US261215A - Vanderlyn h - Google Patents

Vanderlyn h Download PDF

Info

Publication number
US261215A
US261215A US261215DA US261215A US 261215 A US261215 A US 261215A US 261215D A US261215D A US 261215DA US 261215 A US261215 A US 261215A
Authority
US
United States
Prior art keywords
pistons
steam
piston
abutment
packing
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
Publication date
Application granted granted Critical
Publication of US261215A publication Critical patent/US261215A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01CROTARY-PISTON OR OSCILLATING-PISTON MACHINES OR ENGINES
    • F01C19/00Sealing arrangements in rotary-piston machines or engines
    • F01C19/02Radially-movable sealings for working fluids
    • F01C19/04Radially-movable sealings for working fluids of rigid material

Definitions

  • FIG. 1 is a longitudinal section of the engine in line w or of Fig. 2.
  • Fig. 2 is a horizontal section inline y y of Fig. 1.
  • Fig.3 is a plan with the top removed, lookingdown from line 2 z of Fig. 1.
  • Fig. 4 is a perspective view of one of the ahutments removed from its arm.
  • My improvement relates to rotary engines in which two eccentric pistons working on the same shaft are used, and a slide-valve is employed which alternately covers and uncovers the ports which admit the steam.
  • the invention consists in a peculiar construction of the pistons and their connecting parts, as hereinafter more fully described.
  • a A are the two eccentric pistons, attached to the single shaft B, and revolving in separate chambers of the cylinder.
  • Each of the pistons has a thin packing, a, set radially into a groove in the periphery of the piston, its outer edge resting against the side of the chamber, as clearly shown in'Fig. 1.
  • C O are two arms, pivoted at b b so as to move up and down
  • D D are blocks foiming abutments, connected with the arms by joints or hinges, and having concave faces which fit closely on the periphery of the pistons and prevent the steam from escaping past them to the exhaust. The abntments rise and fall with the pistons as the latter revolve, and always preserve their contact.
  • 0 e are heads of the arms, made concentric with thepivots b b, and working closely within concentric portions of the chambers above the pistons.
  • d d are thin packings, set into the concentric portions of the chambers and hearin g against the concentric heads.
  • two packing-surfaces are made-first, of the abutments on top of the pistons, and, second, of the arms 0 (J in the chambers above the pistons. This is necessary, since a portion of the steam passes over the abutment as it moves up and down with the eccentricity of the piston, and if the arm were not packed above the steam would pass over and escape into the exhaust.
  • ff are the induction-valve openings admitting live steam to the two chambers.
  • g is a slide-valve, which rests above the openin gs and alternately covers and uncovers them.
  • the slide-valve is connected by a link, h, with an arm, 2 of a rock-shaft, it, operated by suitable lever-work connected with the main shaft.
  • Z is a slotin each piston, extending from the outside toward the center in a radial direction, and extending across the whole width of the piston.
  • m is a cavity in the face of the piston, back of the slot, and communicating with it, as shown in Fig. 1. The slot and the cavity lie directly back of the packing a, before described.
  • a is an exhaust port at the rear of the piston and abutment, which allows the steam to escape when the piston is forced around to proper position.
  • the induction-portf of each chamber is opened by the slidevalve at the moment that the packing a has passed the forward end of the abutment, and it remains open till the piston has made a partial revolution,
  • r r are loose rims fitting in circular grooves in the sides G G, and forming the periphery of the cylinder.
  • the circular grooves are of such depth as to allow the sides to be properly clamped against the pistons, arms, and abutments, as before described.

Description

(No Model.)
V. H. FELT.
ROTARY ENGINE.
Patented July 18, 1882.
UNITED STATES PATENT OFFICE.
VANDERLYN H. FELT, OF KENDALL, NEW YORK.
ROTARY ENGINE.
SPECIFICATION forming part of Letters Patent No. 261,215, dated July 18, 1882.
Application filed July 23, 1am. (No model.)
To all whom it may concern:
Be it known that I, VANDERLYN H. FELT, of Kendall, Orleans county, New York, have invented a certain new and useful Improvement in Rotary Engines; and I do hereby declare that the following is a full, clear, and exact description of the same, reference being had to the accompanying drawings, in which- Figure 1 is a longitudinal section of the engine in line w or of Fig. 2. Fig. 2 is a horizontal section inline y y of Fig. 1. Fig.3 is a plan with the top removed, lookingdown from line 2 z of Fig. 1. Fig. 4 is a perspective view of one of the ahutments removed from its arm.
My improvement relates to rotary engines in which two eccentric pistons working on the same shaft are used, and a slide-valve is employed which alternately covers and uncovers the ports which admit the steam.
The invention consists in a peculiar construction of the pistons and their connecting parts, as hereinafter more fully described.
In the drawings, A A are the two eccentric pistons, attached to the single shaft B, and revolving in separate chambers of the cylinder. Each of the pistons has a thin packing, a, set radially into a groove in the periphery of the piston, its outer edge resting against the side of the chamber, as clearly shown in'Fig. 1.
C O are two arms, pivoted at b b so as to move up and down, and D D are blocks foiming abutments, connected with the arms by joints or hinges, and having concave faces which fit closely on the periphery of the pistons and prevent the steam from escaping past them to the exhaust. The abntments rise and fall with the pistons as the latter revolve, and always preserve their contact.
0 e are heads of the arms, made concentric with thepivots b b, and working closely within concentric portions of the chambers above the pistons.
d d are thin packings, set into the concentric portions of the chambers and hearin g against the concentric heads. By this means two packing-surfaces are made-first, of the abutments on top of the pistons, and, second, of the arms 0 (J in the chambers above the pistons. This is necessary, since a portion of the steam passes over the abutment as it moves up and down with the eccentricity of the piston, and if the arm were not packed above the steam would pass over and escape into the exhaust.
ff are the induction-valve openings admitting live steam to the two chambers.
gis a slide-valve, which rests above the openin gs and alternately covers and uncovers them. The slide-valve is connected by a link, h, with an arm, 2 of a rock-shaft, it, operated by suitable lever-work connected with the main shaft.
As the slide-valve is operated it admits steam alternately to the two chambers.
Z is a slotin each piston, extending from the outside toward the center in a radial direction, and extending across the whole width of the piston. m is a cavity in the face of the piston, back of the slot, and communicating with it, as shown in Fig. 1. The slot and the cavity lie directly back of the packing a, before described. The moment the packing a passes from under the abutment D the steam enters the slot 1, and from thence passes back into the cavity m, which is then under the foot of the abutment, and by this means the great pressure of the steam on the top of the abutment is to a certain extent balanced by the pressure of the steam on the under side of the abutment, enabling the piston to move with greater ease and freedom at the instant when the steam has the least pressure upon the piston itself. The steam,by thus extending back under the abutment, also gets greater surface .for pressure upon the piston forward of the shaft than it could get simply between the forward end of the abutment and the packing a if the slot and cavity were not used, so that at the moment the paekingpasses the steam-port additional force is obtained to drive the piston forward at the moment when it is most needed.
a is an exhaust port at the rear of the piston and abutment, which allows the steam to escape when the piston is forced around to proper position. The induction-portf of each chamber is opened by the slidevalve at the moment that the packing a has passed the forward end of the abutment, and it remains open till the piston has made a partial revolution,
which are connected by screw-rods p 19, so that by turning up nuts on the screw-rods the sides are made to clamp more or less tightly against the sides of the pistons,the arms, and the abutments. The sides of the piston, arm s, and abutments, and also the inner faces of the sides G G, are planed perfectly smooth, so that when the loose side pieces, Gr, are brought up against the working parts an accurate fit is made and a perfect packing produced, which will prevent the escape of steam.
r r are loose rims fitting in circular grooves in the sides G G, and forming the periphery of the cylinder. The circular grooves are of such depth as to allow the sides to be properly clamped against the pistons, arms, and abutments, as before described.
Having described my invention, I claiml. In a compound rotary engine provided with two cylinders, two eccentric pistons, and a slide-valve, the pistons A, constructed with a slot, 1, and cavity 122 in its periphery, the cavity extending back under the abutment and allowing entrance of steam therein at the moment the packing passes the forward end of the abutment, as shown and described, and for the purpose specified.
2. In a rotary engine provided with two cylinders, two eccentric pistons, anda slide-valve, the combination, with the eccentric piston A, of the arm 0 and abutment D, the abutment being jointed to the arm so as to pack on the piston, and the arm being provided with a head, 0, concentric with its pivot and resting against a packing, d, of the chamber, whereby a packing is made for the arm above the abutment, as shown and described, and for the purpose specified.
3. In a rotary engine,the combination, with the pistons A A, arms 0 O, and abutments D D, of the two loose sides G G, connected by screw-rods p p, and the loose circular rims rr, fitting in grooves of said sides, whereby the casing of the engine can be made to clamp to the sides of the pistons, arms, and abutments to pack the same, as herein shown and described.
In witness whereof I have hereunto signed my name in the presence of two subscribing witnesses.
VANDERLYN HOWARD FELT.
Witnesses:
CHAS. A. FELT, LYSANDER B. FELT.
US261215D Vanderlyn h Expired - Lifetime US261215A (en)

Publications (1)

Publication Number Publication Date
US261215A true US261215A (en) 1882-07-18

Family

ID=2330492

Family Applications (1)

Application Number Title Priority Date Filing Date
US261215D Expired - Lifetime US261215A (en) Vanderlyn h

Country Status (1)

Country Link
US (1) US261215A (en)

Similar Documents

Publication Publication Date Title
US261215A (en) Vanderlyn h
US741617A (en) Rotary engine.
US140914A (en) Improvement in rotary steam-engines
US781342A (en) Rotary engine.
US790264A (en) Rotary engine.
US254737A (en) Rotary steam-engine
US727677A (en) Rotary steam-engine.
US263573A (en) Rotary engine
US798485A (en) Rotary engine.
US478843A (en) Alexander francis garden brown
US158222A (en) Improvement in rotary engines and pumps
US713443A (en) Rotary engine.
US302316A (en) Rotary steam-engine
US650339A (en) Rotary steam-engine.
US600753A (en) Rotary engine
US268522A (en) Half to mathew macdotigall
US448213A (en) Eighteenths to thorkild wilson
US633730A (en) Rotary steam-engine.
US732280A (en) Rotary fluid-pressure engine.
US287379A (en) Rotary steam-engine
US810601A (en) Rotary engine.
US687514A (en) Rotary engine.
US276235A (en) frazier
US679129A (en) Rotary engine.
US299260A (en) price