US688598A - Steam-engine. - Google Patents

Steam-engine. Download PDF

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Publication number
US688598A
US688598A US1901051179A US688598A US 688598 A US688598 A US 688598A US 1901051179 A US1901051179 A US 1901051179A US 688598 A US688598 A US 688598A
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Prior art keywords
valve
steam
piston
engine
exhaust
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Edwin M Coryell
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JULIA E CAMERON
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JULIA E CAMERON
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Priority to US1901051179 priority Critical patent/US688598A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01LCYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
    • F01L25/00Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means
    • F01L25/02Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means by fluid means
    • F01L25/04Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means by fluid means by working-fluid of machine or engine, e.g. free-piston machine
    • F01L25/06Arrangements with main and auxiliary valves, at least one of them being fluid-driven
    • F01L25/063Arrangements with main and auxiliary valves, at least one of them being fluid-driven the auxiliary valve being actuated by the working motor-piston or piston-rod
    • 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
    • Y10T137/86493Multi-way valve unit
    • Y10T137/86574Supply and exhaust
    • Y10T137/86622Motor-operated
    • Y10T137/8663Fluid motor

Definitions

  • the invention consists in providing a steamcontrolled and steam-balanced piston that is itself a valve, whereby there is practically no pressure on the valve to cause it to grind upon its bed.
  • the invention consists, further, in certain details of construction that will be pointed out.
  • A is the ordinary steamcylinder, and B its piston.
  • the valvechamber is the valve comprising the attached pistons C, F, and C'.
  • Live steam is admitted at connection I and enters through passages 2 2' and ports 3 3' into the ends c c' of the valve-chamber,so that there is the same pressure on the end of each piston C and C', so that the valve is in equilibrium or steambalanced.
  • Steam also passes from connection l downward (as indicated by the dotted lines) and through passages 4f 4J into the exhaust-valve chambers D D', where it operates to hold closed the tappet-valves d d'.
  • valve-chambers c c' close the exhausts from the valve-chambers c c', the exhaust being through passages 5 5 and ports 6 6'.
  • piston B nears the end of its stroke (say to the left) it pushes exhaust-valve d from its seat and permits some of the steam to escape from valve-chamber c.
  • the excess of pressure on the other (right) end, at piston c' shoves the valve to the left, whereupon the piston C closes the exhaust-passage 5 and equilibrium is once more restored, and so at the other end of the stroke of piston B.
  • the valve is also steam-controlled-that is, there is no mechanical device to shift it.
  • This valve has the two annular grooves E E', which thus outline the median flange or belt F (that constitutes the main valve) as well as the two heads C and C', (that form the piston proper.) Of course the belt F and the heads O C' fit snugly within the valve-chamber.
  • Steam from connection l enters through passage 2', (or 2,) outlet 7', (or 7,) annular space E', (or E,) and passage 8 (or 8) into the main cylinder.
  • exhaust-port from the main cylinder is indi cated at IO and extends back through passage 9, annular space E, (or E',) and passage 8 (or 8') to the main cylinder.
  • a steam-engine In a steam-engine the combination of the following parts; a piston-valve consisting of two piston-heads and a median flange eonstituting the main Valve; a valve-Chamber therefor containing an inlet for live steam, two passages branching therefrom for admitting steam alternatively to opposite ends of the steam-cylinder but controlled by the said valve7 and two always-open ports of reduced size for admitting steam behind the ends of the said piston-heads; a Steam-cylinder having (in addition to the two inlet-passages aforesaid) an exhaust-port controlled by said valve; and two exhaust-passages leading from the rear of said piston-heads and controlled by steam-pressu re val ves,said steam pressure valves operated by the main piston; the parts cooperating substantially in the manner described.

Description

No. 688,598. Patented Dec. I0, |901.
E. M. CDRYELL.4
STEAM ENGINE.
(Application :filed Mar. 14, 1901.)
(No Model.)
Ea-a P.
UNITED STATES PATENT OEETCE.
EDWIN M. OORYELL, OF NEW YORK, N. Y., ASSIGNOR TO JULIA E. CAMERON, OF NEV YORK, N. Y.
STEAM-ENGINE.
S-EECIFICATION forming part of Letters Patent No. 688,598, dated December 10, 1901. Application tiled March 14, 1901. Serial No. 51.179. (No model.)
To tu whom it may concern,.-
Be it known that I, EDWIN M. CORYELL, of New York city, in the State of New York, have invented a new and useful Improvement in Steam-Engines, which is fully set forth in the following specification.
My invention relates to steam-engines, and has for its object to provide for the steamcylinder a main valve that shall not be a slide-valve in the ordinary sense of the term-that is, a valve which is subjected to great wear and is liable to leakage.
The invention consists in providing a steamcontrolled and steam-balanced piston that is itself a valve, whereby there is practically no pressure on the valve to cause it to grind upon its bed. v
The invention consists, further, in certain details of construction that will be pointed out.
The annexed drawing is a vertical section to illustrate my invention.
In the drawing, A is the ordinary steamcylinder, and B its piston. In the valvechamber is the valve comprising the attached pistons C, F, and C'. Live steam is admitted at connection I and enters through passages 2 2' and ports 3 3' into the ends c c' of the valve-chamber,so that there is the same pressure on the end of each piston C and C', so that the valve is in equilibrium or steambalanced. Steam also passes from connection l downward (as indicated by the dotted lines) and through passages 4f 4J into the exhaust-valve chambers D D', where it operates to hold closed the tappet-valves d d'. The latter close the exhausts from the valve-chambers c c', the exhaust being through passages 5 5 and ports 6 6'. As piston B nears the end of its stroke (say to the left) it pushes exhaust-valve d from its seat and permits some of the steam to escape from valve-chamber c. Instantly the excess of pressure on the other (right) end, at piston c', shoves the valve to the left, whereupon the piston C closes the exhaust-passage 5 and equilibrium is once more restored, and so at the other end of the stroke of piston B. Thus the valve is also steam-controlled-that is, there is no mechanical device to shift it. This valve has the two annular grooves E E', which thus outline the median flange or belt F (that constitutes the main valve) as well as the two heads C and C', (that form the piston proper.) Of course the belt F and the heads O C' fit snugly within the valve-chamber. Steam from connection l enters through passage 2', (or 2,) outlet 7', (or 7,) annular space E', (or E,) and passage 8 (or 8) into the main cylinder. exhaust-port from the main cylinder is indi cated at IO and extends back through passage 9, annular space E, (or E',) and passage 8 (or 8') to the main cylinder.
The grooves E E', belt F, and ports 7 7', 8 8', and 9 bear such relation to one .another that at one position of the piston-valve live steam is admitted freely to the steam-cylinder A at one side of its piston B, while the steam is as freely exhausted from the other side of piston B, and at the other position of the piston-valve this operation is reversed. -The valve F is not in constant motion, but shifts instantly at the moment before the completion of each stroke of piston B, and then it remains at rest until j ust before the next stroke.
Except for the very brief periods when the The l the spaces c c' of the valve-chamber the valve C F O' is in equilibrium-that is, the pressure on each end is the same. Further, during the period of exhaust from the main steamcylinder and when the piston-valve is shifting the pressure of the steam does not force this valve down against this valve-seat, but merely shifts it laterally and against atmosa pheric pressure alone, so that there is an entire absence of grinding and wear. Therefore because of the absence of any pressing against any valve-seat my piston-valve is very sensitive and will act under low steampressure and can be made to run very slowlyalmost imperceptibly. It is also positive and unfailing in its action, because there is no friction or any other cause to check its Inovement,while, on the other hand, in the absence of any mechanical shifting device with its entailed packings and by reason of the positive and automatic action of the piston-valve the engine equipped with my improvement may be employed with abnormally high steampressure and maybe run at very high speeds. Thus the life of this valve is much longer than was heretofore possible, while the engine may be operated satisfactorily at any speed desired and within any range of pressure.
Of course it is to be understood that the drawingA and detailed description are given merely for the sake of illustration and that changes may be made therein or the idea oin bodied in other forms Without in any ease departing from the spirit of my invention.
Having thus described my invention, Il claim- In a steam-engine the combination of the following parts; a piston-valve consisting of two piston-heads and a median flange eonstituting the main Valve; a valve-Chamber therefor containing an inlet for live steam, two passages branching therefrom for admitting steam alternatively to opposite ends of the steam-cylinder but controlled by the said valve7 and two always-open ports of reduced size for admitting steam behind the ends of the said piston-heads; a Steam-cylinder having (in addition to the two inlet-passages aforesaid) an exhaust-port controlled by said valve; and two exhaust-passages leading from the rear of said piston-heads and controlled by steam-pressu re val ves,said steam pressure valves operated by the main piston; the parts cooperating substantially in the manner described.
In testimony whereof I have signed this specification in the presence of two subscribing witnesses.
EDVIN M. CORYELL.
Witnesses:
ELISHA K. CAMP, e C. A. L. MAssIE.
US1901051179 1901-03-14 1901-03-14 Steam-engine. Expired - Lifetime US688598A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2808811A (en) * 1954-09-21 1957-10-08 William I Mclaughlin Valve for reversible flow pressure fluid system
US3020893A (en) * 1958-06-24 1962-02-13 Nat Res Dev Motors for hydrostatic power transmission systems
US3033218A (en) * 1959-09-21 1962-05-08 Fairchild Stratos Corp Fluid proportioner

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2808811A (en) * 1954-09-21 1957-10-08 William I Mclaughlin Valve for reversible flow pressure fluid system
US3020893A (en) * 1958-06-24 1962-02-13 Nat Res Dev Motors for hydrostatic power transmission systems
US3033218A (en) * 1959-09-21 1962-05-08 Fairchild Stratos Corp Fluid proportioner

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