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    • 6. 发明授权
    • Zirconium-titanium alloys containing transition metal elements
    • 含有过渡金属元素的锆钛合金
    • US4126449A
    • 1978-11-21
    • US823056
    • 1977-08-09
    • Lee E. TannerRanjan Ray
    • Lee E. TannerRanjan Ray
    • C22C9/00C22C14/00C22C16/00C22C45/04C22C45/10H01C3/00C22C30/00
    • H01C3/005C22C45/10
    • Zirconium-titanium alloys containing at least one of the transition metal elements of iron, cobalt, nickel and copper are disclosed. The alloys consist essentially of about 1 to 64 atom percent titanium plus at least one element selected from the group consisting of about 15 to 27 atom percent iron, about 15 to 43 atom percent cobalt, about 15 to 42 atom percent nickel and about 35 to 68 atom percent copper, balance essentially zirconium plus incidental impurities, with the proviso that when the iron is present, the maximum amount of titanium is about 25 atom percent, when cobalt is present, the maximum amount of titanium is about 54 atom percent and when nickel is present, the maximum amount of titanium is about 60 atom percent. The alloys in polycrystalline form are capable of being melted and rapidly quenched to the glassy state. Substantially totally glassy alloys of the invention evidence unusually high electrical resistivities of over 200 .mu..OMEGA.-cm.
    • 公开了含有至少一种铁,钴,镍和铜的过渡金属元素的锆钛合金。 合金基本上由约1至64原子%的钛加上至少一种选自约15至27原子%的铁,约15至43原子%的钴,约15至42原子%的镍和约35至 68原子百分比的铜,余量基本上为锆和附带的杂质,条件是当铁存在时,钛的最大量为约25原子%,当钴存在时,钛的最大量为约54原子% 存在镍,钛的最大量为约60原子%。 多晶形式的合金能够熔化并快速淬火至玻璃态。 本发明的基本上完全玻璃状的合金表现出超过200微米OMEGA-cm的异常高的电阻率。
    • 10. 发明授权
    • Zirconium-titanium alloys containing transition metal elements
    • 含有过渡金属元素的锆钛合金
    • US4148669A
    • 1979-04-10
    • US892618
    • 1978-04-03
    • Lee E. TannerRanjan Ray
    • Lee E. TannerRanjan Ray
    • C22C9/00C22C14/00C22C16/00C22C45/04C22C45/10H01C3/00C21D1/00C22F1/00
    • H01C3/005C22C45/10
    • Zirconium-titanium alloys containing at least one of the transition metal elements of iron, cobalt, nickel and copper are disclosed. The alloys consist essentially of about 1 to 64 atom percent titanium plus at least one element selected from the group consisting of about 15 to 27 atom percent iron, about 15 to 43 atom percent cobalt, about 15 to 42 atom percent nickel and about 35 to 68 atom percent copper, balance essentially zirconium plus incidental impurities, with the proviso that when iron is present, the maximum amount of titanium is about 25 atom percent, when cobalt is present, the maximum amount of titanium is about 54 atom percent and when nickel is present, the maximum amount of titanium is about 60 atom percent. The alloys in polycrystalline form are capable of being melted and rapidly quenched to the glassy state. Substantially totally glassy alloys of the invention evidence unusually high electrical resistivities of over 200 .mu..OMEGA.-cm.
    • 公开了含有至少一种铁,钴,镍和铜的过渡金属元素的锆钛合金。 合金基本上由约1至64原子%的钛加上至少一种选自约15至27原子%的铁,约15至43原子%的钴,约15至42原子%的镍和约35至 68原子百分比的铜,余量基本上为锆和附带的杂质,条件是当铁存在时,钛的最大量为约25原子%,当钴存在时,钛的最大量为约54原子% 存在时,钛的最大量为约60原子%。 多晶形式的合金能够熔化并快速淬火至玻璃态。 本发明的基本上完全玻璃状的合金表现出超过200微米OMEGA-cm的异常高的电阻率。