US18718A - Steam ptjmping-engine - Google Patents

Steam ptjmping-engine Download PDF

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US18718A
US18718A US18718DA US18718A US 18718 A US18718 A US 18718A US 18718D A US18718D A US 18718DA US 18718 A US18718 A US 18718A
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steam
engine
cylinder
pump
piston
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B7/00Piston machines or pumps characterised by having positively-driven valving
    • F04B7/0003Piston machines or pumps characterised by having positively-driven valving the distribution member forming both the inlet and discharge distributor for one single pumping chamber
    • F04B7/0011Piston machines or pumps characterised by having positively-driven valving the distribution member forming both the inlet and discharge distributor for one single pumping chamber and having an oscillating movement

Definitions

  • FIG. 1 is a side elevation of the said engine;
  • Fig. 2 is an end view of it;
  • Fig. 3 a transverse section taken through one of its oscillating cylinders and the pump thereof.
  • Fig. 4L is a sketch exhibiting the positions of the three cranks of the shaft to be hereinafter described.
  • My present invention contains the principles or combination so patented and consists mainly in a combination composed of vsuch an engine or apparatus, three or other suitable number of pumps and a divided chamber, as will be hereinafter' described, my improved apparatus being for-the purpose of raising water or a fluid by the action of steam or other elastic vapor or medium in a manner to be hereinafter described.
  • A, and B are two semicylindrical hollow vessels arranged with respect to one another and each divided vertically into two chambers b, c, and b, o', by partitions CZ, d, each of which (partitions) extends vertically through its chamber and terminates against the two ends and top and bottom of it.
  • the said vessels A, and B, or steam and water chests, as they may be termed are each provided with an induction pipe or passage e or e (see Fig. 2) and an eduction passage C, or C leading out of them, as seen in Fig. 3, the induction passage of each vessel or chest being opened into one of its chambers while the eduction passage leads out of the other chamber.
  • each cylinder of the upper series being arranged with its axis in line with that .of the pump barrel which is directly underneath it. That part of each pump barrel and cylinder which bears against the curved cylindric surface of its chest A, or B, is
  • each steam cylinder D, E, F is connected with the pump barrel D, E', F, as shown in Fig. 3, that is by ears or projections a2, a2, a2, and also by screw bolts b2 b2 extended through said ears or projections.
  • any oscillating movement of one of the steam cylinders will produce a corresponding oscillating movement of that connected with it, but in the opposite direction.
  • FIG. 3 is an external view of the curved surface of one of the chests and shows the various sets .of said passages and their arrangement.
  • the upper rods S, T, U, are applied respectively to three bell cranks V, W, X, of a horizontal shaft Y, the respective positions of the cranks being shown in Fig. 4:.
  • Fig. 3 exhibits how by means of a cross head f, and a cap, g, the piston rod of a steam cylinder is applied to its crank. It also represents two rods 7o, Zo, extending downward from the cross head and fastened to another cross head Z of the piston rod of the pump barrel which is situated directly underneath the said cylinder.
  • the piston of each cylinder should be connected in the same manner with the piston of each pump barrel when the two pistons are in their lowest positions.
  • each eccentric ring constitutes a packing to the piston, they being placed on it as shown in Fig. 3, and between overlapping heads g3 ha, arranged as shown in said figure.
  • each eccentric ring is -eX panded laterally. It is found that when only one ring is employed in connection with a concentric ring the cylinder or pump barrelwill be worn unequally, but by the use of two eccentric rings arranged with respect to one another as described the cylinderor pump barrel and the surrounding concentric rings will be worn equally and cylindrically.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressors, Vaccum Pumps And Other Relevant Systems (AREA)
  • Reciprocating Pumps (AREA)

Description

UNITED STATES PATENT OFFICE.
JOHN S. BARDEN, OF NEI/V HAVEN, CONNECTICUT, ASSIGNOR TO HIMSELF, AND AARON W. ROCKWOOD, OF BOSTON, MASSACHUSETTS.
STEAM PUMPING-ENGINE.
Specification of Letters Patent No. 18,718., dated November 24, 1857.
To all whom it may concern:
Be it known that I, JOHN S. BARDEN, of New Haven, in the county of New Haven and State of Connecticut, have invented a new Steam Pumping-Engine; and I do hereby declare that the same is fully described and represented in the following specification and the accompanying drawings, of which- Figure 1 is a side elevation of the said engine; Fig. 2 is an end view of it; Fig. 3, a transverse section taken through one of its oscillating cylinders and the pump thereof. Fig. 4L is a sketch exhibiting the positions of the three cranks of the shaft to be hereinafter described.
On the 26th day of February, 1856, Letters Patent were granted to me for a hydraulic engine or water meter. My present invention contains the principles or combination so patented and consists mainly in a combination composed of vsuch an engine or apparatus, three or other suitable number of pumps and a divided chamber, as will be hereinafter' described, my improved apparatus being for-the purpose of raising water or a fluid by the action of steam or other elastic vapor or medium in a manner to be hereinafter described.
In the drawings above mentioned A, and B, are two semicylindrical hollow vessels arranged with respect to one another and each divided vertically into two chambers b, c, and b, o', by partitions CZ, d, each of which (partitions) extends vertically through its chamber and terminates against the two ends and top and bottom of it. The said vessels A, and B, or steam and water chests, as they may be termed, are each provided with an induction pipe or passage e or e (see Fig. 2) and an eduction passage C, or C leading out of them, as seen in Fig. 3, the induction passage of each vessel or chest being opened into one of its chambers while the eduction passage leads out of the other chamber.
Above the vessel A, as well as below the vessel, B, there is placed a series of pump barrels or cylinders D, E, F, or D, E, F', each cylinder of the upper series being arranged with its axis in line with that .of the pump barrel which is directly underneath it. That part of each pump barrel and cylinder which bears against the curved cylindric surface of its chest A, or B, is
curved with a seat made to fit closely to the same during the oscillations of the said cylinder or barrel and each steam cylinder D, E, F, is connected with the pump barrel D, E', F, as shown in Fig. 3, that is by ears or projections a2, a2, a2, and also by screw bolts b2 b2 extended through said ears or projections. Thus any oscillating movement of one of the steam cylinders will produce a corresponding oscillating movement of that connected with it, but in the opposite direction. Through the hot-tom of each cylinder or pump barrel there is a passage L (see Fig. 3), the same operating in conjunction with two passages P, Q, or P, Q', made through the steam or water chests A or B, and arranged as shown in Fig. 3. One of each two of the adjacent passages opens into one chamber of its chest, while the other opens into the other chamber thereof. Fig. 5 is an external view of the curved surface of one of the chests and shows the various sets .of said passages and their arrangement. There is a piston R or R, applied within and to each cylinder and pump barrel, the several rods of these pistons being shown at S, T, U, and S', T', U. The upper rods S, T, U, are applied respectively to three bell cranks V, W, X, of a horizontal shaft Y, the respective positions of the cranks being shown in Fig. 4:.
Fig. 3, exhibits how by means of a cross head f, and a cap, g, the piston rod of a steam cylinder is applied to its crank. It also represents two rods 7o, Zo, extending downward from the cross head and fastened to another cross head Z of the piston rod of the pump barrel which is situated directly underneath the said cylinder. The piston of each cylinder should be connected in the same manner with the piston of each pump barrel when the two pistons are in their lowest positions.
In constructing the piston of either of the steam cylinders I make it of two eccentric rings a3 b3 arranged with respect to one an other as shown in Figs. 3 and 6, the latter being a transverse section of the piston. One of these eccentric rings is arranged within the other and each is split open vertically, as shown at c3. These rings are surrounded by two rings CZS, e3, which I term concentric rings, they being made of an equal thickness throughout and arranged one above the other and each split open, as seen at f3. One concentric ring is placed on the other and so that it shall break joint or cover the ends of the other while both rings embrace the outereccentric ring, as sho-wn in Fig. 6. These rings constitute a packing to the piston, they being placed on it as shown in Fig. 3, and between overlapping heads g3 ha, arranged as shown in said figure. By means of heat each eccentric ring is -eX panded laterally. It is found that when only one ring is employed in connection with a concentric ring the cylinder or pump barrelwill be worn unequally, but by the use of two eccentric rings arranged with respect to one another as described the cylinderor pump barrel and the surrounding concentric rings will be worn equally and cylindrically.
With an apparatus so constructed if we connect the induction passages of the two vessels A, and B, with a steam generator or boiler and a cistern or reservoir of water, so that the steam may flow from the gen'- erator into the upper vessel or chest Afand water be raised into the lower chest B, when it (the latter) is exhausted of air, the'apparatus will be in a conditionl to operate so as to elevate water into one of the chambers of the vessel B, and discharge it from the other chamber thereof, the steam by its action in the three cylinders and on their pistons serv- 'ing to maintain a continuing rotation .on
their shaft and one cylinder and piston controlling the movement of the other by means of the devices by which it is connected therewith. The movements of the several pistons of t-he steam cylinder will produce corresponding movements of the pistons of the pump barrel, and such pump barrel will be moved `laterally with and by-its cylinder as such cylinder is moved on the chest A, by the voperations of the pistons and crank shaft. The consequence of this act-ion of the apparatus will be that each pump during its two lateral vibratory motions in opposite directions will draw water into one chamber of vthe vessel B, and discharge it into Vthe other 4bine a pump with a steam engine that the piston of the former may be operated by the latter, also that it is not new to arrange the axis of the cylinder of a steam engine inline with that of the -barrel of the pump and so connecting the pistons of t-he two that a reciprocating rectilinear movement of thev steam engine cylinder may create a corresponding movement of the pump piston. Therefore Ido not claim such.
I do not herein claim-n i Apartitioned hollow semicylindrical chamber and two series of induction and eduction passages arranged with respect to the partition `of said chamber substantially as described in combination with three or any other suitable number of oscillating cylinders and pistons connected together by three connected cranks andV applied to the partitioned semicylindric vessel as described, such `being the subject of claim in my Letters Patent herein before named.
Nor do I claim the rotary pump for whichA on one semicylindric case, and with oneY engine, made as specified, the semicylindric case connecting all the pumps together,
so that the fluid which each pump may elevate is drawn into one end of the common case and forced out of the other end of it, while but one threefold crank is used in the construction of any apparatus. Therefore it is this peculiar apparatus as composed of the three pumps arranged on one common case and combined with the peculiar steam engine, in manner as described and so as cause but one threefold crank necessary to the operation of the three pumps during each entire revolution of the crank, that I claim as my invention.
In testimony whereof, I have hereunto set my signature this 10th day of September A. D. 1857.
JOI-IN S. BARDEN.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2766702A (en) * 1952-09-04 1956-10-16 Arthur R Macvittie Rotary fluid motor or pump
US20030228909A1 (en) * 2002-05-14 2003-12-11 Square Co., Ltd. Of Tokyo, Japan Method for displaying chat window applied to network game

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2766702A (en) * 1952-09-04 1956-10-16 Arthur R Macvittie Rotary fluid motor or pump
US20030228909A1 (en) * 2002-05-14 2003-12-11 Square Co., Ltd. Of Tokyo, Japan Method for displaying chat window applied to network game

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