US464299A - Electric motor - Google Patents

Electric motor Download PDF

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US464299A
US464299A US464299DA US464299A US 464299 A US464299 A US 464299A US 464299D A US464299D A US 464299DA US 464299 A US464299 A US 464299A
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armature
electric motor
shaft
secured
pole
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K23/00DC commutator motors or generators having mechanical commutator; Universal AC/DC commutator motors
    • H02K23/40DC commutator motors or generators having mechanical commutator; Universal AC/DC commutator motors characterised by the arrangement of the magnet circuits

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  • This invention relates to new and useful improvements in dynamo-electric machines; and the invention consists in the construction, arrangement, and operation of different parts.
  • the object of my invention is principally to construct a standard electric motor which is compact, durable, and efficient, and not liable to get continually out of order when subjected to the variousincidents of wear and tear connected with the commercial use of such motors, and which as at present constructed are insufficiently protected or insufficiently insulated or liable to have their insulation destroyed by heating or lack of protection.
  • Figure 1 is a side elevation of my improved machine.
  • Fig. 2 is a vertical central cross-section thereof.
  • Fig. 3 is a detached elevation of the armature.
  • Fig. 4 is a longitudinal section of the armature.
  • Fig. 5 is a detached elevation of the armaturebody.
  • Fig. 6 is a detached elevation of one of the heads of the armature-body.
  • Fig. 7 is a detail section of one of the bearings.
  • A is the armature-shaft, preferably made of brass, integral with the head B, a similar head 0 being screw-threaded upon the shaft.
  • a series of iron disks D insulated from each other and from the heads by paper disks or other insulating material, and also insulated from the shaft by paper or other suitable material E, wound upon the shaft, the heads Band C projecting beyond the face of the disks D and provided with a series of rectangular notches F.
  • This body is wound lengthwise with a series of helices F in diametrically separate divisions engaging into the notches of the heads with the spaces between the helices on the face of the disks left open.
  • terminals of two adjacent divisions are looped together and connected to commutator-plates of a suitable commutator G, placed upon one end of the shaft of the armature. I place before Winding an insulating-covering of strips of mica between the helices and the iron disks to prevent any possibility of sliort-circuiting from defective insulation of the helices.
  • the ends of the helices are provided with a covering II, of canvas, leather, or other insulating material, and these coverings are secured in place upon the armature by binding-wires I, wrapped over the inner and outer edges of said covering, the latter being at the outer end tied upon the insulating-rings J, secured upon the armature or formed integral with the commutator-body, on the end on which the commutator is placed.
  • the covering H is preferably additionally coated with shellac, and this material is also used with the paper insulation between the disks D.
  • the field of force consists of the two polepieces N and S, the concave faces of which inclose the arm ature on top and bottom, respectively, each pole-piece being provided with two electro-magnets, the cores of which are integral with the pole-pieces and connected at the outer end by iron cross-bars K, which unite the electro-magnets and pole-pieces into a vertical rectangular frame at right angles to the axis of the armature, and a cast-iron base L is secured in a recess formed in the under side of the lower pole-piece.
  • the bearings for the armature-shaft are formed in the lower ends of the brackets M, which brackets are secured to the front and rear faces of the pole-pieces, respectively.
  • These bearin gs are preferably formed of tubular sleeves O of fiber, lined with a metal sleeve P, and detachably held in place by a setscrew Q.
  • the brushes R are secured to a suitable brushholder S, which in turn is adjustably secured to the bracket M.
  • V hat I claim as my invention is- 1.
  • a revolving arina- Preferably ture, of a field-of-force magnet composed of four electro-magnets arranged in pairs on opposite sides of said armature and having their inner ends united by pole-pieces extending above and below the top and bottom of said armature, respectively, and having their outer ends united by cross-bars to form a rectan" g'ular frame at right angles to the axis of the armature, a base secured in the recess formed in the under side of the lower pole-piece, and brackets secured to the pole-pieces and provided with insulated bearings for the armature-shaft, substantially as described.
  • an armature consisting of the armature-shaft A and clamped heads B and 0, made of non-magnetic material, the iron disks D, clamped be tween said heads and insulated therefrom and each other and from the armature-shaft,

Description

(No Model.)
H. A. PLORIAN. ELECTRIC MOTOR.
No. 464,299. Patented Dec. 1, 1891.
- UNITED STATES PATENT OFFICE.
' HERMAN A. FLORIAN, OF DETROIT, MICHIGAN, ASSIGNOR TO EDIVARD A.
FLORIAN, OF FOSTORIA, OHIO.
ELECTRIC MOTOR.
SPECIFICATION forming part of Letters Patent No. 464,299, dated December 1,1891.
Application filed January 6, 1891. Serial No. 376,925- (No model.)
To all whom it may concern:
Be it known that I, HERMAN A. FLORIAN, a citizen of the United States, residing at Detroit, in the county of \Vayne and State of Michigan, have invented certain new and useful Improvements in Electric Motors, of which the following is a specification, reference being had therein to the accompanying drawings.
This invention relates to new and useful improvements in dynamo-electric machines; and the invention consists in the construction, arrangement, and operation of different parts.
The object of my invention is principally to construct a standard electric motor which is compact, durable, and efficient, and not liable to get continually out of order when subjected to the variousincidents of wear and tear connected with the commercial use of such motors, and which as at present constructed are insufficiently protected or insufficiently insulated or liable to have their insulation destroyed by heating or lack of protection.
In the drawings, Figure 1 is a side elevation of my improved machine. Fig. 2 is a vertical central cross-section thereof. Fig. 3 is a detached elevation of the armature. Fig. 4 is a longitudinal section of the armature. Fig. 5 is a detached elevation of the armaturebody. Fig. 6 is a detached elevation of one of the heads of the armature-body. Fig. 7 is a detail section of one of the bearings.
A is the armature-shaft, preferably made of brass, integral with the head B, a similar head 0 being screw-threaded upon the shaft. Between the two heads are clamped a series of iron disks D, insulated from each other and from the heads by paper disks or other insulating material, and also insulated from the shaft by paper or other suitable material E, wound upon the shaft, the heads Band C projecting beyond the face of the disks D and provided with a series of rectangular notches F. This body is wound lengthwise with a series of helices F in diametrically separate divisions engaging into the notches of the heads with the spaces between the helices on the face of the disks left open. The
terminals of two adjacent divisions are looped together and connected to commutator-plates of a suitable commutator G, placed upon one end of the shaft of the armature. I place before Winding an insulating-covering of strips of mica between the helices and the iron disks to prevent any possibility of sliort-circuiting from defective insulation of the helices. The ends of the helices are provided with a covering II, of canvas, leather, or other insulating material, and these coverings are secured in place upon the armature by binding-wires I, wrapped over the inner and outer edges of said covering, the latter being at the outer end tied upon the insulating-rings J, secured upon the armature or formed integral with the commutator-body, on the end on which the commutator is placed. The covering H is preferably additionally coated with shellac, and this material is also used with the paper insulation between the disks D. In the open spaces between the helices I place, preferably, in the center short filling-blocks of wood F, as shown in Fig. 2, and then place a wrapping of paper or other insulating material centrally around the armature over these fillers, using bindingwire to hold it in place.
The field of force consists of the two polepieces N and S, the concave faces of which inclose the arm ature on top and bottom, respectively, each pole-piece being provided with two electro-magnets, the cores of which are integral with the pole-pieces and connected at the outer end by iron cross-bars K, which unite the electro-magnets and pole-pieces into a vertical rectangular frame at right angles to the axis of the armature, and a cast-iron base L is secured in a recess formed in the under side of the lower pole-piece.
The bearings for the armature-shaft are formed in the lower ends of the brackets M, which brackets are secured to the front and rear faces of the pole-pieces, respectively. These bearin gs are preferably formed of tubular sleeves O of fiber, lined with a metal sleeve P, and detachably held in place by a setscrew Q.
The brushes R are secured to a suitable brushholder S, which in turn is adjustably secured to the bracket M.
V hat I claim as my invention is- 1. The combination, with a revolving arina- Preferably ture, of a field-of-force magnet composed of four electro-magnets arranged in pairs on opposite sides of said armature and having their inner ends united by pole-pieces extending above and below the top and bottom of said armature, respectively, and having their outer ends united by cross-bars to form a rectan" g'ular frame at right angles to the axis of the armature, a base secured in the recess formed in the under side of the lower pole-piece, and brackets secured to the pole-pieces and provided with insulated bearings for the armature-shaft, substantially as described.
2. In a dynamo-electric machine an armature consisting of the armature-shaft A and clamped heads B and 0, made of non-magnetic material, the iron disks D, clamped be tween said heads and insulated therefrom and each other and from the armature-shaft,
HERMAN A. FLORIAN.
lVitnesses:
M. B. ODOGHERTY, P. M. IIULBERT.
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