Claims
- 1. An apparatus for friction stir welding, comprising:
a weld tool comprising a tungsten-based refractory material, wherein said material comprises an alloy consisting essentially of sintered tungsten.
- 2-3. (Cancelled)
- 4. An apparatus for friction stir welding, comprising:
a weld tool comprising a tungsten-based refractory material comprising doped tungsten, wherein said doped tungsten comprises dopant material and tungsten.
- 5. The apparatus of claim 4, wherein said doped tungsten comprises a concentration of up to 100 parts per million of said dopant material.
- 6. The apparatus of claim 5, wherein said concentration of said dopant material is in the range from about 10 parts per million to about 80 parts per million.
- 7. The apparatus of claim 5, wherein said dopant material comprises at least one material selected from the group consisting of lithium, sodium, potassium, rubidium, cesium, lanthanum oxide, yttrium oxide, cerium oxide, and thorium oxide.
- 8. The apparatus of claim 7, wherein said dopant material comprises potassium.
- 9. The apparatus of claim 8, wherein said concentration of said potassium is about 20 parts per million.
- 10. The apparatus of claim 4, wherein said doped tungsten comprises sintered and extruded doped tungsten.
- 11. An apparatus for friction stir welding, comprising:
a weld tool comprising a tungsten-based refractory material said material comprising an alloy comprising a solid-solution-strengthening material and tungsten.
- 12. The apparatus of claim 11, wherein said alloy comprises up to about 40 weight percent of said solid-solution-strengthening material.
- 13. The apparatus of claim 12, wherein said alloy comprises from about 20 weight percent to about 30 weight percent of said solid-solution-strengthening material.
- 14. The apparatus of claim 12, wherein said solid-solution-strengthening material comprises at least one material selected from the group consisting of rhenium, molybdenum, tantalum, and niobium.
- 15. The apparatus of claim 14, wherein said alloy comprises about 25 weight percent rhenium and the balance comprises tungsten.
- 16. The apparatus of claim 11, wherein said tungsten-based refractory material comprises at least one material selected from the group consisting of a) sintered material and b) sintered and hot isostatically pressed material.
- 17. An apparatus for friction stir welding, comprising:
a weld tool comprising a tungsten-based refractory material, said material comprising tungsten and at least one material selected from the group consisting of a solid-solution-strengthening material and a refractory carbide material.
- 18. The apparatus of claim 17, wherein said solid-solution-strengthening material is present within said tungsten-based refractory material at a concentration up to about 8 weight percent, and wherein said refractory carbide material is present within said tungsten-based refractory material a concentration in the range from about 0.25 weight percent to about 2weight percent.
- 19. The apparatus of claim 18, wherein said solid-solution-strengthening material is present within said tungsten-based refractory material at a concentration in the range from about 2 weight percent to about 6 weight percent, and wherein said refractory carbide material is present within said tungsten-based refractory material a concentration in the range from about 0.25 weight percent to about 1 weight percent.
- 20. The apparatus of claim 17, wherein said solid-solution-strengthening material comprises at least one material selected from the group consisting of rhenium, molybdenum, tantalum, and niobium.
- 21. The apparatus of claim 17, wherein said refractory carbide comprises a carbide of at least one material selected from the group consisting of hafnium, zirconium, tantalum, and niobium.
- 22. The apparatus of claim 17, wherein said tungsten-based refractory material comprises about 4 weight percent rhenium and further comprises about 0.5 weight percent hafnium carbide, and wherein the balance comprises tungsten.
- 23. The apparatus of claim 17, wherein said tungsten-based refractory material comprises one of a) cast and extruded material; b) cast and forged material; c) consolidated and extruded material.
- 24. An apparatus for friction stir welding comprising:
a weld tool comprising a tungsten-based refractory material, wherein said weld tool comprises a shoulder portion and a pin portion, said pin portion comprising said tungsten-based refractory material wherein said shoulder portion comprises a material that is substantially different from the material comprising said pin portion in at least one characteristic selected from the group consisting of chemical composition, microstructure, and processing.
- 25. (Cancelled)
- 26. An apparatus for friction stir welding, comprising:
a weld tool comprising a tungsten-based refractory material, said metal comprising sintered and extruded tungsten and further comprising about 20 parts per million potassium.
- 27. An apparatus for friction stir welding, comprising:
a weld tool comprising a tungsten-based refractory material, said material comprising at least one material selected from the group consisting of a) sintered metal and b) sintered and hot isostatically pressed metal, wherein said material further comprises about 25 weight percent rhenium and the balance comprises tungsten.
- 28. An apparatus for friction stir welding, comprising:
a weld tool comprising a cast and extruded tungsten-based refractory material, said material comprising about 4 weight percent rhenium, and about 0.5 weight percent hafnium carbide, and the balance comprising tungsten.
- 29. A weld tool for friction stir welding, said tool comprising:
a tungsten-based refractory material, wherein said material comprises an alloy consisting essentially of sintered tungsten.
- 30. (Cancelled)
- 31. A weld tool for friction stir welding, said tool comprising:
a tungsten-based refractory material comprising sintered and extruded doped tungsten, wherein said doped tungsten comprises dopant material and tungsten.
- 32. The weld tool of claim 31, wherein said doped tungsten comprises a concentration of up to about 100 parts per million of said dopant material.
- 33. The weld tool of claim 32, wherein said concentration of said dopant material is in the range from about 10 parts per million to about 80 parts per million.
- 34. The weld tool of claim 32, wherein said dopant material comprises at least one material selected from the group consisting of lithium, sodium, potassium, rubidium, cesium, lanthanum oxide, yttrium oxide, cerium oxide, and thorium oxide.
- 35. The weld tool of claim 34, wherein said dopant material comprises potassium.
- 36. The weld tool of claim 35, wherein said concentration of said potassium is about 20 parts per million.
- 37. A weld tool for friction stir welding, said tool comprising
a tungsten-based refractory material comprising an alloy comprising a solid-solution-strengthening material and tungsten.
- 38. The weld tool of claim 37, wherein said alloy comprises up to about 40 weight percent of said solid-solution-strengthening material.
- 39. The weld tool of claim 38, wherein said alloy comprises from about 20 weight percent to about 30 weight percent of said solid-solution-strengthening material.
- 40. The weld tool of claim 38, wherein said solid-solution-strengthening material comprises at least one material selected from the group consisting of rhenium, molybdenum, tantalum, and niobium.
- 41. The weld tool of claim 40, wherein said alloy comprises about 25 weight percent rhenium and the balance comprises tungsten.
- 42. The weld tool of claim 37, wherein said tungsten-based refractory material comprises at least one material selected from the group consisting of a) sintered material and b) sintered and hot isostatically pressed material.
- 43. A weld tool for friction stir welding, said tool comprising:
tungsten and at least one material selected from the group consisting of a solid-solution-strengthening material and a refractory carbide material.
- 44. The weld tool of claim 43, wherein said solid-solution-strengthening material is present within said tungsten-based refractory material at a concentration up to about 8 weight percent, and wherein said refractory carbide material is present within said tungsten-based refractory material a concentration in the range from about 0.25 weight percent to about 2 weight percent.
- 45. The weld tool of claim 44, wherein said solid-solution-strengthening material is present within said tungsten-based refractory material at a concentration in the range from about 2 weight percent to about 6 weight percent, and wherein said refractory carbide material is present within said tungsten-based refractory material a concentration in the range from about 0.25 weight percent to about 1 weight percent.
- 46. The weld tool of claim 43, wherein said solid-solution-strengthening material comprises at least one material selected from the group consisting of rhenium, molybdenum, tantalum, and niobium.
- 47. The weld tool of claim 43, wherein said refractory carbide comprises a carbide of at least one material selected from the group consisting of hafnium, zirconium, tantalum, and niobium.
- 48. The weld tool of claim 43, wherein said tungsten-based refractory material comprises about 4 weight percent rhenium and further comprises about 0.5 weight percent hafnium carbide, and wherein the balance comprises tungsten.
- 49. The weld tool of claim 43, wherein said tungsten-based refractory material comprises cast and thermo-mechanically processed material.
- 50. The weld tool of claim 49, wherein said cast and thermo-mechanically processed material comprises at least one material selected from the group consisting of a) cast and extruded material; b) cast and forged material; and c) consolidated and extruded material.
- 51. A weld tool for friction stir welding, said tool comprising:
a shoulder portion and a pin portion, wherein said shoulder portion comprises a material that is substantially different from the material comprising said pin portion in at least one characteristic selected from the group consisting of chemical composition, microstructure, and processing;, and wherein said pin portion comprises a tungsten-based refractory material.
- 52. (Cancelled)
- 53. A weld tool for friction stir welding, comprising:
a tungsten-based refractory material, said metal comprising sintered and extruded tungsten and further comprising about 20 parts per million potassium.
- 54. A weld tool for friction stir welding, comprising:
a tungsten-based refractory material, said metal comprising at least one material selected from the group consisting of a) sintered metal and b) sintered and hot isostatically pressed metal, wherein said metal further comprises about 25 weight percent rhenium and the balance comprises tungsten.
- 55. A weld tool for friction stir welding, comprising:
a cast and extruded tungsten-based refractory material, said material comprising about 4 weight percent rhenium, and about 0.5 weight percent hafnium carbide, and the balance comprising tungsten.
- 56. A method for making a weld tool for friction stir welding, said method comprising:
providing a tungsten-based refractory material; processing said material to form a substantially self-supporting feedstock; working said feedstock, wherein working reduces a cross-sectional area of said feedstock by at least 50%; and fashioning said feedstock into a weld tool adapted to operate in a friction stir welding apparatus.
- 57. The method of claim 56, wherein working reduces said cross-sectional area of said feedstock by at least 75%.
- 58. The method of claim 56, wherein processing comprises at least one processing operation selected from the group consisting of sintering, isostatic pressing, arc deposition, plasma spray deposition, laser deposition, and casting.
- 59. The method of claim 56, wherein working comprises at least one operation selected from the group consisting of extruding, swaging, and forging.
- 60. The method of claim 56, wherein said tungsten-based refractory material comprises at least one material selected from the group consisting of a) tungsten, b) doped tungsten, c) an alloy comprising tungsten and rhenium, and d) a material comprising tungsten and at least one material selected from the group consisting of rhenium and hafnium carbide.
- 61. A method for manufacturing an article, said method comprising:
providing a friction stir welding apparatus, wherein said apparatus comprises a weld tool, said weld tool comprising at least one tungsten-based refractory material selected from the group consisting of
a. a sintered alloy consisting essentially of tungsten, b. doped tungsten, wherein said doped tungsten comprises dopant material and tungsten, c. an alloy comprising a solid-solution-strengthening material and tungsten, d. tungsten and at least one material selected from the group consisting of a solid-solution-strengthening material and a refractory carbide material; providing at least one workpiece; and operating said apparatus to weld said at least one workpiece by friction stir welding to form at least one welded element, said at least one welded element comprising a friction stir welded region.
- 62. The method of claim 61, wherein providing said at least one workpiece comprise s providing at least one material selected from the group consisting of a steel, a stainless steel, a nickel-based superalloy, a cobalt-based superalloy, an iron-based superalloy, a nickel-iron-based superalloy, an oxide dispersion strengthened nickel alloy, and a titanium-based alloy.
- 63. The method of claim 62, wherein said at least one workpiece comprises at least one item selected from the group consisting of a forged item, a cast item, an extruded item, a rolled item, and an item formed by a powder metallurgy process.
- 64. The method of claim 61, wherein providing said at least one workpiece comprises providing a plurality of workpieces; and
wherein operating comprises operating said apparatus to weld said plurality of workpieces by friction stir welding to form at least one welded element, wherein each welded element comprises a friction stir welded region.
- 65. The method of claim 64, wherein said method further comprises assembling said at least one welded element to form said article.
- 66. The method of claim 65, wherein assembling comprises friction stir welding at least two of said welded elements to join said elements.
- 67. The method of claim 65, wherein assembling comprises assembling said plurality of welded elements to form a component of a turbine engine.
- 68. The method of claim 67, wherein said component of said turbine engine comprises one of a duct, a frame, a disk, and a case.
- 69. The method of claim 64, wherein a first workpiece comprises a first material, and a second workpiece comprises a second material, wherein said first material is substantially different from said second material in at least one characteristic selected from the group consisting of chemical composition, microstructure, and processing.
- 70. The method of claim 69, wherein at least one material selected from the group consisting of said first material and said second material comprises a material selected from the group consisting of a steel, a stainless steel, a nickel-based superalloy, a cobalt-based superalloy, an iron-based superalloy, a nickel-iron-based superalloy, an oxide dispersion strengthened nickel alloy, and a titanium-based alloy.
- 71. (Cancelled)
- 72. The method of claim 61, wherein said tungsten-based refractory material comprises doped tungsten, wherein said doped tungsten comprises dopant material and tungsten.
- 73. The method of claim 72, wherein said dopant material comprises at least one material selected from the group consisting of lithium, sodium, potassium, rubidium, cesium, lanthanum oxide, yttrium oxide, cerium oxide, and thorium oxide.
- 74. The method of claim 72, wherein said doped tungsten comprises sintered and extruded doped tungsten.
- 75. The method of claim 61, wherein said tungsten-based refractory material comprises an alloy comprising a solid-solution-strengthening material and tungsten.
- 76. The method of claim 75, wherein said alloy comprises up to about 40 weight percent of said solid-solution-strengthening material.
- 77. The method of claim 76, wherein said solid-solution-strengthening material comprises at least one material selected from the group consisting of rhenium, molybdenum, tantalum, and niobium.
- 78. The method of claim 77, wherein said alloy comprises about 25 weight percent rhenium and the balance comprises tungsten.
- 79. The method of claim 75, wherein said tungsten-based refractory material comprises at least one material selected from the group consisting of a) sintered material and b) sintered and hot isostatically pressed material.
- 80. The method of claim 61, wherein said tungsten-based refractory material comprises tungsten and at least one material selected from the group consisting of a solid-solution-strengthening material and a refractory carbide material.
- 81. The method of claim 80, wherein said solid-solution-strengthening material is present within said tungsten-based refractory material at a concentration up to about 8 weight percent, and wherein said refractory carbide material is present within said tungsten-based refractory material a concentration in the range from about 0.25 weight percent to about 2 weight percent.
- 82. The method of claim 81, wherein said tungsten-based refractory material comprises about 4 weight percent rhenium and further comprises about 0.5 weight percent hafnium carbide, and wherein the balance comprises tungsten.
- 83. The method of claim 61, wherein said tungsten-based refractory material comprises one of a) cast and extruded material, b) cast and forged material, and c) consolidated and extruded material.
- 84. The method of claim 61, wherein said welded article comprises a component for use in a turbine engine.
- 85. A method for manufacturing an article, said method comprising:
providing a friction stir welding apparatus, wherein said apparatus comprises a weld tool, said weld tool comprising a tungsten-based refractory material selected from the group consisting of
a. a sintered alloy consisting essentially of tungsten, b. a metal comprising sintered and extruded tungsten and further comprising about 20 parts per million potassium, c. a metal comprising at least one material selected from the group consisting of a) sintered metal and b) sintered and hot isostatically pressed metal, wherein said metal further comprises about 25 weight percent rhenium and the balance comprises tungsten, and d. a cast and extruded tungsten-based refractory material, said material comprising about 4 weight percent rhenium, and about 0.5 weight percent hafnium carbide, and the balance comprising tungsten, and e. a cast and extruded tungsten-based refractory material, said material comprising from about 0.5 weight percent to about 2 weight percent hafnium carbide, and the balance tungsten; providing at least one workpiece, said at least one workpiece comprising at least one material selected from the group consisting of a nickel-based superalloy, a cobalt-based superalloy, an iron-based superalloy, a nickel-iron-based superalloy, and a titanium-based alloy; and operating said apparatus to weld said at least one workpiece by friction stir welding to form a welded article.
- 86. An article manufactured by a method, said method comprising:
providing a friction stir welding apparatus, wherein said apparatus comprises a weld tool, said weld tool comprising a tungsten-based refractory material comprising at least one material selected from the group consisting of a) sintered tungsten, b) doped tungsten, c) an alloy comprising tungsten and rhenium, and d) a material comprising tungsten and at least one material selected from the group consisting of rhenium and hafnium carbide; providing a plurality of workpieces; operating said apparatus to weld said plurality of workpieces by friction stir welding to form a plurality of welded elements, wherein each welded element comprises a friction stir welded region; and assembling said plurality of elements to form said article.
- 87. The article of claim 86, wherein said article is assembled by friction stir welding at least two of said welded elements to join said elements.
- 88. The article of claim 86, wherein said article comprises a component of a turbine engine.
- 89. The article of claim 88, wherein said component comprises one of a frame, a duct, a disk and a case.
- 90. The article of claim 86, wherein a first workpiece comprises a first material, and a second workpiece comprises a second material, wherein said first material is substantially different from said second material in at least one characteristic selected from the group consisting of chemical composition, microstructure, and processing.
- 91. The article of claim 90, wherein at least one material selected from the group consisting of said first material and said second material comprises a material selected from the group consisting of a steel, a stainless steel, a nickel-based superalloy, a cobalt-based superalloy, an iron-based superalloy, a nickel-iron-based superalloy, an oxide dispersion strengthened nickel alloy, and a titanium-based alloy.
- 92. (Cancelled)
- 93. The article of claim 86, wherein said tungsten-based refractory material comprises at least one material selected from the group consisting of
a. a sintered alloy consisting essentially of tungsten, b. a metal comprising sintered and extruded tungsten and further comprising about 20 parts per million potassium, c. a metal comprising at least of, at least one material selected from the group consisting of a) sintered metal and b) sintered and hot isostatically pressed metal, wherein said metal further comprises about 25 weight percent rhenium and the balance comprises tungsten, d. a cast and extruded tungsten-based refractory material, said material comprising about 4 weight percent rhenium, and about 0.5 weight percent hafnium carbide, and the balance comprising tungsten, and e. a cast and extruded tungsten-based refractory material, said material comprising from about 0.5 weight percent to about 2 weight percent hafnium carbide, and the balance tungsten.
- 94. A turbine engine component manufactured by a method, said method comprising:
providing a friction stir welding apparatus, wherein said apparatus comprises a weld tool, said weld tool comprising at least one tungsten-based refractory material selected from the group consisting of
a. a sintered alloy consisting essentially of tungsten, b. a metal comprising sintered and extruded tungsten and further comprising about 20 parts per million potassium, c. a metal comprising at least one material selected from the group consisting of a) sintered metal and b) sintered and hot isostatically pressed metal, wherein said metal further comprises about 25 weight percent rhenium and the balance comprises tungsten, d. a cast and extruded tungsten-based refractory material, said material comprising about 4 weight percent rhenium, and about 0.5 weight percent hafnium carbide, and the balance comprising tungsten, and e. a cast and extruded tungsten-based refractory material, said material comprising from about 0.5 weight percent to about 2 weight percent hafnium carbide, and the balance tungsten.; providing a plurality of workpieces, wherein a first workpiece comprises a first material, and a second workpiece comprises a second material, wherein said first material is substantially different from said second material in at least one characteristic selected from the group consisting of chemical composition, microstructure, and processing, and wherein at least one material selected from the group consisting of said first material and said second material comprises a material selected from the group consisting of a steel, a stainless steel, a nickel-based superalloy, a cobalt-based superalloy, an iron-based superalloy, a nickel-iron-based. superalloy, an oxide dispersion strengthened nickel alloy, and a titanium-based alloy; operating said apparatus to weld said plurality of workpieces by friction stir welding to form a plurality of welded elements, wherein each welded element comprises a friction stir welded region; and assembling said plurality of elements to form said turbine engine component.
Government Interests
[0001] This invention was first conceived or reduced to practice in the performance of work under Contract No. F33615-99-2-5215 with the United States Air Force. The United States of America may have certain rights to this invention.