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US943393A - Method of annealing flats. - Google Patents

Method of annealing flats. Download PDF

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Publication number
US943393A
US943393A US46647208A US1908466472A US943393A US 943393 A US943393 A US 943393A US 46647208 A US46647208 A US 46647208A US 1908466472 A US1908466472 A US 1908466472A US 943393 A US943393 A US 943393A
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flats
annealing
bath
cooling chamber
furnace
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US46647208A
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Fred H Daniels
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Priority to US481594A priority patent/US943626A/en
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    • 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
    • C21D1/00General methods or devices for heat treatment, e.g. annealing, hardening, quenching or tempering
    • C21D1/34Methods of heating
    • C21D1/44Methods of heating in heat-treatment baths
    • C21D1/46Salt baths

Definitions

  • FIG. 1 is a side View showing diagrammatically one form of apparatus embodying my invention
  • Fig. 2 is a plan view of the same
  • Fig. 3 is a horizontal section of one form of furnace
  • Fig. 4 is a vertical section of the same
  • Fig. 5 is a longitudinal sectional view showing another form of annealing apparatus. 7
  • My invention has relation to improvements in annealing flats and other metal shapes and is especially applicable to shapes of long length and of various widths, and is v I deslgned to provide-a continuous process, together with apparatus for carrying out the same, which will insure a uniform grade of material both physically and chemically
  • common muffle or pot-annealing is more or lesssatis- I factory in its results, as the heat penetrates comparatively quickly through the coils.
  • My invention is designed to provide a method by which the flat-s or-other sections.
  • the flats when rolled in a rolling mill are reeled up into close bundles. These bundles are afterward placed on an unreeling apparatus, such as indicated at 2.in Figs. 1 and 2, and the unreeled flats are led therefrom through an annealing furnace, such as shown at 3 in Figs. 1, 2, 3 and 4, or at 6 in Fig. 5; After passing out of the annealing furnace, the flats are gradually cooled without coming into contact with the outer air. For this purpose, they are first passed through pro-' or charcoal, which prevents oxidation by excluding air. The hot metal passing.
  • the annealing furnace 3 shown in Figs. 1, 2, 3 and 4 consists of a furnace having a grate 1S and battle walls 18, with a plurality of open end receptacles 19, extending longitudinally through the heating chamber one above the other and in two series.
  • the ends of these receptacles are turned upwardly, as shown zit-20, above the level of the lead bath containedtherein, it being understood that there is one of these recep' tacles for each of the flats being annealed.
  • the flats are passed downwardly through suitable guides 21, into a lead-containing receptacle, thence through the same and upwardly, and out through the guides 22.
  • the receptacle is heated'by being placed over any suitable furnace.
  • the furnace shown and described is heated by coal or coke, but an equal result could be obtained by a furnace heated with gas, oil or any other manner known to the Tarts.
  • the flat being drawn continuously through-said bath and through thecooling chamber. and being protected from oxidizing influences while passing through the batlrto and through the cooling chamber; substantially as described.
  • the method of treating flats and the like which consists in simultaneously drawinga pluralit of flats through a lead annealing bath. thence into and through a cooling chamber in which the flats are gradually cooled in a non-oxidizing atmosphere, the flats being drawn continuously through said bath into and through the cooling chamber,
  • the method of treating flats and the like which consists in drawing the flat through a lead annealing bath and then into and through a cooling chamber containing a mass of carbonaceous material in which the flat is cooled in a non-oxidizing atmosphere, the flat being drawn continuously through said bath and through said cooling chamber, and being protected from oxidizing influences while passing from the bath to and through the cooling chamber, substantially as described.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Mechanical Engineering (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Heat Treatment Of Strip Materials And Filament Materials (AREA)
  • Heat Treatments In General, Especially Conveying And Cooling (AREA)

Description

FIE. DANIELS. 7 METHOD OF ANNEALING FLATS. APPLICATION FILED BB s, 1908.
943,393.- Patented Dec. 14, 1909.
2 BHEETSBHEET 1.
Pk [1: 1: :1 ram: I II wn-ussszs V V mvzu-ron z 5H4 F. H. DANIELS.
METHOD OF ANNEALING FLATS.
APPLICATION FILED DEC. 8, 190a.
9%3,89 Patented Dec. 14, 1909.
2 BHEETS-SHEET 2.
WITNESSES INVENTOR' M 5 4 (PM FRED H. DANIELS, OF WORCESTER, MASSACHUSETTS.
METHOD OF ANNEALING FLATS.
' Specification of Letters Patent.
Patented Dec. 141:, 1909.
Application filed December 8, 1908. Serial No. 466,472.
To all whom it may concern:
Be it known that I, FRED H. DANIELS, of Worcester, in the county of \Vorcester and State of Massachusetts, have invented a new and useful Improvement in Methods of Annealing Flats, of which the following is a full, clear, and exact description, reference being had to the accompanying drawings, forming part of. this specification, in which- Figure 1 is a side View showing diagrammatically one form of apparatus embodying my invention; Fig. 2 is a plan view of the same; Fig. 3 is a horizontal section of one form of furnace; Fig. 4 is a vertical section of the same; Fig. 5 is a longitudinal sectional view showing another form of annealing apparatus. 7
My invention has relation to improvements in annealing flats and other metal shapes and is especially applicable to shapes of long length and of various widths, and is v I deslgned to provide-a continuous process, together with apparatus for carrying out the same, which will insure a uniform grade of material both physically and chemically For round wire or narrow flats, common muffle or pot-annealing is more or lesssatis- I factory in its results, as the heat penetrates comparatively quickly through the coils. T
The Wider, however, the section is, the longer it will take for the heat .to penetrate the closely wound bundles, and when it cools off, the outer portions will cool much more quickly than the inner portions; all these conditions prevent obtaining uniform grade of the product.
My invention is designed to provide a method by which the flat-s or-other sections.
may be subjected to a uniform heating and cooling action throughout, thereby insuring a uniform texture and hardness.
In accordance with my invention, the flats when rolled in a rolling mill are reeled up into close bundles. These bundles are afterward placed on an unreeling apparatus, such as indicated at 2.in Figs. 1 and 2, and the unreeled flats are led therefrom through an annealing furnace, such as shown at 3 in Figs. 1, 2, 3 and 4, or at 6 in Fig. 5; After passing out of the annealing furnace, the flats are gradually cooled without coming into contact with the outer air. For this purpose, they are first passed through pro-' or charcoal, which prevents oxidation by excluding air. The hot metal passing.
through this carbonaceous material, forms a non-oxidizing gas which protects the metal. ,The flats are then wound up on a suitable take-up frame 9, having reeling or coiling drums 10, upon which they are wound.
In the particular arrangement of apparatus shown in the drawings, provision is made for simultaneously annealing sixteen different flats, there being two sets of the unreeling rollers 2, arranged side by side, and each set containing eight rollers in successively lower planes, as shown in Fig. 1. The take-up frame 9 is provided with a; similar number of the coiling or takeup rollers 10.
The annealing furnace 3, shown in Figs. 1, 2, 3 and 4, consists of a furnace having a grate 1S and battle walls 18, with a plurality of open end receptacles 19, extending longitudinally through the heating chamber one above the other and in two series. The ends of these receptacles are turned upwardly, as shown zit-20, above the level of the lead bath containedtherein, it being understood that there is one of these recep' tacles for each of the flats being annealed. In the modification shown in Fig. 5, the flats are passed downwardly through suitable guides 21, into a lead-containing receptacle, thence through the same and upwardly, and out through the guides 22. The receptacle is heated'by being placed over any suitable furnace.
The furnace shown and described is heated by coal or coke, but an equal result could be obtained by a furnace heated with gas, oil or any other manner known to the Tarts.
The advantages of my invention result from the uniform heating and cooling of the flats, whereby uniformityvin the texture. and
hardness of the steel is obtained. Also from the simplicity of the apparatus which enables the process to be carried out continuousl-y and with rapidity, it being possible to anneal a large number of flats or other sections simultaneously, thereby making through a lead annealing bath, and then into and through a cooling chamber in which the flat is raduallv cooled in a nonoxidizin b n. 0
atmosphere, the flat being drawn continuously through-said bath and through thecooling chamber. and being protected from oxidizing influences while passing through the batlrto and through the cooling chamber; substantially as described.
:2. The method of treating flats and the like which consists in simultaneously drawinga pluralit of flats through a lead annealing bath. thence into and through a cooling chamber in which the flats are gradually cooled in a non-oxidizing atmosphere, the flats being drawn continuously through said bath into and through the cooling chamber,
and being protected from oxidizing influences wlnle passing from the bath to and through the cooling chamber; substantially contact with each other and then into and through a cooling chamber in which the flats are gradually cooled in a non-oxidizing atmosphere out, of contact. with each other, the flats being drawn continuously through said bath and through the cooling chamber,
and being protected from oxidizing influences while passing from the bath to and through the cooling chamber; substantially as described.
The method of treating flats and the like, which consists in drawing the flat through a lead annealing bath and then into and through a cooling chamber containing a mass of carbonaceous material in which the flat is cooled in a non-oxidizing atmosphere, the flat being drawn continuously through said bath and through said cooling chamber, and being protected from oxidizing influences while passing from the bath to and through the cooling chamber, substantially as described.
6. The method of annealing flats and the like, which consists in simultaneously drawin the flats from the bundles or coils through a sad annealing bath out of cont-act with each other, and thence through a cooling chamber containing a mass of carbonaceous material in which the flats are gradually cooled in a non-oxidizing atmosphere, the
flats being drawn continuously through said bath and t-hrou h the cooling chamber, and being protectef from oxidizing influences while passing through the bath to and through the cooling chamber; substantially as described.
In testimony whereof, I have hereunto set my hand.
I FRED H. DANIELS. Witnesses:
GEORGE SILURIN, A. F. BACKLIN.
US46647208A 1908-12-08 1908-12-08 Method of annealing flats. Expired - Lifetime US943393A (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
US46647208A US943393A (en) 1908-12-08 1908-12-08 Method of annealing flats.
US481594A US943626A (en) 1908-12-08 1909-03-06 Apparatus for annealing flats and other shapes.

Applications Claiming Priority (1)

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