Method of forming biaxially textured alloy substrates and devices thereon
    6.
    发明授权
    Method of forming biaxially textured alloy substrates and devices thereon 失效
    在其上形成双轴织构的合金基底及其装置的方法

    公开(公告)号:US5964966A

    公开(公告)日:1999-10-12

    申请号:US934328

    申请日:1997-09-19

    摘要: Specific alloys, in particular Ni-based alloys, that can be biaxially textured, with a well-developed, single component texture are disclosed. These alloys have a significantly reduced Curie point, which is very desirable from the point of view of superconductivity applications. The biaxially textured alloy substrates also possess greatly enhanced mechanical properties (yield strength, ultimate tensile strength) which are essential for most applications, in particular, superconductors. A method is disclosed for producing complex multicomponent alloys which have the ideal physical properties for specific applications, such as lattice parameter, degree of magnetism and mechanical strength, and which cannot be fabricated in textured form. In addition, a method for making ultra thin biaxially textured substrates with complex compositions is disclosed.

    摘要翻译: 公开了具有良好发展的单组分织构的可以是双轴织构的特定合金,特别是Ni基合金。 这些合金具有显着降低的居里点,从超导应用的观点来看是非常理想的。 双轴织构的合金基底还具有大大增强的机械性能(屈服强度,极限拉伸强度),这对于大多数应用,特别是超导体是至关重要的。 公开了一种用于生产具有特定用途的理想物理性能的复合多组分合金的方法,例如晶格参数,磁性度和机械强度,并且不能以纹理形式制造。 另外,公开了一种制备具有复杂组成的超薄双轴纹理基片的方法。

    Method of forming biaxially textured alloy substrates and devices thereon
    7.
    发明授权
    Method of forming biaxially textured alloy substrates and devices thereon 有权
    在其上形成双轴织构的合金基底及其装置的方法

    公开(公告)号:US06106615A

    公开(公告)日:2000-08-22

    申请号:US250683

    申请日:1999-02-16

    摘要: Specific alloys, in particular Ni-based alloys, that can be biaxially textured, with a well-developed, single component texture are disclosed. These alloys have a significantly reduced Curie point, which is very desirable from the point of view of superconductivity applications. The biaxially textured alloy substrates also possess greatly enhanced mechanical properties (yield strength, ultimate tensile strength) which are essential for most applications, in particular, superconductors. A method is disclosed for producing complex multicomponent alloys which have the ideal physical properties for specific applications, such as lattice parameter, degree of magnetism and mechanical strength, and which cannot be in textured form. In addition, a method for making ultra thin biaxially textured substrates with complex compositions is disclosed.

    摘要翻译: 公开了具有良好发展的单组分织构的可以是双轴织构的特定合金,特别是Ni基合金。 这些合金具有显着降低的居里点,从超导应用的观点来看是非常理想的。 双轴织构的合金基底还具有大大增强的机械性能(屈服强度,极限拉伸强度),这对于大多数应用,特别是超导体是至关重要的。 公开了一种用于制备复合多组分合金的方法,其具有特定用途的理想物理性能,例如晶格参数,磁力度和机械强度,并且不能具有纹理形式。 另外,公开了一种制备具有复杂组成的超薄双轴纹理基片的方法。