Tantalum-manganese-palladium alloy and processing method thereof
A technology of palladium alloy and processing technology, applied in the field of tantalum manganese palladium alloy, can solve the problems of high cost, easy pulverization and high impurity content, and achieve the effects of reasonable composition design, difficult pulverization and simple process
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Embodiment 1
[0017] The present invention is a tantalum-manganese-palladium alloy, which is prepared from the following raw materials according to the weight ratio: Ta: 34%, Mn: 31%, Pd: 7%, C≤0.3%, P≤0. 04%, the balance is Tc and unavoidable impurities.
[0018] A processing method for a tantalum-manganese-palladium alloy, in which tantalum stone, blue charcoal, and palladium chips are selected in batches according to the ratio of parts by weight to smelt tantalum palladium in a submerged arc furnace, and then tantalum palladium is formed in the submerged arc furnace. After the palladium molten pool, add tantalum-manganese alloy, lime and fluorite to the molten pool, so that the molten metal in the molten pool contains manganese and dephosphorizes the molten pool; after the materials added in the next step are fully melted and reacted, The molten metal in the furnace is discharged into a liquid water bag containing a tantalum-palladium alloy; then the tantalum-manganese-palladium alloy ob...
Embodiment 2
[0020] A tantalum-manganese-palladium alloy of the present invention is prepared from the following raw materials according to the weight ratio: Ta: 47%, Mn: 45%, Pd: 15%, C≤0.3%, P≤0. 04%, the balance is Tc and unavoidable impurities;
[0021] A processing method for a tantalum-manganese-palladium alloy, in which tantalum stone, blue charcoal, and palladium chips are selected in batches according to the ratio of parts by weight to smelt tantalum palladium in a submerged arc furnace, and then tantalum palladium is formed in the submerged arc furnace. After the palladium molten pool, add tantalum-manganese alloy, lime and fluorite to the molten pool, so that the molten metal in the molten pool contains manganese and dephosphorizes the molten pool; after the materials added in the next step are fully melted and reacted, The molten metal in the furnace is discharged into a liquid water bag containing a tantalum-palladium alloy; then the tantalum-manganese-palladium alloy obtained...
Embodiment 3
[0023] The present invention is a tantalum-manganese-palladium alloy, which is prepared from the following raw materials according to the weight ratio: Ta: 40%, Mn: 37%, Pd: 8%, C≤0.3%, P≤0. 04%, the balance is Tc and unavoidable impurities.
[0024] A processing method for a tantalum-manganese-palladium alloy, in which tantalum stone, blue charcoal, and palladium chips are selected in batches according to the ratio of parts by weight to smelt tantalum palladium in a submerged arc furnace, and then tantalum palladium is formed in the submerged arc furnace. After the palladium molten pool, add tantalum-manganese alloy, lime and fluorite to the molten pool, so that the molten metal in the molten pool contains manganese and dephosphorizes the molten pool; after the materials added in the next step are fully melted and reacted, The molten metal in the furnace is discharged into the liquid water bag containing the tantalum-palladium alloy; then the tantalum-manganese-palladium allo...
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