US2379801A - Method of producing stepped wire - Google Patents

Method of producing stepped wire Download PDF

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Publication number
US2379801A
US2379801A US485501A US48550143A US2379801A US 2379801 A US2379801 A US 2379801A US 485501 A US485501 A US 485501A US 48550143 A US48550143 A US 48550143A US 2379801 A US2379801 A US 2379801A
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Prior art keywords
wire
die
diameter
dies
length
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US485501A
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Henry Ralph Walter
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Hamilton Watch Co
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Hamilton Watch Co
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21CMANUFACTURE OF METAL SHEETS, WIRE, RODS, TUBES OR PROFILES, OTHERWISE THAN BY ROLLING; AUXILIARY OPERATIONS USED IN CONNECTION WITH METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL
    • B21C37/00Manufacture of metal sheets, bars, wire, tubes or like semi-manufactured products, not otherwise provided for; Manufacture of tubes of special shape
    • B21C37/04Manufacture of metal sheets, bars, wire, tubes or like semi-manufactured products, not otherwise provided for; Manufacture of tubes of special shape of bars or wire
    • B21C37/045Manufacture of wire or bars with particular section or properties

Definitions

  • FIG. 5 is a diagrammatic representation of FIG. 5.
  • This invention relates to a method and apparatus for producing stepped wire.
  • the object of the invention is to produce a wire having several difierent diameters.
  • a further object is to produce a wire that will be divided into lengths of different cross-sectional area.
  • a further object is to produce a wire having a series of sections arranged in gradually increasing diameters.
  • a further object is to provide a wire having a series of equal central sections with relatively larger end sections, said sections being arranged in increasing diameter.
  • Fig. 1 is a plan view of the apparatus.
  • Fig. 2 is a front view of the same.
  • Fig. 3 is an enlarged section on line 33 of Fig. 1.
  • Fig. 4 is an end view of the slide.
  • Fig. 5 is a plan view of the slide.
  • Fig. 6 is a view of the die.
  • the invention as shown is manually operated but the method could be easily adapted to com-- plete automatic operations and is not herein limited to the apparatus here shown and described.
  • a table or bench l supports a base 2 on which are fixed end sections 3 and 4 and central sections 5.
  • the end sections are two or more times the length of the central sections for a purpose hereinafter disclosed,
  • Each of the central sections is approximately two feet long which length is essential.
  • the end section 3 is formed with a cut out portion 6 having a reduced portion 1 and an enlarged portion 8.
  • the base I under the enlarged portion is also cut away to make room for a. die holder 9.
  • This die holder has a base Ill with upturned sides ll having a central slot l2 formed therein.
  • This die holder is similar to the die holder ill of the slide l4 and whose parts are numbered accordingly.
  • the slide it is formed with a base It: and a downwardly projecting guiding edge l6 and is largeenough to bridge the spaces l1 between the sections 5.
  • the slide l4 carries a wire drawing die IS in the die holder I3.
  • a reeling standard l9 having a spool 20 carried thereby and a crank 2
  • a ratchet mechanism (not shown) or any suitable stop is used to prevent the spool turning except in one direction.
  • a die receiving trough 22 is mounted on a base 23 which rest on the table I between the end 4 and the standard IS.
  • a ramp 23 leads from the table level to the trough which is on a level with the spool.
  • the dies In the carrying out of the method by the apparatus shown it is, of course, necessary to have a number of dies equal to one less than the number of graduated steps desired in, the finished wire.
  • the dies must, of course, be of different size openings and used in order, largest first.
  • the wire is measured for the desired length, secured to the spool and stretched the length of the apparatus. The end is tapered by holding the wire between two pairs of pliers and'manually drawing back and forth across the trithe die holder 9, the 'wire being drawn farther through the die until the wire is taut.
  • the die is then lifted from the die holder 9 and dropped into the die holder IS on the slide, which is positioned adjacent the cut out portion 6, and the end of the wire secured in thevise.
  • the slide is moved manually across the sections until it reaches a mark 25 on section 4.- This mark is calculated for the stretch 2B in the wire 21 due to drawing, which stretch over the entire operation varies from one-tenth the length of the wire to the entire length of
  • the die is then removed from the holder and dropped in one of the spaces I1 and the slide moved to the vise end to repeat the operation has been drawn along the wire, the wire with its accompanying dies is rolled off the sections onto the table, the wire being then wound on the spool, the dies 28, 29, 30, 3
  • This reeling operation automatically stacks the dies in order. As the dies have only to be withdrawn the short length of a single section before the reduction in diameter clears the die there is practically no further stretch in the wire.
  • Wire formed by this method may have varibeing threaded successively and each die completely carried through its operation before the next successive die is threaded on the wire, anchoring one en of the wire, moving the die having the largest diameter substantially the full length of he wire, retaining a short length of the wire of original diameter, moving the next die in decreasing order of diameter size along the length of the wire, terminating the movement of said second mentioned die at a distance from the end of the wire suflicient to retain a portion of the wire of a diameterequal to the first mentioned die, moving a third die in decreasing order of diameter along the wire a distance to leave a predetermined amount of wire equal in diameter to the diameter of said second mentioned die, moving a fourth die in decreasing order of diameter along the wire a distance to retain a length of wire equal to the diameter of the third mentioned die, moving a fifth die along the wire a suflicient distance to retain a portion of the wire equal to the diameter of the fourth mentioned die and moving a sixth die along the wire a distance sufficient to retain a portion
  • a method of drawing wire consisting of threading a plurality of dies having gradually decreasing diameters on said wire, said dies being threaded'successively and each die completely carried through its operation before the next successive die is threaded on the wire, anchoring one end of the wire, moving the die having the largest diameter substantially the full length of the wire, retaining a short length of the wire of original diameter, moving the next die in decreasing order of diameter size along the length of the wire, terminating the move- .ment of said second mentioned die at a disdistance to retain a length of wire equal to the diameter of the third mentioned die, moving a fifth die along the wire a suflicient distance to retain a portion of the wire equal to the diame- ⁇ 161 of the fourth mentioned die-and moving a sixth die along the wire a distance sufficient to retain a portion of the wire equal in diameter to the fifth mentioned die and an additional portion of the wire equal in diameter to the sixth mentioned die, all of said portions of the wire of different diameters being substantially of equal length,

Description

July 3, 1945. R, w. HENRY 2,379,801
METHOD OF PRODUCING STEPPED WIRE Filed May 3, 1943 FIG. 6.
FIG. 5.
FIG. I.
FIG. 2.
INVENTOR. RALPH W. HENRY ATT Y.
I Patented July 3, 1945 METHOD OF PRODUCING STEPPED WIRE Ralph Walter Henry, Manor Township, Lancaster County, Pa., assignor to Hamilton Watch Company, Lancaster, Pa.
Application May 3, 1943, Serial No. 485,501
2 Claims.
This invention relates to a method and apparatus for producing stepped wire. The object of the invention is to produce a wire having several difierent diameters.
A further object is to produce a wire that will be divided into lengths of different cross-sectional area.
A further object is to produce a wire having a series of sections arranged in gradually increasing diameters.
A further object is to provide a wire having a series of equal central sections with relatively larger end sections, said sections being arranged in increasing diameter.
The invention is illustrated to support the method in the drawing in which:
Fig. 1 is a plan view of the apparatus.
Fig. 2 is a front view of the same.
Fig. 3 is an enlarged section on line 33 of Fig. 1.
Fig. 4 is an end view of the slide.
Fig. 5 is a plan view of the slide.
Fig. 6 is a view of the die.
The invention as shown is manually operated but the method could be easily adapted to com-- plete automatic operations and is not herein limited to the apparatus here shown and described.
Referring to the drawing a table or bench l supports a base 2 on which are fixed end sections 3 and 4 and central sections 5. The end sections are two or more times the length of the central sections for a purpose hereinafter disclosed, Each of the central sections is approximately two feet long which length is essential.
The end section 3 is formed with a cut out portion 6 having a reduced portion 1 and an enlarged portion 8. The base I under the enlarged portion is also cut away to make room for a. die holder 9. This die holder has a base Ill with upturned sides ll having a central slot l2 formed therein. This die holder is similar to the die holder ill of the slide l4 and whose parts are numbered accordingly.
The slide it is formed with a base It: and a downwardly projecting guiding edge l6 and is largeenough to bridge the spaces l1 between the sections 5. The slide l4 carries a wire drawing die IS in the die holder I3.
Located at the end 4 of the apparatus is a reeling standard l9 having a spool 20 carried thereby and a crank 2| to turn said spool. A ratchet mechanism (not shown) or any suitable stop is used to prevent the spool turning except in one direction.
A die receiving trough 22 is mounted on a base 23 which rest on the table I between the end 4 and the standard IS. A ramp 23 leads from the table level to the trough which is on a level with the spool.
In the carrying out of the method by the apparatus shown it is, of course, necessary to have a number of dies equal to one less than the number of graduated steps desired in, the finished wire. The dies must, of course, be of different size openings and used in order, largest first. The wire is measured for the desired length, secured to the spool and stretched the length of the apparatus. The end is tapered by holding the wire between two pairs of pliers and'manually drawing back and forth across the trithe die holder 9, the 'wire being drawn farther through the die until the wire is taut. The die is then lifted from the die holder 9 and dropped into the die holder IS on the slide, which is positioned adjacent the cut out portion 6, and the end of the wire secured in thevise. The slide is moved manually across the sections until it reaches a mark 25 on section 4.- This mark is calculated for the stretch 2B in the wire 21 due to drawing, which stretch over the entire operation varies from one-tenth the length of the wire to the entire length of the wire.
In calibrating for stretch as many stop marks may be used as there are wires of different diameters drawn. For convenience only two stopping marks are shown. The last section is left untouched as the wire is selected fora diameter equal to the desired largestdiameter.
The die is then removed from the holder and dropped in one of the spaces I1 and the slide moved to the vise end to repeat the operation has been drawn along the wire, the wire with its accompanying dies is rolled off the sections onto the table, the wire being then wound on the spool, the dies 28, 29, 30, 3| and 32 being shown in place in the die receiving trough, while die 33 is shown (Fig. 3) being drawn along After the last die the ramp towards the trough. This reeling operation automatically stacks the dies in order. As the dies have only to be withdrawn the short length of a single section before the reduction in diameter clears the die there is practically no further stretch in the wire.
Wire formed by this method may have varibeing threaded successively and each die completely carried through its operation before the next successive die is threaded on the wire, anchoring one en of the wire, moving the die having the largest diameter substantially the full length of he wire, retaining a short length of the wire of original diameter, moving the next die in decreasing order of diameter size along the length of the wire, terminating the movement of said second mentioned die at a distance from the end of the wire suflicient to retain a portion of the wire of a diameterequal to the first mentioned die, moving a third die in decreasing order of diameter along the wire a distance to leave a predetermined amount of wire equal in diameter to the diameter of said second mentioned die, moving a fourth die in decreasing order of diameter along the wire a distance to retain a length of wire equal to the diameter of the third mentioned die, moving a fifth die along the wire a suflicient distance to retain a portion of the wire equal to the diameter of the fourth mentioned die and moving a sixth die along the wire a distance sufficient to retain a portion of the wire equal in diameter to the fifth mentioned die and an additional portion of the wire equal in diameter to the sixth mentioned die, spooling the wire from the large end, the dies being arrested by a trough, the wire being drawn completely through the dies, leaving said dies in graduated position in the trough.
2. A method of drawing wire consisting of threading a plurality of dies having gradually decreasing diameters on said wire, said dies being threaded'successively and each die completely carried through its operation before the next successive die is threaded on the wire, anchoring one end of the wire, moving the die having the largest diameter substantially the full length of the wire, retaining a short length of the wire of original diameter, moving the next die in decreasing order of diameter size along the length of the wire, terminating the move- .ment of said second mentioned die at a disdistance to retain a length of wire equal to the diameter of the third mentioned die, moving a fifth die along the wire a suflicient distance to retain a portion of the wire equal to the diame- {161 of the fourth mentioned die-and moving a sixth die along the wire a distance sufficient to retain a portion of the wire equal in diameter to the fifth mentioned die and an additional portion of the wire equal in diameter to the sixth mentioned die, all of said portions of the wire of different diameters being substantially of equal length, spooling the wire from the large end, the dies being arrested by a trough, the wire being drawn completely through the dies, leaving said dies'in graduated position in the trough.
RALPH WALTER HENRY.
US485501A 1943-05-03 1943-05-03 Method of producing stepped wire Expired - Lifetime US2379801A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2900073A (en) * 1954-03-16 1959-08-18 Scovill Manufacturing Co Wire coiling machine
US4805434A (en) * 1984-10-19 1989-02-21 Schumag Ag Method for straight-line drawing of round material
US5001825A (en) * 1988-11-03 1991-03-26 Cordis Corporation Catheter guidewire fabrication method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2900073A (en) * 1954-03-16 1959-08-18 Scovill Manufacturing Co Wire coiling machine
US4805434A (en) * 1984-10-19 1989-02-21 Schumag Ag Method for straight-line drawing of round material
US5001825A (en) * 1988-11-03 1991-03-26 Cordis Corporation Catheter guidewire fabrication method

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