US3847206A - Self-centering bottom block assembly - Google Patents
Self-centering bottom block assembly Download PDFInfo
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- US3847206A US3847206A US00262509A US26250972A US3847206A US 3847206 A US3847206 A US 3847206A US 00262509 A US00262509 A US 00262509A US 26250972 A US26250972 A US 26250972A US 3847206 A US3847206 A US 3847206A
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- bottom block
- mold
- ingot
- bore
- assembly
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22D—CASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
- B22D11/00—Continuous casting of metals, i.e. casting in indefinite lengths
- B22D11/08—Accessories for starting the casting procedure
- B22D11/081—Starter bars
- B22D11/083—Starter bar head; Means for connecting or detaching starter bars and ingots
Definitions
- This invention relates to a self-centering bottom block for a direct chill (D.C.) casting apparatus.
- the assembly comprises a bottom block which is slidably mounted on a supporting surface and a retaining ring which loosely locks the bottom block to the supporting surface but which allows for the horizontal movement of the bottom block.
- guide buttons on the exterior surfaces of the assembly ride on guide surfaces which are fixed spatially with respect to the mold bore and thereby center the assembly within the mold bore.
- the bottom block as sembly is provided with a means which engages the ingot during the initial phases of solidification and urges the ingot during the initial phases of solidification and urges the ingot out of the mold but which readily disengages the ingot after casting.
- This invention relates to a bottom block assembly for use in the vertical direct chill (,D.C.Y) casting of metal particularly light'metals,such as aluminum.
- molten metal is poured into an open-ended tubular mold and begins to solidify into an ingot.
- Water. is sprayed onto the outside surfaces of the mold and the ingot as it emerges from the mold to further cool the'ingot and to'assist in solidifying the molten metal above the solidified portion of the ingot.
- a bottom block or starter block is inserted into the mold bore to seal the discharge end of the tubular mold and to initii ate the solidificationof the molten metal to form the ing'otOnce solidification of the ingot begins, the ingot is urged out of themold by lowering the bottom block into a pit situated'below the casting apparatus'
- the bottomblock maybe lowered by hydraulicor' other suitable means.
- the bottom block is provided with projections, such as wires, bolt heads andthe like, around which metal can solidify so that the bottom block can'urge the solidifying ingot out of the mold during the initialpe- 'riod of casting.
- the solidified portionof the ingot' is sufficiently heavy to urge the ingot out of the 'mold and at this point, the bottom bloc-k functions to support-and control the speedof the ingot withdrawal.
- a lifting device is usually employed to wrench the ingot away from. the bottom block. When the ingot is wrenched away from the bottom block, frequently the bottom block would become displaced causing the subinvention.
- the invention comprises a bottom block which'is slidably mounted onto a horizontal supporting surface.
- the bottom block is provided with a retaining means which loosely locks the bottomblock to the supporting surface and which allows for h'orizontal'movement of the bottem block.
- Guide means on the retaining means or the bottom block are adapted to slide'along guide runs which'are in a fixed spatial relationship with respect to the mold bore. As the bottom block assembly is raised into position, the guide extensions contact the guide runs and thereby align the bottom block with'respect tothe mold bore.
- FIG. l' is a cross-sectional view off-one embodiment
- FIG. 2 is a perspectivefview and aic-ross sectional view of a second embodiment of the present DETAI D DE RIPTIO OF T E III'NVENTIONZS:
- the-bottom block assembly 10 ofthepresentinvention is g'ene'raIIy shoWninthe' mold bore 11 of water-jacketed mold 12.
- the bottom' block assembly comprises a bottom block 13 having "horizontal dimensions slightly less thaii'the horizontal sequent misalignment of the bottom block assembly with respect to the mold bore.
- the bottom block 13 is slidably-mounted on a smaller-sup; "porting member 14 which is afiixed'to the shaft 1 5.
- Shaft 15 is suitably supported on withdrawal or.sup'por t' table 1'6.
- Retainer means 17, preferably having an L'- shaped cross section, is aff xed to the bottomblock '13 to loosely lock the bottom block to the supporting member 14 but allowing for substantial horizontal.
- Guide means 19 are pr'ovided'on the outer vertical surfaces of the assembly 10, for example, on retaining means 17.
- three or more guide means 19 are provided around the peripheryof'the'a'ssembly.
- the guide means 19 are shown in the drawings as buttons, the extensions may be rollers or a projecting ridge around the periphery of the retaining means.
- a plurality of vertically disposed guide runs 20 are positioned in a fixed spatial relationship with re-- spect to the bore 11 of the mold 12 and are adapted to outward in the downward direction to provide for the smooth insertion of the bottom block assembly into the mold bore.
- the guide surfaces are positioned no closer than the projected perimeter of the mold bore.
- the guide runs 20 are made integral with the moldassembly 12, for example, as a concentric tubular extension of the water jacket.
- the materials of construction for the assembly can be of any suitable materials, such as low-carbon steel, aluminum and the like.
- one or both of the contact surfaces between the bottom block and the supporting surfaces are provided with a bearing material, such as bronze and the like.
- the horizontal contact surfaces are smoothed by machining or the like.
- the bottom block assembly Prior to casting, the bottom block assembly is raised into position within the mold bore 11.
- the guide extensions 19 ride the vertically disposed guide runs 20 aligning the bottom block assembly with respect to the mold bore and thereby preventing any contact betweenthe bottom block assembly 10 and the mold surfaces.
- Molten metal is then introduced into the mold bore by suitable means (not shown) and immediately the molten metal begins to solidify.
- the bottom block assembly is slowly loweredby lowering the support table 16. As the ingot emerges from the mold, it is flooded with coolant,
- the bottom block assembly is pro- Lock links 30 are situated in vertical recesses in the periphery of the assembly and are rotatably mounted therein by meansof rod 31 which is affixed to the retaining means 17 or an extension of the bottom block.
- the upper portion 32 of said lock links 30 extend above and over the upper surface of the bottom block 13.
- the end of the inwardly extending portion of the lock link is provided with a vertical surface 33 which is inclined in the direction of the bottom block away from the axis of the bottom block. The surface 33 is inclined sufficiently to insure contact with the shrinking ingot as it solidifies.
- Means 35 are provided to urge the upper, portion 32 .of the lock link 30 to rotate into engagement with the bottom block 13.
- the urging means must exert enough force to prevent disengagement of the lock link 30 with the solidifying ingot when the ingot is being urged out of the mold but also allow the ingot to be easily removed after the ingot is cast.
- a suitable means is shown in the drawing as a spring 36 whichis positioned in the recess 37 in the lock link and recess 38 of member 39 to urge the lock link into engagement with the bottom block.
- Member 39 is suitably supported, for example, to support member 14.
- the inclined surfaces 33 of the lock link 30 insure contact with the shrinking metal.
- the lock link mechanisms urge the forming ingot out of the mold. When the ingot is completely cast, it is readily disengaged from the bottom block assembly by the.
- a 1 In a vertical D.C. casting apparatus for light metals comprising an open-ended D.C; mold and a bottom block assembly adapted to be inserted into said mold prior to casting the improvement comprising v a. a bottom block adapted to be inserted into said mold and having sufficient dimensions to thereby seal the discharge end of said mold;
- a plurality of vertically disposed guide surfaces below the bore of said mold and separate thereing said bottom block with respect to said mold and a.
- a plurality of vertically disposed, rotatable lock links mounted in recesses in the periphery of said bottom block, the upper portion of said lock link extending above the upper surface of said bottom block and inwardly over a portion of said upper surface, the end of said inwardly extending portion of the lock link provided with a vertically disposed surface which is inclined in the direction of the bottom block away from the vertical axis of the bottom block;
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Abstract
This invention relates to a self-centering bottom block for a direct chill (D.C.) casting apparatus. The assembly comprises a bottom block which is slidably mounted on a supporting surface and a retaining ring which loosely locks the bottom block to the supporting surface but which allows for the horizontal movement of the bottom block. As the assembly is raised into position, guide buttons on the exterior surfaces of the assembly ride on guide surfaces which are fixed spatially with respect to the mold bore and thereby center the assembly within the mold bore. In another embodiment of the invention, the bottom block assembly is provided with a means which engages the ingot during the initial phases of solidification and urges the ingot during the initial phases of solidification and urges the ingot out of the mold but which readily disengages the ingot after casting.
Description
United States Patent [191 Foye I SELF-CENTERING BOTTOM BLOCK ASSEMBLY [75] Inventor: John J. Foye, Livermore, Calif.
[73] Assignee: Kaiser Aluminum & Chemical Corporation, Oakland, Calif.
[22] Filed: June 14, 1972 [21 I Appl. No.: 262,509
52 us. C1. 164/274 [51] Int. Cl 822d 11/08 [58 Field of Search 164/282, 274, 283
[5 6] I j References Cited 7 UNITED STATES PATENTS 3,384,152 5/1968 Olsen et al 164/274 3,464,482 9/1969 Greenberger.... 164/282 X 3,474,000 10/1969 Simich 164/274 3,525,381 8/1970 Leese et al..,. 164/82 3,620,285 11/1971 Olsson 164/283 S FOREIGN PATENTS OR APPLICATIONS 1,061,039 12/1959 Germany 725,323 3/1955 Great Britain 164/274 SB 1.219.068 1/1971 Great Britain 164/274 up I I \\\\\\WT 1 1 Nov. 12, 1974 Primary Examiner.l. Spencer Ovcrholser' Assistant E.\'aminerV. K. Rising Attorney, Agent, or FirmPaul E. Calrow; Edward J. Lynch [57 ABSTRACT This invention relates to a self-centering bottom block for a direct chill (D.C.) casting apparatus. The assembly comprises a bottom block which is slidably mounted on a supporting surface and a retaining ring which loosely locks the bottom block to the supporting surface but which allows for the horizontal movement of the bottom block. As the assembly is raised into position, guide buttons on the exterior surfaces of the assembly ride on guide surfaces which are fixed spatially with respect to the mold bore and thereby center the assembly within the mold bore. In another embodiment of the invention, the bottom block as sembly is provided with a means which engages the ingot during the initial phases of solidification and urges the ingot during the initial phases of solidification and urges the ingot out of the mold but which readily disengages the ingot after casting.
4 Claims, 3 Drawing Figures PATENTED m 12 sew 3.847205 SHEET 10? 2 E gs FIG.
FATENTED REV 12 I974 sum 2 or 2 FIG.2
FIG.3
. a l SELF-CENTERING BOTTOM BLOCKASSEMBLY BACKGROUND OF THE INVENTION 7 This invention relates to a bottom block assembly for use in the vertical direct chill (,D.C.Y) casting of metal particularly light'metals,such as aluminum.
In the DC. casting of metals, molten metal is poured into an open-ended tubular mold and begins to solidify into an ingot. Water. is sprayed onto the outside surfaces of the mold and the ingot as it emerges from the mold to further cool the'ingot and to'assist in solidifying the molten metal above the solidified portion of the ingot. At the start of the casting operations, a bottom block or starter block is inserted into the mold bore to seal the discharge end of the tubular mold and to initii ate the solidificationof the molten metal to form the ing'otOnce solidification of the ingot begins, the ingot is urged out of themold by lowering the bottom block into a pit situated'below the casting apparatus'The bottomblock maybe lowered by hydraulicor' other suitable means. In the past, there'has been a continual problem with alignment of the bottom block to avoid scuffing, gouging, or other damage to the moldwhen the bottom block isinserted or withdrawn from the the bottom: blocks into'th'e molds, the'operators nor mally watch formold movementto determine misalignment of the molds and bottom blocks. Due to the large number of moldsfat most casting st'ations, it-is impractical for the operators to check each mold to determine if the bottom block is properly alignedxlf mold movement is noticed, the raising of the bottom blocksiis stopped and the operator, usually by force, repositions the mold. If the moldposition cannot beeasily adforming ingot into position with the. bottomblock dur-' ingthe initial portion of the casting but which will readily release the ingotafterthe ingotfis cast. 1 -j justed, then'the mold would be loosened from the castin g table, aligned with the bottomblock and refastened to the castingltablel In the case of a water jacketed mold, alignment of the'moldand bottom block is more [complicated becausethe coolantand lubricant lines are attached to the mold, and, frequently, these lines would have'to be disconnected'to position the mold. Misalignment of the bottom block assemblywith-respect'to the mold can be caused by many various factors. One of the most prevalent is the removal of the ingot from the bottom block assembly. after-casting. Usually, the bottom block is provided with projections, such as wires, bolt heads andthe like, around which metal can solidify so that the bottom block can'urge the solidifying ingot out of the mold during the initialpe- 'riod of casting. Shortly after the casting begins, the solidified portionof the ingot'is sufficiently heavy to urge the ingot out of the 'mold and at this point, the bottom bloc-k functions to support-and control the speedof the ingot withdrawal. When the casting is completed, a lifting device is usually employed to wrench the ingot away from. the bottom block. When the ingot is wrenched away from the bottom block, frequently the bottom block would become displaced causing the subinvention.
. 2 I Against this background, the present invention was developed.
SUMMARY OF THE, INVENTION. I
is guided into the mold bore without the'neces'sity 'of adjusting the horizontal position of the mold assembly.
The invention comprises a bottom block which'is slidably mounted onto a horizontal supporting surface. The bottom block is provided with a retaining means which loosely locks the bottomblock to the supporting surface and which allows for h'orizontal'movement of the bottem block. Guide means on the retaining means or the bottom block are adapted to slide'along guide runs which'are in a fixed spatial relationship with respect to the mold bore. As the bottom block assembly is raised into position, the guide extensions contact the guide runs and thereby align the bottom block with'respect tothe mold bore. With the bottom block assembly of the present invention, reliance upon the casting station operators for aligning the mold with the bottom block is no longer necessary because no contact between the bottom block and the mold surfaces can occur either in the insertion or removal of the bottom block from-the mold bore. Moreover, because contact ofthe mold surfaces' by the bottom block is eliminated by thepresent invention, a substantial increase in the 30 *operationallifeof the-mold results. ln=a preferrediembodiment of theipresent invention, the bottom block assembly is provided with a meanswwhich locksfthe D ESCRlPTlO N or THE DRAWINGS of the present invention.
FIG. l'is a cross-sectional view off-one embodiment FIG. 2 is a perspectivefview and aic-ross sectional view of a second embodiment of the present DETAI D DE RIPTIO OF T E III'NVENTIONZS: Withreference to FIG,- 1', the-bottom block assembly 10 ofthepresentinventionis g'ene'raIIy shoWninthe' mold bore 11 of water-jacketed mold 12. The bottom' block assembly comprises a bottom block 13 having "horizontal dimensions slightly less thaii'the horizontal sequent misalignment of the bottom block assembly with respect to the mold bore.
dimensions of the mold bore 11 to thereby seal. the 'mold when molten metal is introduced therein. The bottom block 13 is slidably-mounted on a smaller-sup; "porting member 14 which is afiixed'to the shaft 1 5. Shaft 15 is suitably supported on withdrawal or.sup'por t' table 1'6. Retainer means 17, preferably having an L'- shaped cross section, is aff xed to the bottomblock '13 to loosely lock the bottom block to the supporting member 14 but allowing for substantial horizontal.
movement betweenthe bottom block and thes'u'pport ingmember. The spaces 18 between the support-merit: ber 14 and the vertical surfaces of the retainingmea'ns l7 allow for horizontal movement of the bottomblock. A movement of from about 0.3 to 3 inches, depending upon mold size, is adequate for self-centering charac terist'ics. Guide means 19 are pr'ovided'on the outer vertical surfaces of the assembly 10, for example, on retaining means 17. Preferably, three or more guide means 19 are provided around the peripheryof'the'a'ssembly. Although the guide means 19 are shown in the drawings as buttons, the extensions may be rollers or a projecting ridge around the periphery of the retaining means. A plurality of vertically disposed guide runs 20 are positioned in a fixed spatial relationship with re-- spect to the bore 11 of the mold 12 and are adapted to outward in the downward direction to provide for the smooth insertion of the bottom block assembly into the mold bore. To allow for the insertion of the bottom block into themold, the guide surfaces are positioned no closer than the projected perimeter of the mold bore. Preferably, the guide runs 20 are made integral with the moldassembly 12, for example, as a concentric tubular extension of the water jacket.
The materials of construction for the assembly can be of any suitable materials, such as low-carbon steel, aluminum and the like. Preferably, one or both of the contact surfaces between the bottom block and the supporting surfaces are provided with a bearing material, such as bronze and the like. To facilitate movement of the bottom block, preferably the horizontal contact surfaces are smoothed by machining or the like..
Prior to casting, the bottom block assembly is raised into position within the mold bore 11. The guide extensions 19 ride the vertically disposed guide runs 20 aligning the bottom block assembly with respect to the mold bore and thereby preventing any contact betweenthe bottom block assembly 10 and the mold surfaces. Molten metal is then introduced into the mold bore by suitable means (not shown) and immediately the molten metal begins to solidify. When sufficient solidification has occurred, the bottom block assembly is slowly loweredby lowering the support table 16. As the ingot emerges from the mold, it is flooded with coolant,
from sprays 24 to further cool the ingot and to cause substantial solidification of the molten metal above the solidified portion 'ofthe ingot. The guide runs 20 and guide extensions 19 insure that as the bottom block is removed from the mold bore, no contact is made therewith by the bottom blockl' Although only one mold assembly and bottom block assembly are shown in the drawings, in commercial practice, a plurality of molds and associated bottom block assemblies are employed at each casting station. The withdrawal table or platen 16 which is hydraulically operated for vertical movement will normally support a plurality of bottom block assemblies. Thus, the drop rate for each ingot is the same and the resultant metallurgical structure and surface characteristics of all of'the ingots will be approximately the same. 1
in FIGS. 2 and 3, another embodiment of the inven- 'tion is illustrated, The bottom block assembly is pro- Lock links 30 are situated in vertical recesses in the periphery of the assembly and are rotatably mounted therein by meansof rod 31 which is affixed to the retaining means 17 or an extension of the bottom block. The upper portion 32 of said lock links 30 extend above and over the upper surface of the bottom block 13. The end of the inwardly extending portion of the lock link is provided with a vertical surface 33 which is inclined in the direction of the bottom block away from the axis of the bottom block. The surface 33 is inclined sufficiently to insure contact with the shrinking ingot as it solidifies. Means 35 are provided to urge the upper, portion 32 .of the lock link 30 to rotate into engagement with the bottom block 13. The urging means must exert enough force to prevent disengagement of the lock link 30 with the solidifying ingot when the ingot is being urged out of the mold but also allow the ingot to be easily removed after the ingot is cast. A suitable means is shown in the drawing as a spring 36 whichis positioned in the recess 37 in the lock link and recess 38 of member 39 to urge the lock link into engagement with the bottom block. Member 39 is suitably supported, for example, to support member 14.
As the molten metal begins to solidify during the initial periods of the casting operation, the inclined surfaces 33 of the lock link 30 insure contact with the shrinking metal. As the bottom block is lowered, the lock link mechanisms urge the forming ingot out of the mold. When the ingot is completely cast, it is readily disengaged from the bottom block assembly by the.
conventional ingot removal means without damage to the bottom block.
Although the invention has been described in terms of casting apparatus for casting circular ingots, the present invention is fully applicableto ingots of any shape. Moreover, it is obvious that various modifications and improvements can be made to the invention without departing from the spirit thereof and the scope of the appended claims.
What is claimed is; a 1. In a vertical D.C. casting apparatus for light metals comprising an open-ended D.C; mold and a bottom block assembly adapted to be inserted into said mold prior to casting the improvement comprising v a. a bottom block adapted to be inserted into said mold and having sufficient dimensions to thereby seal the discharge end of said mold;
b. a vertically movable member smaller than the bottom block upon which the bottom block is supported, the upper horizontal surfaces of said member adapted for slidable contact with said bottom block;
c. retaining means to loosely lock said bottom block to said support member so as to allow horizontal movement of saidbottom block;
d. a plurality of vertically disposed guide surfaces below the bore of said mold and separate thereing said bottom block with respect to said mold and a. A plurality of vertically disposed, rotatable lock links mounted in recesses in the periphery of said bottom block, the upper portion of said lock link extending above the upper surface of said bottom block and inwardly over a portion of said upper surface, the end of said inwardly extending portion of the lock link provided with a vertically disposed surface which is inclined in the direction of the bottom block away from the vertical axis of the bottom block; and
b. Means of urging the upper portion of said lock link into engagement with said bottom block.
Claims (4)
1. In a vertical D.C. casting apparatus for light metals comprising an open-ended D.C. mold and a bottom block assembly adapted to be inserted into said mold prior to casting the improvement comprising a. a bottom block adapted to be inserted into said mold and having sufficient dimensions to thereby seal the discharge end of said mold; b. a vertically movable member smaller than the bottom block upon which the bottom block is supported, the upper horizontal surfaces of said member adapted for slidable contact with said bottom block; c. retaining means to loosely lock said bottom block to said support member so as to allow horizontal movement of said bottom block; d. a plurality of vertically disposed guide surfaces below the bore of said mold and separate therefrom and in a fixed spacial relationship therewith, said guide surfaces being positioned no closer than the projected perimeter of the mold bore and thereby adapted to guide said bottom block into said mold bore; and e. a plurality of guide means associated with said bottom block which are adapted to ride on said guide surfaces as the bottom block is raised into position within the mole or withdrawn therefrom for aligning said bottom block with respect to said mold and preventing contact between said bottom block and said bore.
2. The casting apparatus of claim 1 wherein the cross section of said retaining means is generally L-shaped, the vertically extending leg attached to the bottom surfaces of said bottom block and the horizontally extending leg engaging the bottom surfaces of said support member.
3. The casting apparatus of claim 2 wherein the horizontal dimensions of the support member allow a horizontal movement of the bottom block of from about 0.3 to 3 inches.
4. The vertical D.C. casting apparatus of claim 1 comprising a. A plurality of vertically disposed, rotatable lock links mounted in recesses in the periphery of said bottom block, the upper portion of said lock link extending above the upper surface of said bottom block and inwardly over a portion of said upper surface, the end of said inwardly extending portion of the lock link provided with a vertically disposed surface which is inclined in the direction of the bottom block away from the vertical axIs of the bottom block; and b. Means of urging the upper portion of said lock link into engagement with said bottom block.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US00262509A US3847206A (en) | 1972-06-14 | 1972-06-14 | Self-centering bottom block assembly |
US05/499,729 US3957105A (en) | 1972-06-14 | 1974-08-22 | Self-centering bottom block assembly for D.C. casting |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US00262509A US3847206A (en) | 1972-06-14 | 1972-06-14 | Self-centering bottom block assembly |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US05/499,729 Continuation-In-Part US3957105A (en) | 1972-06-14 | 1974-08-22 | Self-centering bottom block assembly for D.C. casting |
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US3847206A true US3847206A (en) | 1974-11-12 |
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US00262509A Expired - Lifetime US3847206A (en) | 1972-06-14 | 1972-06-14 | Self-centering bottom block assembly |
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3937271A (en) * | 1973-06-11 | 1976-02-10 | Sumitomo Shipbuilding And Machinery Co. Ltd. | Measuring means for measuring secondary cooling zone roller gaps in continuous casting machine |
US3957105A (en) * | 1972-06-14 | 1976-05-18 | Kaiser Aluminum & Chemical Corporation | Self-centering bottom block assembly for D.C. casting |
US4598763A (en) * | 1982-10-20 | 1986-07-08 | Wagstaff Engineering, Inc. | Direct chill metal casting apparatus and technique |
US5217060A (en) * | 1990-12-20 | 1993-06-08 | Alures S.C.P.A. | Continuous casting apparatus having a mobile bottom closure/support |
US5634511A (en) * | 1993-10-13 | 1997-06-03 | Norsk Hydro A.S. | Semi-continuous casting equipment having a centering device for centering a bottom block relative to a casting mold |
US6179042B1 (en) | 1999-05-21 | 2001-01-30 | Alcoa Inc. | Non-hot crack bottom block for casting aluminum ingot |
CN103269814A (en) * | 2010-10-18 | 2013-08-28 | 诺尔斯海德公司 | Casting equipment starter block |
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GB725323A (en) * | 1952-02-26 | 1955-03-02 | Boehler & Co Ag Geb | An improved bottom-closure with chill-plate for continuous-casting moulds |
DE1061039B (en) * | 1958-10-30 | 1959-07-09 | Aluminium Walzwerke Singen | Approach floor for the continuous casting of billets with a large cross-section, especially after the water casting process |
US3384152A (en) * | 1966-04-01 | 1968-05-21 | Anaconda Aluminum Co | Starting block assembly for continuous casting apparatus |
US3464482A (en) * | 1965-07-23 | 1969-09-02 | United Eng Foundry Co | Continuous casting |
US3474000A (en) * | 1966-11-03 | 1969-10-21 | Interlake Steel Corp | Vibrating wall continuous casting device with starter means |
US3525381A (en) * | 1967-04-06 | 1970-08-25 | Concast Ag | Withdrawal head for continuous-casting moulds and method of using same |
GB1219068A (en) * | 1968-09-30 | 1971-01-13 | Concast Ag | Introducing a dummy bar into an open-ended continuous casting mould |
US3620285A (en) * | 1969-03-21 | 1971-11-16 | Olsson International | Slab casting apparatus |
-
1972
- 1972-06-14 US US00262509A patent/US3847206A/en not_active Expired - Lifetime
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GB725323A (en) * | 1952-02-26 | 1955-03-02 | Boehler & Co Ag Geb | An improved bottom-closure with chill-plate for continuous-casting moulds |
DE1061039B (en) * | 1958-10-30 | 1959-07-09 | Aluminium Walzwerke Singen | Approach floor for the continuous casting of billets with a large cross-section, especially after the water casting process |
US3464482A (en) * | 1965-07-23 | 1969-09-02 | United Eng Foundry Co | Continuous casting |
US3384152A (en) * | 1966-04-01 | 1968-05-21 | Anaconda Aluminum Co | Starting block assembly for continuous casting apparatus |
US3474000A (en) * | 1966-11-03 | 1969-10-21 | Interlake Steel Corp | Vibrating wall continuous casting device with starter means |
US3525381A (en) * | 1967-04-06 | 1970-08-25 | Concast Ag | Withdrawal head for continuous-casting moulds and method of using same |
GB1219068A (en) * | 1968-09-30 | 1971-01-13 | Concast Ag | Introducing a dummy bar into an open-ended continuous casting mould |
US3620285A (en) * | 1969-03-21 | 1971-11-16 | Olsson International | Slab casting apparatus |
Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3957105A (en) * | 1972-06-14 | 1976-05-18 | Kaiser Aluminum & Chemical Corporation | Self-centering bottom block assembly for D.C. casting |
US3937271A (en) * | 1973-06-11 | 1976-02-10 | Sumitomo Shipbuilding And Machinery Co. Ltd. | Measuring means for measuring secondary cooling zone roller gaps in continuous casting machine |
US4598763A (en) * | 1982-10-20 | 1986-07-08 | Wagstaff Engineering, Inc. | Direct chill metal casting apparatus and technique |
US5217060A (en) * | 1990-12-20 | 1993-06-08 | Alures S.C.P.A. | Continuous casting apparatus having a mobile bottom closure/support |
US5634511A (en) * | 1993-10-13 | 1997-06-03 | Norsk Hydro A.S. | Semi-continuous casting equipment having a centering device for centering a bottom block relative to a casting mold |
US6179042B1 (en) | 1999-05-21 | 2001-01-30 | Alcoa Inc. | Non-hot crack bottom block for casting aluminum ingot |
CN103269814A (en) * | 2010-10-18 | 2013-08-28 | 诺尔斯海德公司 | Casting equipment starter block |
US20130255904A1 (en) * | 2010-10-18 | 2013-10-03 | Muhammad Umar Farooq Chandia | Casting equipment starter block |
US8905119B2 (en) * | 2010-10-18 | 2014-12-09 | Norsk Hydro Asa | Casting equipment starter block |
CN103269814B (en) * | 2010-10-18 | 2016-06-15 | 诺尔斯海德公司 | Casting equipment plays motion block |
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Owner name: MELLON BANK, N.A., AS COLLATERAL AGENT, PENNSYLVAN Free format text: SECURITY INTEREST;ASSIGNOR:KAISER ALUMINUM & CHEMICAL CORPORATION;REEL/FRAME:005258/0071 Effective date: 19891221 |