US171535A - Improvement in machines for forming metallic end pieces for blind-slats - Google Patents

Improvement in machines for forming metallic end pieces for blind-slats Download PDF

Info

Publication number
US171535A
US171535A US171535DA US171535A US 171535 A US171535 A US 171535A US 171535D A US171535D A US 171535DA US 171535 A US171535 A US 171535A
Authority
US
United States
Prior art keywords
lever
knives
machine
slats
blind
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
Publication date
Application granted granted Critical
Publication of US171535A publication Critical patent/US171535A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • B21D28/24Perforating, i.e. punching holes
    • B21D28/34Perforating tools; Die holders
    • 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
    • Y10T83/202With product handling means
    • Y10T83/2092Means to move, guide, or permit free fall or flight of product
    • Y10T83/2096Means to move product out of contact with tool
    • Y10T83/2135Moving stripper timed with tool stroke
    • Y10T83/2144Single stripper operative upon plural tools
    • 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
    • Y10T83/808Two tool pairs, driver for one pair moves relative to driver for other pair
    • Y10T83/822Punch and shear
    • 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
    • Y10T83/808Two tool pairs, driver for one pair moves relative to driver for other pair
    • Y10T83/825Successively acting
    • 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
    • Y10T83/869Means to drive or to guide tool
    • Y10T83/8821With simple rectilinear reciprocating motion only
    • Y10T83/8828Plural tools with same drive means
    • Y10T83/8831Plural distinct cutting edges on same support
    • Y10T83/8834Successively acting
    • 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
    • Y10T83/869Means to drive or to guide tool
    • Y10T83/8821With simple rectilinear reciprocating motion only
    • Y10T83/8835And means to move cooperating cutting member
    • 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
    • Y10T83/869Means to drive or to guide tool
    • Y10T83/8821With simple rectilinear reciprocating motion only
    • Y10T83/8841Tool driver movable relative to tool support
    • Y10T83/885Fixed axis lever

Definitions

  • the object of my invention is a machine for cutting window-blind slats, and for forming metallic ends for the same; and my invention therein consists, first, in the combination of a series of knives having a swinging motion, with a series of knives and punches having a reciprocating motion; second, in the combination of a stationary die with the foregoing parts; third, in the combination,with the stationary die, of an ejector; fourth, in the combination, with the swinging knives, of a guideplate for the metal blank; fifth, in means for imparting motion to the swinging knives; sixth, in the means for imparting a forward motion to the reciprocating knives and punches; seventh, in the means for imparting a backward motion to the reciprocating knives and punches; eighth, in the means for operating the knife for cutting the slats; ninth, in
  • FIG. 1 represents a plan view of the top of my machine.
  • Fig. 2 is a side elevation of the machine from the side 0 Figs. 3, 4, and 5am, respectively, side elevations of the three sides 0, c and 0
  • Fig. 6 is a cross-section of the knives and punches 0; Fig. 7, a longitudinal section of the die N, and Fig. 8a cross-section of the same.
  • the frame consists of four standjards', a, which rest on a plate or platform, a.
  • Another platform, a is placed a short distance above the lower plate a, leaving a space between the two, in which revolves a'wheel, B, which may be connected with any drivingshaft by a belt and pulley.
  • An upper platform, 0, rests on top of the standards, and.
  • a spindle, b (the axis of the wheel B, before mentioned,) passes vertically through the center of the machine, and forms the axis, also, of a cogged wheel, D, which revolves horizontally above the platform 0.
  • This wheel meshes with a larger cogged wheel, E, which has a spindle,
  • This lever is to-move the cogged wheel E, throwing it in or out of gear with the wheel D.
  • a long fiat bar, F slightly curved at one end, slips over the projection of the stud e and is held down by anut,which screws over it.
  • the bar F extends across the top of the machine and through the side 0, said bar being cut down at this end so as to have a shoulder a short distance from the end, and passing through a hole in the side 0, in which it moves loosely.
  • a spiral. 1 spring, f (the use of which will be hereafter explaced outside, and the three plates firmly.
  • the middle plate serves to dividethe inner One of the studs, 0 extends e is finally detached'from the arm k and outer ones, and leaves a space between them for a short distance from their ends.
  • a guide-plate, 01 is secured to the outside plate d so that it stands out at right angles with the side a, and is so placed that a metallic plate put between its flanges will be guided by the F will have a vibratory and lateral motion at the same time, the hole in the plates d, d and (1 allowing for said motion.
  • a small lever, H is pivoted on the lever G at a point, 9 just behind the pivot g.
  • a straight lever I
  • I which extends across the top of the machine near the side 0 to the side 0
  • a V-shaped lever, K is pivoted on a pin, it, which also passes through the lever I near its middle point.
  • One arm k of the lever K runs along the back of the lever G, and has its end turned down, so that when the lever G moves one way it will press against the arm k and cause it to move with it.
  • a flat strip, 9. is secured to the lever G on the toe-piece, and extends over the arm k of the V-shaped lever K.
  • a small pin, 9 extends downward from the end of the strip 9
  • the arm k of the lever K is stopped in its backward motion by a pin, 9 which rises from the top plate of the machine.
  • the stud e strikes against the toe of the lever G and moves it back.
  • the lever G carries the lever K with it, and leaves the arm k in such a position that the stud 6 will strike it when detached from the toe of the lever G and carry it with it during a portion of the revolution.
  • the lever 1 has pivoted on its end a short connecting-rod, i, which, in turn, connects with a knife, 1', whichmoves in guides on the face of the side 0
  • a vertical slot, 2' is cut in the side 0 just outside the side 0, beyond which the side 0 extends a short distance.
  • a stationary knife, 2' is bolted on the side 0 with its edge partially covering the slot.
  • knife 11 covers the remainder of the slot during a portion of its motion.
  • the object of these knives and slot is to cut the window-blind slats at any desired length. It is accomplished by pushing the strips 'to be cut through theslot when it will rest upon a small platform, 1, the continuation of the platform 0 of the machine.
  • a stop, l moves back and forth on this platform, and can be secured at any point to allow the slat to be pushed through to any desired length.
  • a flat spring, Z is secured to the side 0
  • An arm, 1 extends from the end of the spring into the machine and rests over the cogged wheel E.
  • the stud e strikes the arm Z during a portion of its revolution, and thus pushes the spring out at such a time that the slat will be thrown off as soon as out.
  • the spring returns to its original position close to the side 0 and allows another strip to be pushed through the slot.
  • An L-shaped lever, M extends across the top of the cogged wheel E in. an opposite direction from and beneath the arm 70 of the lever K. The toe of this lever is pivotedto the platform G near the side 0
  • An arm, m is connected with the middle point of the longer arm of the lever M.
  • This arm has a long flat ejector, m, on' its end, which extends into a die, N, the use of which is hereinafter described.
  • the stud c of the cogged wheel E strikes against the longarm of the lever M, which causes the ejector m to be pushed into the die N.
  • the ejector ml being flat and elastic, will cause the lever M to resume its original position when disengaged. from the stud e.
  • the die N consists of two plates, separated by intervening plates, which still allow the punch m to pass between.
  • This die is so placed that the metal sheet held in the guide-plate d can be pushed into it, the plates of which it is formed being secured directly opposite to the ends of the plates d and 61
  • the die N is pierced with holes, the number requisite to have in the bearing usually three, and its end is shapedso that the knives which cut by it shali give the proper form to the bearing.
  • the plates d and d is a series of knives and punches, 0, secured rigidly together, which are worked back and forth between guides 0 by means of the lever G.
  • the end of the lever G passes freely through a slot in the mass 0.
  • Au iron strap, 0 passes over the end of this lever, and over the end of a projection on the rear end of the mass 0.
  • the middle plate of the mass 0 has two knives, 0 which out two ears in the plate, both knives being a part of said plate. Outside of this is placed a short dividing-plate, 0 and then a knife, 0 which passes between the knives d and (1 On the inside of the plate 0 are secured two plates, from which the round punches o protrude to correspond with the holes in die N.
  • the machine may be worked by means of a treadle, the friction and resistance being so slight a boy can manage it.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Portable Nailing Machines And Staplers (AREA)

Description

ZSheets-SheeilQ S. M. SHERMAN. MACHINE FOR FORMING METALLIC END-PIECES FOR BLIND-SLATS. No. 171,535. Patented 1m. 28,1875.
0". e m C' i'nl en 10/":
N.PETER$. FHOTO-LITHOGRAFMER. WASHKNG'IOM D c.
2 Sheets-Sheet 2.
. S. M. SHERMAN.
MACHINE FOR FORMING METALLIC END-PIECES FOR BLIND-SLA'I'S. No.171,535. Patented Dec. 28,1875.
UNITED STATES PATENT OFFICE.
SEELEY M. SHERMAN, OF FORT DODGE, IOWA.
IMPROVEMENT IN MACHINES FOR FORMING METALLIC END PIECES FOR BLIND-SLATS.
Specification forming part of Letters Patent No. 171,535, dated December 28, 1875; application filed March 22, 1875.
To all whom it may concern:
Be it known that I, SEELEY M. SHERMAN, of Fort Dodge, in the county of Webster and State of Iowa, have invented a new and useful improvement in machines for cutting window-blind slats, and cutting and punching sheet-metal ends for the same; and I do here by declare that the following is a full and exact description of the same, reference being had to the accompanying drawings, and to the letters of reference marked thereon.
The object of my invention is a machine for cutting window-blind slats, and for forming metallic ends for the same; and my invention therein consists, first, in the combination of a series of knives having a swinging motion, with a series of knives and punches having a reciprocating motion; second, in the combination of a stationary die with the foregoing parts; third, in the combination,with the stationary die, of an ejector; fourth, in the combination, with the swinging knives, of a guideplate for the metal blank; fifth, in means for imparting motion to the swinging knives; sixth, in the means for imparting a forward motion to the reciprocating knives and punches; seventh, in the means for imparting a backward motion to the reciprocating knives and punches; eighth, in the means for operating the knife for cutting the slats; ninth, in
the means for pushing forward the ejector;-
tenth, in the combination of the devices for cutting the slats and clearing them from the machine eleventh, in the combination of the devices for forming the metallic ends and the guiding and ejecting devices.
To enable those skilled in the art to make and use my invention, I proceed to describe the same in connection with the drawings, in which- I Figure 1 represents a plan view of the top of my machine. Fig. 2 is a side elevation of the machine from the side 0 Figs. 3, 4, and 5am, respectively, side elevations of the three sides 0, c and 0 Fig. 6 isa cross-section of the knives and punches 0; Fig. 7, a longitudinal section of the die N, and Fig. 8a cross-section of the same.
. Like letters denote similar parts in each figure.
In the drawings,-A; represents the frame of small plate, 6
the machine, the general form of which is cubical. The frame consists of four standjards', a, which rest on a plate or platform, a.
Another platform, a is placed a short distance above the lower plate a, leaving a space between the two, in which revolves a'wheel, B, which may be connected with any drivingshaft by a belt and pulley. An upper platform, 0, rests on top of the standards, and.
contains within .its raised edges 0 c 0 c the principal parts of the machine. A spindle, b, (the axis of the wheel B, before mentioned,) passes vertically through the center of the machine, and forms the axis, also, of a cogged wheel, D, which revolves horizontally above the platform 0. This wheel meshes with a larger cogged wheel, E, which has a spindle,
e, passing through the upper and middle platform of the machine, said spindle serving to hold steadily the wheel, and revolving with it. Two small studs, 6 and o rise from the upper surface of. the wheel E, and are capped by a through this plate 6 and .has a thread cut on its end. A lever, 6, connected with the spindle e, and pivoted to the platform 0, passes out through the side 0 where there is a catch,
0 by which it is held. This lever is to-move the cogged wheel E, throwing it in or out of gear with the wheel D. A long fiat bar, F, slightly curved at one end, slips over the projection of the stud e and is held down by anut,which screws over it. The bar F extends across the top of the machine and through the side 0, said bar being cut down at this end so as to have a shoulder a short distance from the end, and passing through a hole in the side 0, in which it moves loosely. A spiral. 1 spring, f, (the use of which will be hereafter explaced outside, and the three plates firmly.
secured together. It will be seen, therefore, the middle plate serves to dividethe inner One of the studs, 0 extends e is finally detached'from the arm k and outer ones, and leaves a space between them for a short distance from their ends. A guide-plate, 01 is secured to the outside plate d so that it stands out at right angles with the side a, and is so placed that a metallic plate put between its flanges will be guided by the F will have a vibratory and lateral motion at the same time, the hole in the plates d, d and (1 allowing for said motion.
It will be seen, therefore, these plates are pushed out and drawn in as the cogged wheel E revolves. The remainder of the side c is composed of a series of knives and punches rigidly held together and moved back and forth by an L-shaped lever, G, pivoted at g a short distance from the side 0, and having its toe extend over the cogged wheel E, so that the stud 0 will press against said toe during a portion of its revolution, and thus cause the plates connected with its other end to mbve.
back and forth. A small lever, H, is pivoted on the lever G at a point, 9 just behind the pivot g. To the end of the lever H is pivoted a straight lever", I, which extends across the top of the machine near the side 0 to the side 0 A V-shaped lever, K, is pivoted on a pin, it, which also passes through the lever I near its middle point. One arm k of the lever K runs along the back of the lever G, and has its end turned down, so that when the lever G moves one way it will press against the arm k and cause it to move with it. A flat strip, 9. is secured to the lever G on the toe-piece, and extends over the arm k of the V-shaped lever K. A small pin, 9 extends downward from the end of the strip 9 The arm k of the lever K is stopped in its backward motion by a pin, 9 which rises from the top plate of the machine. During a portion of the revolution of the cogged wheel E the stud e strikes against the toe of the lever G and moves it back. The lever G carries the lever K with it, and leaves the arm k in such a position that the stud 6 will strike it when detached from the toe of the lever G and carry it with it during a portion of the revolution. By this means the toe of the lever G will be restored to its original position when the stud The lever 1 has pivoted on its end a short connecting-rod, i, which, in turn, connects with a knife, 1', whichmoves in guides on the face of the side 0 A vertical slot, 2', is cut in the side 0 just outside the side 0, beyond which the side 0 extends a short distance. A stationary knife, 2' is bolted on the side 0 with its edge partially covering the slot. The
knife 11 covers the remainder of the slot during a portion of its motion. The object of these knives and slot is to cut the window-blind slats at any desired length. It is accomplished by pushing the strips 'to be cut through theslot when it will rest upon a small platform, 1, the continuation of the platform 0 of the machine. A stop, l moves back and forth on this platform, and can be secured at any point to allow the slat to be pushed through to any desired length. A flat spring, Z is secured to the side 0 An arm, 1 extends from the end of the spring into the machine and rests over the cogged wheel E. The stud e strikes the arm Z during a portion of its revolution, and thus pushes the spring out at such a time that the slat will be thrown off as soon as out. When the arm 1 is disengaged from thestud e the spring, returns to its original position close to the side 0 and allows another strip to be pushed through the slot. An L-shaped lever, M, extends across the top of the cogged wheel E in. an opposite direction from and beneath the arm 70 of the lever K. The toe of this lever is pivotedto the platform G near the side 0 An arm, m, is connected with the middle point of the longer arm of the lever M. This arm has a long flat ejector, m, on' its end, which extends into a die, N, the use of which is hereinafter described.
The stud c of the cogged wheel E strikes against the longarm of the lever M, which causes the ejector m to be pushed into the die N. The ejector ml, being flat and elastic, will cause the lever M to resume its original position when disengaged. from the stud e. The die N consists of two plates, separated by intervening plates, which still allow the punch m to pass between. This die is so placed that the metal sheet held in the guide-plate d can be pushed into it, the plates of which it is formed being secured directly opposite to the ends of the plates d and 61 The die N is pierced with holes, the number requisite to have in the bearing usually three, and its end is shapedso that the knives which cut by it shali give the proper form to the bearing. In conjunction with the die N the plates d and d is a series of knives and punches, 0, secured rigidly together, which are worked back and forth between guides 0 by means of the lever G. The end of the lever G passes freely through a slot in the mass 0. Au iron strap, 0 passes over the end of this lever, and over the end of a projection on the rear end of the mass 0. By means of nuts the end of the lever G can be adjusted in the slot so as to limit properly the motion of the knives and punches. The middle plate of the mass 0 has two knives, 0 which out two ears in the plate, both knives being a part of said plate. Outside of this is placed a short dividing-plate, 0 and then a knife, 0 which passes between the knives d and (1 On the inside of the plate 0 are secured two plates, from which the round punches o protrude to correspond with the holes in die N.
It will be seen that the motion to all parts of this machine is communicated by means of the cogged wheel E, the stud e striking the various levers, and disengaged from them at such times that all parts work together harmoniously. A sheet of metal is placed in the guide-plate d While the knives 0 and 0 and punches 0 are drawn back and pushed into the die N. The motion of the lever G then causes these knives and punches to advance, cut, and bend the bearing, as desired. When these knives and punches recede sufficiently the lever F pushes out the knives d and d while the ejector m pushes the bearing out of r the die N. It is thus pushed clear of the ma chine, and drops into a proper receptacle. The revolution of the wheelE carries the lever F back again, and the spring frestores the knives d and d to their original position.
The machine may be worked by means of a treadle, the friction and resistance being so slight a boy can manage it.
Having thus described the construction and use of my machine, what I claim as new, and desire to secure by Letters Patent, is-
1. In a machine, substantially as described, the combination of a series of knives having a swinging motion, with a series of knives and punches having a reciprocating motion, substantially as described.
2. In a machine, substantially as described, the combination of a series of knives having a swinging motion, and a series of knives and punches having a reciprocating motion, with a stationary die, substantially as described.
3. The combination, with the stationary die, of the ejector m, substantially as described and shown.
4. The combination, with the series of swing- L'shaped lever G, and a strap, g forthe purv pose set forth. I
8. The combination, with a lever, G, a lever,
H,- lever I, and rod 6, for operating the knife i as described.
9. The combination with the cog-wheel E, having a stud, 0 a lever, M, having an arm, m, and an ejector, m, for the purpose set forth.
10. The combination, with the side 0, of the knives, the platform I, having step i and spring Z having an arm, i operated as described.
11. The combination, with the swinging knives (1 d d carrying the guide-plate d of the reciprocating knives O and die N, hav-.
ing the ejector m, substantially as described and shown.
This specification signed and witnessed this 29th day of June, 187 4.
. SEELEY. M. SHERMAN.
Witnesses:
WALTER W. JOHNSTON, J. B. SCOTT.
US171535D Improvement in machines for forming metallic end pieces for blind-slats Expired - Lifetime US171535A (en)

Publications (1)

Publication Number Publication Date
US171535A true US171535A (en) 1875-12-28

Family

ID=2240942

Family Applications (1)

Application Number Title Priority Date Filing Date
US171535D Expired - Lifetime US171535A (en) Improvement in machines for forming metallic end pieces for blind-slats

Country Status (1)

Country Link
US (1) US171535A (en)

Similar Documents

Publication Publication Date Title
US471084A (en) hopkin
US516737A (en) Shape-metal-cutting machine
US182962A (en) Improvement in rivet-heading machines
USRE8163E (en) Improvement in machines for making metallic shoe-shanks
US129347A (en) Improvement in machines for cutting, punching, and bending metal shoe-shanks
US234671A (en) Barb bender and cutter
US212425A (en) Improvement in machines for making metal tubes
US64254A (en) robinson
US330686A (en) Barb-wire machine
US230180A (en) dorg-an
US200947A (en) Improvement in wire cutting and bending machines
US138658A (en) johnsoe
US240477A (en) stover
US373458A (en) Machine for making spur-wheel fencing
US420931A (en) Machine for finishing nuts
US12443A (en) Improvement in machines for making- butt-hinges
US148547A (en) Improvement in machines for making staples
US366373A (en) Machine for making horseshoes
US330337A (en) Albert d
US296628A (en) Machine for making barbed staples
US219113A (en) Improvement in machines for punching nut-blank bars
US119711A (en) Improvement in staple-machines
US249255A (en) Riveting or eyeleting machine
US498838A (en) Machine for bending horseshoe-blanks
US921588A (en) Box-end-stapling machine.