Method for preparing parent metal of nuclear-electric welding material with ultrahigh purity
A technology of purity and welding consumables, which is applied in the field of preparing ultra-high purity nuclear welding consumable base materials, which can solve the problems of less inclusions and gases floating, unable to meet the quality requirements of welding materials, and reduced purity. The effect of entraining air, improving purity and yield, and reducing shrinkage cavities
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Embodiment 1
[0015] Embodiment 1: Prepare 316L nuclear-grade welding consumable base material by vacuum pouring process, the specific dimensions of the casting mold: d1=5cm, d2=5cm, d3=3cm, d4=15cm, d5=d6=5cm, L1=40cm, L2=25cm, L3=25cm, pouring speed 0.65m / s, vacuum degree 0.05Mpa, pouring temperature 1600°C, middle injection pipe and bottom runner are made of magnesia refractory bricks, ingot mold is made of cast iron. The final ingot has no shrinkage cavity, smooth surface, and the comprehensive impurity content (including oxides, sulfides, other non-metallic inclusions and gases, etc.) is about 87ppm.
Embodiment 2
[0016] Example 2: Prepare 308 nuclear-grade welding consumable base material by vacuum pouring process, the specific dimensions of the casting mold: d1=1.5cm, d2=3cm, d3=3cm, d4=15cm, d5=d6=3cm, L1=50cm , L2=30cm, L3=16cm, pouring speed 0.7m / s, vacuum degree 0.08Mpa, pouring temperature 1620°C, center injection pipe and bottom runner are made of magnesia refractory bricks, ingot mold is made of cast iron. The final ingot has no shrinkage cavity, smooth surface, and the comprehensive impurity content (including oxides, sulfides, other non-metallic inclusions and gases, etc.) is about 90ppm.
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