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ESTIMATION OF ENERGY REQUIREMENTS AND ATMOSPHERIC EMISSION IN CONTINUOUS CASTING PROCESS FOR COPPER WIRE

机译:铜线连铸过程中能源需求和大气排放的估算

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Over the past 20 years, environmental issues have gained greater public recognition and new demands call for efficient material processing which has small amounts. Much effort recently has been expended to study the near net shape manufacturing technology used to fabricate products with required final tolerance. Continuous casting being a near net shape casting process for the production of copper wire rod eliminates the need for hot extrusion and heat treatment, consumes less energy. In addition, the continuous casting process offers a feasible method for of producing various hard to shape alloys. Therefore, in the present study, the energy requirements and atmospheric CO_2 emission for the production of copper wirerods with 8mm in diameter were investigated quantitatively with respect to continuous casting and conventional material processing including casting, extrusion and heat treatment. The continuous casting with small cross section can enhance the yield of copper wirerods manufacturing process from 61.4% to 99.6% when the productivity is similar. A twice of energy requirement and CO_2 were consumed and emitted in extrusion process when the yield of extrusion process is considered. The continuous casting process can save energy requirement not only during manufacturing process of wirerods but also during following wiredrawing process because intermediate annealing may be eliminated during wiredrawing process.
机译:在过去的20年里,环境问题获得了更大的公众认可和新要求呼吁有效的有效材料处理。最近的努力已经消耗了研究近净形状制造技术,用于制造具有所需最终耐受的产品。连铸是近净形状铸造工艺的铜线棒的生产消除了热挤出和热处理的需要,消耗较少的能量。此外,连续铸造工艺提供了一种可行的方法,用于生产各种难以形状的合金。因此,在本研究中,对连续浇铸和常规材料加工进行了直径和常规材料加工,通过铸造,挤出和热处理的常规材料加工来定量地研究用于生产具有8mm直径的铜线的能量需求和大气CO_2排放。当生产率相似时,具有小横截面的连续铸造可以提高铜丝制造工艺的产量从61.4%到99.6%。当考虑挤出过程的产率时,消耗和在挤出过程中消耗了两次能量要求和CO_2。连续铸造工艺不仅可以在丝码的制造过程中节省能源要求,而且可以在下面的牵引过程中节省能源要求,因为在牵引过程中可以消除中间退火。

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