US150829A - Improvement in machines for cleaning cog-wheels - Google Patents

Improvement in machines for cleaning cog-wheels Download PDF

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US150829A
US150829A US150829DA US150829A US 150829 A US150829 A US 150829A US 150829D A US150829D A US 150829DA US 150829 A US150829 A US 150829A
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wheel
cog
wheels
cleaning
spring
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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
    • B24B3/58Sharpening cutting edges, e.g. of tools; Accessories therefor, e.g. for holding the tools of tools having scalloped cutting edges

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  • My inventions relates to a machine designed to clean out the spaces between the cogs of cast gears by means of an emery-wheel rotating at high speed, the face of which has the shape of the space between the cogs.
  • the wheel to be operated on is placed on a vertical mandrel, supported by an adjustable sliding table in suitablebrackets, and is moved by a crank motion. up and down in front of the emery-wheel. As the mandrel, with the attached gear, passes up in front of the emerywheel the space is ground out.
  • a square table,O can slide fore and aft on the bed-frame in. guides, and it can be accurately adjusted by a screw, L, which is held in the side of the frame B, and which can move the table 0 by means of the nut M fastened to the table 0.
  • a hand-lever, X straddles the screw L at X between a collar, L, and the hand-crank, Z, and has a fulcrum at X
  • the table 0, with all attachments can be moved forward and backward, the forward movement being arrested by the collar'L on the bolt striking against the bed-frame B-a positive position which the table 0 shall have when the machine isin operation.
  • To-the table O is attached a strong bracket, D with guidesleeves E E for a vertical mandrel, S, the upper end of which reaches is adjustable, so that more or less throw can be got for the spindle S, and the cross-head F is movable to adjust the height of the collar T above the table 0.
  • the sleeve U on" the collar T is moving up and down on the guide-pin P, which is fastened to the table 0, parallel with the spindle S.
  • the e'mery-wheelG is hung withits shaft in the bearing F, and is driven by pulley K.
  • An elliptic spring, 0, acting as a pawl, is fastened to a small stud, Q, in the arm of the collar T, which moves with the mandrel S. The point of the spring rests against one of the cogs of the wheel W, to keep the wheel from turning one way.
  • An other elliptic spring, V, is fastened to the top of the table 0, and the point of the spring is turned upward and rests against the rim of the wheel with one half of the face of the spring; the other half, being a little longer, reaches between. the cogs.
  • the elliptic spring 0 and stationary elliptic spring V in combination with the Wheel W and spindle S, for the purpose of turning the wheelWone cog after each up and down stroke of the spindle S, substantially as specified.

Description

UNITED STATES PATENT Drrrcr.
' THOMAS coLnwnLL, or NEWBURG, NEW YORK.
IMPROVEMENT IN MACHINES FOR CLEANING COG-WHEELS.
.Spccifi :ation forming part of Letters Patent No. 150,829, dated May 12, 1574; appliraton filed January 30,1874.
To all whom it may concern:
Be it known that I, THOMAS UoLDwELL, of Newburg, in the county of Orange and State of New York, have invented a certain machine for cleaning the spaces between the cogs of cast gears and truing the same, of which the following is a specification:
My inventions relates to a machine designed to clean out the spaces between the cogs of cast gears by means of an emery-wheel rotating at high speed, the face of which has the shape of the space between the cogs. The wheel to be operated on is placed on a vertical mandrel, supported by an adjustable sliding table in suitablebrackets, and is moved by a crank motion. up and down in front of the emery-wheel. As the mandrel, with the attached gear, passes up in front of the emerywheel the space is ground out. On the downward stroke the gear is slipped one tooth forward by an arrangement of adjustable springs, thus presenting a fresh space to be cleaned out, and so on until all spaces are cleaned, when the operator removes the finished gear and replaces it by a fresh one. The machine is adjustable to clean gears of different pitch and size. Gears with different pitch require separate emery-wheels.
To describe the machine more perfectly I refer to the annexed drawing, in which- Figure l is a side view and partial section of the same. Fig. 2 represents a plan of the machine.
B B is an oblong bed frame, supported by legs A A. A square table,O,can slide fore and aft on the bed-frame in. guides, and it can be accurately adjusted by a screw, L, which is held in the side of the frame B, and which can move the table 0 by means of the nut M fastened to the table 0. A hand-lever, X, straddles the screw L at X between a collar, L, and the hand-crank, Z, and has a fulcrum at X By this lever the table 0, with all attachments, can be moved forward and backward, the forward movement being arrested by the collar'L on the bolt striking against the bed-frame B-a positive position which the table 0 shall have when the machine isin operation. To-the table O is attached a strong bracket, D with guidesleeves E E for a vertical mandrel, S, the upper end of which reaches is adjustable, so that more or less throw can be got for the spindle S, and the cross-head F is movable to adjust the height of the collar T above the table 0. To keep the spindle S from turning, the sleeve U on" the collar T is moving up and down on the guide-pin P, which is fastened to the table 0, parallel with the spindle S. The e'mery-wheelG is hung withits shaft in the bearing F, and is driven by pulley K. It is in line with the mandrel S, and its face is in conformity with the space between the cogs of the wheel to be cleaned. After the wheel W is put above the collar T on the spindle S the lever X is put in position, as drawn in Fig. 1, so that the collar L rests against the frame B, and the table 0 is adjusted by the screw L, so that the emerywheel G will grind to the bottom of the cogs, and by turning the crank-wheel N the mandrel S, with the wheel W, is lifted and lowered,
so that the emery-wheel can grind across the whole width of the face of the wheel W. On the upward movement the space is cleaned by the wheel. An elliptic spring, 0, acting as a pawl, is fastened to a small stud, Q, in the arm of the collar T, which moves with the mandrel S. The point of the spring rests against one of the cogs of the wheel W, to keep the wheel from turning one way. An other elliptic spring, V, is fastened to the top of the table 0, and the point of the spring is turned upward and rests against the rim of the wheel with one half of the face of the spring; the other half, being a little longer, reaches between. the cogs. As soon as'the wheel V7 is moving down it presses the spring V down, and elongates it, and the outside end of the spring resting against the cog turns the wheel W sufficiently on the spindle S to allow the spring 0 to slip over the next cog, so that when the wheel WV moves up on its next mot-ion it cannot turn back, and the point of the spring V is forced to slip over the next cog into the next space, but it carries the wheel 'W so far back that the pawl-spring O rests against the same side of the cog as it did on the last one. In this way the wheel will be turned one cog after each revolution of the crank-wheel-N, or after each up and down stroke of the wheel W or mandrel S.
As soon as the wheel is finished a pull on the handle X moves the table 0, with wheel W, back far enough to take the wheel W off and to put a new one on, which is bored out before to fit exactly over the upper end of the spindle S, or over a bush put around the spindle. The lever X is pushed back until the collar L strikes the bed, and the machine cleans the new wheel as it did the one before.
All wheels thus cleaned are perfectly alike, and are as good or even better than out gears, as these gears keep the hard outside crust, which wears a great while longer than the inside softer iron of cut gears.
What I claim as my invention, and desire to secure by Letters Patent, is-
1. The vertical spindle S, with collar T and cross-head l3, guided in sleeves E E and U, and moved by the crank-pin e in the crankwheel N, and connected to the adjustable table 0, in combination with the stationary emery-wheel G, substantially and for the purposes set forth.
2. The elliptic spring 0 and stationary elliptic spring V, in combination with the Wheel W and spindle S, for the purpose of turning the wheelWone cog after each up and down stroke of the spindle S, substantially as specified.
3. The lever X in connection with the screw L, for the purpose of moving and adjusting the table 0, substantially as specified.
THOMAS OOLDWELL.
itnesses:
E. 1?. 601mm, W. K. HAWKS.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020198457A1 (en) * 2001-04-30 2002-12-26 Tearney Guillermo J. Method and apparatus for improving image clarity and sensitivity in optical coherence tomography using dynamic feedback to control focal properties and coherence gating
US20060067620A1 (en) * 2004-09-29 2006-03-30 The General Hospital Corporation System and method for optical coherence imaging
US20060244973A1 (en) * 2003-10-27 2006-11-02 Seok-Hyun Yun Method and apparatus for performing optical imaging using frequency-domain interferometry
US20070239033A1 (en) * 2006-03-17 2007-10-11 The General Hospital Corporation Arrangement, method and computer-accessible medium for identifying characteristics of at least a portion of a blood vessel contained within a tissue using spectral domain low coherence interferometry

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020198457A1 (en) * 2001-04-30 2002-12-26 Tearney Guillermo J. Method and apparatus for improving image clarity and sensitivity in optical coherence tomography using dynamic feedback to control focal properties and coherence gating
US20060244973A1 (en) * 2003-10-27 2006-11-02 Seok-Hyun Yun Method and apparatus for performing optical imaging using frequency-domain interferometry
US20060067620A1 (en) * 2004-09-29 2006-03-30 The General Hospital Corporation System and method for optical coherence imaging
US20070239033A1 (en) * 2006-03-17 2007-10-11 The General Hospital Corporation Arrangement, method and computer-accessible medium for identifying characteristics of at least a portion of a blood vessel contained within a tissue using spectral domain low coherence interferometry

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