US2863189A - Ladle nozzle construction - Google Patents

Ladle nozzle construction Download PDF

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US2863189A
US2863189A US712986A US71298658A US2863189A US 2863189 A US2863189 A US 2863189A US 712986 A US712986 A US 712986A US 71298658 A US71298658 A US 71298658A US 2863189 A US2863189 A US 2863189A
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ladle
nozzle
construction
valve
valve head
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US712986A
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Harold S Beck
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D41/00Casting melt-holding vessels, e.g. ladles, tundishes, cups or the like
    • B22D41/14Closures

Definitions

  • This invention relates to improvements in a nozzle construction for ladles, and more particularly to a nozzle and valve control to be used in connection with ladles from which molten metal is poured.
  • the invention is of paramount importance for use in connection with ladles of relatively large size such as those which hold and deliver a number of tons of molten metal, although the in- 2 together with the actuating-members, so that the valve is shown inthe closed position;
  • Fig. 2 is a transversecross-sectional view along the section line 2-" ⁇ 2 of Figyl; of the nozzle construction
  • This stopper was in turn controlled by a lever and linkage arrangement, one end of which consisted in an iron rod which extended through the ladle and, more inconveniently, through the molten contents of the ladle to the nozzle.
  • the rod which extended through the molten ladle contents was covered with fitted sections called refractories of a ceramic tubing whose purpose is to protect the rod from melting by transfer of the heat from the ladle contents.
  • refractories of a ceramic tubing whose purpose is to protect the rod from melting by transfer of the heat from the ladle contents.
  • the intense heat warps the steel rod or iron rod which extends through the ceramic tubing.
  • the rod must then be taken to a forge.
  • There the tubing, which is usually badly cracked and vitriiied, is broken off and the rod is heated and forged and shaped back into a straight form.
  • Another object of the invention is to provide a novel construction for a ladle, in which the nozzle is designed to provide a swirling action to the molten metal exiting from the ladle which will provide a self-clearing action to the valve construction. At the same time swirling of the exiting metal prevents splashing in the molds and prevents the formation of scabs in the ingots.
  • a further object of the invention is to provide a novel construction for a ladle nozzle which will ybe extremely simple and cheap to replace, having a few parts which 'ear out and are replaced as they wear out, while the maior operating parts will not require individual maintenance after each melt.
  • Fig. l is a fragmentary cross-sectional View of a lower portion of the nozzle and valve construction of the ladle
  • Fig. 3 is a fragmentary cross-sectional view, similar to Fig. 1, but showing the valve in the open position.
  • a foundry ladle 1 which, in Figs. 1 and 3, includes an outer metal wall 2, and an inner refractory lining 3 of tire brick, fire clay, or equivalent material.
  • a foundry ladle 1 which, in Figs. 1 and 3, includes an outer metal wall 2, and an inner refractory lining 3 of tire brick, fire clay, or equivalent material.
  • an exit for the molten metal is provided -by the nozzle and valve construction consisting of a stopper valve head 4, in the closed position of Fig. 1 shown resting against a tamped seat of re clay 5.
  • An annular ilange 6 rests under the tamped seat and its central opening provides the channel through which the molten metal flows when the stopper valve head 4 is raised, as in Fig. 3.
  • the sleeve 7 is made integral with the reinforced post 8.
  • Post 8 made integral by appropriate threads, with the stopper valve head 4.
  • Support rods 9, 9 best shown in Fig. 2 are provided to make the assembly rigid.
  • Vanes 10, 10 are provided to direct the flowing metal in a swirling stream.
  • the entire assembly of the llange, sleeve, post, support rods and varies are formed of a highly refractory material such as magnesia chromic oxide or some such material with an extremely high melting point.
  • the numeral 11 is applied to a clamp which extends around the sleeve and which is linked to the lever 12.
  • the lever 12 is fulcrumed on the bolt 13, aixed to the side of the lower metallic wall 2.
  • the opposite end of the lever 12 is driven by the pneumatic cylinder 13, containing the piston 14, shown in dotted line only.
  • An adjustment nut 15 is provided upon the rod 16, upon which the pisto-n rides to provide an accurate adjustment for the driving assemblage.
  • Raising of the head 4 opens the valve and provides a clear passage for the molten metal to drop or flow through the nozzle past the vanes 10 ⁇ which impart to it a swirling action. This swirling action causes the metal to ilow evenly into the molds without splashing and results in ingots formed entirely without scabs or cold spots.
  • a ladle nozzle construction consisting of a stopper valve head, a seat of tamped fire clay against which said valve head seats, an annular flange surrounding the lower portion of said valve head and provided with a central opening through which said lower portion projects, a post member threadably disposed upon said valve head and provided with vanes, a sleeve member integral with said vanes and post member, and a cylinder and power piston assembly to actuate movement of said valve head and sleeve with respect to said seat.

Description

Dec. 9, 1958 H. s. BECK l LADLE NOZZLE CONSTRUCTION Filed Feb. 3, 1958 FIGB.
/ NVENTOR HAROLD 5. BECK.
BY Z
ATTORNEY.
United LStates Patent O LADLE NOZZLE CNSTRUCTION Harold S. Beck, Granite City, lll.
Application February 3, 1958, Serial No. 712,986
1 Claim. (Cl. 22--85) This invention relates to improvements in a nozzle construction for ladles, and more particularly to a nozzle and valve control to be used in connection with ladles from which molten metal is poured. The invention is of paramount importance for use in connection with ladles of relatively large size such as those which hold and deliver a number of tons of molten metal, although the in- 2 together with the actuating-members, so that the valve is shown inthe closed position;
Fig. 2 is a transversecross-sectional view along the section line 2-"`2 of Figyl; of the nozzle construction,
vention will have other uses and purposes as Will be apparent to those skilled in the art.
It has been customary to pour metal in the past from ladles which have a nozzle in the bottom thereof which does not project any material distance out of the ladle and the pouring has heretofore been controlled by the use of a stopper rod in the form of a tapering plug disposed inside the ladle at the bottom.
This stopper was in turn controlled by a lever and linkage arrangement, one end of which consisted in an iron rod which extended through the ladle and, more inconveniently, through the molten contents of the ladle to the nozzle.
The rod which extended through the molten ladle contents was covered with fitted sections called refractories of a ceramic tubing whose purpose is to protect the rod from melting by transfer of the heat from the ladle contents. However every time a melt is made in the ladle and poured, the intense heat warps the steel rod or iron rod which extends through the ceramic tubing. The rod must then be taken to a forge. There the tubing, which is usually badly cracked and vitriiied, is broken off and the rod is heated and forged and shaped back into a straight form.
With the foregoing in mind, it is an important object of the present invention to provide a nozzle and valve construction for a ladle wherein the nozzle projects well beyond the bottom of the ladle and all the operational and activating linkages for the nozzle are disposed on the outside of the ladle in positions to be readily accessible and easily and accurately operated.
Another object of the invention is to provide a novel construction for a ladle, in which the nozzle is designed to provide a swirling action to the molten metal exiting from the ladle which will provide a self-clearing action to the valve construction. At the same time swirling of the exiting metal prevents splashing in the molds and prevents the formation of scabs in the ingots.
A further object of the invention is to provide a novel construction for a ladle nozzle which will ybe extremely simple and cheap to replace, having a few parts which 'ear out and are replaced as they wear out, while the maior operating parts will not require individual maintenance after each melt.
While some of the more salient features, characteristics and advantages of the present invention have been pointed out, other and additional ones will `become apparent from the following disclosures, taken in conjunction with the accompanying drawings, in which:
Fig. l is a fragmentary cross-sectional View of a lower portion of the nozzle and valve construction of the ladle,
showing the vanes in" a' view whichillustrates how they provide a swirling action to the molten metal passing therethrough; and
Fig. 3 is a fragmentary cross-sectional view, similar to Fig. 1, but showing the valve in the open position.
As shown in the drawings: i
The illustrated embodiment of the present invention is shown in connection with a foundry ladle 1 which, in Figs. 1 and 3, includes an outer metal wall 2, and an inner refractory lining 3 of tire brick, lire clay, or equivalent material. Inside the bottom of the ladle an exit for the molten metal is provided -by the nozzle and valve construction consisting of a stopper valve head 4, in the closed position of Fig. 1 shown resting against a tamped seat of re clay 5. An annular ilange 6 rests under the tamped seat and its central opening provides the channel through which the molten metal flows when the stopper valve head 4 is raised, as in Fig. 3. A sleeve 7, disposed outside the central -opening of the annular ange 6, rides up and down with the stopper valve head 4. The sleeve 7 is made integral with the reinforced post 8. Post 8 made integral by appropriate threads, with the stopper valve head 4. Support rods 9, 9 best shown in Fig. 2 are provided to make the assembly rigid. Vanes 10, 10 are provided to direct the flowing metal in a swirling stream. The entire assembly of the llange, sleeve, post, support rods and varies are formed of a highly refractory material such as magnesia chromic oxide or some such material with an extremely high melting point.
The numeral 11 is applied to a clamp which extends around the sleeve and which is linked to the lever 12. The lever 12 is fulcrumed on the bolt 13, aixed to the side of the lower metallic wall 2. The opposite end of the lever 12 is driven by the pneumatic cylinder 13, containing the piston 14, shown in dotted line only. An adjustment nut 15 is provided upon the rod 16, upon which the pisto-n rides to provide an accurate adjustment for the driving assemblage.
In operation the assembly is placed in the condition shown in Fig. 1, and metal is melted in the ladle. it will be noted that the weight of the metal forces the stopper valve head into a firm leakproof seal against the seat 5 of fire clay.
When it is desired to open the valve and nozzle assembly, air is introduced into the cylinder 13 under pressure. The rise in pressure drives the piston 14 downward in Fig. 3, raising the opposite end of the lever 12 and raising the sleeve 7 as well as the stopper valve head 4.
Raising of the head 4 opens the valve and provides a clear passage for the molten metal to drop or flow through the nozzle past the vanes 10` which impart to it a swirling action. This swirling action causes the metal to ilow evenly into the molds without splashing and results in ingots formed entirely without scabs or cold spots.
It will be noted that the sleeve, flange, vanes and head are the parts which take the most wear and which must be replaced periodically.
However it will also rbe noted that the assembly of the parts is extremely simple and easily accomplished.
It will, of course, be understood that various details of construction may be varied through a wide range without departing from the principles of this invention and it is, therefore, not the purpose to limit the patent granted herein otherwise than necessitated by the scope of the appended claim.
I claim as my invention:
A ladle nozzle construction consisting of a stopper valve head, a seat of tamped fire clay against which said valve head seats, an annular flange surrounding the lower portion of said valve head and provided with a central opening through which said lower portion projects, a post member threadably disposed upon said valve head and provided with vanes, a sleeve member integral with said vanes and post member, and a cylinder and power piston assembly to actuate movement of said valve head and sleeve with respect to said seat.
References Cited in the ile of this patent UNITED STATES PATENTS Saunders Jan. 5, 1926 Milner Nov. 24, 1931 Junghans Dec. 17, 1940 Pemetzrieder Feb. 4, 1941 Whittaker Dec. 14, 1943
US712986A 1958-02-03 1958-02-03 Ladle nozzle construction Expired - Lifetime US2863189A (en)

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Cited By (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3146504A (en) * 1962-02-12 1964-09-01 Eureka Fire Brick Works Mold plug
US3201837A (en) * 1962-04-06 1965-08-24 Griffin Wheel Co Method and apparatus for casting metal articles
US3511421A (en) * 1968-04-29 1970-05-12 William H Smith Stopper and nozzle construction for metal ladles
DE1902539B1 (en) * 1969-01-20 1970-08-27 Karl Imdahl Spout valve for pouring pans
US3556360A (en) * 1969-01-15 1971-01-19 Nozzle Inc Gas stopper for a ladle
US3574341A (en) * 1967-12-30 1971-04-13 Didier Werke Ag Valve closure for ladles and the like
US3651825A (en) * 1969-10-24 1972-03-28 Francis P Sury Stopper plug valve for hot metal ladles
FR2180125A1 (en) * 1972-04-08 1973-11-23 Dyson Ltd J Et J
US3785540A (en) * 1972-05-24 1974-01-15 Algoma Steel Corp Ltd Golf tee type stopper for molten metal discharging
FR2205093A5 (en) * 1972-10-26 1974-05-24 Uss Eng & Consult
US3877621A (en) * 1972-10-20 1975-04-15 Evertz Egon Sliding plug for a molten metal container
JPS517287Y1 (en) * 1970-03-12 1976-02-27
US4378080A (en) * 1979-07-18 1983-03-29 Nolex Corporation Fluid velocity attenuating nozzle
US5916473A (en) * 1997-06-03 1999-06-29 Kerin; Joseph J. Steel pouring nozzle
WO2011019664A1 (en) * 2009-08-09 2011-02-17 Rolls-Royce Corporation System, method, and apparatus for pouring casting material in an investment cast
DE102014114301A1 (en) 2014-10-01 2016-04-07 Hermann Rauen GmbH & Co vorm. Steinhandel Rauen Apparatus and method for opening a spout channel of metallurgical vessels

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1568246A (en) * 1925-05-16 1926-01-05 Saunders Malcolm Method of and apparatus for setting pouring nozzles in ladles
US1832873A (en) * 1929-12-23 1931-11-24 Clyde H Milner Nozzle for molten-metal containers
US2225414A (en) * 1937-04-01 1940-12-17 Junghans Siegfried Method of treating molten substances, such as metals
US2230514A (en) * 1937-08-21 1941-02-04 Georg Pemetzrieder Metallgiess Apparatus for the production of castings
US2336518A (en) * 1943-12-14 Hot metal ladle

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2336518A (en) * 1943-12-14 Hot metal ladle
US1568246A (en) * 1925-05-16 1926-01-05 Saunders Malcolm Method of and apparatus for setting pouring nozzles in ladles
US1832873A (en) * 1929-12-23 1931-11-24 Clyde H Milner Nozzle for molten-metal containers
US2225414A (en) * 1937-04-01 1940-12-17 Junghans Siegfried Method of treating molten substances, such as metals
US2230514A (en) * 1937-08-21 1941-02-04 Georg Pemetzrieder Metallgiess Apparatus for the production of castings

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3146504A (en) * 1962-02-12 1964-09-01 Eureka Fire Brick Works Mold plug
US3201837A (en) * 1962-04-06 1965-08-24 Griffin Wheel Co Method and apparatus for casting metal articles
US3574341A (en) * 1967-12-30 1971-04-13 Didier Werke Ag Valve closure for ladles and the like
US3511421A (en) * 1968-04-29 1970-05-12 William H Smith Stopper and nozzle construction for metal ladles
US3556360A (en) * 1969-01-15 1971-01-19 Nozzle Inc Gas stopper for a ladle
DE1902539B1 (en) * 1969-01-20 1970-08-27 Karl Imdahl Spout valve for pouring pans
US3651825A (en) * 1969-10-24 1972-03-28 Francis P Sury Stopper plug valve for hot metal ladles
JPS517287Y1 (en) * 1970-03-12 1976-02-27
FR2180125A1 (en) * 1972-04-08 1973-11-23 Dyson Ltd J Et J
US3785540A (en) * 1972-05-24 1974-01-15 Algoma Steel Corp Ltd Golf tee type stopper for molten metal discharging
US3877621A (en) * 1972-10-20 1975-04-15 Evertz Egon Sliding plug for a molten metal container
FR2205093A5 (en) * 1972-10-26 1974-05-24 Uss Eng & Consult
US4378080A (en) * 1979-07-18 1983-03-29 Nolex Corporation Fluid velocity attenuating nozzle
US5916473A (en) * 1997-06-03 1999-06-29 Kerin; Joseph J. Steel pouring nozzle
WO2011019664A1 (en) * 2009-08-09 2011-02-17 Rolls-Royce Corporation System, method, and apparatus for pouring casting material in an investment cast
US20110057364A1 (en) * 2009-08-09 2011-03-10 Max Eric Schlienger System, method, and apparatus for pouring casting material in an investment cast
US8501085B2 (en) 2009-08-09 2013-08-06 Rolls Royce Corporation System, method, and apparatus for pouring casting material in an investment cast
DE102014114301A1 (en) 2014-10-01 2016-04-07 Hermann Rauen GmbH & Co vorm. Steinhandel Rauen Apparatus and method for opening a spout channel of metallurgical vessels

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