US3788618A - Method and apparatus for cooling wire rod - Google Patents

Method and apparatus for cooling wire rod Download PDF

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US3788618A
US3788618A US00159685A US3788618DA US3788618A US 3788618 A US3788618 A US 3788618A US 00159685 A US00159685 A US 00159685A US 3788618D A US3788618D A US 3788618DA US 3788618 A US3788618 A US 3788618A
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bath
wire rod
loops
container
conveyor
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US00159685A
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Den Bulcke E Van
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DEN BULCKE E VAN
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DEN BULCKE E VAN
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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
    • B21C47/00Winding-up, coiling or winding-off metal wire, metal band or other flexible metal material characterised by features relevant to metal processing only
    • B21C47/26Special arrangements with regard to simultaneous or subsequent treatment of the material
    • B21C47/262Treatment of a wire, while in the form of overlapping non-concentric rings
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D9/00Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor
    • C21D9/52Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor for wires; for strips ; for rods of unlimited length
    • C21D9/525Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor for wires; for strips ; for rods of unlimited length for wire, for rods

Definitions

  • ABSTRACT Wire rod of indeterminate length emerging from a hot mill at elevated temperature is bent into spiral loops and fed downwardly through an aqueous cooling bath of upright cylindrical form.
  • conveyor means laterally remove and elevate the wire rod from the bath.
  • the present invention relates to methods and apparatus for cooling wire rod, particularly hard steel wire rod emerging from a hot mill.
  • fluid bed techniques In connection with the known arrangements, of which many are in operation, it has been proposed to use fluid bed techniques.
  • the results of fluid bed technique are on the one hand satisfactory with respect to the structure of the product.
  • fluid bed techniques may introduce complexities of their own and greatly increase the capital cost of the plant.
  • fluid bed techniques increase the cost of operation by virtue of the abrasiveness of the materials that are involved.
  • the present invention overcomes these and other difficulties and disadvantages, by providing methods and apparatus in which the wire rod leaving the hot mill is bent to an open-loop spiral and then is introduced into an aqueous bath those temperature is greater than 75 percent of its boiling temperature, expressed in degrees Centigrade, which bath contains in suspension and/or solution materials such as calcium chloride and surfactants.
  • the surfactants may be natural or synthetic.
  • the procedure for treating wire rod according to the present invention includes as an important characteristic that the wire rod, preferably at a temperature between 800C. and l,O50C., is introduced in the form of a spiral Whose loops are separated from each other, into a substantially cylindrical chamber containing an aqueous bath in which the loops are immersed, the loops remaining in the bath long enough to effect the desired metallurgical process. The wire rod is then removed from the bath to complete the cooling.
  • the coils are introduced into the aqueous bath preferably letting them descend therein without the aid of any mechanical means.
  • apparatus for pushing or pulling to insure advancement of the loops through the bath.
  • a particular example of the process according to the present invention consists in immersing wire rod coils of indeterminate length at a speed, and into an aqueous bath of a depth, such that the dwell time in the bath of a transverse section at one point along the wire rod is as close as possible to the dwell time necessary to accomplish the metallurgical operation comprising the allotropic transformation of the steel during cooling, e.g., the formation of austenite by quenching from above the austenitic transformation temperature.
  • Another object of the present invention is the provision of apparatus to practice the above-described method.
  • the apparatus of the present invention is principally comprised of the following:
  • Means to remove the wire rod from the receptacle Means to remove the wire rod from the receptacle.
  • the receptacle containing the aqueous bath has a circular section; and preferably the longitudinal axis of the receptacle is substantially vertical and of a length substantially greater than the width of the receptacle.
  • the dimensions of the treatment receptacle are determined as a function of the metallurgical operation.
  • the height of the receptacle is advantageously arranged to accommodate foam that may form on the surface of the bath.
  • the depth of the bath should be sufficient to ensure substantial austenitic transformation in the course of the passage of the wire rod through the bath.
  • the depth of the bath may all be modified so as to correspond to the operational conditions.
  • Means are provided for removing the wire rod from the bath.
  • One such arrangement which is particularly advantageous comprises a continuous inclined conveyor of which the lower end is situated at the bottom of the treatment vessel and the upper end emerges from an inclined casing whose upper end is at a level at least as high as the surface of the aqueous treatment bath.
  • the conveyor may for example be an endless chain conveyor on which the loops of wire rod come to rest and are arranged and conveyed in overlapping nonconcentric fashion.
  • an elevator conveyor comprised by a chain having projections thereon that interfinger with the loops, each finger of the conveyor receiving either one or a plurality of the loops.
  • Another advantageous arrangement is the provision of a vertical elevator in a casing adjacent the treatment bath, with a liquid lock at the bottom of the treatment bath through which completed coils of wire rod are bodily transferred to the elevator and raised by the elevator in the form of tight rolls of wire rod. Such an arrangement reduces the volume of the bath which must be maintained.
  • the wire rod from a hot mill passes through a coiling device 1 by which it is bent into an open spiral, the loops of which are received on a roller conveyor 2 and fed through a guide device 3 disposed in an upright cylindrical container 4, into a bath 5 of aqueous calcium chloride solution or the like.
  • the evaporated bath liquid is conserved by a condenser 6.
  • An inclined casing 7 communicates with the lower end of the bath 5 in container 4, and houses an inclined endless chain conveyor 8 whose lower end is disposed at the bottom of bath 5 and whose upper end emerges from the surface 9 of the bath liquid that fills both the container 4 and the inclined casing 7.
  • the open loops of wire rod are then received by a roller conveyor 10 and pass through a guide device 11 onto a horizontal support where they are accumulated in the form of a tight roll of wire rod.
  • a pusher 12 then pushes the roll off the support surface onto a further roller conveyor.
  • Apparatus for cooling wire rod comprising an upright substantially cylindrical container for an aqueous bath, said container having a height substantially greater than its width, means to bend wire rod of indeterminate length into a series of open loops, means to introduce said loops after bending into the bath in a downward direction, and means to remove the loops laterally from the lower end of the bath.
  • said means for laterally removing the loops comprising conveyor means extending outside said container upwardly from adjacent the lower end of the bath to a level at least as high as the surface of the bath, and means beyond said conveyor means for collecting said loops and for assembling said loops into a roll of wire rod.
  • said means to remove the loops comprising an inclined conveyor whose lower end is disposed at the lower end of the bath to receive the loops, and a casing outside said container, said conveyor being disposed in said casing, said casing having an upper end at least as high as the level of the liquid bath in said container.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Heat Treatment Of Strip Materials And Filament Materials (AREA)

Abstract

Wire rod of indeterminate length emerging from a hot mill at elevated temperature is bent into spiral loops and fed downwardly through an aqueous cooling bath of upright cylindrical form. At the lower end of the bath, conveyor means laterally remove and elevate the wire rod from the bath.

Description

mite
States atent [191 Van Den Bulcke METHOD AND APPARATUS FOR COOLING WIRE ROD Inventor: Emile Oscar Julien Van Den Bulcke,
Quaide Rome, 22, Liege, Belgium Filed: July 6, 1971 Appl. No.: 159,685
Foreign Application Priority Data July 3, 1970 Belgium 42887 US. Cl 266/3 R, 148/153, 266/4 A Int. Cl (121d l/62 Field of Search 266/3 R, 4 A, 6 R; 140/2;
References Cited UNITED STATES PATENTS Bauer et a1. 266/4 A Jan. 29, 1974 3,442,274 5/1969 Keough 266/4 A 3,490,500 l/197O Dopper et a1 266/3 R 3,565,409 2/1971 Beck 266/4 A 3,618,922 11/1971 Crans 266/4 A 895,973 8/1908 Daniels 148/156 2,023,736 12/1935 Lloyd 148/153 3,231,432 1/1966 McLean et al.... 148/153 3,340,109 9/1967 Keough 148/153 Primary Examiner-Gerald A. Dost Attorney, Agent, or FirmY0ung & Thompson 5 7] ABSTRACT Wire rod of indeterminate length emerging from a hot mill at elevated temperature is bent into spiral loops and fed downwardly through an aqueous cooling bath of upright cylindrical form. At the lower end of the bath, conveyor means laterally remove and elevate the wire rod from the bath.
6 Claims, 1 Drawing Figure METHOD AND APPARATUS FOR COOLING WIRE ROD The present invention relates to methods and apparatus for cooling wire rod, particularly hard steel wire rod emerging from a hot mill.
Considerable research has been performed in recent years, aimed at improving the final quality of wire rod, the nature of its surface, its microstructure and the homogeneity of its microstructure, which however has been concerned almost exclusively with treatments to which the rod is subjected in the final units of the hot mill and upon cooling the wire rod when it leaves the hotmill.
In addition, it is highly desirable to eliminate the difficulties that now attend the treatment of wire rod obtained in known manners and intended for drawing, which treatments include pickling, patenting and hot coating.
Among the arrangements for the controlled cooling of wire rod which have been thus far proposed, the best known are those in which the wire rod is subjected to air cooling while arranged in a series of non-concentric spirals, either disposed on a conveyor or suspended about a common axis. These processes however permit the elimination only of the first patenting stage and a reduction of the thickness of the scale that forms on the wire rod. These known processes do not eliminate pickling at the drawing works. On the other hand, the known methods produce a longitudinal homogeneity of the wire rod that is acceptable although not as good as that obtained by lead patenting.
In connection with the known arrangements, of which many are in operation, it has been proposed to use fluid bed techniques. The results of fluid bed technique are on the one hand satisfactory with respect to the structure of the product. On the other hand, fluid bed techniques may introduce complexities of their own and greatly increase the capital cost of the plant. Also, fluid bed techniques increase the cost of operation by virtue of the abrasiveness of the materials that are involved. Also, it is necessary to use large installations to eliminate the heat transmitted to the fluidized bed by the wire rod.
The present invention overcomes these and other difficulties and disadvantages, by providing methods and apparatus in which the wire rod leaving the hot mill is bent to an open-loop spiral and then is introduced into an aqueous bath those temperature is greater than 75 percent of its boiling temperature, expressed in degrees Centigrade, which bath contains in suspension and/or solution materials such as calcium chloride and surfactants. The surfactants may be natural or synthetic.
The procedure for treating wire rod according to the present invention includes as an important characteristic that the wire rod, preferably at a temperature between 800C. and l,O50C., is introduced in the form of a spiral Whose loops are separated from each other, into a substantially cylindrical chamber containing an aqueous bath in which the loops are immersed, the loops remaining in the bath long enough to effect the desired metallurgical process. The wire rod is then removed from the bath to complete the cooling.
According to the invention, the coils are introduced into the aqueous bath preferably letting them descend therein without the aid of any mechanical means. At the same time, if desired, particularly when the density of the aqueous bath is important, it is possible to use apparatus for pushing or pulling to insure advancement of the loops through the bath.
A particular example of the process according to the present invention consists in immersing wire rod coils of indeterminate length at a speed, and into an aqueous bath of a depth, such that the dwell time in the bath of a transverse section at one point along the wire rod is as close as possible to the dwell time necessary to accomplish the metallurgical operation comprising the allotropic transformation of the steel during cooling, e.g., the formation of austenite by quenching from above the austenitic transformation temperature.
Another object of the present invention is the provision of apparatus to practice the above-described method.
The apparatus of the present invention is principally comprised of the following:
A receptacle of substantially vertical cylindrical form containing an aqueous bath in which the wire rod emerging from the hot mill is fed in the form of open loops;
Means to introduce the wire rod into the receptacle; and
Means to remove the wire rod from the receptacle.
According to a preferred embodiment, the receptacle containing the aqueous bath has a circular section; and preferably the longitudinal axis of the receptacle is substantially vertical and of a length substantially greater than the width of the receptacle.
According to the invention, the dimensions of the treatment receptacle are determined as a function of the metallurgical operation. Thus the height of the receptacle is advantageously arranged to accommodate foam that may form on the surface of the bath. Also, the depth of the bath should be sufficient to ensure substantial austenitic transformation in the course of the passage of the wire rod through the bath.
Thus the depth of the bath, the speed of movement of the wire rod loops and the spacing between them, may all be modified so as to correspond to the operational conditions.
Means are provided for removing the wire rod from the bath. One such arrangement which is particularly advantageous comprises a continuous inclined conveyor of which the lower end is situated at the bottom of the treatment vessel and the upper end emerges from an inclined casing whose upper end is at a level at least as high as the surface of the aqueous treatment bath. The conveyor may for example be an endless chain conveyor on which the loops of wire rod come to rest and are arranged and conveyed in overlapping nonconcentric fashion.
To reduce the length of such an inclined conveyor for the removal of the wire rod from the treatment path, it may be advantageous to use an elevator conveyor comprised by a chain having projections thereon that interfinger with the loops, each finger of the conveyor receiving either one or a plurality of the loops.
Another advantageous arrangement is the provision of a vertical elevator in a casing adjacent the treatment bath, with a liquid lock at the bottom of the treatment bath through which completed coils of wire rod are bodily transferred to the elevator and raised by the elevator in the form of tight rolls of wire rod. Such an arrangement reduces the volume of the bath which must be maintained.
In the accompanying drawing, which shows by way of example one embodiment of apparatus according to the present invention, the wire rod from a hot mill (not shown) passes through a coiling device 1 by which it is bent into an open spiral, the loops of which are received on a roller conveyor 2 and fed through a guide device 3 disposed in an upright cylindrical container 4, into a bath 5 of aqueous calcium chloride solution or the like. The evaporated bath liquid is conserved by a condenser 6.
An inclined casing 7 communicates with the lower end of the bath 5 in container 4, and houses an inclined endless chain conveyor 8 whose lower end is disposed at the bottom of bath 5 and whose upper end emerges from the surface 9 of the bath liquid that fills both the container 4 and the inclined casing 7. The open loops of wire rod are then received by a roller conveyor 10 and pass through a guide device 11 onto a horizontal support where they are accumulated in the form of a tight roll of wire rod. A pusher 12 then pushes the roll off the support surface onto a further roller conveyor.
Although the present invention has been described and illustrated in connection with preferred embodiments, it is to be understood that modifications and variations may be resorted to without departing from the spirit of the invention, as those skilled in this art will readily understand. Such modifications and variations are considered to be within the purview and scope of the present invention as defined by the appended claims.
Having described my invention, I claim:
1. Apparatus for cooling wire rod, comprising an upright substantially cylindrical container for an aqueous bath, said container having a height substantially greater than its width, means to bend wire rod of indeterminate length into a series of open loops, means to introduce said loops after bending into the bath in a downward direction, and means to remove the loops laterally from the lower end of the bath.
2. Apparatus as claimed in claim 1, said height being more than twice said width.
3. Apparatus as claimed in claim 1, said means for laterally removing the loops comprising conveyor means extending outside said container upwardly from adjacent the lower end of the bath to a level at least as high as the surface of the bath, and means beyond said conveyor means for collecting said loops and for assembling said loops into a roll of wire rod.
4. Apparatus as claimed in claim 1, said means to remove the loops comprising an inclined conveyor whose lower end is disposed at the lower end of the bath to receive the loops, and a casing outside said container, said conveyor being disposed in said casing, said casing having an upper end at least as high as the level of the liquid bath in said container.
5. Apparatus as claimed in claim 4, said container being outside said casing.
6. Apparatus as claimed in claim 1, said wire rod emerging from said bending means at a level above the liquid level of said bath.

Claims (6)

1. Apparatus for cooling wire rod, comprising an upright substantially cylindrical container for an aqueous bath, said container having a height substantially greater than its width, means to bend wire rod of indeterminate length into a series of open loops, means to introduce said loops after bending into the bath in a downward direction, and means to remove the loops laterally from the lower end of the bath.
2. Apparatus as claimed in claim 1, said height being more than twice said width.
3. Apparatus as claimed in claim 1, said means for laterally removing the loops comprising conveyor means extending outside said container upwardly from adjacent the lower end of the bath to a level at least as high as the surface of the bath, and means beyond said conveyor means for collecting said loops and for assembling said loops into a roll of wire rod.
4. Apparatus as claimed in claim 1, said means to remove the loops comprising an inclined conveyor whose lower end is disposed at the lower end of the bath to receive the loops, and a casing outside said container, said conveyor being disposed in said casing, said casing having an upper end at least as high as the level of the liquid bath in said container.
5. Apparatus as claimed in claim 4, said container being outside said casing.
6. Apparatus as claimed in claim 1, said wire rod emerging from said bending means at a level above the liquid level of said bath.
US00159685A 1970-07-03 1971-07-06 Method and apparatus for cooling wire rod Expired - Lifetime US3788618A (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4084797A (en) * 1976-03-15 1978-04-18 Morgardshammar Aktiebolag Device intended for controlled cooling or wire, especially steel wire
DE2815090A1 (en) * 1977-04-08 1978-10-19 Centre Rech Metallurgique Cooling high carbon machine wire coils - in a single cooling zone to give properties equivalent to patenting
US4214922A (en) * 1978-07-12 1980-07-29 Caterpillar Tractor Co. Conveyor installation and method for handling workpieces
US4395022A (en) * 1977-02-08 1983-07-26 Centre De Recherches Metallurgiques-Centum Voor Research In De Metallurgie Method of and apparatus for controlled cooling of metallurgical products
US4526627A (en) * 1983-05-24 1985-07-02 Sumitomo Electric Industries, Limited Method and apparatus for direct heat treatment of medium- to high-carbon steel rods

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2435830C3 (en) * 1974-07-25 1981-11-05 ARBED-F & G Drahtwerke Köln GmbH, 5000 Köln Method and device for the production of steel wire

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US895973A (en) * 1907-05-11 1908-08-11 Fred H Daniels Process of and apparatus for cooling wire rods.
US2023736A (en) * 1933-04-27 1935-12-10 Whitecross Company Ltd Production of heat-treated coiled medium or high carbon steel wire rods
US3170975A (en) * 1960-06-30 1965-02-23 Gleason Works Quenching machine
US3231432A (en) * 1964-10-08 1966-01-25 Morgan Construction Co Process for the quenching of hot rolled rods in direct sequence with rod mill
US3340109A (en) * 1965-01-18 1967-09-05 Multifastener Company Heat treating quenching method and apparatus
US3442274A (en) * 1963-10-11 1969-05-06 William R Keough Heat treating apparatus
US3490500A (en) * 1966-11-05 1970-01-20 Schloemann Ag Plant for the treatment of rolled wire from the roll heat
US3565409A (en) * 1968-04-12 1971-02-23 Btu Eng Corp Heat-treating apparatus
US3618922A (en) * 1969-12-08 1971-11-09 Holcroft & Co Method and machine for heat treating metal balls

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US895973A (en) * 1907-05-11 1908-08-11 Fred H Daniels Process of and apparatus for cooling wire rods.
US2023736A (en) * 1933-04-27 1935-12-10 Whitecross Company Ltd Production of heat-treated coiled medium or high carbon steel wire rods
US3170975A (en) * 1960-06-30 1965-02-23 Gleason Works Quenching machine
US3442274A (en) * 1963-10-11 1969-05-06 William R Keough Heat treating apparatus
US3231432A (en) * 1964-10-08 1966-01-25 Morgan Construction Co Process for the quenching of hot rolled rods in direct sequence with rod mill
US3340109A (en) * 1965-01-18 1967-09-05 Multifastener Company Heat treating quenching method and apparatus
US3490500A (en) * 1966-11-05 1970-01-20 Schloemann Ag Plant for the treatment of rolled wire from the roll heat
US3565409A (en) * 1968-04-12 1971-02-23 Btu Eng Corp Heat-treating apparatus
US3618922A (en) * 1969-12-08 1971-11-09 Holcroft & Co Method and machine for heat treating metal balls

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4084797A (en) * 1976-03-15 1978-04-18 Morgardshammar Aktiebolag Device intended for controlled cooling or wire, especially steel wire
US4395022A (en) * 1977-02-08 1983-07-26 Centre De Recherches Metallurgiques-Centum Voor Research In De Metallurgie Method of and apparatus for controlled cooling of metallurgical products
DE2815090A1 (en) * 1977-04-08 1978-10-19 Centre Rech Metallurgique Cooling high carbon machine wire coils - in a single cooling zone to give properties equivalent to patenting
US4214922A (en) * 1978-07-12 1980-07-29 Caterpillar Tractor Co. Conveyor installation and method for handling workpieces
US4526627A (en) * 1983-05-24 1985-07-02 Sumitomo Electric Industries, Limited Method and apparatus for direct heat treatment of medium- to high-carbon steel rods

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DE2132401C3 (en) 1976-01-08
BE753020A (en) 1971-01-04
DE2132401A1 (en) 1972-01-05
DE2132401B2 (en) 1975-05-22

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