US3517729A - Casting apparatus having aligning members in cope and drag - Google Patents

Casting apparatus having aligning members in cope and drag Download PDF

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US3517729A
US3517729A US776091A US3517729DA US3517729A US 3517729 A US3517729 A US 3517729A US 776091 A US776091 A US 776091A US 3517729D A US3517729D A US 3517729DA US 3517729 A US3517729 A US 3517729A
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cope
drag
core member
annular
head
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US776091A
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Dale W Wonus
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ThyssenKrupp Budd Co
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Budd Co
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/02Braking members; Mounting thereof
    • F16D65/10Drums for externally- or internally-engaging brakes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22CFOUNDRY MOULDING
    • B22C9/00Moulds or cores; Moulding processes
    • B22C9/22Moulds for peculiarly-shaped castings
    • B22C9/24Moulds for peculiarly-shaped castings for hollow articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D19/00Casting in, on, or around objects which form part of the product
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/02Braking members; Mounting thereof
    • F16D2065/13Parts or details of discs or drums
    • F16D2065/134Connection
    • F16D2065/1344Connection permanent, e.g. by casting
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2250/00Manufacturing; Assembly
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2250/00Manufacturing; Assembly
    • F16D2250/0007Casting
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2250/00Manufacturing; Assembly
    • F16D2250/0092Tools or machines for producing linings

Definitions

  • This invention relates to casting apparatus and has for an object the provision of improvements in this art.
  • the invention has been developed in connection with the production of cast metal brake drums for automobiles and will be described for this use although applicable to other uses.
  • One of the particular objects of the invention is to increase production of cast articles by making two articles in the same general equipment and at about the same speed as has heretofore been required to make a single article. Production is practically doubled with little or no increase in the cost of production except for the additional cast material required.
  • Another object is to provide casting apparatus to produce plural articles (lower and upper) which are interconnected only at the gate and which can readily be separated by breaking them apart, thus requiring no machine cut for separation.
  • Another object is to provide very accurately positioned and maintained casting-defining elements in a mold.
  • Another object is to provide casting apparatus which accurately positions a metal insert for incorporation in the casting and which maintains the insert for each of two companion superposed articles accurately in position during casting.
  • Another object is to provide casting apparatus for forming dual or twin castings which produces accurate castings in each of two cooperating mold parts even if the parts are not accurately aligned with each other as formed by patterns.
  • FIG. 1 is a vertical axial section of apparatus for making a composite brake drum, comprising a preformed head and a cast drum proper, the view being taken on the line 11 of FIG. 2;
  • FIG. 2 is a horizontal plan and section taken about on the line 22 of FIG. 1;
  • FIG. 3 is a vertical axial section of apparatus for making an all-cast brake drum, the view being taken on the line 3-3 of FIG. 4;
  • FIG. 4 is a horizontal section taken on the line 44 of FIG. 3.
  • the numeral 10 denotes the drag and the numeral 11 the cope of conventional casting apparatus having separable frames which are locked together for pouring. It is not necessary to show the frames and interlocking means, these being entirely conventional. It is common to make a plurality of parts in one mold assembly, and in the brake manufacturing art it is common to make four drums in one mold unit, one gate serving two laterally adjacent mold cavities. All of the shapes for each the drag and cope are formed by a single pattern unit so that all have a fixed relationship to each other and the relative position of one shape will be the same as for all others; hence only one unit need be considered.
  • the line of parting P being along the upwardly extending portion 14 and the horizontal portion 15 of the gate.
  • the downwardly extending portion 16 and the sprue 17 are in the rammed greensand of the cope.
  • the terminal horizontal portion 18 of the gate branches into lower and upper vertical portions 19 and 20 respectively, and these terminate in horizontal end portions 21, 22 respectively, which lead to lower and upper main casting cavities 23 and 24 respectively.
  • An air chamber 25 is provided above the horizontal portion 18 to reduce flow surges of metal.
  • Preformed steel drum heads and 31 are arranged in the drag and cope respectively, center openings 32 thereof fitting around central projections 33, 34 formed of rammed greensand in the drag and cope respectively.
  • the heads 30 and 31 each have an annular rib 35 and an outer annular radial flange 36.
  • the flange 36 fits against an annular radial surface 37 formed in the greensand of the drag or cope.
  • An annular inclined portion 38 of the head is positioned against an annular inclined ribbed portion 39 formed in the greensandof the drag or cope.
  • each mold space or cavity, 23 or 24 there is disposed an annular core, 40 lower and 41 upper, having mating medial annular radial portions 42, 43 respectively, and annular axial portions 44, 45 respectively.
  • the cores 40, 41 have a central cavity to save material and outer edges with outer inclined surfaces 47, 48 respectively, which fit against annular inclined surfaces 49, 50 respectively, formed in annular recesses formed in the greensand of the drag and cope.
  • Interfitting elements including an annular inclined surface 53 on one core member, as 40, and a mating annular inclined surface 54 on the other core member, as 41, serve to hold the core members 40 and 41 in proper position relative to each other during mold assembly, as will be seen.
  • the axial portions 44, 45 of the core members 40, 41 are provided each with a tapered surface 55 which cooperates with the outer sides of the rib 35 of the head member, 30 or 31, to position the parts relative to each other.
  • the core members 40, 41 have an annular radial surface 56 at the outer end of the axial portion opposite the radial face 37 of the greensand to hold the radial flange 36 of the head.
  • the core members 40, 41 are made of very hard strong material, such for example as OO -hardened sodium silicate.
  • the method of assembly is to place the stamped metal head 30 in the drag, the inclined portion 38 of the head fitting against the included ribs 39 of the greensand and the opening 32 of the head fitting around the projection 33 of the greensand to position the head.
  • the head seats on the radial portion 36, on the inclined portion 39, and around the projection 33 of the greensand.
  • the core 3 40 is placed on the drag.
  • the core member 40 seats on the inclined portions 47, 49, on the radial portions 36', 56, and with the inclined portion 55- seated on the inclined outer surface of the rib 35.
  • the upper core member 41 is placed on the core member 40, the inter-fitting portions 53, 54 holding the upper core member in position on the lower core member 40.
  • the sloped surfaces 53, 54 permit lateral shifting of the upper core member relative to the lower core member during assembly of the mold and then prevent lateral shift when the mold is assembled.
  • the head 31 is placed on the upper core member 41, the inclined portion 55 acting against the outer side of the rib 35 accurately locating it on the core member.
  • the rammed cope 11 is carefully lowered upon the core member 41 and head 31.
  • the inclined portion 48 of the core member is engaged by the inclined surface 50 of the pattern-shaped greensand in the cope to accurately position the cope and upper core member 41 relative to each other.
  • the inclined surface 39 of the cope acts against the inclined portion of the head to hold the head in proper position, its mounting on the upper core member 41 providing that it will be approximately in correct position initially.
  • the molten metal fills the cavities 23 and 24 and unites with the outer projecting edges of the heads 30 and 31 without leaking into the interior spaces. Often the outer edge of the head is roughened or otherwise shaped to form a good bond with the molten metal but that is not a part of the present invention.
  • the two cast parts are connected only at the horizontal portion 18 of the gate and may be broken apart or bro-ken off at the restricted end portions of the channels 21, 22 without requiring machine cuts and without injury to the cast parts.
  • FIGS. 3 and 4 The form shown in FIGS. 3 and 4 is similar to the first form of FIGS. 1 and 2 in most respects. The differences are that an all-cast drum is made instead of a drum with a preformed head secured in the drum casting and that the upper core member is positioned by the molding material in the drag instead of by interfitting parts between the upper and lower core members, as in the first form. The latter arrangement, of course, would be applicable to the first form.
  • the arrangement provides that the lower or drag molding material will accurately position the lower core member (and head, if used) and will, at least, closely position the upper core member by actual engagement or engagement with the lower core member which it has positioned, and that the upper core member and the cope cavity are accurately located relative to each other by such shifting movement of one or the other as may be required when the cope is placed on the upper core member.
  • the upper head plate when used, is also accurately positioned on the upper core member and relative to the cope cavity. In the illustrated forms the upper core member is held firmly by the lower assembly in a fixed position and the cope is caused to shift by the upper core member so much as may be necessary.
  • the cope may shift the upper core member relative to the lower core member (if permitted) so that the upper core member is in accurate final registry in the cope cavity if the upper core member is initially held in a generally correct position by the lower assembly so as to take a position to be guided into the cope cavity.
  • FIGS. 3 and 4 the parts which correspond to those of the first form of FIGS. 1 and 2 are designated by the same reference characters but with a prime added.
  • the gate includes an upwardly extending portion 14', a horizontal portion 15', a common vertical portion 16', a sprue 17', a terminal horizontal portion 18', a lower vertical branch portion 19', an upper vertical portion or branch 20', a lower end portion 22', and an air chamber 25 above the horizontal portion 18'.
  • the lower core member 40 has an annular radial portion 42' and an annular axial portion 44 with a central cavity 46'. It also has a closed end or head 51 to shape that part of the inside of the metal cavity 23.
  • the upper core member 41' has an annular radial portion 43' and an annular axial portion 45' with a central cavity 46'. It also has a closed end or head 52.
  • the lower core member 40 has an annular inclined surface 47' on the outer periphery of its radial portion 42 to fit against an annular inclined surface 49 formed in the molding material 12 in the drag 10'.
  • the upper core member 41' has an annular inclined surface 48' on the outer periphery of its radial portion 43' to fit against an annular inclined surface 50" formed in the molding material 13 in the cope 11'.
  • the locational elements 53, 54 of the first form could have counterparts in this form but they are omitted and their function is replaced by providing a lower annular inclined surface 57 on the upper core member 41 which engages the upper portion of the annular inclined surface 49' on the molding material 12' in the drag 10' to laterally adjust the cope core member 41 as it is positioned on the drag assembly and to prevent lateral shift thereof when so positioned.
  • the parting line of the cores has been displaced so as to be below the parting line P between the molding material in the drag and cope. So, instead of having molding material of the lower assembly position the upper core member and assembly through the lower core member, as in the first form, the upper core member in the second form is directly positioned by the molding material in the lower mold assembly.
  • the invention provides apparatus and method for producing duplex castings in a drag and cope where only a single casting was previously produced; and that perfect castings are produced in each the drag and cope even though they map not be in perfect registry or alignment.
  • Casting apparatus comprising in combination, a drag having a pattern-shaped article-forming cavity formed in molding material therein, a drag core member positioned in said drag cavity and forming with the molding material therein a space for forming a complete article unit therein, said drag core member having a tapered interfit with the molding material in said drag for accurately positioning said drag core member in the cavity thereof, said drag and drag core member forming a drag assembly, a cope having a pattern-shaped articleforming cavity formed in molding material therein, a cope core member for being positioned in said cope and forming with the molding materials therein a space for form ing a complete article unit therein, said cope core member having a tapered interfit with the molding material in said cope for accurately positioning said cope member in the cavity thereof, said cope and cope core member forming a cope assembly, and interfitting annular elements on said cope core member and part of said drag assembly providing laterally shiftable positioning means between parts of said drag and cope assemblies for use during assembly of said casting apparatus and which secures accurate positioning of said cope core
  • Casting apparatus as set forth in claim- 1, further characterized by the fact that a preformed head member is positioned in at least one of said mold cavities, said 6 head member having location defining elements and the associated core member and molding material having location defining elements interacting with the location defining elements on said head member.

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  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
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Description

'June 30, 1970 D. w. woNus ,5 7,
CASTING APPARATUS HAVING ALIGNING MEMBERS IN COPE AND DRAG Original Filed 0012.23,- 1965 2 Sheets-Sheet 1 INVENTOR DALE. N. WONUS ATTORNEY June 30, 1970 D. w. woNus 3,517,729
CASTING APPARATUS HAVING ALIGNING MEMBERS IN COPE AND DRAG Original Filed Oct. 25, 1965 Sheets-Sheet ATTORNEY United States Patent f 3 517 729 CASTING APPARATUS HAVING ALIGNING MEMBERS IN corn AND DRAG Dale W. Wonus, Grosse Pointe Woods, Mich., assignor to The Budd Company, Philadelphia, Pa., a corporation of Pennsylvania Original application Oct. 23, 1965, Ser. No. 503,597,
now Patent No. 3,429,364. Divided and this application Nov. 15, 1968, Ser. No. 776,091
Int. Cl. B22c 9/10 US. Cl. 164-366 4 Claims ABSTRACT OF THE DISCLOSURE This is a division of application Ser. No. 503,597, filed Oct. 23, 1965 entitled Method of Casting Separate Annular Castings, now Pat. No. 3,429,364.
This invention relates to casting apparatus and has for an object the provision of improvements in this art. The invention has been developed in connection with the production of cast metal brake drums for automobiles and will be described for this use although applicable to other uses.
One of the particular objects of the invention is to increase production of cast articles by making two articles in the same general equipment and at about the same speed as has heretofore been required to make a single article. Production is practically doubled with little or no increase in the cost of production except for the additional cast material required.
Another object is to provide casting apparatus to produce plural articles (lower and upper) which are interconnected only at the gate and which can readily be separated by breaking them apart, thus requiring no machine cut for separation.
Another object is to provide very accurately positioned and maintained casting-defining elements in a mold.
Another object is to provide casting apparatus which accurately positions a metal insert for incorporation in the casting and which maintains the insert for each of two companion superposed articles accurately in position during casting.
Another object is to provide casting apparatus for forming dual or twin castings which produces accurate castings in each of two cooperating mold parts even if the parts are not accurately aligned with each other as formed by patterns.
The above and other objects of the invention, as well as various features of novelty and advantages, will be apparent from the following description of certain exemplary embodiments, reference being made to the accompanying drawings, wherein:
FIG. 1 is a vertical axial section of apparatus for making a composite brake drum, comprising a preformed head and a cast drum proper, the view being taken on the line 11 of FIG. 2;
FIG. 2 is a horizontal plan and section taken about on the line 22 of FIG. 1;
FIG. 3 is a vertical axial section of apparatus for making an all-cast brake drum, the view being taken on the line 3-3 of FIG. 4;
FIG. 4 is a horizontal section taken on the line 44 of FIG. 3.
3,517,729 Patented June 30, 1970 "ice In the drawings, referring first to FIGS. 1 and 2, the numeral 10 denotes the drag and the numeral 11 the cope of conventional casting apparatus having separable frames which are locked together for pouring. It is not necessary to show the frames and interlocking means, these being entirely conventional. It is common to make a plurality of parts in one mold assembly, and in the brake manufacturing art it is common to make four drums in one mold unit, one gate serving two laterally adjacent mold cavities. All of the shapes for each the drag and cope are formed by a single pattern unit so that all have a fixed relationship to each other and the relative position of one shape will be the same as for all others; hence only one unit need be considered.
Herein only the rammed greensand or other shapedefining molding material 12 for the drag 10 and the rammed greensand or the equivalent molding material 13 for the cope 11 is shown, the line of parting P being along the upwardly extending portion 14 and the horizontal portion 15 of the gate. The downwardly extending portion 16 and the sprue 17 are in the rammed greensand of the cope. The terminal horizontal portion 18 of the gate branches into lower and upper vertical portions 19 and 20 respectively, and these terminate in horizontal end portions 21, 22 respectively, which lead to lower and upper main casting cavities 23 and 24 respectively. An air chamber 25 is provided above the horizontal portion 18 to reduce flow surges of metal.
Preformed steel drum heads and 31 are arranged in the drag and cope respectively, center openings 32 thereof fitting around central projections 33, 34 formed of rammed greensand in the drag and cope respectively.
The heads 30 and 31 each have an annular rib 35 and an outer annular radial flange 36. The flange 36 fits against an annular radial surface 37 formed in the greensand of the drag or cope. An annular inclined portion 38 of the head is positioned against an annular inclined ribbed portion 39 formed in the greensandof the drag or cope.
In each mold space or cavity, 23 or 24, there is disposed an annular core, 40 lower and 41 upper, having mating medial annular radial portions 42, 43 respectively, and annular axial portions 44, 45 respectively. The cores 40, 41 have a central cavity to save material and outer edges with outer inclined surfaces 47, 48 respectively, which fit against annular inclined surfaces 49, 50 respectively, formed in annular recesses formed in the greensand of the drag and cope. Interfitting elements, including an annular inclined surface 53 on one core member, as 40, and a mating annular inclined surface 54 on the other core member, as 41, serve to hold the core members 40 and 41 in proper position relative to each other during mold assembly, as will be seen.
The axial portions 44, 45 of the core members 40, 41 are provided each with a tapered surface 55 which cooperates with the outer sides of the rib 35 of the head member, 30 or 31, to position the parts relative to each other. The core members 40, 41 have an annular radial surface 56 at the outer end of the axial portion opposite the radial face 37 of the greensand to hold the radial flange 36 of the head.
The core members 40, 41 are made of very hard strong material, such for example as OO -hardened sodium silicate.
The method of assembly is to place the stamped metal head 30 in the drag, the inclined portion 38 of the head fitting against the included ribs 39 of the greensand and the opening 32 of the head fitting around the projection 33 of the greensand to position the head. The head seats on the radial portion 36, on the inclined portion 39, and around the projection 33 of the greensand. Next, the core 3 40 is placed on the drag. The core member 40 seats on the inclined portions 47, 49, on the radial portions 36', 56, and with the inclined portion 55- seated on the inclined outer surface of the rib 35.
Next, the upper core member 41 is placed on the core member 40, the inter-fitting portions 53, 54 holding the upper core member in position on the lower core member 40. The sloped surfaces 53, 54 permit lateral shifting of the upper core member relative to the lower core member during assembly of the mold and then prevent lateral shift when the mold is assembled.
Then the head 31 is placed on the upper core member 41, the inclined portion 55 acting against the outer side of the rib 35 accurately locating it on the core member. Finally, the rammed cope 11 is carefully lowered upon the core member 41 and head 31. The inclined portion 48 of the core member is engaged by the inclined surface 50 of the pattern-shaped greensand in the cope to accurately position the cope and upper core member 41 relative to each other. The inclined surface 39 of the cope acts against the inclined portion of the head to hold the head in proper position, its mounting on the upper core member 41 providing that it will be approximately in correct position initially.
It is thus seen that the parts for the upper casting are always positioned to make a perfect casting even if the mold frames are not positioned to place the mold cavity of the cope directly over the mold cavity of the drag.
The molten metal fills the cavities 23 and 24 and unites with the outer projecting edges of the heads 30 and 31 without leaking into the interior spaces. Often the outer edge of the head is roughened or otherwise shaped to form a good bond with the molten metal but that is not a part of the present invention.
After solidifying, the two cast parts are connected only at the horizontal portion 18 of the gate and may be broken apart or bro-ken off at the restricted end portions of the channels 21, 22 without requiring machine cuts and without injury to the cast parts.
The form shown in FIGS. 3 and 4 is similar to the first form of FIGS. 1 and 2 in most respects. The differences are that an all-cast drum is made instead of a drum with a preformed head secured in the drum casting and that the upper core member is positioned by the molding material in the drag instead of by interfitting parts between the upper and lower core members, as in the first form. The latter arrangement, of course, would be applicable to the first form. The arrangement provides that the lower or drag molding material will accurately position the lower core member (and head, if used) and will, at least, closely position the upper core member by actual engagement or engagement with the lower core member which it has positioned, and that the upper core member and the cope cavity are accurately located relative to each other by such shifting movement of one or the other as may be required when the cope is placed on the upper core member. The upper head plate, when used, is also accurately positioned on the upper core member and relative to the cope cavity. In the illustrated forms the upper core member is held firmly by the lower assembly in a fixed position and the cope is caused to shift by the upper core member so much as may be necessary. But it will be obvious that the cope may shift the upper core member relative to the lower core member (if permitted) so that the upper core member is in accurate final registry in the cope cavity if the upper core member is initially held in a generally correct position by the lower assembly so as to take a position to be guided into the cope cavity.
In FIGS. 3 and 4 the parts which correspond to those of the first form of FIGS. 1 and 2 are designated by the same reference characters but with a prime added.
Thus there is a drag and a cope 11, the drag having molding material 12' and the cope having molding material 13 therein.
The gate includes an upwardly extending portion 14', a horizontal portion 15', a common vertical portion 16', a sprue 17', a terminal horizontal portion 18', a lower vertical branch portion 19', an upper vertical portion or branch 20', a lower end portion 22', and an air chamber 25 above the horizontal portion 18'. There is a lower casting cavity 23" and an upper casting cavity 24.
There is a central projection 33' on the molding material in the drag 10" to support and aid in positioning a lower core member 40' and also to form a barrier to the flow of metal so as to form a center opening in the head of the casting. There is a like projection 34 on the molding material in the cope 11 to cooperate with an upper core member 41.
The lower core member 40 has an annular radial portion 42' and an annular axial portion 44 with a central cavity 46'. It also has a closed end or head 51 to shape that part of the inside of the metal cavity 23. The upper core member 41' has an annular radial portion 43' and an annular axial portion 45' with a central cavity 46'. It also has a closed end or head 52.
The lower core member 40 has an annular inclined surface 47' on the outer periphery of its radial portion 42 to fit against an annular inclined surface 49 formed in the molding material 12 in the drag 10'. The upper core member 41' has an annular inclined surface 48' on the outer periphery of its radial portion 43' to fit against an annular inclined surface 50" formed in the molding material 13 in the cope 11'.
The locational elements 53, 54 of the first form could have counterparts in this form but they are omitted and their function is replaced by providing a lower annular inclined surface 57 on the upper core member 41 which engages the upper portion of the annular inclined surface 49' on the molding material 12' in the drag 10' to laterally adjust the cope core member 41 as it is positioned on the drag assembly and to prevent lateral shift thereof when so positioned. In effect, the parting line of the cores has been displaced so as to be below the parting line P between the molding material in the drag and cope. So, instead of having molding material of the lower assembly position the upper core member and assembly through the lower core member, as in the first form, the upper core member in the second form is directly positioned by the molding material in the lower mold assembly.
The steps of assembling the parts of the second form will be obvious and need not be described. It will be clear that the upper core member, being held in proper position, will cause the cope to be shifted by the inclined surfaces 48', 50' to bring it into correct position relative to the upper core member.
In neither form is the position of the molding cavity in the cope necessarily aligned with the cavity in the drag. It will also be seen that parts of different size and shape can be formed, respectively, in the drag and cope without reference to the size and shape of the article formed in the other. It is even possible to form a full-cast article in one assembly and to form an article on a preformed head in the other assembly.
It is thus seen that the invention provides apparatus and method for producing duplex castings in a drag and cope where only a single casting was previously produced; and that perfect castings are produced in each the drag and cope even though they map not be in perfect registry or alignment.
While certain embodiments of the invention have been described for purposes of illustration, it is to be understood that there may be various embodiments and modifications within the general scope of the invention.
I claim:
1. Casting apparatus, comprising in combination, a drag having a pattern-shaped article-forming cavity formed in molding material therein, a drag core member positioned in said drag cavity and forming with the molding material therein a space for forming a complete article unit therein, said drag core member having a tapered interfit with the molding material in said drag for accurately positioning said drag core member in the cavity thereof, said drag and drag core member forming a drag assembly, a cope having a pattern-shaped articleforming cavity formed in molding material therein, a cope core member for being positioned in said cope and forming with the molding materials therein a space for form ing a complete article unit therein, said cope core member having a tapered interfit with the molding material in said cope for accurately positioning said cope member in the cavity thereof, said cope and cope core member forming a cope assembly, and interfitting annular elements on said cope core member and part of said drag assembly providing laterally shiftable positioning means between parts of said drag and cope assemblies for use during assembly of said casting apparatus and which secures accurate positioning of said cope core member in said cope cavity when said cope is placed on said drag assembly with said cope core member positioned thereon.
2. Casting apparatus as set forth in claim 1, in which said intenfitting elements comprises tapered interfitting annular elements on said cope core member and the molding material in said drag.
3. Casting apparatus as set forth in claim- 1, further characterized by the fact that a preformed head member is positioned in at least one of said mold cavities, said 6 head member having location defining elements and the associated core member and molding material having location defining elements interacting with the location defining elements on said head member.
4. Casting apparatusas set forth in claim 3, further characterized by the fact that said location defining means on said head member comprises an annular tapered portion fitting with an annular tapered portion on said core member and another annular portion fitting with an annular tapered portion of the molding material in said cavity.
References Cited UNITED STATES PATENTS 1,460,293 6/1923 Walther 164366 1,952,500 3/1934 Huettemann 164-368 3,253,862 5/1966 Watanabe et al. 164-112 X FOREIGN PATENTS 207,993 12/ 1956 Australia. 762,741 12/1956 Great Britain.
J. SPENCER OVERHOLSER, Primary Examiner R. S. ANNEAR, Assistant Examiner US. Cl. X.R. 1 64-3 32
US776091A 1965-10-23 1968-11-15 Casting apparatus having aligning members in cope and drag Expired - Lifetime US3517729A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4298049A (en) * 1979-08-17 1981-11-03 Westran Corporation Method for assembling molds
US5575056A (en) * 1994-02-25 1996-11-19 Sumitomo Bakelite Company Limited Method of and mold for molding product having insert
CN105750502A (en) * 2016-04-20 2016-07-13 浙江省机电设计研究院有限公司 Pouring system device and pouring method for iron based sand coated cast brake drums
GB2566527A (en) * 2017-09-18 2019-03-20 Nissan Motor Iberica Sa Improvements relating to brake disc casting processes and apparatus

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1460293A (en) * 1922-07-05 1923-06-26 Dayton Steel Foundry Co Wheel
US1952500A (en) * 1931-07-14 1934-03-27 Hammer Bray Company Mold for casting gas burners
GB762741A (en) * 1953-12-17 1956-12-05 Gen Motors Corp Improvements in and relating to casting internal combustion engine cylinder heads
US3253862A (en) * 1964-06-08 1966-05-31 Kelsey Hayes Co Wheel and method of making the same

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1460293A (en) * 1922-07-05 1923-06-26 Dayton Steel Foundry Co Wheel
US1952500A (en) * 1931-07-14 1934-03-27 Hammer Bray Company Mold for casting gas burners
GB762741A (en) * 1953-12-17 1956-12-05 Gen Motors Corp Improvements in and relating to casting internal combustion engine cylinder heads
US3253862A (en) * 1964-06-08 1966-05-31 Kelsey Hayes Co Wheel and method of making the same

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4298049A (en) * 1979-08-17 1981-11-03 Westran Corporation Method for assembling molds
US5575056A (en) * 1994-02-25 1996-11-19 Sumitomo Bakelite Company Limited Method of and mold for molding product having insert
CN105750502A (en) * 2016-04-20 2016-07-13 浙江省机电设计研究院有限公司 Pouring system device and pouring method for iron based sand coated cast brake drums
GB2566527A (en) * 2017-09-18 2019-03-20 Nissan Motor Iberica Sa Improvements relating to brake disc casting processes and apparatus

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