EP0805729A2

Method of constructing fully dense metal molds and parts

Abstract

A method of constructing a fully dense metal part or a metal mold half for mating with another mold half to form a mold for casting multiple parts. Steps include placing a pattern in a tubular mold base, casting a ceramic member onto critical surfaces of the pattern, removing the pattern from the mold base, covering the critical surfaces transferred to the ceramic member with a powdered metal having a melting temperature greater than that of an infiltration metal, placing a quantity of an infiltration metal over the powdered metal, placing the tubular mold base in a furnace at a temperature sufficient to melt the infiltration metal without melting the powdered metal, and removing the ceramic member from the first open end of the tubular mold base to expose the critical surfaces. The quantity of the infiltration metal is sufficient to fill voids between the particles of the powdered metal when the infiltration metal is melted, thereby generating a fully dense metal part. The metal part has the critical surfaces transferred from the ceramic member when the infiltration metal solidifies. The metal powder also acts as a filter to filter out any contamination or oxidized metal within the infiltration metal so that such contamination does not blemish the finished surface of the fully dense metal part.

Term

Term ended

Projected expiry passed 5 January 2016, 10.7 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

9 claims: 6 independent, 3 dependent

  1. 1
    Claims of equivalent WO 9622170 A2 WHAT IS CLAIMED IS:1. A method of constructing a fully dense mold half characterized by the steps of: a) placing a pattern in a tubular mold base, said tubular mold base having a melting temperature greater than that of an infiltration metal, a first open end, and a second open end, said pattern having critical surfaces facing said first open end;b) casting a ceramic member between said critical surfaces of said pattern and said first open end of said mold base to transfer critical surfaces to said ceramic member;c) removing said pattern from said second open end of said mold base, thereby exposing said critical surfaces of said ceramic member inside said tubular mold base;d) covering said critical surfaces of said ceramic member with a powdered metal, said powdered metal comprising particles having a melting temperature greater than that of an infiltration metal;e) placing a quantity of an infiltration metal over said powdered metal, and placing said tubular mold base, having said second open end upright, in a furnace at a temperature sufficient to melt said infiltration metal without melting said powdered metal and said tubular mold base, said quantity of said infiltration metal being sufficient to fill voids between said particles of said powdered metal, thereby generating a fully dense metal mold half, said metal mold half having said critical mold surfaces transferred from said ceramic member when said infiltration metal solidifies;and f) removing said ceramic member from said first end of said tubular mold base, to expose said critical mold surfaces for molding purposes.
  2. 4
    The method according to any of Claims 1, 2, or 3 wherein an insulating material is placed over said quantity of said infiltration metal when said infiltration metal is melted so that said infiltration metal solidifies first at said critical surfaces. _
  3. 5
    A method of constructing a fully dense mold half characterized by the steps of:a) placing an epoxy pattern in a tubular mold base, said tubular mold base having a melting temperature greater than that of an infiltration metal, a first open end, and a second open end, said pattern having critical surfaces facing said first open end;b) casting a ceramic member between said critical surfaces of said pattern and said first open end of said mold base to transfer critical surfaces to said ceramic member;c) burning out said epoxy pattern from said second open end of said mold base, thereby exposing said critical surfaces of said ceramic member inside said tubular mold base;d) covering said critical surfaces of said ceramic member with a powdered metal, said powdered metal comprising particles having a melting temperature greater than that of an infiltration metal;e) placing a quantity of an infiltration metal over said powdered metal, and placing an insulating material over said quantity of an infiltration metal;f) placing said tubular mold base, having said second open end upright, in a hydrogen furnace at about 2100°F, said quantity of an infiltration metal being sufficient to fill voids between said particles of said powdered metal when melted, thereby generating a fully dense metal mold half, said metal mold half having said critical mold surfaces transferred from said ceramic member when said quantity of an infiltration metal solidifies;g) removing said ceramic member from said first end of said tubular mold base, to expose said critical mold surfaces for molding purposes;h) machining said tubular mold base so that a mating mold half may be aligned with said metal mold half in order to cast a part;and i) machining a sprue hole through said metal mold half in order to introduce castable material to said critical mold surfaces for casting said part.
  4. 7
    A method of casting a fully dense metal part characterized by the step of:a) placing a metal powder into a mold having a finished surface and a means for containing said metal powder, said metal powder having a surface opposit said finished surface of said mold and a sintering temperature above the melting temperature of an infiltration metal;and b) melting an infiltration metal into said metal powder from said surface said metal powder opposite said finished surface of said mold, said metal powder acting as a filter through which said molten infiltration metal flows to said finished surface of said mold, thereby filtering out of said infiltration metal any contaminatio and oxidized metal therein, which if solidified at said finished surface of said mold would cause a blemished surface on said cast part.
  5. 8
    The method according to any of Claims 1, 2, 3, 4, 5, 6, or 7 wherein said powdered metal is selected from the group consisting of steel, stainless steel, tungsten, and tungsten carbide.
  6. 9
    The method according to any of Claims 1, 2, 3, 4, 5, 6, 7, or 8 wherein said infiltration metal is selected from the group consisting of copper, copper alloy, and beryllium copper.