WO2010141575A2

Methods systems and compositions for manufacturing downhole tools and downhole tool parts

Abstract

Methods, systems and compositions for manufacturing downhole tools and downhole tool parts for drilling subterranean material are disclosed. A model having an external peripheral shape of a downhole tool or tool part is fabricated. Mold material is applied to the external periphery of the model. The mold material is permitted to harden to form a mold about the model. The model is eliminated and a composite matrix material is cast within the mold to form a finished downhole tool or tool part.

WO2010141575A2, drawing sheet 1
Sheet 1 of 10

Term

No projected expiry on record.

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43 claims: 25 independent, 18 dependent

  1. 1
    CLAIMS What is claimed is:1. A method of manufacturing a downhole tool part for drilling subterranean material comprising: fabricating a model having an external peripheral shape of a downhole tool part;applying a mold material to at least a portion of the external periphery of the model;permitting the mold material to harden to form a mold about the model;eliminating the model from within the mold;and casting a composite matrix material within the mold.
  2. 4
    The method as recited in claims 2 to 3, wherein the particulate material increases at least one of wear resistance, strength and toughness of a selective surface of the downhole tool part formed from casting the composite matrix material within the mold.
  3. 5
    The method as recited in claims 1 to 4, wherein eliminating the model from within the mold includes at least one of burning, melting, vaporizing and dissolving the model.
  4. 6
    The method as recited in claims 1 to 5, wherein the composite matrix material comprises at least two constituents selected from the group comprising:monotungsten carbide (WC), ditungsten carbide (W 2 C), cobalt, tungsten, iron, nickel, titanium and boron carbide.
  5. 7
    The method as recited in claims 1 to 6, wherein casting occurs at or above the eutectic temperature of the composite matrix material.
  6. 8
    The method as recited in claims 1 to 7, wherein the composite matrix material is a eutectic composition of at least two constituents.
  7. 9
    The method as recited in claims 1 to 8, wherein the composite matrix material comprises tungsten carbide and cobalt.
  8. 12
    The method as recited in claims 1 to 11, wherein the downhole tool part is a drill bit body.
  9. 17
    The method as recited in claims 1 to 11, wherein the downhole tool part is a roller cone.
  10. 21
    The method as recited in claims 1 to 20, wherein the casting of the composite matrix material occurs under vacuum conditions.
  11. 22
    The method as recited in claims 1 to 20, wherein the casting of the composite matrix material occurs in a protective atmosphere.
  12. 24
    The method as recited in claims 1 to 20, wherein the casting of the composite matrix material occurs in air.
  13. 25
    A downhole tool part for drilling subterranean material, wherein the downhole tool part is manufactured by casting a composite matrix material within a mold containing a selectively dispersed particulate material.
  14. 27
    The downhole tool part as recited in claims 25 to 26, wherein the particulate material increases at least one of wear resistance, strength and toughness of a selective surface of the downhole tool part formed from casting the composite matrix material within the mold.
  15. 28
    The downhole tool part as recited in claims 25 to 27, wherein the composite matrix material comprises at least two constituents selected from the group comprising:monotungsten carbide (WC), ditungsten carbide (W 2 C), cobalt, tungsten, iron, nickel, titanium and boron carbide.
  16. 29
    The downhole tool part as recited in claims 25 to 28, wherein the casting occurs at or above the eutectic temperature of the composite matrix material.
  17. 30
    The downhole tool part as recited in claims 25 to 29, wherein the composite matrix material is a eutectic composition of at least two constituents.
  18. 31
    The downhole tool part as recited in claims 25 to 30, wherein the composite matrix material comprises tungsten carbide and cobalt.
  19. 34
    The downhole tool part as recited in claims 25 to 33, wherein the downhole tool part is a bit body.
  20. 35
    The downhole tool part as recited in claims 25 to 33, wherein the downhole tool part is a roller cone.
  21. 36
    A composition for manufacturing a downhole tool part for drilling subterranean material comprising:a continuous phase and a selectively dispersed particulate phase.
  22. 38
    The composition as recited in claims 36 to 37, wherein the selectively dispersed particulate phase comprises at least one constituent selected from the group comprising:monotungsten carbide (WC), ditungsten carbide (W 2 C), macro-crystalline tungsten carbide, cobalt, titanium carbide, tantalum carbide, metal borides, metal oxides, metal nitrides, polycrystalline diamond compact (PDC), thermally stable polycrystalline diamond (TSP), cubic boron nitride (CBN), polycrystalline cubic boron nitride (PCBN), tungsten, iron, nickel, titanium and boron carbide.
  23. 39
    The composition as recited in claims 36 to 38, wherein the continuous phase is cobalt and the selectively dispersed particulate phase is monotungsten carbide (WC).
  24. 41
    The composition as recited in claims 36 to 40, further comprising a eutectic particulate phase.
  25. 43
    The composition as recited in claims 36 to 42, further comprising a sub-stoiciometric phase having the formula M x C, where M is cobalt or tungsten, C is carbide and x is a number between 1 and 6.
Independent claims25