EP0129569A1 - Rohrtrenner - Google Patents

Rohrtrenner

Info

Publication number
EP0129569A1
EP0129569A1 EP84900048A EP84900048A EP0129569A1 EP 0129569 A1 EP0129569 A1 EP 0129569A1 EP 84900048 A EP84900048 A EP 84900048A EP 84900048 A EP84900048 A EP 84900048A EP 0129569 A1 EP0129569 A1 EP 0129569A1
Authority
EP
European Patent Office
Prior art keywords
valve
pressure
pipe separator
separator according
input
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.)
Withdrawn
Application number
EP84900048A
Other languages
German (de)
English (en)
French (fr)
Inventor
Hans Arens
Hans Kern
Richard Haslberger
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.)
Gruenbeck Wasseraufbereitung GmbH
Original Assignee
Gruenbeck Wasseraufbereitung GmbH
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 Gruenbeck Wasseraufbereitung GmbH filed Critical Gruenbeck Wasseraufbereitung GmbH
Publication of EP0129569A1 publication Critical patent/EP0129569A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/10Devices for preventing contamination of drinking-water pipes, e.g. means for aerating self-closing flushing valves
    • E03C1/104Devices for preventing contamination of drinking-water pipes, e.g. means for aerating self-closing flushing valves using a single check valve
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/10Devices for preventing contamination of drinking-water pipes, e.g. means for aerating self-closing flushing valves
    • E03C1/108Devices for preventing contamination of drinking-water pipes, e.g. means for aerating self-closing flushing valves having an aerating valve
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2496Self-proportioning or correlating systems
    • Y10T137/2544Supply and exhaust type
    • Y10T137/2557Waste responsive to flow stoppage
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/3149Back flow prevention by vacuum breaking [e.g., anti-siphon devices]
    • Y10T137/3185Air vent in liquid flow line
    • Y10T137/3294Valved
    • Y10T137/3331With co-acting valve in liquid flow path
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/7722Line condition change responsive valves
    • Y10T137/7758Pilot or servo controlled
    • Y10T137/7759Responsive to change in rate of fluid flow

Definitions

  • the invention relates to a pipe separator according to the preamble of claim 1.
  • Such a pipe separator is named from DE-OS 27 47 941.
  • a differential pressure measuring unit is used, one side of which is constantly subjected to the pressure on the inlet side and the other side of which is constantly subjected to the pressure of the pipe separator on the outlet side.
  • FIG. 1 shows a section through a pipe separator with a locking device, control valve and valve, each in the first position
  • Figure 2 is an enlarged sectional view of the valve in the second position.
  • Fig. 3 is a sectional view of the valve in the first position.
  • the pipe separator 1 has one with a
  • a slide 4 is provided between input 2 and output 3 and has a connecting channel 5 which can be connected to input 2 and output 3.
  • the slide and the connecting channel are designed such that input 2 and output 3 are connected to one another in the first position shown in FIG. 1 and in the second position of the slide 4 in which it is in a direction transverse to the connecting line between input 2 and output 3 is shifted, are separated from each other.
  • Suitable seals in the form of interacting flat slide seals 6, 7 with corresponding sealing rings are provided for sealing between inlet 2 and slide 4 or slide 4 and outlet 3.
  • the flat slide seals 6, 7 are designed as ceramic plates or ceramic disks.
  • the slide 4 extends with its one end 8 into a cylinder 9, in which it can slide back and forth as a piston 10 depending on the pressure prevailing in the cylinder.
  • the interior of the cylinder 9 can be connected to the input 2 via a control valve 11 and a connecting line 12.
  • the control valve 11 has a valve chamber 13 with a first section 14 and a second section 15.
  • the first section is connected on the input side to the connecting line 12 forming the first input of the control valve 11 and on the output side to the second section 15.
  • the second section is designed as a bore, which opens at its end facing away from the first section into a bore 16 of the slide 4, which in turn leads via an outlet bore 17 into the open or into a space 18 which is at ambient pressure or at least with one Pressure is applied, which is lower than the pressure prevailing at the inlet 2 when the flow medium is present.
  • the second section 15 is also connected via cross bores 19, 20 to the interior 21 of the cylinder 9.
  • the second section 15 has valve seats 22, 23 both at its end facing the first section and at its end facing the bore 16.
  • a valve shaft 24 is provided which extends through the second section 15 and has a valve body 25 at its end facing away from the first section and a second valve body 26 at a distance therefrom which is greater than the distance between the two valve seats 22, 23.
  • the surface 27 of the second valve body 26 facing the first section 14 is larger than that above surface 28 of the first valve body 25 which can be acted upon by the second section 15.
  • the wall of the first section 14 opposite the second section 15 is formed by a membrane 30 firmly clamped at its edge by a control valve housing 29.
  • the valve stem 24 is extended so far through the first section 14 that it is passed through the membrane 30 with an abutment plate 31 and is firmly connected to the membrane 30 itself.
  • the control valve housing forms a space 32 which is delimited by an abutment 33 on the side facing away from the diaphragm 30.
  • a compression spring 34 is arranged, which biases the diaphragm 30 and thus the valve bodies 25, 26 into the second position via the abutment plate 31.
  • the space 32 is connected to the environment via a bore 35 through the control valve housing.
  • the abutment plate 31 is fixedly connected via a connecting rod 36 to a second pressure measuring device in the form of a second membrane 38 firmly clamped at its edges and arranged coaxially to the membrane 30.
  • the side of the membrane 38 facing the membrane 30 is connected to the environment via a bore 39, while the side of the membrane 38 facing away from the membrane 30 is connected to the outlet side via a bore 40 forming the second input of the control valve 11 and a connecting line 41 adjoining it Pressure of the pipe separator 1 can be applied. This pressure, in the same direction as the force exerted by the spring 34, biases the control valve 11 in the direction of its two position.
  • a valve 42 for controlling the pressure in the connecting line 41 is arranged on the outlet side 3. This valve is shown in detail in FIGS. 2 and 3.
  • the valve 42 is used to first connect the connecting line 41 to the outlet 3 when the flow falls below a certain level from the inlet 2 to the outlet 3, so that the control valve 11 can be acted upon by the outlet-side pressure at its second inlet 40, and then to the outlet side Seal slider 4 out.
  • the valve 42 has a first shut-off valve 43 for shutting off the connection from the channel 5 to the outlet side and a second shut-off valve 44 connected to the first shut-off valve for opening and closing the connection of the connecting line 41 to the outlet side.
  • the first shut-off valve 43 has a valve body 45 in the form of a hollow cylinder closed on one end side, which carries an annular seal 46 on its outside and cooperates with a valve seat 47.
  • the valve seat 47 is arranged on the inlet side of the outlet 3 and is also designed as a hollow cylinder, the inside diameter of which is selected so that the valve body 45 can be freely moved into the valve seat 47 and can be sealed therein by means of the ring seal 46.
  • the valve body 45 has a radial bore 48.
  • a valve stem 49 is fastened to the valve body 45 and is displaceably mounted in a holder 51 in a guide bore 50 arranged in the flow direction.
  • the second shut-off valve is formed by the interaction of the valve stem 49 with a transverse bore 52 forming the end of the line 41 adjoining the valve 42.
  • the transverse bore 52 forms a connection between the guide bore 50 and the connecting line 41 and opens into the guide bore 50 in the vicinity of the end of the guide bore 50 facing away from the valve seat 47. At this end, the guide bore is open to the outlet side.
  • the length of the valve stem 49 is selected so that when the valve body 45 is fully moved into the valve seat 47, the valve stem 49 no longer covers the transverse bore 52 and thus the connection of the transverse bore 52 to the outlet side via the free end of the channel 50 manufactures.
  • the first end position of the valve 42 is defined by this position shown in FIG. 2.
  • the second end position shown in FIG. 3 is defined in that the valve body 45 is moved out of the valve seat 47 and the valve stem 49 closes the transverse bore 52.
  • the mutual sealing takes place by means of an annular seal 53 on the valve stem 49 and an annular seal 54 surrounding the guide bore 50 between the transverse bore 52 and the free end of the guide bore 50.
  • the two valves 43, 44 are designed relative to one another such that there is a positive overlap if the valve 43 with its sealing ring 46 is just engaged with the cylinder 47 before it emerges from it. In this position, the valve 44 is already closed in that the valve stem 49 lies against the seal 54 and thus closes the opening to the connecting line 41.
  • the valve 42 is arranged with its holder 51 in a flow channel 55 and has a baffle plate 56 between the valve body 45 and valve stem 49, the outside diameter of which is slightly smaller than the inside diameter of the channel 55, so that a gap 57 is formed between the baffle plate 56 and the inside wall of the channel is.
  • the channel 55 is widened from the point at which the baffle plate 56 is in the intermediate position of the valve 42 to the point at which the baffle plate 56 is in the second position of the valve 42, so that the gap 57 in the second position of the valve 42 is enlarged.
  • a flat seal 58 is arranged between the baffle plate 56 and the valve body 45, which in the first position of the valve 42 bears against the end face of the valve seat 47 and thus causes the first shut-off valve 43 to be completely shut off.
  • the baffle plate has an effective cross section which corresponds approximately to two to three times the effective cross section of the valve 43 in the closed first end position. It is thereby achieved that, after the seal 46 has emerged from the cylinder 47, a substantially lower pressure is sufficient to overcome the tension in the spring 52 ', and the pressure drop is thus substantially lower.
  • the slide 4 has on its lower end facing away from the piston 10 an abutment plate 59, on which a compression spring 61 engages on a plate 60 fixed to the housing.
  • the abutment plate 59 is laterally guided in a guide cylinder 62 fixed to the housing.
  • the bias of the compression spring 52 ' is selected so that the valve 43 is closed until the pressure of the medium on the inlet side 2 is more than a preselected pressure difference greater than the pressure on the outlet side 3.
  • the pressure difference is used as a safety pressure of 0.5 bar selected.
  • the membrane 38 is of such a size that the force from the spring 34 and the action of the medium of the membrane 30 by the medium in the space 13 is overcome by the application of the pressure applied via the line 41 as soon as the pressure difference of pressure on the inlet side 2 and Pressure on the outlet side 3 reaches or falls below the pressure difference mentioned, in particular the preselected safety pressure.
  • the valve 11 switches from the first position shown in FIG. 1 to the opposite end position, with the result that the blocking element 4 switches from the open position shown in FIG. 1 to the blocking position.
  • the pipe separator 1 is inserted into a liquid line, so that the inlet 2 is acted upon by the liquid medium. If, as is yet to be explained, the slide 4 is in the flow position shown in FIG. 1, the medium passes through the connecting channel 5 and flows through the valve 42 via the outlet 3 to the consumer. At the same time, the medium flows via the line 12 into the valve chamber 13 and exerts a force on the membrane 30 in the direction of the first position of the valve 11. This force is opposed by the force exerted by the spring 34 and the force exerted by the pressure at the second inlet 40 via the membrane 38.
  • the valve 11 If the pressure present at the connecting line 12 forming the first input of the control valve 11 exceeds the am second input 40 present pressure by a certain amount, which is predetermined by the surfaces of the membranes 30, 38 and the bias of the spring 34, then the valve 11 is moved into its first position shown in FIG. 1. In this position, the cylinder interior 21 is acted upon by the inlet-side pressure via the transverse bores 19, 20, the valve chamber 13 and the connecting line 12.
  • the preload of the spring 61 is selected so that in this valve position, when there is a pressure on the input side which corresponds to the pressure prevailing at the inlet 2 when the flow medium is at full pressure on the inlet side, the slide 4 in the position shown in FIG. 1 passage position shown.
  • the valve 11 is moved into the second position by the joint action of the spring 34 and the pressure at the second inlet 40, in which the first section 14 is separated from the second section 15 by the valve body 26 and the cylinder interior 21 is connected to the bore 16 by lifting the valve body 25 from the valve seat 23.
  • the pressure in the cylinder interior 21 decreases, so that the spring 61 moves the slide 4 into its second position, in which the channel 5 is displaced so far transversely to the inlet and outlet that the slide 4 moves the inlet from the outlet by means of the flat seals 6 , 7 separates.
  • control valve 11 and thus the slide 4 are always moved from the first position into the second position when the flow from the inlet to the outlet falls below a certain value. If the flow rate drops, the difference in pressure at inlet 2 also drops and the pressure at the outlet 3. At the same time, the force exerted on the valve 42 by the inflow also drops, so that the spring 52 'moves the valve body 45 towards the valve seat 47. During this movement, the connection of the second inlet 40 via the line 41 and the transverse bore 52 to the outlet 3 from the valve stem 49 is only released when the ring seal 46 abuts the valve seat 47. At this point, a flow is still possible, which is predetermined by the diameter of the bore 48.
  • Shut-off valve 43 is pressed by the spring 52 'to apply the flat seal 58 to the valve seat 47, the volume to be displaced thereby being able to escape through the bore 48 until the complete seal is achieved.
  • the control valve 11 is designed in the manner described.
  • the mode of operation can be represented as follows: In the first valve position shown in FIG. 1, the medium exerts pressure from the first inlet 2 of the control valve on the one hand against the diaphragm 30 against the force exerted by the spring 34 and the diaphragm 38 and on the other hand by acting on it the valve surface 28 in the direction of the force exerted by the spring 34 and the membrane 38.
  • the input-side medium in turn exerts a force by acting on the diaphragm 30 counter to the force of the spring 34 and the diaphragm 38 and, moreover, a force in the direction of the force of the spring 34 and the diaphragm 38 Acting on surface 27. Since the area 27 is larger than the area 28, the resulting force is smaller in the second position than in the first position. This means that to switch the valve again from the second position to that in FIG. 1 shown first position, a higher input-side pressure is required than for switching the valve 11 from the first position to the second position.
  • the resulting force increases after the control valve has been switched from the second position to the first position. So that means that the forces acting on the valve after switching further increase in the switching direction and keep the valve in the switched position. It is thereby achieved that the switching of the control valve 11 and thus of the slide 4 takes place faster and in a defined manner when there are pressure changes on the input side. Furthermore, it is achieved that even in a pressure limit area causing the switching of the control valve or the locking slide, a fluttering of the control valve or the slide and thus an ambiguous position of the slide is avoided.

Landscapes

  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Safety Valves (AREA)
  • Multiple-Way Valves (AREA)
EP84900048A 1982-12-21 1983-12-15 Rohrtrenner Withdrawn EP0129569A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE3247325A DE3247325C2 (de) 1982-12-21 1982-12-21 Rohrtrenner
DE3247325 1982-12-21

Publications (1)

Publication Number Publication Date
EP0129569A1 true EP0129569A1 (de) 1985-01-02

Family

ID=6181299

Family Applications (1)

Application Number Title Priority Date Filing Date
EP84900048A Withdrawn EP0129569A1 (de) 1982-12-21 1983-12-15 Rohrtrenner

Country Status (7)

Country Link
US (1) US4573491A (it)
EP (1) EP0129569A1 (it)
AT (1) AT395329B (it)
CH (1) CH664200A5 (it)
DE (1) DE3247325C2 (it)
IT (1) IT1170030B (it)
WO (1) WO1984002544A1 (it)

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3323324C3 (de) * 1983-06-29 1995-10-12 Schubert & Salzer Gmbh & Co In Verfahren und Vorrichtung zum Steuern eines Rohrtrenners in Abhängigkeit einer an einer Vergleichsstelle vorgegebenen Druckdifferenz
DE3509720A1 (de) * 1985-03-18 1986-09-25 Schubert & Salzer Maschinenfabrik Ag, 8070 Ingolstadt Rohrtrenner
DE3519176A1 (de) * 1985-05-29 1986-12-04 Juergen Baelz Controls Gesellschaft für Meß- und Regeltechnik mbH, 7102 Weinsberg Vorrichtung zum absperren und belueften einer rohrleitung
DE3520250A1 (de) * 1985-06-05 1986-12-11 Grünbeck Wasseraufbereitung GmbH, 8884 Höchstädt Rohrtrenner
DE3626825A1 (de) * 1986-08-08 1988-02-18 Gruenbeck Josef Wasseraufb Rohrtrennung mit einer sperreinrichtung und eine ueberwachungseinrichtung fuer die sperreinrichtung
DE3711581A1 (de) * 1987-04-06 1988-10-20 Baelz Juergen Controls Absperr- und belueftungseinrichtung, insbesondere rohrunterbrecher fuer trinkwasserleitungen
ATE53878T1 (de) * 1987-08-31 1990-06-15 Honeywell Braukmann Gmbh Trinkwasser-durchflussarmatur.
FR2651552B1 (fr) * 1989-09-01 1991-12-06 Cit Alcatel Vanne et dispositifs utilisant ladite vanne.
DE4101114C1 (it) * 1991-01-16 1992-06-04 Gruenbeck Wasseraufbereitung Gmbh, 8884 Hoechstaedt, De
DE4204386C2 (de) * 1992-02-14 1994-01-20 Honeywell Braukmann Gmbh Systemtrenner
JP3291161B2 (ja) * 1995-06-12 2002-06-10 株式会社フジキン 圧力式流量制御装置
JP3580645B2 (ja) * 1996-08-12 2004-10-27 忠弘 大見 圧力式流量制御装置
ITMO20080043A1 (it) * 2008-02-19 2009-08-20 P A S R L Valvola di by-pass e di regolazione pressione perfezionata.
CN109424773B (zh) * 2017-09-05 2020-06-12 尤尼罗库株式会社 调节器

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2491604A (en) * 1943-06-22 1949-12-20 Carlton Frank Back siphonage prevention, antibackflow, and vacuum breaking valve
US2588284A (en) * 1946-07-09 1952-03-04 Herbert C Otis Fluid pressure differential responsive cutoff valve
DE2747941C2 (de) * 1977-10-26 1985-02-14 Lang Apparatebau GmbH, 8227 Siegsdorf Vorrichtung zum Schutz von Trinkwasserleitungen gegen rückfließendes Brauchwasser
CH628383A5 (de) * 1977-10-26 1982-02-26 Waletzko Alfred Apparatebau Vorrichtung zum schutz von trinkwasserleitungen gegen rueckfliessendes brauchwasser.
DE2806310C2 (de) * 1978-02-15 1986-08-21 Lang Apparatebau GmbH, 8227 Siegsdorf Vorrichtung zum Schutz von Trinkwasserleitungen gegen rückfließendes Brauchwasser
DE2849825C2 (de) * 1978-11-17 1984-05-10 Lang Apparatebau GmbH, 8227 Siegsdorf Trinkwasser-Durchflußarmatur mit in eine Trinkwasserversorgungsleitung eingebautem Durchflußwächter

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO8402544A1 *

Also Published As

Publication number Publication date
ATA907483A (de) 1992-04-15
IT8324297A0 (it) 1983-12-21
WO1984002544A1 (fr) 1984-07-05
AT395329B (de) 1992-11-25
IT1170030B (it) 1987-06-03
DE3247325C2 (de) 1990-02-15
DE3247325A1 (de) 1984-07-05
CH664200A5 (de) 1988-02-15
US4573491A (en) 1986-03-04

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Legal Events

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PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

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Effective date: 19841123

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Inventor name: ARENS, HANS

Inventor name: HASLBERGER, RICHARD

Inventor name: KERN, HANS