US164583A - Improvement in grinding-machines - Google Patents

Improvement in grinding-machines Download PDF

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US164583A
US164583A US164583DA US164583A US 164583 A US164583 A US 164583A US 164583D A US164583D A US 164583DA US 164583 A US164583 A US 164583A
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grinding
shaft
stones
rack
machines
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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
    • B24B7/00Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor
    • B24B7/20Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground
    • B24B7/22Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground for grinding inorganic material, e.g. stone, ceramics, porcelain
    • B24B7/24Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground for grinding inorganic material, e.g. stone, ceramics, porcelain for grinding or polishing glass
    • 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
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/068Hollow spindle contains

Definitions

  • My invention relates to machines for grinding metal surfaces, such as those of saws, knife-blades, carriage-springs, 850., and consists in a novel construction, combination, and arrangement of parts which have for their object to produce a simple and efficient machine, capable of automatically feeding and grinding to different gages or thicknesses on their length, saw and other blades, as will be fully hereafter set forth.
  • Figure 1 is a side elevation; Fig. 2, an end elevation; Fig. 3, a vertical longitudinal section, and the remaining figures parts in detail.
  • a A is the frame of the machine; B B B B, bearings carrying the horizontal hollow shafts C C, which are capable of a longitudinal movement in them. These bearings are pivoted at a a to the standards D D secured to the frame or table E, so that their inner ends can rise and fall in the arc of a circle with the pin a for a center, (as shown in Fig. 4.)
  • the inner extremities of the shafts C C have secured to them the heads or cylinders F F, in which the chambered cylindrical grindstones G G are secured by set-screws b b. H11 are. slots cut through the periphery of the heads F for the insertion of a tool to set the stones out as they wear away.
  • 0 c are pulleys for driving the stones.
  • each of the shafts C is secured byaset-screwa grooved collar, I, in the groove of which a yoke or fork, d, on the upper ends of the armsJ J straddles.
  • These arms are pivoted at their middle to the frame A, and at their lower extremities are pivoted to sleevenuts K, traveling on the right and left screwthreads cut on each end of the shaft L, which is supported in the bearings e e, and provided at one extremity with a crank, f.
  • M N are the feeding-rolls situated in pairs on each side of the grinding-cylinders and in close proximity thereto. Their upper extremities have bearings in the frames 0 0.
  • One of the hearings in each pair of rolls is a spring-box, g, to allow the roller to accommodate itself to varying thicknesses of blades.
  • Each pair of rolls is geared together at its lower extremity by the pinions h h,and they are driven by a rack, P, gearing with one of the gears h.
  • This rack reciprocates transversely of the machine, and is operated by the pinion 't' on the shaft j, gearing with teeth on the under side of the rack P.
  • the pinion 6 slides on the shaft j, and is engaged therewith by the clutch 70, which is operated by the lever l.
  • m is a pulley at the outer extremity of the shaft j.
  • the bearings carrying the shafts C C are, as before stated, pivoted at their outer extremities to the uprights D D, and work through slots at in the table.
  • the inner bearings B B extend downward below the table, and from their lower ends an arm, Q, projects horizontally, and is provided at its extremity with an anti-friction roll.
  • R R are pattern-bars secured to the sides of the rack P, on which patterns the extremity of the arms Q Q rest.
  • any ordinary coupling may be employed.
  • the chamber G in the stone G forms a reservoir within the stone for the water, from which it issues to the circumferonce.
  • the pinion on the shaft j gradually advances the rack P, which operates the feed-rolls and feeds the saw, until the incline portions of the patterns R R, secured to the sides of the rack-frame P, arrive at the arm Q, projecting from and supporting the end of the bearings B B when the stones are gradually lowered by these inclines, so that their upper points 0 0, Fig. 4, approach each other, while the lower points 19 p, which are situated in the vicinity of the straight line connecting the centers aa, change their distance from one another imperceptibly, so that while the back of the saw will be ground thinner at the point q than it will at the point r, yet the gage of the teeth will remain unaltered for the whole length.
  • the collars I which are secured to the shafts O O by set-screws s s, can be moved out on the shaft, which will allow of the stones being fed in. After they have worn to the head F they can be set out by an instrument inserted through the slots H H in the heads F F.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Inorganic Chemistry (AREA)
  • Mechanical Engineering (AREA)
  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)

Description

. '2 Sheets--Sheet1. E. MORRIS. Grinding-Machine.
Patented Junel5, 1875.
Whwssws.
S QNQNOLOC kf THE GRAPHIC C0.PHOT0 L!TH.39&4I PARK PLACE.N.Y
2 Sheets--Sheet 2. E. MORRIS.
Grinding-Machine. q No, 164,583 Patented Junel5,l875.
Wmm ks.
'gwmav W M THE GRAPHIC C(LPHOTO'LITI-LSBAM PARK PLAOLNY.
UNITED STATES PATENT OFFICE.
ELI MORRIS, OF NEW HAVEN, CONNECTICUT.
IMPROVEMENT IN GRINDING-MACHINES.
Specification forming part of Letters Patent No. 164,583, dated June 15, 1875; application filed May 23, 187-4.
To all whom it may concern:
Be it known that I, ELI MORRIS, of New Haven, in the county of New Haven and State of Connecticut, have invented an Improved Machine for Grinding Metal Surfaces, of which the followingis a specification:
My invention relates to machines for grinding metal surfaces, such as those of saws, knife-blades, carriage-springs, 850., and consists in a novel construction, combination, and arrangement of parts which have for their object to produce a simple and efficient machine, capable of automatically feeding and grinding to different gages or thicknesses on their length, saw and other blades, as will be fully hereafter set forth.
Figure 1 is a side elevation; Fig. 2, an end elevation; Fig. 3, a vertical longitudinal section, and the remaining figures parts in detail.
A A is the frame of the machine; B B B B, bearings carrying the horizontal hollow shafts C C, which are capable of a longitudinal movement in them. These bearings are pivoted at a a to the standards D D secured to the frame or table E, so that their inner ends can rise and fall in the arc of a circle with the pin a for a center, (as shown in Fig. 4.) The inner extremities of the shafts C C have secured to them the heads or cylinders F F, in which the chambered cylindrical grindstones G G are secured by set-screws b b. H11 are. slots cut through the periphery of the heads F for the insertion of a tool to set the stones out as they wear away. 0 c are pulleys for driving the stones.
On the outer end of each of the shafts C is secured byaset-screwa grooved collar, I, in the groove of which a yoke or fork, d, on the upper ends of the armsJ J straddles. These arms are pivoted at their middle to the frame A, and at their lower extremities are pivoted to sleevenuts K, traveling on the right and left screwthreads cut on each end of the shaft L, which is supported in the bearings e e, and provided at one extremity with a crank, f. M N are the feeding-rolls situated in pairs on each side of the grinding-cylinders and in close proximity thereto. Their upper extremities have bearings in the frames 0 0. One of the hearings in each pair of rolls is a spring-box, g, to allow the roller to accommodate itself to varying thicknesses of blades. Each pair of rolls is geared together at its lower extremity by the pinions h h,and they are driven by a rack, P, gearing with one of the gears h. This rack reciprocates transversely of the machine, and is operated by the pinion 't' on the shaft j, gearing with teeth on the under side of the rack P. The pinion 6 slides on the shaft j, and is engaged therewith by the clutch 70, which is operated by the lever l. m is a pulley at the outer extremity of the shaft j. The bearings carrying the shafts C C, are, as before stated, pivoted at their outer extremities to the uprights D D, and work through slots at in the table. The inner bearings B B extend downward below the table, and from their lower ends an arm, Q, projects horizontally, and is provided at its extremity with an anti-friction roll. R R are pattern-bars secured to the sides of the rack P, on which patterns the extremity of the arms Q Q rest. To connect the outer ends of the hollow shafts C C with a watersupply pipe any ordinary coupling may be employed. The chamber G in the stone G forms a reservoir within the stone for the water, from which it issues to the circumferonce.
The operation of the machine will be as follows: It having been set in motion, a sawplate is introduced between the rollers M N, Whicl1,by the spring-boxes g g adjust themselves to its thickness and pass it in between the stones G G, which are then set up against it by turning the screw-shaft L in a direction to run the sleeve-nuts K K out, and throw in the upper ends of the arms J J. The pinion on the shaft j gradually advances the rack P, which operates the feed-rolls and feeds the saw, until the incline portions of the patterns R R, secured to the sides of the rack-frame P, arrive at the arm Q, projecting from and supporting the end of the bearings B B when the stones are gradually lowered by these inclines, so that their upper points 0 0, Fig. 4, approach each other, while the lower points 19 p, which are situated in the vicinity of the straight line connecting the centers aa, change their distance from one another imperceptibly, so that while the back of the saw will be ground thinner at the point q than it will at the point r, yet the gage of the teeth will remain unaltered for the whole length. After the stones have been so reduced by wear that they cannot be set up to the work by the shaft L,the collars I, which are secured to the shafts O O by set-screws s s, can be moved out on the shaft, which will allow of the stones being fed in. After they have worn to the head F they can be set out by an instrument inserted through the slots H H in the heads F F.
It will be seen that the stone being confined and supported in the cylinder, there will be no possibility of its bursting from centrifugal force when revolving at the speed most advantageous for grinding, and that an indefinitely long stone may be used in the cylinder,
which, as it wears away, can be set out simply by loosening the binding-screws at one point and forcing the stone out.
By securing the pattern R to the rack P,whi-ch operates the feed-rollers M N, it will be seen that the feeding and gaging are directly connected with and dependent on each other for so long as the saw is being fed through, the rack is traveling and the pattern operating the stones to suit the various thicknesses of metal; but should the belt running the shaft j slip, the rack does not advance and the saw is not fed, nor are the stones operated by the pattern.
With slight modifications, my machine could be used for grinding circular saws,
knife-blades, carriage-springs, and other articles.
I claimv 1. The combination, with the cylindrical head F of the cylindricalchambered grindstone G, constructed and operating substantially in the manner described and specified.
2. The combination, with the cylindrical head]? and cylindrical-chambered grindstone G, of the hollow shaft 0 for supplying the stones with water at their center, constructed and operating substantially in the manner described and specified.
3. The combination, with the pivoted bearings B B, of the pattern R, for operating the ELI MORRIS.
Witnesses:
O. A. DURGIN, E. H. JOHNSON.
US164583D Improvement in grinding-machines Expired - Lifetime US164583A (en)

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