Safe nuclear reactor shell high-entropy alloy material and preparation method thereof
A nuclear reactor and high-entropy alloy technology, applied in the field of high-entropy alloys, can solve the problems of poor radiation resistance and low safety factor
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Embodiment 1
[0019] Embodiment 1: The composition and atomic percentage of the cladding high-entropy alloy material of the safety nuclear reactor are Al 6.3%, Cr11.6%, Fe29.5%, Mo25.3%, Nb27.4%;
[0020] The preparation method of the above-mentioned safe nuclear reactor cladding high-entropy alloy material is as follows
[0021] 1. Use a small grinder to remove oxide scales on the surface of Al, Cr, Fe, Mo, Nb and other metal materials, and then use an ultrasonic cleaner to clean the polished materials. The purity of the five metals is greater than 99.9wt%;
[0022] 2. Put the weighed metal materials into the vacuum arc melting furnace in the order of the melting point of the metal materials from low to high, that is, the metal material with the lowest melting point is placed at the bottom;
[0023] 3. Close the furnace door, and pump the vacuum arc melting furnace to a vacuum state to 6×10 -2 Pa below, and pass through the argon gas of mass concentration 99.99% to carry out protection, a...
Embodiment 2
[0026] Embodiment 2: The composition and atomic percentage of the cladding high-entropy alloy material of the safety nuclear reactor are Al 5.9%, Cr11%, Fe27.7%, Mo29.7%, Nb25.7%;
[0027] The preparation method of the above-mentioned safe nuclear reactor cladding high-entropy alloy material is as follows
[0028] 1. Use a small grinder to remove the scale on the surface of Al, Cr, Fe, Mo, Nb metal materials, and then use an ultrasonic cleaner to clean the polished materials. The purity of the five metals is greater than 99.9wt%;
[0029] 2. Put the weighed metal materials into the vacuum arc melting furnace in the order of the melting point of the metal materials from low to high, that is, the metal material with the lowest melting point is placed at the bottom;
[0030] 3. Close the furnace door, and pump the vacuum arc melting furnace to a vacuum state to 6×10 -2 Pa below, and pass through the argon gas of mass concentration 99.99% to carry out protection, argon pressure i...
Embodiment 3
[0033] Embodiment 3: The composition and atomic percentage of the cladding high-entropy alloy material of this safety nuclear reactor are Al 5.4%, Cr10.5%, Fe26.7%, Mo32.4%, Nb25%;
[0034] The preparation method of the above-mentioned safe nuclear reactor cladding high-entropy alloy material is as follows
[0035] 1. Use a small grinder to remove the scale on the surface of Al, Cr, Fe, Mo, Nb metal materials, and then use an ultrasonic cleaner to clean the polished materials. The purity of the five metals is greater than 99.9wt%;
[0036] 2. Put the weighed metal materials into the vacuum arc melting furnace in the order of the melting point of the metal materials from low to high, that is, the metal material with the lowest melting point is placed at the bottom;
[0037] 3. Close the furnace door, and pump the vacuum arc melting furnace to a vacuum state to 6×10 -2 Pa below, and pass through the argon gas of mass concentration 99.99% to carry out protection, argon pressure ...
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