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Recycling of Superalloy Scrap through Electro Slag Remelting

机译:通过电渣重熔回收超合金废料

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Electro Slag Remelting (ESR) with a water cooled copper electrode has been used for recycling machined superalloy scrap. Careful electrode design and optimization of process parameters are necessary to achieve target composition and mechanical properties. The design criteria are discussed in detail. Coolant water flow rate and velocity need to be carefully chosen to ensure adequate cooling to the electrode. It is necessary to adopt liquid start technique while using the electrode. It is also essential to provide refractory metal (molybdenum) tips at the bottom of the electrode. These tips help in initiating and sustaining the ESR operation. The copper wall thickness should allow formation of a solid slag skin around the copper portion of the electrode to prevent electrode erosion as well as melt contamination. The superalloy scrap was charged through the annular gap between the mould and the electrode. Considering ingot chemistry, soundness and surface finish as the main criteria, ESR process parameters were optimized. Superalloy scrap of composition close to that of Nimonic 80A was remelted using the water cooled electrode. The process has potential for recycling a range of superalloy scrap and scaling up to produce large diameter ingots.
机译:具有水冷铜电极的电渣重熔(ESR)已用于回收加工的高温合金废料。仔细的电极设计和工艺参数的优化对于实现目标成分和机械性能是必不可少的。详细讨论设计标准。需要仔细选择冷却水的流速和速度,以确保对电极进行充分的冷却。使用电极时,必须采用液体启动技术。在电极底部提供难熔金属(钼)尖端也很重要。这些技巧有助于启动和维持ESR操作。铜的壁厚应允许在电极的铜部分周围形成固体渣皮,以防止电极腐蚀和熔体污染。高温合金废料通过模具和电极之间的环形间隙装料。以钢锭的化学性质,安全性和表面光洁度为主要标准,对ESR工艺参数进行了优化。使用水冷电极将成分接近于Nimonic 80A的高温合金废料重新熔化。该工艺具有回收一系列超级合金废料并扩大规模以生产大直径铸锭的潜力。

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