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US442283A - benton - Google Patents

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US442283A
US442283A US442283DA US442283A US 442283 A US442283 A US 442283A US 442283D A US442283D A US 442283DA US 442283 A US442283 A US 442283A
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Prior art keywords
wheel
metal
dressing
grooves
benton
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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
    • B24B39/00Burnishing machines or devices, i.e. requiring pressure members for compacting the surface zone; Accessories therefor
    • B24B39/02Burnishing machines or devices, i.e. requiring pressure members for compacting the surface zone; Accessories therefor designed for working internal surfaces of revolution
    • B24B39/023Burnishing machines or devices, i.e. requiring pressure members for compacting the surface zone; Accessories therefor designed for working internal surfaces of revolution the working tool being composed of a plurality of working rolls or balls
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/47Burnishing

Definitions

  • Figure 1 is an elevation of a ear-wheel to be dressed;
  • Fig. 2 an elevation of my improved sectional-faced wheel for dressing metal in position to dress the tread of the car- Wheel at Fig. 1.
  • Fig. 3 is a top or plan view of Figs. 1 and Fig. at is a section of Fig. 2 on line :10, with the addition of shaftbearings and drive-wheel.
  • Fig. 5 is a broken portion of the rim of the wheel at Fig. 2, showing different forms of grooves which separate the face of the wheel.
  • This invention relates to improvements in the faces of wheels which are employed to dress neetal surfaces by friction produced mostly by a high rate of speed. It is very desirable to obviate the adhesion of metal to the surface of the dressing-wheel and prevent such adhesive metal from cutting indentations in the tread of the car-wheel. This will be better understood when it. is known that the speed required to dress metal with metal is such that unless great care be taken the surfaces in contact will weld or approximate so nearly such a condition that the metal removed from the car-wheel will adhere to the dressingsurface. This condition is such that often the wheels have to be stopped to cool or have means applied to prevent the adhesion of the metal.
  • I employ Water to obviate in a measure thisobjection; but where the dressing-wheel has a full periphery the water leaves the surface so fast by centrifugal force that its benefit is not fully attained.
  • the metal removed from the article dressed is immediately thrown into the grooves, from where it escapes, leaving the dressing-surface smooth and clean, for the reason that the removed metal is prevented from mixing with itself.
  • the Water employed to keep the surfaces in contact cool is caught in the grooves and is maintained a much longer time on the wheel than when the dressing-surface is one continuous smooth periphery.
  • the grooves assist in no manner in dressing a surface otherwise than, as stated, in keeping the dressing-surface free from the metal separated from the dressed metal or article being dressed.
  • A represents a car-wheel
  • B the wheel employed to dress its tread, in relative positions for that purpose.
  • the grooves C C C, &c. are formed diagonally in the periphery of the wheel B. This is preferable, in that the removed metal is readily driven out at the side of the wheel; but grooves formed in the periphery parallel to the wheel-shaft will serve a good purpose and hold the water longer on the wheel.
  • the forms of the grooves in cross-section may be square, semicircular, inclined at their sides, or made ⁇ l-shapedg as most convenient to form by a milling-tool employed for that purpose.
  • F F are the bearings for the shaft G of the wheel, and H is the drive-pulley.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Tires In General (AREA)

Description

(No Model.)
O. H. BENTON.
SECTIONAL FAGED WHEEL FOR DRESSING METALS.
No. 442,283. Patented Dec. 9, 1890.
wsi I 2417 6 nZFr M, ,Q 0% fiw UNITED STATES PATENT OFFICE.
CHARLES II. BENTON, OF CHICAGO, ILLINOIS, ASSIGNOR OF ONE-THIRD TO BENJAMIN J. ABBOTT, OF SAME PLACE.
SECTIONALF'FACED WHEEL FOR DRESSING METAL.
SPECIFICATION forming part of Letters Patent No. 442,283, dated December 9, 1890.
Application filed August 19, 1890. Serial No. 362,417. (No model.)
To all whom itmay concern:
Be it known that 1, CHARLES H. BENTON, a citizen of the United States, and a resident of Chicago, county of Cook, and State of Illinois, have invented new and useful Improvements in Sectional'Faced \Vheels for Dressing Metal, of which the following is a specification, reference being had to the annexed drawings, illustrating the invention, in which Figure 1 is an elevation of a ear-wheel to be dressed; Fig. 2, an elevation of my improved sectional-faced wheel for dressing metal in position to dress the tread of the car- Wheel at Fig. 1.. Fig. 3 is a top or plan view of Figs. 1 and Fig. at is a section of Fig. 2 on line :10, with the addition of shaftbearings and drive-wheel. Fig. 5 is a broken portion of the rim of the wheel at Fig. 2, showing different forms of grooves which separate the face of the wheel.
This invention relates to improvements in the faces of wheels which are employed to dress neetal surfaces by friction produced mostly by a high rate of speed. It is very desirable to obviate the adhesion of metal to the surface of the dressing-wheel and prevent such adhesive metal from cutting indentations in the tread of the car-wheel. This will be better understood when it. is known that the speed required to dress metal with metal is such that unless great care be taken the surfaces in contact will weld or approximate so nearly such a condition that the metal removed from the car-wheel will adhere to the dressingsurface. This condition is such that often the wheels have to be stopped to cool or have means applied to prevent the adhesion of the metal. I employ Water to obviate in a measure thisobjection; but where the dressing-wheel has a full periphery the water leaves the surface so fast by centrifugal force that its benefit is not fully attained. By separating the periphery of the dressing-surface by suitable grooves the metal removed from the article dressed is immediately thrown into the grooves, from where it escapes, leaving the dressing-surface smooth and clean, for the reason that the removed metal is prevented from mixing with itself. Further than this, the Water employed to keep the surfaces in contact cool is caught in the grooves and is maintained a much longer time on the wheel than when the dressing-surface is one continuous smooth periphery. The grooves assist in no manner in dressing a surface otherwise than, as stated, in keeping the dressing-surface free from the metal separated from the dressed metal or article being dressed.
In the drawings, A represents a car-wheel, and B the wheel employed to dress its tread, in relative positions for that purpose.
Inasmuch as the art of dressing one article of metal by the contact of a metal Wheel running at a high rate of speed is old, the mechanism for giving motion to such wheel and feeding the article to the wheel is not at all necessary to an understanding of my improvement, for my improved wheel can be substituted for the ordinary wheel now in use in metal-dressing machines.
At Fig. 3 the grooves C C C, &c., are formed diagonally in the periphery of the wheel B. This is preferable, in that the removed metal is readily driven out at the side of the wheel; but grooves formed in the periphery parallel to the wheel-shaft will serve a good purpose and hold the water longer on the wheel. The forms of the grooves in cross-section may be square, semicircular, inclined at their sides, or made \l-shapedg as most convenient to form by a milling-tool employed for that purpose.
The several forms of grooves are shown at Fig. 5.
In the COl'lSl'lLlCtlOl] of the dressing-wheel the huh I) and web E are made of cast-iron, bolted to the steel rim B.
F F are the bearings for the shaft G of the wheel, and H is the drive-pulley.
Having thus described my invention, what I claim, and desire to secure by Letters Patent, is-
In metal wheels for dressing metal surfaces, a series of grooves formed in the periphery of such wheel for the escape of the removed metal and retaining water, as and for the purpose set forth.
CHARLES lI. BENTON.
\Vitn esses:
G. L. OHAPIN, 13. J. ABBOTT.
US442283D benton Expired - Lifetime US442283A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4330910A (en) * 1979-09-14 1982-05-25 Siemens Aktiengesellschaft Device and method for smoothening surfaces of disks for disk memories

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4330910A (en) * 1979-09-14 1982-05-25 Siemens Aktiengesellschaft Device and method for smoothening surfaces of disks for disk memories

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