of the base body and the channel sleeves and blind plugs received therein in a second configuration
- FIG. 6 shows a schematic representation of the main body and the valve sleeves and blind stoppers accommodated therein in a third configuration
- FIG. Figure 7 is a schematic sectional view of the base body and received therein channel sleeves in a fourth configuration
- Figure 8 is a sectional view of a valve means with a detailed representation of the drive means, the valve body and the channel sleeves.
- the valve device 1 illustrated diagrammatically in FIGS. 1 and 2 comprises an exemplarily cubically shaped main body 2 with an upper side 3 and outer surfaces 4, 5, 6 and 7 aligned at right angles to the upper side 3 and adjacent to the upper side 3 in Figures 1 and 2 not visible underside 8 is provided adjacent to the outer surfaces 4 to 7.
- a drive device 9 is placed, which has a substantially cubic outer geometry and which is shown in detail in particular in Figure 8 and will be described in more detail below.
- each of the outer surfaces 4 to 7 each have a fluid channel 10, 11, 12, 13 opens at a connection recess 16, 17, 18, 19, wherein each of the fluid channels 10 to 13 for an optional supply or discharge of a Working fluid, in particular a liquid or a gas, preferably compressed air, is provided.
- a Working fluid in particular a liquid or a gas, preferably compressed air
- the fluid channels 10 and 12 and 11 and 13 are each arranged in pairs opposite one another.
- central axes of the fluid channels 10 to 13 are arranged, for example, in a common plane, which is aligned parallel to the upper side 3 and the lower side 8.
- the fluid channels 10 to 13 are each formed as recesses in channel sleeves 20, 21, 22, 23, for example.
- the Kanalhül sen 20 to 23 are at least substantially rotationally symmetrical risch to channel axes 26, 27 and are provided purely by way of example each with an external thread 28, the screwed into a corresponding internal thread 29 made light, in channel recesses 30, 31, 32, 33rd the main body 2 is provided.
- the channel sleeves 20 to 23 are provided at a first end region with a valve seat 34 which is exemplarily designed as an end face of a conical section with a cone axis extending along the channel axis 26 and 27, the conical section passing through the respective fluid channel 10 to 13 becomes.
- the valve seat 34 is formed as a ring-shaped contact surface 35, which is arranged in each case in a plane transverse to the channel axis 26 and 27 aligned, not shown.
- connection geometry 36 On one of the valve seat 34 opposite end portion of the channel sleeves 20 to 24 each provided by way of example as a section of a conical sleeve connection geometry 36 is provided, which is also penetrated by the respective fluid channel 10 to 13
- connection geometry 36 starting from an end-side annular surface 37 along the channel axis 26 and 27 recessed annular collar 38, which is provided for receiving a sealing element, for example, an O-ring 39 shown in the figure 8 and which bounds the respective connection recess 16, 17, 18 or 19.
- a shaft-like valve recess 40 is provided in the main body 2, which has a square cross-section in purely exemplary manner in a cross-sectional plane parallel to the upper side 3.
- the valve recess extends from the upper side 3 to just before the underside 8, as can be seen in particular from FIG. 8, and serves to receive the valve body 41 shown in greater detail in FIGS. 2 and 8.
- Adjacent to the upper side 3 is the Valve recess 40 bounded by a coupling recess 42, which comprises by way of example a first frame-shaped shoulder 43 which is offset from the top of the base body 3 and further comprises a second frame-shaped shoulder 44 which is offset from the first frame-shaped shoulder 43.
- Both paragraphs 43, 44 are each aligned parallel to the top 3 and have in an unillustrated, parallel to the top 3 aligned cross-sectional plane by way of example a square cross-section.
- the shoulder 44 is designed to receive a partial region of the valve body 41, while the shoulder 43 is designed to receive a first section 45 and a second section 46 of a bearing plate 47.
- the channel sleeves 20 to 23 are matched to the base body 2 and the valve recess 40, which the respective valve seats 34 by a predetermined amount along the channel axes 26, 27 via inner walls 48, 49, 50, 51 of the valve outlet. protruding recess 40 in this, so that a sealing engagement of the valve body 41 is made possible at the respective valve seats 43.
- the valve body 40 comprises an exemplary plate-shaped, dimensionally stable actuating element 52, the largest surface 53 is aligned transversely to the upper side 3 of the base body 2 in a neutral position shown in Figures 2 and 8 for the valve body 41.
- the actuating element 52 is designed in such a way that it extends in an assembly position, as shown in FIG.
- the actuating element 52 has, for example, a total of four recesses 56, 57, 58 and 59, of which the recesses 56, 57 and 58 are formed as Lageraus- recesses, which are designed for a positive, playful receiving the sections 55, 46 of the bearing plate 47 ,
- the recess 59 is provided as a coupling recess for engagement of an actuator 60, as shown in Figure 8 and will be described in more detail below.
- the recesses 57, 58 and 59 are each formed as notches, ie recesses open on the edge of the actuation element 52.
- the recess 56 is formed as an example in the form of a punched as a closed contour. It is further provided that an edge 61 of the recess 56, which represents the longest edge, on a common axis with not designated Edges of the recesses 57 and 58 is located and a pivot axis 62 for pivotal movement of the valve body 41 relative to the bearing plate 47 and the base body 2 is determined.
- the sealant 63 as can be seen in particular from the illustration of Figure 2, along the channel axis 26 is circular cylindrical and has each obliquely to the channel axis 26, which in the installed state of the valve body 41 in the valve recess 40 and the cylinder axis for the circular cylindrical portion of the Sealant 63 forms, aligned sealing surfaces 64, 65.
- the opposing sealing surfaces 64 and 65 take an acute angle 66 to each other, which is adapted to the design of the valve body 41 and the arrangement of the bearing plate 47, that during the pivotal movement of the valve body 41 about the pivot axis 62, starting from that shown in Figure 8 Neutral position a surface contact of the respective sealing surface 64 and 65 on the respective opposite valve seat 34 of the associated channel sleeve 20 to 23 guaranteed.
- the sealing surfaces are each bounded by peripheral sealing lips, which are designed so flexible that they each rest against the valve seat, which is opposite that valve seat on which the sealing means is pressed sealingly. The task of these sealing lips is in particular in the stabilization of the position of the valve body relative to the valve seats.
- the sealing means 63 extends from the sealing surfaces 64, 64 to a surface 63 of the bearing plate 47 facing the sealing means 63 and covers this surface 67 at least almost completely.
- this region 74 of the sealing means 63 is plate-shaped and is adapted to the frame-shaped shoulder 44 such that it is at least almost completely filled by the sealing means 63.
- compression force is a sealing contact of the sealing means 63 at the peripheral sealing edge and thus by the plate-shaped portions 74 allows a seal of the valve recess 40 from the environment.
- the two sections 45, 46 of the bearing plate 47 are adapted to one another in such a way that they can receive the actuating element 52 in a form-fitting manner, in that they respectively pass through the recesses 56, 57 and 58 in the actuating element 52.
- the two sections 45, 46 thus ensure a positive engagement coupling with play for the actuating element 52 with one degree of freedom of movement, namely, the pivoting movement about the pivot axis 62.
- the first portion 45 of the bearing plate 47 is provided with a, adapted to the frame-shaped shoulder 43, in particular square, outer geometry.
- each recesses 69 are provided, which serve for the release of provided in the base body 2 threaded holes 70.
- the first portion 45 is provided with two notches 71, 71, which are each made rectangular, so that the first portion 44 has a centrally disposed web 73, which is provided for receiving in the recess 56 of the actuating element 52.
- This web 73 does not extend all the way to an outer edge of the first section 45 adjacent to the second section, and thus allows, like the two notches 71, 71, an opposite mounting of the U-shaped second section 46 of the bearing plate 47, without thereby causing the square envelope for the bearing plate 47 is impaired.
- the drive device 9 comprises an actuator 60, embodied by way of example as a fluidic linear drive, which is accommodated in a two-part cylinder housing 80 which comprises two identically designed housing parts 82 which are arranged in mirror image relative to a parting plane 81.
- an example is provided in that each of the housing parts comprises a recess 83 extending from the parting plane 81 and extending up to an inner wall 84.
- the recess 83 is also circular and is designed rotationally symmetrical to the ring axis 86.
- the actuator 60 comprises a sealingly abutting a circular cylindrical inner wall 88 of the recess 83 abutting piston 89 which is fixed to a longitudinal axis of the ring axis 86 extending piston rod 90 extending into both recesses 83 of the housing parts 82nd extends.
- the piston rod 90 is guided with a first end portion 91 through the piston 89 and is received in a linear motion with a second end portion 92 in a sliding bearing 93, which in turn is fixed in the ring portion 85.
- the exemplarily rotationally symmetrical piston rod 90 has between the two end regions 91, 92 a first annular collar 94 and a second annular collar 95 which bound a central piston rod section 96, which is responsible for a form-fitting, clearance-loaded receptacle in the recess 59 in the actuating element 52, also referred to as coupling recess is provided.
- the piston 89 is located on an unspecified outer edge of the first annular collar 94 in a form-fitting manner, while at an opposite, not designated outer edge of the second annular collar 95, a spring plate 99 in a form-fitting manner, which is provided for supporting a return spring 97, the exemp - larisch is formed as a prestressed coil spring and is supported with a second end portion on the inner wall 84 of the housing part 82.
- the actuator 60 is designed as a single-acting pneumatic cylinder, wherein pressurization of a size variable limited by the recess 83 in the housing part 82 and the piston 89 working space 98 leads to a displacement of the piston 89 and the piston rod 90 under compression of the return spring 97 along the ring axis 86 , As a result of this displacement, a movement coupling of one of the two annular collars 94, 95 onto the actuation element 52, which is thereby pivoted about its pivot axis 62 shown in FIG. 2, thereby sealingly abutting one of the sealing surfaces 64, 65 shown in more detail in FIG each oppositely arranged valve seat 34 allows.
- the channel sleeves 20 to 23 each adjacent to the valve seat 34 have an annular groove 24 which is provided for receiving a sealing element, in particular an O-ring 25 shown in Figure 8, with a sealing receiving the channel sleeves 20 to 23 can be ensured in the channel recesses 30 to 33 of the base body 2.
- a connecting element 100 which is, for example, a two-part ring with the profiling shown in section in FIG. 8 and which has fastening means, not shown, for fixing the two ring halves, an adjacent channel sleeve 20 to 23 is provided.
- FIGS. 4 to 7 show different connection configurations for the valve device 1 shown in FIGS. 1, 2, 3 and 8, wherein a variable fluid guide for the respective valve device can be ensured by selecting channel sleeves 20 to 23 and end plugs 101 ,
Abstract
Description
Claims
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE112015006829.5T DE112015006829A5 (de) | 2015-10-15 | 2015-10-15 | Ventileinrichtung |
PCT/EP2015/073914 WO2017063707A1 (de) | 2015-10-15 | 2015-10-15 | Ventileinrichtung |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/EP2015/073914 WO2017063707A1 (de) | 2015-10-15 | 2015-10-15 | Ventileinrichtung |
Publications (1)
Publication Number | Publication Date |
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WO2017063707A1 true WO2017063707A1 (de) | 2017-04-20 |
Family
ID=54356317
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/EP2015/073914 WO2017063707A1 (de) | 2015-10-15 | 2015-10-15 | Ventileinrichtung |
Country Status (2)
Country | Link |
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DE (1) | DE112015006829A5 (de) |
WO (1) | WO2017063707A1 (de) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2019025734A1 (fr) * | 2017-08-03 | 2019-02-07 | Alcrys Fluid-Control & Services | Module pour un kit de distribution et de régulation d'un gaz sous pression, kit et système de distribution et de régulation associés |
CN111316026A (zh) * | 2017-10-31 | 2020-06-19 | 株式会社富士金 | 阀装置 |
DE102019104490A1 (de) * | 2019-02-21 | 2020-08-27 | Gemü Gebr. Müller Apparatebau Gmbh & Co. Kommanditgesellschaft | Modulares Ventilkörpersystem |
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EP0235451A1 (de) * | 1985-11-29 | 1987-09-09 | Fujikura Rubber Ltd. | Richtungsabhängiges Steuerventil |
AU580545B3 (en) * | 1988-10-31 | 1989-01-30 | Nicholas Ivanoff | A rain water diverter valve |
DE9402093U1 (de) * | 1994-02-08 | 1994-03-31 | Buerkert Werke Gmbh & Co | Modulares Ventil- und Verteilersystem für strömende Medien |
US5711346A (en) * | 1995-05-03 | 1998-01-27 | Burkert Werke Gmbh & Co. | Fluid control element |
EP1593893A1 (de) * | 2004-05-06 | 2005-11-09 | Tyco Flow Control Kabushiki Kaisha | Sicherheitsventil |
DE202006006825U1 (de) * | 2006-04-27 | 2007-08-30 | Bürkert Werke GmbH & Co. KG | Ventil mit einem elektromagnetischen Antrieb |
DE202013003049U1 (de) * | 2013-04-03 | 2013-05-06 | Bürkert Werke GmbH | Magnetventil, Batterie aus Magnetventilen sowie Werkzeug |
-
2015
- 2015-10-15 DE DE112015006829.5T patent/DE112015006829A5/de not_active Withdrawn
- 2015-10-15 WO PCT/EP2015/073914 patent/WO2017063707A1/de active Application Filing
Patent Citations (8)
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EP0235451A1 (de) * | 1985-11-29 | 1987-09-09 | Fujikura Rubber Ltd. | Richtungsabhängiges Steuerventil |
AU580545B3 (en) * | 1988-10-31 | 1989-01-30 | Nicholas Ivanoff | A rain water diverter valve |
DE9402093U1 (de) * | 1994-02-08 | 1994-03-31 | Buerkert Werke Gmbh & Co | Modulares Ventil- und Verteilersystem für strömende Medien |
EP1069356A2 (de) | 1994-02-08 | 2001-01-17 | Bürkert Werke GmbH & Co. | Modulares Ventil- und Verteilersystem für strömende Medien |
US5711346A (en) * | 1995-05-03 | 1998-01-27 | Burkert Werke Gmbh & Co. | Fluid control element |
EP1593893A1 (de) * | 2004-05-06 | 2005-11-09 | Tyco Flow Control Kabushiki Kaisha | Sicherheitsventil |
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KR102547650B1 (ko) | 2017-08-03 | 2023-06-26 | 알크리스 플루이드-컨트롤 & 써비씨즈 | 가압 기체를 분배 및 조절하기 위한 키트용 모듈, 연관된 분배 및 조절 키트 및 시스템 |
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DE102019104490A1 (de) * | 2019-02-21 | 2020-08-27 | Gemü Gebr. Müller Apparatebau Gmbh & Co. Kommanditgesellschaft | Modulares Ventilkörpersystem |
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