EP1531019A1

Refractory metal core wall thickness control

Abstract

In accordance with the present invention, a casting system is provided which broadly comprises a core (10) and a wax die (12) spaced from said core (10), a refractory metal core (14) having a first end seated within a slot (18) in the core (10) and a second end contacting the wax die (12) for positioning the core (10) relative to the wax die (12), and the refractory metal core having at least one of a mechanism for providing spring loading when closed in the wax die and a mechanism for mechanically locking the wax die to the core. The spring loading mechanism may comprise one or more spring tabs (20). The locking mechanism may comprise an end (32) of the refractory metal core (14') engaging a slot (34) in the wax die (12') (Fig 2).

EP1531019A1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 15 October 2024, 1.9 years ago.

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

17 claims: 5 independent, 12 dependent

  1. 1
    A casting system comprising:a first core (10;10') and a wax die (12;12') spaced from said first core (10;10');a refractory metal core (14;14') having a first end seated within a slot (18;18') in said first core (10;10') and a second end contacting said wax die (12;12') for positioning said first core (10;10') relative to said wax die (12;12');and said refractory metal core (14;14') having at least one of a means (20) for providing spring loading when closed in said wax die (12) and a means (32) for mechanically locking the wax die (12') to the first core (10').
  2. 9
    The casting system according to any of claims 6 to 8, wherein said mechanical locking means comprises at least one hole (42) in said second end (32) of said refractory metal core (14').
  3. 11
    A refractory metal core (14) for maintaining a core (10) in a desired position with respect to a wax die (12) and avoiding core shift during casting comprising:a core element (14) formed from a refractory metal material, said core element (14) having at least one integrally formed spring tab (20) to provide spring loading when closed in said wax die (12).
  4. 13
    A refractory metal core (14') for maintaining a core (10') in a desired position with respect to a wax die (12') and avoiding core shift during cast comprising:a core element (14') formed from a refractory metal material, said core element (14') having a first end, a central portion (30), and a second end (32) positioned at an angle to said central portion (30) for engaging a slot (34) in said wax die (12').
  5. 16
    A refractory metal core according to claim 16, wherein said mechanical locking means comprises at least one tab (32) having at least one hole (42).
  6. 17
    A refractory metal core according to any of claims 11 to 16, wherein said core element (14;14') is formed from a material selected from the group consisting of molybdenum, tantalum, niobium, tungsten, alloys thereof, and intermetallic compounds thereof.