US411614A - Ceushing mill - Google Patents

Ceushing mill Download PDF

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US411614A
US411614A US411614DA US411614A US 411614 A US411614 A US 411614A US 411614D A US411614D A US 411614DA US 411614 A US411614 A US 411614A
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Prior art keywords
crushing
mill
mortar
shaft
stem
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C2/00Crushing or disintegrating by gyratory or cone crushers
    • B02C2/007Feeding devices

Definitions

  • virus mmum 'i w. wan a me.
  • My improvement relates to certain improvements in crushing-mills which are especially used forv crushing the ores of valuable metals; and it consists in the mechanisms and details of construction hereinafter described.
  • Figure l is a side elevation of my machine complete, having an ore-feeder attached and the lower portion cut away in part to show the interior of the mortar.
  • Fig. 2 is a side elevation of one of the crushingblocks; and Fig. 3, a front elevation of the same, the upper portion being cut away to show the oil-cup G.
  • Fig. 4 is a plan view looking down upon the top of the crushingblocks and operatingdisks.
  • Fig. 5 is a sectional elevation showing the method of attachment between the stems of the crushing-blocks and the driving mech amsm.
  • X X is the frame-work of the mill, made of heavy iron in two parts bolted together, as shown in Fig. 1.
  • a and B are two heavy crushing-blocks of metal, having their lower faces curved in the arc of a circle. From the upper end of each of these blocks a vertical stem F projects, and G is an open cup at the base of the stem to catch any oil or other particles that might otherwise drop into the mortar.
  • E is a mortar, in which the crushing-blocks operate, and D D are dies placed in the bottom of the mortar, so that the material fed into the mortar will be crushed between the operatingsurfaces of the stamps and dies.
  • each of the stems F is attached asleeve H, by means of which the stem is connected with the driving mechanism, and which sleeve loosely embraces the stem F, so as to slide up and down thereon.
  • shaped extension to on one side as shown in Fig. 5.
  • a pair of similar shaped blocks b and b fastened together by bolts e and nuts (Z d c c, and having a hole through their center for the crank-pin g g hh to work in, thus forming a journal-box for said crank-pin, and thereby establishing a connection between the crushing-block and driving mechanism.
  • I is a short shaft, with its outer end working in a journal-box in the frame-work of the mill.
  • a crank-pin g 9" projects from this disk, extends through the box I) b, and has its other end fixed in another disk L, which lies between the stems of the crushingblocks, as shown in Fig. 4:.
  • P is an ore-h0pper permanently attached to the frame-work of themill.
  • afeed-roller T having corrugations R longitudinally across its periphery and journaled at S, so as to be rotated.
  • Q is an upright arm journaled to the end of the feedroller
  • O is a cross-arm attached to the upright arm at ⁇ V by means of a bolt and nut.
  • Several bolt-holes are represented on the arm Q, so that attachment between the two arms may be raised or lowered at will, and thereby be rendered adjustable.
  • the other end of the cross-arm O is attached to shaft I are fixed downwardly-projecting pawls V,
  • the sleeve II has a T- IOO which engage the teeth of the circular ratchet-wheel attached to the end of the feed-roller, as shown in Fig. 1, and thereby rotate the roller.
  • U is anotherpawl, with one end permanently fixed to the frame-Work and the other end working in the teeth of the ratchet-wheel, so as to keep it in check and prevent counter-rota- J J are screens placed at each end of the mortar.
  • the operation of the machine will be as follows:
  • the hopperP being filled with ore, power is imparted to the shaft 1 and transmitted through the medium of the pins 7t 7t and g g and the disks M, L, and K to the crushingblocks A and B.
  • said blocks will be given an alternate oscillating back-and-forth motion within the mortar.
  • the ore from the hopper will fall upon the feed roller into the corrugations R, which, being rotated by means of the arms V and O, eccentric N, and pawl and ratchet V, will precipitate the ore into the mortar upon the dies D D.
  • the alternate oscillations of the blocks A B will throw the ore alternately from.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Disintegrating Or Milling (AREA)

Description

A. E. ROE.
CRUSHING MILL.
2 Sheets-Sheet 1.
(No Model.)
110.411.61 1. Patented Sept. 24, 1889.
wmnassesz 1m @1961)? fl u. PETERS. mew-M Withington. 0.1;
(No Model.) 2 Sheets-Sheet 2.
A. E. ROE.
GRUSHING MILL. No. 411,614. Patented Sept. 24, 1889.
:1. virus mmum 'i w. wan a", me.
UNITED STATES PATENT ALPIIEUS E. ROE, OF SAN FRANCISCO, CALIFORNIA, ASSIGNOR TO HENRY L. TATUM AND J. J. BOIVEN, OF SAME PLACE.
CRUSHING-MILL.
SPECIFICATION forming part of Letters Patent No. 411,614, dated September 24,1889.
Application filed April 26, 1889.
To all whom it may concern:
Be it known that I, ALPHEUs E. Ron, of the city and county of San Francisco, in the State of California, have made a new and useful inventionto wit, an Improvement in Crushing-Hills; and I do hereby declare the following to be a full, clear, and exact description thereof.
My improvement relates to certain improvements in crushing-mills which are especially used forv crushing the ores of valuable metals; and it consists in the mechanisms and details of construction hereinafter described.
Figure l is a side elevation of my machine complete, having an ore-feeder attached and the lower portion cut away in part to show the interior of the mortar. Fig. 2 is a side elevation of one of the crushingblocks; and Fig. 3, a front elevation of the same, the upper portion being cut away to show the oil-cup G. Fig. 4 is a plan view looking down upon the top of the crushingblocks and operatingdisks. Fig. 5 is a sectional elevation showing the method of attachment between the stems of the crushing-blocks and the driving mech amsm.
X X is the frame-work of the mill, made of heavy iron in two parts bolted together, as shown in Fig. 1.
A and B are two heavy crushing-blocks of metal, having their lower faces curved in the arc of a circle. From the upper end of each of these blocks a vertical stem F projects, and G is an open cup at the base of the stem to catch any oil or other particles that might otherwise drop into the mortar.
C C C C are stamps fitted into the curved faces of the crushing-blocks in such manner that their lower or crushing .faces extend downward in a similar curved are.
E is a mortar, in which the crushing-blocks operate, and D D are dies placed in the bottom of the mortar, so that the material fed into the mortar will be crushed between the operatingsurfaces of the stamps and dies.
In the drawings I have shown two crushingbloeks side by side in a single mortar; but more than two such blocks may be used when it is desired to increase the capacity of the mill, or a single block may be used.
Serial No. 308,674:- (No model.)
To each of the stems F is attached asleeve H, by means of which the stem is connected with the driving mechanism, and which sleeve loosely embraces the stem F, so as to slide up and down thereon. shaped extension to on one side, as shown in Fig. 5. Into the slots formed by the T is fitted a pair of similar shaped blocks b and b, fastened together by bolts e and nuts (Z d c c, and having a hole through their center for the crank-pin g g hh to work in, thus forming a journal-box for said crank-pin, and thereby establishing a connection between the crushing-block and driving mechanism.
I is a short shaft, with its outer end working in a journal-box in the frame-work of the mill. Upon the inner end of this shaft is a fixed disk K, and a crank-pin g 9" projects from this disk, extends through the box I) b, and has its other end fixed in another disk L, which lies between the stems of the crushingblocks, as shown in Fig. 4:. From a point in the disk L opposite the pin g g another pin it h projects, extending through the box on the stem of the second crushing-block similar to that of the first, and its outer end is fixed in a disk M, similar to disk K. The center of this last disk is securely k eyed to the drivingshaft I, the inner end of which turns in a journal-box in the frame-work of the mill in a line with the journahbox of the shaft I opposite. To the outer end is attached the pulley Y, by means of which power is imparted to the shaft I to operate the crushing-blocks.
P is an ore-h0pper permanently attached to the frame-work of themill. Immediatelyunneath and extending longitudinally across the bottom opening is placed afeed-roller T, having corrugations R longitudinally across its periphery and journaled at S, so as to be rotated.
Q is an upright arm journaled to the end of the feedroller, and O is a cross-arm attached to the upright arm at \V by means of a bolt and nut. Several bolt-holes are represented on the arm Q, so that attachment between the two arms may be raised or lowered at will, and thereby be rendered adjustable. The other end of the cross-arm O is attached to shaft I are fixed downwardly-projecting pawls V,
The sleeve II has a T- IOO which engage the teeth of the circular ratchet-wheel attached to the end of the feed-roller, as shown in Fig. 1, and thereby rotate the roller.
U is anotherpawl, with one end permanently fixed to the frame-Work and the other end working in the teeth of the ratchet-wheel, so as to keep it in check and prevent counter-rota- J J are screens placed at each end of the mortar.
The operation of the machine will be as follows: The hopperP being filled with ore, power is imparted to the shaft 1 and transmitted through the medium of the pins 7t 7t and g g and the disks M, L, and K to the crushingblocks A and B. Thereby said blocks will be given an alternate oscillating back-and-forth motion within the mortar. The ore from the hopper will fall upon the feed roller into the corrugations R, which, being rotated by means of the arms V and O, eccentric N, and pawl and ratchet V, will precipitate the ore into the mortar upon the dies D D. The alternate oscillations of the blocks A B will throw the ore alternately from. one side of the crushing dies and stamps to the other or crowd it sidewise into the path of the blocks, thus greatly increasing the effectiveness of the mill, and the motion of the stamps also tends to throw the ore toward the ends of the mortar, so that when sutliciently pulverized it passes readily through the screens J J.
Having fully described my invention, what I claim, and desire to secure by Letters Patent, 1s-
1. In combination, the mortar E, the crushing-block A therein, the feed mechanism for supplying material to the mill, the shaft I, and
driving-connections between said shaft and 40 the block and between said shaft and thefeed mechanism, substantially as described.
2. In combination, the mortar E, the block A therein, the feed mechanism consisting of the hopper P, the roller R, and ratchet T, driving-connections between the shaft I and the crusher A, and driving-connections to the ratchet, consisting of the eccentric N on the shaft 1, the rod 0, lever Q, adjustably connected thereto, and the pawl, substantially as described.
3. In a crushing-mill, the combination of a mortar with a crushing-block having an upwardly-exten ding stem, a sliding sleeve loosely embracing said stem, a driving-shaft, and a connection between said sleeve and drivingshaft for imparting power to the crushingblock, substantially as described.
4:. I11 combination,the mortar, the crushingblock having a stem F, a shaft I, positioned to one side of the stem, and a connection between the stem and shaft, consisting of the disk K and crank-pin g g, fixed in its face, sleeve H on the stem, having the extension a, of T shape, and blocks 1) b, embracing the crank-pin and said extension.
5. In a crushing-mill, the mortar and a crushing-block, said block having an upwardly-extending stem and having its upper part formed into an oil-receptacle G, substantially as described.
In witness whereof I have hereunto set my hand and seal, at San Francisco, California, this 26th day of December, A. D. 1888.
ALPHEUS E. ROE. [L. s]
Vitnesses:
J. H. MILLER, H. L. TATUM.
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