首页> 外国专利> Refractory metal two alloys with tantalum and tungsten particular, the anode of the X-ray having the alloy, and a method for fabricating the anode of the X-ray and the alloy

Refractory metal two alloys with tantalum and tungsten particular, the anode of the X-ray having the alloy, and a method for fabricating the anode of the X-ray and the alloy

机译:特别是钽和钨的难熔金属两种合金,具有该合金的X射线的阳极,以及制造该X射线和合金的阳极的方法

摘要

An alloy comprising at least two refractory metals and a method for forming such alloy are proposed. In the alloy, a first refractory metal such as tantalum forming a minor portion of the alloy is completely dissolved in a second refractory metal such as tungsten forming a major portion of the alloy. The alloy may be formed by providing the two refractory metals in a common crucible (step S1), melting both refractory metals by application of an electron beam (step S2), mixing the molten refractory metals (step S3) and solidifying the melt (step S4). Due to the possible complete mixing of the refractory metal components in a molten state, improved material properties of the solidified alloy may be achieved. Furthermore, due to the use of tantalum instead of rhenium together with tungsten, a cheap and resistant refractory metal alloy may be produced, which alloy may be used for example for forming a focal track region of an X-ray anode.
机译:提出了包含至少两种难熔金属的合金和形成这种合金的方法。在合金中,构成合金的一小部分的第一难熔金属(如钽)完全溶解在构成合金的主要部分的第二难熔金属如钨中。可以通过在公共坩埚中提供两种难熔金属(步骤S1),通过施加电子束熔化两种难熔金属(步骤S2),混合熔融的难熔金属(步骤S3)并固化熔体来形成合金(步骤S3)。 S4)。由于熔融状态下的难熔金属组分可能完全混合,因此可以提高凝固合金的材料性能。此外,由于与钨一起使用钽代替together,因此可以生产廉价且耐久的难熔金属合金,该合金例如可以用于形成X射线阳极的焦点区域。

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