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Enhanced corrosion resistant amorphous metal alloy coatings 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C22C-027/06
출원번호 US-0138789 (1987-12-28)
발명자 / 주소
  • Henderson Richard S. (Solon OH) Shreve Gary A. (Garfield Hts. OH) Tenhover Michael A. (Solon OH)
출원인 / 주소
  • The Standard Oil Company (Cleveland OH 02)
인용정보 피인용 횟수 : 78  인용 특허 : 6

초록

The present invention relates to an amorphous metal alloys of the formula: CraXbMc wherein X is at least one element selected from the group consisting of Pt, Pd, Ir, Rh and Ru; M is at least one element selected from the group consisting of P, B, N, C, As, Sb and S; and wherein a ranges from about

대표청구항

An amorphous metal alloy of the formula is: CraXbMc wherein X is at least one element selected from the group consisting of: Pt, Pd, Ir, Rh and Ru; M is at least one element selected from the group consisting of P, B, N, C, As, Sb and S; and wherein a ranges from about 0.69 to about 0.96; b ranges

이 특허에 인용된 특허 (6)

  1. Ito Tsuneo (Nagoya JPX), Au-Pd-Cr Alloy for spark plug electrodes.
  2. Henderson Richard S. (Solon OH) Shreve Gary A. (Euclid OH) Tenhover Michael A. (Solon OH), Corrosion resistant amorphous chromium-metalloid alloy compositions.
  3. Zwingmann, Gerhard, Gold free alloys for firing on ceramic compositions.
  4. Holleck Helmut (Karlsruhe DEX), Hard alloy comprising one or more hard phases and a binary or multicomponent binder metal alloy.
  5. Boyajian Ben K. (Chemodent ; P.O. Box 7787 Charlottesville VA 22906), Palladium-based dental alloy containing indium and tin.
  6. Boyajian Benjamin K. (309 Alderman Rd. Charlottesville VA 22903), Palladium-based dental alloy containing indium and tin.

이 특허를 인용한 특허 (78)

  1. Giessen Bill C. (Cambridge MA) Gokhale Sunil V. (North Chelmsford MA) Marchev Krassimir G. (Boston MA), Amorphous metal alloys rich in noble metals prepared by rapid solidification processing.
  2. Cooper, Paul V., Controlled molten metal flow from transfer vessel.
  3. Cooper, Paul V., Couplings for molten metal devices.
  4. Cooper Paul V., Flow-directing device for molten metal pump.
  5. Cooper, Paul V., Gas transfer foot.
  6. Cooper, Paul V., Gas-transfer foot.
  7. Cooper, Paul V., Gas-transfer foot.
  8. Cooper, Paul V., Immersion heater for molten metal.
  9. Cooper, Paul V., Ladle with transfer conduit.
  10. Cooper, Paul V., Ladle with transfer conduit.
  11. Cooper, Paul V., Launder transfer insert and system.
  12. Hofmann, Douglas C.; Wilcox, Brian H., Method for manufacturing bulk metallic glass-based strain wave gear components.
  13. Cooper, Paul V.; Fontana, Vincent D., Method of forming transfer well.
  14. Cooper, Paul V.; Fontana, Vincent D., Method of transferring molten metal from a vessel.
  15. Hofmann, Douglas, Methods of fabricating a layer of metallic glass-based material using immersion and pouring techniques.
  16. Cooper Paul V., Mixed flow rotor for molten metal pumping device.
  17. Cooper, Paul V., Molten metal degassing device and impellers therefor.
  18. Cooper, Paul V., Molten metal pump components.
  19. Cooper,Paul V., Molten metal pump components.
  20. Cooper, Paul V., Molten metal pump filter.
  21. Cooper Paul V., Molten metal pump with a flexible coupling and cement-free metal-transfer conduit connection.
  22. Cooper, Paul V., Molten metal rotor with hardened top.
  23. Cooper, Paul V.; Fontana, Vincent D., Molten metal transfer and degassing system.
  24. Cooper, Paul V.; Fontana, Vincent D., Molten metal transfer system and rotor.
  25. Cooper, Paul V.; Fontana, Vincent D., Molten metal transfer system and rotor.
  26. Cooper, Paul V.; Fontana, Vincent D., Molten metal transfer system and rotor.
  27. Cooper, Paul V.; Fontana, Vincent D., Molten metal transfer vessel and method of construction.
  28. Cooper, Paul V.; Fontana, Vincent D., Molten metal transfer vessel and method of construction.
  29. Cooper, Paul V., Molten metal transferring vessel.
  30. Paul V. Cooper, Monolithic rotor and rigid coupling.
  31. Cooper, Paul V.; Fontana, Vincent D., Multi-stage impeller for molten metal.
  32. Cooper,Paul V., Protective coatings for molten metal devices.
  33. Cooper, Paul V., Pump with rotating inlet.
  34. Cooper, Paul V., Pump with rotating inlet.
  35. Cooper,Paul V., Pump with rotating inlet.
  36. Cooper, Paul V., Rotary degasser and rotor therefor.
  37. Cooper, Paul V., Rotary degasser and rotor therefor.
  38. Cooper, Paul V., Rotary degasser and rotor therefor.
  39. Cooper, Paul V., Rotary degassers and components therefor.
  40. Cooper, Paul V., Rotary degassers and components therefor.
  41. Cooper, Paul V., Rotary degassers and components therefor.
  42. Cooper, Paul V., Rotor and rotor shaft for molten metal.
  43. Cooper Paul V., Rotor bearing system for molten metal pumps.
  44. Cooper, Paul V., Rotor with inlet perimeters.
  45. Cooper, Paul V., Scrap melter and impeller.
  46. Cooper, Paul V., Shaft and post tensioning device.
  47. Cooper, Paul V., Shaft and post tensioning device.
  48. Cooper, Paul V., Support post clamps for molten metal pumps.
  49. Cooper, Paul V., Support posts for molten metal pumps.
  50. Cooper Paul V. (11247 Lake Forest Dr. Chesterland OH 44026), System and device for removing impurities from molten metal.
  51. Cooper, Paul V., System and method for degassing molten metal.
  52. Cooper, Paul V., System and method for degassing molten metal.
  53. Cooper, Paul V., System and method for degassing molten metal.
  54. Cooper, Paul V., System for releasing gas into molten metal.
  55. Cooper, Paul V., System for releasing gas into molten metal.
  56. Hofmann, Douglas, Systems and methods for fabricating objects including amorphous metal using techniques akin to additive manufacturing.
  57. Hofmann, Douglas C.; Kennett, Andrew, Systems and methods for fabricating structures including metallic glass-based materials using low pressure casting.
  58. Hofmann, Douglas C.; Roberts, Scott N., Systems and methods for fabricating structures including metallic glass-based materials using ultrasonic welding.
  59. Hofmann, Douglas C.; Agnes, Gregory, Systems and methods for implementing bulk metallic glass-based macroscale compliant mechanisms.
  60. Hofmann, Douglas C.; Wilcox, Brian, Systems and methods for implementing bulk metallic glass-based strain wave gears and strain wave gear components.
  61. Hofmann, Douglas C.; Wilcox, Brian, Systems and methods for implementing bulk metallic glass-based strain wave gears and strain wave gear components.
  62. Parness, Aaron; Carpenter, Kalind C.; Hofmann, Douglas C., Systems and methods for implementing flexible members including integrated tools made from metallic glass-based materials.
  63. Hofmann, Douglas C.; Wilcox, Brian H., Systems and methods for implementing tailored metallic glass-based strain wave gears and strain wave gear components.
  64. Cooper, Paul V., Systems and methods for melting scrap metal.
  65. Hofmann, Douglas C.; Bradford, Samuel C., Systems and methods for structurally interrelating components using inserts made from metallic glass-based materials.
  66. Cooper, Paul V., Tension device graphite component used in molten metal.
  67. Cooper, Paul V., Tension device with internal passage.
  68. Cooper, Paul V., Tensioning device extending beyond component.
  69. Cooper, Paul V., Threaded tensioning device.
  70. Cooper, Paul V., Transfer pump launder system.
  71. Cooper, Paul V.; Fontana, Vincent D., Transfer well system and method for making same.
  72. Cooper, Paul V., Transferring molten metal from one structure to another.
  73. Cooper, Paul V., Transferring molten metal from one structure to another.
  74. Cooper, Paul V., Transferring molten metal using non-gravity assist launder.
  75. Cooper, Paul V., Transferring molten metal using non-gravity assist launder.
  76. Cooper, Paul V., Vessel transfer insert and system.
  77. Cooper, Paul V., Vessel transfer insert and system.
  78. Cooper, Paul V., Vessel transfer insert and system.
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