US341320A - Feed-cutter - Google Patents

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US341320A
US341320A US341320DA US341320A US 341320 A US341320 A US 341320A US 341320D A US341320D A US 341320DA US 341320 A US341320 A US 341320A
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feed
cutter
shaft
wheel
bolts
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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
    • B02C13/00Disintegrating by mills having rotary beater elements ; Hammer mills
    • B02C13/26Details
    • B02C13/286Feeding or discharge
    • 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
    • Y10T83/00Cutting
    • Y10T83/647With means to convey work relative to tool station
    • Y10T83/658With projections on work-carrier [e.g., pin wheel]
    • 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
    • Y10T83/00Cutting
    • Y10T83/647With means to convey work relative to tool station
    • Y10T83/664Roller
    • Y10T83/6648Continuous conveying during, cutting; e.g., straw cutting

Definitions

  • My invention relates to the manner of securing the supporting piece or back which carries the knife adj ustably and removably to the arm of the fly-wheel, to the construction and manner of combining the stationary knife or cutter and the guard or scraper for keeping the material operated upon from winding on the feedrolls with each other and their support, whereby they are both held in place by and can be independently adjusted upon the same retaining-bolts, and to the manner of connecting the interchangeable sprocket-wheels with their shafts, facilitating their being changed for varying the feed, all as hereinafter described and claimed.
  • Figure 1 is a perspective view of a feed-cutter embracing my improvements.
  • Fig. 2 is an end view or front elevation of the same, taken at the side from which the material operated upon is fed to the cutters, with the feed trough or box removed.
  • Fig. 3 is a plan view of the same, or so much thereof as is necessary to show my improvements.
  • Fig. 4 is a side elevation, enlarged, of the gears 011 the feed-roll shafts and of the means for actuating them, throwing them into or out of action, and changing their direction of rotation.
  • Fig. 5 is a perspective view of one of the sprocket-wheels detached.
  • Fig. 6 is a perspective view of one of the rotating knives and its connections, and Fig.
  • Fig. 7 a section through said knife and one of its connections with the flywheel arm;
  • Fig. 8 a vertical transverse section through the feed-rolls, their guard or scraper, and the stationary knife or cutter, and
  • Fig. 9 a perspective view of one end of said scraper and knife and their support.
  • Fig. 10 is a sectional View showing slots in the stripper-plate and cutter, and
  • Fig. 11 is a detail View.
  • the frame of the machine is by preference made in the triangular form indicated in the drawings, as giving compactness with the desired strength and steadiness or support, and has the main driving-shaft B, which, as shown, constitutes also the fly-wheel shaft mounted at one end in a suitable bearing in one of the upper horizontal bars, A, of one side of the triangular frame, and projecting beyond said bar to receive the crank or band wheel through which motion is imparted to said shaft in any suitable manner.
  • the inner end of the shaft B has its bearing in a transverse frameba-r or gear-plank, A, and projects beyond said bearing and plank to receive a sprocket-wheel, G, from which, throughachain, C", and sprocketwvheel O, motion is imparted to a secondary shaft, B, mounted in suitable bearings in a gear stand or bracket, D, secured to one end of the gcar-plank A.
  • the stand or bracket D has bearings formed in it for the geared ends of the feed-roll shafts E and 15, the opposite or forward ends of these shafts being supported in hearings in standards D and D, secured to the forward end of plank A.
  • the feed-rolls F and F which maybe of any usual or preferred form, are located between the standards D and D and are secured in any suitable manner to and made to rotate with e and e, secured to the ends of the shafts E and E, and meshing one with the other.
  • the shaft E has a bevel-gear, 6*, secured to its end outside of geare, which bevel-gear is permanently in mesh with the two oppositely-faced bevel-pinions b and Z), arranged upon opposite sides of the axis of gear a, as shown, and mounted loosely on the secondary shaft 13.
  • the inner ends of the hubs of the pinions b and b are clutch-faced, and between them on the shaft B is mounted a sliding sleeve, 2), feathered to and turning with said shaft and having clutch-faced ends adapting it to engage either of the pinions b or b, for causing it to rotate with the shaft 13.
  • G is a shifting arm or fork secured at its lower end to and turning with a rockshaft, G, mounted in suitable bearings on the lower face of the gear-plank A, and provided with a lever-arm, G, projecting up through a slot in said plank to within convenient reach of the operator or attendant.
  • the upper end or fork of the arm G engages a groove in or passes between collars fast on the clutch-sleeve b the arrangement being such that the attendant by vibrating the lever G and rocking the shaft G and arm G can slide the clutch-sleeve b to cause it to engage and drive either the pinion b or b, and thereby to change the direction of rotation of the feed-rolls as desired, or to an intermediate position between said pinions out of engagement with both, thereby stopping the rotation of the feed-rolls while the rotation of the driving-shaft and of the flywheel fast thereon is continued.
  • This is important in order to enable the attendant to quickly check the feed of and to withdraw from between the feed-rolls unsuitable substances which may accidentallyor otherwise have got in with the material being operated upon.
  • the lever G has on its end a sliding handle, G which is provided with a longitudinal socket adapting it to fit over and to slide up and down on the end of the lever-arm G and the latter is provided with a pin, 9, which passes through aslotin the handle G and prevents the handle from becoming accidently lifted off the arm G.
  • This socketed handle G is provided on its lower end with a pi u or spur, g, which engagesa notched segment or rack, 9*, formed on or secured to the standard D, or other suitable support, and which serves to hold the lever-arm G", and with it the cl utchsleeve If, at the desired adjustment.
  • the knives or rotating cutters H are substantiallyin the form indicated, of steel, each made tapering at its iuner end and beveled to an edge from its outer side, which at its heel or rear edge rests in the rabheted side of supporting piece or back, H, to which the knife is secured by means of suitable countersunk bolts or rivets, as shown.
  • the supporting-back H may be of cast or wrought metal, as preferred, and is provided on its outer face near its ends with cylindrical hubs or bosses h, through which the bolts 9 pass for securing the knife to similar hubs or bosses, h, on the arms I of the fly-wheel I.
  • the faces of the hubs or bosses h on the arms I, and also of those on the back pieces, H, if desired, are made cam faced, or with a series of two, three, or more inclines, If, and interposed between them and the bosses h are washers it", having correspondingly-shaped inclines If on their faces, so arranged that by loosening the bolts g, turning the washers, and again tightening the bolts, the knives may be set nearer to or farther from the fly-wheel arms, as may be required for insuring their proper action.
  • the knife-backs H are countersunk to receive the heads of the bolts, as shown in Fig.
  • the stationary knife or blade is in cross'scction of the form substantially as indicated in Fig. 8, and is provided at its ends with perforated lugs or ears 9', which rest in suitable sockets formed for their reception in the standards D and D, held in place therein by means of bolts k.
  • the upper face of the cutter J is provided back of its cutting-edge with a rabbet at j, in which rests the rear edge of the guard or stripper plate L, which, like the cutter J, is provided at its ends with perforated ears I, which rest upon the ears j, and are secured to the standards D and D by the same bolts which fasten the cutter J.
  • the eyes or perforations in the ears j and Z on the ends of the cutter J and stripper L are elongated transversely of said parts in such manner that by loosening the bolts 7c the cutter J may be adjusted outward toward the fly-wheel, and the cutters thereon and the stripper-plate L may be at the same time, if required, moved inward snugly against the smooth feed-roll F, for stripping or preventing the material being operated upon from winding 011 said roll, after which, by tightening the bolt is, both the cutter and stripper will be held against displacement.
  • Figs. 4 and 5 The construction for securing the sprocketwheels to their shafts is shown in Figs. 4 and 5, where the shaft B is shown provided near the end to which the sprocket-wheel O is secured with a fixed annular flange or collar, on, which may be a shoulder on the shaft, if preferred, and outside thereof with a fixed pin or spur, m, between which and the collar 0 there is room on the shaft for the hub c of the wheel 0.
  • the hub is grooved or slotted at c c to adapt it to be passedover the pin and shaft, and is provided with swells or double inclines n a on its outer side adjacent to the pin m and between the grooves in such manner that when the wheel is passed over the pin and turned in either direction the inclines will ride up on the pins and crowd the wheel snugly against the collar, thereby insuring its rotation therewith.
  • the main driving and fly wheel shaft B may have its sprocket-wheel 0 made and applied in the same manner, and by changing the wheels from one shaft to the other, or putting on others of different diameters, the feed may be readily varied, as desired.
  • Parts of the machine not particularly described may be constructed in any usual or preferred manner.

Description

(No Model.) 5 Sheets-Sheet 1.
J. DICK, Jr.
FEED CUTTER.
No. 341,320. Patented May 4, 1886.
WITNESSES 1.7V VEJV TOR l N. PETERS, Phomulm m hu, Washmglulv. D. C.
(No Model.) 5 Shgets-Sheet 2.
J. DICK, Jr.
FEED CUTTER.
Patented May 4, 1886.
K I TJV' .ESSES Attorney (No Modelu) 5 Sheets-Sheet 3.
J. DICK, Jr.. FEED CUTTER.
No. 341,320. Patented May 4, 1886.
WI TJV E8514? 1.7V TOR v .dttorney (N0 Model.) 5 Sheets-Sheet 4.
,- J. DICK, Jr.
FEED CUTTER. I No. 341,320. Patented May 4, 1886.
1.7V Vfg-KPQRC Attorney 5- Sheets-Sh eet 5.
(No Model.)
J. DIOKfJr.
FEED CUTTER.
Jm- ,w/h/ 0 5 w MM T u E. 3 m% 0 N UNITED STATES PATENT OFFICE.
JOSEPH DICK, JR, OF CANTON, OHIO.
FEED-CUTTER.
EPECIPICATION forming part of Letters Patent No. 341,320, dated May 4, 1886.
Application filed June 26, 1885. Serial No.169,8-18. (No model.)
To all whom, it may concern:
Be it known that I, JosErH Dick, J r., of
lanton, county of Stark, and State of Ohio,
have invented new and useful Improvements in Feed-Cutters, of which the following is a full, clear, and exact description, reference being had to theaccompanying drawings, making part of this specification.
My invention relates to the manner of securing the supporting piece or back which carries the knife adj ustably and removably to the arm of the fly-wheel, to the construction and manner of combining the stationary knife or cutter and the guard or scraper for keeping the material operated upon from winding on the feedrolls with each other and their support, whereby they are both held in place by and can be independently adjusted upon the same retaining-bolts, and to the manner of connecting the interchangeable sprocket-wheels with their shafts, facilitating their being changed for varying the feed, all as hereinafter described and claimed.
In the accompanying drawings, Figure 1 is a perspective view of a feed-cutter embracing my improvements. Fig. 2 is an end view or front elevation of the same, taken at the side from which the material operated upon is fed to the cutters, with the feed trough or box removed. Fig. 3 is a plan view of the same, or so much thereof as is necessary to show my improvements. Fig. 4 is a side elevation, enlarged, of the gears 011 the feed-roll shafts and of the means for actuating them, throwing them into or out of action, and changing their direction of rotation. Fig. 5 is a perspective view of one of the sprocket-wheels detached. Fig. 6 is a perspective view of one of the rotating knives and its connections, and Fig. 7 a section through said knife and one of its connections with the flywheel arm; Fig. 8, a vertical transverse section through the feed-rolls, their guard or scraper, and the stationary knife or cutter, and Fig. 9 a perspective view of one end of said scraper and knife and their support. Fig. 10 is a sectional View showing slots in the stripper-plate and cutter, and Fig. 11 is a detail View.
The frame of the machine is by preference made in the triangular form indicated in the drawings, as giving compactness with the desired strength and steadiness or support, and has the main driving-shaft B, which, as shown, constitutes also the fly-wheel shaft mounted at one end in a suitable bearing in one of the upper horizontal bars, A, of one side of the triangular frame, and projecting beyond said bar to receive the crank or band wheel through which motion is imparted to said shaft in any suitable manner. The inner end of the shaft B has its bearing in a transverse frameba-r or gear-plank, A, and projects beyond said bearing and plank to receive a sprocket-wheel, G, from which, throughachain, C", and sprocketwvheel O, motion is imparted to a secondary shaft, B, mounted in suitable bearings in a gear stand or bracket, D, secured to one end of the gcar-plank A. The stand or bracket D has bearings formed in it for the geared ends of the feed-roll shafts E and 15, the opposite or forward ends of these shafts being supported in hearings in standards D and D, secured to the forward end of plank A. The feed-rolls F and F, which maybe of any usual or preferred form, are located between the standards D and D and are secured in any suitable manner to and made to rotate with e and e, secured to the ends of the shafts E and E, and meshing one with the other. The shaft E has a bevel-gear, 6*, secured to its end outside of geare, which bevel-gear is permanently in mesh with the two oppositely-faced bevel-pinions b and Z), arranged upon opposite sides of the axis of gear a, as shown, and mounted loosely on the secondary shaft 13. The inner ends of the hubs of the pinions b and b are clutch-faced, and between them on the shaft B is mounted a sliding sleeve, 2), feathered to and turning with said shaft and having clutch-faced ends adapting it to engage either of the pinions b or b, for causing it to rotate with the shaft 13.
I CC
G is a shifting arm or fork secured at its lower end to and turning with a rockshaft, G, mounted in suitable bearings on the lower face of the gear-plank A, and provided with a lever-arm, G, projecting up through a slot in said plank to within convenient reach of the operator or attendant. The upper end or fork of the arm G engages a groove in or passes between collars fast on the clutch-sleeve b the arrangement being such that the attendant by vibrating the lever G and rocking the shaft G and arm G can slide the clutch-sleeve b to cause it to engage and drive either the pinion b or b, and thereby to change the direction of rotation of the feed-rolls as desired, or to an intermediate position between said pinions out of engagement with both, thereby stopping the rotation of the feed-rolls while the rotation of the driving-shaft and of the flywheel fast thereon is continued. This is important in order to enable the attendant to quickly check the feed of and to withdraw from between the feed-rolls unsuitable substances which may accidentallyor otherwise have got in with the material being operated upon.
The lever G has on its end a sliding handle, G which is provided with a longitudinal socket adapting it to fit over and to slide up and down on the end of the lever-arm G and the latter is provided with a pin, 9, which passes through aslotin the handle G and prevents the handle from becoming accidently lifted off the arm G. This socketed handle G is provided on its lower end with a pi u or spur, g, which engagesa notched segment or rack, 9*, formed on or secured to the standard D, or other suitable support, and which serves to hold the lever-arm G", and with it the cl utchsleeve If, at the desired adjustment.
The knives or rotating cutters H, one of which is shown enlarged in the detail views, Figs. 6 and 7, are substantiallyin the form indicated, of steel, each made tapering at its iuner end and beveled to an edge from its outer side, which at its heel or rear edge rests in the rabheted side of supporting piece or back, H, to which the knife is secured by means of suitable countersunk bolts or rivets, as shown. The supporting-back H may be of cast or wrought metal, as preferred, and is provided on its outer face near its ends with cylindrical hubs or bosses h, through which the bolts 9 pass for securing the knife to similar hubs or bosses, h, on the arms I of the fly-wheel I. The faces of the hubs or bosses h on the arms I, and also of those on the back pieces, H, if desired, are made cam faced, or with a series of two, three, or more inclines, If, and interposed between them and the bosses h are washers it", having correspondingly-shaped inclines If on their faces, so arranged that by loosening the bolts g, turning the washers, and again tightening the bolts, the knives may be set nearer to or farther from the fly-wheel arms, as may be required for insuring their proper action.
The knife-backs H are countersunk to receive the heads of the bolts, as shown in Fig.
7, thereby preventing the latter from interfering with the proper action of the knives.
The stationary knife or blade is in cross'scction of the form substantially as indicated in Fig. 8, and is provided at its ends with perforated lugs or ears 9', which rest in suitable sockets formed for their reception in the standards D and D, held in place therein by means of bolts k. The upper face of the cutter J is provided back of its cutting-edge with a rabbet at j, in which rests the rear edge of the guard or stripper plate L, which, like the cutter J, is provided at its ends with perforated ears I, which rest upon the ears j, and are secured to the standards D and D by the same bolts which fasten the cutter J. The eyes or perforations in the ears j and Z on the ends of the cutter J and stripper L are elongated transversely of said parts in such manner that by loosening the bolts 7c the cutter J may be adjusted outward toward the fly-wheel, and the cutters thereon and the stripper-plate L may be at the same time, if required, moved inward snugly against the smooth feed-roll F, for stripping or preventing the material being operated upon from winding 011 said roll, after which, by tightening the bolt is, both the cutter and stripper will be held against displacement.
The construction for securing the sprocketwheels to their shafts is shown in Figs. 4 and 5, where the shaft B is shown provided near the end to which the sprocket-wheel O is secured with a fixed annular flange or collar, on, which may be a shoulder on the shaft, if preferred, and outside thereof with a fixed pin or spur, m, between which and the collar 0 there is room on the shaft for the hub c of the wheel 0. The hub is grooved or slotted at c c to adapt it to be passedover the pin and shaft, and is provided with swells or double inclines n a on its outer side adjacent to the pin m and between the grooves in such manner that when the wheel is passed over the pin and turned in either direction the inclines will ride up on the pins and crowd the wheel snugly against the collar, thereby insuring its rotation therewith. By reversing the direction of rotation of the wheel it can be readily released and removed and another of different diameter, similarly constructed, can be put in its place. The main driving and fly wheel shaft B may have its sprocket-wheel 0 made and applied in the same manner, and by changing the wheels from one shaft to the other, or putting on others of different diameters, the feed may be readily varied, as desired.
Parts of the machine not particularly described may be constructed in any usual or preferred manner.
Having now described my invention, I claim as new 1. The fixed or stationary knife-bar, in combination with the feed-roll guard or scraper, the pin on its shaft for securing it to said 10 each provided with the slotted ears or ends, shaft, substantially as described. and the connecting bolts for uniting said In testimony whereof I have hereunto set scraper and knife and permitting their inde my hand this 22d day of June, A. D. 1885. pendent adjustment, substantially as described.
2. The sprocket-whee], through which mo- JOSEPH DICK tion is imparted to the feed-rolls, provided Vitnesses: with the grooved and can1-faced hub, in com- JOHN C. WELTY, bination with the fixed shoulder or collar, and J AY M. COGAN.
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