US1015243A - Trap. - Google Patents

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Publication number
US1015243A
US1015243A US1909506684A US1015243A US 1015243 A US1015243 A US 1015243A US 1909506684 A US1909506684 A US 1909506684A US 1015243 A US1015243 A US 1015243A
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United States
Prior art keywords
main
trap
discharge
discharge port
auxiliary
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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 - Lifetime
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Calvin S Parker
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Individual
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Priority to US1909506684 priority Critical patent/US1015243A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K1/00Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
    • F16K1/30Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces specially adapted for pressure containers
    • F16K1/304Shut-off valves with additional means
    • F16K1/305Shut-off valves with additional means with valve member and actuator on the same side of the seat
    • 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
    • Y10T137/8593Systems
    • Y10T137/877With flow control means for branched passages
    • Y10T137/87829Biased valve
    • Y10T137/87837Spring bias
    • Y10T137/87853With threaded actuator

Definitions

  • the invention V relates ito a drainage trapI for use in connection with car heating appa- ⁇ ratus through which air and water of con-4 densation may be discharged from the ysys ⁇ 4 tem, and has for its primary obj ect the production of a device of this character capable of being readily and quickly thawed. out in the event of the freezing of the condensation, and this while the car is in motion, and.;
  • Figure l is a vertical central section through a trap embodying closing casing A, formed with a main steam chamber B therein, and preferably with ay plurality of lateral ports B C D and with a main discharge port D.
  • F is the usual gland
  • G the gland nut
  • H is a main operating valve controlling the discharge port D', provided with a stem J having a screw-threaded engagement with the bonnet and with a suitable operating member or handle K.
  • L designates a main discharge passage formed by a pipe or conduit M, screwed within the casing bottom in registration with the main discharge port D.
  • P designates a tubular casing or pipe section inclosing the discharge pipe M and spaced therefrom, forming a surrounding passage Q, which in connection with a port or passage R formed within the valve casing constitutes an auxiliary discharge pas-V l sage leading withinl the main chamber B Patented Jan. 16, 1912. f
  • S designates an auxiliary valve chamber adjoining the main chamber B.
  • T is the auxiliary valve adapted to engage ya seat U and acting to control the auxiliary ihoused within the extension W, the lower end of the spring abutting against a cross member Z uponV the valve stem'.
  • any one of the several ports B C 'or D may be employed as the steam inlet, according to the position of the trap in relation to the piping of the system, while the remaining ports may be closed by suitable plugs (not herein shown); or, :in the event that the trap is to be used in a dripless system, wherein preferably a continuous' radiator used,-one as an inlet and the other as an outlet,.-to permit the passageoi:l the steam through the trap, while the third may bei closed in the manner heretofore set forth.
  • the main operating valve H is normally seated, preventing the discharge of the water of condensation which is adapted to col-v lect within the system, and acting in con- .junction with the steam to :form a combination steam and hot water apparatus.
  • the main operating valve I-I is raisedl from its seat, allowing the discharge to be effected through the main discharge passage L'.
  • this passage is clogged'by the freezing of condensation, the steam passes automatically through the auxiliary discharge passage Q, the steam ⁇ pressure being suflicient to raise the valveT from its seat.
  • the discharge of live steam around the frozen sect-ion of the discharge conduit quickly thawsthe latter and relieves the main passage from the obstruction.
  • a drainage trap In a drainage trap, the combination with an inclosing casing, of a main steam chamber therein provided with inlet and outlet openings, a valve-controlled discharge port, and with adjoining niain and auxiliary discharge passages having communication With the steam chamber through the discharge port, and a spring-pressed valve controlling the auxiliary passage operable automatically by the discharge of steam through the discharge port.
  • a drainage trap In a drainage trap, the combination With an inclosing casing provided With an inlet and a main discharge port, a main discharge passage communicating With said port, and With auxiliary passage leading from the discharge port to one side of the main passage and extending in operative relation thereto, and a spring-pressed valve controlling the auxiliary passage.
  • a drainage trap In a drainage trap, the combination With an inclosing casing formed with a main steam chamber having normally open inlet and outlet ports, a normally closed discharge port, a. main discharge passage leading from said discharge port, and having an auxiliary discharge passage communicating With the main chamber through the discharge port and surrounding the main passage, anauxiliary valve chamber adjoining ,the main chamber, and a spring-pressed valve Within the auxiliary chamber controlling the auxiliary passage.
  • a trap In a trap, the combination with a casing provided with an inlet port, a main discharge port, and With an auxiliary discharge port at one side of and communicating With the casing through the main discharge port, of separate and independently operable valves respectively controlling the main and auxiliary discharge ports, one of said valves being adapted to be automatically operated by the heating iiuid.
  • a trap the combination with a casing provided with inlet and discharge ports, a main discharge passage leading from the discharge port, and with an auxiliary discharge passage surrounding the main discharge passage, a connection between the main and auxiliary discharge passages, and a valve controlling said connection automatically operated by the heating Huid.
  • a drainage trap In a drainage trap, the combination With an inclosing easing, of a main steam chamber therein provided with inlet and outlet openings, a valve controlled discharge port and with adjoining main and auxiliary discharge passages having communication With the steam chamber through the discharge port, and separate and independently operable valves respectively controlling the main and auxiliary discharge ports, one of said valves being adapted to be automatically operated by the heating fluid.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Temperature-Responsive Valves (AREA)

Description

G. S. PARKER.
TRAP.
APPLIOATION FILED JULY9,1909.
cys. PARKER.
l TRAP. VMILIUA'JJION 1jILED`JULy.9,.19oa.
' z SHEETS-#sum z..
f Patented Jan. 16,151'255 f v CALVIN s; rnraxnafor yLONDON, "ONTARIO, CANADA.
umaar.
Specification of Letters Patent.
Application filed July 9, 1909. Serial No. 506,684.
To all whom it may concern:
Beit known that I, CALVIN S. PARKER, a
subject of the King of Great Britain and Ireland, residing at London, in the Province of Ontario and Dominion of Canada, have invented certain new and useful Improve? ments in Traps, of which the following isa speciication, reference being had thereinto the accompanying drawings.
The invention Vrelates ito a drainage trapI for use in connection with car heating appa-` ratus through which air and water of con-4 densation may be discharged from the ysys`4 tem, and has for its primary obj ect the production of a device of this character capable of being readily and quickly thawed. out in the event of the freezing of the condensation, and this while the car is in motion, and.;
has for a further object a construction wherein the trapk may be controlled in its` entirety by a single Amanually operated valve, thus simplifying the operation and construction. l Y
Tith the objects enumerated in view, the
invention consists in the peculiar construc-` tion of the drainage trap, in thenovel arrangement and combination of its parts, and
in various details of construction as will be circuit u1s employed, two of the ports may be more fullyhereinafter set forth.
In the drawings, Figure l is a vertical central section through a trap embodying closing casing A, formed with a main steam chamber B therein, and preferably with ay plurality of lateral ports B C D and with a main discharge port D.
E represents a bonnet screwed within the.,
casing top.
F is the usual gland, and G the gland nut.
H is a main operating valve controlling the discharge port D', provided with a stem J having a screw-threaded engagement with the bonnet and with a suitable operating member or handle K. Y s
L designates a main discharge passage formed by a pipe or conduit M, screwed within the casing bottom in registration with the main discharge port D.
P designates a tubular casing or pipe section inclosing the discharge pipe M and spaced therefrom, forming a surrounding passage Q, which in connection with a port or passage R formed within the valve casing constitutes an auxiliary discharge pas-V l sage leading withinl the main chamber B Patented Jan. 16, 1912. f
through the main discharge port D, asr
plainly shown in Fig. l.
S designates an auxiliary valve chamber adjoining the main chamber B.
T is the auxiliary valve adapted to engage ya seat U and acting to control the auxiliary ihoused within the extension W, the lower end of the spring abutting against a cross member Z uponV the valve stem'.
In applying the trap to the system, any one of the several ports B C 'or D may be employed as the steam inlet, according to the position of the trap in relation to the piping of the system, while the remaining ports may be closed by suitable plugs (not herein shown); or, :in the event that the trap is to be used in a dripless system, wherein preferably a continuous' radiator used,-one as an inlet and the other as an outlet,.-to permit the passageoi:l the steam through the trap, while the third may bei closed in the manner heretofore set forth.
Assuming that the trap is to be used in the type of heating system last described,
the main operating valve H is normally seated, preventing the discharge of the water of condensation which is adapted to col-v lect within the system, and acting in con- .junction with the steam to :form a combination steam and hot water apparatus.
To discharge air or the water of condensa tion from the system, the main operating valve I-I is raisedl from its seat, allowing the discharge to be effected through the main discharge passage L'. In the event that this passage is clogged'by the freezing of condensation, the steam passes automatically through the auxiliary discharge passage Q, the steam` pressure being suflicient to raise the valveT from its seat. The discharge of live steam around the frozen sect-ion of the discharge conduit quickly thawsthe latter and relieves the main passage from the obstruction. l
It will be apparent from the foregoing description that the thawing out of the trap is eected automatically; that the entire ,trap is controlled by a single valve, namely the main operating valve, thus simplifying the construction; and, finally, that, owing to the peculiar formation of the inclosing valve casing, the trap may be readily applied to any form of heating system.
What I claim as my invention is,-
l. In a drainage trap, the combination with an inclosing casing, of a main steam chamber therein provided with inlet and outlet openings, a valve-controlled discharge port, and with adjoining niain and auxiliary discharge passages having communication With the steam chamber through the discharge port, and a spring-pressed valve controlling the auxiliary passage operable automatically by the discharge of steam through the discharge port.
2. In a drainage trap, the combination With an inclosing casing provided With an inlet and a main discharge port, a main discharge passage communicating With said port, and With auxiliary passage leading from the discharge port to one side of the main passage and extending in operative relation thereto, and a spring-pressed valve controlling the auxiliary passage.
- 3. In a drainage trap, the combination With an inclosing casing formed with a main steam chamber having normally open inlet and outlet ports, a normally closed discharge port, a. main discharge passage leading from said discharge port, and having an auxiliary discharge passage communicating With the main chamber through the discharge port and surrounding the main passage, anauxiliary valve chamber adjoining ,the main chamber, and a spring-pressed valve Within the auxiliary chamber controlling the auxiliary passage.
4. In a trap, the combination with a casing provided with an inlet port, a main discharge port, and With an auxiliary discharge port at one side of and communicating With the casing through the main discharge port, of separate and independently operable valves respectively controlling the main and auxiliary discharge ports, one of said valves being adapted to be automatically operated by the heating iiuid.
5. In a trap, the combination with a casing provided With an inlet port, a main discharge port, and with an auxiliary discharge port at one side of and communicating With the casing through the main discharge port, of a valve controlling the main discharge port and a valve controlling the auxiliary discharge port adapted to be automatically operated independently of the main valve by the heating Huid.
6. In a trap, the combination with a easing provided with inlet and discharge ports, a main discharge passage leading trom the discharge port, and with an auxiliary discharge passage surrounding the main discharge passage, a connection between the auxiliary discharge passage and the casing and a valve controlling said connection automatically operated by the heating fluid.
7. In a trap, the combination with a casing provided with inlet and discharge ports, a main discharge passage leading from the discharge port, and with an auxiliary discharge passage surrounding the main discharge passage, a connection between the main and auxiliary discharge passages, and a valve controlling said connection automatically operated by the heating Huid.
8. In a drainage trap, the combination With an inclosing easing, of a main steam chamber therein provided with inlet and outlet openings, a valve controlled discharge port and with adjoining main and auxiliary discharge passages having communication With the steam chamber through the discharge port, and separate and independently operable valves respectively controlling the main and auxiliary discharge ports, one of said valves being adapted to be automatically operated by the heating fluid.
In testimony whereof I ailix my signature in presence of tivo Witnesses.
CALVIN S. PARKER.
IVitnesses NELLIE KINSELLA,
W. K. FORD.
Copies of this patent may be obtained for ve cents each, by addressing the Commissioner of Patents, Washington, D. C.
US1909506684 1909-07-09 1909-07-09 Trap. Expired - Lifetime US1015243A (en)

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