US339010A - Link-grinding machine - Google Patents

Link-grinding machine Download PDF

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Publication number
US339010A
US339010A US339010DA US339010A US 339010 A US339010 A US 339010A US 339010D A US339010D A US 339010DA US 339010 A US339010 A US 339010A
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Prior art keywords
link
arm
center
machine
grinding machine
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B3/00Sharpening cutting edges, e.g. of tools; Accessories therefor, e.g. for holding the tools
    • B24B3/60Sharpening cutting edges, e.g. of tools; Accessories therefor, e.g. for holding the tools of tools not covered by the preceding subgroups
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23FMAKING GEARS OR TOOTHED RACKS
    • B23F9/00Making gears having teeth curved in their longitudinal direction
    • B23F9/02Making gears having teeth curved in their longitudinal direction by grinding
    • B23F9/025Making gears having teeth curved in their longitudinal direction by grinding with a face-mill-type, i.e. cup-shaped, grinding wheel

Definitions

  • My invention relates to a machine for finishing links (for the valvemotion of reversingengines) to a true arc of a desired radius by means of a revolving emery-wheel at the outer end of a swinging arm of variable length. I attain this object by the mechanism illustrated in the accompanying drawings.
  • Figure 1 is a plan view oft-he entire machine
  • Fig. 3 is a vertical section of a part of the machine on a line, 1 to 2, Fig. 1.
  • Fig. 4 is alongitudinal section through the center of the swinging arm from 3 to 4, Fig. 1.
  • Fig. 5 is a crossscction of the swinging arm from 5 to 6, Fig. 1.
  • Fig. 6 shows a front elevation of the head 0, that carries the grinderspindle.
  • the bed A and standards 13 B constitute the frame-work of the machine.
  • the cylindrical piece a Fig. 3, which will be termed a center piece, as it forms a pivotal center and support around which the rest of the working parts of the machine will swing.
  • a To the outside ofthe center piece, a, is fitted another cylindrical piece, b, which is cast in connection with the arm 0.
  • the cylindrical piece I) has a slot planed longitudinally through on the back side in the center of the lugs, (shown at (2,) and the binding-screws e e are inserted for the purpose of taking up wear.
  • the arm a is planed on top, and the sliding arm f is fitted to it, as shown in Fig. 5.
  • On the outer end of the sliding army is bolted the head 0, to which is fitted the vertically-sliding piece 9, with the journal-bearings h h attached,for the purpose of carrying the grinderspindle z'.
  • On the lower end of the grinderspindle i is secured an emery-wheel, j, which the top of the head 0 and engages a nut attached to the sliding piece 9.
  • the screw has a hand-wheel, Z, attached to its upper end, by which it is operated when giving the emerywhcel its vertical adjustment.
  • the arm 0 the sliding arm f, the head 0, with the vertically-sliding piecegand journal bearings h h", carrying the grinder-spindle i,
  • the emery-wheclj located on the outer end of the sliding arm f, will swing in an arc whose radius shall equal the distance from the center of piece a to the center of the grinder-spindle z, and as the arm f has a longitudinal adjustment the radius of the arc in which the emerywheel j will swing can be varied to suit the work being operated upon.
  • the manner ofadjusting the armflongitudinally to suit different requirements of work is illustrated in the section, Fig.
  • the screw on within the arm f engages a nut attached to the arm 0, the screw at being operated by means of the hand-wheel a, the shaft to which the hand-wheel a is attached being connected with the screw by means of the bevel-gear and pinion 0 0".
  • the emery-wheel may be readily adjusted to the radius of any are within the compass of the machine.
  • the manner of belting used on the swinging arm is such that the sliding arm f may be moved longitudinally in either direction to its extreme limit without varying the length or tension of the belt.
  • a shaft Running. vertically through the machine, and carried by the journal-bearings 12, located in the center of the center piece, a, and p", bolted to the under side of the bed,(the bearings p 12 being shown in Fig. 3,) is a shaft. On its lower end is to be placed the drivingpulley, which will receive its motion from a countershaft conveniently located. On the upper end of this vertical shaft is the pulley g, from which the pulley s on the grinderspindle is belted. Starting from the pulley g,
  • the belt runs around the idler-pulley 1, located on the outer end of the arm 0, then back and around the idler-pulley r,attached to the sliding arm f, then around the pulley s on the grinder-spindle 43, located on the outer end of the armf, and back to the pulley q.
  • the slots shown on each side of the pulley 3, through the head 0 and vertically sliding piece g, Fig. 6, are provided for the belt in its passage around the pulley.
  • the bed A is planed on its top surface, and the platen t, to which Work is secured While being operated upon, is fitted to it so as to have longitudinal adjustment by means of the screw it.
  • a support, 1) for the outer end of the swinging arm, by which it may be kept on a true parallel line with the bed of the machine.
  • the sliding arm f is adjusted so that the center of the grinder-spindle 'i on its outer end will swing in an arc of a desired radius, a link being secured to the platen t, which is then moved along the bed A by means of the adjusting-screw '41 until the center line of the opening in the link corresponds with the center of the grinderspindle t.
  • the emery-wheel on the spin-dle i being of a diameter slightly less than the opening in the link, is, by means of the verticallyadjusting screw, lowered into it. Then, by
  • the emery-wheel while in motion, is brought into contact with one of the faces in the opening.
  • the arm is then swung around, so that the emery-wheel traverses from one end of the opening to the other, thus finishing the face to a true are.
  • the emerywheel is brought into contact with the opposite face of the opening and the operation repeated, and both faces are finished to a true are and perfectly parallel with each other.
  • the link-block may be ground to fit the opening by practically the same method employed in finishing that part of the link.
  • the combination, in a machine for finishing work in metal to a true are of any desired radius, of the center piece, a, the cylindrical piece I), with the radial arms 0 attached, the

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)

Description

(No Model.) 2 Sheets-Sheet 1.
B. E. PARKS.
LINK GRINDING MACHINE.
No. 339,010. atented Mar. 30, 1886.
IIIIIIIIIIIIII (No Model.) 2 Sheets-Sheet 2. B. E. PARKS.
LINK GRINDING MACHINE.
N0. 339,010. Patented Mar. 30, 1886.
BYRON E. PAR-KS, OF FERRYSBURG, MICHIGAN.
LINK-GRINDING MACHINE.
EPECIFICA'I'ION forming part of Letters Patent No. 339,010, dated March 30, 1886.
Application filed April 20, 181 .5. Serial No. 162,860. (No model.)
To all whom it may concern.-
Be it known that I, BYRON E. PARKS, a citizen of the United States, residing at Ferrysburg, in the county of Ottawa and State of Michigan, have invented a new and useful Link-Grinding Machine, of which the following is a specification.
My invention relates to a machine for finishing links (for the valvemotion of reversingengines) to a true arc of a desired radius by means of a revolving emery-wheel at the outer end of a swinging arm of variable length. I attain this object by the mechanism illustrated in the accompanying drawings.
Figure 1 is a plan view oft-he entire machine,
and Fig. 2 a side elevation. Fig. 3 is a vertical section of a part of the machine on a line, 1 to 2, Fig. 1. Fig. 4is alongitudinal section through the center of the swinging arm from 3 to 4, Fig. 1. Fig. 5 is a crossscction of the swinging arm from 5 to 6, Fig. 1. Fig. 6 shows a front elevation of the head 0, that carries the grinderspindle.
Similar letters refer to similar parts throughout the several views.
The bed A and standards 13 B constitute the frame-work of the machine. To the bed is bolted the cylindrical piece a, Fig. 3, which will be termed a center piece, as it forms a pivotal center and support around which the rest of the working parts of the machine will swing. To the outside ofthe center piece, a, is fitted another cylindrical piece, b, which is cast in connection with the arm 0.
The cylindrical piece I) has a slot planed longitudinally through on the back side in the center of the lugs, (shown at (2,) and the binding-screws e e are inserted for the purpose of taking up wear.
The arm a is planed on top, and the sliding arm f is fitted to it, as shown in Fig. 5. On the outer end of the sliding army is bolted the head 0, to which is fitted the vertically-sliding piece 9, with the journal-bearings h h attached,for the purpose of carrying the grinderspindle z'. On the lower end of the grinderspindle i is secured an emery-wheel, j, which the top of the head 0 and engages a nut attached to the sliding piece 9. The screw has a hand-wheel, Z, attached to its upper end, by which it is operated when giving the emerywhcel its vertical adjustment.
The arm 0, the sliding arm f, the head 0, with the vertically-sliding piecegand journal bearings h h", carrying the grinder-spindle i,
, attached as previously described, and vertical and longitudinal adjusting-screws, with proper hand-wheels for operating them, constitute the swingi ng-ar1n arrangement of the machine, and may be swung through an arc of any number of degrees of a circle, according to the requirements of work being operated upon, the center piece, a, forming the pivotal center around which it swings. It will be seen that the emery-wheclj, located on the outer end of the sliding arm f, will swing in an arc whose radius shall equal the distance from the center of piece a to the center of the grinder-spindle z, and as the arm f has a longitudinal adjustment the radius of the arc in which the emerywheel j will swing can be varied to suit the work being operated upon.
The manner ofadjusting the armflongitudinally to suit different requirements of work is illustrated in the section, Fig. The screw on within the arm f engages a nut attached to the arm 0, the screw at being operated by means of the hand-wheel a, the shaft to which the hand-wheel a is attached being connected with the screw by means of the bevel-gear and pinion 0 0". By this means the emery-wheel may be readily adjusted to the radius of any are within the compass of the machine.
The manner of belting used on the swinging arm is such that the sliding arm f may be moved longitudinally in either direction to its extreme limit without varying the length or tension of the belt.
Running. vertically through the machine, and carried by the journal-bearings 12, located in the center of the center piece, a, and p", bolted to the under side of the bed,(the bearings p 12 being shown in Fig. 3,) is a shaft. On its lower end is to be placed the drivingpulley, which will receive its motion from a countershaft conveniently located. On the upper end of this vertical shaft is the pulley g, from which the pulley s on the grinderspindle is belted. Starting from the pulley g,
the belt runs around the idler-pulley 1, located on the outer end of the arm 0, then back and around the idler-pulley r,attached to the sliding arm f, then around the pulley s on the grinder-spindle 43, located on the outer end of the armf, and back to the pulley q. The slots shown on each side of the pulley 3, through the head 0 and vertically sliding piece g, Fig. 6, are provided for the belt in its passage around the pulley.
The bed A is planed on its top surface, and the platen t, to which Work is secured While being operated upon, is fitted to it so as to have longitudinal adjustment by means of the screw it. To the platen t is bolted a support, 1), for the outer end of the swinging arm, by which it may be kept on a true parallel line with the bed of the machine.
In using this machine the sliding arm f is adjusted so that the center of the grinder-spindle 'i on its outer end will swing in an arc of a desired radius, a link being secured to the platen t, which is then moved along the bed A by means of the adjusting-screw '41 until the center line of the opening in the link corresponds with the center of the grinderspindle t. The emery-wheel on the spin-dle i being of a diameter slightly less than the opening in the link, is, by means of the verticallyadjusting screw, lowered into it. Then, by
means of the longitudinal adjustment, explained previously, the emery-wheel, while in motion, is brought into contact with one of the faces in the opening. The arm is then swung around, so that the emery-wheel traverses from one end of the opening to the other, thus finishing the face to a true are. Then, by a slight turn of the hand-wheel n, the emerywheel is brought into contact with the opposite face of the opening and the operation repeated, and both faces are finished to a true are and perfectly parallel with each other.
The link-block may be ground to fit the opening by practically the same method employed in finishing that part of the link.
What I claim as my invention, and desire to secure by Letters Patent, is
The combination, in a machine for finishing work in metal to a true are of any desired radius, of the center piece, a, the cylindrical piece I), with the radial arms 0 attached, the
sliding armf, and its longitudinal adjusting- BYRON E. PARKS.
Witnesses:
H. O. PEARSON, O. A; PEARSON.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180366646A1 (en) * 2015-07-27 2018-12-20 Nippon Chemical Industrial Co., Ltd. Additive for light-emitting layer in light-emitting electrochemical cell, composition for forming light-emitting layer in light-emitting electrochemical cell, and light-emitting electrochemical cell

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180366646A1 (en) * 2015-07-27 2018-12-20 Nippon Chemical Industrial Co., Ltd. Additive for light-emitting layer in light-emitting electrochemical cell, composition for forming light-emitting layer in light-emitting electrochemical cell, and light-emitting electrochemical cell

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