MOLD PUMP ENGAGEMENT APPARATUS
20240035475 ยท 2024-02-01
Inventors
Cpc classification
F04D7/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B22D39/02
PERFORMING OPERATIONS; TRANSPORTING
F04D29/605
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D7/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B22D39/02
PERFORMING OPERATIONS; TRANSPORTING
F04D29/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A molten metal pump assembly and method to fill a mold with molten metal, such as aluminum. The assembly includes a support frame for suspending the molten metal pump above a furnace. The support frame includes a mechanism for lifting and lowering the molten metal pump into engagement and disengagement with the mold.
Claims
1. (canceled)
2. The method of claim 12 wherein said mechanism comprises a lever arm.
3. The method of claim 12 wherein said frame member includes at least one resilient element disposed between a pump engaging section and a furnace apparatus engaging frame.
4. The method of claim 3 wherein said at least one resilient element is further disposed between a riser component of the pump and the furnace engaging frame.
5. The method of claim 3 wherein said resilient element comprises a spring.
6. The method of claim 2 wherein said lever arm orients said pump in a raised position wherein the pump engages the mold and lowers the pump in response to an excessive hydraulic, pneumatic, or mechanical force supplied by a furnace lifting apparatus.
7. The method of claim 12 wherein said lifting and lowering covers a distance of between about 0.5 and 2 inches.
8. The method of claim 12 wherein said pump engages said mold inlet with a mating pressure of less than 100 lbs.
9. The method of claim 12 wherein a counterweight is used to lift the pump to a raised position.
10. The method of claim 9 wherein said counterweight weighs between about 10 and 200 weight percent of the pump.
11. The method of claim 12 wherein said pump includes a heated riser configured for mating with the mold.
12. A method of filling a mold with molten metal, the method comprising: providing a furnace configured for containing molten metal, said furnace being capable of being raised and lowered, providing a molten metal pump having a first end configured for immersion in said molten metal and a second end configured for engaging said mold; providing a frame member having a portion connected with said furnace and a portion connected with said molten metal pump, said frame member including a mechanism suitable for lifting and lowering said molten metal pump; and positioning an inlet to said mold above an outlet from said pump, raising said furnace to bring said pump outlet into association with said mold inlet, operating said mechanism to complete engagement of said pump outlet with said mold inlet, and activating said molten metal pump to fill the associated mold with molten metal.
13. The method of claim 12 including the steps of deactivating said molten metal pump lowering said mechanism, lowering said furnace, removing said mold, and positioning an inlet to a fresh mold above the outlet from said pump, raising said furnace to bring said pump outlet into association with said fresh mold inlet, operating said mechanism to complete engagement of said pump outlet with said fresh mold inlet, and activating said molten metal pump to fill the associated fresh mold with molten metal.
14. A molten metal molding assembly comprising: a furnace; a mold having an inlet; a pump configured to receive molten metal from said furnace and deliver said molten metal to a riser assembly in selective fluid communication with the inlet; a frame configured to support the pump; and said frame including a lever mechanism for selectively raising and lowering said pump into engagement and disengagement with said mold.
15. The assembly of claim 14 wherein said lever mechanism includes an activation end.
16. The assembly of claim 14 further comprising a counterweight configured for attachment to the activation end.
17. The assembly of claim 14 wherein said frame includes a section configured for mounting to said furnace.
18. The assembly of claim 17 wherein said frame includes a section configured for mating to said pump.
19. The assembly of claim 18 wherein said section configured for mating with said pump includes at least one resilient interconnection between the section and the pump.
20. The assembly of claim 18 wherein said lever mechanism is disposed between the section configured for mating with said furnace and the section configured for mating with said pump.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The following is a brief description of the drawings, which are presented for the purposes of illustrating the exemplary embodiments disclosed herein and not for the purposes of limiting the same.
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
DETAILED DESCRIPTION
[0020] To aid the Patent Office and any readers of any patent issued on this application in interpreting the claims appended hereto, Applicant wants to note that there is no intention to invoke 35 U.S.C. 112(f) unless the words means for are explicitly used in a particular claim.
[0021] It is to be understood that the detailed figures are for purposes of illustrating the exemplary embodiments only and are not intended to be limiting. Additionally, it will be appreciated that the drawings are not necessarily to scale and that portions of certain elements may be exaggerated for the purpose of clarity and ease of illustration.
[0022] Although specific terms are used in the following description for the sake of clarity, these terms are intended to refer only to the particular structure of the embodiments selected for illustration in the drawings, and are not intended to define or limit the scope of the disclosure. In the drawings and the following description below, it is to be understood that like numeric designations refer to components of like function.
[0023] The singular forms a, an, and the include plural referents unless the context clearly dictates otherwise.
[0024] As used herein, the terms about, generally and substantially are intended to encompass structural or numerical modifications which do not significantly affect the purpose of the element or number modified by such term.
[0025] As used in the specification and in the claims, the term comprising may include the embodiments consisting of and consisting essentially of. The terms comprise(s), include(s), having, has, can, contain(s), and variants thereof, as used herein, are intended to be open-ended transitional phrases, terms, or words that require the presence of the named ingredients/steps and permit the presence of other ingredients/steps. However, such description should be construed as also describing compositions or processes as consisting of and consisting essentially of the enumerated ingredients/steps, which allows the presence of only the named ingredients/steps, along with any impurities that might result therefrom, and excludes other ingredients/steps.
[0026] The present disclosure describes a mechanical device that is used for the suspension of a mold filling centrifugal pump used with molten aluminum, zinc and alloys thereof. The device includes a combined or separate spring system and a four bar linkage system that allows for even engagement of the pump with a mold. This engagement will allow even pressure to be applied to the mold without damaging fragile ceramic components and maintains pump alignment. While the present disclosure is largely focused on a mechanical molten metal pump, it is also believed that the suspension device could work equally well with an electromagnetic pump.
[0027] With reference to
[0028] The elongated shaft 16 is rotated by the motor 14 and extends from the motor 14 and into the pump chamber 18 submerged in the molten metal within which the impeller 22 is rotated. Rotation of the impeller 22 causes a directed flow of molten metal through riser 30. The pump riser in turn is connected to a heated riser which is configured for mating with a mold, schematically illustrated by box 34, which includes an inlet 39 for receiving nozzle 40 or riser 36.
[0029]
[0030] Pump scaffolding 208 includes a pump frame 210 to which pump 10 is directly secured. Pump frame 210 is joined at its corners to lift frame 212. The support frame 200 further includes a lift mechanism 206 interposed between the beams 204 and the pump scaffolding 208 to allow lifting of the pump into engagement with the mold and lowering of the pump as described below. Lift mechanism 206 is interposed between beams 204 and lift frame 212. Lift mechanism 206 includes levers 214. Identical levers 214 are provided on each side of the support frame 200.
[0031] Pulling down on handle 216 causes cams 218 to rotate about their point of connection 220 with beams 204 causing cam 218 to rise at its point of connection 222 with lift frame 212. Bar 224 extends between one corner of cam 218 and a second cam 226. When cams 218 are rotated, bars 224 cause rotation of cams 226 around their point of connection 228 with beam 204 which raises lift frame 212 at its point of connection 230. A cross bar 232 extends between cams 226.
[0032] Generally the range of motion of the lift mechanism 206 will be between about 0.5 and 2 inches. The lift frame 212 orients the pump 10 in a raised position allowing the pump riser (36/36) to engage the mold when the furnace is raised. Typically, the furnace is raised and lowered via hydraulic, pneumatic, or screw jack apparatus. The raised levers 214 provide a force moderating component in response to an excessive hydraulic, pneumatic, or mechanical force supplied by a furnace lifting apparatus. Moreover, if the pump 10 engages the mold 34 with excessive force, the levers 214 are tripped and the support frame 200 lowers the pump 10 away from the mold 10 being engaged.
[0033] The lift frame 212 provides a force moderating mechanism. The force moderating mechanism allows the molten metal pump to be raised at the time a fresh mold assembly is being engaged for molten metal introduction.
[0034] The force moderating mechanism can include a counterweight 250 engaged at 240 that can bias the pump 10 in a raised position. If a force in excess of the counterweight is encountered during the mating process, the molten metal pump 10 is urged to descend. Preferably, the counterweight force is suitable to form a seal between the heated riser 36/36 and the mold inlet 39, but forgiving enough to activate lowering of the pump before damage to any fragile components would occur.
[0035] Counterweight 250 can be hooked to the activation point 240, particularly when the pump 10 is in its raised position (see
[0036] With reference to
[0037] In this manner the furnace, including the molten metal pump mounted to the support frame, can be raised and lowered using the furnace lifting apparatus such that the heated riser is brought into engagement with the mold inlet. The force moderating mechanism of the support frame can then be used to moderate the molten metal pump engagement with the mold. Advantageously, the force moderating mechanism allows a more accurate and constant force of engagement between the heated riser and the mold. Moreover, since the pump riser and heated riser are typically constructed of refractory and/or ceramic material, completing engagement with the mold with greater precision than relying on the furnace lifting apparatus alone is advantageous.
[0038] The support frame in
[0039] The exemplary embodiment has been described with reference to the preferred embodiments. Obviously, modifications and alterations will occur to others upon reading and understanding the preceding detailed description. It is intended that the exemplary embodiment be construed as including all such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.