US15620A - John robertson - Google Patents

John robertson Download PDF

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Publication number
US15620A
US15620A US15620DA US15620A US 15620 A US15620 A US 15620A US 15620D A US15620D A US 15620DA US 15620 A US15620 A US 15620A
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Prior art keywords
lead
core
piston
cylinder
robertson
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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
    • B21C23/00Extruding metal; Impact extrusion
    • B21C23/02Making uncoated products
    • B21C23/04Making uncoated products by direct extrusion
    • B21C23/08Making wire, bars, tubes
    • B21C23/085Making tubes

Definitions

  • Figure 1 in No. 1 represents a vertical sectional elevation of the machine for making pipes or tubes.
  • Fig. 2 in No. 2 represents the same machine in an outside elevation. I
  • My invention of this improvement applies principally to the machinery or apparatus for making or manufacturing pipes or tubes from lead or other metal, capable of being forced by means of great pressure from out of a cylinder 0i receiver, through or between apertures, dies and cores, when in a solid state, described and set forth in the specification of a patent granted to Thomas Burr in Great Britain.
  • the core is immovably secured to the end of the piston, consequently it moves simultaneously with the piston, through the shrunken uncompressed lead, which is full of holes, caused by the sudden contraction around the inner periphery of the cylinder, likewise around the core; the liability of the core to become bent is only on the first move of the piston, and this same liability continues until the lead is fully compressed into a solid mass and before any pipe is formed.
  • B the hydraulic ram, 0 the piston or lead ram, which is hollowed out in the end, to prevent the lead from escaping between it and the cylinder.
  • D D the cylinder or receiver-for holding the lead
  • E E the base, to which is secured the upper part or hydraulic press by means of columns
  • F F. g, g cover for hydraulic press
  • h it, guide for core in end of piston, which is curveddownward toward the core to prevent the lead from escaping between it and the guide.
  • the core is, is, die; Z, Z, bottom of lead cylinder or die holder; m feed pipe for hydraulic press.
  • the core 71 is held loosely in the end of the piston G by means of the guide it, h,- there is a small space made in the end of the piston C to receive the head of the core 2' and to allow the piston to move over it a sufficient distance to compress the lead without disturbing the core, as already stated; after the piston has moved sufficiently to compress the lead and the pipe begins to issue from the cylinder the core is no longer liable to become bent or buckled, but has rather a tendency to straighten out and be drawn toward the center of the die, the core then moves with the piston precisely in like manner as in the machine invented by Thomas Burr.
  • the hydraulic ram B is pumped up, carrying the lead piston C with it, high enough to allow the molten lead to be poured into the cylin der or receiver D D.
  • the cylinder or receiver D D being previously heated, is filled with molten lead, which is allowed a few seconds of time to set, having set, the core 71 is firmly held in the partially contracted lead;
  • the piston C being set in motion, moves freely over the core 5, compressing the lead till the pipe begins to issue, when the core then moves with the piston, the 'same as already stated until it comes to the bottom of the cylinder; when returning the core ibeing held firmly in the die by means of the compressed lead until the piston C moves up two or three inches, the guide it, h then presses against the head of the core and lifts it up with the piston to the

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Press Drives And Press Lines (AREA)

Description

2 Sheets-Sheet 1.
J. ROBERTSON. LEAD PIPE MAGHINB;
No. 15,620. Patented Aug. 26; 1856.
2 She eta-Sheet 2.
J.ROBERTSON.' LEAD PIPE MACHINE.
No. 15,620. Patented Aug. 26, 1856.
JOHN ROBERTSON, OF BROOKLYN, NEW YORK.
. MAKING LEAD mrn.
Specification of Letters Patent No. 15,620, dated August 26, 1856.
To all whom it may concern Be it known that I, JOHN ROBERTSON, of the city of Brooklyn, in the county of Kings and State of New York, have invented certain new and useful Improvements in Machinery for Making Pipes or Tubes of Lead or other Soft Metal; and I do hereby de clare the following to be a full, clear, and
exact description of the same, reference being had to the accompanying drawing, making part of this specification.
Figure 1 in No. 1 represents a vertical sectional elevation of the machine for making pipes or tubes. Fig. 2 in No. 2 represents the same machine in an outside elevation. I
' Like letters indicate like parts in both figures. p
My invention of this improvement applies principally to the machinery or apparatus for making or manufacturing pipes or tubes from lead or other metal, capable of being forced by means of great pressure from out of a cylinder 0i receiver, through or between apertures, dies and cores, when in a solid state, described and set forth in the specification of a patent granted to Thomas Burr in Great Britain.
In the plan described by ThomasBurr,
the core. is immovably secured to the end of the piston, consequently it moves simultaneously with the piston, through the shrunken uncompressed lead, which is full of holes, caused by the sudden contraction around the inner periphery of the cylinder, likewise around the core; the liability of the core to become bent is only on the first move of the piston, and this same liability continues until the lead is fully compressed into a solid mass and before any pipe is formed. These defects it is the object of my improvement to remedy. In my improvement, the core is not disturbed by the action of the piston until the lead is fully compressed and the pipe begins to issue.
My said improvement may be fully understood by referring to the accompanying drawings and to the explanations contained in this specification.
I use a powerful hydraulic press represented by A A in Fig. 1. B the hydraulic ram, 0 the piston or lead ram, which is hollowed out in the end, to prevent the lead from escaping between it and the cylinder.
D D the cylinder or receiver-for holding the lead; E E, the base, to which is secured the upper part or hydraulic press by means of columns F F. g, g, cover for hydraulic press; h, it, guide for core in end of piston, which is curveddownward toward the core to prevent the lead from escaping between it and the guide. 2', the core; is, is, die; Z, Z, bottom of lead cylinder or die holder; m feed pipe for hydraulic press.
The core 71 is held loosely in the end of the piston G by means of the guide it, h,- there is a small space made in the end of the piston C to receive the head of the core 2' and to allow the piston to move over it a sufficient distance to compress the lead without disturbing the core, as already stated; after the piston has moved sufficiently to compress the lead and the pipe begins to issue from the cylinder the core is no longer liable to become bent or buckled, but has rather a tendency to straighten out and be drawn toward the center of the die, the core then moves with the piston precisely in like manner as in the machine invented by Thomas Burr.
In the operation of this machine the hydraulic ram B is pumped up, carrying the lead piston C with it, high enough to allow the molten lead to be poured into the cylin der or receiver D D. For the first operation there is a ring of brass or other metal or a short piece of lead pipe put in between the core and die and to prevent the lead from running out thereat, the machine being thus arranged, the cylinder or receiver D D being previously heated, is filled with molten lead, which is allowed a few seconds of time to set, having set, the core 71 is firmly held in the partially contracted lead; the piston C being set in motion, moves freely over the core 5, compressing the lead till the pipe begins to issue, when the core then moves with the piston, the 'same as already stated until it comes to the bottom of the cylinder; when returning the core ibeing held firmly in the die by means of the compressed lead until the piston C moves up two or three inches, the guide it, h then presses against the head of the core and lifts it up with the piston to the proper position to receive the succeeding charge and so on.
I do not claim as my invention any part of the cylinder, nor of the dies, nor of the arrangement thereof in the cylinder, nor the manner of adapting these to the hydraulic press, nor the mode of operation generally, all of which have been substantially described in the specifications of the patents of Thomas Burr heretofore referred to but What I do claim as constituting my invention and desire to secure by Letters Pat- 5 ent, is-
The construction and arrangement of the core 71 With the guide it, h, in combination With the piston C for the purpose set forth, as herein described.
JOHN ROBERTSON.
WVitnesses ANDREW Dow, WILLIAM WILBER.
US15620D John robertson Expired - Lifetime US15620A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030064171A1 (en) * 1999-10-25 2003-04-03 Burrows Paul E. Method for edge sealing barrier films
US20040206953A1 (en) * 2003-04-16 2004-10-21 Robert Morena Hermetically sealed glass package and method of fabrication

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030064171A1 (en) * 1999-10-25 2003-04-03 Burrows Paul E. Method for edge sealing barrier films
US20040265508A9 (en) * 1999-10-25 2004-12-30 Burrows Paul E. Method for edge sealing barrier films
US20040206953A1 (en) * 2003-04-16 2004-10-21 Robert Morena Hermetically sealed glass package and method of fabrication

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