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US403777A - putnam - Google Patents

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US403777A
US403777A US403777DA US403777A US 403777 A US403777 A US 403777A US 403777D A US403777D A US 403777DA US 403777 A US403777 A US 403777A
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chamber
water
siphon
receiving
sink
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    • 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
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/22Outlet devices mounted in basins, baths, or sinks
    • E03C1/23Outlet devices mounted in basins, baths, or sinks with mechanical closure mechanisms
    • E03C1/2302Outlet devices mounted in basins, baths, or sinks with mechanical closure mechanisms the actuation force being transmitted to the plug via rigid elements
    • 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
    • Y10T137/4456With liquid valves or liquid trap seals
    • Y10T137/4463Liquid seal in liquid flow line; flow liquid forms seal

Definitions

  • the invention relates to a sink provided with a flush-tank immediately connected cause the discharge or to prevent it.
  • the flushtank is formed with two chambers-one a receiving chamber or receptacle for the drippings of the sink or water of operation and the other a discharging-chamber provided with an automaticdischarge-siphon, the said receivin -chamber leading horizontally into the said discharging-chamber by a vertical opening or passage-way reaching substantially to the bottom of the said receivingchamber and narrower than the said receiving-chamber.
  • Figure 1 is a perspective View of a sink provided with my improvement.
  • Fig. 2 is a vertical section of the same.
  • Figs. 3 and 4 are respectively a plan and a vertical section of a modification.
  • T is the receiving-chamber of the flushtank, let into the bottom of the sink, as shown, and separated therefrom by a strainer, s, which is hinged to the sink proper and forms a portion of the bottom of the sink as well as a lid to cover the tank; and t is the discharging-chamber, opening out of the chamber T, as shown.
  • the opening between the two chambers in the apparatus shown at Figs. 1 and 2 reaches to the bottom of said receiving-chamber and is of the full width of the discharging-chamber, but does not (and vthis is essential, for a reason hereinafter to be pointed out) take up the whole width of the wall of the receivingchamber on the side of the discharging-chamber.
  • the bottom of the chamber t is sunk below thebottom of the chamber T and has a small superficial area as compared with the bottom of the chamber T, for purposes that will hereinafter appear.
  • IV is a siphon, forming with a weir-chamber, 10, in its long arm the automatic discharge-pipe of the apparatus. Its short arm enters the discharging-chamber t to a depth below the level of the bottom of the receiving-chamber T, and it will be observed that the chamber 25 and the short arm of the siphon form in construction a trap for the entire apparatus.
  • the bend of the siphon W is sub stantially at the level of the top of the tank T.
  • a strainer, s is placed in the passageway between the two chambers, but is not necessary for the proper working of the invcntion.
  • the operation is as follows: The waste water of the sink accumulates in the chamber T until it reaches the level of the bend of the siphon, when water will begin to flow over the bend and siphonage will take place with the aid of the Weir-chamber w. This siphonage will continue until the level of the water has been so reduced as to let air into the siphon, and this will happen before all the water in the chamber T has run out, for the following reason: During the first portion of the siphonage, while thewater in the receivin g-chamber remains at a considerable depth, the operative passage-w ay between the two chambers is sufficiently largez'. (2., wide and deepto furnish to the discharging-chamber as much water as the siphon is taking therefrom; but when the water gets low in the receiving-chamber only a shallow body of water can pass from one chamber to the other,
  • the width of the opening or passage-way between the two chambers shall be narrow enough proportionally to the capacity of the siphon to check the flow of water from chamber to chamber and break the siphonage while sufficient water yet remains in the receiving-chamber to restore the seal of the trap.
  • a sink provided with a flush-tank consisting of a receiving-chamber and adischarging-chamber, the former leading horizontally into the latter through a vertical opening or passage-way reaching to the bottom of said receiving-chamber and narrower than said receiving-chamber, and the latter furnished with an automatic discharge-siphon, the operative capacity of the passage-way between the two chambers during the last part of the operation being smaller than that of the siphon, substantially as described.
  • a flush-tank consisting of two chambers, a receiving-chamber and adischarging-chamber provided with a siphon discharge-pipe, the said receiving-chamber leading horizontally into said discharging-chamber through a vertical opening or passage-way, while the bottom of said discharging-chamber is sunk below the level of the bottom of said receiving-chamber, and the inlet-n1outh of said si-.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Barrages (AREA)

Description

(No Model.) I
J. P. PUTNAM.
SINK.
Patented May 21 1889.
I UNITED STATES PATENT OFFICE.
.IOI'IN PIOKERING PUTNAM, OF BOSTON, MASSACHUSETTS.
SINK.
SPECIFICATION forming part of Letters Patent No. 403,777, dated May 21, 1889.
Application filed January 13, 1888. Serial No. 260,640. (No model.)
To all whom it may concern.-
Be it known that I, JOHN PIOKERING PUT- NAM, of Boston, Massachusetts, have invented a new and useful Improvement in Sinks, of which the following is a specification.
The invention relates to a sink provided with a flush-tank immediately connected cause the discharge or to prevent it.
Itconsists in certain details of construction, some of which are applicable to the automatically-operating flush-tank independently of the sink, and of these more especially it consists in a provision for retarding the flow of water to the discharge-siphon of the flushtank, and thereby admitting air thereto before the flush-tank is emptied. The flushtank is formed with two chambers-one a receiving chamber or receptacle for the drippings of the sink or water of operation and the other a discharging-chamber provided with an automaticdischarge-siphon, the said receivin -chamber leading horizontally into the said discharging-chamber by a vertical opening or passage-way reaching substantially to the bottom of the said receivingchamber and narrower than the said receiving-chamber.
I am aware that automatically-operating flush-tanks have heretofore been used in connection with sewerage systems; but there has been no way devised hitherto to my knowledge to prevent the accumulation of grease and kitchen refuse in the small waste-pipes immediately connected with sinks. I am also aware that flush pots or tanks constructed to be operated by hand have been used with sinks; but these in practice have failed through the persons in charge leaving the outlet open, and thus permitting refuse, even bones and similar solid matters, to be swept into it to clog the trap and pipes. By my device I remedy these difficulties, and not only is grease prevented from accumulation by virtue of the principle of the flush-tank, but
at the same time the construction and mode of operation attending the construction are such that no bones or other solid matters can under any circumstances gain access to the pipes.
Figure 1 is a perspective View of a sink provided with my improvement. Fig. 2 is a vertical section of the same. Figs. 3 and 4 are respectively a plan and a vertical section of a modification.
S is the sink proper.
T is the receiving-chamber of the flushtank, let into the bottom of the sink, as shown, and separated therefrom by a strainer, s, which is hinged to the sink proper and forms a portion of the bottom of the sink as well as a lid to cover the tank; and t is the discharging-chamber, opening out of the chamber T, as shown.
The opening between the two chambers in the apparatus shown at Figs. 1 and 2 reaches to the bottom of said receiving-chamber and is of the full width of the discharging-chamber, but does not (and vthis is essential, for a reason hereinafter to be pointed out) take up the whole width of the wall of the receivingchamber on the side of the discharging-chamber. The bottom of the chamber t is sunk below thebottom of the chamber T and has a small superficial area as compared with the bottom of the chamber T, for purposes that will hereinafter appear.
IV is a siphon, forming with a weir-chamber, 10, in its long arm the automatic discharge-pipe of the apparatus. Its short arm enters the discharging-chamber t to a depth below the level of the bottom of the receiving-chamber T, and it will be observed that the chamber 25 and the short arm of the siphon form in construction a trap for the entire apparatus. The bend of the siphon W is sub stantially at the level of the top of the tank T. A strainer, s, is placed in the passageway between the two chambers, but is not necessary for the proper working of the invcntion.
The operation is as follows: The waste water of the sink accumulates in the chamber T until it reaches the level of the bend of the siphon, when water will begin to flow over the bend and siphonage will take place with the aid of the Weir-chamber w. This siphonage will continue until the level of the water has been so reduced as to let air into the siphon, and this will happen before all the water in the chamber T has run out, for the following reason: During the first portion of the siphonage, while thewater in the receivin g-chamber remains at a considerable depth, the operative passage-w ay between the two chambers is sufficiently largez'. (2., wide and deepto furnish to the discharging-chamber as much water as the siphon is taking therefrom; but when the water gets low in the receiving-chamber only a shallow body of water can pass from one chamber to the other,
and the water at each side of the passageway is retarded and a quantity sufficient to feed the siphon does not flow through, and, air getting into the siphon, stops siphonage before the water ceases flowing from chamber to chamber. After the siphonage is stopped the tailing or remainder of the flow from chamber T to chamber 75 will fill chambert sufficiently to form a seal at the mouth of the siphon, and thereby-trap both sink and tank. This construction permits the entire contents of the receiving-chamber to flow out at each discharge.
' the two chambers to check the flow of water from one to the other and to the mouth of in the other apparatus, air gets in and breaks the siphonage, while the Water walls up in the receivingchamber behind thepartition. A
portion of this Water afterward passing through the slot restores the level in the two chambers, and at the same time restores the seal of the trap in this form of construction, however, leaving-water in both chambers.
It is requisite that the width of the opening or passage-way between the two chambers shall be narrow enough proportionally to the capacity of the siphon to check the flow of water from chamber to chamber and break the siphonage while sufficient water yet remains in the receiving-chamber to restore the seal of the trap.
I claim 1. A sink provided with a flush-tank consisting of a receiving-chamber and adischarging-chamber, the former leading horizontally into the latter through a vertical opening or passage-way reaching to the bottom of said receiving-chamber and narrower than said receiving-chamber, and the latter furnished with an automatic discharge-siphon, the operative capacity of the passage-way between the two chambers during the last part of the operation being smaller than that of the siphon, substantially as described.
2. A flush-tank consisting of two chambers, a receiving-chamber and adischarging-chamber provided with a siphon discharge-pipe, the said receiving-chamber leading horizontally into said discharging-chamber through a vertical opening or passage-way, while the bottom of said discharging-chamber is sunk below the level of the bottom of said receiving-chamber, and the inlet-n1outh of said si-.
Vitnesses \VM. S. ROGERS, W. Wrnrgrnr LEWIS.
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