Molded article of metal matrix composite and method for making such an article
Abstract
A molded brake disc having a central hub portion and an annular disc portion extending from the hub portion in a radial outward direction for frictional engagement with brake pads, wherein the disc portion is formed of metal matrix composite having a reinforcing material added to a metal matrix, and the hub portion is formed of metal which is inexpensive as compared to the metal matrix composition. Due to a limited use of the expensive metal matrix composite, the molded brake disc as a whole is inexpensive as compared to a conventional molded brake disc entirely formed of metal matrix composite. Such molded brake disc can readily be formed by an improved injection molding method, wherein a metal matrix composite material in a molten state and a metallic material in a semi-solidified state are supplied into an injection cylinder such that the metal matrix composite material is situated on a gate side adjacent to a gate of a molding die and the metallic material is situated on a piston side adjacent to a piston in the injection cylinder, and the metal matrix composite material and the metallic material are then forced by the piston into a die cavity in the molding die in the order named.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A molded article having two parts adjoining with each other, one of said two parts being required to have a higher mechanical strength than the other part, wherein said one part is formed of a metal matrix composite material, and said other part is formed of a metallic material, said metal matrix composite material and said metallic material being united together at a boundary between said two parts.
2 . The molded article according to claim 1 , wherein said molded article is comprised of a brake disc of a disc brake, and said one part of the molded article is an annular disc portion of said brake disc including a pad rubbing area provided for frictional engagement with a brake pad of the disc brake.
3 . A method of forming a molded article on an injection molding apparatus using a metal matrix composite material, the injection molding apparatus including a molding die having a die cavity defined therein, an injection cylinder communicating with the die cavity via a gate formed in the molding die, and a piston slidably disposed inside the injection cylinder for reciprocating movement toward and away from the gate of the molding die, said method comprising the steps of:
supplying a desired quantity of metallic material in a semi-solidified state and a desired quantity of metal matrix composite material in a molten state into the injection cylinder in such a manner that said semi-solidified metallic material is situated on a piston side adjacent to the piston and said molten metal matrix composite material is situated on a gate side adjacent to the gate; and subsequently advancing the piston toward the gate to force said molten metal matrix composite material and said semi-solidified metallic material into the die cavity in the order named, whereby the metal matrix composite and the metallic material are formed into a shape complementary in contour to the die cavity.
4 . The method according to claim 3 , for forming a molded article having two adjoining parts with one part having a higher mechanical strength than the other part, wherein said desired quantity of metal matrix composite material is substantially equal to a cubic volume of said one part of the molded article, and said desired quantity of metallic material is substantially equal to the sum of a cubic volume of the other part of the molded article and a cubic capacity of the gate.
5 . The molded article of the method of claim 3 .
6 . The molded article of the method of claim 4.Join the waitlist — get patent alerts
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