US174609A - Improvement in machines for bending tubing - Google Patents

Improvement in machines for bending tubing Download PDF

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US174609A
US174609A US174609DA US174609A US 174609 A US174609 A US 174609A US 174609D A US174609D A US 174609DA US 174609 A US174609 A US 174609A
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pipe
bent
tube
shoes
bending
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    • 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
    • B21D7/00Bending rods, profiles, or tubes
    • B21D7/06Bending rods, profiles, or tubes in press brakes or between rams and anvils or abutments; Pliers with forming dies
    • B21D7/063Pliers with forming dies
    • 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
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/4981Utilizing transitory attached element or associated separate material

Definitions

  • My invention consists, first,in supporting that part of the pipe ortube that is to be bent upon its exterior by a flexible metallic sleeve, to prevent rupture, buckling, or distortion in that direction.
  • 0 represents a metallic tube or gas-pipe, those at Figs. 3 and 4 being round, and that at Fig. 5 being square.
  • the pipe or tube is filled at the portion that is to be bent with sand or other granular substance, 0, which is held in place by rubber or other elastic (by preference) packing, d, at
  • Fig. 4 the same general plan is shown as at Fig. 3, the only difference being that, instead of the sand or other granular substance and the metal strips, a filling or packing of vulcanized rubber, i, is shown, through the center of which passes a chain, j.
  • the packing or filling 1 is expanded by a nut, screw, and washer or tube, in the same way and for .the same purpose as that described of Fig. 3.
  • the sleeve D is put on in the same way and for the same purpose.
  • a square tube or pipe Such pipe I fill with a packing composed of V-shaped blocks or pieces strung upon a wirerope, k. This rope is furnished with a screw, nut, and washer or tube, and the blocks or pieces 11?. are drawn up by the screw for the same purpose as those, cl 2', in Figs. 3 and 4- viz., to completely fill the bore of the tube, particularly those sides of it which form the outer and inner curve of the bend.
  • this block packing or filling When this block packing or filling is in a straight tube, they will appear as seen in Fig. 5. When the pipe is bent this filling will assume the form shown at Fig. 7.
  • the pipe is prepared or supported on its interior and exterior, as hereinabove set forth, it is bent around a former, E, Fig. 8, as will be now described.
  • the former E is built up out of a series of disks made of vulcanized rubber, card-paper board, leather, iron, or other similar material, these disks being clamped and held tightly together by a screw-bolt and nut, as shown at n.
  • the former is placed upon a slide or frame, F, that can be moved by a screw, G, or by a lever or other powerful appliance.
  • the shoes are shown at H I. That at H is built up out of pieces of vulcanized rubber, card-board paper, leather, or other similar material, clamped in the shoe-frame by screws J and a follower, 0, and the concave face of the shoe may be covered by a rubber or leather apron, p.
  • The' shoe at I has only the apron, and that made of sheet metal, fastened permanently to one side of the shoe, and connected by set-screws and slots q to the other-side of the shoe, so that it maybe adjusted to the shoe.
  • These shoes are made slightly tapering, and the backs of them rest against circular supports K K, around which they can move when the pipe is being bent.
  • Fig.8 the backs of the shoes and the perimeters of the supports K are represented as plain-surfaced. They are less liable to slip when the backs of the shoes are in the form of a cogged or toothed rack, and the perimeters of the supports are formed like a cogged gear, as seen in Fig. 9.
  • the supports in both cases are stationary, and the shoes roll around them.
  • the bending mechanism When a pipe or tube is to be bent, the bending mechanism is arranged as in Fig. 8, and the pipe or tube is placed between the former E and theshoes H I, and lying in or against the concave surfaces of each.
  • the former is then run up against the pipe by means of the screw G, or otherwise, and as it bends the pipe by passing through the space between the shoes, said shoes turn against their back supports, still bearing the pressure of the pipe against them, until finally, when the pipe L, Fig. 9, is bent as therein shown, the shoes have assumed a position at right angles to that they occupied before the bending commenced.
  • the pipe of course, can be bent to any desired angle, and is shown as bent to a full right angle in Fig. 9 to show the capacity of the bending mechanism.
  • Fig. 10 The manner of preparing the disks out of which a former of many different sizes can be built up is shown at Fig. 10.
  • the disks of rubber, paper-board, or leather are tightly clamped between heads or chucks, and then in a lathe turned to the shape or form as shown in said Fig. 10.
  • Out of this series of disks may be built up not only the sized formers shown at Figs. 11, 12, 18, and 14, but also any intermediate sizes, so that one set of disks may serve to build up a former for almost any and every sized pipe that is bent, or capable of being bent, and so save the expense of solid formers of wood or metal-as, for instance, (the disks being numbered as shown in Fig.
  • the former built up out of a series of disks of sheet vulcanite rubber, paper cardboard, leather, iron, or other similar material, as and for the purpose described.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)

Description

-2 Sheets-Sheet '1 R. WRIGHT.
MACHINE FOR BENDING TUBING. No.174,609. Patented March 7,1876.
WI/Zhewes. Im/an/lzm 71/: xiefilawon/ v q I W/u 2 She-etsSheet2.
R. WRIGHT.
MACHINE FOR BENDING TUBING.
No.1 74,6O9 Patented March 7,1876,
UNITED STATES PATENT ROBERT WRIGHT, OF PHILADELPHIA, PENNSYLVANIA.
' IMPROVEMENT IN MACHINES FOR BENDING TUBING.
Specification forming part of Letters Patent Np. 174,609, dated March 7,1876; application filed November 1, 1675.
To all whom it may concern:
Be it known that I, ROBERT WRIGHT, of the city of Philadelphia and State of Pennsylvania, have invented certain new and useful Improvements in Apparatus or Mechanisms for Bending Pipes, Tubes, 850., made of Metal 5 and I do hereby declare the following to be a full, clear, and exact description of the same, reference beinghad to the accompanyingdrawings, making a part of this specification, in which Figures 1 to 7, inclusive, represent the plan of preparing the pipes or tubes with interior and exterior supports, so as to preserve their original sectional form in the process of being bent. Figs. 8 to 14, inclusive, represent the appliances for bending the pipes or tubes.
In bending gas and other pipes they are liable to rupture or collapse in the bent portions, or to crimp on the inner curve or bend, and, in either case, destroy the original sectional area of the pipe; and one of the objects of my invention is to completely restrain the pipe both in its interior and upon its exterior, so that in being bent it shall retain its original sectional form. So, also, in bending gas and other pipes, owing to the many sizes of such pipes, as many different formers and shoes were required as there were sizes of pipe to be bent, and these formers and shoes were. quite expensive and troublesome to construct. The object and purpose of this part of my invention is to avoid the making of a former and shoes for each special size of pipe, and tobuild up such formers and shoes out of a series of disks or pieces of suitable material and form, as will be explained.
My invention consists, first,in supporting that part of the pipe ortube that is to be bent upon its exterior by a flexible metallic sleeve, to prevent rupture, buckling, or distortion in that direction.
My invention further consists in an elastic or yielding packing within the pipe or tube, that is capable of being forced out rigidly against the pipe interiorly, to prevent collapse or crimping in that direction.
My invention further consists in a former around which the pipes or tubes are to be bent, when said former is built up out of a series of disks made of vulcanized rubber, card-board paper, leather, or similar material.
.My invention further consists in a shoe or shoes for holding the ends or straight part of the pipe at or near the bend, when the portion of said shoe or shoes that bears against the pipe is composed of layers of vulcanized rubform while undergoing the bending process.
B represents similarly flexible sleeves, made by bending or winding square steel wire spirally around a mandrel, and in this form not requiring'the flexible strip 1). The sleeves at B, like that at A, are shown in a bent form, the former showing how short a bend may be made in the pipe, while its exterior is supported by a continuous metallic surface on the shorter curve, and an almost continuous bearing on the exterior of the longer bend or curve.
At Figs. 3, 4., and 5, 0 represents a metallic tube or gas-pipe, those at Figs. 3 and 4 being round, and that at Fig. 5 being square. In Fig. 3 the pipe or tube is filled at the portion that is to be bent with sand or other granular substance, 0, which is held in place by rubber or other elastic (by preference) packing, d, at
or near each end'of the pipe or bend to be put I in it. Through the pipe, packing, and filling passes a flexible metallic strip, (one or more,) 0, which has a head, 0, of any suitable kind, upon one end of it, so that it will bear against the packing without being drawn through it,
and upon the opposite end of the strip or strips is attached a screw, f, upon which a nut, g, works. Between the nut g and the packing cl there is a washer or tube, 71., the lower end of which, or the follower thereon, rests upon the packing 01, while the nut g bears against the top of the washer or tube It. By this construction the turning of the nut tends to draw the two packages cl together with great force, and this force, coming upon the sand or other filling, c, expands said filling and forces it againstthe metal of the tube with sufficient compactness to prevent the tube in process of being bent from collapse or crimping on its interior. When the tube is thus prepared an elastic sleeve, such is shown at A B D, is slipped over the tube and onto the portion to be bent, and this sleeve prevents rupture or crimping on the exterior of the tube, so that a tube thus restrained and supported inside and outside can be readily and easily bent, as will be hereinafter described, without injury to or change of the original sectional area of the pipe.
At Fig. 4: the same general plan is shown as at Fig. 3, the only difference being that, instead of the sand or other granular substance and the metal strips, a filling or packing of vulcanized rubber, i, is shown, through the center of which passes a chain, j. The packing or filling 1; is expanded by a nut, screw, and washer or tube, in the same way and for .the same purpose as that described of Fig. 3. The sleeve D is put on in the same way and for the same purpose.
At Fig. 5 is shown a square tube or pipe. Such pipe I fill with a packing composed of V-shaped blocks or pieces strung upon a wirerope, k. This rope is furnished with a screw, nut, and washer or tube, and the blocks or pieces 11?. are drawn up by the screw for the same purpose as those, cl 2', in Figs. 3 and 4- viz., to completely fill the bore of the tube, particularly those sides of it which form the outer and inner curve of the bend. When this block packing or filling is in a straight tube, they will appear as seen in Fig. 5. When the pipe is bent this filling will assume the form shown at Fig. 7. When the pipe is bent the slacking of the nut upon the screw frees the'filling from the tube sufficien tl y to withdraw it. A square pipe may be bent with afilling such as shown and described at Figs. 3 and 4, but I have found that described at Figs. 5 and 7 to answer well.
While I have only described a screw, nut, and washer or tube as devices for applying longitudinal pressure to the filling or packing through the flexible strips, chain, or wire-rope, the sameresult can be attained by other devices well known, so that I do not limit myself to these devices, but mean to claim their mechanical substitutes for expanding the filling.
WVhen the pipe is prepared or supported on its interior and exterior, as hereinabove set forth, it is bent around a former, E, Fig. 8, as will be now described. The former E is built up out of a series of disks made of vulcanized rubber, card-paper board, leather, iron, or other similar material, these disks being clamped and held tightly together by a screw-bolt and nut, as shown at n. The former is placed upon a slide or frame, F, that can be moved by a screw, G, or by a lever or other powerful appliance.
The shoes are shown at H I. That at H is built up out of pieces of vulcanized rubber, card-board paper, leather, or other similar material, clamped in the shoe-frame by screws J and a follower, 0, and the concave face of the shoe may be covered by a rubber or leather apron, p. The' shoe at I has only the apron, and that made of sheet metal, fastened permanently to one side of the shoe, and connected by set-screws and slots q to the other-side of the shoe, so that it maybe adjusted to the shoe. These shoes are made slightly tapering, and the backs of them rest against circular supports K K, around which they can move when the pipe is being bent. In Fig.8 the backs of the shoes and the perimeters of the supports K are represented as plain-surfaced. They are less liable to slip when the backs of the shoes are in the form of a cogged or toothed rack, and the perimeters of the supports are formed like a cogged gear, as seen in Fig. 9. The supports in both cases are stationary, and the shoes roll around them.
When a pipe or tube is to be bent, the bending mechanism is arranged as in Fig. 8, and the pipe or tube is placed between the former E and theshoes H I, and lying in or against the concave surfaces of each. The former is then run up against the pipe by means of the screw G, or otherwise, and as it bends the pipe by passing through the space between the shoes, said shoes turn against their back supports, still bearing the pressure of the pipe against them, until finally, when the pipe L, Fig. 9, is bent as therein shown, the shoes have assumed a position at right angles to that they occupied before the bending commenced. The pipe, of course, can be bent to any desired angle, and is shown as bent to a full right angle in Fig. 9 to show the capacity of the bending mechanism.
The manner of preparing the disks out of which a former of many different sizes can be built up is shown at Fig. 10. The disks of rubber, paper-board, or leather are tightly clamped between heads or chucks, and then in a lathe turned to the shape or form as shown in said Fig. 10. Out of this series of disks may be built up not only the sized formers shown at Figs. 11, 12, 18, and 14, but also any intermediate sizes, so that one set of disks may serve to build up a former for almost any and every sized pipe that is bent, or capable of being bent, and so save the expense of solid formers of wood or metal-as, for instance, (the disks being numbered as shown in Fig. 10,) two eighteens, two fourteens, and two elevens would make a former for a pipe or tube of the diameter shown at Fig. 11; two eighteens, two fifteens, two thirteens, and two tens make a former for a pipe or tube of the diameter shown at Fig. 12; and twos of the numbers shown at Figs. 13 and 14 would make formers for the respective pipes or tubes of the diameters shown at said Figs. 13 and 14, respectively. The vulcanized rubber, paper-board, or leather is sufficiently rigid to resist the pressure upon them caused by the bending,
and the pinching of the shoes on the exterior plan of straining up the packing or filling; but
What I do claim is-- 1. In combination with a packing or filling for gas or other pipes that areto be bent, a metallic strip or strips, chain or wire rope passing through said filling, and a nut and screw, or their mechanical equivalent, for expanding said filling against the pipe by longitudinal pressure, as and for the purpose described and represented.
2. A flexible metallic sleeve formed of the rings a, attached to the flexible band b, when applied to the exterior of the pipe or tube that is to be bent, to prevent rupture or crimping of the pipe in the act of bending, substantially as described.
3. The former built up out of a series of disks of sheet vulcanite rubber, paper cardboard, leather, iron, or other similar material, as and for the purpose described.
4. The shoes H I, in combination with their back supports K, as and for the purpose dcscribed and represented.
ROBERT WRIGHT. Witnesses:
J. PLANKINTON, H. H. GREENMAN.
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Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2425800A (en) * 1946-01-26 1947-08-19 Jr Vivian E Hamilton Cable for reinforcing pipe during bending operation
US2452125A (en) * 1945-06-12 1948-10-26 Titeflex Inc Method of forming and changing the cross section of convoluted metal tubing
US2453531A (en) * 1945-04-27 1948-11-09 Butler Manufacturing Co Internal mandrel
US2477910A (en) * 1947-01-16 1949-08-02 Tal S Prestal Bender Inc Ejector for reciprocating bender with pivoted sidearms
US2496412A (en) * 1948-03-29 1950-02-07 John J Scheppe Drill shaft
US2497622A (en) * 1947-01-16 1950-02-14 Tal S Prestal Bender Inc Pipe bending apparatus with pivoted side shapers
US2516372A (en) * 1945-09-17 1950-07-25 W C Norris Manufacturer Inc Method of and means for forming pipe bends
US2528315A (en) * 1945-05-15 1950-10-31 Dresser Ind Apparatus for forming tubular l's
US2547870A (en) * 1947-12-04 1951-04-03 Clarence L Kelso Pipe-bending apparatus
US2715424A (en) * 1952-01-30 1955-08-16 Rockwell Spring & Axle Co Wire forming machine
US2776697A (en) * 1955-03-24 1957-01-08 Leonard E Zerlaut Flexible mandrel
DE960046C (en) * 1954-07-26 1957-03-14 Goodyear Tire & Rubber Support mandrel for bending pipes
US2825386A (en) * 1954-11-17 1958-03-04 Western Electric Co Universal bending mandrel utilizing connecting cable
US2844058A (en) * 1956-01-09 1958-07-22 Fred A Fasano Apparatus for bending tubes
US2936517A (en) * 1955-02-16 1960-05-17 Brown Fintube Co Method and apparatus for brazing fins to tubes
US2961749A (en) * 1955-02-16 1960-11-29 Brown Fintube Co Method and apparatus for brazing fins to tubes
US3495505A (en) * 1965-08-18 1970-02-17 Tetra Pak Ab Forming ring for guiding and shaping a web-like material into a tube
US4087509A (en) * 1973-02-05 1978-05-02 Gates John I Method for manufacture of window with extruded synthetic frame and the like
US5272905A (en) * 1992-09-14 1993-12-28 General Motors Corporation Exterior mandrel for multiaxis bender
US6032511A (en) * 1998-12-11 2000-03-07 Tseng; Shao-Chien Three-dimensional simple flexible mould for bending pipes
US6044687A (en) * 1998-12-11 2000-04-04 Tseng; Shao-Chien Three-dimensional simple flexible mould for bending pipes

Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2453531A (en) * 1945-04-27 1948-11-09 Butler Manufacturing Co Internal mandrel
US2528315A (en) * 1945-05-15 1950-10-31 Dresser Ind Apparatus for forming tubular l's
US2452125A (en) * 1945-06-12 1948-10-26 Titeflex Inc Method of forming and changing the cross section of convoluted metal tubing
US2516372A (en) * 1945-09-17 1950-07-25 W C Norris Manufacturer Inc Method of and means for forming pipe bends
US2425800A (en) * 1946-01-26 1947-08-19 Jr Vivian E Hamilton Cable for reinforcing pipe during bending operation
US2477910A (en) * 1947-01-16 1949-08-02 Tal S Prestal Bender Inc Ejector for reciprocating bender with pivoted sidearms
US2497622A (en) * 1947-01-16 1950-02-14 Tal S Prestal Bender Inc Pipe bending apparatus with pivoted side shapers
US2547870A (en) * 1947-12-04 1951-04-03 Clarence L Kelso Pipe-bending apparatus
US2496412A (en) * 1948-03-29 1950-02-07 John J Scheppe Drill shaft
US2715424A (en) * 1952-01-30 1955-08-16 Rockwell Spring & Axle Co Wire forming machine
DE960046C (en) * 1954-07-26 1957-03-14 Goodyear Tire & Rubber Support mandrel for bending pipes
US2825386A (en) * 1954-11-17 1958-03-04 Western Electric Co Universal bending mandrel utilizing connecting cable
US2961749A (en) * 1955-02-16 1960-11-29 Brown Fintube Co Method and apparatus for brazing fins to tubes
US2936517A (en) * 1955-02-16 1960-05-17 Brown Fintube Co Method and apparatus for brazing fins to tubes
US2776697A (en) * 1955-03-24 1957-01-08 Leonard E Zerlaut Flexible mandrel
US2844058A (en) * 1956-01-09 1958-07-22 Fred A Fasano Apparatus for bending tubes
US3495505A (en) * 1965-08-18 1970-02-17 Tetra Pak Ab Forming ring for guiding and shaping a web-like material into a tube
US4087509A (en) * 1973-02-05 1978-05-02 Gates John I Method for manufacture of window with extruded synthetic frame and the like
US5272905A (en) * 1992-09-14 1993-12-28 General Motors Corporation Exterior mandrel for multiaxis bender
US6032511A (en) * 1998-12-11 2000-03-07 Tseng; Shao-Chien Three-dimensional simple flexible mould for bending pipes
US6044687A (en) * 1998-12-11 2000-04-04 Tseng; Shao-Chien Three-dimensional simple flexible mould for bending pipes

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