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    • 1. 发明授权
    • Metal structure and fabrication method thereof
    • 金属结构及其制造方法
    • US08052810B2
    • 2011-11-08
    • US12399589
    • 2009-03-06
    • Kazunori OkadaYoshihiro HirataShinji InazawaMasao SakutaYoshiaki TaniTeruhisa Sakata
    • Kazunori OkadaYoshihiro HirataShinji InazawaMasao SakutaYoshiaki TaniTeruhisa Sakata
    • C23C14/00C22F1/10
    • C22F1/10G01R1/06733G01R1/0675G01R1/06755
    • A metal structure according to the present invention is unlikely to become brittle and has excellent hardness and creep resistance, characterized in that annealing has been applied at a temperature not more than the temperature at which crystals of the metal material start to become larger. This metal structure includes at least two kinds of metal material, and annealing can be applied at a temperature not more than the temperature at which crystals of the metal material start to become larger. For example, the present invention is advantageous in the manner of a microstructure for a contact probe. A fabricating method according to the present invention is a method of fabricating a metal structure unlikely to become brittle and having excellent hardness and creep resistance, characterized in that the step of applying annealing at a temperature not more than the temperature at which crystals of the metal material start to become larger is included.
    • 根据本发明的金属结构不可能变脆,并具有优异的硬度和抗蠕变性,其特征在于,在不高于金属材料的晶体开始变大的温度的温度下进行退火。 该金属结构包括至少两种金属材料,并且可以在不高于金属材料的晶体开始变大的温度的温度下进行退火。 例如,本发明对于接触探针的微结构的方式是有利的。 根据本发明的制造方法是一种制造不易脆性并且具有优异的硬度和抗蠕变性的金属结构的方法,其特征在于,在不高于金属晶体的温度的温度下进行退火的步骤 材料开始变大了。
    • 2. 发明申请
    • METAL STRUCTURE AND FABRICATION METHOD THEREOF
    • 金属结构及其制造方法
    • US20090176027A1
    • 2009-07-09
    • US12399589
    • 2009-03-06
    • Kazunori OKADAYoshihiro HirataShinji InazawaMasao SakutaYoshiaki TaniTeruhisa Sakata
    • Kazunori OKADAYoshihiro HirataShinji InazawaMasao SakutaYoshiaki TaniTeruhisa Sakata
    • B05D3/02
    • C22F1/10G01R1/06733G01R1/0675G01R1/06755
    • A metal structure according to the present invention is unlikely to become brittle and has excellent hardness and creep resistance, characterized in that annealing has been applied at a temperature not more than the temperature at which crystals of the metal material start to become larger. This metal structure includes at least two kinds of metal material, and annealing can be applied at a temperature not more than the temperature at which crystals of the metal material start to become larger. For example, the present invention is advantageous in the manner of a microstructure for a contact probe. A fabricating method according to the present invention is a method of fabricating a metal structure unlikely to become brittle and having excellent hardness and creep resistance, characterized in that the step of applying annealing at a temperature not more than the temperature at which crystals of the metal material start to become larger is included.
    • 根据本发明的金属结构不可能变脆,并具有优异的硬度和抗蠕变性,其特征在于,在不高于金属材料的晶体开始变大的温度的温度下进行退火。 该金属结构包括至少两种金属材料,并且可以在不高于金属材料的晶体开始变大的温度的温度下进行退火。 例如,本发明对于接触探针的微结构的方式是有利的。 根据本发明的制造方法是一种制造不易脆性并且具有优异的硬度和抗蠕变性的金属结构的方法,其特征在于,在不高于金属晶体的温度的温度下进行退火的步骤 材料开始变大了。