US2022266331A1PendingUtilityA1
Method for casting metals
Est. expiryMay 14, 2039(~12.8 yrs left)· nominal 20-yr term from priority
B22D 17/28B22D 27/003B22D 17/145B22D 18/04B22D 18/06
61
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Claims
Abstract
The casting of metals or salt and products made by casting metals or salts are described. For example, a method for casting metals or salts includes evacuating a mold that is pressurized with an inert gas and coupled to a pressurized source of molten metal or salt, wherein the pressurization of the source is sufficiently high to drive the molten metal or salt into the mold in response to the evacuation.
Claims
exact text as granted — not AI-modified1 - 24 . (canceled)
25 . A method for casting metals or salts, the method comprising:
evacuating a mold that is pressurized with an inert gas and coupled to a pressurized source of molten metal or salt, wherein the pressurization of the source is sufficiently high to drive the molten metal or salt into the mold in response to the evacuation.
26 . The method of claim 25 , wherein evacuating the mold comprises coupling the mold to a vacuum chamber, wherein the vacuum chamber has a volume that is 10 to 100 times a volume of the mold.
27 . The method of claim 25 , wherein the source of molten metal or salt is pressurized to a pressure of less than 0.2 MPa gage.
28 . The method of claim 25 , wherein the source of molten metal or salt is pressurized with the inert gas comprising a dried inert gas.
29 . The method of claim 25 , wherein the molten metal or salt is one of copper, steel, aluminum, metal alloys, salts, or salt mixtures.
30 . The method of claim 25 , wherein the mold is configured to cast a coil.
31 . The method of claim 25 , wherein the mold is evacuated in 0.1 seconds or less.
32 . The method of claim 25 , wherein prior to the evacuation, the pressurization of the interior of the mold and the pressurization of the source are comparable and molten metal or salt is exposed to the inert gas pressurizing the mold.
33 . The method of claim 25 , further comprising during the evacuation, after the evacuation, or both during and after the evacuation, increasing pressurization of the source of molten metal or salt.
34 . The method of claim 25 , wherein the mold comprises a core or multiple slides, or both a core and multiple slides.
35 . The method of claim 34 , wherein the mold comprises a gas-permeable core and wherein evacuating the mold comprises evacuating at least part of the mold by drawing gas through the gas-permeable core.
36 . The method of claim 25 , wherein the pressurized source comprises a crucible that includes resistive or inductive heating elements integrated therein or disposed along a surface thereof.
37 . A coil, comprising:
a cast unitary metal strip covered by an insulator and layered to form a plurality of turns about an axis, the metal strip having a width generally perpendicular to the axis and a height generally parallel to the axis, wherein the width is larger than the height.
38 . The coil of claim 37 , wherein the cast unitary metal strip has a generally rounded rectangular cross-section parallel to the axis.
39 . The coil of claim 37 , wherein the insulation of adjacent turns of the metal strip contact each other over substantially the entire width of the metal strip.
40 . The coil of claim 37 , wherein the coil displays physical characteristics that are characteristic being cast in a relatively low pressure difference casting process, wherein the physical characteristics comprise dimensions of microbubbles in the coil.
41 . The coil of claim 37 , wherein the coil displays physical characteristics that are characteristic being cast directly in a shape that is suitable for use, the physical characteristics comprising the metal strip is free from stress-induced microdefects resulting from an application of a force perpendicular to the axis to shape the metal strip.
42 . The coil of claim 37 , wherein the metal strip comprises aluminum and the insulator comprises aluminum oxide.
43 . The coil of claim 37 , wherein the metal strip comprises copper.
44 . The coil of claim 37 , wherein the cast unitary metal strip coil has a generally trapezoidal cross section parallel to the axis, wherein the cross section is oriented to intersect comparable cross sections of other coils of a motor or generator arranged generally concentrically about a center.
45 . The coil of claim 44 , wherein the generally trapezoidal cross section is formed by a single winding of the cast unitary metal strip.
46 . The coil of claim 37 , wherein in at least one cross section parallel to the axis, regions of the cast unitary metal strip have non-uniform widths, wherein the regions progressively increase or decrease in width along the axis.
47 . The coil of claim 46 , wherein in the at least one cross section parallel to the axis, regions of the cast unitary metal strip have non-uniform heights, wherein the regions progressively increase or decrease in height along the axis.
48 . The coil of claim 37 , wherein the coil is cast in an extended shape that forms a plurality of turns about an axis with a space between adjacent turns, wherein the space between adjacent turns is 5 to 10 times wider than the thickness of the metal strip along the axis.Join the waitlist — get patent alerts
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