US801161A - Water-trap. - Google Patents

Water-trap. Download PDF

Info

Publication number
US801161A
US801161A US1904196788A US801161A US 801161 A US801161 A US 801161A US 1904196788 A US1904196788 A US 1904196788A US 801161 A US801161 A US 801161A
Authority
US
United States
Prior art keywords
valve
port
water
cover
trap
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 - Lifetime
Application number
Inventor
Louis Schutte
Teile H Mueller
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.)
Schutte and Koerting Co
Original Assignee
Schutte and Koerting Co
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 Schutte and Koerting Co filed Critical Schutte and Koerting Co
Priority to US1904196788 priority Critical patent/US801161A/en
Application granted granted Critical
Publication of US801161A publication Critical patent/US801161A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • 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
    • F16TSTEAM TRAPS OR LIKE APPARATUS FOR DRAINING-OFF LIQUIDS FROM ENCLOSURES PREDOMINANTLY CONTAINING GASES OR VAPOURS
    • F16T1/00Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers
    • F16T1/20Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers with valves controlled by floats
    • F16T1/22Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers with valves controlled by floats of closed-hollow-body type
    • F16T1/24Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers with valves controlled by floats of closed-hollow-body type using levers
    • 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
    • Y10T137/2931Diverse fluid containing pressure systems
    • Y10T137/3003Fluid separating traps or vents
    • Y10T137/3021Discriminating outlet for liquid
    • Y10T137/304With fluid responsive valve
    • Y10T137/3052Level responsive
    • Y10T137/3068Float
    • Y10T137/3077Servo-control
    • 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
    • Y10T137/7287Liquid level responsive or maintaining systems
    • Y10T137/7358By float controlled valve
    • Y10T137/7423Rectilinearly traveling float

Definitions

  • Our invention relates to water-traps such as are used in connection with steam-pipes, and has for its object to provide a trap of simple and efficient construction in which the parts and connections are arranged and combined for most convenient adjustment and repair and which is particularly well adapted for use where the pressure in the collectingchamber is high, our improvements consist- "ing partly in the general structure and makeup of the apparatus, but more especially consisting in improved waste or discharge valves.
  • Figure 1 is a vertical sectional elevation of our improved trap
  • Fig. 2 a detached elevation of a yoke forming part of the said trap structure
  • Fig. 3 a view illustrating amodifled constructive detail.
  • A is a trap-chamber which we preferably form, as shown, with a large lateral opening a, through which the float can be introduced, and with a smaller lateral opening a, which is covered by a plate or casting in which is formed the discharge-valve, as will hereinafter be described.
  • A indicates the cover fitting over the opening a and to which we secure the water-gage, (indicated at E.)
  • B is the entrance-opening through which water reaches the trap-chamber.
  • O is the cover-plate for the opening a, in the face of which is formed the valve-seated port Oiand in the rear of which is formed the cylinders O O indicating the exhaust-port leading from the space of the port O and cylinder O 0* indicates a separable cover for the rear end of the cylinder G L indicates a piston working in the cylinder O and connected by the hollow stem L with the waste-valveL, which is adapted to seat itself on the port O
  • the port formed in the hollow stem L extends from the face of the valve L to the rear of the piston L, so as to connect the chamber A with the rear end of cylinder C
  • the front View of the valve L supports, through an annular ring L a guide and shoulder, (indicated at L,) said guide and shoulder supporting the stern M of a pilot-valve M, while giving the said valve suflicient freedom of motion to enable it to open and close the port formed through the valve L.
  • the cover-plate C also supports the lever-pivot, (indicated
  • the float moves up, the action of the lever is first to open the pilot-valve M, admitting the water through the port L into the rear end of the cylinder U thus balancing pressure on the valve, so that when the pilot-valve MT comes in contact with the shoulder L it will with little or no resistance draw in and open the valve L, permitting the water to pass through the waste-port.
  • FIG. 3 The modification illustrated in Fig. 3 is simply one in which an adjustable spring is indicated as a valuable alternative of the adjustable counterweight J for balancing and adjusting the weight of the float K.
  • a shoulder it is secured to the top oi the rod G, and a notched ring Q, is secured to the guide F.
  • An arm 2' rests against the shoulder it and has at its outer end a casing 0 with a lateral chamber 0, which separates a worm O actuated by a linger-grip O and engaged with a worm-wheel P, which is secured to a pivot P at the center of the easingO, and is arranged to adjust the tension of a spring I the end of which rests on an arm P, pivoted at P and having knife-edges 27 which rest in the notches of the ring Q. It will readily be undertood that this device is in all respects the full equivalent for the adjustable counterweight indicated in Fig. 1.
  • a collecting-chamberA having an opening a, in combination with a cover G, for said opening, said cover having formed in it a valve-seated waste-port U, a
  • a collecting-chamber A having an opening a, in combination with a cover C, for said opening, said cover having formed in it a valve-seated waste-port G a cylinder C and a waste-outlet C, situated between said port and cylinder, and said cover also supporting a lever-ruvot N.
  • a chamber A having an opening a, of large area and a smaller opening a, in combination with a cover A, for the larger opening said cover having secured to it a water-gage E, a cover C, for the smaller opening, said cover having formed in it a valve-seated waste-port U, a cylinder C and a wasteoutlet U, situated between said port and cylinder, and said cover also supp rting alever-pivot N, a valve L, and piston L, con nected together and having a port L, leading through them from chamber A, to the rear of the cylinder G a pilot-valve M, supported on valve L, and adapted to open and close port L a valve-actuating lever supported on pivot N, and means in chamber A, actuated by the varying level of water therein and connected with the actuating-lever aforesaid for opening and closing the valves.
  • LOUIS SCHUIITE TEILE H.. MULLER.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Mechanically-Actuated Valves (AREA)

Description

ITO-801,161. PATENTED OCT. 3
L. SGHUTTE & T. H. MfiLLER.
WATER TRAP.
APPLICATION FILED MAR. 7, 1904.
JYGJ.
UNITED STATES PATENT OFFTQE LOUIS SOHUTTE, OF PHILADELPHIA, PENNSYLVANIA, AND TEILE H. MULLER, OF NEW YORK, N. Y., ASSIGNORS TO SOHUTTE AND KOERT- ING COMPANY, OF PHILADELPHIA, PENNSYLVANIA, A CORPORATION OF PENNSYLVANIA.
WATER-TRAP.
Patented Oct. 3, 1905.
Application filed MBJ'Cll '7, 1904:. Serial N0.
To all whom it may concern.-
Be itknown that we, LoUIs SOHUTTE, residing in the city and county of Philadelphia, in the State of Pennsylvania, and TEILE HENRY MULLER, residing in the city,county, and State of New York, citizens of the United States of America, have invented certain new and useful Improvements in IVater-Traps, of which the following is a true and exact description, reference being had to the accompanying drawings, which form a part thereof.
Our invention relates to water-traps such as are used in connection with steam-pipes, and has for its object to provide a trap of simple and efficient construction in which the parts and connections are arranged and combined for most convenient adjustment and repair and which is particularly well adapted for use where the pressure in the collectingchamber is high, our improvements consist- "ing partly in the general structure and makeup of the apparatus, but more especially consisting in improved waste or discharge valves.
The nature of our improvements will be best understood as described in connection with the drawings, in which Figure 1 is a vertical sectional elevation of our improved trap; Fig. 2, a detached elevation of a yoke forming part of the said trap structure, and Fig. 3 a view illustrating amodifled constructive detail.
A is a trap-chamber which we preferably form, as shown, with a large lateral opening a, through which the float can be introduced, and with a smaller lateral opening a, which is covered by a plate or casting in which is formed the discharge-valve, as will hereinafter be described.
A indicates the cover fitting over the opening a and to which we secure the water-gage, (indicated at E.)
B is the entrance-opening through which water reaches the trap-chamber.
O is the cover-plate for the opening a, in the face of which is formed the valve-seated port Oiand in the rear of which is formed the cylinders O O indicating the exhaust-port leading from the space of the port O and cylinder O 0* indicates a separable cover for the rear end of the cylinder G L indicates a piston working in the cylinder O and connected by the hollow stem L with the waste-valveL, which is adapted to seat itself on the port O As shown, the port formed in the hollow stem L extends from the face of the valve L to the rear of the piston L, so as to connect the chamber A with the rear end of cylinder C The front View of the valve L supports, through an annular ring L a guide and shoulder, (indicated at L,) said guide and shoulder supporting the stern M of a pilot-valve M, while giving the said valve suflicient freedom of motion to enable it to open and close the port formed through the valve L. The cover-plate C also supports the lever-pivot, (indicated at N,)the lever being indicated at N N, the short arm N connecting with the valve-stem M and the long arm M connecting with the float to be described.
We have shown extending up from the bottom of the chamber A a frame D, supporting an annular guide, (indicated at D,) which in turn supports the annular bushing D said bushing being held to the ring D by the setscrew D F is a guide screwing into the top of the chamber A, G being a rod passing through a stufling-box at the top of the guide F and connecting at its lower end with a guide-rod Gr working in the lower portion of the guide F and forming a continuation of a rod G the lower end of which is guided in the bushing D and is also formed with a lateral perforation G into which passes the end of the lever-arm N H is a shoulder secured to the top of the guide-rod G and against which rests the knifeedge I of a yoke I, having notches I at the end of its arms which engage knife-edges on the arm J 2 of the lever J 2 J having a knifeedge J, which rests in the stationary notch J, while a counterweight .P is secured on the arm J K is an annular receptacle secured on the rod G and, as shown, provided with a cover K, formed with perforations K and also secured to the rod G by the bolt K Describing the construction shown in Figs. 1 and 2, we would state that, aside from the combination of the water-gage E with the cover A and the special construction and arrangement of the cover O and parts immediately connected therewith, the apparatus is of a generally familiar and well-known character. The annular vessel K being full of water at all times while the trap is in use andcounterbalanced through the described connections by the weight J, so as to serve as a float rising and falling as the water-level in the chamber A increases or diminishes. When the weight or float K moves down it acts through the lever N N to move the valve M in a direction to set out on the valve L and through the pilot-valve M to also cause the valve L to set out on the port U. hen, on the other hand, the float moves up, the action of the lever is first to open the pilot-valve M, admitting the water through the port L into the rear end of the cylinder U thus balancing pressure on the valve, so that when the pilot-valve MT comes in contact with the shoulder L it will with little or no resistance draw in and open the valve L, permitting the water to pass through the waste-port. The fall in the water-level reverses the movements of the valves, as already described, and as the rear end of the cylinder G is through the usual leaky fit of the piston L in communication with the exhaust-port C the closing of the pilot-valve practically at once cuts off the pressure on the rear end of the piston L, so that the valve L when closed is held to its seat by practically whatever pressure exists in the chamber A.
The modification illustrated in Fig. 3 is simply one in which an adjustable spring is indicated as a valuable alternative of the adjustable counterweight J for balancing and adjusting the weight of the float K. In this construction a shoulder it is secured to the top oi the rod G, and a notched ring Q, is secured to the guide F. An arm 2' rests against the shoulder it and has at its outer end a casing 0 with a lateral chamber 0, which separates a worm O actuated by a linger-grip O and engaged with a worm-wheel P, which is secured to a pivot P at the center of the easingO, and is arranged to adjust the tension of a spring I the end of which rests on an arm P, pivoted at P and having knife-edges 27 which rest in the notches of the ring Q. It will readily be undertood that this device is in all respects the full equivalent for the adjustable counterweight indicated in Fig. 1.
Having now described our invention, what we claim as new, and desire to secure by Letters Patent, is-
1. In a water-trap, a collecting-chamberA, having an opening a, in combination with a cover G, for said opening, said cover having formed in it a valve-seated waste-port U, a
cylinder C and a Waste-outlet U, situated between said port and cylinder, and said cover also supporting a lever-pivot N, a valve L, and piston L, connected together and having a port L, leading through them from chamber A,
to the rear of the cylinder G a pilot-valve l I,
supported on valve L, and adapted to open and close port L", a valve-actuating lever supported on pivot N, and means in chamber A, actuated by the varying level of water therein and connected with the actuating lever aforesaid for opening and closing the valves. 2. In a water-trap, a collecting-chamber A, having an opening a, in combination with a cover C, for said opening, said cover having formed in it a valve-seated waste-port G a cylinder C and a waste-outlet C, situated between said port and cylinder, and said cover also supporting a lever-ruvot N. a removable cylinder end 0, a valve L, and piston L, connected together and having a port L leading through them from chamber A, to the rear of the cylinder a pilot-valve M, supported on valve L, and adapted to open and close port L a valveactuating lever supported on pivot N, and means in chamber A, actuated by the varying level of water therein and connected with the actuating-lever aforesaid for opening and closing the valves. 3. In a water-trap, a chamber A, having an opening a, of large area and a smaller opening a, in combination with a cover A, for the larger opening said cover having secured to it a water-gage E, a cover C, for the smaller opening, said cover having formed in it a valve-seated waste-port U, a cylinder C and a wasteoutlet U, situated between said port and cylinder, and said cover also supp rting alever-pivot N, a valve L, and piston L, con nected together and having a port L, leading through them from chamber A, to the rear of the cylinder G a pilot-valve M, supported on valve L, and adapted to open and close port L a valve-actuating lever supported on pivot N, and means in chamber A, actuated by the varying level of water therein and connected with the actuating-lever aforesaid for opening and closing the valves. LOUIS SCHUIITE. TEILE H.. MULLER.
Witnesses as to signature of Louis Schutte:
Cims. F. MYnRs, D. STEWART.
lVitnesses as to signature of Teile Henry Muller:
WV. KA'ru'oL, JAS. H. HILLERT.
US1904196788 1904-03-07 1904-03-07 Water-trap. Expired - Lifetime US801161A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US1904196788 US801161A (en) 1904-03-07 1904-03-07 Water-trap.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US1904196788 US801161A (en) 1904-03-07 1904-03-07 Water-trap.

Publications (1)

Publication Number Publication Date
US801161A true US801161A (en) 1905-10-03

Family

ID=2869647

Family Applications (1)

Application Number Title Priority Date Filing Date
US1904196788 Expired - Lifetime US801161A (en) 1904-03-07 1904-03-07 Water-trap.

Country Status (1)

Country Link
US (1) US801161A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2421237A (en) * 1945-03-02 1947-05-27 Jacobsen Mfg Co Air charger for jet pumps
US2433021A (en) * 1945-03-09 1947-12-23 Jacobsen Mfg Co Shallow well self-priming pump
US20060185732A1 (en) * 2003-04-01 2006-08-24 Youval Katzman Gas purge valve

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2421237A (en) * 1945-03-02 1947-05-27 Jacobsen Mfg Co Air charger for jet pumps
US2433021A (en) * 1945-03-09 1947-12-23 Jacobsen Mfg Co Shallow well self-priming pump
US20060185732A1 (en) * 2003-04-01 2006-08-24 Youval Katzman Gas purge valve
US7617838B2 (en) * 2003-04-01 2009-11-17 A.R.I. Flow Control Accessories Agriculture Cooperative Association Ltd. Gas purge valve

Similar Documents

Publication Publication Date Title
NO178417B (en) Pressure Reducing Valve
US781913A (en) Safety-valve.
US801161A (en) Water-trap.
KR850001986A (en) Regulators installed on outlet connections of vessels such as gas containers
US3054419A (en) Gas separation
US2399111A (en) Trap
US643906A (en) Supply-valve.
US1566238A (en) Steam trap
US464018A (en) Steam-trap
US917740A (en) Valve mechanism.
US2726675A (en) Steam trap
US802091A (en) Valve.
US461829A (en) Gas-regulator
US478793A (en) Slow-closing valve for tanks
US862296A (en) Steam-trap.
US662489A (en) Steam-trap.
US777119A (en) Boiler-feed mechanism.
US816290A (en) Flush-valve.
US616682A (en) Valve
US321556A (en) albert gaukrogeb
US935426A (en) Steam-trap.
US839777A (en) Steam-eliminator.
US949180A (en) Fluid-pressure-regulating device.
US265112A (en) Henry s
US583064A (en) b mason