US103323A - Improvement in the manufacture op sheet-iron - Google Patents

Improvement in the manufacture op sheet-iron Download PDF

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US103323A
US103323A US103323DA US103323A US 103323 A US103323 A US 103323A US 103323D A US103323D A US 103323DA US 103323 A US103323 A US 103323A
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iron
sheets
sheet
scale
rolls
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21BROLLING OF METAL
    • B21B1/00Metal-rolling methods or mills for making semi-finished products of solid or profiled cross-section; Sequence of operations in milling trains; Layout of rolling-mill plant, e.g. grouping of stands; Succession of passes or of sectional pass alternations
    • B21B1/22Metal-rolling methods or mills for making semi-finished products of solid or profiled cross-section; Sequence of operations in milling trains; Layout of rolling-mill plant, e.g. grouping of stands; Succession of passes or of sectional pass alternations for rolling plates, strips, bands or sheets of indefinite length
    • B21B1/227Surface roughening or texturing
    • 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
    • Y10T29/30Foil or other thin sheet-metal making or treating
    • Y10T29/301Method
    • Y10T29/303Method with assembling or disassembling of a pack

Definitions

  • the first scale formed upon the iron is of a short, brittle nature, and will easily leave the iron when it .is bent back and forth, and expose the white or pure iron underneath.
  • the oldscale protects the inner surface of the sheets, excludingthe atmosphere up to the moment of their withdrawal from the furnace, when the old-scale is instantly cooled and leaves the surface of the iron in large flakes, exposing the inner rcd-hot and perfectly clean iron to receive the new oxide covering; as soon as the atmosphere strikesit the iron rapidly cools and presents a very uniform blue shade upon both sides of the sheet.
  • the thin oxide covering will prevent the bars or slabs from rusting after they have been rolled to polish them, between suitable grooves or rolls that are highly polished forthis purpose.
  • the pack is now divided in the middle, and the two outside sheets with the surfaces that before were next to the rolls are placed in the middle facing each other.
  • The. pack is then again passed between the rolls, the necessary pressure applied, and a few passes will complete the pack; or the outside sheets of each pack may be finished in the ncxtsucceeding pack, if desired.
  • Rolling the iron cold in packs has a tendency to harden it and slightly elongate or draw it out, so that if the'iron used at starting was No. 2'4, when finished it will be No. 26 or 27,
  • the iron is then annealed by heating in an open furnace, one sheet at a time, care being taken to not heat it beyond a cherry-red, as there is danger of injuring the polish as well as starting the scale if a too high heat is used.
  • the iron can also be annealed in a close iron box placed in a furnace and heated up to the required temperature and cooled gradually, as is now practiced in most rolling-mills making common sheet-iron.
  • the iron may be turned before or after it is annealed, preparatory to baling ready for market.
  • Sheet-iron that has had its scale removed by pick-- are used they become indented by use, 'and the polished sheet-iron produced by them will be correspondently indented, and will present the same appearance as the genuine Russia iron in this respect.
  • Any desired marking may be imparted to the surface of the iron by rolling between rolls that have correspondent formations upon their surfaces.
  • JOHN LIPPINUOTT Jos. M. LIPPINCOTT.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Metal Rolling (AREA)

Description

JOHN honor, OF PITTSBURG, PENNSYLVANIA, nssleNon r0 HIMSELF AND JOHN LIPPINOO T, OF SAME'PLAOE.
- Letters Patent No. 1o3,323, am May 24, 1870; mitedatezl May 7,1870.
IMPROVEMENT IN THE MANUFACTURE OI SHEET-IRON.
Theflchedule' referred to in these Letters Patent and making part of the same To all whom it may concern Be it known that I, JOHN D. GREY, of Pittsburg, in the county of Allegheny and State of Pennsylvania, have invented a new and improved Mode of Manufacturing Polished Sheet-Iron; and I do hereby declare that the following is afull, clear, and exactdgscription thereof.
After the iron is rolled into' sheets, as ordinarily practiced in rolling-mills, Ivtake the sheets, without previously annealing them, and the first process toward converting them into polished iron" is to remove the scale formed upon the surface of the iron during the process of rolling them from the barsorslabs.
The first scale formed upon the iron is of a short, brittle nature, and will easily leave the iron when it .is bent back and forth, and expose the white or pure iron underneath.-
It is practicable to polish the surface o fshcet-iron with the original scale on, but it would be of no commercial value for the various uses in the arts to which the genuine Russia iron is applied, on account of the ob-' jectionable feature referred to above, viz., the tendency of the scale flying ofi' or leaving the iron when -it is bent back and forth.
By my process, I remove the scale in a different manner from any heretofore practiced for the purpose of making a polished sheet iron, and proceed as follows:
A'wooden tank lined with sheet-lead, or other suitable material, of suflicientcapacity and dimensions to admit of dipping the sheets into a bath of water and nuriatio acid, with which the tankis filled, in aboutthe proportion of five parts of water to one part of acid; after a short time, a minute or so, the sheets are removed from the bath and plaocd'upon their, edges to drain, after which they are placed upon their edges, resting or supported by means of a rack placed on the bottom of a reverbcratory or other furnace having-a dead, clear heat, free from-flame or smoke; as the sheets of 'iron become red-hot, the scale will commence to raise in large blisters from both sides of each sheet at once; the rack,or the pins in the rack, having a space of four or five inches between them, so that the heat in the furnace will alfect all the sheets alike.
' As soon as the blisters commence to raise they will spread all over the sheetuntil' the entire scale hasleft the iron. The sheets are removed at this stage of the operation from the furnace, when they are swept clean with a broom provided for the purpose.
- A remarkable change now takes place upon the surface of the iron, which I regard as an important feature of my improvement, namely, the formation of'the thin oxide covering of a uniform thickness upon the n. .A-nn olilm and w i protects the iron from rusting when polished, as hereinafter described.
This oxide is peculiar in itself, owing to the tenacnecessary degree to raise the scale in the manner heretofore described, the oldscale protects the inner surface of the sheets, excludingthe atmosphere up to the moment of their withdrawal from the furnace, when the old-scale is instantly cooled and leaves the surface of the iron in large flakes, exposing the inner rcd-hot and perfectly clean iron to receive the new oxide covering; as soon as the atmosphere strikesit the iron rapidly cools and presents a very uniform blue shade upon both sides of the sheet.
When the scale has been removed by the common method, which is by pickling in acid, the latter penctiates the pores of the iron and will remain in it, causing the iron to rust in spite of all that can be done to prevent it. 'But when the scale has been removed as described by'rnepin 'a furnace, it will not rust after being polished, and I prefer it on this acaccount.
Bars or slabs of iroii inay be treated by my process in the mannersubstantially as I have described.
The thin oxide covering will prevent the bars or slabs from rusting after they have been rolled to polish them, between suitable grooves or rolls that are highly polished forthis purpose.
The operation of polishing the iron in sheets I accomplish in the following manner, viz:
By rolling the sheets in packs, cold, between sheet rolls such as are used in rolling-mills, with the exception that the rolls, instead of being turned slightly concave to allow for expansion caused by, rolling the iron hot, are for my pnrposes'turned perfectly flat, so as to bear equally and uniformly all over the pack of sheets while passing between the rolls.
I first pass the sh ts singly between the rolls once or twice, to flatten them and to get the bearing oz'the rolls, care being taken to place the sheets after this upon each other, in packs Of six ormore, in the salne relative position as when passed between the rolls, so
that they will lie closely togethe and preserve the same bearingin the pack that they had when rolled single. '1
he pack of sheets is then passed between the rolls, the pressure being applied gradually by'the screw in the housings, as ordinarily practiced in rolling hot iron. After several passes of the pack the polish caused by the pressure and friction between the sheets will begin to come, and the sheets will rapidiy assume the desired degrceof polish, except the two outside surfaces of the sheets next to the rolls.
The pack is now divided in the middle, and the two outside sheets with the surfaces that before were next to the rolls are placed in the middle facing each other. The. pack is then again passed between the rolls, the necessary pressure applied, and a few passes will complete the pack; or the outside sheets of each pack may be finished in the ncxtsucceeding pack, if desired. Rolling the iron cold in packs has a tendency to harden it and slightly elongate or draw it out, so that if the'iron used at starting was No. 2'4, when finished it will be No. 26 or 27,
The iron is then annealed by heating in an open furnace, one sheet at a time, care being taken to not heat it beyond a cherry-red, as there is danger of injuring the polish as well as starting the scale if a too high heat is used. The iron can also be annealed in a close iron box placed in a furnace and heated up to the required temperature and cooled gradually, as is now practiced in most rolling-mills making common sheet-iron.
Rolling sheet-iron in packs cold, for the purpose of polishing the surface,-I believ'e to be original with me, and it is a matter of the greatest importance, as the fine, delicate scale formed by the process heretofore described, upon the surface of the sheets, receives no injury when rolled in this way, and the presence of the fine scale upon the surface of the iron is necessary to protect the iron from injury by rust when exposed to a damp atmosphere.
The iron may be turned before or after it is annealed, preparatory to baling ready for market.
Sheet-iron that has had its scale removed by pick-- are used they become indented by use, 'and the polished sheet-iron produced by them will be correspondently indented, and will present the same appearance as the genuine Russia iron in this respect.
Any desired marking, may be imparted to the surface of the iron by rolling between rolls that have correspondent formations upon their surfaces.
Having thus described my invention,
What I claimas new, and desire to secure by Letters Patent, is
1. Preparing sheet-iron for being polished, by removing the natural surface scale, and forming thereon a new and thin scale, as and for the purpose specified.
2. Rolling a number of cold sheets of iron in a common pack to produce a polish by their friction upon one another, rather than by pressure in the usual manner, allas set forth.
The above specification of m y invention signed by me this 26th d of April, 186
JOHN D. GREY.
Witnesses:
JOHN LIPPINUOTT, Jos. M. LIPPINCOTT.
US103323D Improvement in the manufacture op sheet-iron Expired - Lifetime US103323A (en)

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