US17943A - Propeller-blade - Google Patents

Propeller-blade Download PDF

Info

Publication number
US17943A
US17943A US17943DA US17943A US 17943 A US17943 A US 17943A US 17943D A US17943D A US 17943DA US 17943 A US17943 A US 17943A
Authority
US
United States
Prior art keywords
blade
wheel
hub
propeller
lines
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 US17943A publication Critical patent/US17943A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/26Rotors specially for elastic fluids
    • F04D29/32Rotors specially for elastic fluids for axial flow pumps
    • F04D29/38Blades
    • F04D29/384Blades characterised by form

Definitions

  • the propeller blades on their outer periphery or entering edge, when revolving describe the surface of a half globe (or nearly so) whatever may be the diameter ofthe wheel or the pitch of the blades.
  • the blade is made convex, concave and straight-that is to say, the blade is convex on its Outside surface, on lines drawn in any direction across it. Straight lines drawn on the inside or face and lengthwise of the blade, and parallel with the plane of the wheels axis, die wholly in the surface. Lines crossing these show a concave surface.
  • the propeller has three wings or blades and three distinguishing features.
  • Figure l is a perspective view.
  • Fig. 2 is a plan (front view) showing the front or outside surface of the blades.
  • Fig. 8 is a plan (rear view) showing the inside surface of the blades.
  • F igfi top view (partly perspective) placed so as to bring one blade directly over the shaft.
  • Fig. 5 top view (partly perspective) one blade being taken off above the hub.
  • Fig. 6, top view, one blade being cut oif close to the hub, to show its lines of connection to the hub.
  • R represents the inside or face of the blades, which face coincides with straight lines drawn lengthwise of the blade, and parallel with the plane of the wheels axis and also with curved lines drawn crosswise of the blade.
  • W represents the shaft or axis of the wheel, in each of the figures.
  • Y represents the hub in each figure.
  • X ig. 6
  • S T lines showing the connection of the blade X to the hub
  • H C (Fig. 3) central lines, between the points L, L. L, and parallel with the lines
  • F Gr. D E (Fig. 3) straight lines, running lengthwise of the blade and lying wholly on the surface
  • F G curved lines, running crosswise of the blade and lying wholly on the surface
  • N, N, N starting points of the blades as they rise from the hub
  • the line from N to L or entering edge of the blade determines the form of the wheel.
  • the rear edge of the blade from L (or point of greatest diameter) returning to the rear end of the hub may be varied as desired without a departure from the principles of my invention.
  • the wheel (or the pattern for the wheel) is then so constructed as to fit in to this hollow half globe, that is to say, the front end of the hub occupies the lesser circle and conforms to the sphericity of the area thereof.
  • the outer line or entering edge of the blade is made to touch the surface of the hollow half globe, on a line drawn from the starting point N, on the front end of the hub to the center of the blade or point L, whatever may be the width of the blade or its pitch, so that the wheel when revolving will describe the surface of a half globe (or nearly so).
  • my propeller Wheel has three distinguishing features, to Wit: First, the spherical or globe feature; second, the straight line feature With respect to the face of the blade; third, the curved line feature with respect to the face of the blade.
  • the propeller Wheel may be molded, cast, fitted up and used in the usual manner.
  • a propeller blade constructed in such a manner as to embody said principles substantially as herein set forth.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Polishing Bodies And Polishing Tools (AREA)

Description

M70 f f N. PETERS. PHDTO-LITHOGRAPHER. WASHINGTON. n. c,
-UNITED STATES PATENT OFFICE.
GEORGE W. SWAR'IZ, OF BUFFALO, NEV YORK.
PROPELLER-BLADE.
' Specification of Letters Patent No. 17,943, dated August 4, 1857.
To all 'whom t may concern Be it known that I, GEORGE W. SWARTZ, of the city of Buffalo, in the county of Erie and State of New York, have invented a new and Improved Propeller-Blade; and I do hereby declare that the following is a full and exact description thereof, reference being had to the accompanying drawings and the letters of reference marked thereon.
The propeller blades on their outer periphery or entering edge, when revolving describe the surface of a half globe (or nearly so) whatever may be the diameter ofthe wheel or the pitch of the blades.
The blade is made convex, concave and straight-that is to say, the blade is convex on its Outside surface, on lines drawn in any direction across it. Straight lines drawn on the inside or face and lengthwise of the blade, and parallel with the plane of the wheels axis, die wholly in the surface. Lines crossing these show a concave surface.
To enable others skilled in the art to make and use my invention, I will proceed to describe its construction and operation.
The propeller has three wings or blades and three distinguishing features.
Figure l, is a perspective view. Fig. 2, is a plan (front view) showing the front or outside surface of the blades. Fig. 8, is a plan (rear view) showing the inside surface of the blades. F igfi, top view (partly perspective) placed so as to bring one blade directly over the shaft. Fig. 5, top view (partly perspective) one blade being taken off above the hub. Fig. 6, top view, one blade being cut oif close to the hub, to show its lines of connection to the hub. Fig. 7, section of blade on line A B, (Fig. 6,) showing the curve crosswise of the blade.
The projection of the blade from the hub is shown in each of the'ligures.
In each of the figures the letter P, represents the outside or convex surface of the blades.
R, represents the inside or face of the blades, which face coincides with straight lines drawn lengthwise of the blade, and parallel with the plane of the wheels axis and also with curved lines drawn crosswise of the blade.
W, represents the shaft or axis of the wheel, in each of the figures.
Y, represents the hub in each figure.
X, ig. 6) represents one blade (face side up) as removed or disconnected from the hub; S T, lines showing the connection of the blade X to the hub; H C, (Fig. 3) central lines, between the points L, L. L, and parallel with the lines F Gr. D E, (Fig. 3) straight lines, running lengthwise of the blade and lying wholly on the surface; F G, curved lines, running crosswise of the blade and lying wholly on the surface; N, N, N, starting points of the blades as they rise from the hub; L, L, L, (Fig. 2) center of bladesor points of greatest diameter.
The line from N to L or entering edge of the blade determines the form of the wheel. The rear edge of the blade from L (or point of greatest diameter) returning to the rear end of the hub may be varied as desired without a departure from the principles of my invention.
My mode of constructing my wheel is as follows:
The diameter of the wheel being given, I proceed to draft or construct a hollow half globe the diameter of whose great circle shall be the diameter of the wheel required. I then divide this half globe on its great circle into three equal parts, as represented by the points L, L, L, Figs. 2 and 3. These points indicate the center of the blades on the line of greatest diameter. I then make a lesser circle inclosing the pole of the half globe, the diameter of which shall be the diameter of the hub. This circle I also divide into three equal parts represented by the points N, N, N, Fig. 2, which points indicate the starting points of the blades as they rise from the hub. The wheel (or the pattern for the wheel) is then so constructed as to fit in to this hollow half globe, that is to say, the front end of the hub occupies the lesser circle and conforms to the sphericity of the area thereof. The outer line or entering edge of the blade is made to touch the surface of the hollow half globe, on a line drawn from the starting point N, on the front end of the hub to the center of the blade or point L, whatever may be the width of the blade or its pitch, so that the wheel when revolving will describe the surface of a half globe (or nearly so).
The face or inside of the blade is made straight and concave, that is to say, lines (D E, Fig. 3,) drawn lengthwise of the blade and parallel with the plane of the wheels axis, are straight and lie wholly on the surface of the blade. Lines (F, G,) drawn crosswise of the blade are curved,
and lie Wholly in the surface, and show the blade to be concave or curved in the direction crossing the straight lines. These straight and curved lines Will be relatively the same With respect to the face of the blade Whatever may be the diameter of the `Wheel, or the length, Width, pitch or lead I' crease in the length of the blade, then the diameter of the hollow half globe, to Which the Wheel is to be conformed must be increased, so as to give the required diameter of Wheel With the required length of blade on any given circle less than the great circle. The length, Width and the pitch or lead of the blades may be varied at pleasure in the construction of the Wheel Without departing from the principles of construction herein set forth. Thus it Will be seen that my propeller Wheel has three distinguishing features, to Wit: First, the spherical or globe feature; second, the straight line feature With respect to the face of the blade; third, the curved line feature with respect to the face of the blade. These three features characterize the principles of my invention and each feature is considered independent of the other.
A pattern being constructed according to the principles herein set forth, the propeller Wheel may be molded, cast, fitted up and used in the usual manner.
Having now fully described the nature of my invention and the principles upon Which it is based, What I claim and desire to secure by Letters Patent, is
A propeller blade constructed in such a manner as to embody said principles substantially as herein set forth.
GEORGE W. SWARTZ.
Witnesses:
E. B. FORBUSH, F. C. WHITE.
US17943D Propeller-blade Expired - Lifetime US17943A (en)

Publications (1)

Publication Number Publication Date
US17943A true US17943A (en) 1857-08-04

Family

ID=2080832

Family Applications (1)

Application Number Title Priority Date Filing Date
US17943D Expired - Lifetime US17943A (en) Propeller-blade

Country Status (1)

Country Link
US (1) US17943A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2754919A (en) * 1953-04-27 1956-07-17 John R Blue Propeller

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2754919A (en) * 1953-04-27 1956-07-17 John R Blue Propeller

Similar Documents

Publication Publication Date Title
US1179111A (en) Pocket-knife.
US17943A (en) Propeller-blade
US1117103A (en) Propeller.
US100466A (en) Improvement in toys
US24508A (en) Improved screw-propeller
US17276A (en) Propeller-blade
US1559696A (en) Pin wheel
US117991A (en) Improvement in paddle-wheels
US51446A (en) Improvement in the construction of screw-propeller blades
US342011A (en) Screw-propeller
US701242A (en) Screw-propeller.
US1030794A (en) Scythe.
US25560A (en) Improvement in reels for harvesters
US1160884A (en) Propeller.
US4193A (en) Leonard phleger
US7490A (en) Spibal churn-dasher
US41820A (en) Pttelhs
US38121A (en) Improved propeller-blades
US26962A (en) Henry b
US8696A (en) Sheaes
US619136A (en) Propeller
US40102A (en) Improvement in slate-pencil sharpeners
US138061A (en) Improvement in scissors
US56834A (en) Improved paddle-wheel
US89778A (en) Improvement in scythes