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PLASMA ARC MELTING OF A 80 WT TANTALUM-20 WT TITANIUM ALLOY

机译:等离子体弧熔融80wt%钽-20wt%钛合金

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An alloy of 80wt% tantalum-20wt% titanium is being considered for use in an oxidizing and highly corrosive liquid metal application. The high melting point of the alloy, 2400°C, and other physical properties narrowed the possible melting techniques. Previous melting experience with these materials by electron beam resulted in extensive vaporization of the titanium during the melt and poor chemical homogeneity. A technique has been developed using plasma arc melting to melt refractory alloys with very dissimilar densities and vapor pressures. The 80wt%Ta-20wt%Ti alloy falls into this category with the density of tantalum 16.5 g/cc and that of titanium 4.5 g/cc. The melting of these materials is further complicated by the high melting point of tantalum(3020°C) and the relatively low boiling point of titanium(3287°C). The plasma arc melting technique to be described results in good chemical homogeneity with ingot size quantities of material.
机译:80wt%钽-20wt%钛的合金被认为用于氧化和高腐蚀性液态金属应用。合金的高熔点,2400℃和其他物理性质缩小了可能的熔融技术。以前通过电子束与这些材料的熔化经验导致熔融期间钛的广泛蒸发,化学均匀性差。已经使用等离子体弧形熔化以熔化耐火合金具有非常不同的密度和蒸汽压力的技术开发了一种技术。 80wt%的Ta-20wt%Ti合金落入该类别,其密度为钽16.5g / cc和钛4.5g / cc。这些材料的熔化是通过钽(3020℃)的高熔点和钛的相对较低的沸点(3287℃)的熔点。要描述的等离子体弧熔化技术会导致良好的化学均匀性,具有铸锭尺寸的材料。

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