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Simulation and testing of a modified mould, on UGITECH's ESRR~(TM)

机译:在Ugitech的ESRR〜(TM)上的模拟和测试。

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Since the end of 2007, UGITECH S.A. is equipped with an ESRR? plant provided by INTECO Special Melting Technologies GmbH. This technology uses a superheated slag to remelt electrodes, in a T-shaped mould equipped with an upper graphite current collector: the current is split into two separate paths. This feature makes the ESRR~(TM) process specifically appropriate to remelt a main electrode into smaller products like billets, with a rather high productivity. Nevertheless, the unique need of UGITECH S.A., to remelt continuous casting blooms, while keeping their 205 x 205 mm section constant, implies quite a small section electrode, compared to the normal ESRR? practice. The initial mould configuration of the machine had to be modified, to take better into account this specific demand. The ESRR~(TM) plant is a complex process, which combines many simultaneous phenomena - electromagnetic, heat transfer, fluid flow, etc. - with a strong coupling. The first numerical model of this process was built, and data gleaned from the literature helped to develop its first heat transfer simulation. Despite the necessary simplifications, and work hypotheses, this approach has given these first important results: to confirm the presence of organized toroidal motions in the slag, to provide orders of magnitude for variables one cannot measure in situ (slag flow velocity, temperature distribution), and to compare the ESRR~(TM) mould in its original configuration, with a new design. Several industrial trials, performed in the target configuration, simulated with a modified current upper collector, have demonstrated obvious improvements both on the surface quality of the ingots (directly related to the temperature at the metal meniscus), and on the stability of the machine's regulation (melting speed, and electrode immersion). After this confirmation of the advantages of the new configuration, UGITECH S.A. finally placed an order to INTECO GmbH, for a new design mould and an associated body.
机译:自2007年底以来,Ugitech S.A.配备了ESRR?由Inteco特殊熔化技术提供的工厂GmbH。该技术采用过热的炉渣来重熔电极,在配备有上石墨集电器的T形模具中:电流分成两个单独的路径。该功能使ESRR〜(TM)工艺特别适合将主电极重熔到坯料等坯料,具有相当高的生产率。然而,Ugitech S.A的独特需求。,以重新熔断连续铸造绽放,同时保持205×205mm截面恒定,与正常ESRR相比,相当于一个小截面电极?实践。必须修改机器的初始模具配置,以更好地考虑到这种特定的需求。 ESRR〜(TM)植物是一种复杂的过程,其结合了许多同时现象 - 电磁,传热,流体流量等 - 具有强耦合。构建了该过程的第一个数值模型,从文献中收集的数据有助于发展其第一传热模拟。尽管有必要的简化和工作假设,但这种方法已经给出了这些第一个重要结果:确认渣中有组织的环形运动的存在,为变量提供数量级,不能衡量原位(渣流速,温度分布) ,并将ESRR〜(TM)模具与新设计进行比较。用改进的电流上收集器模拟的若干工业试验,在模拟的电流上收集器模拟,在铸锭的表面质量(与金属弯月面的温度直接相关)以及机器调节的稳定性方面都表现出明显的改进(熔化速度和电极浸泡)。在此确认新配置的优点之后,Ugitech S.A.最终将订单放置到Inteco GmbH,用于新的设计模具和相关的身体。

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