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US2810398A - Drain and vacuum breaker valve - Google Patents

Drain and vacuum breaker valve
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Publication number
US2810398A
US2810398AUS44240754AUS2810398AUS 2810398 AUS2810398 AUS 2810398AUS 44240754 AUS44240754 AUS 44240754AUS 2810398 AUS2810398 AUS 2810398A
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Prior art keywords
valve
drain
tank
water
vacuum breaker
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Gilbert F Carlson
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ITT Bell and Gossett Inc
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Bell and Gossett Co
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Priority to US44240754priorityCriticalpatent/US2810398A/en
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Oct. 22, 1957 G. F. CARLSON 2,810,398
DRAIN AND VACUUM BREAKER VALVE Filed July 9, 1954 2 Sheets-Sheet 1 I /7D v v 19 25 3.2 X i fiz /0 iniz Oct. 22, 1957 Filed July 9, 1954 2 Sheets-Sheet 2 d 8 atentO 2,810,398 DRAIN AND VACUUM BREAKER VALVE Gilbert F. Carlson,' Skoki e, lll assignoi' to Bell & Gossett Company, Morton Grove, lll.,'a corporation'of Illinois Application July 9, 1954, Serial No. 442,407 1 Claim. 01. 137- 588) My invention relates to a combination: drain and vacuum breaker valve for facilitating the drainage of liquid from a tank by the simultaneous and free admission of air thereto. 7
By way of example and not of limitation, the invention will be described in connection with a compression or expansion tank forming part of a closed hot water heating system. Such a tank is employed to absorb or cushion expansion surges of the water in the system without loss of water below a predetermined system pressure and ordinarily functions with the tank partially filled with water and above which is collected a mass of air trapped when the system is first filled and including that liberated from the heated water. The air mass provides the cushion factor and when, as occasionally happens, the tank becomes completely or almost completely filled with water, the cushion is lost and the tank must be drained preparatory to refilling with water and retrapping of a new air mass.
It is desirable to accomplish this drainage with a rapidity that is not possible with the ordinary drain valve which a compression tank carries since the outrushing water and the inflowing air which is endeavoring to break at least the partial vacuum in the tank pass through the same drain opening. Drainage is therefore slow and, for a thirty gallon tank, may require as much as thirty minutes or more.
It is therefore one object of the invention to provide a combination unit which includes separate passages for the drainage flow of water and the vacuum breaking air flow.
A further object is the provision of a unit as indicated above in which the required operating characteristics are attained by a modification of the standard type of drain valve customarily attached to a compression tank.
These and further objects of the invention will be set forth in the following specification, reference being had to the accompanying drawings, and the novel means by which said objects are effectuated will be definitely pointed out in the claims.
In the drawings:
Fig. 1 is a schematic view of a typical hot water heat- .ing system, less the radiating elements, which is illustrative of the operating environment with which my improved valve is used.
Figs. 2 and 3 are enlarged, sectional elevations showing variant forms of the valve.
Referring to Fig. 1, thenumeral 10 designates the usual hot water boiler which connects through supply andreturn pipes 11 and 12, respectively, with the customary radiating or heating elements (not shown). Thepipe 12 may include apump 13 for forcibly circulating the Water through the system under well known conditions of con trol. A compression tank 14 is disposed above theboiler 10 and connects therewith through apipe 15 which includes a normallyopen valve 16 and attached to a convenient part of the lowermost portion of the boiler is my 2,810,393 Patented Oct. 22, 1957 ICC roved drain and vacuum .breaker valve 17 whose delivery branch may or may not connect with ahose 18.
Referring to Fig. 2, thevalve 17 includes acasing 19 having anannular inlet end 20 threaded in afitting 21 in the. lower part of the tank 14 and a lateral drainbranch Within'the'casing 19,,avalve seat 23 is provided which is normally engaged by a'seal ring 24 carried by the u er end of avalve stem 25 to deny communication ween theinlet end 20 anddrain branch 22. The v'alve I I 25 is threaded inthe casing'19 below the connecnon of thebranch 22 thereto and is reduced and extended through" agland nut 26 externally threaded on the lower end of the casing withappropriate packing 27 included space between thecasing 19,, stem 25'andnut 26. The lower or exposed end of thestem 25 has aflixed thereto in any convenient; manner, as byaset screw 28, aandwheel 29 whereby the stem may be' advanced or rented n' he asin ,S o far-las described, thevalve 17 is identical with the wen known and commercially available typ e of drain valve which is customarily employed for compression and other kinds of closed tanks that may require drainage at various times. To drain with this structure, thevalve stem 25 is rotated to separate the seal ring 24 from theseat 23 and so connect theinlet end 20 anddrain branch 22. Drainage time, however, is excessive because of the counterflow relation between the outgoing water and incoming air which replaces the discharged water.
The invention consists in modifying the standard drain valve as described above so that a separate passage is provided for the vacuum breaking air. To this end and referring to Fig. 2, apassage 30 is drilled axially and completely through thestem 25 including the seal ring 24 and press fitted as shown in this figure, or threaded as shown in Fig. 3, in the upper end of thepassage 30 is the lower end of atube 31 which extends upwardly and coaxially through and in spaced relation to the interior of theinlet end 20. Thetube 31 may extend well within the tank 14 and close to the top thereof, or it may be cut oif along the line AA or the line BB so that the upper end of thetube 31 lies just above the bottom of the tank 14 or just above theseat 23, respectively. Any intermediate position between the complete showing in Fig. 1 and line BB is also usable. This tube length variation also applies to the modifications shown in Figs. 3 and 4. The lower end of thepassage 30 is threaded to receive ascrew 32 which sealably closes the indicated passage end in the relation of parts shown in Fig. 2.
When it is desired to drain the tank, thevalve stem 25 is rotated by thehandwheel 29 to separate the seal ring 24 from theseat 23 to start the water flow and thereafter thescrew 32 is removed. The water then drains freely and rapidly through thedrain branch 22 since the relieving air may flow relatively unobstructedly through thepassage 30 andtube 31, the valve 16 (see Fig. 1) being previously closed.
In Fig. 3 is illustrated a modification designated generally by the numeral 33 which is identical with thevalve 17 except for the detail presently noted. Parts in Fig. 3 which are like those in Fig. 2 are designated by the same numerals. A handwheel 34 is secured by means of aset screw 35 to the exposed end of thevalve stem 25 and the adjacent end of thepassage 30 is normally closed by a hub part 36 of the handwheel.
To drain, thevalve 16 is closed and the handwheel 34 rotated to separate the seal ring 24 from theseat 23 and thereafter, the handwheel is removed to uncover the lower end of thepassage 30 so that air may flow into the tank 14.
Either of the above modifications provides in a compact form a highly adequate solution of the drainage and vacuum breaking problem in a closed tank. The manufacturing advantage is important in that the results are attained by a relatively simple change in the well standardized type of drain valve which does not affect in any substantial way the characteristic structure thereof. Therefore, for the major part of the valve, parts are easily available.
I claim:
A drain and vacuum breaker valve for use with a tank, said valve including a casing having an inlet adapted for connection to said tank, a drain branch, a circular valve seat coaxial with said inlet and located between said inlet and drain branch with said seat facing away from said inlet, and internal threads coaxial with the valve seat proximate the end of the casing opposite to said inlet, a hollow valve member having external threads mating with said internal threads and adapted to move the valve member axially upon rotation of said valve member toward said inlet and toward closing position, said valve member also having a valve head at its inner end adapted to register with said valve seat, thus forming a fluid tight seal therebetween when the valve is closed, said valve member also including a valve stem atits other end protruding beyond said casing, stem packing means coacting with said casing and valve stem to form a fluid tight seal, a handle secured to the protruding end of the valve stem and having an aperture in the central portion thereof, and vacuum breaking means including a cylindrical bore extending the full length of said valve member with a tube tightly mounted in said bore in hermetically sealed relationship thereto, said tube extending coax-ially through said valve head and beyond said casing for entry into said tank, and a removable plug at said protruding outer end of the valve stem adapted to seal the adjacent end of said tube and bore from the atmosphere.
References Cited in the file of this patent UNITED STATES PATENTS 553,389 Brower Jan. 21, 1896 849,724 Christ Apr. 9, 1907 1,054,146 Smirle Feb. 25, 1913 1,667,034 Hatton Apr. 24, 1928 2,046,474 Magenti July 7, 1936 2,264,671 Kocher Dec. 2, 1941 2,333,310 Greening Nov. 2, 1943
US442407541954-07-091954-07-09Drain and vacuum breaker valveExpired - LifetimeUS2810398A (en)

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US44240754US2810398A (en)1954-07-091954-07-09Drain and vacuum breaker valve

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3094143A (en)*1960-06-231963-06-18Beach T ArnoldCombination expansion tank valve
FR2517014A1 (en)*1981-11-231983-05-27Cummins Engine Co Inc VALVE ASSEMBLY FOR FLOW CONTROL OF ACCUMULATED LIQUID IN A CONTAINER
US4611627A (en)*1985-02-071986-09-16Donaldson Company, Inc.Self-venting drain valve
US4708171A (en)*1986-11-141987-11-24J. A. Baldwin Manufacturing Co.Drain valve
US4753266A (en)*1986-04-081988-06-28Cummins Engine Company, Inc.Valve assembly
EP0289188A3 (en)*1987-04-241989-10-25Parker Hannifin CorporationFluid filter drain assembly
US4893651A (en)*1989-01-061990-01-16Cummins Engine Company, Inc.Self-venting drain value assembly
US20070034580A1 (en)*2005-08-112007-02-15Stein Matthew LFluid filter arrangement including valve arrangement and methods
RU2307275C2 (en)*2005-05-202007-09-27Ильдар Зафирович ДенисламовSampler-valve for pipeline
US20080223461A1 (en)*2007-03-152008-09-18Gerwin Weston HOne-Piece Self-Venting Drain Valve
RU2589547C1 (en)*2015-01-122016-07-10Федеральное государственное бюджетное образовательное учреждение высшего образования "Тюменский индустриальный университет" (ТИУ)Valve for sampling from pipeline
US10794613B2 (en)2017-03-132020-10-06Kevin Michael Murphy, LlcOverflow protection and monitoring apparatus and methods of installing same

Citations (7)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US553389A (en)*1896-01-21Vessel-vent
US849724A (en)*1905-10-231907-04-09Rinehart ChristGas-valve.
US1054146A (en)*1911-11-151913-02-25Mathew Andrew SmirleSpigot.
US1667034A (en)*1927-02-091928-04-24Jr Hugh B HattonSealing valve for gas lines
US2046474A (en)*1934-11-021936-07-07Maggenti Alberto LouisVented fluid controlling valve
US2264671A (en)*1940-06-041941-12-02Theodore A KocherSpigot
US2333310A (en)*1940-05-131943-11-02Greening WalterFluid flow control valve

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US553389A (en)*1896-01-21Vessel-vent
US849724A (en)*1905-10-231907-04-09Rinehart ChristGas-valve.
US1054146A (en)*1911-11-151913-02-25Mathew Andrew SmirleSpigot.
US1667034A (en)*1927-02-091928-04-24Jr Hugh B HattonSealing valve for gas lines
US2046474A (en)*1934-11-021936-07-07Maggenti Alberto LouisVented fluid controlling valve
US2333310A (en)*1940-05-131943-11-02Greening WalterFluid flow control valve
US2264671A (en)*1940-06-041941-12-02Theodore A KocherSpigot

Cited By (14)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3094143A (en)*1960-06-231963-06-18Beach T ArnoldCombination expansion tank valve
FR2517014A1 (en)*1981-11-231983-05-27Cummins Engine Co Inc VALVE ASSEMBLY FOR FLOW CONTROL OF ACCUMULATED LIQUID IN A CONTAINER
US4440193A (en)*1981-11-231984-04-03Cummins Engine Company, Inc.Valve assembly
US4611627A (en)*1985-02-071986-09-16Donaldson Company, Inc.Self-venting drain valve
US4753266A (en)*1986-04-081988-06-28Cummins Engine Company, Inc.Valve assembly
US4708171A (en)*1986-11-141987-11-24J. A. Baldwin Manufacturing Co.Drain valve
EP0289188A3 (en)*1987-04-241989-10-25Parker Hannifin CorporationFluid filter drain assembly
US4893651A (en)*1989-01-061990-01-16Cummins Engine Company, Inc.Self-venting drain value assembly
WO1990007666A1 (en)*1989-01-061990-07-12Cummins Engine CompanySelf-venting drain valve assembly
RU2307275C2 (en)*2005-05-202007-09-27Ильдар Зафирович ДенисламовSampler-valve for pipeline
US20070034580A1 (en)*2005-08-112007-02-15Stein Matthew LFluid filter arrangement including valve arrangement and methods
US20080223461A1 (en)*2007-03-152008-09-18Gerwin Weston HOne-Piece Self-Venting Drain Valve
RU2589547C1 (en)*2015-01-122016-07-10Федеральное государственное бюджетное образовательное учреждение высшего образования "Тюменский индустриальный университет" (ТИУ)Valve for sampling from pipeline
US10794613B2 (en)2017-03-132020-10-06Kevin Michael Murphy, LlcOverflow protection and monitoring apparatus and methods of installing same

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